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RKC REXC400WJA6MMCS

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Description

RKC REXC400WJA6MMCS Test & Measurement - Temperature Control, 0-400DEG F 100-240VAC 50/60HZ

Part Number

REXC400WJA6MMCS

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Manufacturer

RKC

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Category

PRODUCTS - R

Datasheet

pdf file

RKC-REXC400WJA6MMCS-datasheet1-1914405527.pdf

166 KiB

Extracted Text

REX - C100REX - C700 REX - C400REX - C900 REX - C410 RKC F.M FPL PH. (07) 3391 4865 TDTY RANKLIN RKC INSTRUMENT INC. INITIAL SETTING MANUAL C O N T E N T S 1. 1.1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1 1.2Exiting the initial set mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 2. 2.1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 2.2Each parameter setting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4 (1) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5 (2) . . . . . . . . . . . . . . (3) . . . (4) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8 (5) . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9 (6)Control output selection etc. . (7) . . . . . . . . . . . . . . . . . . . . . . . . . 12 (8) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 (9) . . . . . . . . . . . . . . . . . . . . . . . . 13 (10) . . . . . . . . . . . . . . . . . . . . . 13 (11) . . . . . . . . . . . . . . . . . . . 13 (12) . . . . . . . . . . . . . . . (13) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14 2.3Each parameter checks . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .15 Low-limit setting for set-value (SV) . . . . . . . . . . . . . 14 setting for set-value (SV) High-limit Differential gap setting of second alarm (ALM2) Differential gap setting of first alarm (ALM1) Differential gap setting of ON/OFF action PV bias setting Energize/de-energize alarm selection etc. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .11 alarm (ALM2) type selection Second alarm (ALM1) type selection First . . . . . . . . . . . . . . . . . . . . . 7 of break alarm (HBA, LBA) etc. Selection . . . . . . . . . 6 unit and cooling type selection Engineering Input type selection Description of each parameter Setting Entering the initial set mode . . . . . . . Initial set mode changing Page you bought is very much appreciated. kindly announce and advice to our business department, nearest business office also agent where and delivered under close quality control by us. However, is some subject troubled or noted, your touch or adjust parts other than those covered in this manual. The instrument was manufactured This is a manual for the initial setting of the REX-C100, -C400, -C410, -C700, & -C900. Do not 1.I n i t i a l s e t m o d e c h a n g i n g 1.1 Entering the initial set mode (1) (2) (3) key to set “ : (4)Hold both the appears. Cautions 1. to “ ” 2. 3. controllers (REX-C100, -C400, -C410, and -C700). -1- An example of the REX-C900 is described here, but the same procedure applies to other If the controller is set to the initial set mode, all outputs are turned OFF. cannot enter the initial set mode. ”. Any setting other than “ In order to enter the initial set mode, always set the data locking until (B) keys simultaneously (A) and No initial set mode locked key decrements numerals.numerals, and pressing the key increments ”. Pressing the Press the key is pressed.follows every time the the hundreds digit. The digit which lights brightly shifts as key to shift the digit which lights brightly up toPress the settable. display unit lights brightly. The digit which lights brightly is At this time, the least significant digit on the set-value (SV) on the measured-value (PV) display unit.symbol key to display the set data locking parameterPress the 1.2 ‰ 1. 2. 3. ”. ”. • • • -2- recovery, and the set-value (SV) is the same as that before power failure. is set to the PV/SV display mode. The measured-value (PV) at this time shows that at the time of power If long power failure occurs, the instrument exits from its initial set mode. After power recovery, the instrument Instantaneous power failure (within 20 msec.) does not exert bad influence on the instrument. Setting prior to power failure is valid < Each status when power failure occurs in the initial set mode > If the controller exits from the initial set mode, confirm that set data lock setting is set to “ Caution key to register “ ”. Press the keys to set “ key and Press the unit. ” on the measured-value (PV) display key by required number of times to show “Press the key to enter the parameter setting mode.Press the Locks the initial set mode (Change the content of set data lock setting)(2) Even if the controller exits from the initial set mode at any point, the setting mode so far set becomes valid. PV/SV display mode. (B) keys simultaneously for more than 5 seconds can enter the key (A) and Keep pressing both the Exits from the initial set mode(1) Exiting the initial set mode 2.S e t t i n g 2.1 “ ”. SETTING DESCRIPTION EC, EF) “ ‰ ‰ -3- Low-limit setting for set-value (SV) High-limit setting for set-value (SV) function is provided. No display appears when no second alarm (ALM2) Differential gap setting of second alarm (ALM2) function is provided. No display appears when no first alarm (ALM1) Differential gap setting of first alarm (ALM1) Differential gap setting of ON / OFF action PV bias setting ” cannot be set. Special specification [Z-124] selection Energize / de-energize alarm selection Control output type selection (Heating / cooling side) Control action type selection Direct / reverse action selection Second alarm (ALM2) hold action selection Second alarm (ALM2) type selection First alarm (ALM1) hold action selection First alarm (ALM1) type selection Selection of control loop break alarm output terminals Special specification [Z-132] selection Control loop break alarm (LBA) selection Heater break alarm (HBA) selection Engineering unit selection ( Input type selection DISPLAY UNIT MEASURED-VALUE (PV) the following table. After one cycle, the display shows “ key advances the parameter symbol as shown in ” appears on the display, and every press of the Description of each parameter 2.2 u (2) (3) (4) key to set “ : (5) key to Cautions 1. parameter other than “ ”. 2. (REX-C100, -C400, -C410, and -C700). -4- An example of the REX-C900 is described here, but the same procedure applies to other controllers ” is displayed, the display returns to “ If no key operation is performed for more than 60 sec. during setting or when any register (shifts to next parameter). After finishing the setting, press the Thermocouple type L key decrements numerals.numerals, and pressing the key increments ”. Pressing the Press the key is pressed.every time the the tens digit. The digit which lights brightly shifts as follows key to shift the digit which lights brightly up toPress the settable. display unit lights brightly. The digit which lights brightly is At this time, the least significant digit on the set-value (SV) ) on the measured-value (PV) display unit.symbol ( key to display the input type selection parameterPress the Method of setting Each parameter setting ( ) VALUE K J L E Na TCR S B T Ub Pt100 S (JIS / IEC) J Pt100 S (JIS)c 0 to 5 V DC 1 to 5 V DCd e 1. “ 2.“ ”. -5- ”and “ ” setting displays are only “ ”. (See page 14). ” andhardware types have the same symbol. However, when the setting is changed, always reset “ Setting change between different symbols may cause malfunction, but the setting can be changed when Conduct setting so as to meet the instrument specification (input type). Cautions 4 to 20 mA DCCurrent 0 to 20 mA DC Voltage RTD PLII W5Re / W26Re HARDWAREINPUT TYPE Set-value (SV) display unit Input type selection(1) ( ) VALUE EC EF (Type A) ‰ 1 Water-cooling (Type W) ‰ 2 ‰ 1 ‰ 2 1. EC or E 2. 3. 4.“ ”. -6- ”and “ ” setting displays are only “ ” since they are not used.Do not set the upper 2 digits to numeric values other than “ type selection” setting is ignored. When control action is of the type D (PID action [direct action] or type F (PID action [reverse action] ), “Cooling F is ignored.For the voltage and current input types, the engineering unit setting of Cautions Type W : Heating / cooling PID action (Water-cooling) Type A : Heating / cooling PID action (Air-cooling) Fixed selection Cooling typeAir-cooling selection Engineering unit DESCRIPTION Set-value (SV) display unit Engineering unit and cooling type selection(2) ( ) VALUE With Z-132 specification ‰ ‰ 1. C C C 2. C C C 3. 4.“ ”. -7- ”and “ ” setting displays are only “ For the instrument without heater break alarm (HBA), “With Z-132 specification” setting is ignored. (Heating / cooling PID action [Air-cooling] ). Instrument whose control action is type W (Heating / cooling PID action [Water-cooling] ) or type A Instrument with heater break alarm (HBA) Instrument with deviation or process alarm as the first alarm (ALM1) and second alarm (ALM2) “With LBA function” setting is ignored for the following instruments : Instrument whose control output is the current output type Instrument with control loop break alarm (LBA) Instrument with deviation or process alarm as the second alarm (ALM2) “With HBA function” setting is ignored for the following instruments : Cautions Z-132 specification : Heater break alarm output is delayed. break alarm output terminalsSecond alarm side Selection of control loop First alarm side [Z-132] selection Special specificationWithout Z-132 specification (LBA) selectionWith LBA function Control loop break alarm Without LBA function selectionWith HBA function Heater break alarm (HBA)Without HBA function DESCRIPTION Set-value (SV) display unit Selection of break alarm (HBA, LBA) etc.(3) ) VALUE 1. ”. C C ” ] 2.“ ”. -8- ”and “ ” setting displays are only “ setting details : For “ Instrument which outputs control loop break alarm (LBA) from the first alarm side. [ Instrument without the first alarm (ALM1). The following instrument is set to “ Cautions hold action selectionWith alarm hold action First alarm (ALM1)Without alarm hold action alarmLow alarm ProcessHigh alarm (See page 10)Band alarm type selectionalarmHigh / Low alarm First alarm (ALM1)DeviationLow alarm High alarm No first alarm DESCRIPTION Set-value (SV) display unit First-alarm (ALM1) type selection ((4) ( ) VALUE C C 1. ”. C C C ” ] 2.“ ”. -9- ”and “ ” setting displays are only “ setting details : For “ Instrument which outputs control loop break alarm (LBA) from the second alarm side. [ Instrument with the heater break alarm (HBA). Instrument without the second alarm (ALM2). The following instrument is set to “ Cautions Instrument with the heater break alarm (HBA). Instrument without the second alarm (ALM2). hold action selectionWith alarm hold action Second alarm (ALM2)Without alarm hold action alarmLow alarm ProcessHigh alarm (See page 10)Band alarm type selectionalarmHigh / Low alarm Second alarm (ALM2)DeviationLow alarm High alarm No second alarm DESCRIPTION Set-value (SV) display unit Second-alarm (ALM2) type selection(5) A L A R M T Y P E S [ g Î â_______________________________________________________________‰ 1 g Î ã_______________________________________________________________‰ 2 Î g â_______________________________________________________________‰ 1 g Î ã_______________________________________________________________‰ 2 Î g _______________________________________________________________‰ 3 g Î _______________________________________________________________‰ 3 g Î

_______________________________________________________________ Î _______________________________________________________________ Î ‰ 1 ‰ 2 ‰ 3 -10- (absolute deviation) is set. Status when alarm is activated at 2 equal deviation points from the set-value (SV) with the alarm set-value Alarm status where the alarm set-value is set to minus (-) side for the set-value (SV). Alarm status where the alarm set-value is set to plus (+) side for the set-value (SV). highlow Low alarm highlow High alarm highlow Band alarm highlow High / Low alarm highlow Low alarm highlow Low alarm highlow High alarm highlow High alarm : Alarm status (ALM1 or ALM2 LED lighting) ] : Alarm set-value : Set-value (SV) ( ) VALUE PID action (Type D, F) ‰ 1 ‰ 1 ‰ 2 ‰ 2 ‰ 1: : : ‰ 2 1. 2. 3. 4.“ ”. -11- ”and “ ” setting displays are only “ For the REX-C100, always set the control action type selection to PID action. When control action is of the type D or F, “Control output type selection (Cooling side)” setting is ignored. Conduct setting so as to meet the instrument specification. An incorrect setting may cause a malfunction. Cautions Voltage pulseV output : Trigger (For triac driving)G output :Relay contactM output : Heating / cooling PID action [Water-cooling]Type W : Heating / cooling PID action [Air-cooling]Type A PID action [Reverse action]Type F PID action [Direct action]Type D selection (Cooling side)Continuous output (Current 4 to 20 mA DC) Control output typeTime proportional output (M, V output) selection (Heating side)Continuous output (Current 4 to 20 mA DC) Control output typeTime proportional output (M, V, G output) type selectionHeating / cooling PID action (Type A, W) Control action selectionReverse action (Type F, A, W) Direct / reverse actionDirect action (Type D) DESCRIPTION Set-value (SV) display unit Control-output selection etc.(6) ( ) VALUE With Z-124 specification ‰ With Z-124 specification ‰ ‰ 1. ”. C [ ”] C [ ”] 2.“ ”. -12- ”and “ ” setting displays are only “ setting details : For “ Instrument without the second alarm (ALM2). setting details : For “ Instrument without the first alarm (ALM1). Instrument without the first alarm (ALM1) and second alarm (ALM2) is set to “ Cautions Z-124 specification : No alarm action caused by burnout is performed. (Second alarm side) [Z-124] selection Special specificationWithout Z-124 specification (First alarm side) [Z-124] selection Special specificationWithout Z-124 specification (Second alarm side)De-energize alarm alarm selection Energize / de-energizeEnergize alarm (First alarm side)De-energize alarm alarm selection Energize / de-energizeEnergize alarm DESCRIPTION Set-value (SV) display unit Energize / de-energize alarm selection etc.(7) ( ) TC and RTD inputs C EC [ EF]:EC [ EF] C EC [ EF]:-199.9 to +999.9 EC [ EF] :-199.9 to +200.0% [ ] TC and RTD inputs:0 to 100 or 0.0 to 100.0 :0.0 to 10.0 [ ] TC and RTD inputs:0 to 100 or 0.0 to 100.0 :0.0 to 10.0 ”]. [ ] TC and RTD inputs:0 to 100 or 0.0 to 100.0 :0.0 to 10.0 - ”]. -13- setting : “[ No display appears when no alarm function is provided.Caution Voltage and current inputs(2) (1) (Setting range) Set-value (SV) display unit Differential gap setting of second alarm (ALM2)(11) setting : “[ No display appears when no alarm function is provided. Caution Voltage and current inputs(2) (1) (Setting range) Set-value (SV) display unit Differential gap setting of first alarm (ALM1)(10) Voltage and current inputs(2) (1) (Setting range) Set-value (SV) display unit Differential gap setting of ON / OFF action(9) Voltage and current inputs(2) For a resolution of 0.1 -1999 to 9999For a resolution of 1 (1) (Setting range) Set-value (SV) display unit PV bias setting(8) [ ] K0 to 1372 EC 0 to 2502 EF J0 to 1200 EC 0 to 2192 EF L0 to 800 EC 0 to 1600 EF E0 to 1000 EC 0 to 1832 EF N0 to 1300 EC 0 to 2372 EF TC0 to 1769 EC 0 to 3216 EF B0 to 1820 EC 0 to 3308 EF 0 to 2320 EC 0 to 4000 EF 0 to 1390 EC 0 to 2534 EF T-199.9 to +400.0 EC -199.9 to +752.0 EF U-199.9 to +600.0 EC -199.9 to +999.9 EF S (JIS / IEC)-199.9 to +649.0 EC J Pt100 S S-199.9 to +999.9 EF (Conforming to JIS / IEC) 0 to 5V DC0.0 to 100.0% (Fixed) 1 to 5V DC Current0 to 20mA DC0.0 to 100.0% (Fixed) 0 to 20mA DC ‰ 1 ‰ 2 $ . [ ] $ . ] and the low-limit [ ] limiter settings, always set the set-value (SV) within the limiter range. High-limit setting $ set-value (SV) $ low-limit setting -14- When changing the high-limit [ : Prior to conducting limiter setting change, see “Input range table” on page 16.Caution Limit setting becomes See the above table. (Setting range) Set-value (SV) display unit Low-limit setting for set-value (SV) (13) : Prior to conducting limiter setting change, see “Input range table” on page 16.Caution Limit setting becomes IEC (International Electrotechnical Commission) is equivalent to JIS, DIN and ANSI. Voltage Pt100 (JIS)RTD Pt100 PLII W5Re / W26Re R, S RANGEINPUT TYPE Set-value (SV) display unit High-limit setting for set-value (SV)(12) 2.3 (1)When all the settings are finished, press the (2)When the contents of the initial setting are changed, change the model code plate stuck to inside of the controller and outside of the case (3)After each parameter has been checked, return the controller to the control mode by referring to “1.2 Exiting the initial set mode” (P.2). 48 x 48 mm 96 x 48 mm G G G G G G G48 x 96 mm 72 x 72 mm 96 x 96 mm F D W / Cooling PID action (Water-cooling) i A / Cooling PID action (Air-cooling) i G G M VVoltage pulse (Heating side)8 G M i V pulse i 8Current 4 to 20mA DC i N ADeviation high alarm (without hold action) BDeviation low alarm (without hold action) CDeviation high / low alarm (without hold action) DBand alarm EDeviation high alarm (with hold action) First alarm (ALM1)FDeviation low alarm (with hold action) GDeviation high / low alarm (with hold action) HProcess high alarm (without hold action) JProcess low alarm (without hold action) KProcess high alarm (with hold action) LProcess low alarm (with hold action) R N ADeviation high alarm (without hold action) BDeviation low alarm (without hold action) CDeviation high / low alarm (without hold action) DBand alarm EDeviation high alarm (with hold action) FDeviation low alarm (with hold action) GDeviation high / low alarm (with hold action) HProcess high alarm (without hold action) JProcess low alarm (without hold action) KProcess high alarm (with hold action) LProcess low alarm (with hold action) PHeater break alarm (CTL-6) SHeater break alarm (CTL-12) ‰ For the REX-C100, the content marked with i cannot be selection. ‰ When control output is trigger output for triac driving, only the first alarm is available (For the REX-C100). -15- Second alarm (ALM2) No second alarm (ALM2) Control loop break alarm No first alarm (ALM1) Voltage(Cooling side) Relay contact Second control output [OUT(2)] No second control output (Control action : D, F)None Trigger (for triac driving) Current 4 to 20mA DC First control output [OUT(1)] Relay contact See page 16. Input Range Table “MODEL CODE”Input range See page 16. Input Range Table “MODEL CODE”Input type Heating Heating PID action (Direct action)Control action PID action (Reverse action) C900 C700 C410REX- C400 C100 DESCRIPTIONMODEL CODE by referring to the following table. key to check each parameter. E a c h P a r a m e t e r c h e c k s I N P U T R A N G E T A B L E INPUT TYPEMODEL CODEINPUT TYPEMODEL CODE EC01T EC02 EC01 EC03HEC02 EC04 EFA EC05EEF KECK06 ‰ EC07R EF EFM EFEC01 ‰O-199.9 to +100.0 EC02 UEC03 EC01C(DIN)-199.9 to +999.9 EFU EC02-100.0 to +200.0 EF EC03OEF EC04 ‰ JECJ05U EC06T EC01 EFP LEC02HEF EFL(DIN) EFL E‰ EF E‰ REC01 EC02-199.9 to +649.0 EC01 MREFR-199.9 to +200.0 EC02 EFEC03 ‰-100.0 to +100.0 EC04O Pt100-100.0 to +200.0 EC05 EC01 EC06C EC02 EC07 OSEFSEC08 EFEC09 U‰ EC10 -199.9 to +999.9 EFD P400 to 1800 EC01-199.9 to +400.0 EF BEC02-199.9 to +200.0 EF L800 to 3200 EFBPt100-100.0 to +100.0 EFR EF-100.0 to +300.0 EF ‰ETEF EF EC01DEF EEC02 EF EFE‰ EF ‰-199.9 to +649.0 EC01 -199.9 to +200.0 EC02 EC01 EC03 NEC02-100.0 to +100.0 EC04 EFNJ Pt100-100.0 to +200.0 EC05 EFECP06 ‰ EC07 EC08 -199.9 to +400.0 EC01 EC09 -199.9 to +100.0 EC02 EF10 -100.0 to +200.0 EC03 ‰ EC04 T-199.9 to +752.0 EFTV -100.0 to +200.0 EF401 OU -100.0 to +400.0 EF601 EF701 EFA E801 ‰ GN901 E T EC01 ECW02 100.0% EF ‰ ‰ GZZ” -16- “MODEL CODE” becomes “ ZZ When the range is specified separately, the A10 to 4000(ASTM) 0 to 2320W5Re / W26Re 0 to 2000 0.0 to 100.0%Special input ZZ 0.0 to 100.0%4 to 20mA A50.0 to 752.0 0.0 to 100.0%0 to 20mAT R A40.0 to 450.0 0.0 to 100.0%1 to 5VL R A3 0.0 to 100.0%0 to 5VA2(JIS / IEC) C A1 0.0 to 350.0 ZZ 0.0 to 500.05V 0.0 to 300.0 0.0 to 200.0 0.0 to 100.0 ZZ 0.0 to 50.0(JIS) A20 to 2372 A10 to 2300(NBS) 0 to 1300 -100.0 to + 50.00 to 1200 ZZ A20 to 1832 ZZA10 to 1600(JIS / IEC) A90.0 to 500.00 to 1000 A80.0 to 400.0 0 to 800 A70.0 to 200.0 A60.0 to 100.0JIS / IEC) ZZ A5(Conforming to A20 to 3308 A4A1(JIS / IEC) A30 to 1820 A2 A1 0.0 to 500.0ZZ 0.0 to 300.0A20 to 3216(JIS / IEC) 0.0 to 200.0A10 to 3200 0.0 to 100.00 to 1769 0.0 to 50.0(JIS / IEC)0 to 1600 ZZ -100.0 to + 50.0A20 to 3216(JIS / IEC) A10 to 3200 0 to 1769 0 to 1600 ZZ A20 to 1600ZZ A10 to 800A30 to 2192 A20 to 1600 0 to 800 A10 to 800 0 to 400 0 to 1200(JIS / IEC) 0 to 1000 ZZ0 to 800 A30.0 to 999.90 to 600 A20 to 400 A10 to 200 0.0 to 400.0 ZZ -199.9 to +600A30 to 2502 A20 to 1600 A10 to 800 0 to 1372(JIS / IEC) ZZ0 to 1200 A20 to 25340 to 1000 A10 to 2400(NBS)0 to 800 0 to 1390PLII0 to 600 0 to 13000 to 400 0 to 200 INPUT RANGEINPUT RANGE

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One of our top priorities is maintaining our business with precision, and we are constantly looking for affiliates that can help us achieve our goal. With the aid of GID Industrial, our obsolete product management has never been more efficient. They have been a great resource to our company, and have quickly become a go-to supplier on our list!

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With our strict fundamentals and high expectations, we were surprised when we came across GID Industrial and their competitive pricing. When we approached them with our issue, they were incredibly confident in being able to provide us with a seamless solution at the best price for us. GID Industrial quickly understood our needs and provided us with excellent service, as well as fully tested product to ensure what we received would be the right fit for our company.

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Our company provides services to aid in the manufacture of technological products, such as semiconductors and flat panel displays, and often searching for distributors of obsolete product we require can waste time and money. Finding GID Industrial proved to be a great asset to our company, with cost effective solutions and superior knowledge on all of their materials, it’d be hard to find a better provider of obsolete or hard to find products.

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Over the years, the equipment used in our company becomes discontinued, but they’re still of great use to us and our customers. Once these products are no longer available through the manufacturer, finding a reliable, quick supplier is a necessity, and luckily for us, GID Industrial has provided the most trustworthy, quality solutions to our obsolete component needs.

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When I can't find an obsolete part, I first call GID and they'll come up with my parts every time. Great customer service and follow up as well. Scott emails me from time to time to touch base and see if we're having trouble finding something.....which is often with our 25 yr old equipment.

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