Rotary Screw Compressors with variable speed drive. DSD SFC Series. FAD from 3.25 to 26.6 m³/min Pressures 5.5 to 15 bar

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Rotary Screw Compressors with variable speed drive DSD SFC Series FD from. to. m³/min Pressures. to

What qualities do users look for in a compressor with variable frequency drive? s a compressed air user, you expect maximum efficiency and reliability from your air system. This sounds simple, but these advantages are influenced by many different factors: Energy costs, for example, taken over the lifetime of a compressor, add up to a multiple of investment costs. Compressor system investment Maintenance costs Energy costs Potential energy savings Efficient energy consumption therefore plays a vital role in the production of compressed air, as does reliability of the compressor. Variable drive compressors provide users with the best possible match of air production to air demand. However, it s not as simple to actually satisfy this requirement as is often claimed; it depends on two main considerations: Firstly, a comprehensive knowledge of air system design is needed and secondly, individually tailored system configurations can only be realised if there s a correspon- 8 dingly comprehensive range of products which allows the compressors in the system to be used to their full potential. Elimination of control gaps and excessively long idling periods through system integration enables compressed air systems equipped with variable speed compressors to achieve energy savings of over 0 %. 9 DSD SFC ultimate efficiency s Solution: The DSD SFC Series The new DSD SFC rotary screw compressors fulfil every customer requirement: they are highly energy efficient, quieter than quiet, require minimal maintenance, are extremely reliable and deliver the very best in air quality. ll of these advantages are aided through innovations in compressor design, drive systems, cooling and ventilation, silencing and maintenance methods. Furthermore, the comprehensive range of products enables precisely tailored variable speed compressors to be used as part of a fully integrated system, allowing potential energy savings of over 0%. 8 9 Inlet valve irend Electric motor Fluid separator with cartridge Fluid cooler Fluid filter Compressed air aftercooler Control cabinet frequency controller Controller with industrial computer Outstanding performance The DSD SFC (SIGM Frequency Control) series is a range of highly efficient variable speed direct drive compressors. With outstanding performance throughout the control range, large, low speed airends featuring the energy saving SIGM Profile have significant advantages over smaller, high speed airends. Other variable speed compressors Transmission losses Energy consumption SFC compressors Triple savings with : drive Significantly increasing reliability and service life, : drive reduces the number of components Maintenance Costs needed in comparison with gear drive and eliminates the associated transmission losses. Sound levels are also considerably lower. The benefits speak for themselves: efficient power transmission, optimal power consumption and reduced servicing / downtime costs. Direct communication path The SFC cabinet and the DSD compressor form a compact unit. This reduces the amount of floor space required and ensures that the communication paths between the control electronics and the drive motor are kept as short as possible. There is no need for any additional cabling work to be carried out. No interference The electro-magnetic compatibility (EMC) of the components and of the complete machine has been tested and certified in accordance with all applicable regulations. nalysis reveals potential ir Demand nalysis D Developed by, the computer-aided ir Demand nalysis, or D for short, allows meaningful and accurate data to be gathered to aid compressed air system optimisation. From the resulting air consumption profiles, s Energy Saving System (KESS) can then help determine the best system solution for the individual air application. Energy Saving System KESS KESS processes the data acquired by D so that a state-of-the-art compressed air system can be designed and individually tailored to meet the customer s compressed air needs. cost comparison between the possible fter installation designs ensures that the most appropriate system with regards to operation and energy consumption is chosen. efore solution to meet your needs With the D air demand profile and the KESS evaluation in mind, 's engineers decide on a caseby-case basis whether a combination of conventional and variable speed controlled machines is preferable, or a splitting concept with standard rotary screw compressors. Let design a compressed air system individually suited to meet your compressed air needs. Our wide range of SFC compressors ensures that the most efficient solution can be found for every air requirement.

More air, more savings... Please contact for non-standard air delivery and motor output power data. DSD SFC Series - Technical Specifications Model Working pressure FD*) overall package at working pressure m³/min Pressure range min.max. Rated motor power kw min. pressure band width Speed range min.max. rpm Frequency range min.max. Hz Dimensions L x W x H Sound level**) d() Weight kg DSD 0 SFC. 0.9 0..99.8 0 0 0 ±0. 0 90. 0 80 8 90 0 80..0 0 0 9 DSD SFC. 0.0.0.90 0.0..88 0 0 ±0. 0 80 0 00 0 0 0 8 90 0 90 DSD 8 SFC. 0.0.0.90.0. 9.0 0 0 0 ±0. 0 90 0 0 0 80 8 8 90 0 0 * FD to ISO : 99, nnex C; **)Sound level to PN8NTC. at m distance, free-field measurement

DSD SFC Eight Decisive dvantages SIGM PROFILE airend specific drive power can be used to turn a smaller airend at high speed or a larger airend at slow speed. Larger, low speed airends are more efficient, delivering more compressed air for the same drive power. That is why developed airends especially for the DSD series that precisely match the individual drive power and motor speed of each machine in the range. The slightly higher cost of the larger airend is quickly recovered by the energy saved during operation. SFC module Siemens frequency inverters are used exclusively in s speed controlled compressors for several reasons: Siemens manufacture the industrial PC-based SIGM CONTROL compressor controller, which enables seamless communication with the SFC control cabinet. Furthermore, the worldwide presence of Siemens ensures outstanding service. The SFC control cabinet and SIGM CONTROL are tested and certified in accordance with all applicable electromagnetic compatibility regulations, both as individual components and as an integrated system. irend Motor speed = irend speed Coupling Drive motor Energy-saving one-to-one drive The advantage of this drive is not just the elimination of transmission losses. The motor and airend are joined by the coupling and its housing to form a compact and durable unit that, apart from greasing of the motor bearings, requires no regular maintenance. Should the coupling ever need to be replaced it takes just a few minutes without any disassembly of the unit; the opening in the coupling housing is more than large enough to replace the two coupling sections. Precise pressure control ir delivery from a DSD SFC compressor can be matched to actual air demand according to required system pressure by continuously adjusting the speed of drive motor (and therefore the airend) within its control range. Depending on the buffer capacity of the downstream air network, it is therefore possible to precisely maintain working pressure to within ±0. and, as a result, to reduce maximum system pressure. This can lead to significant savings, as each reduction in pressure amounts to a percent reduction in energy consumption. correctly designed SFC system can be operated in sequence with standard rotary screw compressors without any problem. Pressure in Constant pressure Time Pressure + 0. up DSD SFC to Others up to 000 approx. 800 U/min rpm Large, low speed airends Each DSD SFC compressor has exactly the same mechanical components as those used in fixed speed compressors. This not only ensures unrivalled reliability and compressed air availability, but also guarantees optimum energy efficiency. The most efficient method of producing compressed air is by using large, low speed airends airends in DSD SFC compressors have a typical maximum rotation speed of approximately 900 rpm. Further advantages include long service life and reduced maintenance requirement. The use of standardised drive motors also contributes to long-lasting compressed air availability. Flexible pressure adjustment The wide range of : drive airends available makes it possible to select the one that works most efficiently within the pressure and performance range required. This ensures that every DSD SFC compressor operates with the most efficient pressure-frequency profile. Furthermore, the SIGM CONTROL compressor controller is equipped with a pressure-to-frequency profile that guarantees maximum flexibility for air delivery and pressure whilst providing best possible efficiency. Pressure in 0. steps 0 0. steps. 0. steps 0 00 Hz. kw/m³/min at. 8 Specific energy requirement is the key Large, low speed airends are more efficient than small high speed airends because they supply more air for the same drive power. This is not just the case at full load, but also applies throughout the entire control range, which is particularly important for variable speed machines. The specific energy requirement of. kw per m³/min for DSD SFC compressors at. can be considered as an excellent indication of the machine s efficiency. Variable frequency controlled compressors are only truly efficient if they are able to achieve optimum specific power throughout their control range. SIGM CONTROL ased on robust PC architecture, the SIGM Control offers the possibility of Dual, Quadro, Vario and Continuous control. Clearly marked navigation and input keys on the user interface are used to move around within the menu options of the alpha-numeric display. The SIGM Control automatically controls and monitors the compressor package. The Profibus interface enables exchange of data and operational parameters allowing the SIGM Control to communicate with other air management systems such as the SIGM ir Manager. Connection of a modem even allows maintenance and alarm messages to be sent via SMS to relevant service locations. www.kaeser.com

Equipment Complete unit Ready for operation, fully automatic, super silenced, vibration damped, all panels powder coated Sound insulation Lined with glass-fibre laminated mineral wool, maximum d() to PN8NTC. at one metre distance, free-field measurement Vibration damping Dual antivibration mountings using rubber bonded metal elements. irend Genuine rotary screw, singlestage airend with SIGM PROFILE and cooling fluid injection. Drive Electric motor High efficiency CEMEP EFF motors consume less power for greater output and are standard throughout the range of compressors. The motors are protected to IP and conform to insulation Class F for greater power reserve. lso available with PTC thermistor sensors for full motor protection. Connection from motor to airend irend with integral coupling flange Electrical components Control cabinet to IP, control transformer, Siemens MSTERDRIVE with control unit, volt-free contacts for ventilation control Fluid and air flow Dry air intake filter with pre-filtration, pneumatic inlet and venting valves, fluid reservoir with threestage separator system, pressure relief valve, minimum pressure/check valve, thermostatic valve and fluid microfilter, all fully piped using flexible couplings Cooling The standard version is air cooled, separate aluminium coolers for compressed air and fluid, radial fan driven by its own motor. Controller Interfaces: RS for a modem or printer, RS 8 for a slave compressor in base load sequencing mode and a Profibus DP interface for data networks. Prepared for Teleservice. Ergonomic control panel Red, yellow and green LEDs show the operational state of the machine at a glance. The panel also contains a fourline plain text display, touch keys with pictograms and display of current motor speed. Prime functions Fully automatic monitoring and regulation of airend discharge temperature; monitoring of motor current, direction of airend rotation, air filter, fluid filter and fluid separator cartridge; display of performance data, service intervals of primary components, operating hours, status data and event memory data. Selection of Dual, Quadro, Vario and Continuous control modes as required. Dimensions: Cooling air outlet Cooling air for control cabinet Cooling air inlet Operating panel 90 90 Compressor cooling air outlet irend inlet air Cooling air inlet for cooler Motor inlet air Direct, torsional-elastic coupling, without gearing (For further information see SIGM-CONTROL brochure P-80). 0 Comprehensive design know-how Screw Compressor Heat recovery quamat ir receiver lity and at the lowest possible cost. This standard is achieved with products of the highest quality and through decades of experience in design and construction of compressed air systems. 00 80 Compressed air connection DN PN Filter Refrigeration dryer Use this expertise to your advantage and let design your compressed air system. Valuable information and advice regarding services, planning and analysis can be found under Services on the website www.kaeser.com. 00 Compressed air supply systems are often highly complex and can only be efficiently operated in the long term if careful planning is implemented during each stage of design, system expansion and modernisation. KESS ( s Energy Saving Service) provides comprehensive analysis of your compressed air usage, enabling s experts to plan and design a system that is specially tailored to meet all of your compressed air requirements. The service combines tried and tested compressed air components, user advice and services with cuttingedge technology to ensure maximum efficiency - air systems typically operate at 9 percent load capacity or more. Every compressed air system illustrates s commitment to producing application-specific quality compressed air with unsurpassed reliabi-

Choose the required grade of treatment according to your field of application: ir treatment using a refrigeration dryer (+ C pressure dew point) Examples: selection of treatment classes to ISO 8- Solids Water Oil acteria Dairies, breweries Food and semi-luxury food production Very clean conveying air, chemical plant Pharmaceuticals Weaving machines, photo labs Paint spraying, powder coating Packaging, control and Instrument air General works air, quality sandblasting Shotblasting Low quality shotblasting Conveying air forwaste water systems No quality requirements For air mains subject to sub-zero temperatures: treatment systems with desiccant dryers (pressure dew point to -0 C) Pharmaceuticals, dairies, breweries Microchip production, optics, food and semi-luxury food production Paint spraying Process air, pharmaceuticals Photo labs pplications subject to subzero temperatures, especially dry conveying air, paint spraying, fine pressure controllers C C D E G G H I 9 J 8 9 C F Solids Water Oil acteria - - - - - - FE FE FD CT FE rotary screw compressors other machines Oil vapour content 0.00 mg/m, particle retention > 0.0 µm, sterile, odourless and tasteless Oil vapour content 0.00 mg/m, particle retention > 0.0 µm Oil vapour content 0.00 mg/m, particle retention > µm FG FD FFG CT KOMPRESSOREN GmbH FD FF DD FF F FC FE RD ED Compressor Filters ir receiver ED Installation for heavily fluctuating air demand Filters ir receiver T quamat Compressor THNF THNF quamat Explanation: THNF=bag filter cleans dusty and highly contaminated intake air ZK=centrifugal separator removes condensate ED=ECO Drain electronic level-controlled condensate drain F=prefilter µm separates liquid droplets and solid particles > µm, oil content mg/m FC=prefilter µm separates oil droplets and solid particles > µm, oil content mg/m FD=particulate filter µm separates dust particles (attrition) > µm FE=microfilter 0.0 ppm separates aerosol oils and solid particles >0.0 µm, aerosol content 0.0 mg/m FF=microfilter 0.00 ppm separates aerosol oils and solid particles >0.0 µm, oil content 0.00 mg/m FG=activated carbon filter for adsorption of oil vapours, oil vapour content 0.00 mg/m FFG=combination filter comprising FF and FG RD=refrigeration dryer pressure dew point to + C DD=desiccant dryer for compressed air drying; DC series - heatless regeneration, pressure dew point to -0 C; DW, DN, DTL and DTW series - heat regeneration, pressure dew point to -0 C CT=activated carbon adsorber for adsorption of oil vapours, oil vapour content 0.00 mg/m = sterile filter for bacteria-free air quamat = condensate treatment system = air-main charging system D E F G erosol oil 0.00 mg/m, particle retention > 0.0 µm erosol oil 0.0 mg/m, particle retention > 0.0 µm erosol oil 0.0 mg/m, particle retention > µm erosol oil mg/m, particle retention > µm H I J erosol oil mg/m, particle retention > µm erosol oil mg/m, particle retention > µm Untreated ZK Installation for heavily fluctuating air demand DD FE ZK Contaminants: + solids - + water - + oil - + bacteria - Degree of filtration: ISO 8- Class Solid particles Max. no. of particles per m with size d (µm) 0. 0.d0. 0.d.0.0d.0 µm mg/m Humidity Pressure dew point (x=liquid water in mg/m ) Overall oil content mg/m 0 as specified by user 00 0-0 C 0.0 00000 000 0-0 C 0. 0000 00 000 0000-0 C + C + C.0.0 +0 C 0 0 x 0. 8 0.x.0 9.0x 0.0 P. O. ox 90 Coburg GERMNY Tel: +9 9 0-0 Fax: +9 9 00 www.kaeser.com e-mail: productinfo@kaeser.com P-/8ED./0 Specifications are subject to change without notice