GPM-6 MANUAL. GENERAL MODE OPERATING PROCEDURES Volta ge & Current FRONT PANEL & KEY FUNCTIONS. Key Name. Symbol. Descriptions
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1 G-6 LCD ULTIFUNCTION OWR TR with ULS OUTUT / RS-485 Dlease understand key indicators & functions at the first operation. Key Name Right Key & nter Key Left Key & scapte Key Up Key & Demand Switching Key Down Key & Forward / Reverse Watt Switching Key Left Key & scapte Key FRONT ANL & KY FUNCTIONS Symbol SC SC Up Key & Demand Switching Key Descriptions Right Key & nter Key ANUAL Down Key & Forward / Reverse Watt Switching Key 1. In the measuring page, press this key can switch WH& QH value. 2. In the measu ring page, press this key for 3 sec can ent er to pass code page. 3. In the par amet er setting, press this key for 3 sec can modi fy this par amet er. 4. In the parameter setting, press this key can move the cursor right. 5. In the parameter setting, press this key for 3 sec can save the value. 1. In the measuring page, press this key can switch volt & current value. 2. In the measuring page, press this key for 3 sec can switch auto / manual display. 3. In the parameter setting, press this key for 3 sec can escape the page. 4. In the parameter setting, press this key can move the cursor left. 1. In the measuring page, press this key for 3 sec can switch demand value. 2. In the parameter setting, press this key can increase the digits. 1. In the measuring page, press this key for 3 sec can switch forward /reverse watt value. 2. In the parameter setting, press this key can decrease the digits. RSS SC RSS SC RSS SC GNRAL OD ORATING ROCDURS Volta ge & Current 1. R hase Volt 2. S hase Volt 3. T hase Volt 1. R hase Amp 2. S hase Amp 3. T hase Amp! 1 2 W (3LN, 3CT) A N 1A FUS! 1 3 W (3LN, 3CT) A N la+ lalb+ lb- lc+ lc- B 4 VN 3 VC 2 VB RSS SC RSS SC RSS SC 1 VA 1A FUS Total Harmonics 1. R hase Volt 2. S hase Volt 3. T hase Volt Total Harmonics 1. R hase Amp 2. S hase Amp 3. T hase Amp 1.Crest Factor 2.Watt-Hour 1.Key Factor 2.Watt-Hour Frequ ency ower Factor Demand RSS RSS RSS RSS RSS 1. Total Kw 2. ower Factor 3. Frequency 1. R hase ower Factor 2. S hase ower Factor 3. T hase ower Factor 1. ax. of KW 2. ax. of KVar 3. ax. of KVA 1. R hase ax. Current demand 2. S hase ax. Current demand 3. T hase ax. Current demand WIR CONNCTION! 3 3 W (2LL, 2CT) A B C 1A FUS 1A FUS l11 l12 l21 l22 4 VN 9 l31 G 10 l V3 2 V2 1 V1! 3 3 W ( 2LL, 3CT) A B C RSS RSS RSS RSS RSS 1A FUS ower 1. R hase Active ower(kw) 2. S hase Active ower(kw) 3. T hase Active ower(kw) 1. R hase Reactive ower(kvar) 2. S hase Reactive ower(kvar) 3. T hase Reactive ower(kvar) 1. Instantaneous R hase (KVA) 2. Instantaneous S hase (KVA) 3. Instantaneous T hase (KVA) 1. Total KW 2. Total KVar 3. Total KVA! 3 4 W (3LN, 3CT) A B C N 1A FUS 1A FUS la+ lalb+ lb- lc+ lc- 4 VN 3 VC 2 VB 1 VA 5 la+ 6 la VN VC VB VA 5 la+ 6 la VN VC VB VA 7 lb+ 7 lb+ 8 lb- 8 lb- 9 lc+ 9 lc+ 10 lc- 10 lc- 1 2
2 Setting Gup cedures KY FUNCTIONS SC scapte Key(3secs) & Left Key Up Key & Demand Switching Key Down Key & Forward / Reverse Watt Switching Key nter Key(3secs) & Right Key RSS RSS RSS ass Code (Default: 1000) Address Setting (1~247) T rimary Ratio Setting Select the ulse Output Option by or key (k/kvarh) Select the ulse Rate Option 1 ulse = 0.001/0.01/0.1/1/ 10/100/1000k/kVArh Change ass Code (1~9999) Auto Switch ages (9000/8000/7000/6000/5000/ 4000/3000/2000/1000/500ms) RSS T hase Forward Current Setting (Frd/rV) RSS RSS RSS RSS The options for AO1 output : NO/I/U(No output/current/ower) Use or to select Volta ge(v)/current(i) Harmonic checking ress or to select the phase 1:hase A/L1 2:hase B/L2 3:hase C/L3 ress or to select the THD% (02~60) RSS RSS Baud Rate Setting (2400, 4800,9600, 19200, 38400) Select the arity Option (ODD,VN,NON) Select the ulse Width Option (200/100/60ms) Select the DIT Option (OFF:0/5/8/10/ 15/30/60m) S hase Forward Current Setting (Frd/rV) R hase Forward Current Setting (Frd/rV) The options for AO 2 output : NO/I/U(No output/current/ower) Use or to select AO 1 4mA analog output signal correction ress key for and adjust to 4mA by or Select the Stop Bit Option (1,2) Status Setting (12/33/34) RSS Time Setting AO 2 4mA analog output signal correction ress key for and adjust to 4mA by or CT Secondary Actual Value Setting (1A/5A) Clear Watt-Hour Value ( Yes) Date Setting AO 1 20mA analog output signal correction ress key for and adjust to 20mA by or CT rimary Ratio Setting (0005~9999) x. If CT is 300:5 Ct1 set to 300 T Secondary Actual Value Setting Clear KVar-Hour Value (Yes) Select the Reset Option (YS) RSS eriod 1 start time information The format is HH- Showing tariff which period 1 belongs to F0:no tariff F1~F4 AO 2 20mA analog output signal correction ress key for and adjust to 20mA by or 3 4
3 1 Input register odbus X835-AO Input Register tocol Start arameter Ø Ø Ø Address arameter Address Hex (Register) Number Hi Lo Description Units Byte Byte W W W hase 1 line to neutral volts. Volts X hase 2 line to neutral volts. Volts X X hase 3 line to neutral volts. Volts X X hase 1 current. Amps hase 2 current. Amps X hase 3 current. Amps 00 0A X hase 1 power. Watts 00 0C X hase 2 power. Watts 00 0 X hase 3 power. Watts X X hase 1 volt amps. VoltAmps X hase 2 volt amps. VoltAmps X X hase 3 volt amps. VoltAmps X X hase 1 volt amps reactive. VAr X hase 2 volt amps reactive. VAr 00 1A X X hase 3 volt amps reactive. VAr 00 1C X X hase 1 power factor (1). None 00 1 X hase 2 power factor (1). None X X hase 3 power factor (1). None X X hase 1 phase angle. Degrees X hase 2 phase angle. Degrees X X hase 3 phase angle. Degrees X X Average line to neutral volts. Volts 00 2A X X Average line current. Amps Sum of line currents. Amps Total system power. Watts Total system volt amps. VA Total system VAr. VAr 00 3C Total system power factor (1). None Total system phase angle. Degrees Frequency of supply voltages. Hz Import since last reset (2). k/ xport since last reset (2). kwh/ 00 4A Import VArh since last reset (2). kvarh/va 00 4C rh xport VArh since last reset (2). kvarh/va 00 4 rh VAh since last reset (2). kvah/va h Ah since last reset(3). Ah/kAh Total system power demand Watts (4) aximum total system power Watts demand (4) Total system VA VA aximum total system VA VA Neutral current Amps X X aximum neutral current Amps 00 6A X X Line 1 to Line 2 volts. Volts 00 C8 X Line 2 to Line 3 volts. Volts 00 CA X Line 3 to Line 1 volts. Volts 00 CC X Average line to line volts. Volts 00 C X Neutral current. Amps 00 0 X X hase 1 L/N volts THD % 00 A X hase 2 L/N volts THD % 00 C X X hase 3 L/N volts THD % 00 X X hase 1 Current THD % 00 F hase 2 Current THD % 00 F2 X hase 3 Current THD % 00 F4 X Average line to neutral volts % 00 F8 X THD Average line current THD. % 00 FA Total system power factor (5). Degre 00 F es hase 1 current Amps hase 2 current Amps X hase 3 current Amps X aximum phase 1 current Amps aximum phase 2 current Amps 01 0A X aximum phase 3 current Amps 01 0C X Line 1 to line 2 volts THD. % 01 4 X Line 2 to line 3 volts THD. % X 6
4 1 Input register Line 3 to line 1 volts THD. % X Average line to line volts THD. % X Total kwh % Total kvarh % Current KF 01 8 X Voltage CF X Ua 2-60 THD % Ub 2-60 THD % X Uc 2-60 THD % 02 7 X Ia 2-60 THD % 02 F Ib 2-60 THD % 03 6A X Ic 2-60 THD % 03 0 X TI1 import wh k/ 04 A TI2 import wh k/ 04 B TI3 import wh k/ 04 B TI4 import wh k/ 04 B TI1 export wh k/ 04 B TI2 export wh k/ 04 B TI3 export wh k/ 04 BA TI4 export wh k/ 04 BC TI1 import varh kvarh/ 04 B VArh TI2 import varh kvarh/ 04 C0 VArh TI3 import varh kvarh/ 04 C2 VArh TI4 import varh kvarh/ VArh 04 C TI1 export varh kvarh/ VArh TI2 export varh kvarh/ VArh TI3 export varh kvarh/ VArh TI4 export varh kvarh/ VArh Net Real energy k/ Net reactive energy kvarh/ VArh Abs real energy k/ Abs reactive energy kvarh/ VArh aximum demand occurred k/ at a time DD HH IN 04 C6 04 C8 04 CA 04 CC 04 C 04 D0 04 D2 04 D4 04 D6 7 8
5 2 od bus tocol Holding Registers and Digital meter set up Address arameter arameter odbus tocol Start Register Number Address Hex Valid range ode High Byte Low Byte Read minutes into first demand calculation. en the Demand Demand Time reaches the Demand Time eriod then the demand values Ro are valid Write demand period: 0, 5,8, 10, 15, 20, 30 or 60 minutes, default 60. Setting the period to 0 will Demand cause the demand to show the eriod current parameter value, and demand max to show the maximum parameter value since last demand reset Read system voltage, VLL for Volts 33W, VLN for others Write system current, limited to to 9999A.Requires password, Current see parameter Write system type: 3p4w = 3, 3p3w = 2 & 1p2w= Type Requires password, see parameter 13 p Relay ulse Width 00 OA Write relay on period in milliseconds: 60, 100 or 200, default 200. p Write any value to password lock ptected registers Read password lock status: assword 00 O 0 = locked. 1 = unlocked. Lock Reading will also reset the password timeout back to one minute Network arity Stop Network Node ulse Divisor assword Network Baud Rate 00 1C nergy Units 00 1 refix 10 Write the network port parity/stop bits for ODBUS tocol, where: 0 = One stop bit and no parity, default. 1 = One stop bit and even parity. 2 = One stop bit and odd parity.3 = Two stop bits and no parity.requires a restart to become effective. Write the network port node address: 1 to 247 for ODBUS tocol, default 1. Requires a restart to become effective. Note, both the ODBUS tocol and Johnson Contls node addresses can be changed via the display setup menus. Write pulse divisor index: n = 2 to 6 in /l0^n, default 3. Write password for access to ptected registers. Read ze. Reading will also reset the password timeout back to one minute. Default password is Write the network port baud rate for ODBUS tocol, where: 0 = 2400 baud. 1 = 4800 baud. 2 = 9600 baud, default. 3 = baud. 4 = baud. Requires a restart to become effective Write the units prefix for energy output values. 0 = k, e.g. k, default. But Ah for ampere hours. 1 =, e.g.. But kah for ampere hours.
6 2 od bus tocol Holding Registers and Digital meter set up ower Register Order Serial Number Hi Serial Number Lo A 00 2C Read the total system power, e.g. for 3p4w returns Volts x Amps x 3. Write the value 2141 in the required register order. Read the first pduct serial number. Read the second pduct serial number Time Format :BCD Code mean At 12:20:30 on August 6, 2013 A total of 8 hours: For example: rate Start time time1: 01 07:00 time2: 02 09:00 time3: 03 12:00 time4: 04 14:00 Write ODBUS tocol time5: 01 17: Relayl nergy Type Relay2 nergy Type Reset input parameter for pulse relay 1: 0 = relay off, 37 = Import or 39 = Import VArh, default 37. ODBUS tocol input parameter for pulse relay 2: 0 = relay off, 37 = Import or 39 = Import VArh, default 37. Write code to reset data gup. Code 1 for nergy. Code 2 for Rates and the period setting time6: 02 19:00 time7: 03 21:00 time8: 04 22:00 Less than eight hours, only the fnt set Behind both complement 0; For example: rate Start time time1: 01 07:00 time2: 02 20: Logged 00 D8 Demand aximums. Code 3 for time3: 00 00:00 Data Demand aximums and Demand Time. time4: 00 00:00 time5: 00 00:00 time6: 00 00:00 time7: 00 00:00 time8: 00 00:00 12 WORD BCD AO1 00 no output output current 02 Active power settings AO2 00 no output output current 02 Active power settings 11 12
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