ASPIRATING SMOKE DETECTION SYSTEMS

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1 ASPIRATING SMOKE DETECTION SYSTEMS

2 Aspirating Smoke Detection VESDA-E VEP VEP-A00-1P, VEP-A00-P, VEP-A10-P The VESDA-E VEP series of smoke detectors bring the latest and most advanced detection technology to provide very early warning and the best nuisance alarm rejection to a wide range of applications. Built on the Flair detection technology and years of application experience, VEP detectors achieve consistent performance over their lifetime via absolute calibration. In addition, the VEP delivers a range of revolutionary features that provide user value. Flair Detection Technology Flair is the revolutionary new detection chamber that forms the core of VESDA-E VEP, providing better detection, fewer nuisance alarms, higher stability, increased longevity and particle characterisation. Direct imaging of the sampled particles using a CMOS imager combined with multiple photo-diodes allow vastly more data that can be used to derive actionable information about the observed particles using analytics. Installation, Commissioning and Operation VESDA-E VEP is equipped with a powerful aspirator that enables use of a total of 130m (427ft) of sampling pipe in the one pipe model and 560m (1,837ft) of pipe in the four pipe model. Out of box operation is made possible with AutoConfig which allows airflow normalisation and AutoLearn Smoke and Flow to be initiated from within the detector. VEP is fully supported by the ASPIRE and Xtralis VSC software applications which facilitate ease of pipe network design, system commissioning and maintenance. VESDAnet VESDA devices communicate on VESDAnet which provides a robust bi-directional communication network allowing continued redundant operation even during single point wiring failures. VESDAnet enables primary reporting, centralized configuration, control, maintenance and monitoring. Ethernet and WiFi connectivity VESDA-E detectors offer Ethernet and WiFi connectivity as standard features. The detector can be added to a corporate network, allowing WiFi enabled tablet devices and PC s installed with Xtralis monitoring and configuration software to connect wirelessly to the detector via the network. Backward Compatibility VESDA-E VEP is compatible with existing VESDA installations. The detector occupies the same mounting footprint, pipe, conduit and electrical connector positioning as VESDA VLP. VEP is also compatible with existing VESDAnet installations allowing monitoring of both VESDA-E and legacy detectors via the latest ivesda application. F E AT U R E S One and four pipe models for different applications Flair detection technology delivers reliable very early warning in a wide range of environments with minimal nuisance alarms Multi stage filtration and optical protection with clean air barriers ensures lifetime detection performance Four alarm levels and a wide sensitivity range deliver optimum protection for the widest range of applications Intuitive LCD icon display provides instant status information for immediate response Flow fault thresholds per port accommodate varying airflow conditions Smart on-board filter retains dust count and remaining filter life for predictable maintenance Extensive event log (20,000 events) for event analysis and system diagnostics AutoLearn smoke and flow for reliable and rapid commissioning Referencing to accommodate external environmental conditions to minimise nuisance alarms Fully backward compatible with VLP and VESDAnet Remote monitoring with ivesda for system review and proactive maintenance Ethernet for connectivity with Xtralis software for configuration, secondary monitoring and maintenance Industry first. Aspirating detector secondary monitoring and maintenance via WiFi USB for PC configuration, and firmware upgrade using a memory stick Two programmable GPIs (1 monitored) for flexible remote control Field replaceable sub-assemblies enable faster service and maximum uptime

3 VESDA-E VEP Technical Specifications SPECIFICATIONS ONE PIPE VEP FOUR PIPE VEP SUPPLY VOLTAGE VDC (24 V Nominal) POWER 24 VDC VEP-A00-1P VEP-A00-P VEP-A10-P ASPIRATOR SETTING Fixed POWER (QUIESCENT) 8.8 W 7.0 W 8.8 W 8.2 W 10.0 W POWER (IN ALARM) 9.6 W 7.8 W 9.6 W 10.4 W 11.6 W DIMENSIONS (WHD): 350 mm x 225 mm x 135 mm (13.8 in x 8.9 in x 5.3 in) WEIGHT 4.0 kg (8.8 lb) 4.0 kg (8.8 lb) 4.1 kg (9.0 lb) 3.5'' DISPLAY VEP-A10[Zone Number] Zone Name %/m OPERATING CONDITIONS AREA COVERAGE 1,000 m 2 (10,760 sq. ft) MIN. AIRFLOW PER PIPE Ambient: 0 C to 39 C (32 F to 102 F) Sampled Air: -20 C to 60 C (-4 F to 140 F) Tested to: -20 C to 55 C (-4 F to 131 F) UL: -20 C to 50 C (-4 F to 122 F) Humidity: 10% to 95% RH, non-condensing 15 l/m 2,000 m 2 (21,520 sq. ft) PIPE LENGTH (LINEAR) 100 m (328 ft) 280 m (919 ft) PIPE LENGTH (BRANCHED) 130 m (427 ft) 560 m (1,837 ft) PIPE LENGTHS DEPENDING ON NUMBER OF PIPES IN USE 1 Pipe 100 m (328 ft) 1 Pipe 110 m (361 ft) 2 Pipe 100 m (328 ft) 3 Pipe 80 m (262 ft) STAX PSU PSU, Auto Pipe Clean NO. OF HOLES (A/B/C) 30/40/45 40/80/100 COMPUTER DESIGN TOOL PIPE RELAYS IP RATING CABLE ACCESS CABLE TERMINATION DYNAMIC RANGE SENSITIVITY RANGE THRESHOLD SETTING RANGE SOFTWARE FEATURES ORDERING INFORMATION VESDA-E VEP with LEDs, 1 pipe VESDA-E VEP with LEDs, 4 pipe VESDA-E VEP with 3.5 Display, 4 pipe Mounting Bracket ASPIRE Inlet: External diameter 25 mm or 1.05 in (3/4 in IPS) Exhaust: External diameter 25 mm or 1.05 in (3/4 in IPS) via adaptor 7 programmable relays (latching or non-latching states) Contacts rated 2 30 VDC (Resistive) IP40 4 x 26 mm (1.02 in) cable entries Screw Terminal blocks sq mm (24 14 AWG) 0.001% to 32% obs/m (0.0003% to 10% obs/ft) to 20% obs/m (0.0016% to 6.25% obs/ft) Alert: 0.005% to 2.0% obs/m (0.0016% to 0.625% obs/ft) Action: 0.005% to 2.0% obs/m (0.0016% to 0.625% obs/ft) Fire1: 0.010% to 2.0% obs/m (0.0031% to 0.625% obs/ft) Fire2: 0.020% to 20.0% obs/m (0.0063% to 6.25% obs/ft) 4 Pipe 70 m (230 ft) Event log: Up to 20,000 events Smoke level, user actions, alarms and faults with time and date stamp AutoLearn: Detector learns Alarm Thresholds and Flow Fault thresholds by monitoring the environment. VEP-A00-1P VEP-A00-P VEP-A10-P VSP-960 SPARE PARTS VESDA-E Exhaust adaptor US VESDA-E Filter VESDA-E Filter - 20 Pieces VESDA-E Aspirator VESDA-E Smoke Detection Chamber VESDA-E Sampling Module VSP-961 VSP-962 VSP VSP-963 VSP-964 VSP-965 APPROVALS COMPLIANCE Please refer to the Product Guide for details regarding compliant design, installation and commissioning. SYMBOL LISTINGS/APPROVALS UL ULC FM ActivFire CE VdS EN 54-20, ISO Four Pipe VEP LED Fire 2 Fire 1 Action Alert Disabled Fault Power Smoke and Alarm Threshold Levels Detector OK Detector Fault Aspirator Fault Airflow Fault Power Fault Filter Fault Smoke Chamber Fault VESDAnet Fault StaX Module Fault Class A (40 holes / Fire 1 = 0.028% obs/m) Class B (80 holes / Fire 1 = 0.027% obs/m) Class C (100 holes / Fire 1 = 0.056% obs/m) (Classification of any configuration is determined using ASPIRE.) Regional approvals listings and regulatory compliance vary between product models. Refer to for the latest product approvals matrix. Honeywell 140 Waterside Road Hamilton Industrial Park Leicester LE5 1TN Tel: +44 (0) hlsuksalessupport@honeywell.com All technical data is correct at the time of publication and is subject to changes without notice. All trademarks acknowledged. Installation information: In order to ensure full functionality, refer to the installation instructions as supplied. H / Honeywell International Inc.

4 Aspirating Smoke Detection VESDA-E VEU VEU-A00, VEU-A10 The VEU series of aspirating smoke detectors are the premium detector of the VESDA-E range. An Ultra-wide sensitivity range; 15 times greater than VESDA VLP, and provision for more sampling holes provide an increased coverage in high airflow applications by at least 40%. Considerably longer linear pipe runs and extended branched pipe network configurations cater perfectly to applications with higher ceilings providing an increased coverage by up to 80% whilst allowing convenient detector mounting for ease of service and maintenance. A range of revolutionary new features provide unsurpassed detection performance, flexibility, field programmability, connectivity and reduced total cost of ownership. Flair Detection Technology Flair is the revolutionary new detection chamber that forms the core of VESDA-E VEU, providing better detection, fewer nuisance alarms, higher stability, increased longevity and particle characterisation. Direct imaging of the sampled particles using a CMOS imager combined with multiple photo-diodes provides vastly more data that can be used to derive actionable information about the observed particles using analytics. Installation, Commissioning and Operation VESDA-E VEU features a robust IP40-rated enclosure and is equipped with a powerful aspirator that provides a total pipe length of 800 m (2,624 ft). Out of box operation is made possible with AutoConfig which allows airflow normalisation and AutoLearn Smoke and Flow to be initiated from within the detector. VEU is fully supported by the ASPIRE and Xtralis VSC software applications which facilitate ease of pipe network design, system commissioning and maintenance. VESDAnet VESDA devices communicate on VESDAnet which provides a robust bi-directional communication network allowing continued redundant operation even during single point wiring failures. VESDAnet enables primary reporting, centralized configuration, control, maintenance and monitoring. Ethernet and WiFi connectivity VESDA-E detectors offer Ethernet and WiFi connectivity as standard features. The detector can be added to a corporate network, allowing WiFi enabled tablet devices and laptops installed with Xtralis configuration software to connect wirelessly to the detector via the network. Backward Compatibility VESDA-E VEU is fully compatible with existing VESDA installations. The detector occupies the same mounting footprint, pipe, conduit and electrical connector positioning as VESDA VLP. VEU is also compatible with existing VESDAnet installations allowing monitoring of both VESDA-E and legacy detectors via the latest ivesda application. F E AT U R E S Flair detection technology delivers reliable very early warning in a wide range of environments with minimal nuisance alarms Multi stage filtration and optical protection with clean air barriers ensures lifetime detection performance Four alarm levels and an ultra wide sensitivity range deliver optimum protection for the widest range of applications Intuitive LCD icon display provides instant status information for immediate response Flow fault thresholds per port accommodate varying airflow conditions Smart on-board filter retains dust count and remaining filter life for predictable maintenance Extensive event log (20,000 events) for event analysis and system diagnostics AutoLearn smoke and flow for reliable and rapid commissioning Referencing to accommodate external environmental conditions to minimise nuisance alarms Fully backward compatible with VLP and VESDAnet Remote monitoring with ivesda for system review and proactive maintenance Ethernet for connectivity with Xtralis software for configuration, secondary monitoring and maintenance Industry first. Aspirating detector secondary monitoring and maintenance via WiFi USB for PC configuration, and firmware upgrade using a memory stick Two programmable GPIs (1 monitored) for flexible remote control Field replaceable sub-assemblies enable faster service and maximum uptime

5 VESDA-E VEU Technical Specifications SPECIFICATIONS SUPPLY VOLTAGE VDC (24 V Nominal) POWER 24 VDC VEU-A00 VEU-A10 ASPIRATOR SETTING POWER (QUIESCENT) 7.0 W 8.8 W 14.7 W 8.2 W 10.0 W 15.8 W POWER (IN ALARM) 7.8 W 9.6 W 15.5 W 10.4 W 11.6 W 16.6 W DIMENSIONS (WHD) 350 mm x 225 mm x 135 mm (13.8 in x 8.9 in x 5.3 in) WEIGHT VEU-A kg (10.6 lbs) VEU-A kg (10.8 lbs) OPERATING CONDITIONS Ambient: 0 C to 39 C (32 F to 102 F) Sampled Air: -20 C to 60 C (-4 F to 140 F) Tested to: -20 C to 55 C (-4 F to 131 F) UL: -20 C to 50 C (-4 F to 122 F) Humidity: 10% to 95% RH, non-condensing MAXIMUM AREA OF COVERAGE 6,500 m² (69,965 sq.ft)* MINIMUM AIRFLOW PER PIPE 15 l/m PIPE LENGTHS DEPENDING ON NUMBER OF PIPES IN USE MAXIMUM PIPE LENGTHS STAX 1 Pipe 160 m (524 ft) 2 Pipes 150 m (492 ft) 3 Pipes 130 m (426 ft) Total Pipe Length (with branches): 800 m (2624 ft) PSU, Auto Pipe Clean NO. OF HOLES (A/B/C) 80/80/100 COMPUTER DESIGN TOOL ASPIRE 4 Pipes 100 m (328 ft) PIPE Inlet: External diameter 25 mm or 1.05 in (3/4 in IPS) Exhaust: External diameter 25mm or 1.05 in (3/4 in IPS) via adaptor RELAYS 7 programmable relays (latch or non-latch states) Contacts rated 2 30 VDC (Resistive) IP RATING IP40 CABLE ACCESS 4 x 26 mm (1.02 in) cable entries CABLE TERMINATION Screw Terminal blocks sq mm2 (24 14 AWG) DYNAMIC RANGE %/m ( % obs/ft) to 20% obs/m (6.25% obs/ft) SENSITIVITY RANGE 0.001% % obs/m ( to 6.25% obs/ft) THRESHOLD SETTING RANGE Alert: 0.001%-2.0% obs/m (0.0003%-0.625% obs/ft) Action: 0.001%-2.0% obs/m (0.0003%-0.625% obs/ft) Fire1: 0.001%-2.0% obs/m (0.0003%-0.625% obs/ft) Fire2: 0.001%-20.0% obs/m (0.0003%-6.25% obs/ft) SOFTWARE FEATURES Event log: Up to 20,000 events Smoke level, user actions, alarms and faults with time and date stamp AutoLearn: Detector learns Alarm Thresholds and Flow Fault thresholds by monitoring the environment. * System design and regulatory requirements may restrict the monitoring area to a lesser amount. 3.5'' DISPLAY SYMBOL VEU-A10 [Zone Number] Zone Name %/m LED Fire 2 Fire 1 Action Alert Disabled Fault Power Smoke and Alarm Threshold Levels Detector OK Detector Fault Aspirator Fault Airflow Fault Power Fault Filter Fault Smoke Chamber Fault VESDAnet Fault StaX Module Fault ORDERING INFORMATION VESDA-E VEU with LED s VESDA-E VEU with 3.5 Display Mounting Bracket VEU-A00 VEU-A10 VSP-960 SPARE PARTS VESDA-E Exhaust adaptor US VESDA-E Filter VESDA-E Filter - 20 pieces VESDA-E Aspirator VESDA-E Smoke Detection Chamber VESDA-E Sampling Module VSP-961 VSP-962 VSP VSP-963 VSP-964 VSP-965 LISTINGS/APPROVALS UL ULC VdS CE ActivFire EN 54-20, ISO Class A (80 holes / Fire 1 = 0.015% obs/m ) APPROVALS COMPLIANCE Class B (80 holes / Fire 1 = 0.026% obs/m) Please refer to the Product Guide for details regarding compliant design, installation and commissioning. Class C (100 holes / Fire 1 = 0.062% obs/m) (Classification of any configuration is determined using ASPIRE) Regional approvals listings and regulatory compliance vary between product models. Refer to for the latest product approvals matrix. Honeywell 140 Waterside Road Hamilton Industrial Park Leicester LE5 1TN Tel: +44 (0) hlsuksalessupport@honeywell.com All technical data is correct at the time of publication and is subject to changes without notice. All trademarks acknowledged. Installation information: In order to ensure full functionality, refer to the installation instructions as supplied. H / Honeywell International Inc.

6 Aspirating Smoke Detection VESDA VLI by Xtralis VLI-880, VLI-885 The VESDA VLI by Xtralis is an industry first early warning aspirating smoke detection (ASD) system, designed to protect industrial applications and harsh environments of up to 2000 m 2 (21,520 sq. ft.). Long life, intelligent, fail-safe technology The VLI detector combines a fail-safe Intelligent Filter (patent pending) with an advanced clean-air barrier for optics protection allowing the use of absolute detection and a long detection chamber life without the need for re-calibration. The Intelligent Filter: Reduces the level of pollution in the air sample before it enters the detection chamber, which dramatically extends the operational life of the detector in harsh and polluted environments. Is fully monitored, providing consistent sensitivity over the entire operational life of the detector. Installation, Commissioning and Operation The VLI detector features a robust IP66-rated enclosure which provides complete protection against dust ingress and strong water jets from all directions. In the majority of industrial applications, specifically in very harsh environments, this eliminates the need to use expensive external IP enclosures, thus simplifying and reducing the cost of installation. The VLI detector is equipped with a powerful aspirator that provides a total pipe length of 360 m (1181 ft). It is fully supported by the Xtralis ASPIRE, VSC and VSM4 software applications which facilitate ease of pipe network design, system commissioning and maintenance together with compatibility with existing VESDA installations. The AutoLearn commissioning assistant reduces setup time and ensures optimum alarm and flow thresholds in a range of environments. The VLI detector is inherently less prone to nuisance alarms due to the intelligent filter, lint trap, sub-sampling probe and secondary filter. Coupled with its modular design, VLI offers a lower total cost of ownership over the life of the product. F E AT U R E S Suitable for Class 1 Division 2 applications - Groups A,B,C & D Up to 2000 m 2 (21,520 sq. ft.) coverage Up to 4 inlet pipes Total pipe length up to 360 m (1181 ft) Five (5) high intensity status LEDs for greater visibility Robust absolute smoke detection Intelligent Filter (patent pending) Lint Trap to capture fibrous particulates Sub-sampling Probe (inertial separator) Secondary Filter Clean air barrier for optics protection Referencing AutoLearn Smoke and Flow Clean Air Zero Air-path monitoring Five (5) relays (Fire, Fault and 3 configurable) Relays configurable as latching or non-latching Expandable GPI and relays Ultrasonic flow sensing Xtralis VSC, Xtralis VSM4 and ASPIRE software support IP66 Enclosure Easy mounting with steel support bracket Modular field replaceable parts for ease of servicing Local USB configuration port Easy cable termination access Imperial and metric pipe ports Rubberized finish to external housing

7 VESDA VLI Technical Specifications SPECIFICATIONS SUPPLY VOLTAGE POWER CONSUMPTION CURRENT CONSUMPTION FUSE RATING DIMENSIONS (WHD) WEIGHT OPERATING CONDITIONS SAMPLING NETWORK MAXIMUM PIPE LENGTHS COMPUTER DESIGN TOOL VDC 10 W quiescent, 10.5 W with alarm (max) 415 ma quiescent, 440 ma with alarm (max) 1.6 A mm x mm x 180 mm (16.8 in x 12.5 in x 7.1 in) kg (13.3 lbs) Tested to -10 C to 55 C (14 F to 131 F) Recommended Detector Ambient: 0 C to 39 C Sampled Air: -20 C to 60 C (-4 F to 140 F) Humidity: 10% to 95% RH, non-condensing Maximum area of Coverage 2000 m 2 (21,520 sq.ft) Minimum total airflow: 40 l/m Minimum airflow per pipe: 20 l/m Total Pipe Length: 360 m (1181 ft) Maximum Single Pipe Length: 120 m (394 ft) ASPIRE PIPE Internal Diameter 15 mm - 21 mm (9/16 7/8 ) External Diameter 25 mm (1 ) RELAYS 5 Relays rated 2 30 VDC Fire (NO), Fault (NC), Configurable (NO): IP RATING IP66 CABLE ACCESS 4 x 25 mm (1 ) cable entries CABLE TERMINATION SENSITIVITY RANGE THRESHOLD SETTING RANGE SOFTWARE FEATURES CONFIGURABLE GENERAL INPUT (5-30 VDC) ORDERING INFORMATION VESDA VLI VESDA VLI with VESDAnet1 VESDA VLI Remote Display 7 Relays VESDA VLI Remote Display No Relays Note: Please contact your nearest Xtralis office for availability. SPARE PARTS VLI Intelligent Filter VLI Secondary Foam Filter VLI Aspirator VLI Chamber Assembly VLI VESDAnet Card VLI Remote Display Module Spare VLI Ultrasonic Flow Manifold Spare Screw Terminal blocks sq mm (30 12 AWG) 0.005% % obs/m (0.0015% % obs/ft) Alert: 0.05%-1.990% obs/m (0.016% % obs/ft) Action: 0.1%-1.995% obs/m (0.031% % obs/ft) Fire1: 0.15 %-2.0% obs/m (0.047% % obs/ft) Fire2: % % obs/m (0.05% % obs/ft)* *Limited to 4% obs/ft for UL Event log: Up to 18,000 events stored in FIFO format Smoke level, user actions, alarms and faults with time and date stamp AutoLearn: Min 15 minutes, Max 15 days. Recommended minimum 14 days. While AutoLearn is in progress, thresholds are NOT changed from pre-set values. External Reset, Mains OK, Standby, Isolate, Use Night-time Threshold, Reset + Isolate, Inverted Reset VLI-880 VLI-885 VRT-Q00 VRT-T00 VSP-030 VSP-031 VSP-032 VSP-033 VSP-034 VSP-035 VSP-036 HOW IT WORKS Air is continually drawn through the pipe network and into the VLI detector by a high efficiency aspirator. The air sample passes four (4) sets of ultrasonic flow sensors before being passed through the Intelligent Filter. The Intelligent Filter incorporates an innovative flow splitting arrangement where a smaller unfiltered portion is passed through another set of ultrasonic flow sensors and a larger portion of the sample passes through a HEPA filtration medium. This arrangement dramatically reduces the amount of contaminants entering the aspirator and the detection chamber, thus extending detector life. Filter loading is constantly monitored which enables the detector to intelligently maintain the sensitivity, hence ensuring consistent and reliable operation over time. This is achieved by comparing the readings from the four (4) sets of ultrasonic flow sensors at the detector air inlets to the readings from that in the unfiltered path and measuring the split of the airflow ratio as the filter load changes. The filtered and unfiltered portions are recombined as they exit the Intelligent Filter. A portion of the recombined air sample is then passed through the sub-sampling probe (inertial separator) and secondary filter. This ensures that larger dust particles are less likely to pass through the probe and filter arrangement, hence they are exhausted out of the detector. This configuration minimizes nuisance alarms caused by larger dust particles and extends detection chamber life. A third filter within the detection chamber assembly delivers a clean air barrier which protects the optical surfaces from contamination, further extending detector life and ensuring absolute calibration. The detection chamber uses a stable, highly efficient laser light source and unique sensor configuration to achieve optimum response to a wide range of smoke types. The presence of smoke in the detection chamber creates light scattering which is detected by the very sensitive sensor circuitry and then converted to an alarm signal. The status of the detector, all alarms, service and fault events, are monitored and logged with time and date stamps. Status reporting can be transmitted via relay outputs and across VESDAnet (VN version only). CLEAN AIR ZERO Clean Air Zero is a user-initiated VLI feature which compliments consistent absolute detection over time and also safeguards against nuisance alarms. This is achieved by introducing clean air into the detection chamber and taking a reference reading of the chamber background. This reading is then offset against the actual environmental background to maintain consistent absolute smoke detection. LISTINGS/APPROVALS UL ULC FM ActivFire CE LPCB NF SIL 2 as per IEC EN Class A (24 holes / Alert = 0.06% obs/m) Class B (28 holes / Fire-1 = 0.15% obs/m) Class C (60 holes / Fire-1 = 0.15% obs/m) (Classification of any configuration is determined using ASPIRE.) Regional approvals listings and regulatory compliance vary between VESDA product models. Refer to for the latest product approvals matrix. Honeywell 140 Waterside Road Hamilton Industrial Park Leicester LE5 1TN Tel: +44 (0) hlsuksalessupport@honeywell.com All technical data is correct at the time of publication and is subject to changes without notice. All trademarks acknowledged. Installation information: In order to ensure full functionality, refer to the installation instructions as supplied. H / Honeywell International Inc.

8 Aspirating Smoke Detection FAAST LT-200 (Standalone) Fire Alarm Aspirating Sensing Technology The FAAST LT-200 Aspirating Smoke Detector is designed with the installer and end user in mind. It serves the wide variety of Class C applications where maintenance is difficult, where traditional smoke detection methods are inappropriate or prone to fail due to harsh environments or areas where aesthetics matter. It is also suitable for smaller mission critical applications where very early warning - Class A or B detection is required. FAAST LT-200 combines proven aspirating detection technologies to deliver reliable smoke detection and efficient installation and maintenance. The device comprises innovative and intelligent internal design features designed to protect vulnerable components. These include a high sensitivity LED detection chamber (featuring a high power output IR LED and high gain IR receiver amplifier), along with ultrasonic flow sensors. The device is fast to install and easy to commission thanks to Pipe-IQ pipe design and configuration software, which is included with the product as standard. FAAST LT-200 stand alone devices are available as single channel and dual channel devices, offering flexibility for different detection strategies. A range of customisable settings are geared towards maximising device performance and meeting different application needs. The device also includes pre-alarm functionality for graduated alarm thresholds. The FAAST LT-200 provides alarm and fault relays with auxiliary events relay as an option. These can be set as latched or non-latched. To accommodate local installation standards or environments, flow and general fault delays can also be set. FEATURES High sensitivity LED Detection Chamber specially designed to cover Class C. Includes a high power output IR LED and high gain IR receiver amplifier Single & Dual channel versions with independent channels including fan, sensor and flow monitoring Provides pre-alarm functionality for graduated alarm thresholds Ultrasonic airflow sensing with expanded monitoring range A single device covers up to 2,000m2 according to national design regulations Pipe-IQ software provides intuitive system layout and configuration all in one package Whisper-quiet 26db(A) fan; ideal for discrete detection monitorng Multiple event logging up to 2244 events User friendly air flow pendulum graph for verification of pipe network functionality Easily replaceable and reusable filter without affecting the rest of the device Protected electronics from air flow and accidental damage during installation or maintenance Designed for efficient wiring and installation: cable gland holes, easy access to the wiring area and no special tools required Easy access to parts requiring routine maintenance: filter(s) and sensor(s) IP65 enclosure

9 FAAST LT-200 (Standalone) ARCHITECT / ENGINEERING SPECIFICATION PHYSICAL SPECIFICATION HEIGHT WIDTH DEPTH CABLE ACCESS 403mm (inc. inlets and outlets) 356mm 135mm 3 x M20 gland holes pre-drilled on top and bottom of the FAAST LT-200 unit WIRE GUAGE Min. 0.5mm 2 max. 2.0mm 2 MAX. SINGLE PIPE LENGTH MAX. TOTAL BRANCHED PIPE LENGTH MAXIMUM AIR INLET HOLES OUTSIDE PIPE DIAMETER INTERNAL PIPE DIAMETER 100m 160m (per channel) 18 (per channel) 25mm or 27mm 15-21mm SENSITIVITY RANGE % obs/m (Alarm level 1-5) RELAYS SOUNDER OUTPUTS SOUND PERFORMANCE EVENT LOG INTERFACES POWER SUPPLY & RELAYS CONNECTIONS USB SHIPPING WEIGHT - INC. PACKAGING MATERIAL FLOW MONITORING & REPORTING FILTRATION User Interface Display 3 (1 Alarm, 1 Fault, 1 Pre-Alarm) x per channel 1 per channel As low as 26db(A) 2,244 events Terminal blocks: power supply, relays, sounder outputs, external input; Loop Connection, USB port; Buttons (Test, Reset, Disable) Max. 2mm 2 Standard USB cable for Type B USB connection 6.5kg (dual channel) High and low according to EN54-20 Replacement filter The front panel will be different depending on which of the 3 loop models is being installed. The following display information is possible: Alarm level; Alarm, Pre-Alarm Particulate Levels: 1-5 Fault Status Flow Level Test, Reset and Disable Buttons ELECTRICAL SPECIFICATIONS SMOKE SENSORS EXTERNAL SUPPLY VOLTAGE REMOTE RESET TIME High sensitivity LED Detection Chamber V 2s POWER RESET 0.5s OPERATING CURRENT 1 CHANNEL DEVICE 24 VDC (excluding sounders) 2 CHANNEL DEVICE 24 VDC (excluding sounders) MAX. ALARM CURRENT 1 CHANNEL DEVICE VDC (excluding sounders) 2 CHANNEL DEVICE VDC (excluding sounders) RELAY CONTACT RATINGS ENVIRONMENTAL SPECIFICATIONS OPERATING TEMPERATURE -10 C to 55 C HUMIDITY RANGE IP RANGE 65 COVERAGE AREA ORDERING INFORMATION PART NUMBER FL0122E-HS-EB FL0112E-HS-EB FL0111E-HS-EB ACCESSORIES F-LT-EB FL-IF-6 Pipe and Fittings F-SEN-SSE FLT-AB-SA1 FLT-AB-SA2 F-INF-25 F-INF-25-RF LISTINGS & APPROVALS LPCB EN54-20: (holes per channel) VDC, 30 VAC) 10% to 93% (non condensing) Up to 2,000m 3 according to national design regulations DESCRIPTION Standalone Dual Channel Detector Standalone Single Channel Dual Detector Standalone Single Channel Detector Earth Bar FAAST LT-200 Integral Filter (6 filters) Please see Aspirating Accessories Brochure Replacement detector head FAAST LT SA 1-Ch Accessories Box FAAST LT SA 2-Ch Accessories Box External Pipe Filter External Filter replacement filter pack Class A - 3 holes Class B - 6 holes 3 x M20 gland holes pre-drilled on top 367mm Honeywell 140 Waterside Road Hamilton Industrial Park Leicester LE5 1TN Tel: +44 (0) hlsuksalessupport@honeywell.com 3 x cable gland plug 3 x M20 gland holes pre-drilled on bottom All technical data is correct at the time of publication and is subject to changes without notice. All trademarks acknowledged. Installation information: In order to ensure full functionality, refer to the installation instructions as supplied. DSFL-HS-UK-18 HON 2018 Honeywell International Inc.

10 Automatic Purging Unit: F-BO-AFE70-2 FAAST Fire Alarm Aspiration Sensing Technology Overview The FAAST Automatic Purging Unit provides a fully integrated and compact solution with user-selectable preventative or event triggered purging programs. An intelligent and installationfriendly design ensures AFE70-2 is a cost effective and reliable means of preventing pipe network contaminant blockages. Description ASD systems continuously monitor the air in a protected environment, potentially subjecting the system to contamination over time. In order to prevent the build up of pipe or aspiration hole contaminates, regular ASD system purging with compressed air is essential. In contrast to conventional purging systems,honeywell s compact and user-friendly AFE70-2 unit features a single built- in Solenoid valve, which initiates the release of air into the ASD system. This valve also increases reliability by protecting the unit from any compressed air damage and can be accessed through a control board that is integrated into the housing. Installation time is greatly reduced, thanks to a compact and fully integrated design, removing the need for mechanical and electrical control devices. Further cost savings can be leveraged by a reduced need for cabling and pipe work to commission the system. With user-definable purging processes and customisable program features, AFE70-2 delivers continuous and uninterrupted air flow and is also optimised to assist with benchmark preventative maintenance regimes, through automatic purging processes that can be set up at specific times. These purging processes are independent of any fault-initiated purging procedures performed by the system. Designed with the engineer in mind, the system offers excellent flexibility; external devices - such as a push- button or a central timer can be connected to an input to allow initiation of additional manual or automatic activations of the purging process. F E AT U R E S A fully integrated and compact system, designed for larger pipe networks Designed for use in Honeywell Aspiration Smoke Detection ( ASD) systems Patented design without air resistance (as defined by EN 54-20) 6 user selectable preventive or event-triggered purging programs - Short or long purging cycle options Internal clock or external clock timer can be connected Several systems can be coupled in Master-Slave mode Manual control via external push-button Automatic initiation if a fault message is received from the ASD system (activating through FACP only) Easy commissioning without software tools Multicolored LED indicates the system condition

11 F-BO-AFE70-2 Architect/Engineer Specifications PURGING UNIT HEIGHT WIDTH DEPTH 68 mm 204 mm 160 mm HOUSING COVER COLOUR Grey white, RAL 9002 WEIGHT 3.2kg (approx.) PATENT NUMBER AT COMPRESSED AIR CONNECTION MAX. PERMISSIBLE OVERPRESSURE RECOMMENDED MINIMUM PRESSURE FLOW RATE SOLENOID VALVE 0.7MPa (7.0bar) 0.2MPa (2.0bar) 0.2MPa: typ. 1,300 l/min 0.4MPa: typ. 2,300 l/min 0.6MPa: typ. 3,200 l/min 0.7MPa: typ. 3,700 l/min ENVIRONMENT OPERATING TEMPERATURE IP RATING +5 C to +50 C IP20D RELATIVE HUMIDITY Max. 95% at 40 C ORDERING INFORMATION DESCRIPTION Purging Unit / AFE70-2 Non-return valve for pipework ELECTRICAL SPECIFICATION SUPPLY VOLTAGE CURRENT 24V PART NUMBER F-BO-AFE70-2 RSV-R VDC 8mA (normal condition) 300mA (solenoid valve energised) System Configuration Pipe Network RSV-R25 non return valve Honeywell 140 Waterside Road Hamilton Industrial Park Leicester LE5 1TN Tel: +44 (0) Fax: +44 (0) hlsuksalessupport@honeywell.com All technical data is correct at the time of publication and is subject to changes without notice. All trademarks acknowledged. Installation information: In order to ensure full functionality, refer to the installation instructions as supplied. DSF-PSU / Honeywell International Inc.

12 Security and Fire Aspirating Smoke Detection Aspirating Applications Smoke Guide Detection in Cold Environments & Freezers FAAST

13 Cold storage & freezer application monitoring Aspirating Smoke Detection (ASD) technology is ideal for installation in cold environments where traditional point or beam detection is unsuitable, due to high levels of moisture and ice particles in the atmosphere. FAAST LT TM combines the most advanced ASD technology and flexible pipe network design to deliver the earliest, most accurate smoke detection with false alarm immunity. Typical cold storage and freezer applications include: Pharmaceutical & medical stores Food/drink produce stores Leasire centres e.g. ice rinks Cold environment challenges and risks There are a number of factors that make many traditional fire detection systems unsuitable for cold environments: Temperatures from -45 C to +8 C / -49 F to 46 F Heavy condensation Water vapour clouds High airflows diluting smoke Poor smoke transport due to low thermal conductivity Inaccessibility for installation, maintenance, testing and replacement Fire risks in these applications are considerable and include: Electrical or mechanical faults in conveyors and transport equipment Electrical equipment and wiring (in the environment or housed in the roof space) Lighting systems Hot spots resulting from maintenance operations Discarded cigarette butts Arson Typical areas where an ASD fire detection system provides an effective alternative to traditional detection methods include: 2 Food processing plants Retail food distribution Ambient stores (pharmaceutical)

14 Pipework application Sampling pipe network Achieving optimum performance, accuracy and reliability depends upon correct installation of both the device and the sampling pipe network. It is essential to ensure the unit is protected from any contamination and the following recommendations should be considered in order to leverage the full performance capability of the system. Pipe installation considerations PipeIQ TM three-in-one design, configuration and monitoring software is provided as standard with FAAST LT TM. During the planning stage, PipeIQ TM will provide an isometric design of the pipework system and may not take into consideration the following factors that may impact final correct design: Environment Feeder pipe run Offsets Obstructions Environmental considerations Environmental conditions can affect installation, operation and maintenance of the system, so please consider the following factors when designing the sampling pipe network: Temperature: from ambient to operational temperature; large fluctuations occur when doors are open/closed during loading/unloading Humidity: High levels of humidity fog are prevalent during loading/unloading activities External influence: Internal traffic movement, lorries, forklifts, conveyors, mechanical shovels and accumulative dirt build-up Installation of the sampling pipe network Most installations will use ABS Red or White sampling pipe work; this is approved and tested for FAAST LT TM. Optimum system design requires as much straight pipe work as possible. However, in reality bends and offsets will be required to create most application designs. It is recommended to use the preferred fittings (shown in Figure 1 a-f below), designed for use with FAAST LT TM. Please note: 90 elbow bends (Figure 1a), should not be used. a. b. c. d. e. f. Accessories image descriptions: a. DO NOT USE a 90 elbow bend b. Standard pipe clip c. Girder clip for fitting standard pipe clip * d. Sweep bend e. 45 elbow bend f. Flexible connector Figure 1. * Please note: fixings and hangers are available from a variety of manufacturers. 3 FAAST Fire Alarm Aspiration Sensing Technology

15 Temperature impact on pipes In all cases, the correct pipe clip should be used to accommodate for pipe slippage in the event of expansion and contraction from temperature fluctuations. Most pipes are affected by temperature fluctuations; the amount of expansion is generally 0.1mm / m for every 10 C / 50 F increase above installation temperature. Using the appropriate clips allows expansion and contraction to occur naturally. However, positioning the pipe up against a wall or obstruction such as a girder (see Figure 2 below), can prevent expansion/contraction. Figure 2. Expansion clip Flexible connector Support clips need to be spaced as detailed in the table below. Pipe Size Bracket spacing in metres 25mm 20 C / 68 F 1m 30 C / 86 F 0.95m 40 C / 104 F 0.85m 50 C / 122 F 0.75m 60 C / 140 F 0.70m 70 C / 158 F 0.60m Preventing water and high humidity detection issues In cold environments where high water/humidity are expected, additional ASD pipe network protection is required. A water trap can be fitted to the pipe network to ensure that water droplets do not enter the ASD unit; moisture simply falls into the trap and can be flushed out of the system during routine maintenance checks (see Figure 3 below). Gradient of pipe system aprox % Please note: No offsets around obstructions in pipework, clear line of site to water trap Water trap Figure 3. 4

16 For additional protection, the aspiration hole can be situated at a 30º angle (see Figure 4 below); this prevents water ingress into the pipe network, preventing the need for subsequent flushing during routine maintenance. Pipe with hole in the bottom: risk of condensation blocking the aspiration hole and humidity is sucked in. Pipe with hole at an angle: 30º angle allows condensation to drop down. Aprox. 30º angle Figure 4. Added system protection can be achieved by offsetting the sampling points. This prevents sample point blockages from large water droplets and also prevents airflow faults from occurring. Installing pipework on a slight gradient towards the ASD detection unit also encourages any moisture build-up in the pipe network to flow towards the water trap. Please note: the offset must be towards the water trap. Cold stores and freezer monitoring considerations FAAST LT TM is ideal for cold stores and freezer room monitoring, because the unit can be mounted outside of the protected area. To ensure correct system operation and performance, please consider the following guidance: Air return It is important that the air sampled from the protected area is returned to prevent condensation build-up in and around the exhaust of the unit and to alleviate any flow monitoring issues that could arise from pressure differentials between the protected area and the unit position (see Figure 5 below). Figure 5. FAAST Fire Alarm Aspiration Sensing Technology 5

17 Electronics protection Protection of the ASD unit electronics is essential in the coldest environments. This can be achieved by installing a length of pipe between the FAAST LT TM device and the inlet to the protected area. The pipe length allows cold air taken from the protected area to warm up, preventing damage to the FAAST LT unit (see Figure 6 below). The following pipe length specification is recommended: Down to -20 C / -4 F environment: 5 m pipe length minimum Below -20 C / -4 F environment: 15 m pipe length minimum Please note: This guidance is based on a normal ambient temperature (~22 C / 71 F), outside of the protected cold area. Figure 6. Pipe lagging and insulation Where build-up of condensation is an issue, lagging the inlet pipe from the protected area to the ASD unit should always be considered to avoid condensation or frosting of the pipe network. In extreme conditions, extensive insulation / lagging of the pipe network is recommended (see Figure 5 below). 6 Figure 7.

18 Manual blow through A manual blow through system is recommended in a cold store, and should be used with a closed end-cap, removing the pressure relief valve (see Figure 8 to the right). External in-line filter Compressed air inlet: e.g. snap-on fitting Safety valve: close before blowing the compressed air into the pipeline Figure 8. Sampling points It s important to ensure sampling points are not situated near entrance doors to the cold store, freezer or the blast chillers. These locations are the most likely for high condensation and ice crystal formation on the sampling points (see Figure 9 to the left). Figure 9. FAAST LT Accessories Please find below information on the FAAST LT accessories discussed in this guide. a. b. c. d. Accessories image descriptions: a. Plastic clip for airflow reducers b. Water/steam trap c. 3-way ball valve d. Manual blow through set Copyright 2018 Honeywell All rights reserved. All technical data is correct at time of publication and is subject to change without notice. All trademarks acknowledged. Installation information: in order to ensure full functionality, refer to the installation instructions as supplied. 7 FAAST Fire Alarm Aspiration Sensing Technology

19 Honeywell Tel: +44 (0) Waterside Road Hamilton Industrial Park Leicester LE5 1TN, UK

20 Aspirating Smoke Detection Refrigerated Storage Sampling VSP-860 Overview The Honeywell Refrigerated Storage Sampling Kit provides a standardised method of smoke sampling for Refrigerated Storage facilities in a considerably improved manner allowing simplified installation with reduced maintenance, thus promoting more reliable and hassle-free operation. The Honeywell Refrigerated Storage Sampling Kit has been designed to replace standard cone-shaped sampling nozzles installed at the ceiling in existing or new Refrigerated Storage facilities. This kit can be installed in the entire facility or combined with standard sampling points if required. The aim here is to reduce direct ice blockage of the sampling points hence this kit is recommended for installation in areas where higher humidity is likely to occur as a result of vehicle and pedestrian traffic (e.g. areas close to doorways or perimeter of the facility). This kit is treated as a standard sampling hole in the Honeywell ASD system design, in terms of system parameters (e.g. sampling hole location, hole size, transport time, sampling hole sensitivity) Description The sampling kit consists of outer and inner parts with the sampling pipe penetrating the Refrigerated Storage sandwich panel. The sampling pipe through the sandwich panel and inner parts are made of ABS plastic which is suitable for low temperatures down to -40 C (-40 F). The kit comprises a restriction assembly, placed above the sandwich panel, which consists of a sampling orifice within a socket union. Detectors Supported All Honeywell detectors installed with large bore pipe networks. FEATURES Enables the ASD pipe to be installed, inspected and maintained outside the Refrigerated Storage facility hence enabling fire contractors to work in ambient conditions most of the time Suited for facilities with and without ceiling cavities Eliminates the need for expensive HDPE (high density polyethylen pipe inside the Refrigerated Storage facility Eliminates the need for costly access equipment hire for on-going service/maintenance Eliminates the need for heat tracing Less prone to blockage due to icing Provides a generally more robust ASD installation for these unique environments Provides considerably improved aesthetics Minimises the need for Back Flush systems Offers all round cost savings

21 VSP-860 Dimensions Flexible pipe length approximately 72 cm h g f g e d c i 100 mm 34 mm Cold Store Insulation Material 280 mm b 40 mm a 100 mm ORDER CODES ITEM NO DESCRIPTION DESCRIPTION PART NUMBER a Inlet Funnel Refrigerated Storage Sampling Kit* VSP-860 b Inner Flange c Outer Flange * Please ensure a suitable T-junction is used. d Screw self-tapping e Tube-lower f g Socket Union-including Flow Restrictor and Seal Tube-Upper h Flexible Pipe i US Pipe Adaptor Honeywell 140 Waterside Road Hamilton Industrial Park Leicester LE5 1TN Tel: +44 (0) hlsuksalessupport@honeywell.com All technical data is correct at the time of publication and is subject to changes without notice. All trademarks acknowledged. Installation information: In order to ensure full functionality, refer to the installation instructions as supplied. ASD-RSSK / Honeywell International Inc.

22 ASPIRATING SMOKE DETECTION SYSTEMS EN54-4 APPROVED POWER SUPPLY UNITS l l l l l l l 2.5A and 5.25A versions Enclosure mounted with battery space 110V or 230V input, Regulated true 24V output Intelligent battery charging and temperature compensation Houses up to 12Ah batteries Status indicators for monitored faults Fully enclosed and robust construction Power supply Units fully certified to EN54-4 provide a stable and fully regulated, true 24V output for fire alarm system applications under all power conditions. The unique regulation techniques ensure that even when running on standby batteries, a stable 24V supply is available to all parts of the system ensuring that all 24V powered devices connected are supplied with optimum power. The powerful onboard micro-controller ensures that all battery types are conditioned with optimum, temperature compensated charging algorithms to maximise battery life and maintain batteries in top condition. The EN54-4 compliant power supplies can be fitted with an optional dual fused output monitoring module to ensure compliance with European standards when supplying fire control panels with an external power supply. DIMENSIONS (mm) 500 ORDER CODES EN54 2.5A Power Supply able to charge up to 12Ah batteries (500 x 355 x 117mm) EN Amp Power Supply able to charge up to 12Ah batteries (with Dual Output Board) 4I0AC ASD-PSU EN

23 ASPIRATING SMOKE DETECTION SYSTEMS EN54-4 APPROVED POWER SUPPLY UNITS TECHNICAL SPECIFICATION Construction Finish Colour lid & box Mains input supply voltage Mains supply fuse 1.2mm mild sheet steel Epoxy powder coated BS 00 A 05 grey fine texture 230V AC 50/60Hz or 11 0V AC 50/60Hz (link selectable) 250V, 3A, SB, 5mm x 20mm Load output voltage 19-30V DC +/- 1% Maximum load current EN models 5.25 Amps continuous with maximum battery charge output of 1.25A Maximum load current ASD-PSU Amps continuous with maximum battery charge output of 1.0A Maximum ripple 200 milliamps Load fuse 5 Amp, self resetting Polyfuse Maximum current draw from batteries 5 Amps Battery charge output voltage 27.4V DC nominal at 20ºC Battery charge current Deep discharge prevention Compatible batteries Operating temperature Common fault output Battery disconnected output Battery low output Charger fault output Earth fault output Mains failed output Fault output connector Mains connector Load connector Battery connector Front panel Power Front panel Fault indicator Power output 2 stage, constant voltage 1.25 Amps maximum Battery disconnects at 1 9V Yuasa NP7-1 2, NP1 2-12, NP1 7-12, NP Powersonic PS-1270, PS-12120, PS-12170, PS ºC to +45ºC Normally energised volt free changeover relay 30V DC 1 Amp Open collector 50 milliamps Open collector 50 milliamps Open collector 50 milliamps Open collector 50 milliamps Open collector 50 milliamps 14 way DIL header 0.1" spacing 3 way terminal, 7.62mm spacing, 2.5mm maximum cable size 2 way terminal, 7.62mm spacing, 2.5mm maximum cable size 2 way terminal, 7.62mm spacing, 2.5mm maximum cable size On indicator Green LED Yellow LED Dual 24V supply terminals with EN54-4 clause 6.4 interface (When fitted with optional dual fused output monitoring module)

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