User manual INTELLISENSE FG-1025F

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Manual abstract: user guide INTELLISENSE FG-1025F

Detailed instructions for use are in the User's Guide.

[. . . ] (Gang box is not required; however, mounting directly in drywall is not recommended. ) The FG-1025FD detector is identical to the FG-1025F detector, except the faceplate and housing are doublewide. All instructions also apply to the FG-1025FD detector. STEP 1 Figure 1 REMOVING THE FACEPLATE 1. To remove the faceplate of the detector, use a screwdriver to pry up on the latch at the bottom of the detector. (See Figure 1. ) NOTE: The FG-1025F/FD is designed to be mounted without removing the printed circuit board (PCB). [. . . ] (See Figure 3. ) 3 LATCH LED = FACTORY DEFAULTS OFF Red alarm LED lights for 5 seconds when detector alarms LEDs are disabled except during power-up test ON Red alar m LED latches ON when detector alarms1, 2 LEDs are enabled LED 1 2 Latched alarm LED does not affect timing of alarm relay. Reset the alarm LED by removing and restoring power, or by toggling the S1 LATCH switch off and on. MOUNTING THE DETECTOR Mount the FG-1025F/FD detector as shown in Figure 4. For mounting the detector, #6 flathead (M 3. 5) screws are recommended. (Screws are not provided. ) STEP Figure 4 4 Terminal block Single gang box #6 (M 3. 5) screws (not provided) REPLACING THE FACEPLATE The faceplate has an effect on the sensitivity of the microphone. (See Figure 5. ) Note: If required, the faceplate can be secured with a screw after installation. Break out the cover screw breakout flash, and secure the faceplate with a #4 (M 3) screw. (See Figure 4. ) Faceplate Optional knockout for faceplate screw PCB housing PCB cover LEDs DIP switch S1 Tamper arm IMPORTANT: Do not remove tamper arm from back of faceplate. Routed wires from terminal block STEP 5 #1 Figure 5 1. To replace the faceplate, hook the latches to the top of the detector first (#1). Then pivot the faceplate downward and snap the faceplate into place (#2). (See Figure 5. ) #2 2 TESTING The FG-1025F/FD should be tested at least once each year. The model FG-700 Glassbreak Simulator can be used if it is set for the TEMPered glass sound. Other glassbreak simulators will not give accurate indication of range. You must place the FG-1025F/FD in Test Mode before you can test the detector. If you are using the FG-700, or if for any reason remote activation cannot be used, use a screwdriver to short the test pads on the PCB (see Figure 6). Make sure to replace the faceplate of the FG1025F/FD before beginning testing. Point the front of the simulator at the detector and press the red start button. You should hear a short buzz from the simulator, and the green LED on the FG-1025F/FD should begin flashing about once per second to indicate it is in Test Mode. NOTE: In Test Mode the LED disable switch is overridden. STEP 6 Figure 6 NOTE: If you are using the FG-700, or if for any reason remote activation cannot be used, use a screwdriver to short the test pads on the PCB (see Figure 6). This will activate Test Mode. Use a screwdriver to short the test pads on the PCB to activate the test mode. Figure 7 Activating Test Mode FG-701 Glassbreak Simulator IMPORTANT: Some environmental factors may reduce the detector activation range. [. . . ] (See the FG-701 Operating Instructions for additional information. ) Figure 9 Hold FG-701 behind window coverings when testing. FG-701 Glassbreak Simulator 3 SELF-TESTS The FG-1025F/FD automatically performs a series of selftests during power-up, and continuously (when the detector is not detecting a trouble or alarm condition). If any self-test fails, the detector will signal trouble by flashing the LEDs alternately about once per second. If the trouble condition clears, the LEDs will return to the normal state. Always return the detector for repair if there is any indication of trouble, even if the trouble is temporary. POWER-UP SELF-TESTS · RAM Test: Write & read all RAM locations with one's & zero's · Arithmetic Test: Verify correct results for CPU arithmetic · Logic Test: Verify correct results for data comparisons · Clock Rate Test: Check clock frequency by measuring external time constants · Active Analog Circuit Test: Inject signals into analog channels to check gains, filters, A/D, and interrupts CONTINUOUS SELF-TESTS · Watchdog: Supervises microcontroller · ROM Checksum: Firmware ROM checksum verified · RAM Test: Write & read RAM locations with one's & zero's · Logic Test: Verify correct results for data comparisons · Passive Analog Circuit Test: Verify analog inputs are within normal bounds SPECIFICATIONS Range: 25' (7. 6 m) maximum No minimum range Alarm Relay: Form A, 125 mA maximum 25 VDC maximum Alarm Duration: 5 seconds (unaffected by alarm LED latching) Tamper Switch: Cover tamper 25 mA maximum 24 VDC maximum Power Requirements: 8 - 14 VDC; 25 mA typical at 12 VDC, 35 mA max AC Ripple: 4 Volts peak to peak at Nominal 12 VDC Operating Temperature: 32o to 120 o F (0o to 49o C) Storage: -4o to 122o F (-20o to 50 o C) RF Immunity: 30 V/m, 10 MHz - 1000 MHz ESD Immunity: 10 kV, Discharges of either polarity to exposed surfaces Dimensions: FG-1025F: Faceplate: 4. 49" x 2. 76" (114mm x 70mm), rear cover: 2. 65"H x 1. 97"W x 1. 85"D (67. 4mm x 50mm x 47mm) FG-1025FD: Faceplate: 4. 49" x 4. 49" (114mm x 114mm), rear cover: 2. 65"H x 1. 97"W x 1. 85"D (67. 4mm x 50mm x 47mm) Weight: FG-1025F: 3. 1 oz (87g), packed product: 4. 7 oz (133g) FG-1025FD: 3. 8 oz (107g), packed product: 6. 5 oz (184g) Accessories: FG-701 Glassbreak Simulator Approvals/Listings: FCC certified UL listed LED Indicators: The two LEDs on the front cover are used to indicate the detector's operational status. 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