Warrick Series DMS-470/570 Montoring Panels Installation and Operation Bulletin



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Warrick Series DMS-470/570 Montoring Panels Installation and Operation Bulletin Form 725-B Sheet P/N 7800824 Rev. Table of Contents Page 2 Page 3 Page 4 Page 5 Page 6 Page 7 Page 8 Page 9 Page 10 Page 11 Page 12 Installation Instructions: Safe Sensing Circuits - Mounting Location - Wiring: General Information Installation Instructions: Safe Sensing Circuits - Wiring Diagrams Operation Instructions - Control Panel Settings - Setting the DIP switches Operation Instructions - djusting the Set Point Potentiometer - djusting the Set Point Position: SVP-2 Only Technical Information - Ordering Information - Specifications Technical Information - Module Replacement Operation Instructions - Panel Operation - Fuel/Water Pushbutton Operation - Troubleshooting Guide Sample Wiring Diagram - DMS-474--2 / DMS-574--2 Sample Wiring Diagram - DMS-478--1 / DMS-578--1 Panel Dimensions - DMS-474- -DMS-478- Panel Dimensions - DMS-574- -DMS-578-

Installation: Intrinsically Safe Sensing Circuits This bulletin should be used by experienced personnel as a guide to the installation of the Series DMS-470/570 alarm panels. Selection or installation of equipment should always be accompanied by competent technical assistance. We encourage you to contact Warrick or its local representative if further information is required. Important Before proceeding to install and wire the control panel, read and thoroughly understand these instructions. When the Series DMS 470/570 Monitoring Panel is installed according to these instructions, the panel will provide intrinsically safe sensing circuits for interface into Class I, II. Division 1, Groups C, D, E, F and G hazardous locations. Electrical equipment connected to Series DMS 470/570 Monitoring Panel should not exceed maximum ratings marked on product. Mounting Location The control must be situated in a non-hazardous area where an explosive atmosphere will not exist at any time. Wiring: General Information 1. Intrinsically safe wiring must be kept separate from non-intrinsically safe wiring. 2. Intrinsically safe and non-intrinsically safe wiring may occupy the same enclosure or raceway if they are at least 2 inches (50mm) apart and separately tied down. Inside panels, field wiring terminals for intrinsically safe circuits must be separated by at least 2 inches (50 mm) from non-intrinsically safe terminals. 3. For sensor wiring, use #14 or #16 WG type MTW or THHN wire. By using these wire types in conjunction with the following distance recommendations, you will not exceed the maximum capacitance for field wiring. Use Table 1 as a guide for maximum wire runs. Table 1 Model No. Number of Wires Distance Per Channel DMS470/570 ll 2 Wire s 900 Feet DMS470/570 ll 3 Wire s 450 Feet 4. Intrinsically safe terminals can be connected to any non-energy generating or storing switch device such as a pushbutton, limit or float type switch or any Warrick electrode and fitting assembly. 5. ll junction boxes and field wire terminations should be waterproof. Refer to appropriate sensor instructions for details on how to install sensors. 6. n approved seal should be used at the point where the intrinsically safe control circuit wiring enters the hazardous area. 7. For additional guidance on Hazardous Location Installation and Intrinsically Safe Devices, consult NSI/IS standard RP 12-6 or NEC articles 500-516. Wiring s: Wire the sensor devices to the Series DMS 470/570 Monitoring Panel as shown in figure 3-1 to 3-4. ( separate rigid metallic conduit must be used to enclose the conductors of the intrinsically safe sensor circuit. conduit hub is provided on the bottom side of the enclosure for intrinsically safe wiring.) 2

Installation: Intrinsically Safe Sensing Circuits Figure 3-1 #1 S1 G1 Enclosure #1 #2 #3 #4 (BLK) (RED) S1 G1 S2 G2 S3 G3 S4 G4 SIL 2 Wire Two (2) wire sensor connections for standard terminals Conduit Hub for Wires ONLY! Figure 3-2 Enclosure #1 S1 G1 S2 #1 #2 FUEL (BLK) COMMON (GRN) WTER (RED) S1 G1 S2 G2 S3 G3 S4 G4 SIL 3 Wire Three (3) wire sensor connections for standard terminals Conduit Hub for Wires ONLY! For those models using the optional check push buttons, wire sensors per Figures 3-3 and 3-4. Figure 3-3 #1 F1 C1 W1 Enclosure #1 #2 #3 #4 (BLK) (RED) 2 Wire F1 C1 W1F2 C2 W2F3 C3 W3F4 C4 W4 Two (2) wire sensor connections for Fuel/Water terminals Conduit Hub for Wires ONLY! Figure 3-4 #1 F1 C1 W1 Enclosure #1 #2 #3 #4 FUEL (BLK) COMMON (GREEN) WTER (RED) F1 C1 W1F2 C2 W2F3 C3 W3 F4 C4 W4 3 Wire Three (3) wire sensor connections for Fuel/Water terminals Conduit Hub for Wires ONLY! 3

Operation Instructions Control Panel Settings Before putting system into operation, DIP switches and potentiometers (set point) must be set to correctly match the type of sensor you are using. (Ref to Table 4-1). The DIP switches and potentiometers are located above the sensor terminal strip. (Figure 4-1) DIP SWITCHES INVERSE INVERSE MIN 1 MX SETPOINT 1 DIRECT 2 MIN 2 MX SETPOINT MIN 3 MX SETPOINT 3 DIRECT 4 MIN 4 MX SETPOINT FIELD WIRING TERMINL STRIP S1 G1 S2 G2 S3 G3 S4 G4 SENSOR CONNECTIONS Figure 4-1 Setting the DIP Switches Table 4-1describes applications vs. DIP switch settings. Each channel will have its own setting corresponding to the type of sensor being used. Table 4-1 PPLICTION Double Wall Fiberglass Fuel Sensing Double Wall Fiberglass Water Sensing Double Wall Steel Hydrocarbon/Water Sensing Double Wall Steel Liquid Sensing Product Level larm (Normally Closed Float) Product Level larm (Normally Open Float) Monitoring Well (Hydrocarbon Vapor) Detector Unused Channel Unknown Unknown WRRICK SENSOR DFP-25 DWP-25 DSP-2 DLP-2 LS-700/800 LS-700/800 SVP-2 None Unknown Normally Open Switch Unknown Normally ClosedSwitch CTIVTION CONDITION Closes on Detecting Fuel Closes on Detecting Water Closes on Detecting Hydrocarbon or Water Closes on Detecting Liquid Opens on Rising Level Closes on Rising Level Resistance Increases on Detecting Vapors N Closed on Fault Open on Fault DIP SWITCH SETTING Direct ( OFF ) Direct ( OFF ) Direct ( OFF ) SET POINT DJUSTMENT N N N N See Instructions on set point setting N See Instructions on set point setting N N Consult Factory 4

Operation Instructions djusting the Set Point Potentiometer DIP Switch Set In Inverse (ON) Mode: When using a channel in Inverse(ON), there is no need to adjust the potentiometer. The channel is automatically set to the maximum sensitivity. DIP Switch Set In Direct (OFF) Mode: Turn the potentiometer clockwise until it reaches the end of its rotation. Do not force the rotation. When the potentiometer is adjusted to this position, it is set to the maximum sensitivity. When using SVP-2 Vapor s, it may be necessary to reduce this sensitivity. Continue with the following instructions. The Following djustment pplies only to those channels using an SVP-2 Vapor. This adjustment will allow the alarm point to be set at a level just higher than the existing background contamination, thus only indicating a potential new leak or spill condition. CUTION: s the Vapor sensor reacts over time (Months) to background (Existing) contamination, a false alarm may occur. If this occurs, repeat the adjustment procedure. 1. With all appropriate potentiometers set to fill clockwise position, apply power to the panel and observe the state of the indicator lights. Silence the audible alarm if necessary. 2. Upon power-up, no warning lights (audible alarm) should be on. If the warning lights are lit, proceed to step 3. Starting with the first channel using a vapor sensor, turn the potentiometer counter-clockwise until the warning light turns on. (silence the audible alarm) Turn the potentiometer clockwise until the alarm light turn off. Turn the potentiometer an additional 1/8 turn. Repeat this procedure for the remaining channels using vapor sensors. 3. If an alarm light remains lit, determine which channel is activated. Check the position of the DIP switch for the sensor being used on that channel. Check the sensor wiring. Check for a true fault condition. Refer to troubleshooting guide for further details. Warning Light Off (Step #3) Warning Light On (Step #2) Start (Step #1) dditional 1/8 Turn (Step #2) Full Clockwise position Supply Power weatherproof conduit hub is provided on the top of the enclosure for supply power wiring. Connect the incoming supply HOT lead to the L 1 terminal, NEUTRL lead to the L2 terminal and ERTH GROUND lead to the G Terminal. Grounding Terminal G on the supply line/load side terminal strip is a redundant system ground terminal and must be connected to the earth ground buss of the panel s C supply line feeder. Remote larm Contact set of SPDT dry contacts activates on fault when any one of the four (4) channels alarms. Using the conduit hub on the top of enclosure, wire contacts to remote alarm or indicator, if applicable (terminals 7,8 and 9). For low voltage circuits, wiring should not be run in the same conduit as high voltage circuits. Conduit should be teed immediately after leaving enclosure. Optional uxiliary Contact Board SPDT auxiliary set of contacts are available for interfacing to remote alarms, computers, tank gauging systems, etc. One set of contacts per channel are provided. Wire through conduit hub on top of the enclosure. (See Figure 9-1) 5

Technical Information Ordering Information General One set of auxiliary contacts is standard with every (4) four channels supplied. common test button is included as standard for every (4) four channels supplied. The Fuel/Water check buttons listed below are used to distinguish water or hydrocarbon when three1 wire sensors are used. DMS-47X-X-X-X DMS-57X-X-X-X NO. OF CHNNELS 1 1 CHNNEL 2 2 CHNNELS 3 3 CHNNELS 4 4 CHNNELS 8 8 CHNNELS 12 12 CHNNELS FUEL / WTER CHECK PUSH BUTTONS NO CHECK BUTTONS B CHECK BUTTONS 1-4 C CHECK BUTTONS 1-8 D CHECK BUTTONS 1-12 F CHECK BUTTONS 1 G CHECK BUTTONS 1-2 H CHECK BUTTONS 1-3 Specifications Primary C Supply Line: 120 VC (plus)+ 10%, (minus) -15%, 50/60 Hz. UXILIRY CONTCTS 1 NO UX. CTS. 2 UX. CTS. 1-4 3 UX. CTS. 1-8 4 UX. CTS. 1-12 6 UX. CTS. 1 7 UX. CTS. 1-2 8 UX. CTS. 1-3 ENCLOUSURE - NEM 3R N4 NEM 4 N4XFG NEM 4X FIBERGLSS Probe Voltage: Nominal 12 VC @ 6ma RMS Sensitivity Range: 0-50,000 Ohms maximum specific resistance Temperature: (minus) -400 to (plus) +150 F Remote larm Contact: (Terminals 7 N.C., 8 com & 9 N.O.) 6 Contact Design: SPDT (1 form C): one normally open (N.O.) and one normally closed. Contact Ratings: 120 VC or 30 VDC, 5 1/10 H.P. Contact Life: Electrical @ rated load = 100,000 cycles minimum. Mechanical = 10 million cycles minimum. Electronics Module: Solid state components epoxy encapsulated in a black nylon shell Module Terminals: Screw Terminal Torque Rating: 5-6 Inch/ Pounds Field Wiring: Removable terminal strip, containing a size 4 (four) pan head screw with a clamping plate. Will accept up to one #14 WG wires per terminal. Factory Wiring: Removable terminal strip will accept up to one #14 WG wires per terminal. Optional uxiliary Board: uxiliary Contacts: One relay contact per channel. Contact Design: SPDT (1 form C): one normally open (N.O.) and one normally closed (N.C) Contact Ratings: 120 VC or 30 VDC, 10 1/3 H.P. Contact Life: Electrical @ rated load = 100,000 cycles minimum. Mechanical = 10 million cycles minimum. uxiliary Board Terminals: Field Wiring: Removable terminal strip will accept up to one #14 WG wire per terminal. uxiliary Board Connection: Eight (8) pin wire harness connector. Optional Check Pushbutton Board: Terminals: Size four (4) pan head screw with a clamping plate, will accept up to one #14 WG wire per terminal. Check pushbutton board and module strip should be removed as an assembly from electronic module.

Technical Information If the electronic module needs to be replaced: Module Replacement 1. Turn off power to the control panel. 2. Remove the metal barrier located across the center of module. 3. Remove all field wiring terminal blocks from the electronic module. The field wires do not need to be removed from the terminal blocks to do this. The terminal blocks separate at midpoint on the vertical as shown in Figure 7-1. Module Replacement Diagram Field Wiring Terminal Block Terminal Strip Removal Factory Wiring Terminal Block Terminal Strip Removal Removable Terminal Strips Separation Point Factory Wiring Field Wiring Figure 7-1 4. Remove the factory wiring terminal blocks from the electronic module. The factory wiring does not have to be removed to do this. The terminal blocks separate from the module at the board surface as shown in Figure 7-1. 5. Remove the four (4) machine screws from the base of the electronic module. The module can now be removed from the control panel. 6. Replacement Module: 47D1 BXXX 7. Install a new module and reinstall all of the terminal blocks. Make sure that all factory and field wiring is in place. 8. Reinstall the metal barrier across the center of the module. 9. Set all DIP switches and potentiometers according to previous instructions. 7

Panel Operation: Operation Instructions With sensors wired to control panel and power applied, the normal light (yellow) should be lit. Individual warning lights (amber) are provided for each channel. If a sensor detects a fault condition, the normal light will deenergize. The appropriate warning light will then energize and the audible alarm will sound. To silence the alarm, push the pushbutton. The WRNING light will remain lit until the fault condition is cleared. If a second fault occurs before the first fault is cleared, the appropriate WRNING light will energize and the alarm will sound. Each successive fault will cause the alarm to sound. button is supplied to test the circuitry in the panel. To perform a test, push the pushbutton and hold. The NORML light will go off. ll WRNING lights in that bank will light and the alarm will sound. Releasing the pushbutton will return the system to a normal condition. ll panels contain a master fault contact, which will activate if any one of the channels sees a fault condition. This can be used to trigger a remote alarm or cash register. The master fault contact will reset when the pushbutton is pressed. If optional auxiliary contacts are used, a SPDT dry contact is provided for each channel. To reset these contacts, the fault condition must be cleared. Fuel/ Water Pushbutton Operation: If the audible alarm is energized, it can be silenced by momentarily depressing the pushbutton. However, to determine if this is a FUEL or WTER leak, continue with the following instructions. 1. WTER PUSHBUTTON: (When audible alarm is already silenced.) Momentarily depress the WTER pushbutton. If, after release of the button the audible alarm energizes, this indicates a water leak. The audible alarm can be silenced again by depressing the pushbutton. If pushing the fuel button has no effect, continue to step 2. 2. FUEL PUSHBUTTON: (When audible is already silenced.) Momentarily depress the fuel pushbutton. If after release of the button the audible alarm engergizes, this indicates a fuel leak. The audible alarm can be silenced again by depressing the pushbutton. Troubleshooting Guide: test button is used on all models to test the control panel. If the system is powered up and there are no fault conditions, the normal contact should be lit. The warning lights and alarm should be de-energized. On pushing the test button, the normal lights go off, all warning lights in that bank should light up and the alarm should sound. Push the silence pushbutton to deenergize the alarm. Releasing the test pushbutton should return the system to a normal condition. If a WRNING light has been activated and a true fault condition is not found: 1. Recheck position of DIP switch (Figure 4-1, Table 4-1). If correct continue. 2. If the DIP switch is in the Inverse Mode ( ON ) position, removing the sensor wiring at the terminal block should deactivate the alarm. Shorting the terminal points should activate the alarm. If this does not happen, replace the electronic module. 3. If the DIP switch is in the Direct Mode ( OFF ) position, removing the sensor wiring at the terminal block should activate the alarm. Shorting the terminal points should de-activate the alarm. If this does not happen, replace the electronic module. 4. If the above tests show the operation of the module is correct and the alarm condition persists, repeat steps 2 and 3 for all field terminal locations. This should isolate the problem to the appropriate area (field wiring, sensor). Replace or repair appropriate equipment. 8

Sample Wiring Diagram DMS-474--2 / DMS-574--2 larm #1 larm #2 ISR1 Series 47D1-04 Intrinstically Safe Control larm #3 larm #4 Normal larm 120 VC L1 Hot Note: Terminals 7,8 & 9 are single pole double throw dry contacts designed for remote alarms. Terminals 8 & 9 CLOSE ON FULT Terminals 8 & 7 OPEN ON FULT Contacts clear when the pushbutton is depressed or when the fault condition is cleared. CONTCT RTING: 5 1/10HP 120VC L2 Neutral Ground Test Silence Seal Off Fitting 1 2 3 Hazardous rea 4 S1 G1 S2 G2 S3 G3 S4 G4 Contact Rating 10, 1/3 HP VC ux Connector NC C NO CHNL #1 NC C NO CHNL #2 NC C NO CHNL #3 NC C NO CHNL #4 C 1 2 3 4 5 6 7 NC 8 C 9 NO L1 L2 G Figure 9-1 9

Sample Wiring Diagram DMS-478--1 / DMS-578--1 larm #1 larm #2 ISR1 Series 47D1B04 Instrinsically Safe Control larm #3 larm #4 Normal Y larm C 1 2 3 4 5 6 7 NC 8 C S3 G3 S4 G4 9 NO L1 L2 G S1 G1 S2 G2 Seal Off Fitting larm #1 larm #2 ISR2 Series 47D1B04 Instrinsically Safe Control 1 2 3 Hazardous rea 4 larm #3 larm #4 Normal Y C 1 2 3 4 5 6 7 NC 8 C 9 NO L1 L2 G S1 G1 S2 G2 S3 G3 S4 G4 120 VC L1 Hot L2 Neutral Ground Note: Terminals 7,8 & 9 are single pole double throw dry contacts designed for remote alarms. Terminals 8 & 9 CLOSE ON FULT Terminals 8 & 7 OPEN ON FULT Contacts clear when the pushbutton is depressed or when the fault condition is cleared. CONTCT RTING: 5 1/10HP 120VC 1 Seal Off Fitting 2 3 Hazardous rea 4 10 Figure 10-1

Panel Dimensions NEM 3R 10 X 8 X 6 ENCLOSURE DMS-474- DMS-474 NORML LRM 1 LRM 2 LRM 3 LRM 4 11.00 10.00 NEM 3R 12 X 12 X 6 ENCLOSURE 3.00 8.00 Figure 11-1 DMS-478- DMS-478 NORML NORML LRM 1 LRM 2 LRM 3 LRM 4 LRM 1 LRM 2 LRM 3 LRM 4 12.00 13.00 3.00 12.00 Figure 11-2 11

DMS-574- NEM 3R 10 X 8 X 6 ENCLOSURE Panel Dimensions NORML DMS-574 LRM 1 LRM 2 LRM 3 LRM 4 11.00 10.00 DMS-578- NEM 3R 12 X 12 X 6 ENCLOSURE 3.00 8.00 Figure 12-1 DMS-578 NORML NORML LRM 1 LRM 2 LRM 3 LRM 4 LRM 1 LRM 2 LRM 3 LRM 4 12.00 13.00 3.00 12.00 Figure 12-2 12 Gems s Inc. One Cowles Road Plainville, CT 06062-1198 Tel: 860-793-4579 Fax: 860-793-4580