W7100G Discharge Water Temperature Control

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W700G Discharge Water Temperature ontrol FETURES PRODUT DT PPLITION Up to six stages of cooling provided. Expandable system up to 0 cooling stages using a W70. dvanced proportional plus integral microprocessor control algorithm minimizes droop. Soft start to minimize compressor cycling during system start up. djustable minimum on/off timing and time delay between stages of either 30 or 0 seconds. djustable setpoint from 0 to 0 F (- to 43 ). djustable reset differential from 5 to 0 F (3 to K). djustable control band from 0 to 0 F (0 to K). Reset signal from either an outdoor air or space sensor. 770 sensor can be used for sensing water temperature. LED show which stages of cooling are energized. The microprocessor-based W700G Discharge Water Temperature ontrol maintains an average discharge water temperature for reciprocating chiller applications, by staging on and off compressors or unloaders as required. The W700 can provide up to 0 stages of cooling using a W70 Satellite Sequencer. ontents pplication... Features... Specifications... Ordering Information... Installation... 3 Operation... Settings and djustments... 8 System heckout... 9 Troubleshooting... 0 U.S. Registered Trademark opyright 00 Honeywell ll Rights Reserved 3-404

W700G DISHRGE WTER TEMPERTURE ONTROL SPEIFITIONS W700G Model Features: stage cooling, controls reciprocating chillers. W70 satellite expansion to 0 cooling stages. djustable setpoint. Dimensions: See Fig.. Electrical Ratings: Input Voltage and Frequency (terminals TR-TR): t 0 Hz: 0 to 30 Vac. t 50 Hz: 0 to.4 Vac. Power onsumption: Device: V at 4 Vac and 50 to 0 Hz. On/Off Stages (ool through ): See Table. Table. Power onsumption On/Off Stages (ool -). ontact Voltage (Vac) Inrush (V) Running (V) N.O. 4 40 0 N.. 4 75 30 N.O. 0/40 750 75 N.O. 0/40 40 40 Switching: Spdt relays. Wiring Terminals: /4 in. quick-connect. Sensor Input Signal (See Fig. ): Positive temperature coefficient: 4.8 ohms/ F (. ohms/ ). Resistance: 3484 ohms at 77 F (5 ). Number of Stages Input: Resistor value (across terminals 7 and ) to determine number of ON/OFF stages. (See Table ). Temperature Ratings: mbient: -40 F to +50 F (-40 to + ). Shipping: -30 F to +50 F (-34 to + ). Humidity Rating: 5 to 90 percent RH noncondensing. Mounting: Four mounting holes in base. Use No. screws (not provided). pprovals: Underwriter s Laboratories Inc. omponent Recognized. dditional System omponents: 77000 Discharge Water Sensor: senses discharge water temperature, provides input to W700G sensor terminals T and T. Transformer (required): Provides 4 Vac power for all components of the W700G control system. (Size transformer to match system load.) ccessories: T704705 Remote Temperature Sensor: Discharge water temperature reset from controlled space. S938037 Reset Setpoint Potentiometer: Use one or more T704705 with S93037. 703G0 Outdoor ir Sensor: Reset of discharge water from outdoor air temperature. 77000 Discharge Water Temperature Sensor: Senses discharge water temperature for input to W700G. W70003 Satellite Sequencer: dds up to 4 ON/OFF stages of cooling to W700 switching capability. 37 opper Immersion Well: Required for 770 Immersion Sensor. 37E Stainless Steel Immersion Well Required for 770 Immersion Sensor. 0740 Heat onduction ompound: Required for minimum thermal lag. T7D83 System Transformer: 40 V, 0 Vac. T870 System Transformer: 50 V, 0/08/40 Vac. T88005 System Transformer: 75 V, 0 Vac. T880 System Transformer: 75 V, 08/40 Vac. 4074EDJ Resistor Kit and Test Plug: Used in controller checkout. 4074EFV Resistor Kit for W700G System onfiguration: Used to select number of stages controlled. ORDERING INFORMTION When purchasing replacement and modernization products from your TRDELINE wholesaler or distributor, refer to the TRDELINE atalog or price sheets for complete ordering number. If you have additional questions, need further information, or would like to comment on our products or services, please write or phone:. Your local Home and uilding ontrol Sales Office (check white pages of your phone directory).. Home and uilding ontrol ustomer Relations Honeywell, 885 Douglas Drive North Minneapolis, Minnesota 554-438 In anada Honeywell Limited/Honeywell Limitée, 35 Dynamic Drive, Scarborough, Ontario MV 4Z9. International Sales and Service Offices in all principal cities of the world. Manufacturing in ustralia, anada, Finland, France, Germany, Japan, Mexico, Netherlands, Spain, Taiwan, United Kingdom, U.S.. 3-404

W700G DISHRGE WTER TEMPERTURE ONTROL 3/ DIMETER (5) 4 HOLES 7-3/ (98) 8-5/8 (9) INSTLLTION When Installing this Product.... Read these instructions carefully. Failure to follow them could damage the product or cause a hazardous condition.. heck the ratings given in the instructions and on the product to make sure the product is suitable for your application. 3. Installer must be a trained, experienced service technician. 4. fter installation is complete, check out product operation as provided in these instructions. 5-3/4 (4) -/ (5) LLOW in. LERNE FOR ESS TO TEST PLUG WRNING: This equipment generates, uses, and can radiate radio frequency energy, and if not installed and used in accordance with the Instructions Manual, may cause interference with radio communication. It has been tested and found to comply with the limits for a lass computing device pursuant to Subpart J of Part 5 of F Rules, which are designed to provide reasonable protection against such interference when operated in a commercial environment. Operation of this equipment in a residential area is likely to cause interference, in which case, users at their own expense will be required to take whatever measures may be required to correct the interference. ny unauthorized modification of this equipment may result in the revocation of the owner's authority to continue its operation. 3/ () 3 (7) UTION Electrical Shock or Equipment Damage Hazard. an shock individuals or short equipment circuitry. Disconnect power supply before installation. TEST PLUG SOKET Fig.. W700 Discharge ir or Water ontroller mounting dimensions in in. (mm). RESISTNE (OHMS) 400 4000 3800 300 3400 300 3484 ±.5 OHMS T 77 F [5 ] (4.8 OHMS/ F) Fig.. Variation of 770 Sensor resistance as compared to temperature. M790 F 0 40 0 80 00 0 40 0 80 00 0-7 0 0 0 30 40 50 0 70 80 90 00 TEMPERTURE (DEGREES) M3948 UTION Equipment Damage Hazard. ompressor stage ON/OFF times less than four minutes can damage the compressor. dd external time delay relay(s) to W700G output stages to turn compressors on and off (See Fig. 3). IMPORTNT ll wiring must agree with applicable codes, ordinances and regulations. Location and Mounting hoose a location for the W700G controller that is not exposed to the weather and where controls, connections and the diagnostic analyzer socket are accessible. Mount the controller with four No. 8 screws through the mounting holes in the base. See Fig.. Mount the 770 Sensor in the discharge water line using the selected Immersion Well and heat-conductive compound. Mount auxiliary control system components, such as remote potentiometers, reset sensors. etc., according to instructions packed with the individual units. 3 3-404

W700G DISHRGE WTER TEMPERTURE ONTROL W700G UTOUT SETPOINT F 0 50 40 0 0 8 0 0 30 5 0 4 5 ONTROL ND F RESET F 0 OOL OOL 5 OOL 4 OOL 3 OOL OOL TDR- TIME DELY TDR- TDR- TIME DELY POWER SUPPLY. PROVIDE DISONNET MENS ND OVERLOD PROTETION S REQUIRED. TIMER MUST E MINIMUM OFF TYPE TIMER. 4 MINUTES MINIMUM ON ND OFF IS REOMMENDED. UNLODER UNLODER M79 Fig. 3. Wiring W700G using minimum on and minimum off timer(s) on compressor stages. Wiring W700G wiring and hookup diagram is shown in Fig. 4. UTION Erratic System Operation Hazard. Failure to follow proper wiring practices can introduce disruptive electrical interference (noise). Keep wiring at least one foot away from large inductive loads such as motors line starters, lighting ballasts, and large power distribution panels. Shielded cable is required in installations where these guidelines cannot be met. Ground shield only to grounded controller case. hanging Number of ontrolled Stages fixed resistor is installed across the number of stages input (terminals 7 and 8). The resistor value tells the W700G how many stages of cooling are to be controlled. This affects the control behavior and determines how many stages the W700G will turn on and off. TDR- POWER SUPPLY OMPRESSOR UNLODER UNLODER OMPRESSOR resistor is initially installed by the factory (00ohm) on terminals 7 and 8 (see Table ). This corresponds to the value for controlling a -stage cooling system. If the system being installed has more or fewer stages of cooling, this resistor must be changed to the value shown in Table. The new value represents the actual number of cooling stages operating under the control of the W700G. This includes any stages on a W70 sequencer connected to the W700G control. onnecting dditional Stages ontrol of up to 4 additional stages of ON/OFF cooling can be added by using a W70 Satellite Sequencer to the W700G system as shown in Fig. 4. The fixed resistor value across the W700G terminals 7 and 8 (Table ) must agree with the total number of cooling stages controlled by the W700G and W70 satellite. See W70 specification sheet, Form 3-9, for additional details. Table. Input Resistance for Number of ontrolled Stages. Total Number of ooling Stages Resistance ±% cross Terminals 7 and 8 a (Ohms) a Use /8W resistors. b 4074EFV ag ssembly available separately. 4074EFV ag ssembly Wire olors b (W700 only) 00 lue (W700 only) 00 Red 3 (W700 only) 300 Yellow 4 (W700 only) 400 rown 5 (W700 only) 500 Green (W700 only) 00 Shipped with ontrol 7 (W700,W70) 700 Orange 8 (W700,W70) 800 White 9 (W700,W70) 900 Violet 0 (W700,W70) 000 lack 3-404 4

W700G DISHRGE WTER TEMPERTURE ONTROL L (HOT) L TRNSFORMER W700 DISHRGE IR ONTROLLER GND TR TR 4V OOL OOL SETPOINT F OOL 5 S93037 REMOTE POTENTIOMETER 3 4 T704705 SPE RESET SENSOR OR 703G0 OUTDOOR RESET SENSOR 5 RW 0 TO 500 OHM REMOTE SETPOINT POTENTIOMETER NUMER OF STGES RESISTOR 700 DISHRGE SENSOR POWER SUPPLY. PROVIDE DISONNET MENS ND OVERLOD PROTETION S REQUIRED. USE SME TRNSFORMER FOR STELLITE S FOR W700. 3 USE ONLY WITH SPE RESET SENSOR. ONNET IN SERIES S SHOWN. 4 WHEN RESET NOT USED, JUMPER TERMINLS ND 7 ON W700. 5 WHEN REMOTE SETPOINT NOT USED, JUMPER TERMINLS P ND P. WHEN USED, TURN SETPOINT KNO ON W700 TO MINIMUM POSITION. TO USE OOL 3 ND 4, REMOVE JUMPER FROM TERMINLS ND 7 ON THE W70 SEQUENER. 7 GROUND SE OF REMOTE SETPOINT POTENTIOMETER TO PREVENT PROLEMS DUE TO STTI ELETRIITY. 8 USE STELLITE ONLY IF DDITIONL STGING IS REQUIRED. 9 INSTLL ORRET VLUE FOR NUMER OF STGES ONTROLLED. 0 FST RESPONSE INPUT REFERS TO THE MINIMUM ON TIME, MINIMUM OFF TIME ND MINIMUM TIME DELY ETWEEN STGES. LEVE OPEN FOR 0 SE. TIMINGS, JUMPER FOR 30 SE TIMINGS. 7 9 0 9 8 7 T T P P 5 4 3 FST RESPONSE NO. STGES RESET SENSOR REMOTE SETPOINT STELLITE GND TR TR 7 0 5 4 3 4V 85 90 80 75 70 0 4 5 FUNTION SELET ONTROL 0 3 5 5 RESET F OOL HET 0 0 8 0 5 3 0 40 55 45 0 5 4 OOL 4 OOL 3 OOL ONTROL ND OOL OOL W70 STELLITE SEQUENER 8 OOL OOL 3 HET 4 OOL 4 3 HET HET HET OOL 5 OOL 4 OOL 3 OOL OOL 8 OOL 7 OOL 8 OOL 9 OOL 0 M79 Fig. 4. onnections for W700G 0-stage cooling, with W70 Satellite Sequencer, discharge sensor, reset sensor(s) and remote setpoint potentiometer. 5 3-404

W700G DISHRGE WTER TEMPERTURE ONTROL OPERTION hiller System Description (Fig. 5) hiller systems are used to provide cold water for many types of end uses. The cold water may be piped to many air handling units located throughout a building. These units then provide cooling and ventilation for individual zones throughout that building. hillers are also used to supply cold fluid for a variety of process applications. In either case, precise discharge water temperature control is desired. RETURN WTER PUMP Fig. 5. hiller system. Discharge Water Temperature ontrol Operation The W700G uses an integrating control band concept to provide close, stable temperature control in discharge water chiller systems. The control band concept matches required operating capacity to chiller load, while the integral action minimizes the offset from the control setpoint which normally occurs in proportional-only type controllers. The control band setting is centered on the discharge waters setpoint (see Fig. ). The control band setting is adjustable from 0 to 0 F (0 to ). This adjustment is used to stabilize system operation. DJUSTLE ONTROL ND 0 TO 0 F REMOTE SETPOINT W700G DISHRGE WTER ONTROL HILLER RREL OMPRESSOR(S) LOWER ONTROL ND LIMIT SUPPLY WTER TO SYSTEM LOD DISHRGE WTER TEMPERTURE UPPER ONTROL ND LIMIT W700 SETPOINT M79 Fig.. Discharge water control algorithm operation. description of how chiller control stages operate follows:. Using Fig. and beginning at point, the discharge water temperature is above the upper control band limit and the minimum OFF time has elapsed (selectable either 30 or 0 seconds, using fast response input).. The W700 first stage energizes. 3. t point, the discharge water temperature is still above the upper control band limit. 4. If the minimum time between stages has elapsed (selectable), the next highest cooling stage energizes. D M797 5. t point, the discharge water temperature has fallen below the lower control band.. If the minimum ON time has elapsed for that stage, the highest stage that is on shuts off. 7. This sequence continues until the cooling demand increases (point D) at which time stages sequence ON in the same manner as before. 8. s a rule, any time the discharge water temperature: a. is above the upper control band limit, a stage turns on. b. falls below the lower control band limit, a stage turns off. Reset of Discharge Water Temperature Industrial pplications Reset of discharge water temperature is not recommended in a W700G industrial application, because loads on industrial applications typically require a constant temperature fluid for cooling. heck industrial process manufacturers for specific details. Environmental pplications In order to save additional energy under lighter loading conditions, it may be desirable to change or reset the discharge water temperature setpoint based on either space or outside air temperatures. Reset has proved itself on hot water boilers as an energy saving opportunity. These same energy saving techniques can also be applied to chillers, to more evenly match system capacity with system load. Reset from Space Temperature chiller that is being used to chill water for single or multiple air handling units can be made more efficient by resetting the discharge water temperature up as the average space temperature goes below a space temperature setpoint. In order to accomplish this, space sensors (such as T704705) are strategically located in the building to measure average space temperature. It is recommended that at least 4 sensors be installed and wired to provide a signal proportional to the average space temperature. The setpoint of the reset potentiometer should be set at the lowest desired cooling temperature of the building. See Fig. 7 for space reset operation (algorithm). See Fig. 8 for wiring details. s the average space temperature drops below the setpoint of the reset sensors, the W700G discharge temperature setpoint is reset upward by an adjustable amount. Maximum reset occurs when the average space temperature is 3 F (.7 ) below the setpoint of those sensors. t this time, the W700G setpoint will be fully reset. In reset applications where high humidity can be a concern, an outdoor air thermostat can be installed to override the reset function. In lieu of outdoor air override an indoor space humidistat can also be used. See Fig. 8 for wiring diagrams. 3-404

W700G DISHRGE WTER TEMPERTURE ONTROL SPE RESET MEHNIL OOLING SETPOINT FULL RESET In applications where outdoor temperature does have a major effect on the cooling load of a building, outdoor reset can have the same advantages as space reset. Fig. 9 shows the outdoor air reset operation (algorithm). DJUSTLE RESET 5 TO 0 F (3 TO K) NO RESET s the outdoor air temperature rises above 70 F ( ), the W700G discharge water temperature setpoint is reset downward. The reset amount is adjustable and it continues until the outside air temperature reaches 90 F (3 ). t this point, the discharge water temperature is being controlled at the W700G setpoint. M790 SPE TEMPERTURE 3 F (K) ELOW RESET Fig. 7. Space reset algorithm. SETPOINT OF RESET SENSOR The outdoor air temperature reset strategy should only be employed where outdoor air temperature has a major effect on the building cooling load. S93037 OUTDOOR RESET OOLING SETPOINT FULL RESET ZONE T ZONE T ZONE T ZONE T ZONE 3 T3 R W ZONE 4 T4 ZONE 5 T5 ZONE T ZONE 3 T3 ZONE 4 T4 T75 OUTDOOR IR THERMOSTT 0 F [ ] 3 -ZONE IRUIT R W ZONE 7 T7 ZONE 8 T8 ZONE 9 T9 S93037 T75 OUTDOOR IR THERMOSTT 0 F [ ] 4-ZONE VERGING RESET IRUIT Fig. 8. Reset from space sensor wiring. Outdoor Resets Outdoor reset can be employed as an alternative to space reset (703G0). The advantages to outdoor reset are that it is simple to apply with a minimum of field wiring. The disadvantage is that outdoor air temperature can have little effect on internal cooling load. This is best seen in the common area of a large shopping mall, where the major cooling loads are from solar heat, people and lighting. R W 9-ZONE VERGING RESET IRUIT T75 OUTDOOR IR THERMOSTT 0 F [ ] TO W700 TERMINLS ND 7 TO W700 TERMINLS ND 7 TO W700 TERMINLS ND 7 S93037 REMOTE SETPOINT POTENTIOMETER REQUIRED TO PERMIT DJUSTMENT OF RESET ONTROL POINT. (USE ONLY WITH SPE SENSORS. DO NOT USE WITH OUTDOOR SENSORS.) 3 S93037 LL THERMOSTTS RE T704705 TYPE WIRED IN SERIES- PRLLEL ONNETION. LOK OUT RESET UNDER HIGH HUMIDITY ONDITIONS, SET T 0 F [ ]. M39 W700 SETPOINT M799 OUTDOOR IR TEMPERTURE Fig. 9. Outdoor reset schedule using 703G0. W700 LED Operation The W700 has one LED for each staged output. The LED on the W700 lights simultaneously as that stage relay energizes. With the LED not lit, the stage cannot energize. When the relay stage energizes, the normally closed contacts open, and the normally open contacts close. Reset Modifications While the outdoor air and the indoor air reset algorithms are software imbedded, it is possible to modify the outside air reset start and stop temperatures. To do this, a resistor must be placed in parallel with the outside air sensor (Rp) and a resistor must be placed in series with the outside air sensor (Rs). See Fig. 0. OUTDOOR IR SENSOR 703G DJUSTLE RESET 5 TO 0 F (3 TO K) RESISTOR SERIES RESISTOR PRLLEL (R S ) (R P ) T-LOW T-HIGH W700 TERMINLS M798 NO RESET Fig. 0. Reset modification schematic wiring diagram. Use Table 3 to select the point at which no W700 setpoint reset will occur (T-High), and the point at which the W700 will be fully reset (T-Low). The resistor values for series (Rs) and parallel (Rp) resistors are at the intersection of T-High and T-Low. Indicated resistor values are standard resistors and can be purchased at any local electronics store. 7 NOTE: Only the outdoor air reset can be modified in the above described manner. 7 3-404

W700G DISHRGE WTER TEMPERTURE ONTROL Table 3. Reset Modification Resistor Selection hart T-High (no T-Low (full reset) reset) 75 70 5 0 55 50 00 Rp 4.7K 7.8K 5.3K 4.K 3.48K 3.0K Rs 9 34 43 5 57 34 95 Rp 4.7K 7.8K 5.3K 4.K 3.57K Rs 87 3 4 499 5 90 Rp 0 4.7K 7.8K 5.49K 4.K Rs 0 78 309 4 499 85 Rp 4.7K 7.87K 5.49K Rs 9 30 40 80 Rp 5.0K 7.87K Rs 58 94 75 Rp 5.0K Rs 47 NOTE: Resistors shown are standard values for /8W, %, metal film resistors. SETTINGS ND DJUSTMENTS Setpoint Knob HV pplications Typical setpoints for HV applications range from 50 to 55 F (0 to 3 ). These setpoints can change due to many factors, including desired space temperature, required/desired humidity conditions, etc. Industrial Process pplications onsult process unit manufacturer for recommended settings. Reset Knob HV pplications Reset recommended for 5 to 0 F (3 to ), depending on desired maximum space temperature and space humidity requirements. Higher discharge water temperature can result in higher space temperature and humidity depending on outside air temperature and humidity, or internal latent and sensible heat load. Industrial Process pplications Reset is not recommended for these applications. However, check with process manufacturer for other recommendations. ontrol and Knob Set for desired control band. Increasing the control band slows down the W700 response, and increases the temperature deviation. Lowering the control band speeds up the W700 response, while decreasing the temperature deviation from setpoint. The control band setpoint should be as narrow as possible without causing hunting or rapid cycling. If instability, hunting, or rapid cycling occurs, widen the control band setpoint. Fast Response Input The W700G has the capability of changing the timings between stages, the stage minimum ON timings and the stage minimum OFF timings.to do this, you must select which timing is desired (either 30 or 0 seconds): If you desire a 30 second delay, jumper terminals 9 and 0. If you desire a 0 second delay, leave terminals 9 and 0 open (unjumpered). Number Of Stages Select the proper resistor (see Table ) that represents the total number of controlled stages. Place this resistor across terminals 7and 8 on the W700G. 3-404 8

W700G DISHRGE WTER TEMPERTURE ONTROL SYSTEM HEKOUT To field test the system, follow the steps detailed in Table 4. In order to complete this checkout, the following equipment is required: 4074EDJ Test Plug and Resistor ag ssembly. 4074EFV Resistor ag ssembly. Digital VOM meter. 95770 Test Plug. Table 4. W700G System heckout. Step ction Verification Disconnect power from W700. heck for 0 Vac across W700 TR and TR terminals. Disconnect compressor and unloader line voltage power. heck for 0 Vac at compressor and unloader contactors or relays. 3 Remove 770 Sensor leads from W700 and replace with 4074EDJ ag ssembly 3400 ohm resistor (blue leads). 4 Remove from W700 any jumper installed on the Fast Response Terminals (9 and 0). 5 Remove from W700 terminals and 7 all wires. Place a 4074EDJ ag ssembly 780 ohm resistor (red leads). Jumper W700 terminals P and P. 7 Remove red plastic dust plug from W700 bottom and install 95770 Test Plug in the revealed socket. 8 Set W700 reset knob at 0 F (K) 9 Set W700 setpoint at 0 F (- ) 0 onnect 4 Vac power to the W700 (TR and TR terminals) heck for 4 Vac across W700 TR and TR terminals. Wait 5 seconds. ll W700 stages should be energized ll red LED should be on. 3 djust W700 setpoint to 0 F ( ). 4 Wait 5 seconds. 5 ll W700 stages should be off. ll red LED should be off. Remove 780 ohm resistor from W700 terminals and 7. 7 Jumper W700 terminals and 7. 8 djust W700 setpoint to 50 F (0 ) 9 Wait 5 seconds. 0 ll W700 stages should be energized. ll red LED should be on. Disconnect power from W700. heck for 0 Vac across W700 TR and TR terminals. Reconnect all wiring as originally installed. 3 Remove 95770 Test Plug and install red plastic dust cover. 4 Reconnect W700 power supply, close compressor disconnects, and place W700 setpoints where desired. System is now operational. 9 3-404

W700G DISHRGE WTER TEMPERTURE ONTROL TROULESHOOTING (TLE 5) Table 5. W700G Troubleshooting Guide. Problem Possible ause orrective ction Discharge temperature too high.. Integral setpoint not at minimum position when used with remote setpoint.. Set integral setpoint at minimum position when using remote setpoint.. System malfunction.. onsult HV manufacturer s equipment manual and/or building engineering requirements. No cooling.. Shorted or open discharge sensor terminals T-T.. orrect the wiring.. Open reset terminals -7 interpreted as maximum reset.. Jumper terminals -7 or connect reset thermostat. 3. Remote setpoint terminals P-P open. 3. Jumper terminals P-P or connect remote setpoint potentiometer. 4. System malfunction. 4. onsult HV manufacturer s equipment manual and/or building engineering requirements. Short cycling.. Test plug left inserted in W700 bottom.. Remove test plug.. System malfunction.. onsult HV manufacturer s equipment manual and/or building engineering requirements. 3-404 0

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