GEA Searle Cooler and Condensing Unit Ranges Top-level engineering solutions. engineering for a better world. GEA Heat Exchangers

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GEA Searle Cooler and Condensing Unit Ranges Toplevel engineering solutions engineering for a better world GEA Heat Exchangers

Good partners have an ear to the market. GEA engineers fully concentrate on you and your requirements. As a result, you are always up to the state of the art at the very least or a step a head and can concentrate on what really counts: your business. GEA excellence in heat tranfer GEA Searle is the specialist for aircooled condensers, our comprehensive product portfolio also offers Dry Coolers, Commercial and industrial Air coolers and condensing units. The value proposition of GEA Searle covers all aspects of its valueadding partnership as well as the factors influencing the entire lifecycle of expenditure on equipment and processes. As part of its process of lifecycle costing, all the relevant criteria are coordinated and optimised to maximise the customer s benefit: such as planning, efficiency and operating costs and including maintenance, service and upgrading. Our solutions meet all required regulations, whether specific to a country or to an industry. Our certifications include CE markings, Eurovent verification and many more. GEA is one of the longest established and principal manufacturers of heat exchange products for the refrigeration and air conditioning industry in Europe. It boasts a comprehensive product range. GEA Heat Exchangers products are utilised across many industries. Applications include industrial process cooling, combined heat and power installations and airconditioning equipment for hospitals, offices, schools and museums all enhanced by the synergies created by the new heat exchangers segment, bringing three established brands together (GEA Searle, GEA Küba and GEA Goedhart).

Products and Services excellence in heat transfer Air Coolers Research and Development In order to guarantee the continued excellence of our products in terms of innovation, design and performance, GEA has invested in one of the most comprehensive Research & Development facilities in the European refrigeration industry. GEA also undertakes special projects on behalf of other manufacturers, customers and endusers. Our R&D test facilities are able to test the performance characteristics of: duty (kw), air flow (m³/s), motor performance and noise. With the increasing importance of energy efficiency, the new GEA Searle coolers utilise fansets which offer significant energy savings over traditional motor assemblies. The KEC & TEC coolers have high efficiency EC fans as standard across the range. All our commercial unit coolers have white powder coated galvanised steel casing (JG and NS are aluminum) and are available in high or low temperature versions, with CO and glycol circuiting options. Many of the models in the commercial unit cooler ranges are available exstock from your local distributor, with backup stocks held at the UK manufacturing plant centre. Condensing Units GEA Searle Condensing Units are supplied as standard to a high specification with a complete control package, incorporating: Mains Isolator, Compressor Motor Starter/Overloads or MCB s for single phase models, Fan speed control & anticycle timer, Compressor Contactors, Fitted pressure relief valve (PRV), Compressor Crankcase Heaters, GEA Searle units range from the NSQ using scroll compressors to the NDQ using the latest digital scroll compressors. There are twin compressor variants of the NSQ and NDQ. Engineering Facilities Our advanced Computer Aided Design system interfaces directly with production machinery allowing customer special products to be designed and manufactured in the shortest possible time. In addition, the production processes are fully computerised, being driven by the latest MRPII practices. GEA operates a number of other World Class systems to reduce lead times and provide customers with better Information : D Design, CADCAM, Product Data Management (PDM) Technical.

Product Selection Software GEA Searle Product Selection software also available for GEA ErgéSpirale, GEA Küba and GEA Polska products. This release retains the familiar interface which our customers tell us they like, but adds a number of new features requested by customers. The new introductory screen places Searle within the context of our new parent group, GEA. The main screen incorporates the traditional layout and appearance of the existing program, but now includes all product types within one program. The customer can select the type of product by clicking an icon or selecting from a dropdown list; whichever they find most convenient. The box to the left of the Select button allows the customer to enter a filter (for example MM are models considered). The product specification of one or more models is presented in the traditional way, the specification screen allows the customer to select optional extras (by ticking check boxes at the bottom of the specification). The net price of the unit (including extras and taking into account customer discounts) is immediately calculated and displayed. A new feature of this version is that the specification can be presented as a PDF file. Quality, Support & Website Trained staff will advise you through every step of the selection process, our customer service continues past the product delivery, and we are always on hand to advise on any issues. Keep up to date with our products and latest news by visiting the website, www.searle.co.uk The appearance of the specification document can be enhanced to include company logos, contact information and anything else required to create a professional proposal document. The specification document can include one or more specification pages and the relevant drawings. 5

The standard GEA Searle cooler casework is white powder coated, oven cured at 80 o C to provide a hard durable finish. The JG, KLe and NS coolers are manufactured using aluminium casework, while the TEC, KEC, KMe and DSR all utilise galvanised steel casing. GEA Searle commercial unit coolers engineering at it s best GEA Searle s wide range of commercial unit coolers guarantee the continued excellence of our product range in terms of innovation, design and performance to offer the ideal cooler at a competitive price. They are the st choice product for their proven design and reliability, the range comes with many benefits which is often utilised across many industries the applications include small and large cold rooms and cabinets, warehouses, food storage and preparation rooms, freezers and blast freezing. Due to the large number of models available and the range of alternative refrigerants, selection of the optimum cooler is best performed using the latest Searle Selection Software. The software can be obtained direct from your GEA Searle representative or downloaded from the GEA Searle website www.searle.co.uk EC EC fansets offer the optimum in energy efficient performance combined with low noise levels and high reliability. The KEC and TEC Cooler range uses EC fansets as standard making them the most energy efficient cooler products available. Energy usage can be less than 50% of that of similar products, resulting in a product with a reduced payback period. Additional benefits include; Internal motor protection, Long service life and High efficiency across the full operating range 6

Cooler range benefits Motors & Fansets GEA Searle selects the optimum combination of motors and fans to deliver the best performance for the cooler size and application range. All motors and fansets are verified for power input and air volume in our Research & Development department. Specific motor data details are provided in the relevant section for each cooler type Tests are conducted in accordance with EN 8 under dry conditions which allows performance to stabilise and permits measurement over a prolonged period. The wet catalogue capacities are calculated from the dry capacities using the ratios given in the Eurovent Standard /C/00. *Dew point capacity factors for refrigerants with high glide apply only at the nominal rating condition. Mid point factors can be used for all conditions. Refrigerant Charge Densities based on 5% of the internal volume being liquid. Range benefits Energy efficient With the increasing importance of energy efficiency as part of the selection criteria, the new GEA Searle coolers utilise fansets which offer significant energy savings over traditional motor assemblies. The KEC and TEC cooler have high efficiency EC fans as standard across the range. Assured performance All our commercial unit coolers, where applicable, are certified under the Eurovent Certify All programme to guarantee that every unit will perform as specified. Availability Many of the models in the commercial unit cooler ranges are available exstock from your local distributor, with backup stocks held at the UK manufacturing plant centre. Backing our beliefs We offer years warranty on all products in this range, (subject to standard Terms & Conditions of Sale and excluding corrosion through misapplication). Unit coolers combine versatility and aesthetic design Consistent performance The ideal cooler at a competitive price Proven design and reliability in cold rooms, food storage,food preparation and cool cabinets GEA Searle coolers are approved for many supermarkets across the world and are used extensively in convenience stores, commercial refrigeration applications and many industrial & agricultural projects.

Reliable and efficient cooling The Searle range of commercial unit coolers combine versatility and aesthetic design with consistent performance to offer the ideal cooler at a competitive price. They are typically the st choice product for the following applications due to their proven design and reliability : Cold rooms, Food storage, Food preparation and Cool cabinets. 8

JG Air Cooler Reliable and efficient cooling The JG range of eight, costeffective, small blow through unit coolers are suitable for both high and low temperature applications. Its ultra lowprofile design makes it ideal for use in areas such as reachin and walkin cold cabinets and small cold rooms. With an evaporating range of +0 C to 0 C, the JG range offers nominal capacities from 0.kW to.6kw (R0A at 8K DT) and will operate with a wide range of refrigerants Casework The casework is aluminium, electrostatically powder painted and cured at 80 C to ensure an even, flexible and durable white gloss finish. Motors and fans are secured to the fan plate, which can be lowered to provide access to all refrigeration piping, electrical connections and components. An inner draintray is fitted to prevent sweating and improve condensate drainage. Coils Coils are manufactured from /8 OD copper tube (internally grooved to provide an extended inner surface) and aluminium fins. Tubes are mechanically expanded to provide a tight interference fit between the aluminium fin collar and the copper tube, giving excellent heat transfer characteristics. Fin spacing is.mm. s to 5 have a single circuit and are suitable for use with an internally equalised expansion valve. s 6, and 8 have two circuits and require an externally equalised expansion valve. All coils are pressure tested to 6.0 bar. Motors and Fans The motors are W, 0V, single phase, shaded pole with internal thermal protection (auto reset) and are suitable for both 50Hz and 60Hz supplies. They are wired to an internal junction box with cable entry to the cooler being provided via knockouts in both sides and the back. Fans are 00mm diameter running at a nominal speed of 00rpm (500rpm at 60Hz). The motors, fans and junction box can easily be accessed by unscrewing the base of the fan plate/drain pan and allowing it to hinge down along one edge. Electric Defrost Electric defrost kits are available for all models and are supplied separately. The elements are of the stainless steel sheathed type with sealed electrical connections, retained by clips and wired back to the junction box. Installation The JG units are designed to be mounted to the ceiling using the keyhole slots in the casework. The drain connection is / BSP. Refrigeration R0A Ra R50A R0A/F R0C Capacity factor (dew point, DT).00 0.9 0.9.8*.* Refrigerant charge density (kg/dm ) 0. 0.8 0. 0. 0. Fin Spacing Coil Blank = HCFC Range JG L Al Fin material Defrost 9

JG Selection Data Capacity (dew point) 8K DT R0A Ra No. fans Fan/Motor Specifications 0V ph 50Hz Air volume Air throw (***) Noise level (**) Total Power Input Total FLC Surface Area Coil Data Internal volume Approx. Ref. charge Electric defrost W W m /s m db (A) W A m dm gms W JG JG 0 50 00 0 0. 0.08.5.0 50 9 8 8 0.5 0.5 0.8.6 0.6 0.5 0.09 0.8 5 550 JG 660 600 0.09.0 9 8 0.5. 0.0 0. 00 JG JG5 JG6 JG 800 000 0 60 8 90 00 0 0.08 0.6 0. 0..0.0.5.5 9 5 5 5 8 6 6 0.5 0.50 0.50 0.5..05.5.0.060 0.90.0. 0.6 0. 0.6 0. 00 900 900 000 JG8 60 90 0..0 5 0.5 6..60 0.6 000 Notes: Rating conditions:the duties shown in this catalogue are at EN 8 Standard Condition (8 o C saturated suction temperature, 0 o C air entering). For data on refrigerants not shown, please contact your supplier. * DT is the difference between the entering air temperature and the saturated suction temperature at the outlet of the cooler. ** Noise levels are based on free field conditions at a distance of m. Actual noise levels will depend upon cold store construction, store loading and the number of coolers installed. *** Terminal air velocity 0.5m/s, free air conditions at 0 o C. Air throw cannot be considered on absolute value because many factors have a substantial effect on the distance achieved. Total Power Input at Standard Condition (8 o C saturated suction temperature, 0 o C air entering). Options and Spares Description Part Number JG JG JG JG JG5 JG6 JG JG8 Defrost kit for JG Defrost kit for JG G E G E Defrost kit for JG & G/ E Defrost kit for JG5 & 6 Defrost kit for JG & 8 Fan/motor assembly Fan guard Drain connection / BSP Gasket for drain connection G5/6 E G/8 E 90 08 6 00 6 6 006 6 6 00 JG Cooler DT WET R0A/50A Ra Rating Conditions The duties shown in this catalogue are at EN 8 Standard Condition (8 C saturated suction temperature, 0 C air entering). Correction factors These are provided for calculating duties at other conditions and with alternative refrigerants. Correction Factors (multiply capacity) Note: For R0, DT is calculated from mid point evaporating temperature 0

JG, 55 09 Fixing centres 58 99. 0 9.6 66 5 Overall casework 8 JG, 0 59 Drain connection / BSP 690 5 Fixing centres 58 Fixing centres.5 8.5 0 69 Overall casework JG 5, 6 868 6 Fixing centres 6 Fixing centres 58 Fixing centres Fixing centres Fixing centres.0 85 Overall casework.5 JG, 8 58 56 8 Overall casework JG Dimensions No. of fans Approx Dry weight (kg) Inlet Refrigeration connections Outlet Drain connection BSP JG JG JG JG JG5 JG6 JG JG8. 5. 6.. 8.5 9.6.5.0 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 / / / / / / / / / / /

Intelligence in cooling TEC is a range of nine small blow through unit coolers using high efficiency EC fans as standard, providing a significant reduction in energy consumption and therefore running costs. With a wide operating range + 0 C to 0 C, the coolers are suitable for both high, medium and low temperature applications in areas such as reachin and walk in cold cabinets, small cold rooms and similar situations.

TEC Air Cooler Intelligence in cooling The TEC range, with, or fan configurations, can be either ceiling mounted or wall mounted (by using the optional wall mounting kit). The pleasing aesthetic design of the coolers, manufactured in galvanised steel and finished with oven cured white epoxy powder paint, complements the working environment as well as providing rigidity and excellent corrosion resistance. The fansets are secured to the hinged fan plate, which can be lowered to provide access to all refrigeration piping and electrical connections and components. Nominal capacities are from 0.5kW to.kw (Standard Condition ) when used with low ozone depletion refrigerants such as Ra, R0A and R50A. The EC fans are high efficiency, having a power input of only 0W, a 0% saving on typical shaded pole motors used on this type of cooler. Motors are suitable for 0V, single phase, 50 / 60 Hz supply, and have internal thermal protection. Fans are prewired to an internal junction box with cable entry to the cooler being provided via one of several knockouts. Coils are manufactured from /8 OD copper tube (internally grooved to provide an extended inner surface) and aluminium fins of type E. The copper tube is mechanically extended to provide a tight interference fit between the aluminium fin collar and the copper tube, thus giving excellent heat transfer characteristics. The units are available in two fin spacing s.6mm ( fpi) and 5.mm (5 fpi). s TEC, TEC and TEC have a single circuit and are suitable for use with an internally equalised expansion valve. s TEC.5 to TEC8 are multi circuited and require an externally equalised expansion valve. All coils are pressure tested to.8 bar. Supply frequency Range TEC 5 60 Al Fin material Fin Spacing

TEC Selection Data Capacity kw SC R0A Air volume Fanset and Motor Air throw Power Input (***) Noise level (**) Total surface area Internal Volume Optional electric defrost Ceiling mount Wall mount m /s m W dba m dm W W TEC 0.5 0.5.5 0 5.5 0.9 x 5 x 50 TEC 0.89 0..5 0 50.9 0.9 x 550 x 50 TEC.0 0.5 5.0 0 50..06 x 00 x FPI (.6mm) TEC.5 TEC TEC5 TEC6.5..0.9 0.6 0.6 0. 0. 5.0 5.0 5.5 5.5 0 0 0 0 50 5 5 5 5. 5.. 9....6. x 900 x 900 x 000 x 000 x 5 x 5 x 55 x 65 TEC.0 0.5 6.0 60 5 0.. x 00 x 00 TEC8. 0.8 6.0 60 5.8. x 00 x 00 TEC5 0.5 0.6.5 0 5. 0.9 x 5 x 50 TEC5 0.8 0.5.5 0 50. 0.9 x 550 x 50 TEC.00 0.6 5.0 0 50..06 x 00 x 5 FPI (5.mm) TEC.55 TEC5 TEC55 TEC65.5.6.89. 0. 0.8 0. 0. 5.0 5.0 5.5 5.5 0 0 0 0 50 5 5 5.. 5.....6. x 900 x 900 x 000 x 000 x 5 x 5 x 55 x 65 TEC5.6 0. 6.0 60 5.. x 00 x 00 TEC85.8 0.5 6.0 60 5 0.. x 00 x 00 Notes: * Capacity quoted at Standard Condition (8 C saturated suction temperature, 0 o C air entering), Total Power Input at Standard Condition For further information please contact your sales representative or refer to the selection software online at www.searle.co.uk TEC Cooler DT WET.6.5. R0A/50A Ra Correction Factors (Multiply capacity by appropriate correction factor to give performance at chosen conditions). Rating Conditions Correction Factor (multiplier)...0 0.9 The duties shown in this catalogue are at EN 8 Standard Condition (8 o C saturated suction temperature, 0 o C air entering). For data on refrigerants not shown, please contact your supplier. Note: For R0, DT is calculated from mid point evaporating temperature. 0.8 0. 0.6 0.5 0 0 0 5 0 5 0 5 0 Evaporating temperature o C

Options Part numbers of options supplied separately Part type/ Description TEC TEC TEC TEC.5/ TEC TEC5 TEC6 TEC TEC8 Defrost kits Ceiling Mounting Wall Mounting Wall mounting kits T LTKIT WT/LTKIT WT/ PAN T LTKIT WT LTKIT WT PAN T.5/ WT.5/ WT.5/ PAN T5/6LTKIT WT5 LTKIT WT6 LTKIT WT5 PAN WT6 PAN T/8LTKIT WT/8 WT PAN WT8 PAN A.5 0 A D B X.0 E D C 80 TEC Dimensions No. of fans A B C mm D E X Min Connections Outlet Inlet Inches Inches Approx dry weight (kg) TEC 55 5 80 5 (x) 550 0 /8 /8. TEC 55 5 80 5 (x) 550 0 /8 /8 8. TEC 690 5 80 68 (x) 550 0 /8 /8 9.8 TEC.5 865 5 80 9 (x) 550 0 / /8.0 TEC 865 5 80 9 (x) 550 0 / /8. TEC5 0 5 80 5 (x6) 550 0 / /8 6. TEC6 0 5 0 5 (x6) 550 0 5/8 / 8.5 TEC 58 5 80 8 (x6) 550 0 /8 /.0 TEC8 58 5 0 8 (x6) 550 0 /8 / 6.9 5

Reliable and efficient cooling This low profile range of NS unit coolers continues the GEA Searle philosophy of energy efficient product design. With a capacity range from.69 kw up to 6.9kW and 6mm fin spacing, these coolers are suitable for both high and low temperature applications. 6

NS Air Cooler Reliable and efficient cooling The heat exchanger incorporates Searle D fin with extended inner surface copper tube which has proved very popular since its introduction. Its unique coil geometry is highly efficient and provides a high secondary surface on which to deposit frost and extend initiation times between defrost cycles. The range is certified for its performance by Eurovent (see below) and the capacities listed are in accordance with its strict rules. Casework All the coolers are constructed from aluminum sheet panels to form a rigid but lightweight structure. To enable the unit to be lifted directly into place the drain tray is constructed from pregalvanized steel. There are key hole slots in the top plate to allow the cooler to be fitted flush to the ceiling thereby limiting the opportunities for bacterial growth. The end covers are secured by only two screws, thus making removal quick and easy for installation and service needs. Coils Standard (Cu/Al) coils are manufactured from copper tube (with extended inner surface) mechanically expanded into aluminum fins. The metric fin spacing of 6mm, this equates to approximately fins per inch. All coils are tested to.8 bar using dry air down to 0 C dew point. The Searle D fin which has been specially developed for refrigeration applications, ensures optimum heat transfer efficiency combined with minimum defrost demand and low refrigerant charge. The units have been designed with the refrigerant connections located at the left hand side when looking at the fans. Distribution System Good refrigerant distribution is essential to a achieve maximum and stable performance from any system. The NS coolers have been thoroughly tested to determine the ideal distribution system to operate over the wide range of conditions expected. The NS can be used with an internally equalized TEV. All other units must use externally equalized TEV s. Motors and Fans All units use 00rpm 8 Watt shaded pole motors fitted with 5 bladed 5mm diameter fans. These components were selected after extensive testing and trials. These pole motors conform to IP and are suitable for 0Vph50/60 Hz supply. They are individually connected back to a terminal box via a push on plug and socket which allows the motor fan assembly to be quickly and easily dismounted for service purposes. Defrost The low temperature versions of these coolers employ electric defrost systems comprising two stainless steel hairpin heater elements fitted into the coil block and one to the coil base plate. Extensive testing has been carried out to determine the optimum heater wattage necessary to clear frost formation whilst minimising power input and the risk of steaming. The heaters are individually wired to the terminal box located at the opposite end to the refrigerant connections. Fin Spacing Range NS 5 6 Al Fin material

NS Selection Data R0A Capacity @ SC kw* No of fans Air volume m /s Fan and motor specifications 0 ph 50Hz Air throw (***) m Noise level (**) Total power input Motor size F.L.C per fan SC per fan Surface area Coil data Internal volume dba W W A A m dm Connections Inlet Outlet Electric defrost W NS 6.69 0. 6.0 5 0 8 0.55.5 9.0.8 / /.9 NS5 6. 0.50 6.5 56 0 8 0.55.5.0.0 /. NS8 6. 0.9 6.0 56 0 8 0.55.5 8.0.5 /.5 NS 6. 0.5 6.5 58 0 8 0.55.5 8.0.5 / /8.8 NS 6 5.8 0. 6.0 58 0 8 0.55.5.06 6.56 / /8. NS5 6 6. 0.9 6.0 59 80 8 0.55.5 6.0 8.60 / /8. Notes: Rating conditions: The duties shown in this catalogue are at EN 8 Standard Condition (8 C saturated suction temperature, 0 C air entering). For data on refrigerants not shown, please contact your supplier. * DT is the difference between the entering air temperature and the saturated suction temperature at the outlet of the cooler. ** Noise levels are based on free field conditions at a distance of m. Actual noise levels will depend upon cold store construction, store loading and the number of coolers installed. *** Terminal air velocity 0.5m/s, free air conditions at 0 C. Air throw cannot be considered on absolute value because many factors have a substantial effect on the distance achieved. Total Power Input at Standard Condition (8 C saturated suction temperature, 0 C air entering). Refrigeration R0A Ra R50A R0A/F R0C Capacity factor (dew point, DT).00 0.9 0.9.8*.* Refrigerant charge density (kg/dm ) 0. 0.8 0. 0. 0. * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charge densities are based on 5% of the internal volume being liquid. NS Cooler DT WET R0A/50A Ra Correction factors (Multiply capacity by appropriate correction factor to give performance at chosen conditions) Note: For R0, DT is calculated from mid point evaporating temperature. 8

F 6 C A 6 Min HTR Unit to wall Heater removal 000 Min E 69 B D 00 08 / BSP (M) Drain conn 8 6 F A 6 C 6 Key hole slot / BSP (M) Drain conn 0 5 D/A F 6 A C 6 8 D/A 69 80 08 / BSP (M) Drain conn F A 6 C 6 F = Min heater Withdrawal / BSP (M) Drain conn All dimensions in mm unless otherwise stated NS Dimensions (mm) A Overall B Mounting centres C D E F Dry Weight kg NS 6 5 50 80 5 550 5 NS5 6 5 990 80 5 00 NS8 6 5 900 80 5 00 6 NS 6 5 60 80 5 00 NS 6 5 60 80 5 00 6 NS5 6 8 5 90 80 5 00 6 9

Highperformance low cost in cooling With the new KEC range, Searle is ushering in a new generation of environment friendly.9.9kw unit coolers built exclusively around low noise, high efficiency EC fansets. Specially developed for cold rooms and cool cabinets, the KEC range offers impressive energy and cost savings each fanset saves 00 a year on energy costs, significantly reducing the payback period. 0

KEC Air Cooler Highperformance low cost in cooling The GEA Searle KEC cooler is the next generation of Unit Cooler, with market leading performance, noise levels and energy efficiency. Using EC Technology as standard across the range, the power input for the KEC cooler is typically 50% that of other cooler motors. The KEC coolers cover a capacity range from. 0.kW and are ideally suited for cold room applications and cool cabinets. The range has a modern aesthetic design and is easy to install and maintain. A range of refrigerants, can be selected using selection software. Software can be obtained as a CD from your Searle representative or downloaded from our website www.searle.co.uk. The KEC defrost system has been significantly improved to offer more even defrosting. This is achieved using a greater number of elements which operate at lower temperatures and therefore minimises steaming, whilst also effecting a shorter defrost cycle. The KEC utilises the unique GEA Searle D fin which has been specifically developed for refrigeration applications and maximise the periods between defrosts. The D fin incorporates / outside diameter tube with extended inner surface rifle bore to maximise performance and balance the requirements of high efficiency heat transfer with the need to have secondary surface on which to deposit frost and maximise the periods between defrost. KEC Cooler DT WET.6.5.. R0A/50A Ra All coils are tested to.8 bar unless otherwise stated. The fansets used in the KEC are all 00mm EC fansets with internal thermal protection and are flush mounted within the casing providing a clean fascia. The KEC0, KEC5, KEC0 and KEC all utilise motors with W power input with the remainder of the range using motors with W power input. All are rated at IP+ with an operating temperature range of 0 C to +0 C and can accept 965V PH power at 50/60Hz. Correction Factor (multiplier)...0 0.9 0.8 0. 0.6 0.5 0 0 0 5 0 5 0 5 0 Evaporating temperature o C Refrigeration R0A Ra R50A R0A/F R0C Capacity factor (dew point, DT) Refrigerant charge density (kg/dm ).00 0. 0.9 0.8 0.9 0..8* 0..* 0. * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charge densities are based on 5% of the internal volume being liquid. Correction factors (Multiply capacity by appropriate correction factor to give performance at chosen conditions) Note: For R0, DT is calculated from mid point evaporating temperature. Coil Blank = HCFC, GLY = Glycol Defrost Range KEC L Al Fin material Fin Spacing

KEC Selection Data Capacity kw 8K DT (SC)* R0A Air volume Total surface area Internal volume Ref charge Coil data Connections Dry weight m /s m dm kg Inlet Outlet kg mm 6mm 8mm KEC0 KEC5 KEC0 KEC5 KEC0 KEC KEC0 KEC5 KEC55 KEC0 KEC06 KEC56 KEC06 KEC56 KEC06 KEC6 KEC06 KEC56 KEC556 KEC06 KEC08 KEC58 KEC08 KEC58 KEC08 KEC8 KEC08 KEC58 KEC558 KEC08.65.0..00..5 5.8 6.99 8.9 0.5...99.8.6.85.6 5.9.00 8.98..5..06.5.0.98 5. 6.0.9 0.8 0.8 0.9 0. 0.0 0.58 0.8 0.8.5. 0. 0. 0. 0. 0. 0.6 0.85 0.8.8.5 0. 0. 0. 0. 0. 0.65 0.86 0.86..9 8.5 0.0.. 0.5.9.9.. 56.0 5.8 6.8 9. 9...0.0 5.6 5.6 8.. 5... 0.8.. 9. 9. 9.5..9.5.5.8.. 6.5 6. 9...9.5.5.8..5 6.5 6. 9...9.5.5.8.. 6.5 6. 9. 0.5 0.6 0.8 0.8....08.0.00 0.5 0.6 0.8 0.8....08.0.00 0.5 0.6 0.8 0.8....08.0.00 / / / / / / / / / / / / / / / / / / / / / / / / / / / / / /8 /8 /8 /8 /8 /8 / / /8 /8 /8 /8 /8 /8 / / /8 /8 /8 /8 /8 /8 8 5 6 8 5 6 8 5 6 Fan and Motor specification Electric defrost No of fans Speed Air throw *** Noise level ** Total power + 0V ph50/60hz F.L.C Amps per fan SC Amps per fan Coil 0Vph50/60Hz Standard Pan Total rpm m db(a) W A A W W W KEC0 KEC5 KEC0 KEC5 KEC0 KEC KEC0 KEC5 KEC55 KEC0 0 0 0 50 50 0 50 50 50 50 6 6 6 6 5 5 55 55 5 5 66 5 5 0. 0. 0. 0.0 0.0 0. 0.0 0.0 0.0 0.0 0.5 0.5 0.5.0.0 0.5.0.0.0.0 680 680 90 90 90 600 600 600 00 00 0 0 60 60 60 800 800 800 00 00 00 00 80 80 80 00 00 00 600 600 Notes: Rating conditions: The duties shown in this catalogue are at EN 8 Standard Condition (8 C saturated suction temperature, 0 C air entering). For data on refrigerants not shown, please contact your supplier. * DT is the difference between the entering air temperature and the saturated suction temperature at the outlet of the cooler. ** Noise levels are based on free field conditions at a distance of m. Actual noise levels will depend upon cold store construction, store loading and the number of coolers installed. *** Terminal air velocity 0.5m/s, free air conditions at 0 C. Air throw cannot be considered on absolute value because many factors have a substantial effect on the distance achieved. Total Power Input at Standard Condition (8 C saturated suction temperature, 0 C air entering).

KEC 0 5 Casework 5 min 6 O/A length 00 Casework F Heater removal 500mm (either end) 9.5 6 O/A Height D/Conn 8 60 Drain pan 50.0.0 05 Drain pan Hanging bracket KEC 0 0 86 O/A length 850 Casework 89 Coil conns end F Heater removal 600mm (either end) 6 5 D/Conn 8.5.5.5 5 855 Drain pan 0 KEC 5 6 O/A length 00 Casework 550 F Heater removal 600mm (either end) 8 D/Conn.5.5 65 65 05 Drain pan KEC55 0 86 O/A length 800 Casework F Heater removal 600mm (either end) D/Conn 8.5 5 5.5 805 Drain pan Note: Maintenance access require both ends of unit All dimensions in mm, F = Min heat Withdrawal

Design thinking outside the freeze box GEA Searle has developed a green life cycle approach to the design and manufacture of refrigeration components. This ensures that in addition to looking as good in use as they do in our catalogue, our units have a worthwhile monetary value at the end of their service life. Effectively, we have engineered eventual recycling into our products when they are still on the drawing board.

KMe Air Cooler Design thinking outside the freezebox The KMe range of coolers is ideally suited to large cold rooms and small warehouses where an efficient solution is required. The KMe can also be used for industrial food processing and agricultural applications. To find the optimum model from the range it is recommended to use the Searle Selection Software. The KMe utilises the unique GEA Searle D fin which has been specifically developed for refrigeration applications. The D fin utilises ½ outside diameter tube with extended inner surface rifle bore to maximise performance. It balances the requirements of high efficiency heat transfer with the need to have secondary surface on which to deposit frost and maximise the periods between defrosts. All coils are tested to.8 bar and have a maximum operating pressure of 0. bar unless otherwise stated. KMe Options EC Fansets Air streamer to extend the air throw of the standard 00mm fanset Forkguard a guard system to prevent accidental damage from forklift trucks or similar when siting the cooler at low level. Axial fans for significantly increased air throw or for external pressure of 0Pa..6.5.. R0A/50A Ra KMe Cooler DT WET Peripheral Heaters available in conjunction with axial fans, recommended for applications below 0 C. Fan plate Heaters Heavy Electric Defrost comprises of additional coil block heaters to increase the total defrost load by approximately 0% Fan Plate Heaters to prevent fan blade contact with frost build up at low temperatures. Correction Factor (multiplier)...0 0.9 0.8 0. 0.6 0.5 0 0 0 5 0 5 0 5 0 Evaporating temperature o C Refrigeration R0A Ra R50A R0A/F R0C Capacity factor (dew point, DT) Refrigerant charge density (kg/dm ).00 0. 0.9 0.8 0.9 0..8* 0..* 0. * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charge densities are based on 5% of the internal volume being liquid. Correction factors (Multiply capacity by appropriate correction factor to give performance at chosen conditions) Note: For R0, DT is calculated from mid point evaporating temperature. Fin Spacing Fin Material Range KMe 0 6 L Al Ph EC Fanset option Defrost Electric Supply 5

KMe Selection Data Capacity kw 8K DT (SC)* R0A Air volume Total surface area Internal volume Ref charge Coil data Connections Dry weight m m dm kg Inlet Outlet kg mm KMe50 KMe60 KMe80 KMe95.6 8..0.8 0.89 0.96.89.8 8.0 56.0 50.0 6.0 6. 9.5 8..5..9.6.9 / /8 /8 /8 /8 85 9 9 6mm 8mm KMe5 KMe0 KMe5 KMe506 KMe606 KMe806 KMe956 KMe56 KMe06 KMe56 KMe508 KMe608 KMe808 KMe958 8.0..95 6.0.5 9..5.6 8.5.9 5.0 6.8 8.58..8.68.5 0.98.0.00.95.00.9.86.0.0.05.0 5.0.0.0 6.0 8.0.0 5.0 5.0 8.0 9.0 0.0 0.0.0 0.0. 8..6 6. 9.5 8..5. 8..6 6. 9.5 8..5.8 5.6 6.6..9.6.9.8 5.6 6.6..9.6.9 /8 /8 /8 / /8 /8 /8 / /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 0 95 8 09 6 9 8 0 6 KMe58 KMe08 KMe58.0..0.0.06.06 0.0 60.0.0. 8..6.8 5.6 6.6 /8 /8 /8 /8 /8 /8 6 90 Fan and Motor specification Electric defrost No of fans Diameter Speed Air throw std/ thrower *** Noise level ** 0V ph50hz Total power + F.L.C Amps per fan SC Amps per fan 00V ph50hz Total power + F.L.C Amps per fan SC Amps per fan Coil 00V ph Standard Pan Total Heavy duty Coil Total mm rpm mm m 8mm m db(a) W A A W A A W W W W W KMe50 00 0 /6 9/9 60 00.05. 00 0.65.6 590 95 85 650 95 KMe60 00 0 9/9 / 60 00.05. 00 0.65.6 00 00 600 000 00 KMe80 00 0 9/9 / 6 00.05. 00 0.65.6 0 590 80 500 590 KMe95 00 0 /6 9/9 6 00.05. 00 0.65.6 0 590 80 500 590 KMe5 00 0 9/9 / 65 600.05. 600 0.65.6 800 00 00 8000 00 KMe0 00 0 /6 9/9 65 600.05. 600 0.65.6 800 00 00 8000 00 KMe5 00 0 /6 9/9 66 800.05. 800 0.65.6 560 80 860 900 80 Notes: Rating conditions: The duties shown in this catalogue are at EN 8 Standard Condition (8 C saturated suction temperature, 0 C air entering). For data on refrigerants not shown, please contact your supplier. * DT is the difference between the entering air temperature and the saturated suction temperature at the outlet of the cooler. ** Noise levels are based on free field conditions at a distance of m. Actual noise levels will depend upon cold store construction, store loading and the number of coolers installed. *** Terminal air velocity 0.5m/s, free air conditions at 0 C. Air throw cannot be considered on absolute value because many factors have a substantial effect on the distance achieved. Total Power Input at Standard Condition (8 C saturated suction temperature, 0 C air entering). 6

KMe50 6 00 5 6 Mounting CTRS 50.5 Mounting brackets details Heater removal 65 6.5 F 50.5 5 00.6 Overall drain pan 5. 0. Slot w x 5L KMe 60 6 00 Mounting CTRS 6 666 666 A.5 5.5 6.5.5 Heater removal 65 6 Mounting CTRS 6 F 66.6 5 5.9 555..6 Overall drain pan KMe80, KMe 95 68 6 90 6 Mounting CTRS 5 600 5 Heater removal 65 60.5 6 09.5 08 6.5 Mounting CTRS Drain connection BSP(M).5 6 F 8.5 5 5.9 555. 686 Overall drain pan KMe 5, KMe 0 60 09.5 6 065 Mounting CTRS 6 50.5 65 65 50.5 s A Heater removal F 80.5 5 6 Overall drain pan 65 KMe50 KMe60 KMe80 KMe95 KMe5 KMe0 KMe5 0 0 00 50 500 500 500 KMe 5 6 0 0 6 Mounting CTRS Mounting CTRS 66 600 600 600 66 Heater removal 65 F 66 5 Note: All dimensions in mm, F = Min heat Withdrawal 6 Overall drain pan

Engineering at its best The KLe range extends the K series to coolers with up to 5kW with an operating temperature range of 0 C to +50 C. The KLe range of coolers are ideally suited to larger coldstores, small food storage warehouses and various commercial applications. With the large number of coolers and available refrigerants it is recommended to employ the GEA Searle Selection Software to find the optimum model. 8

KLe Air Cooler Engineering at its best The KLe has smooth aluminium casework, with a high quality powder coated finish which makes the KLe easy to clean and offers considerable corrosion protection, ideal for all applications were food is present. Both end panels are easily removed for access to the terminal box and fitting of an expansion valve. The coils are constructed of copper tubes with aluminium fins and coil end plates, and are available in a choice of 5mm or mm fin spacing. The 500mm phase fans motors are wired to the internal terminal box and offer builtin motor protection with a voltage range of 00V +/ 0%, 50/60Hz. The KLe is available as a low temperature model with electric defrost heaters which are mounted in special tube sleeves for rapid and even defrosting. These are also wired back to the internal terminal box. KLe Options EC fansets Air streamers To extend the air throw of the standard 500mm fanset. Mounting set for hinged drain tray for easy and quick cleaning. Wall bracket Galvanised steel KLe Cooler DT WET.6 Refrigeration R0A Ra R50A R0A/F R0C.5. R0A/50A Ra Capacity factor (dew point, DT) Refrigerant charge density (kg/dm ).00 0. 0.9 0.8 0.9 0..8* 0..* 0. Correction Factor (multiplier)....0 0.9 0.8 * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charge densities are based on 5% of the internal volume being liquid. Correction factors (Multiply capacity by appropriate correction factor to give performance at chosen conditions) Note: For R0, DT is calculated from mid point evaporating temperature. 0. 0.6 0.5 0 0 0 5 0 5 0 5 0 Evaporating temperature o C Range KLe 5 5 L Fin Spacing Defrost 9

KMe Selection Data Capacity kw 8K DT (SC) R0A R50A Ra R0C Air volume Total surface area Internal volume Coil Data Refrigerant charge Connections Dry weight m /s m dm kg Inlet Outlet kg KLe55..0 0...6 6..6. 5 50 KLe905...9..6 5... 5 60 KLe05..0 9..9.... 5 89 KLe655 5..9. 6.0.9 08..5 6.6 09 5 mm KLe955.. 0...8 09.. 6.5 5 6 KLe55 8...9 8.. 6.. 9.8 5 6 KLe605.5. 9.6.9 6. 5.5 8.6 8. 5 8 KLe05 5.6 50..0 5. 5.86 6.9.0.5 8 5 KLe5 8.8 8.5 8.0 8.8...6. 5 8 KLe90. 0.8 0...6 6... 5 58 KLe0. 6.6 5.6..8 8.6.. 5 86 mm KLe65.9. 9.9..6.5.5 6.6 05 KLe95 6.0 5.. 6. 5..0. 6.5 5 KLe5.6.6 9..9.9 08.8. 9.8 5 59 KLe60....5 6.9 9. 8.6 8. 5 KLe0.8.5 9.9. 6.5.8.0.5 8 5 5 Fans & Motors Electric defrost No. of fans Speed Air throw terminal velocity 0.5 m/s Noise level ** ( ) Total power 00Vph50 FLC Amps SC Amps Coil 00Vph50 Standard Pan Total rpm m db(a) Input W Per Fan Per Fan W W W KLe5 60 8 560.0 5.0 0 500 00 KLe90 60 6 8 560.0 5.0 550 500 600 KLe0 60 86 0.0 5.0 60 860 600 KLe65 60 86 0.0 5.0 00 860 090 KLe95 60 6 88 680.0 5.0 900 80 00 KLe5 60 88 680.0 5.0 800 80 560 KLe60 60 8 89 0.0 5.0 0 90 50 KLe0 60 6 89 0.0 5.0 9080 90 0 Note: ** For average sound pressure levels at m in free field conditions, deduct 8dB. ** For a typical cold store, reflection coil create noise levels up to 8dB higher. 0

KLe 5 90 KLe 0 65 Coil Conns End Coil Conns End KLe 95 5 Coil Conns End KLe 60 0 Wall Brackets Coil Conns End A KLe Dimensions H Dimensions (mm) B T L E E E mm mm mm mm mm mm mm mm mm mm kg kg F A W Dry weights 5mm mm KLe5 KLe90 KLe0 KLe65 KLe95 KLe5 KLe60 KLe0 66 66 66 66 66 66 66 66 0 0 0 0 0 0 0 0 59 59 59 59 59 59 59 59 500 500 500 500 500 500 500 500 00 00 00 00 00 00 00 00 000 000 000 000 00 00 00 00 00 00 00 00 0 0 0 0 0 0 0 0 00 00 00 00 00 00 00 00 50 60 89 09 9 6 8 8 58 86 05 59 5

Engineering that lasts The DSR range of low profile, low air velocity, ceiling mounted, dual discharge coolers has been designed for cold rooms, laboratories, food preparation areas and similar applications.

DSR Air Cooler Engineering that lasts The DSR models have from one to four fans and are available in three fin spacings, providing capacities from 0.8kW to 5.kW. Nine models have two speed motors and all can be fitted with optional speed control. DSR coolers are available for low temperature or high temperature applications. The revolutionary design combines compactness with efficiency and attractiveness, as well as accessibility and serviceability. The casework is white epoxy painted galvanised steel. The coil is made from / O/D internally grooved copper tube with mechanical bonding to the proven GEA Searle D fin available in mm, mm or 6mm spacing. For ease of installation, the wiring and drain connection can be from either end of the unit. The range calls on the experiences and designs of previous GEA Searle coolers and provides the opportunity for close temperature control, with minimum energy demands from a compact, unobtrusive unit. Casework All external metalwork is finished in a white high gloss epoxy powder. The coil is supported by the coil end plates and supports which are in turn connected to the hanger brackets. These enable the cooler to be mounted flush to the ceiling. Efficient condensate drainage is achieved inside the unit by sloping inner drain trays, enabling the cooler to be mounted square to the ceiling. The drain assembly is reversible for convenience of installation. The DSR design includes a space allocation at the refrigerant connection end to allow the TEV to be housed inside the unit. Corrosion Protection The rigid case structure is fabricated from galvanised sheet steel. Paint is applied to external surfaces in GEA Searle s modern electrostatic powder paint plant then baked and cured at 80 C, ensuring an even, flexible and durable finish. Coils and Coil Options The coil block comprises / diameter copper tubes with an extended inner surface ensuring maximum heat transfer efficiency and minimum refrigerant charge. The tubes are mechanically expanded to form a tight interference fit into the collars of the aluminium fins. This efficient design reduces the cooler s physical size thus maximising storage capacity. Standard coils are tested to.8 bar before they leave the factory. Cu/AL Copper tubes with Aluminium fins, Cu/AV Copper tubes with vinylcoated, Aluminium fins (mm and mm fin spacing), Coils circuited for glycol. Motors and Fans All DSR units utilise internally protected single phase squirrel cage motors of a totally enclosed, air cooled, permanent capacitor type in an IP enclosure. They are individually wired via plug and socket connectors and cable trays back to a robust junction box, where an electrical bridging facility is provided. High or low speed operation (excluding DSR 00 & 6) is obtained by connecting the electrical supply to the appropriate terminals. The motors on the DSR 00 & 6 are suitable for speed control via an optional GEA Searle Triac controller. s DSR 9 to DSR 8 use a 05mm propeller type fivebladed fan with a fractional dual speed 5W motor. A pitch of is supplied for 50Hz applications and 0 for 60Hz. s DSR 00 and DSR 6 are fitted with fourbladed 05mm fans and 0W single speed motors, running at pole speed. A pitch of is supplied for 50Hz applications and 6 for 60Hz. Speed control on DSR models 00 & 6 can be utilised to tailor air velocities to suit various applications e.g to minimise possible personnel discomfort caused by airflow or noise. To achieve lower speeds on the single speed 0 Watt motors found on DSR00 and 6 models, GEA Searle offers a manually operated, Triac type speed controller which must be ordered separately. Performances for a typical speed of 800rpm are given in the Selection data. For other speeds, air flow and thermal performance are approximately proportional to speed. Operation at any speed between 600 rpm and maximum is approved. Frequency Blank = 50, 60Hz Fin Spacing Range DSR L Al Fin material Defrost

Specification and Selection data Noise Levels The noise levels given in the tables are a guide to users where noise pollution is an important factor. The test figures are based on free field, defined as: unit mounted over a reflective plane with no other reflective surface. Individual installations will have differing acoustic characteristics which will affect the noise levels. If noise is critical, advice should be sought from an acoustic consultant. Defrost Options Where electric defrost is specified, heater elements are installed beneath each coil block. s DSR 00 and DSR 6 have an additional element within each coil. (A one metre space must be allowed at one end of these two models to facilitate element withdrawal). Hot gas defrost with electric drain pan heaters can also be specified. Low temperature operation is not recommended on the mm fin spacing option. Natural defrost with fans operating is not suitable or coolers operating with a room temperature of less than 5 C. For applications below 0 C it is recommended that the optional sump heater is used. Installation Units are designed to be flushmounted to the ceiling, using the brackets incorporated into the casework. Electrical and refrigeration connections are at opposite ends but provision has been made for the electrical cabling to be ducted through a channel to the refrigeration end if required. Access is provided for service connections through the top of the unit at each end. The drain tray assembly can be reversed, allowing the drain connection to be sited at the preferred end. The standard drain connection is a / BSP horizontal connection, mm long and welded to the end of the sump. Serviceability Serviceability and accessibility were paramount in the design of the DSR range. Access to components such as fans, motors and defrost heaters is simple and rapid through either the fan guard or heater covers/drain trays. Removable end panels enable easy access to the electrical junction box and refrigeration connections. Motors can be removed rapidly, due to a simple plug and socket connector and straightforward mounting plate. Quality Assurance GEA Searle is a certified company to BS EN ISO 900 which is the highest Quality Assurance qualification currently available, covering Performance Testing, Manufacturing Systems and Inspection Procedures. Rating Conditions The duties shown in this catalogue are at EN 8 Standard Condition (8 C saturated suction temperature, 0 C air entering). Certification The range is certified under the Eurovent CERTIFYALL direct expansion air coolers program, with performances tested in accordance with EN 8. Location The DSR is designed to draw air in the bottom and discharge it horizontally through the coils fitted on each side. For the best performance, the cooler should be placed at the geometric centre of the room or module in which it is operating. Mounting The DSR is primarily designed for flush ceiling mounting but may also be hung on rods. The cooler must be level in both horizontal directions to ensure free drainage of condensate. Condensate Drainage The horizontal drain connection is a / BSP(T) steel stub which is welded into the base of the drain sump. The drain line must pitch down with a minimum % gradient and must terminate outside the cold room with a U trap seal. TEV Selection It is important that the TEV is sized correctly and that the valve is fitted directly onto the distributor inlet or as close to it as possible. The TEV should be sized for the maximum capacity at the minimum pressure drop across it, which occurs at the minimum condensing pressure. In addition, the following allowance must be made for the cooler s distributor and leads: Distributor system pressure drop R0A, R50A, R0A Ra.5 Bar.0 Bar Externally equalised expansion valves should be used on all models.

Standard (high speed) mm mm 6mm 6 6 8 8 9 9 56 56 60 60 6 6 8 8 9 9 56 56 60 60 6 6 8 8 9 9 56 56 60 60 0 0 0 0 0 0 0 9 0 0 9 9 5 5 5 5 55 55 60 60 9 9 5 5 5 5 55 55 60 60 9 9 5 5 5 5 55 55 60 60 0. 0. 0. 0. 0. 0. 0. 0. 0.8 0.8 0. 0. 0. 0. 0. 0. 0. 0. 0.8 0.8 0. 0. 0. 0. 0. 0. 0. 0. 0.8 0.8 0.8 0.8 0.8 0.8 0.8 0.8 0.8 0.8.85.85 0.8 0.8 0.8 0.8 0.8 0.8 0.8 0.8.85.85 0.8 0.8 0.8 0.8 0.8 0.8 0.8 0.8.85.85 0. 0.0 0.60 0.58 0.90 0.86.0.5.65. 0. 0.0 0.6 0.59 0.9 0.88..8..56 0. 0. 0.6 0.6 0.9 0.9.5..8. DSR9 DSR DSR6 DSR DSR5 DSR6 DSR68 DSR8 DSR00 DSR6 DSR9 DSR DSR6 DSR DSR5 DSR6 DSR68 DSR8 DSR00 DSR6 DSR96 DSR6 DSR66 DSR6 DSR56 DSR66 DSR686 DSR86 DSR006 DSR66..88.6 5.9 6.9.8 9. 0.58.0.9..6.06.95 6.5.0 8.9 9.90.96.0.8.9...95 6. 6.68 8. 0.05. Motor details 0V ph 50Hz Total power input *** FLC per fan Noise level R0A Air throw m /s SC per fan Speed RPM m Capacity kw (SC) No. of fans amps Air volume db(a) amps W Fan data Low (Low speed) s 00 and 6 should only be operated at reduced speeds through the GEA Searle triac speed controller, which must be purchased separately. Duties shoen are based on fan speeds of 800 rpm. mm mm 6mm 6 6 5 5 8 8 0 0 6 6 6 6 5 5 8 8 0 0 6 6 6 6 5 5 8 8 0 0 6 6 50 50 50 50 50 50 50 50 800 800 50 50 50 50 50 50 50 50 800 800 50 50 50 50 50 50 50 50 800 800 8 8 8 8 8 8 8 8 8 8 8 8 8 9 9 0 0 8 8 9 9 0 0 8 8 9 9 0 0 8 8 0. 0. 0. 0. 0. 0. 0. 0. 0.8 0.8 0. 0. 0. 0. 0. 0. 0. 0. 0.8 0.8 0. 0. 0. 0. 0. 0. 0. 0. 0.8 0.8 0. 0. 0. 0. 0. 0. 0. 0..85.85 0. 0. 0. 0. 0. 0. 0. 0..85.85 0. 0. 0. 0. 0. 0. 0. 0..85.85 0. 0.6 0. 0. 0.9 0. 0.66 0.6 0.9 0.86 0. 0.6 0. 0. 0.50 0.9 0.6 0.65 0.98 0.89 0. 0. 0. 0. 0.5 0.50 0.69 0.6.05 0.98 DSR9 DSR DSR6 DSR DSR5 DSR6 DSR68 DSR8 DSR00 DSR6 DSR9 DSR DSR6 DSR DSR5 DSR6 DSR68 DSR8 DSR00 DSR6 DSR96 DSR6 DSR66 DSR6 DSR56 DSR66 DSR686 DSR86 DSR006 DSR66.6.8.99..9.8 5.98 6.56 8.6 9..6.6.6.8.06.9 5.5 6. 8. 9.0.5.5.9.86...6 5.6.08 8.

DSR Selection Data Total surface area m Coil data Internal volume Approx. ref charge Connections Defrost 0V (/6mm only) mm mm 6mm dm kg Inlet Outlet kw DSR9 DSR DSR6 DSR DSR5 DSR6 DSR68 DSR8 DSR00 DSR6 8.00.00.0 9.0 9.0.0 66.0 98.0 98.0 8.0.0.0 5.0.0.0 56.0 50.0 5.0 5.0.0 9.0.0.0 6.0 6.0 8.0.0 5.0 5.0.0.50.5. 6. 6. 9. 8.0.0.0 8. 0.8.0.6.0.9.96.59.89.89 5.5 / / / / / / / / /8 /8 /8 /8 /8 /8 /8 /8.58.58.85.85.. 5.0 5.0.6.6 Refrigeration R0A Ra R50A R0A/F R0C Capacity factor (dew point, DT).00 0.9 0.9.8*.* Refrigerant charge density (kg/dm ) 0. 0.8 0. 0. 0. * Dew point capacity factors for refrigeration with high glide apply only at the nominal rating condition. Mid point factors can be used for all conditions. Refrigerant Charge Densities based on 5% of the internal volume being liquid. Capacity Standard condition Air temp./ Evap. temp Relative humidity Ratio The duties presented in the specification tables are nominal capacities for operational (or wet ) conditions. They have been calculated from the tested dry conditions, conducted in accordance with EN 8, using ratios as specified by Eurovent Standard /C/00 which are shown. Tests are conducted under dry conditions which allows performance to stabilise and permits measurements over a prolonged period. Please note that these ratios are already included in the performance data. SC SC SC SC 0 O C / O C 0 O C / 8 O C 8 O C / O C 5 O C / O C 85% 85% 95% 95%..5.05.00 DSR Cooler DT WET R0A/50A Ra Correction Factors (Multiply capacity by appropriate correction factor to give performance at chosen conditions). Note: For R0, DT is calculated from mid point evaporating temperature 6

End view 6.5 96 Mounting centres 0 x O5 mounting slot Liquid inlet 50 outlet 90 Side view 5 C Mounting centres C Mounting centres E Fin length E Fin length Centre support DSR 68, 8, 00 and 6 only B 5 6 BSP (M) drain connection A Drain conn. / BSP Dimensions Length Depth Fixing centres Fin length mm mm mm mm Dry weight (kg) A B C E mm mm 6mm DSR9 DSR DSR6 DSR DSR5 DSR6 DSR68 DSR8 DSR00 DSR6 80 80 0 0 80 80 0 0 0 0 66 66 66 66 66 66 66 66 580 580 00 00 50 50 05 x 05 x 05 x 05 x 550 550 000 000 500 500 000 000 000 000 5 6 8 88 0 8 6 50 6 8 56 59 9 85 0 55 56 58 8 8 0 0 5 6

GEA Searle industrial Air Coolers engineering for a better world SM Cooler The standard GEA Searle cooler casework is powder coated, oven cured at 80 o C to provide a hard durable finish. The SM, LSR and FM coolers are manufactured using aluminium casework. GEA Searle s range of industrial air coolers guarantee the continued excellence of our product range in terms of innovation, design and performance to offer the ideal cooler at a competitive price. The range comes with many benefits which is often utilised across many industries the applications include small and large cold rooms and cabinets, warehouses, food storage and preparation rooms, freezers and blast freezing. Due to the large number of models available and the range of alternative refrigerants, selection of the optimum cooler is best performed using the latest Searle Selection Software. The software can be obtained direct from your GEA Searle representative or downloaded from the GEA Searle website www.searle.co.uk Motors, Fansets & Casework GEA Searle selects the optimum combination of motors and fans to deliver the best performance for the cooler size and application range. All motors and fansets are verified for power input and air volume in our Research & Development department. Specific motor data details are provided in the relevant section for each cooler type. The LSR, SM and FM coolers are manufactured using galvanised sheet case work, white or grey power coated, oven cured at 80 o C to provide a guard durable finish. The duties presented in the specification tables are nominal capacities for operational (or wet ) conditions. They have been calculated from the tested dry conditions, conducted in accordance with EN 8, using ratios as specified by Eurovent Standard /C/00. Tests are conducted under dry conditions which allows performance to stabillise and permits measurement over a prolonged period. Please note that these ratios are already included in the performance data. 8

Cooler range benefits Unit coolers combine versatility and aesthetic design *Dew point capacity factors for refrigerants with high glide apply only at the nominal rating condition. Mid point factors can be used for all conditions. Refrigerant Charge Densities based on 5% of the internal volume being liquid. *Dew point capacity factors for refrigerants with high glide apply only at the nominal rating condition. Mid point factors can be used for all conditions. Refrigerant Charge Densities based on 5% of the internal volume being liquid.. Range benefits Energy efficient With the increasing importance of energy efficiency as part of the selection criteria, the new GEA Searle coolers utilise fansets which offer significant energy savings over traditional motor assemblies. The SM cooler have high efficiency EC fans as standard across the range. Assured performance All our commercial unit coolers, where applicable, are certified under the Eurovent Certify All programme to guarantee that every unit will perform as specified. Backing our beliefs We offer years warranty on all products in this range, (subject to standard Terms & Conditions of Sale and excluding corrosion through misapplication). Consistent performance The ideal cooler at a competitive price Proven design and reliability in cold rooms, food storage,food preparation and cool cabinets GEA Searle coolers are approved for many applications across the world and are used extensively in convenience stores, commercial refrigeration applications and many industrial & agricultural projects. 9

Engineering that lasts The LSR range of dual discharge coolers has been developed to meet the demands of general cold storage along with those associated with food production and preparation halls. The range is divided into main sections based upon fan speed. 0

LSR industrial Cooler Engineering that lasts Refrigerant and Coil Capacity data is shown for R0A, with correction factors provided for other common refrigerants. For refrigerants and fluids not shown, including ammonia and water/glycol mixes, please consult your supplier. The D fin when fitted with extended inner surface tubes delivers high performance with competitive pricing. Within the catalogue we offer and 6mm fin pitch variants, for other fin spacing s please consult your supplier. Fans / Motors and Noise levels The pole (nominal 0 rpm) high speed, high velocity and higher noise level units are suitable for all temperatures although it should be noted that when operating above 0 o C there is a high likelihood of moisture carry over. The 6 pole (nominal 90 rpm) mid speed, velocity and noise units are suitable for all temperatures and offer the best compromise between noise and performance. The 8 pole (nominal 680rpm) offers the lowest noise, lowest speed, air velocity and noise and is particularly suited to production/ preparation halls where operators work for prolonged periods. Noise levels are quoted at a distance of m from the unit at an angle of 5 to the horizontal within a free field condition. The figures are supplied as a guide only, showing comparative noise levels between models and fan selections. If the application was noise sensitive we would advise the appointment of an independent noise consultant. LSRCooler DT WET Correction Factor (multiplier).6.5.....0 0.9 0.8 R0A/50A Ra Note: For R0, DT is calculated from mid point evaporating temperature Air Throws and Pump Circulation Air throws quoted within this catalogue are based on a terminal velocity of 0.5m/s in ideal conditions. Store layout, cooler location and discharge orientation can affect the air throw. Please refer to your supplier for further information. For Pump Circulation arranged as bottom feed for pump rates between : and 5:. For other pump rates please refer to your supplier. Defrost Options Electric defrost coil and draintray Stainless steel heater elements with hermetically sealed terminals are prewired to a common junction box. Additional options available include double skinned and insulated drainpans, and isolator per fan. 0. 0.6 0.5 0 0 0 5 0 5 0 5 0 Evaporating temperature o C Rating Conditions The duties shown in this catalogue are at Eurovent Standard /C/00, Standard Condition (8 o C saturated suction temp. (dew point), 0 o C air entering). Capacities are based on DT the difference between the entering air temperature and the saturated suction temperature at the outlet of the cooler. No. of fans Fan speed Fan speed Range LSR D EL Cu/Al Coil material Height of case Coil depth No. of rows Defrost

pole high speed (low temperature, evaporating below 0 o c) 6mm mm Fin spacing LSRD LSR6D LSRD LSR6D LSRD LSR6D LSRD LSR6D LSR6D LSR66D LSR6D LSR66D LSR6D Capacity R0A..6 5. 9. 8..5 50.9 59. 0.9..5.. Motor details 00V ph 50Hz 00 00 00 00 00 00 800 800 00 00 00 00 00.50.50.50.50.50.50.50.50.50.50.50.50.50 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 5.0 90 90 90 90 90 90 90 90 90 90 90 90 90 Fan data (500mm dimeter).9.8.86.55 5.8 5...0.5.0.9. 6. 0 0 0 0 6 6 6 6 66 66 6 6 6 6 6 6 66 Connections /8 /8 / / /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 Internal volume 9..0.5 6. 5. 8.6.6 8.8 9..0.5 6. 5. Surface area 0.5 5.5 0 5 5 0 0.5 5.5 69 0 0 Defrost heater loads at 00V Total FLC SC Air Air Noise No. of power per fan per fan Speed Coil volume throw level Inlet Outlet Tray fans input @m ( off) ( off) kw W Amps Amps RPM m /s m db(a) dm m kw kw.. 6. 6. 9.5 9.5.... 6. 6. 9.5.6.6...8.8 6. 6..6.6...8 LSR66D 0.9 00.50 5.0 90 6.0 66 /8 8.6 55 9.5.8 LSR6D.9 800.50 5.0 90 8.5 6 /8 /8.6 8. 6. LSR66D 5.6 800.50 5.0 90 8. 6 /8 /8 8.8 0. 6. Note: pole coolers can be used in high temperature applications, however due to the high air velocity water carry over may occur. Energy rating is available from your local GEA Searle representative, or Selection software. Energy efficiency class does not take into account the cooler defrost Refrigeration R0A R0A/F R50A Ra R0C Capacity factor (dew point, DT).00.8* 0.9 0.9.* Refrigerant charge density (kg/dm ) 0. 0. 0. 0.8 0. * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charge densities are based on 5% of the internal volume being liquid.

6 pole high speed (High and low temperature) 6mm mm Fin spacing LSR6D LSR66D LSR6D LSR66D LSR6D LSR66D LSR6D LSR66D LSR66D LSR666D LSR66D LSR666D LSR66D Capacity R0A 9.5 0.6 9.. 8.6.9 8.. 8. 0. 6.6 0..9 Motor details 00V ph 50Hz Total power input 50 50 500 500 50 50 000 000 50 50 500 500 50 FLC per fan 0.5 0.5 0.5 0.5 0.5 0.5 0.5 0.5 0.5 0.5 0.5 0.5 0.5 SC per fan.65.65.65.65.65.65.65.65.65.65.65.65.65 90 90 90 90 90 90 90 90 90 90 90 90 90 Fan data (500mm dimeter) Air Air volume throw.9..59..88.5 5.8.69..9.89.9. 9 9 9 9 0 9 0 9 0 Noise level @m 5 5 56 56 58 58 59 59 5 5 56 56 58 Connections /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 / /8 /8 / /8 /8 /8 No. of fans Speed Inlet ( off) Outlet Coil Tray kw W Amps Amps RPM m /s m db(a) ( off) dm m kw kw Internal area Surface volume 9..0.5 6. 5. 8.6.6 8.8 9..0.5 6. 5. 50.5 5.5 0 5 5 0 0.5 5.5 69 0 0 Defrost heater loads at 00V.. 6. 6. 9.5 9.5.... 6. 6. 9.5.6.6...8.8 6. 6..6.6...8 LSR666D. 50 0.5.65 90.8 9 58 /8 8.6 55 9.5.8 LSR66D. 000 0.5.65 90 5. 0 59 /8 /8.6 8. 6. LSR666D. 000 0.5.65 90 5.5 9 59 /8 /8 8.8 0. 6. Note: Energy rating is available from your local GEA Searle representative, or Selection software. Energy efficiency class does not take into account the cooler defrost Refrigeration R0A R0A/F R50A Ra R0C Capacity factor (dew point, DT).00.8* 0.9 0.9.* Refrigerant charge density (kg/dm ) 0. 0. 0. 0.8 0. * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charge densities are based on 5% of the internal volume being liquid.

8 pole high speed (High and low temperature) 6mm mm Fin spacing LSR8D LSR68D LSR8D LSR68D LSR8D LSR68D LSR8D LSR68D LSR68D LSR668D LSR68D LSR668D Motor details 00V ph 50Hz Fan data Defrost heater Connections Capacity Total (500mm dimeter) loads at 00V Internal area Surface FLC SC Air Air Noise R0A No. of power per fan per fan Speed Coil volume throw level Inlet Outlet Tray volume fans input @m ( off) kw W Amps Amps RPM m ( off) /s m db(a) dm m kw kw.6 8. 5. 6... 0..9 6.5 8.0. 6. 0 0 60 60 90 90 50 50 0 0 60 60 0. 0. 0. 0. 0. 0. 0. 0. 0. 0. 0. 0............. 680 680 680 680 680 680 680 680 680 680 680 680 0.9 0.8.8.68.80.5...0.0..06 6 6 6 6 6 6 50 50 5 5 5 5 50 50 /8 /8 / / /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 9..0.5 6. 5. 8.6.6 8.8 9..0.5 6. 50.5 5.5 0 5 5 0 0.5 5.5 69 0.. 6. 6. 9.5 9.5.... 6. 6..6.6...8.8 6. 6..6.6.. LSR68D 9. 90 0.. 680. 5 /8 5. 0 9.5.8 LSR668D. 90 0.. 680.09 6 5 /8 8.6 55 9.5.8 LSR68D 6. 50 0.. 680.8 5 /8 /8.6 8. 6. LSR668D. 50 0.. 680. 6 5 /8 /8 8.8 0. 6. Note: Energy rating is available from your local GEA Searle representative, or Selection software. Energy efficiency class does not take into account the cooler defrost Refrigeration R0A R0A/F R50A Ra R0C Capacity factor (dew point, DT).00.8* 0.9 0.9.* Refrigerant charge density (kg/dm ) 0. 0. 0. 0.8 0. * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charge densities are based on 5% of the internal volume being liquid.

Dimensions and Weights LSR 65 080 Overall length 50 Fixing centres O.0 holes 65 96 Over splash guard 69 Over hangers 9 Fixing centres 50 Coil conns end 580./ drain connection LSR 69 Over open drain pans 55 Overall length 65 5 Fixing centres 65 50 O.0 holes Coil conns end 580./ drain connection Removable access panels both ends Removable access panels both ends 860.5 Required space 95.5 Required space LSR 0 Overall length 65 O.0 holes 00 Fixing centres 65 Cu/Al weight (kg) Cu/Cu weight (kg) 50 Coil conns end 590 LSR LSR6 LSR 0 80 5 80./ drain connection LSR6 LSR 00 LSR6 66 8 LSR LSR LSR6 0 05 96 65 05 Overall length 8.5 Fixing centres 8.5 Fixing centres O.0 6 holes 65 LSR6 LSR66 LSR6 LSR66 5 5 9 65 6 5 50 Coil conns end 600./ drain connection LSR6 LSR66 LSR6 LSR66 0 56 9 6 9 8 6 5

Engineering that lasts The FM range is versatile with a large number of configurations. The range is divided into heights; the FM0, FM, FM0 and the FM6, with up to fans and coil depths. Data is shown for, 6 and 8mm fin spacing. The discharge of the cooler can be vertical or horizontal. For more information please consult your sales representative. 6

FM industrial Cooler Engineering that lasts Features Versatile range of floor mounted coolers. Robust construction, designed to withstand demanding applications Capacities can be achieved with many choices of size, fin spacing and air volume. Easy access for maintenance and cleaning. Doubleskinned, insulated draintray assists defrost in low temperature applications and prevents Condensation in high temperature applications. Structural, onepiece draintray allows units to be lifted, fullyassembled, from underneath. Fin design provides high secondary surface extending operating times between defrosts. Minimal refrigerant charge. Refrigerant and Coil Capacity data is shown for R0A, with correction factors provided for other common refrigerants. For refrigerants and fluids not shown, including ammonia and water/glycol mixes, please consult your supplier. The S fin featured in this cooler has been designed to offer a large secondary cooling surface which is beneficial for industrial refrigeration applications. Frost can build over a larger surface, reducing the number of defrost cycles, and allowing the cooler to operate efficiently for longer periods. This will lead to reduced ongoing energy costs. In addition, the relatively low internal coil volume results in reduced refrigerant charge. Fans/Motors and Noise level Ducted axial fans with 5Pa of external static pressure are standard, other pressure requirements can be designed on application. Standard fans are supplied with pole, nominal 0rpm fan speeds, for working areas with noise restrictions please consult our applications department. Noise levels are quoted at a distance of m from the unit at an angle of 5 to the horizontal within a free field condition. The figures are supplied as a guide only, showing comparative noise levels between models and fan selections. If the application is noise sensitive we would advise the appointment of an independent noise consultant. Air Throws, Pump Circulation and Location Air throws quoted within this catalogue are based on a terminal velocity of 0.5m/s in ideal conditions. Store layout, cooler location and discharge orientation can affect the air throw. Please refer to your supplier for further information. Arranged as bottom feed for pump rates between : and 5:. For other pump rates please refer to your supplier. Location Incorrect unit location will adversely affect unit performance and air throw. For advice on unit location, please contact your supplier. Defrost Electric defrost coil and draintray Stainless steel heater elements with hermetically sealed terminals are prewired to a common junction box. Hot gas coil, electric draintray (HGEA, HGEB, HGEC, HGED) Incorporating four circuiting options all with electric heater rods within the draintray. Hot gas coil and draintray (HGDA, HGDB, HGDC, HGDD) Generally as above but units are supplied with a hot gas tube matrix within the draintray. Peripheral Heaters Recommended for use on all ducted axial fan options when operating below freezing, with horizontal discharge. Options A full range of turning cowls (for vertical discharge units no external static pressure) and air operated dampers are available. Other options may be available please consult our applications department for further details. Defrost Defrost Modules FM FM FM FM Drainpan.6..8 6. Defrost loads include drain pan power Peripheral heater load (where fitted) for ducted axial fan sets 800mm diameter = 60W, 900mm diameter = 0W per fan. No. of fans Fin Spacing Discharge orientation Range FM 0 6 6 A V EL Cu/Al Coil materials Height of case No. of rows Fan/Motor type Defrost

mm specification Capacity Air volume at 5Pa Surface area Section Inlet Outlet Internal volume Defrost power Sound power level Sound pressure level Air throw kw m /s m Inches Inches dm kw db(a) db(a) m FM0AA FM06AA FM0AA FM06AA FM0AA FM06AA FMAB FM6AB FM6AB FM66AB FM6AB FM66AB FM06AC FM066AC FM06AC FM066AC FM0AC FM06AC FM66AD FM66AD FM66AD FM68AD FM66AD FM68AD 6.. 5. 6.5 80. 96. 9.. 5.9.0 88. 06.6.9 9..0.8 6.5 8..6.0 6.6 96.6.8 65.0.5.9 9.0 8.9.59.56.5.5 9.50 8.90.5..06.65 8.0..0.9 5.9 5.0.08.5 0. 0.05.5 06. 5.0.5.5 68.8 65.0.5 0.0 95. 95..6.5 68.8 68.8 98. 85..6.6 990..9 85. 85. 980. / / / x / / / / / x / x x / x / x / x / x / x / x / x / x / x / x / /8 /8 /8 /8 x 5 /8 /8 /8 /8 x x /8 x /8 x x x x /8 x x x x /8 x /8 x /8 6 8 9 06 6 59 8 85 8 09 0 58 0 08 0 9 5 5 6 0 9 9 6 0 9 9 6 9 9 9 8 58 5 50 6 6 90 9 9 9 9 99 99 9 9 9 9 99 99 0 0 0 0 0 0 0 0 05 05 06 06 80 80 8 8 80 80 8 8 8 8 86 86 8 8 86 86 88 88 89 89 5 5 5 5 5 5 5 5 5 55 50 55 50 55 50 5 9 5 9 5 9 6mm specification Capacity Air volume at 5Pa Surface area Section Inlet Outlet Internal volume Defrost power Sound power level Sound pressure level Air throw kw m /s m Inches Inches dm kw db(a) db(a) m FM066AA FM086AA FM066AA FM086AA FM066AA FM086AA FM66AB FM86AB FM66AB FM86AB FM66AB FM86AB FM066AC FM086AC FM066AC FM086AC FM066AC FM086AC FM666AD FM686AD FM666AD FM686AD FM666AD FM686AD 6. 9.9 5.9 6. 9. 9.5 9.. 58.5 6. 88.8 00.8. 86..6 9. 9.6.6 9. 0.8.6 65.8 90..5.8 8.89 8.55..8..5 9. 9.0..5.0.65 8.0..0.9 5.8 5..6.9.5.0 0.0 86.8 80.0. 0. 560.5 68.0. 6. 8. 50. 6.6 0. 560.5 60.6 80.8 80.8. 50.5 6.6 56. 009.0 009.0 5. / / x / / / / / x / x / x / x / x / x / x / x / x / x / x / x / x / x / /8 /8 /8 x /8 /8 /8 /8 x /8 x x /8 x /8 x x x x x x x x /8 x x 8 50 95 06 6 6 8 5 8 09 58 09 08 6 0 9 5 5 6 0 9 9 6 0 9 9 6 9 9 9 8 58 5 50 6 6 90 9 9 9 9 99 99 9 9 9 9 99 99 0 0 0 0 0 0 0 0 05 05 06 06 80 80 8 8 80 80 8 8 8 8 86 86 8 8 86 86 88 88 89 89 50 8 50 8 50 8 5 5 5 5 5 5 5 5 5 5 5 5 56 5 56 5 56 5 8

8mm specification Capacity kw Air volume at 5Pa m /s Surface area m Section Inlet Inches Outlet Inches Internal volume dm Defrost power kw Sound power level db(a) Sound pressure level db(a) Air throw m FM068AA..6 0. /8 8 9 5 FM088AA 5.9.5.8 /8 50 9 50 FM068AA.6 9.. / /8 9 80 5 FM088AA 5. 8.89 85.5 / 95 9 9 80 50 FM068AA 66..86. x / x 5 /8 06 6 99 8 5 FM088AA 5.5. 8. / /8 99 8 50 FM68AB..80 8.5 /8 6 9 55 FM88AB 5..6. /8 6 9 5 FM68AB 8.5 9.60 5.0 / 8 9 80 55 FM88AB 5. 9..6 / 5 9 9 80 5 FM68AB.8.0 85. x / x /8 8 6 99 8 55 FM88AB 86.6.0 5.9 x / x /8 99 8 5 FM068AC 6.6.. x x /8 09 9 0 8 56 FM088AC..00 8. x / x /8 8 0 8 56 FM068AC 9 8. 8.8 x / x /8 58 0 86 5 FM088AC 0. 8.00 6. x / x 09 58 0 86 5 FM068AC.. 6. x / x 08 58 0 8 56 FM088AC 5.00 856.6 x / x 6 0 8 5 FM668AD.5 5.95 85. x / x /8 0 0 86 58 FM688AD 9. 5. 5.9 x / x 5 0 86 56 FM668AD.5.9 58. x / x 9 50 05 88 58 FM688AD 0..65 0.9 x / x 5 6 05 88 56 FM668AD FM688AD 5 86.8.89.5 0.9 0.9 x / x / x x 5 6 6 90 06 06 89 89 58 56 FM Cooler DT WET.6.5. R0A/50A Ra Note: For R0, DT is calculated from mid point evaporating temperature Correction factors Correction Factor (multiplier)....0 0.9 0.8 Refrigeration R0A Ra R50A R0A/F R0C Capacity factor (dew point, DT) Refrigerant charge density (kg/dm ).00 0. 0.9 0.8 0.9 0..8* 0..* 0. * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charges densities are based on 5% of the internal volume being liquid. 0. 0.6 0.5 0 0 0 5 0 5 0 5 0 Evaporating temperature o C General Note: All data for 00V, phase, 50Hz supply. Noise levels are quoted at a distance of m from the units (free field).capacities are nominal, based on DT dew point and stated at Eurovent standard condition (8 o C saturated suction temp, 0 o C air entering). Fan data Fanset Diameter Pole FLC/SC Power input kw AA AB AC AD 800mm 800mm 800mm 800mm pole pole pole pole 5.8/0A 5.8/0A 5.8/0A 9./55A... 5. 9

FM dimensions Vertical 00 080 0 0 Opening 0 0 Air operated damper & crowl extension (defrost units) 0 opening 50 00 0 50 50 MNTG CRS Vertical discharge with spigot attachment option 85 Mesh guard fitted on all coils 0 Heater removal 000 Min 0 Heater removal 000 Min 0 Rfrig. connections Power supply input A B Rfrig. connections Power supply input A B BSP (M) Drain conn 55 MNTG CRS 50 6mm MTG hole BSP (M) Drain conn 5 MNTG CRS 5 MNTG CRS 50 6mm MTG hole 5 Heater removal 000 Min 0 Rfrig. connections Power supply input A B BSP (M) Drain conn 5 MNTG CRS 5 MNTG CRS 5 MNTG CRS 50 6mm MTG hole 500 Heater removal 000 Min 0 Rfrig. connections Power supply input A B Dim A Dim B FM0 06 969 FM 9 FM0 5 FM6 89 8 BSP (M) Drain conn 5 MNTG CRS 5 MNTG CRS 5 MNTG CRS 5 MNTG CRS 50 6mm MTG hole 50

FM dimensions Horizontal Heater removal 000 Min BSP (M) Drain. conn Heater removal 000 Min Rfrig. connections BSP (M) Drain conn. 00 C Air operated 00 50 85 damper & guard (defrost units) Heater removal 000 Min 50 50 BSP (M) 55 Drain conn MNTG CRS Heater removal 000 Min Rfrig. connections Rfrig. connections BSP (M) Drain conn 5 MNTG CRS 5 MNTG CRS 0 5 5 MNTG CRS 5 MNTG CRS 500 Power supply input 5 MNTG CRS 5 MNTG CRS A Power supply input 0 5 5 6mm 50 MNTG CRS MNTG CRS MTG hole B 50 6mm MTG hole 5 MNTG CRS 0 A Dim A Dim B FM0 06 68 FM 9 6 FM0 5 96 FM6 89 8 B Power supply input A 0 6mm 50 MTG hole B 0 A 6mm 50 MTG hole Dim C 595 595 5 5 B 0x 06x 08x x 6x 8x 0x 06x 08x 6x 66x 68x 0x 06x 08x x 6x 8x 0x 06x 08x 6x 66x 68x (kg) Cu/Al 50 565 6 550 65 00 6 6 80 0 86 99 88 9 0 86 0 6 00 8 6 8 56 Weight Cu/Cu 5 88 55 89 5 58 556 6 66 6 69 5 686 59 8 80 9 89 958 06 9 06 95 0x 06x 08x x 6x 8x 0x 06x 08x 6x 66x 68x 0x 06x 08x x 6x 8x 0x 06x 08x 6x 66x 68x (kg) Cu/Al 0 58 9 0 6 0 6 9 58 86 9 9 605 85 9 89 08 9 08 90 8 86 Weight Cu/Cu 9 09 8 996 6 56 0 6 5 9 6 56 00 9 595 650 866 5 8 09 5

Engineering that lasts The SM range has been designed to be as versatile as possible, whilst allowing unit selections to be easily made. The following specification pages have been laid out to ease the selection process. Unit sizes and coils have been matched with different fan/ motor combinations to broadly meet two common operating conditions. 5

SM industrial Cooler Engineering that lasts Features Versatile range of floor mounted coolers. Robust construction, designed to withstand demanding applications. Capacities can be achieved with many choices of size, fin spacing and air volume. Can be flushmounted to ceiling. Easy access for maintenance and cleaning. Structural, onepiece draintray allows units to be lifted, fullyassembled, from underneath. Fin design provides high surface area for frost buildup. Minimal refrigerant charge. Doubleskinned, insulated draintray assists defrost in low temperature applications and prevents condensation in high temperature applications.. High temperature applications such as store rooms and occupied areas. These units, with either propeller or ducted axial fans, feature low face velocities, low noise and high efficiency. These fans have also been selected to ensure that there is no water carryover.. Low temperature applications such as cold storage or blast freezing in generally unoccupied areas. These units, with ducted axial fans, feature high face velocities and high air throws where low noise levels are not required. These units offer greater duty for a given size than high temperature units. The choice of particular units is not restricted to these operating conditions, but greater care will need to be taken in the application of units outside the given conditions. For example, water carryover could occur when operating low temperature units in certain high temperature applications. The range is divided into heights; the SM6, SM0, SM and the SM0, with up to fans either propeller or ducted axial and coil depths. Data is shown for, 6 and 8mm fin spacing. Refrigerant Capacity data is shown for R0A, with correction factors provided for other common refrigerants. For refrigerants and fluids not shown, including ammonia and water/glycol mixes, please consult your supplier. This will lead to reduced on going energy costs. In addition, the relatively low internal coil volume results in reduced refrigerant charge. Fan/Motors and Pump circulation Propeller or ducted axial fans with varying face velocities and air throws are offered to provide optimum performance in the two broad operating conditions outlined in General above. Pump circulation arranged as bottom feed for pump rates between : and 5:. For other pump rates please refer to your supplier. Location and Air throw Incorrect unit location will adversely affect unit performance and air flow. Units should be adequately spaced from walls to ensure even air coverage over the coil block. For advice on unit location, please contact your supplier. Air throws quoted within this catalogue are base on a terminal velocity of 0.5m/s in ideal conditions. Store layout, cooler location and type of fan can affect the air throw. Please refer to your supplier for further information. Noise Levels and Defrost Noise levels are quoted at a distance of m from the unit at an angle of 5 to the horizontal within a free field condition. The figures are supplied as a guide only, showing comparative noise levels between models and fan selections. If the application is noise sensitive we would advise the appointment of an independent noise consultant. Electric defrost coil and draintray Stainless steel heater elements with hermetically sealed terminals are prewired to a common junction box. Hot gas coil, electric draintray (HGEA, HGEB, HGEC, HGED) Incorporating four circuiting options all with electric heater rods within the draintray. Hot gas coil and draintray (HGDA, HGDB, HGDC, HGDD) Generally as above but units are supplied with a hot gas tube matrix within the draintray. Fan Plate Heaters. For high latent load applications, fan plate heaters are available as an option on propeller fan units. No. of fans Fin Spacing Defrost Range SM 6 A EL Cu/Al Coil materials Height of case Coil depth Fan/Motor type 5

mm specification High/low temperature Low face velocity, low capacity, low air throw, compact unit Air entering 5 O C to + 0 O C Propeller Fan / Motor R0A capacity Air volume kw m /s Air throw m Noise db(a) Air entering 5 O C to + 0 O C Ducted Axial Fan / Motor R0A capacity Air volume kw m /s Air throw m Noise db(a) Connections Outlet Inlet Surface area Internal Defrost volume power m dm kw SM6 SM66 SM6 SM66 SM6 SM66 SM0 SM06 SM0 SM06 SM0 SM06 SM SM6 SM SM6 SM SM6 SM0 SM06 SM0 SM06 SM0 SM06 P Dia. = 60mm 6 pole FLC/SC =.8/5.A input = 80W P Dia. = 60mm 6 pole FLC/SC =.8/5.A input = 80W 8....0 5. 6.8. 5..6 50. 6. 6.0.56.0 5.0.8.66...0 6.8 6.08 9. 9. 8 8 8 59 59 6 6 6 6 59 59 6 6 6 6 A Dia. = 60mm 6 pole FLC/SC =.5/.5A input = 0W A Dia. = 0mm 6 pole FLC/SC =.5/.5A input = 680W A Dia. = 800mm 8 pole FLC/SC =./6.8A input = 000W A Dia. = 800mm 8 pole FLC/SC =./6.8A input x = / 000W 8.9..0.9 56. 6.. 5..0 5. 65..6 5.9 6.8 8.6 9. 08.6. 6.. 9. 09.8....56 5. 5. 8.8.68.0.8 6.0 5.66 9.06 8.50.0..6 0.8 5.0. 8.8.80.8.68 6. 5.58 9 6 9 6 9 6 9 9 9 58 58 6 6 6 6 60 60 6 6 65 65 66 66 68 68 69 69 66 66 68 68 69 69 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 x /8 /8 /8 x /8 x /8 x /8 x /8 / /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 x /8 /8 /8 x /8 x /8 x /8 x /8 0 65 0 0 0 95 06 5 69 0 95 95 660 990 69 69 98 85 0 0 8 58 5 8 6 8 9 06 59 8 85 8 66 09 0 58 0 08 0 9 9 0 9 9 6 9 9 6 8 8 9 9 9 8 58 mm specification Low temperature High face velocity, high capacity, high air throw, compact unit Fan / Motor Air entering O C to 0 O C Propeller R0A Air capacity volume kw m /s Air throw m Noise db(a) Outlet Connections Inlet Surface area Internal volume Defrost power m dm kw SM6 SM66 SM6 SM66 SM6 SM66 SM0 SM06 SM0 SM06 SM0 SM06 SM SM6 SM SM6 SM SM6 SM0 SM06 SM0 SM06 SM0 SM06 A Dia. = 60mm pole FLC/SC =.8/A input = 890W A5 Dia. = 800mm 6 pole FLC/SC =./5A input = 000W A5 Dia. = 800mm 6 pole FLC/SC =./5A input = 000W A6 Dia. = 000mm 6 pole FLC/SC = 5.8/A input = 55W.8 8. 5. 56.0 68. 8. 9.8 6.5 59.5. 90. 09.8 6. 8. 0... 6. 8.8 99.8 6.5 50. 65.6 99.0.6.58.5..8 0. 5.0.66 0.08 9. 5.0.96 0. 0.08 6.6 5.0.8 0..8. 0.08 8. 6.8. 8 6 6 8 6 5 5 5 5 5 5 5 5 5 5 9 5 9 5 9 69 69 5 5 8 8 9 9 8 8 /8 /8 /8 /8 /8 x /8 /8 /8 /8 x /8 x /8 x /8 /8 x /8 x /8 x /8 x /8 x /8 /8 /8 /8 /8 /8 /8 x /8 /8 /8 /8 x /8 x /8 x /8 /8 x /8 x /8 x /8 x /8 x /8 0 65 0 0 0 95 06 5 69 0 95 95 660 990 9 69 98 85 0 0 8 58 5 8 6 8 9 06 59 8 85 8 66 09 0 58 0 08 0 9 9 0 9 9 6 9 9 6 8 8 9 9 9 8 58 5

6mm specification High/low temperature Low face velocity, low capacity, low air throw, compact unit Air entering 5 O C to + 0 O C Propeller Fan / Motor R0A Air capacity volume kw m /s Air throw m Noise db(a) Air entering 5 O C to + 0 O C Ducted Axial Fan / Motor R0A Air capacity volume kw m /s Air throw m Noise db(a) Connections Outlet Inlet Surface area Internal Defrost volume power m dm kw SM66 SM666 SM686 SM666 SM686 SM66 SM6 SM066 SM086 SM066 SM086 SM066 SM086 SM66 SM86 SM66 SM86 SM66 SM86 SM066 SM086 SM066 SM086 SM066 SM086 P Dia. = 60mm 6 pole FLC/SC =./5A input = 650W P Dia. = 60mm 6 pole FLC/SC =./5A input = 650W.8 8.6. 56..9.8 65.9.0.56 5.0.66. 6.8 9. 9 8 8 8 59 59 6 6 59 6 6 A Dia. = 60mm 6 pole FLC/SC =.5/.5A input = W A Dia. = 0mm 6 pole FLC/SC =.8/.A input = 60W A Dia. = 800mm 8 pole FLC/SC = 5. 9.. 9.0. 58. 65.0..8.6 9... 5.0 6. 85.8.88..56 5. 5. 8.8.68.98.88 5.9 5.6 8.9 8.6.0..60 9 9 95.8.0 68 x /8 x /8 6 68./6.8A input = 000W. 5.0 9 69 x /8 x /8 6 66 8 6.5.6 69 x /8 x /8 89 58 6. 8.8 66 /8 /8 0 09 9 A Dia. = 800mm..88 0 66 /8 /8 56 8 8 pole 96.0.6 68 x /8 x /8 6 58 FLC/SC = 0..88 0 68 x /8 x /8 8 0 58./6.8A x /. 6. 69 x /8 x /8 8 08 58 input = 000W.6 5.8 0 69 x /8 x /8 6 58 58 58 6 6 6 6 60 60 6 6 65 65 66 66 68 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 / /8 /8 /8 /8 /8 /8 /8 /8 /8 /8 5 9 99 6 8 0 8 80 0 56 6 8 505 0 0 0 5 8 8 50 96 06 0 8 5 0 9 9 9 9 6 9 6 6mm specification Low temperature High face velocity, high capacity, high air throw, compact unit Fan / Motor Air entering O C to 0 O C Propeller R0A Air capacity volume kw m /s Air throw m Noise db(a) Outlet Connections Inlet Surface area Internal volume Defrost power m dm kw SM66 SM666 SM686 SM666 SM686 SM66 SM6 SM066 SM086 SM066 SM086 SM066 SM086 SM66 SM86 SM66 SM86 SM66 SM86 SM066 SM086 SM066 SM086 SM066 SM086 A Dia. = 60mm pole FLC/SC =.8/A input = 890W A5 Dia. = 800mm 6 pole FLC/SC =./5A input = 000W A5 Dia. = 800mm 6 pole FLC/SC =./5A input = 000W A6 Dia. = 000mm 6 pole FLC/SC = 5.8/A input = 65W.8. 6.8 6.8 5.8 0. 80.9 0.8.9 6.8.0 9.0 05.8 69. 9.0 0.0 8.5 9. 5. 86.0 9.8 0.0 6...86.6.5..06 0.86 0.58.9.6 9.88 9.50.8.6 0.6 0.6 5.96 5.0.8 0..0.5 9.8 8.8 6.8 50 6 5 6 5 6 5 50 8 50 8 50 8 5 5 5 5 5 5 5 5 5 5 5 69 69 69 5 5 8 8 9 9 8 /8 /8 /8 /8 /8 /8 x /8 /8 /8 x /8 x /8 x /8 x /8 x /8 x /8 x /8 x /8 x 90.9 5.0 5 8 x /8 /8 /8 /8 /8 /8 x /8 /8 /8 /8 x /8 x /8 x /8 x /8 x /8 x /8 x /8 x /8 x /8 5 9 99 6 8 0 8 80 0 56 6 8 505 6 6 89 0 56 6 8 8 0 0 0 5 8 8 50 96 06 0 8 5 68 66 09 58 0 08 0 9 9 9 9 6 9 6 8 58 9 8 58 58 x /8 6 55

8mm specification High/low temperature Low face velocity, low capacity, low air throw, compact unit Air entering 5 O C to + 0 O C Propeller Fan / Motor R0A Air capacity volume kw m /s Air throw m Noise db(a) Air entering 5 O C to + 0 O C Ducted Axial Fan / Motor R0A Air capacity volume kw m /s Air throw m Noise db(a) Connections Outlet Inlet Surface area Internal Defrost volume power m dm kw SM68 SM668 SM688 SM668 SM688 P Dia. = 60mm 6 pole FLC/SC =./5A input = 650W. 5.8.9.0.60 5.0 9 8 8 59 59 6 A Dia. = 60mm 6 pole FLC/SC =.5/.5A input = 0W.8 6.6 9.. 8..88.8.68 5.56 5. 6 6 58 58 58 6 6 /8 /8 /8 /8 / /8 5 86 8 0 0 0 5 0 9 SM668 8.0.80 8 6 50.0 8. 6 6 /8 /8 5 8 9 SM68 58. 8.0 6 /8 /8 9 SM068 SM088 SM068 SM088 P Dia. = 60mm 6 pole FLC/SC =./5A input = 650W 8...0 6.8 59 6 A Dia. = 0mm 6 pole FLC/SC =.5/.5A input = 680W 8.8 0.0.6..0.9 6.0 5.86 60 60 6 6 /8 /8 /8 /8 /8 0 86 8 50 96 9 SM068 56.6 9.58 6 5. 9.06 65 /8 /8 06 6 SM088 66.0 8.8 65 /8 /8 8 0 SM68 SM88 SM68 SM88 A Dia. = 800mm 8 pole FLC/SC =./6.8A input = 000W 8. 56..6 86.0.88.0.88.60 0 9 0 9 66 66 68 68 /8 /8 /8 x /8 /8 /8 /8 x /8 5 86 5 8 5 68 9 6 SM68 9. 5.8 0 69 x /8 x /8 5 66 8 SM88. 5.0 9 69 x /8 x /8 685 58 SM068 SM088 SM068 SM088 SM068 SM088 A Dia. = 800mm 8 pole FLC/SC =./6.8A input = 000W x / 55.0 6.8 8.5 9. 08. 8.6 8.8.5.6 6. 66 66 68 68 69 /8 /8 x /8 x /8 x /8 /8 /8 x /8 x /8 x /8 8 8 6 6 09 58 0 08 9 8 58 58. 6. 69 x /8 x /8 85 6 SM Cooler DT WET Rating Conditions and Correction Factors.6.5. R0A/50A Ra The duties shown in this catalogue are at Eurovent Standard /C/00, Standard Condition (8 C saturated suction temp. (dewpoint), 0 C air entering). Capacities are based on DT the difference between the entering air temperature and the saturated suction temperature at the outlet of the cooler. Correction Factor (multiplier)....0 0.9 Defrost Defrost loads include drain pan power as below. Modules FM FM FM FM Drainpan.6..8 6. 0.8 0. Peripheral heater load (where fitted) for ducted axial fan sets 800mm diameter = 60W, 900mm diameter = 0W per fan 0.6 0.5 0 0 0 5 0 5 0 5 0 Evaporating temperature o C 56

8mm specification Low temperature High face velocity, high capacity, high air throw, compact unit Fan / Motor Air entering O C to 0 O C Propeller R0A Air capacity volume kw m /s Air throw m Noise db(a) Outlet Connections Inlet Surface area Internal volume Defrost power m dm kw SM68 SM668 SM688 SM668 SM688 A Dia. = 60mm pole FLC/SC =.8/A input = 890W 5. 0.0.0 0.0 8.0.9.80..6. 5 9 8 9 8 69 69 69 /8 /8 /8 / /8 /8 5 86 8 0 0 0 5 0 9 SM668 60.0. 9 /8 /8 5 8 9 SM688.. 8 /8 /8 9 SM068 SM088 SM068 SM088 A5 Dia. = 800mm 6 pole FLC/SC =./5A input = 000W 6. 0.6 5.8 6.6 5..9 0.6 9.88 5 50 5 50 /8 /8 /8 /8 0 86 8 50 96 9 SM068 8. 5.0 5 x /8 x /8 06 6 SM088 9.6.8 50 /8 8 0 SM68 SM88 SM66 SM88 A5 Dia. = 800mm 6 pole FLC/SC =./5A input = 000W 5.6 69.6 86. 0.8 0.8 0.5 6. 5.86 55 5 55 5 /8 /8 x /8 x /8 /8 /8 x /8 x /8 5 86 5 8 5 68 9 6 SM68 8.5.66 55 5 x /8 x /8 5 66 8 SM88..0 5 5 x /8 x /8 685 58 SM068 SM088 SM068 SM088 A6 Dia. = 000mm 6 pole FLC/SC = 5.8/A input = 65W.8 8. 0...68.0 0.56 9.0 55 5 55 5 8 8 9 9 x /8 x /8 x /8 x /8 x /8 x /8 x /8 x /8 8 8 6 09 58 0 9 8 58 SM068 8..6 55 8 x /8 x /8 6 08 58 SM088 69. 6.0 5 8 x /8 x /8 85 6 Note: For R0, DT is calculated from mid point evaporating temperature Correction factors Refrigeration R0A Ra R50A R0A/F R0C Capacity factor (dew point, DT) Refrigerant charge density (kg/dm ).00 0. 0.9 0.8 0.9 0..8* 0..* 0. Correction Factors (Multiply capacity by appropriate correction factor to give performance at chosen conditions) Peripheral Heaters recommended for use on all ducted axial fan options when operating below freezing. * Capacity factors for refrigerants with high glide apply only at the nominal rating condition. Refrigerant charges densities are based on 5% of the internal volume being liquid. Note: All data for 00V, phase, 50Hz supply. Noise levels are quoted at a distance of m from the units (free field).capacities are nominal, based on DT dew point and stated at Eurovent standard condition (8 o C saturated suction temp, 0 o C air entering). 5

Drawings, dimensions and weights 50 MTG CTRS 00 59 max 5.5 Heater removal 000 min 0 6x O Mounting hole 5 5 MTG CTRS E Ceiling MTD Base MTD B Aerofoil fan Prop fan A Refrig connection 8 Base MTD CTRS BSP (M) drain conn 5 Base MTD CTRS 5mm base MTG hole Heater removal 000 min 0 MTG CTRS 6x O Mounting hole 050 MTG CTRS A Refrig connection BSP (M) drain conn Base MTD CTRS Base MTD CTRS 5mm base MTG hole Heater removal 000 min 0 MTG CTRS MTG CTRS Mounting hole MTG CTRS A Refrig connection BSP (M) drain conn Base MTD CTRS Base MTD CTRS Base MTD CTRS 5mm base MTG hole Heater removal 000 min 0 MTG CTRS 5 MTG CTRS 5600 5 MTG CTRS Mounting hole MTG CTRS A Refrig connection BSP (M) drain conn Base MTD CTRS 5 Base MTD CTRS 5 Base MTD CTRS Base MTD CTRS 5mm base MTG hole 58

Case height in rows No. of fans Fins spacing mm Unit height ceiling mounted Unit height base mounted Unit weight Cu/Al (A) mm (B) mm kg 6 x 8 6 6x 6 6 90 8 6 8x 8 5 0 x 58 0 6x 0 6 96 0 8x 8 99 6 x 8 6 6x 6 6 90 6 6 8x 8 0 x 8 0 6x 0 6 50 0 8x 8 5 x 50 6x 6 6 5 59 8x 8 60 0 x 68 0 6x 0 6 68 85 0 8x 8 9 6 x 58 6 6x 6 6 99 65 6 8x 8 6 0 x 6 0 6x 0 6 95 50 0 8x 8 x 6x 6 98 5 8 8x 8 8 0 x 88 0 6x 0 6 0 85 05 0 8x 8 06 x 96 6x 6 98 5 099 8x 8 9 0 x 8 0 6x 0 6 0 85 65 0 8x 8 89 Note: Weights are maximums, based on mm fin spacing 59

CO Coolers 5 Bar general features engineering for a better world KEC Cooler The standard GEA Searle cooler casework is white powder coated, oven cured at 80 o C to provide a hard durable finish. The JG, KLe and NS coolers are manufactured using aluminium casework, while the TEC, KEC, KMe and DSR all utilise galvanised steel casing. GEA Searle offers an expanded range of CO unit coolers for commercial and retail refrigeration applications. The coolers have been optimised to meet the diverse requirements of the developing CO system designs; variables include transcritical, subcritical and standing pressures. GEA Searle have designed a one size fits all specification to apply to our most popular ranges. The cooler ranges detailed within this brochure are hybrid versions of our tried and tested TEC, KEC, KMe and DSR coolers. Whilst the coil technology employed is different the overall dimensions and electrical loadings remain as per our standard (non CO) ranges. Coils and Defrost Maximum operating pressure 5 BarG with aluminium fins as standard. Other fin materials and coatings are available upon request. Flow direction arrows added to connections to reduce on site confusion with the smaller pipe sizes and single circuit (non distributor) coils. Option for electric coil and tray. Quality Assurance GEA Searle is a quality assured under the BSEN ISO 900 encompassing Performance Testing, Manufacturing Systems and Inspection Procedures. The coolers are covered by Searle s full technical support and months warranty. 60

Cooler range benefits Correction Factor (multiplier) * Evaporating Temperature o C KD K D 0 K D 9KDT 8KDT KDT 6KDT 5KDT General Notes:. Capacities shown at SC conditions i.e. 8KDT, 8ºC evaporation temperature.. Air throws based upon terminal velocity of 0.5m/s.. Fan power is total fan power for the unit.. Noise levels quoted @m 5º directivity within free field conditions. 5. * = Designates units which have a low circuit loading. Refer to your supplier For selections below 5 C evaporating temperature. Factors apply to all CO Coolers Unit coolers combine versatility and aesthetic design Consistent performance The ideal cooler at a competitive price Proven design and reliability in cold rooms, food storage,food preparation and cool cabinets GEA Searle coolers are approved for many applications across the world and are used extensively in convenience stores, commercial refrigeration applications and many industrial & agricultural projects. Type Range KE C X 0 L Defrost CO 6

KEC Evaporator range Direct expansion CX Capacity kw Air Vol. m /s Surface m Int. Vol. dm Conn Size Weight AL kg inlet outlet Air Throw m K E C X 0 K E C X 5 K E C X 0 K E C X 5 K E C X 0 K E C X 5 K E C X 0 K E C X 5 K E C X 5 5 K E C X 0.6.50.86.0.05.6.0 6.0.09 9.0 0.8 0.8 0.9 0. 0.0 0.58 0.8 0.8.5. 5.05 5.05 6.9 6.9 0..6.6 8.9 8.9 8.0 6 6 9 9 0 8 5 5 59 8 /8 /8 /8 /8 /8 /8 /8 / / / 6 6 6 6 Pump cirulation CP Capacity kw Air Vol. m /s Surface m Int. Vol. dm Conn Size Weight AL kg inlet outlet Air Throw m K E C P 0 K E C P 5 K E C P 0 K E C P 5 K E C P 0 K E C P 5 K E C P 0 K E C P 5 K E C P 5 5 K E C P 0.6.85..85.5. 5.6.00 8.8 0. 0.8 0.8 0.9 0. 0.0 0.58 0.8 0.8.5. 5.05 5.05 6.9 6.9 0..6.6 8.9 8.9 8.0 6 6 9 9 0 8 5 5 59 8 /8 /8 /8 /8 /8 /8 /8 6 6 6 6 Fan & Noise Data K E C * 0 K E C * 5 K E C * 0 K E C * 5 K E C * 0 K E C * 5 K E C * 0 K E C * 5 K E C * 5 5 K E C * 0 Qty Dia mm 00 00 00 00 00 00 00 00 00 00 Fan Detail Speed rpm Power W 0 0 0 50 50 0 60 50 0 50 0 50 0 50 0 FLC A 0. 0. 0. 0.0 0.0 0. 0.0 0.0 0.0 0.0 SC A 0.5 0.5 0.5.0.0 0.5.0.0.0.0 Noise db(a) @m 5 5 55 55 5 5 Note: Power per unit currents per motor Dimensions and Defrost Data Dimensions Defrost Length mm Height mm Width mm Coil kw Tray kw K E C * 0 K E C * 5 K E C * 0 K E C * 5 K E C * 0 K E C * 5 K E C * 0 K E C * 5 K E C * 5 5 K E C * 0 6 6 86 86 86 6 6 6 86 86 6 6 6 6 6 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 0.68 0.68 0.9 0.9 0.9.60.60.60.0.0 0. 0. 0.6 0.6 0.6 0.80 0.80 0.80.0.0 H W L Note: See general notes on page 60 & 6 6

KMC Evaporator range Direct expansion CX Capacity kw Air Vol. m /s Surface m Int. Vol. dm Conn Size Weight AL kg inlet outlet Air Throw m K M C X 5 0 K M C X 6 0 K M C X 8 0 K M C X 9 5 K M C X 5 K M C X 0 K M C X 5 6.6.65 0.08.9 5. 9.5.5 0.89 0.96.89.8.8.68.5 8.6.05. 6.5 6.5 5.8 6.9 6 9 8 9 9 0 50 8 / / / / / 9 9 9 Pump cirulation CP Capacity kw Air Vol. m /s Surface m Int. Vol. dm Conn Size Weight AL kg inlet outlet Air Throw m K M C P 5 0 K M C P 6 0 K M C P 8 0 K M C P 9 5 K M C P 5 K M C P 0 K M C P 5.0 8.65.0.9 8.0.9 8.8 0.89 0.96.89.8.8.68.5 8.6.05. 6.5 6.5 5.8 6.9 6 9 8 0 9 0 50 8 /8 /8 /8 /8 9 9 9 Fan & Noise Data Qty Dia mm Speed rpm Power W Fan Detail 0V ph 50Hz FLC A SC A 00V ph 50Hz FLC A SC A Noise db(a) @m K M C * 5 0 K M C * 6 0 K M C * 8 0 K M C * 9 5 K M C * 5 K M C * 0 K M C * 5 00 00 00 00 00 00 00 0 0 0 0 0 0 0 90 90 80 80 50 50 60.05.05.05.05.05.05.05.5.5.5.5.5.5.5 0.65 0.65 0.65 0.65 0.65 0.65 0.65.5.5.5.5.5.5.5 60 60 6 6 65 65 66 Note: Power per unit currents per motor Dimensions Defrost Data Dimensions Defrost K M C * 5 0 K M C * 6 0 K M C * 8 0 K M C * 9 5 K M C * 5 K M C * 0 K M C * 5 Length mm 00 68 68 Height mm 55 55 55 55 55 55 55 Width mm 56 56 56 56 56 56 56 Coil kw.59.0.8.8.80.80 5.6 Tray kw 0.80.0.59.59.0.0.8 H W L Note: See general notes on pages 60 & 6 6

DSC Evaporator range Direct expansion CX D S C X 9 D S C X D S C X 6 D S C X D S C X 5 D S C X 6 D S C X 6 8 D S C X 8 D S C X 0 0 D S C X 6 HS kw.9..60. 5.80.0.6 9.6..06 Capacity LS kw..5..95.8.6 5.6 6.00.5 8.6 0. 0.0 0.6 0.59 0.9 0.88..8..56 Air Vol HS m /s LS m /s 0. 0.6 0. 0. 0.50 0.9 0.6 0.65 0.98 0.89 Surface m 5.95 8.9 0.8 6. 6...6.6 6.0 5.0 Int. Vol Weight Conn Size Air Throw dm AL kg inlet outlet HS m LS m 6 5 8 0 6 58 6 8 90 09 9 5 66 89 /8 /8 / / / / / / / / 8 8 8 Pump cirulation CP D S C P 9 D S C P D S C P 6 D S C P D S C P 5 D S C P 6 D S C P 6 8 D S C P 8 D S C P 0 0 D S C P 6 HS kw.6.8. 5.8 6. 8.0 8.9 0.8.8. Capacity LS kw..66...5 5.0 5.8 6.5 8. 9. 0. 0.0 0.6 0.59 0.9 0.88..8..56 Air Vol HS m /s LS m /s 0. 0.6 0. 0. 0.50 0.9 0.6 0.65 0.98 0.89 Surface m 5.95 8.9 0.8 6. 6...6.6 6.0 5.0 Int. Vol Weight Conn Size Air Throw dm AL kg inlet outlet HS m LS m 6 5 8 0 6 58 6 8 90 09 9 5 66 89 /8 /8 8 8 8 Fan & Noise Data D S C * 9 D S C * D S C * 6 D S C * D S C * 5 D S C * 6 D S C * 6 8 D S C * 8 D S C * 0 0 D S C * 6 Qty Dia mm 05 05 05 05 05 05 05 05 05 05 Speed rpm HS/LS 00/50 00/50 00/50 00/50 00/50 00/50 00/50 00/50 00/800 00/800 Power W 6 6 8 8 9 9 56 56 60 60 Fan Detail HS High Speed FLC A 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.8 0.8 SC A 0. 0. 0. 0. 0. 0. 0. 0..9.9 Power W 6 6 5 5 8 8 0 0 6 6 LS Low Speed FLC A 0. 0. 0. 0. 0. 0. 0. 0. 0.8 0.8 SC A 0. 0. 0. 0. 0. 0. 0. 0..98.98 db(a) @m 9 9 5 5 5 5 55 55 60 60 Noise db(a) @m 9 9 0 0 8 8 Note: Power per unit currents per motor Dimensions Defrost Data D S C * 9 D S C * D S C * 6 D S C * D S C * 5 D S C * 6 D S C * 6 8 D S C * 8 D S C * 0 0 D S C * 6 Length mm 80 80 0 0 80 80 0 0 0 0 Dimensions Height mm 66 66 66 66 66 66 66 66 Width mm 90 90 90 90 90 90 90 90 90 90 Coil kw 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00.00.00 Defrost Tray kw.58.58.85.85.. 5.0 5.0 5.6 5.6 H L W Note: = See general notes on pages 60 & 6 6

TEC Evaporator range Direct expansion CX Capacity kw Air Vol. m /s Surface m Int. Vol. dm Conn Size Weight AL kg inlet outlet Air Throw m T E C X T E C X T E C X T E C X. 5 T E C X T E C X 5 T E C X 6 T E C X T E C X 8 0. 0.66 0.8.00..8..86.0 0.6 0. 0.6 0. 0.8 0. 0. 0. 0.50.0..0.99.99 5.6..5 0.0 8 9 5 9 /8 /8 /8 /8 /8 /8 /8 /8 /8 5 5 5 5 Pump cirulation CP Capacity kw Air Vol. m /s Surface m Int. Vol. dm Conn Size Weight AL kg inlet outlet Air Throw m T E C P T E C P T E C P T E C P. 5 T E C P T E C P 5 T E C P 6 T E C P T E C P 8 0.50 0.8.0.9.5..56..8 0.6 0. 0.6 0. 0.8 0. 0. 0. 0.50.0..0.99.99 5.6..5 0.0 8 9 5 9 /8 /8 /8 /8 /8 /8 /8 /8 /8 5 5 5 5 Fan & Noise Data T G C * T G C * T G C * T G C *. 5 T G C * T G C * 5 T G C * 6 T G C * T G C * 8 Qty Dia mm 0 0 0 0 0 0 0 0 0 Fan Detail Speed rpm 00 00 00 00 00 00 00 00 00 Power W 0 0 0 0 0 0 0 60 60 FLC A 0. 0. 0. 0. 0. 0. 0. 0. 0. SC A 0.9 0.9 0.9 0.9 0.9 0.9 0.9 0.9 0.9 Noise db(a) @m 5 55 56 56 59 5 55 60 58 Note: Power per unit currents per motor Dimensions Defrost Data Dimensions Defrost T E C * T E C * T E C * T E C *. 5 T E C * T E C * 5 T E C * 6 T E C * T E C * 8 Length mm 55 55 690 865 865 0 0 50 50 Height mm 80 80 80 80 80 80 0 80 0 Width mm 5 5 5 5 5 5 5 5 5 Coil kw 5 550 00 900 900 000 000 00 00 Tray kw x 50 x 50 x x 5 x 5 x 55 x 65 x 00 x 00 L W H Note: = See general notes on pages 60 & 6 65

GEA Searle Condensing units Engineering at its best NSQ Condensing unit Single, Twin and Multiple Compressor Condensing Units Scroll, Reciprocating and Digital Compressor Standard product range or configure to customer specification Quality assured on the range we are so confident in our product that we offer two years warranty on all condensing units. (subject to standard Terms & Conditions of Sale and excluding corrosion through misapplication). GEA new range of Condensing units means you ve more choice than ever before, comprising both Scroll and Reciprocating Compressor units, arranged in single and multiple compressor configurations, with varying condenser and control options. The wide range is suitable for high and low temperature refrigeration and air conditioning applications. The fansets chosen for the ranges offers the best combined performance for air volume, noise and efficiency available in the refrigeration and air conditioning industry. In addition to the conventional AC motors, customers can select the latest EC technology, offering high efficiency and speed controllability for situations traditionally controlled by independent systems. While EC motors are new to this market, GEA Searle has been using them in specialised applications for a number of years. Casework Our casework is aesthetically designed to ensure the minimum fixings visible on the outer casing and provide a clean finish. All our casework is manufactured from corrosion resistant pregalvanised steel sheets, polyester powder coated and oven baked in RAL06 grey finish. This finish protects surfaces and cut edges and ensure long lasting protection. Pipework GEA Condensing units are supplied as standard with a complete pipework arrangements, incorporating compressor pipework, liquid receiver, liquid filter drier, sight glass, and schraeder access point. Low temperature scroll units also incorporate compressor liquid injection. 66

Connections All models are supplied with the standard imperial size copper suction and liquid line stubs, exiting on the right hand side of the unit, ready for brazing. Connection sizes are selected for the unit duty, and may be adapted to suit the on site requirements. Condensing Unit Features GEA Serale Condensing Units are supplied as standard with a complete control package, incorporating: Fins and Coils Fins are manufactured from high quality materials ensuring a quality product without compromise. GEA has developed a unique fin design specifically for our range of condensing units. This fin has been tested extensively in GEA Research and Development facility and ensures a greater efficiency. Standard coils are manufactured from internally grooved copper tubes, which are mechanically expanded into fully collared holes in vinyl coated aluminium fins. This ensures an effective and permanent bond between the tube and the fin, maximising heat transfer characteristics. Control Options GEA Condensing units are supplied as standard with a complete control package, incorporating mains isolator, compressor motor starter,overloads or MCB s for single phase models, compressor contactors, high and low pressure switches, control circuit protections and compressor crankcase heaters. Depending on the model range additional modulers can be specified for factory fitting. The control options include: Compressor anti cycle timer/delay on timers Alarm relays Fan speed/head pressure controller Fan cycling controller EC fan control Compressor sequencing controls, with options for TCP/IP network communication Backup control systems for compressor and condenser fans Mains Isolator and Controls Circuit protection Compressor Motor Starter/Overloads or MCB s for single phase models Compressor Contactors High and Low pressure switches Fitted pressure relief valve (PRV) Compressor Crankcase Heaters. Depending on the mode range additional control modules can be specified for factory fitting. 6

Engineering for a better world GEA Searle NSQ scroll condensing units are an ideal partner for the catering and food retail industries including food preparation areas, cold storage facilities, convenience stores, garage forecourt shops and supermarkets. 68

NSQ NCQ Condensing Unit engineering for a better world The GEA Searle NSQ range comprises eleven medium temperature and nine low temperature base models covering a duty range of.5kw to kw on R0A/ R50 and R0C. Different options are available for each base unit to match the condenser and fanset selection to exact requirements. The NSQ standard units are to a high specification including vinyl fin, 6 pole fansets and acoustic insulation. Noise levels range from 8 db(a) for the smallest single fan unit fitted with fan speed control operating at minimum speed to 56 db(a) for the largest fourfan unit operating at maximum fan speed. The fully weatherproofed units are supplied prewired and ready to install. All models are suitable for floor or wall mounting with the optional wall bracket kit. The smaller capacity units may be wall mounted or, where floor space is at a premium, double stacked. Details of available wall brackets, stacking frames and vandal proof guards can be obtained from your Searle supplier. Standard Features & Benefits CE Marked Unit, Compliant scroll compressor, Compressor motor starter with short circuit and overload protection, Compressor contactor, Copper tube coil with vinylcoated aluminium fins, Fullywired control panel with Mains Isolator, Compressor with crankcase heater, Sight glass and filter, HP/LP switches auto reset, Pressure activated fan speed control kit, Start delay and antirecycle timer, Voltfree contact for alarm signal, Acoustic Insulation Kit. Options Oil separator, EC Fans and controller, Wall bracket, Vandal Proof Cage, Condenser coils with copper fin. Features. Vinyl coated aluminium coil as standard. Condenser fanset. Motor starter. Compressor contactor 5. LP switch 6. Anti recycle timer alarm relay. Acoustic insulation 8. Compressor Unit Type Phase Oil separator Rows Acoustic insulation Range N S Q 5 M X C F I P V Fin material Case size Compressor Temperature Coil/Case Control packing 69

NSQ NCQ Single Scroll Condensing unit NSQ L Range Low Temperature R0A Case A Ambient Saturated Suction Temperature ( o C) ( o C) 0 0 5 0 5 0 (H) 50 x (W) 8 x (D) 505 Case C (H) 08 x (W) 8 x (D) 505 NSQ9LXA NSQLXA NSQLXA NSQ5LXA NSQ8LXC 6 5 69 0 90 859 0 6 05 58 88 80 68 58 988 86 8 668 05 550 8 6 80 6 8 98 95 0 8 68 65 69 98 9 98 5 9 50 985 0 859 9 58 99 0 9 6 588 509 9 06 058 85 6 9 688 9 860 6 8 650 509 9 6559 6098 58 508 60 0 80 05 000 86 8 86 85 5 596 550 50 8 686 596 90 990 80 9 50 505 85 899 508 569 5005 6985 6 60 959 895 8096 0 9 6 85 589 5 55 659 605 55 99 9 698 0588 98 96 805 NCQ L Range Low Temperature Case D (H) 9 x (W) 560 x (D) 600 NCQLXD NCQLXD NCQ0LXD NCQ8LXD 0 08 80 9 56 88 6 090 66 6 55 56 9 8 06 6558 65 55 90 80 809 55 699 86 8 689 59 006 99 86 6 69 600 5 896 88 88 6800 095 09 9 6 06 89 666 650 0866 00 95 895 86 6 650 59 8 66 9695 90 869 58 0 80 959 59 8 698 55 68 55 0 09 895 898 58 0 5 80 66 585 959 98 0 5 08 89 0 06 50 968 0668 90 88 9 08 9 Performance data in Watts rated at 0 o C Return Gas Temperature, 0K Sub Cooling 0

NSQ NCQ Technical Data Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA Connection Sizes Suction Liquid Liquid Receiver Dry Weight (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min* 6.0 0 A x 00 6pl.0. /8 6. 0 8.0 6 A x 00 6pl.0. /8 6. 0 9 8.0 5 A x 00 6pl.0. /8 6. 0.0 6 A x 00 6pl.0. /8 6. 8 9.0 C x 00 6pl..8 / 6. 6 6 6. 99 D x 50 6pl.0.6 /8 8.0 6 6 5.0 D x 50 6pl.0.6 /8 8.0 6 6 5 6.0 59 D x 50 6pl.0.6 /8 8.0 8 6 5 0.6 8 D x 50 6pl.0.6 /8 8.0 9 6 5 * Noise levels in db(a) at 0m from the front face of the unit, min. noise levels with fan speed control at minimum speed

NSQ NCQ Single Scroll Condensing unit NSQ L EVI Range Low Temperature R0A Case C Refrigeration Capacity Ambient ( o C) 0 Saturated Suction Temperature ( o C) 0 5 0 5 0 (H) 08 x (W) 8 x (D) 505 NSQLVC NSQ8LVC 5 06 6 88 95 90 898 88 8 0 98 6 60 598 598 58 500 9 8 59 86 0 6958 60 69 60 59 56 860 805 88 959 9 0 69 008 966 9608 988 88 8555 858 89 8 50 08 0 998 989 965 65 95 09 NCQ L EVI Range Low Temperature Case D (H) 9 x (W) 560 x (D) 600 Case E (H) 9 x (W) 60 x (D) 600 NCQLVD NCQLVE NCQ0LVE NCQ8LVE 58 568 559 58 8 806 806 89 95 858 8 9 6 6890 069 0068 99 966 06 688 8 6 059 8 5 0889 5 85 5 86 895 889 869 8 6 00 859 0 55 9 58 8 86 9 5 66 086 056 08 000 885 8 9 9 800 8 85 05 8 0860 9909 60 859 0 5 69 669 58 6 55 96 0 56 60 08 055 8 9 9 9 065 999 959 85 5980 5 5 0 9 850 995 650 69 65 669 58 89 05 55 0 985 890 8 80 9 8 Performance data in Watts rated at 0 o C Return Gas Temperature, 0K Sub Cooling Note: EVI units utilise enhanced vapour injection compressors and are fitted with oil separators,fan speed controller & acoustic insulation as standard.

NSQ NCQ EVI Technical Data Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA Connection Sizes Suction Liquid Liquid Receiver Dry Weight (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min* 8.0 5.5 C x 00 6pl..8 / 6. 68 6.0 C x 00 6pl..8 / 6. 6 6. 99 D x 50 6pl.0.5 /8 8.0 9 6 5. E x 50 6pl.0. /8 8.0 08 5 5. 6 E x 50 6pl.0. /8 8.0 8 5 0.6 98 E x 50 6pl.0. 8.0 5 * Noise levels in db(a) at 0m from the front face of the unit, min. noise levels with fan speed control at minimum speed

NSQ Single Scroll Condensing unit NSQ M Range Standard noise Medium Temperature R0A Case A Refrigeration Capacity Ambient ( o C) 0 5 Saturated Suction Temperature ( o C) 0 5 0 5 0 (H) 50 x (W) 8 x (D) 505 Case B (H) 55 x (W) 06 x (D) 8 Case C (H) 08 x (W) 8 x (D) 505 NSQ5MXA NSQ5MXA NSQ9MXA NSQ9MXA NSQMXB NSQMXB NSQ6MXC NSQ6MXC NSQ0MXC NSQ8MXC NSQ5MXC 55 95 0 8 666 6 95 9 995 69 85 8 5 95 98 85 68 5 05 00 65 650 56 9 509 0 95 0 6 565 68 96 59 68 5669 990 85 6650 805 6 8 586 058 500 60 65 90 059 89 600 806 5 690 9 9 66 599 0 6 569 5 96 9 666 66 58 508 60 0 6660 5 99 8 890 08 996 9 80 08 0 805 0 58 509 8 0 668 68 589 505 85 6 690 6008 8986 80 896 6805 005 9806 86 65 60 080 9590 5095 6 8 68 585 558 98 8 695 58 9088 85 808 696 069 9596 9 89 8 889 98 50 0 09 586 588 5095 66 6 65 556 89 865 868 6809 0556 99 9 8 99 9 060 95 86 9 0 9 665 58 60 6658 60 5 88 85 65 9 68 0 989 89 0 69 0656 98 68 66 088 055 688 5608 88 9 888 6 650 NCQ M Range Standard noise Medium Temperature Case D (H) 9 x (W) 560 x (D) 600 Case E (H) 9 x (W) 60 x (D) 600 NCQ50MXD NCQ58MXE NCQ66MXE NCQ6MXE NCQ95MXE NCQMXE 80 059 090 955 69 896 85 95 5 8 66 8 08 658 99 0990 09 008 96 966 90 9 05 66 56 86 0868 0 90 0 5 85 088 6089 959 800 56 99 05 60 09 8960 50 08 059 99 5 00 6 08 585 5 0 958 85 5 60 055 00 0 9 89 986 599 656 8 865 699 60 9 0 8 898 555 500 05 898 690 9 5 080 095 95 808 90 9 66 5869 8 08 958 8888 656 98 0 068 968 66 8 00 065 8 889 8 655 00 00 808 0698 9 89 598 66 986 9 98 0 5 958 08 08 86 8 6 98 86 5 9 56 8 8 080 8 85 6 5066 00 09 855 9 98 9 085 68 005 6 5 80 66 558 Performance data in Watts rated at 0 o C Return Gas Temperature, 0K Sub Cooling

NSQ NCQ Technical Data Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA Connection Sizes Suction Liquid Liquid Receiver Dry Weight (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min* 0.5.9 50 6 A x 00 6pl 0.. /8 6. 06 0 8.8 6.5 6 A x 00 6pl 0.. /8 6. 8 6.. 8 0 B x 50 6pl.0.8 / 6. 8 8 8.0 8.9 9 6 C x 00 6pl..8 / 6. 50 0. 9 C x 00 6pl..8 / 6. 59.8 65 C x 00 6pl..8 / 6. 66. C x 00 6pl..8 / 6. 68.6 00 D x 50 6pl.0.6 /8 8.0 8 5. 95 E x 50 6pl.0. /8 8.0 6 9.5 E x 50 6pl.0. /8 8.0 6 9 0. 8 E x 50 6pl.0. /8 8.0 89 9 8. 0 E x 50 6pl.0. 8.0 9 9. E x 50 6pl.0. 8.0 09 6 * Noise levels in db(a) at 0m from the front face of the unit, min. noise levels with fan speed control at minimum speed 5

Engineering for a better world GEA Searle NCQ twin scroll compressor condensing units compliment the NSQ range by extending the range through the use of two scroll compressors. The twin compressor configuration provides capacity control in steps of 00% and 50% to suit projects with a variable refrigeration load. This makes the NCQ the flexible option for larger convenience stores, garage forecourts and small supermarkets. 6

NCQ NCQ Condensing Unit engineering for a better world The NCQ range comprises seven low temperature and eight medium temperature models using refrigerants R0A/R50 and R0C. The low temperature models (0 C to 0 C) cover a capacity range of.0 kw to 9.6 kw while the medium temperature units (0 C to +0 C) range from. kw to.8 kw. NCQ Standard Features CE Marked Unit, weatherproof housing with separate, acoustically lined compressor compartment, Concealed, low noise condenser fans, Copper tube coil with vinylcoated aluminium fins, Capacity control 00 500%, Fullywired control panel with Mains Isolator, Low ambient fan speed control (FSC), Liquid receiver with fitted pressure relief valve, Compressor motor starter with short circuit and overload protection. Twin scroll compressors including contactors (with liquid injection and oil management system on low temperature LS models) Voltfree contact for alarm signal (relay) HP/LP switch auto reset Sight glass and filter drier Rotalock service valves on compressors and receiver Oil separator Electronic Step Controller (Optional) Copper fin coil, Fully crated packing. Vinyl coated condenser coil. Condenser fanset. Oil separator. Liquid receiver with fitted PRV 5. Filter Drier/sightglass 6. HP switch auto reset. Compressor 8. Acoustic insulation 9. Control panel. Main isolation. Compressor contactor s. Alarm terminals. Lp switch auto reset 5. pressure actuated fan speed controller 6. Main controller with compressor anti cycle protection (option). Overload/manual motor starter Unit Type Phase Oil separator Range N D Q 0 M X C Coil/Case Comp technology Compressor Temperature

NCQ Twin Scroll Condensing unit NCQ L Range Low noise twin compressor Low Temperature R0A Ambient Saturated Suction Temperature ( o C) Case D ( o C) 0 0 5 0 5 0 (H) 9 x (W) 560 x (D) 600 Case E (H) 9 x (W) 60 x (D) 600 NCQ8LSD NCQLSD NCQ6LSD NCQ0LSD NCQ6LSD NCQ8LSE NCQ66LSE 6 0 9 06 865 06 0 5 9 98 68 9 0 608 566 86 50 865 5 596 6 59 6859 59 6566 590 586 695 8 68 88 698 55 59 685 808 808 065 0 990 606 8696 06 0 969 89 99 58 89 0965 55 895 69 68 656 600 55 509 9 689 65 5685 8896 899 90 698 09 95 9 8 8 6 0686 80 6685 58 0 6 599 5 50 89 05 699 65 8965 8 9 688 0855 008 968 880 69 8 969 655 508 9 895 0 9 656 60 09 688 595 90 8580 80 058 9800 9 808 8 865 95 9 90 80 5 0 99 80 56 55 6 568 98 9 858 859 6 098 0 9 856 559 69 0 96 565 0 59 5 6 59 60 96 58 068 800 009 9 60 6 0685 996 95 86 6 8 0 99 56 98 85 55 698 508 00 0 865 6899 999 859 088 0 8 0 NCQ L EVI Low noise twin compressor Low Temperature Case D (H) 9 x (W) 560 x (D) 600 Case E (H) 9 x (W) 60 x (D) 600 NCQ6LVD NCQ6LVE NCQ8LVE NCQ66LVE 66 6 65 56 990 986 980 968 68 8 99 05 66 598 586 86 805 868 6 98 8 58 806 9 0 80 005 9660 90 009 9 958 90 0 9 9 98 60 09 6889 9 985 6 9 05 6 6860 668 59 6 66 0898 08 85 5 6 09 88 8 0 960 988 850 598 8 8 6 0 6 68 690 6 6 6 9 9 8 965 888 8 886 5 60 000 98 9599 65 685 58 008 0 9 856 90 Performance data in Watts rated at 0 o C Return Gas Temperature, 0K Sub Cooling 8

NCQ Technical Data Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA Connection Sizes Suction Liquid Liquid Receiver Dry Weight (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min* x 6.0 x 0 D x 00 6pl.0.6 /8 8.0 8 8 x.0 x 6 D x 00 6pl.0.6 /8 8.0 0 8 x 8.0 x 5 D x 00 6pl.0.6 /8 8.0 8 x 0.0 x 6 D x 50 6pl.0.6 /8 8.0 5 8 x.0 x D x 50 6pl.0.6 /8 8.0 55 8 x 6. x 99 E x 50 6pl.0. 8.0 5 x. x E x 50 6pl.0. 8.0 5 x 8.0 x 5.5 D x 50 6pl.0.6 /8 8.0 8 x.0 x.5 E x 50 6pl.0. /8 8.0 05 5 x 6. x 99 E x 50 6pl.0. 8.0 5 x. x E x 50 6pl.0. 8.0 5 * Noise levels in db(a) at 0m from the front face of the unit, min. noise levels with fan speed control at minimum speed 9

NCQ Twin Scroll Condensing unit NCQ M Range Low noise twin compressor Medium Temperature RA0A Ambient Saturated Suction Temperature ( o C) ( o C) 0 5 0 5 0 5 0 Case D (H) 9 x (W) 560 x (D) 600 Case E (H) 9 x (W) 60 x (D) 600 NCQ0MXD NCQ8MXD NCQMXD NCQ5MXD NCQ60MXD NCQ6MXE NCQ90MXE NCQ00MXE NCQ6MXE 508 66 889 608 59 5 9 66 80 6 58 059 50 608 8 96 50 89 689 806 595 50 909 096 86 08 9 96 69 86 0 5 9566 5 905 095 68 908 96 6 65 989 6 009 0 566 908 565 6 8 68 9 5 99 60 669 996 58 896 660 69 65 5 56 9 0 06 98 66 9 680 59 9 8 89 5 080 09 98 86 8 8 88 9 66 98 99 09 905 6 68 9 068 965 6906 5 8 5 908 80 56 0 085 98 809 85 006 0 0 988 8558 0 0 6 988 5 0 5 50 590 505 960 506 086 98 6 60 0 0 00 99 0 5869 8 0 885 9 00 05 969 88 966 08 65 996 506 90 08 505 60 50 98 8 98 5958 059 90 988 0 859 689 6 8 6 96 56 59 09 5 8990 859 8 0 958 50 99 60 6 6059 56 89 0 88 856 580 8 56 0 00 86 656 095 09 659 8 68 98 9 0085 809 698 5 8 095 88 5956 56 5 966 89 90 96 9 09 65 5850 99 86 05 668 006 60 98 6865 09 08 0 060 8 866 55 0 Performance data in Watts rated at 0 o C Return Gas Temperature, 0K Sub Cooling 80

NCQ Technical Data Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA Connection Sizes Suction Liquid Liquid Receiver Dry Weight (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min* x.9 x 6 D x 50 6pl.0.6 /8 8.0 0 x 6.5 x D x 50 6pl.0.6 /8 8.0 09 x. x 0 D x 50 6pl.0.6 /8 8.0 0 x 8.85 x 6 D x 50 6pl.0.6 /8 8.0 x 0. x 9. D x 50 6pl.0.6 /8 8.0 0 6 x.8 x 65.5 E x 50 6pl.0. /8 8.0 x. x E x 50 6pl.0. /8 8.0 95 x.6 x 00 E x 50 6pl.0. 8.0 5 x.6 x 00 E x 50 6pl.0. 8.0 5 * Noise levels in db(a) at 0m from the front face of the unit, min. noise levels with fan speed control at minimum speed 8

Engineering for a better world GEA Searle NDQ and NDQ Digital condensing units are the latest addition to the Searle range. They feature the new scroll digital compressor which precisely matches the refrigeration load to provide significant energy savings. The NDQ is the twin compressor choice, with digital scroll and normal scroll compressor. 8

NDQ NDQ Condensing Unit engineering for a better world The NDQ comprises three models and NDQ range comprises five models using refrigerants R0A/R50 and R0C. The low temperature models (0 C to 0 C) cover a capacity range of 6. kw to. kw while the medium temperature units (0 C to +0 C) range from.9 kw to 0. kw. NDQ Standard Features CE Marked Unit, weatherproof housing with separate acoustically lined compressor compartment, Concealed, low noise condenser fans, Copper tube coil with vinylcoated aluminium fins, Capacity control 00 00% for NDQ, 0050% for NDQ, Fullywired control panel with mains isolator, Electronic step controller, Low ambient fan speed control, MCB protected crankcase heaters. Twin scroll compressors (with liquid injection and oil management system on low temperature LS models), Compressor motor starter with short circuit and overload protection, Compressor contactors, Compressor start delay and antirecycle timer integrated into step control, Voltfree contact for alarm signal, HP/LP switch auto reset, Sight glass and filter drier, Liquid receiver with fitted pressure relief valve, Rotalock service valves on compressors and receiver, Oil level sight glass.. Vinyl coated condenser coil. Condenser fanset. Control panel. Liquid receiver with fitted PRV 5. Compressor 6. Acoustic insulation. Vinyl coated condenser coil. Condenser fanset. Oil separator. Liquid receiver with fitted PRV 5. Filter Drier/sightglass 6. HP switch auto reset. Compressor 8. Acoustic insulation 9. Control panel. Main controller with compressor anticycle protection. Main isolation. Overload/manual motor starter. Alarm terminals 5. Compressor contactor Standard specification Options Unit Type Phase Oil separator Rows Acoustic insulation Range N C Q M X C F I V Fin material Comp Compressor Temperature Coil/Case Control packing technology 8

NDQ NDQ Single & Twin condensing unit NDQ L Range Low noise digital EVI Low Temperature R0A Case C Ambient Saturated Suction Temperature ( o C) (H) 08 x (W) 8 x (D) 505 NDQ8LVC ( o C) 0 56 59 50 5060 6 65 6 60 0 6 5 0 5 8968 865 86 88 0 059 098 00 96 5 88 08 89 98 0 6 959 NDQ L Range Low noise digital twin EVI compressor Low Temperature Case E Ambient Saturated Suction Temperature ( o C) (H) 9 x (W) 60 x (D) 600 NDQ6LVE ( o C) 0 008 00 0006 990 00 5 0 80 0 69 05 6 5 65 698 6 0 0559 006 9 8886 5 08 6 0 8096 80 695 5806 NDQ M Range Low noise single digital Medium Temperature Case C Ambient Saturated Suction Temperature ( o C) (H) 08 x (W) 8 x (D) 505 Case E (H) 9 x (W) 60 x (D) 600 NDQ0MX/SC NDQ8MX/SC NDQ5MX/SC NDQ58MX/SE NDQ6MX/SE ( o C) 0 5 0 5 0 5 0 55 50 85 6556 6098 58 65 9 698 898 86 990 00 9609 98 66 9 8 6 58 86 66 68 590 50 5095 968 0 05 68 59 99 86 8 95 699 09 06 90 86 805 59 696 59 98 9 5 68 65 60 08 98 8800 88 89 060 806 9 5 08 68 8 0 0 08 68 98 658 808 988 869 909 65 8800 5986 50 906 09 58 86 8 085 98 889 65 090 99 889 9 8 65 05 6 090 6 60 896 05 5 99 96 8 66 9 0 0 98 69 506 9 95 880 8 88 050 666 9 6 0 85 80 9 088 896 00 5 90 069 8 695 NDQ M Range Low noise digital twin compressor Medium Temperature Case D Ambient Saturated Suction Temperature ( o C) (H) 9 x (W) 560 x (D) 600 Case E (H) 9 x (W) 60 x (D) 600 NDQ60MXD NDQ60MXE NDQ6MSE NDQ90MXE NDQ90MXE ( o C) 0 05 9 95 969 5 0 9856 8558 85 08 8 060 56 650 08 809 60 60 5 60 68 0 959 56 950 089 6 96 58 865 6 888 09 0900 969 68 0 6 966 90 5868 8 0 0 889 59 669 88 09 06 989 69 9 589 9 05 5 8 600 5 8 880 66 56 0 0690 9 6 8 89 0 896 508 0 985 8 99 5 0 90 68 508 860 5 99 059 80 6 5 8 05 0 90 5 5 08 5 89 56 900 966 55 6 885 660 5 95 899 6 06 88 0 5666 8 96 8686 66 5608 50 68 0 99 596 0 8 695 809 55 05 Performance data in Watts rated at 0oC Return Gas Temperature, 0K Sub Cooling 8

NDQ NDQ Technical Data Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Connection Sizes Liquid Dry Number of FLC LRA Suction Liquid Receiver Weight Fans and Diameter (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min*.8.0 C x 00 6pl..8 / 6. 6 6 Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Connection Sizes Liquid Dry Number of FLC LRA Suction Liquid Receiver Weight Fans and Diameter (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min*.8.0.0.0 E x 50 6pl.0. 8.0 05 5 Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Connection Sizes Liquid Dry Number of FLC LRA Suction Liquid Receiver Weight Fans and Diameter (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min*.9 5.5 C x 00 6pl..8 / 6. 59. 65.5 C x 00 6pl..8 / 6. 59..0 C x 00 6pl..8 / 6. 0 6. 95.0 E x 50 6pl. /8 8 6 5 6 0. 8 E x 50 6pl. /8 8 89 5 9 Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA Connection Sizes Suction Liquid Liquid Receiver Dry Weight (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min*.9 0.0 5.5 5.5 D x 50 6pl.0.6 /8 8.0 0 8.9 0.0 5.5.5 E x 50 6pl.0. /8 8.0 95 8..8 65.5 65.5 E x 50 6pl.0. /8 8.0 00.0..0.0 E x 50 6pl.0. /8 8.0 95 6. 5.0 95.0 95.0 E x 50 6pl.0. /8 8.0 5 * Noise levels in db(a) at 0m from the front face of the unit, min. noise levels with fan speed control at minimum speed 85

Correction factors R0C Capacities The following units can be used with R0C refrigerant : NSENCE M units, NSQNCQ M units and NCQ M units. Multiply the relevant R0A capacity by the factor below. average Ambient Saturated Suction Temperature ( o C) ( o C) 0 5 0 5 0 5 0 R0C from R0A correction factor 8 0.809 0.80 0.88 0.85 0.85 0.86 0.88 0.888 0.89 0.9 0.96 0.9 0.9 0.9 0.95 0.96 0.98 0.966 0.98 0.99.00 0.98.00.0 0.959 Correction factors are for guidance only, and are subject to a +/8% Tolerance 0 to 5 SST, and +/5% Tolerance 0 to +0 SST. Contact GEA Searle for a detailed unit selection if required. Wall and floor mounting instructions Case A, B & C 50 Minimum 8 68 9 00 65 05 Fix brackets to wall using 6 fixing (not supplied) Unit must be installed with 50mm air gap between the air on face and any wall or solid obstruction 86

Dimension drawings Case A,B & C 96 9 Mounting centres Suction connection 8 Liquid connection 505 Overall width 5 Mounting centres Knock out in rear panel of unit for customer electrical supply View of connection details on rear of unit Case A and B Front View and End view 8 Overall length 60 Overall length Door inter locked isolator 50 Over all height (case A) 6 Over all height (case B) 80 6 58 Site glass viewing port Knock out in base for customer electrical supply 505 Case C Front View and End view 8 Overall length 60 Overall length 08 Over all hieght Door inter locked isolator 80 59 6 Knock out in base for customer electrical supply 505 8

Dimension drawings Case D 600 Overall width 50 Fixing centres 5.0 5.0 6 80 Fixing centres 5 Mounting holes for M8 fixing bolts 56 Overall length Removable access to controls 9 Overall height Removable access to compressor Sight glass viewing port Suction 80 80 98 Liquid 8 88

Case E 8 50 Fixing centres 50 Fixing centres 80 6 Mounting holes for M8 fixing bolts 60 Overall length Removable access to controls 9 Overall height Removable access to compressor Sight glass viewing port Suction 80 8 6 89 85 Liquid 89

Engineering for a better world The HCU HDU Range of condensing units offers a unique, readypackaged solution for fast and easy installation of refrigeration systems where either three or four compressors are required. The range offers the following benefits: Compact aesthetic design, Fully prewired, packaged unit, Comprehensive controls package, Energy efficient design, Low noise compressors and fansets, High quality, reliable components. For other unit combinations, including dual temperatures, contact your sales representatives. 90

HCU HDU Condensing Unit engineering for a better world Overview Suitable for use with R0A, R50 and R0C on medium temperature units (other refrigerants on application). Two or three fans (two fans only on pole), 6, 8or pole motors for lownoise operation. Choice of three airflow configurations for siting units internally or externally. Condenser coil with vinyl coated aluminium fins for extended life. Optional copper fin coil. Integral liquid subcooling section to enhance performance and removable doors and access panels for easy maintenance. litre liquid receiver with fitted PRV. Options for Twin PRV, Twin burst disc, sightglass, low level indicator. Rotalock valves on all compressors and receivers for easy maintenance. Fully weatherproof, grey gloss painted, pregalvanized steel casing. Acoustically lined compressor housing for minimal noise breakout. CE marked and manufactured under B EN ISO 900 Quality Assurance. Units can be supplied with left or right handed connections. Forklift channels for ease of lifting. Compressor and System HDU offers capacity control using digital compressor Integral, separate acoustically lined compressor housing with forced extraction cooling. Various combinations of or Copeland Compliant scroll compressors for low or high temperature applications. Compressor rotalock valves for quick and easy maintenance. Inbuilt oil management system high pressure combined coalescing separator/ reservoir with individual oil level regulators. Oil separator shutoff valves for easy filter replacement. Spare separator filter supplied loose with unit. Crankcase heaters as standard. Vibration eliminators on compressor suction and discharge lines. Suction line ball valve and filter with replaceable core. Liquid line replaceable core drier with fitted core and replacement. Liquid line threeway valve enabling filter bypass for easy core change. Compressor Reference Table Electrical controls Control components located in easily accessible separate front enclosure. V control system. Modulating fan speed control maintains head pressure in low ambient temperatures. Compressor contactors and thermal overload, incorporating short circuit protection, and individual compressor isolation. Individual compressor short cycle prevention function. Mains isolator and system HP/LP switch (manual/ auto). Medium Temperature Low Temperature HDU (Comprssor only) HCU (Compressors to ) HCU (Compressors to ) HDU (Compressors to ) HDU (no option ) Compressor Reference Compressor Reference Compressor Reference 0 ZB5KCETFD 0 5 ZB9KCETFD ZBKCETFD ZB6KCETFD ZB0KCETFD ZB8KCETFD 5 ZF09KETFD ZFKETFD ZFKETFD ZF5KETFD C D E F ZBD5KCETFD 6 ZB5KCETFD 6 ZF8KETFD G ZBD58KCETFD ZBD6KCETFD No Compressor 8 ZB58KCETFD ZB6KCETFD No Compressor 8 ZFKETFD ZFKETFD No Compressor H J Compressor Compressor Air flow Motor poles HCU 5 5 E E V 08 L Pipe connections Compressor Compressor No. of fans 9

HCU L Range technical data HCU L Range Ultra low noise (pl) Low temperature Ambient Saturated Suction Temperature ( o C) ( o C) 0 0 5 0 5 0 (H) 85 x (W) 0 x (D)895 HCU DDD V/H R/L HCU DDDD V/H R/L HCU EEE V/H R/L HCU EEEE V/H R/L 666 605 58 556 860 8 9 695 68 6598 59 96 89 86 8 86 0 95 6555 055 05 99 88 9 85 805 6 55 090 969 0005 96 899 95 585 0 00 65 068 0 896 8 80 6 5 0 09 965 6 5 8 0 5 0955 8 68 6058 90 909 96 96 86 0 580 66 55 856 950 5 988 890 69 0 6 556 66 9 89 0965 88 0065 8666 8 5590 55 680 58 965 08 896 8 590 56 58 58 6 6 098 89 95 8 6 8 HCU FFF V/H R/L HCU FFFF V/H R/L 885 0 688 68 995 8 60 888 950 09 059 00 89 90 5 085 565 95 08 855 65 5 05 0 85 559 8 5 55 5 60 56 58 98 06 06 98 6 99 90 59 9 008 0 5 8986 55 69 0 90 5 80 655 9 6 60 HCU L Range Low noise (8pl) Low temperature (H) 85 x (W) 0 x (D)895 HCU FFFF V/H 08 R/L HCU GGG V/H 08 R/L HCU GGGG V/H 08 R/L HCU HHH V/H 08 R/L 890 0 069 99 009 00 988 85 5 0 00 9 8 0 56 9 609 05 9 065 59 06 8 58 6 9 69 58 500 9 8 658 6 690 586 55 0 0 985 8 060 98 88 6 0 6 08 98 8595 69 50 58 0 9 5 5 9906 0 509 9 0860 050 0 9 69 008 868 509 985 86 6665 5 08 998 859 88 969 6 699 05 8555 8 9869 68 9 8 59 8 890 65 0 065 6885 8 65 90 60 50 86 689 80 HCU L Range Standard noise (6pl) Low temperature (H) 85 x (W) 0 x (D)895 HCU HHHH V/H 06 R/L HCU JJJ V/H 06 R/L HCU JJJJ V/H 06 R/L 659 608 565 655 66 5 5 9 06 98 898 69 60 085 0 6 6 095 00 606 9066 0 588 59 5 56 69 86 8800 659 55 68 068 6 9 890 9 0 0 668 5 896 66 88 56 896 985 85 99 5 655 00 09 90 99 0 560 9 00 058 58 09 958 6 08 80 66 58 55 9 555 569 98 8 55 588 50966 506 06 66808 665 555 Performance data in Watts rated at 0oC Return Gas Temperature, 0K Sub Cooling 9

Compressor FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA Connection Sizes Suction Liquid Liquid Receiver Dry Weight (A) (A) inches inches (L) (kg) Sound Levels db(a)* Max* Min* x x 6 H x 60 pl..0 5/8 /8.0 5 x x 6 H x 60 pl..0 /8 /8.0 90 8 6 x 8 x 5 H x 60 pl..0 5/8 /8.0 8 0 x 8 x 5 H x 60 pl..0 /8 /8.0 80 x 0 x 6 H x 60 pl..0 /8 /8.0 90 x 0 x 6 H x 60 pl..0 /8 /8.0 90 x 0 x 6 H x 60 8pl.0 6.6 /8.0 8 8 6 x x H x 60 8pl.0 6.6 /8.0 80 6 x x H x 60 8pl 6.0. /8.0 855 8 x 6. x 99 H x 60 8pl 6.0..0 09 5 5 x 6. x 99 H x 60 6pl 8...0 09 5 5 x. x H x 60 6pl 8...0 09 5 5 x. x H x 60 6pl 8...0 9 5 5 * Noise levels in db(a) at 0m from the front face of the unit, min noise levels with fan speed control at minimum speed 9

HCU L Range technical data HCU M Range Ultra low noise (pl) Medium temperature R0A Ambient Saturated Suction Temperature ( o C) ( o C) 0 5 0 5 0 5 0 (H) 85 x (W) 0 x (D)895 HCU V/H R/L 9 855 0 09 68 5599 86 800 98 8 6 509 08 80 0 99 0 5 06 089 8 9 98 0 9 08 8 0 HCU M Range Low noise (8pl) Medium temperature (H) 85 x (W) 0 x (D)895 HCU V/H 08 R/L HCU V/H 08 R/L HCU V/H 08 R/L HCU 555 V/H 08 R/L HCU 5555 V/H 08 R/L HCU 666 V/H 08 R/L HCU 6666 V/H 08 R/L 8809 65 685 5555 0 5 00 8998 6 0 886 9 55 66 55 006 95 06 86 0656 86 686 996 8 00 8 050 8959 800 68 869 688 059 6 6 8 9 9600 808 95 89 6690 50 00 8 85 8 08 958 08 00 8 6 8959 65 68 96 569 6 80 500 8 969 555 80 00 5 098 858 6 098 66 9095 5588 95 8558 89 90 559 595 06 6 6 6 9 968 99 5 85 8 888 8 88 96 5 99 69 555 95 698 06 0 09 90 808 568 099 6 059 680 888 0 655 009 9 089 05 9 59 590 596 66 98 858 99 95 8598 65 90 98 6 5 998 55065 59 558 659 596 5865 9056 60 09 66 595 68 6859 66 6 998 569 55 008 55 085 59 50 06 586 0 59 698 699 8 506 586 665 56 0 99 6 5696 666 6955 9 56 86 505 585 66 66 8099 866 50 HCU M Range Standard noise (6pl) Medium temperature (H) 85 x (W) 0 x (D)895 HCU 6666 V/H 06 R/L HCU V/H 06 R/L HCU V/H 06 R/L HCU 888 V/H 06 R/L HCU 8888 V/H 06 R/L 0 96 868 6 860 56 886 99 980 68 6 500 6 0 65 505 0 506 5005 60 56 956 6 5805 550 6 600 580 85 669 686 5588 968 600 85 6 50 69 886 60 858 9 656 9 0005 55 85 8 608 680 5 95 8 90 6 55 60 8 6 5 88 56080 68 669 50 6508 9 8956 060 58 5 65 8 86 999 009 5009 5955 69009 99 8960 0 085 5595 600 69 5 699 66 89085 00508 5060 659 0 856 9 80 506 5968 6866 86 8869 50 09 588 5966 685 5955 500 86 95 08 0 5 66 9 8809 99969 0 58 699 0 888 950 0660 0 55 Performance data in Watts rated at 0oC Return Gas Temperature, 0K Sub Cooling 9

Compressor Physical data FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA (A) (A) Connection Sizes Suction Liquid Liquid Receiver Dry Weight inches inches (L) (kg) Sound Levels db(a)* Max* Min* x 8.85 x 6 H x 60 pl..0 5/8 /8.0 5 x 8.85 x 6 H x 60 8pl.0 6.6.0 8 6 x 0. x 9. H x 60 8pl.0 6.6 /8.0 8 6 x 0. x 9. H x 60 8pl.0 6.6 /8.0 8 6 x.8 x 65.5 H x 60 8pl.0 6.6 /8.0 89 8 x.8 x 65.5 H x 60 8pl 6.0. /8.0 86 5 9 x. x H x 60 8pl 6.0. /8.0 90 5 8 x. x H x 60 8pl 6.0. /8.0 8 5 8 x. x H x 60 6pl 8.. /8.0 9 55 5 x 5. x 95 H x 60 6pl 8...0 96 56 5 x 5. x 95 H x 60 6pl 8...0 0 56 5 x 0. x 8 H x 60 6pl 8...0 95 56 5 x 0. x 8 H x 60 6pl 8...0 09 56 5 * Noise levels in db(a) at 0m from the front face of the unit, min noise levels with fan speed control at minimum speed 95

HDU M Range technical data HDU M Range low noise (8pl) Medium temperature R0A Ambient Saturated Suction Temperature ( o C) ( o C) 0 5 0 5 0 5 0 (H) 85 x (W) 0 x (D)895 HDU 666 V/H 08 R/L HDU 6666 V/H 08 R/L 6 8 08 80 00 80 6 9 85 665 5509 668 999 8 8 08 659 0 990 8 0 05 59 600 8 5090 8 506 9 665 65 855 058 585 5505 5080 56 56 508 899 650 689 60 6999 58089 55 986 666 6 686 HDU M Range standard noise (6pl) Medium temperature (H) 85 x (W) 0 x (D)895 HDU 6666 V/H 06 R/L HDU V/H 06 R/L HDU V/H 06 R/L HDU 888 V/H 06 R/L HDU 8888 V/H 06 R/L 98 9 98 6068 96 906 69 695 06 6 8 5 96 66 0 56 9609 0 86 988 80 960 08 50 89 0 5 85 9859 5885 509 80 9 56 986 55 69 5869 55 95 669 580 5590 69 685 699 59 06 60 608 8808 8 6 65 895 69 8 686 56 9 8 560 69 6990 5 6606 980 8960 0 8 5868 66 805 9996 056 505 5966 6905 968 8966 0 50 60 69 9 50 68 596 890 000 6 5069 650 0 8559 906 8 50609 596 68660 8686 8966 08 09 5886 59 689 598 55 89 958 0895 008 5 585 6669 696 506 85 6 880 889 9999 95069 8 596 96

Compressor Physical data FLC LRA (A) (A) Case Size Drawing Fansets (0V/ph/50Hz) Number of Fans and Diameter FLC LRA (A) (A) Connection Sizes Suction Liquid Liquid Receiver Dry Weight inches inches (L) (kg) Sound Levels db(a)* Max* Min* x 8.85 x 6 H x 60 pl..0 5/8 /8.0 5 x 8.85 x 6 H x 60 pl..0 5/8 /8.0 5 x. x. x x H x 60 6pl 8.. /8.0 9 55 5 x 6. x 5. x 95 x 95 H x 60 6pl 8...0 96 56 5 x 6. x 5. x 95 x 95 H x 60 6pl 8...0 0 56 5 x 0. x 8 H x 60 6pl 8...0 95 56 5 x 0. x 8 H x 60 6pl 8...0 09 56 5 9

HCU HDU Unit Selection and Features An HCU HDU may be specified as either a three or four compressor unit, with either two or three condenser fans. Any combination of HT/LT compressors may be chosen. The duty of the compressors must be matched with the performance of the condenser coil, which is given in the table below. Any combination of compressors may be chosen from the table on page showing the range of high and low temperature models. Compressor selection can be made using Copeland s Select software program or product literature which is available through GEA Searle/ Dawmec. Alternatively, GEA Searle s applications team would be pleased to make the required selections on your behalf. * Typical noise is based on a unit with four ZB5 (6HP) compressors. No. Fans & air flow R0A Coil duty (kw) 8 KTD KTD KTD 5 KTD Typical noise dba@ 0m (*) Fan speed Max Min Pole fan H & V fan R 9.86 N/A. N/A. N/A. N/A 9 8 Pole fan H & V 0 fan R fan R fan R.69 6.05 8.5.8.85.8 5.95 8.5 5.8. 6.5 5. 59.9 8.85.0 5.6 6 8 fan H & V 0.9 55.6 65.80 5.9 0 fan R 6.98 50.8 60.09 69. 5 9 6 Pole fan H & V 8.9 66.0 8.8 90.55 0 fan R. 60.66.69 8. 56 5 * Noise levels in db(a) at 0m from the front face of the unit, min noise levels with fan speed control at minimum speed. Fansets : 6, 8, pole speed. Controls Access Panel. Compressor access panels. Forklift lifting point 5. Condenser coil access panels 5 98

. Suction and discharge vibration eliminators. Multiple scroll compressors including rotalock valves. Individual compressor oil return shutoff valves. Individual compressor oil float regulators. High pressure combined coalescing separator/ reservoir complete with replaceable filter 5. Receiver outlet rotalock valves. litre liquid receiver.way valve for filter bypass for ease of core changes 6. Liquid line sight glass. Compressor step controller. Compressor overloads/ manual motor starters. Compressor contactors. Fault relays 5. volt transformer 6. Mains isolator complete with 00amp auxillary connection for customer use 99

HCU HDU Dimension drawings HCU HDU Horizontal air flow & fan models H 60 050 fan centres 60 0 O/All length 896 Overall width Liquid out connection 5 Fan centre height 85 Overall height Suction connection 50 80 50 Fork lift gap 56 Mounting centres 00 Base length 80 50 Suction connection LH unit connection positions RH unit connection positions 8 Mounting centres 889 Base length 5 0 MNTG holes O.00 0 5 fan centres 5 fan centres 0 0 O/All length 896 Overall width Liquid out connection 5 Fan centre height 85 Overall height Suction connection 50 80 50 Fork lift gap 80 56 Mounting centres 00 Base length 50 Suction connection LH unit connection positions RH unit connection positions 8 Mounting centres 5 0 MNTG holes O.00 889 Base length 00

HCU HDU Vertical air flow & fan models V 0 O/All length 0 5 fan centres 5 fan centres 0 896 Overall width 90 85 Unit height 905 Overall height Liquid out connection Suction connection Suction connection LH unit connection positions 6 0 50 80 50 Fork lift gap 56 Mounting centres 00 Base length 80 50 RH unit connection positions 8 Mounting centres 889 Base length MNTG holes O.00 HCU HDU Recirculatory air flow & fan models R 0 5 fan centres 5 fan centres 0 0 O/All length 96 Overall width 5 Fan centre height 65 Overall height Liquid out connection Suction connection 50 80 50 Fork lift gap 80 56 Mounting centres 00 Base length 50 Suction connection LH unit connection positions RH unit connection positions 00 MNTG CTRS 8 Mounting centres 89 Base length 6 0 MNTG holes O.00 0

New generation EC fans and motors Combined expertise in heat transfer The Adantages of EC Fansets Reduced energy usage and low operating cost, providing short payback periods. Continuous speed control across the full operating range. Low noise compared to a similar unit fitted with step control. High efficiency across the full operational range. EC technology plays an integral role in GEA Condensers and Dry Coolers providing effective capacity control whilst retaining high energy efficiency and low noise levels, all at a competitive price. These speed control fansets can provide significant benefits over alternative motors and are ideally suited to the following application areas: Commercial refrigeration, Building HVAC, Industrial refrigeration Process Cooling, Power Generation and Convenience Stores GEA has the technical expertise to advise and select products for any application where energy efficiency, low noise and cost effective solutions are required. EC (Electronically Commutated) technology is a tried and tested technology which has been utilised by for a number of years. The motors used in EC fansets are simply brushless DC motors with characteristics similar to a shunt motor. Unlike the conventional motors where an AC current in the stator induces the magnetic field in the rotor, EC motors use permanent magnets, so the current in the stator is used solely to generate the torque not secondary magnetic fields. Therefore, with fewer losses the EC motor is inherently more efficient than the AC motor. Conventional DC motors use brushes to switch the supply and these wear over time; the new generation of EC motors use commutation electronics to sense the rotor position and switch supply. As switching is undertaken electronically with no physical contacts there is no wear and so reliability is increased. Simple to connect to AC mains supply. 0

High Energysaving potential More Adantages of EC Fansets The cost of energy has nearly tripled in recent years and is predicted to rise in the future. Rising energy costs means energy efficiency is becoming a key factor within industry issue and is rising in importance on enduser criteria. A GEA unit equipped with EC technology has a high energy saving rating, which in turn, translates into lower running costs. The energy savings gained by relying on EC technology translates into short payback times when measured against the initial procurement costs. Moreover, the maintenance free and exceptionally high service life results in additional big savings. High efficiency across the full operational range to an asynchronous motor and year warranty. Operation at peak load via the overspeed function is preprogrammed into the control system. High efficiency and low noise The EC motor has a high efficiency at every speed. At nominal speed, there is energy saving of around 0% when compared to conventional AC options. At reduced speed the saving is substantially more pronounced. Where noise levels are a key consideration, a unit with EC technology helps by reducing perceived noise when compared to a similar unit with step control. Integrated protective features; Phase failure detection; Overcurrent and temperature. Networked and buslinked installations are easy to realise (RS85). Failsafe safety Refrigeration plants operate hours a day, therefore, both energy costs and failsafety are crucial factors. EC motors are equipped with several failsafe features helping to ensure disruption is minimal in the event of a failure. Each motor is fitted with an individual power unit, unlike traditional units with a single inverter. Should an EC fan inverter fail the other fans on the unit will remain fully functioning and in most cases compensate for the loss of one fan. In addition each fanset has internal motor protection. Night time set back at night, operation at extremely low noise can be achieved through stepless speed control. Built in failsafe features, including individual integrated electronics, selfregulating motors and internal motor protection. 0