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74

line-CVM-D32

Instruction Manual

Table 16 (Continued): Modbus Memory Map: Measurement variables (Table 2)�

Maximum Value

Parameter

Value

Date

Format

Address

Units

Format

Address

Units 

(10)

Current L3

Float [32]

144-145

A

Uint [32]

146-147

Epoch

Active Power L3

Float [32]

148-149

W

Uint [32]

14A-14B

Epoch

Inductive reactive power L3

Float [32]

14C-14D

varL

Uint [32]

14E-14F

Epoch

Capacitive reactive power L3

Float [32]

150-151

varC

Uint [32]

152-153

Epoch

Apparent Power L3

Float [32]

154-155

VA

Uint [32]

156-157

Epoch

Power factor L3

Float [32]

158-159

-

Uint [32]

15A-15B

Epoch

Cos 

φ

 L3

Float [32]

15C-15D

-

Uint [32]

15E-15F

Epoch

Frequency

Float [32]

168-169

Hz

Uint [32]

16A-16B

Epoch

Voltage L1-L2

Float [32]

16C-16D

V

Uint [32]

16E-16F

Epoch

Voltage L2-L3

Float [32]

170-171

V

Uint [32]

172-173

Epoch

Voltage L3-L1

Float [32]

174-175

V

Uint [32]

176-177

Epoch

Average phase-phase voltage

Float [32]

178-179

V

Uint [32]

17A-17B

Epoch

Average phase-neutral voltage

Float [32]

17C-17D

V

Uint [32]

17E-17F

Epoch

Average current

Float [32]

180-181

A

Uint [32]

182-183

Epoch

Total Active Power

Float [32]

184-185

W

Uint [32]

186-187

Epoch

Total inductive reactive power

Float [32]

188-189

varL

Uint [32]

18A-18B

Epoch

Total capacitive reactive power

Float [32]

18C-18D

varC

Uint [32]

18E-18F

Epoch

Total apparent power

Float [32]

190-191

VA

Uint [32]

192-193

Epoch

Three-phase power factor

Float [32]

194-195

-

Uint [32]

196-197

Epoch

Cos 

φ

 three-phase

Float [32]

198-199

-

Uint [32]

19A-19B

Epoch

THD % voltage L1

Float [32]

19C-19D

%

Uint [32]

19E-19F

Epoch

THD % voltage L2

Float [32]

1A0-1A1

%

Uint [32]

1A2-1A3

Epoch

THD % voltage L3

Float [32]

1A4-1A5

%

Uint [32]

1A6-1A7

Epoch

THD % Current L1

Float [32]

1AC-1AD

%

Uint [32]

1AE-1AF

Epoch

THD % Current L2

Float [32]

1B0-1B1

%

Uint [32]

1B2-1B3

Epoch

THD % Current L3

Float [32]

1B4-1B5

%

Uint [32]

1B6-1B6

Epoch

Reactive Power L1

Float [32]

1BC-1BD

var

Uint [32]

1BE-1BF

Epoch

Reactive Power L2

Float [32]

1C0-1C1

var

Uint [32]

1C2-1C3

Epoch

Reactive Power L3

Float [32]

1C4-1C5

var

Uint [32]

1C6-1C7

Epoch

Total Reactive Power

Float [32]

1C8-1C9

var

Uint [32]

1CA-1CB

Epoch

Consumed Reactive Power L1

Float [32]

1CC-1CD

var

Uint [32]

1CE-1CF

Epoch

Consumed Reactive Power L2

Float [32]

1D0-1D1

var

Uint [32]

1D2-1D3

Epoch

Consumed Reactive Power L3

Float [32]

1D4-1D5

var

Uint [32]

1D6-1D7

Epoch

Total consumed reactive power

Float [32]

1D8-1D9

var

Uint [32]

1DA-1DB

Epoch

Generated Reactive Power L1

Float [32]

1DC-1DD

var

Uint [32]

1DE-1DF

Epoch

Generated Reactive Power L2

Float [32]

1E0-1E1

var

Uint [32]

1E2-1E3

Epoch

Generated Reactive Power L3

Float [32]

1E4-1E5

var

Uint [32]

1E6-1E7

Epoch

Total generated reactive power

Float [32]

1E8-1E9

var

Uint [32]

1EA-1EB

Epoch

Consumed Active Power L1

Float [32]

1EC-1ED

W

Uint [32]

1EE-1EF

Epoch

Consumed Active Power L2

Float [32]

1F0-1F1

W

Uint [32]

1F2-1F3

Epoch

Consumed Active Power L3

Float [32]

1F4-1F5

W

Uint [32]

1F6-1F7

Epoch

Total Active Power Consumed

Float [32]

1F8-1F9

W

Uint [32]

1FA-1FB

Epoch

Summary of Contents for Line-CVM-D32

Page 1: ...INSTRUCTION MANUAL Power analyser line CVM D32 M237B01 03 22A...

Page 2: ...2 line CVM D32 Instruction Manual...

Page 3: ...to connecting the device Follow all installation and maintenance in structions throughout the device s working life Pay special attention to the installation standards of the National Electrical Code...

Page 4: ...23 4 1 MEASUREMENT PARAMETERS 24 4 1 1 QUALITY PARAMETERS 26 4 2 LED INDICATORS 27 4 3 DISPLAY 28 4 4 KEYBOARD FUNCTIONS 28 4 5 DIGITAL OUTPUTS 29 5 DISPLAY 30 5 1 INSTANTANEOUS VALUE MENU 31 5 1 1 MA...

Page 5: ...ATION OF DIGITAL OUTPUTS 1 AND 2 60 6 6 1 VARIABLE 60 6 6 2 MAXIMUM AND MINIMUM VALUE 64 6 6 3 CONNECTION AND DISCONNECTION DELAY 65 6 6 4 HYSTERESIS AND STATUS OF CONTACTS 65 6 6 5 LATCH 66 6 6 6 ENE...

Page 6: ...6 1 6 6 2 6 6 3 6 6 4 6 6 5 7 3 10 6 7 3 10 7 Note The images on the devices are for illustrative use only and may differ from the original device SYMBOLS Table 2 Symbols Symbol Description In accord...

Page 7: ...R s after sales service 2 PRODUCT DESCRIPTION The line CVM D32 is a device that measures calculates and displays the main electrical parameters in single phase mains two phase mains with and without n...

Page 8: ...sion module with 4 digital inputs and 4 transistor outputs line M 4IO A expansion module with 4 analogue inputs and outputs line M 4IO RV expansion module with 4 digital inputs 230 V and 4 relay outpu...

Page 9: ...is pow ered Cables must always be kept in perfect condition to avoid accidents or injury to personnel or installa tions Restrict the operation of the device to the specified measurement category volt...

Page 10: ...t the device from the mains supply The power supply and voltage measurement circuits must be connected with a 1mm minimum cross section cable The current transformer s secondary line must have a 2 5 m...

Page 11: ...Technical characteristics of the Panel Adapter Technical Specifications Protection degree IP40 Casing Self extinguishing V0 plastic 68 mm 68 mm Figure 2 Cut in the panel 3 4 DEVICE TERMINALS 3 5 6 1...

Page 12: ...directly connected to their right hand side 1 line EDS line M line M line M line M line CVM Figure 4 Line EDS and line CVM expansion module connection 1 Expansion module types line M 4IO R line M 4IO...

Page 13: ...PS devices can be connected to supply sets with power above 10VA Each line M EXT PS will power the devices connected to its right hand side Figure 7 line EDS line M line M line CVM line M line M line...

Page 14: ...Figure 9 Installation step 2 3 Connect both devices and fasten them by pushing the front clips down Figure 10 line CVM D32 Figure 10 Installation step 3 For correct installation of all devices please...

Page 15: ...N L1 L2 L3 N N VL3 L2 V L1 V VL1 VL2 VL3 a b A B a b A B CARGA LOAD 6 5 3 Alimentaci n Auxiliar Power Supply S1 S2 S1 S2 S1 S2 S1 S2 P1 P2 S1 S2 P1 P2 S1 S2 P1 P2 13 14 15 16 17 18 1 11 9 A2 A1 Figur...

Page 16: ...L3 a b A B a b A B CARGA LOAD 6 5 3 Alimentaci n Auxiliar Power Supply 1 A2 A1 S1 S2 S1 S2 S1 S2 13 15 17 18 3P1 2P1 1P1 3P2 2P2 1P2 9 11 14 16 Brown Green Grey Pink Green White Red Blue Figure 12 3 p...

Page 17: ...3 VL3 L2 V L1 V VL1 VL2 VL3 a b A B a b A B CARGA LOAD 5 3 1 S1 S2 S1 S2 S1 S2 S1 S2 P1 P2 S1 S2 P1 P2 S1 S2 P1 P2 13 14 15 16 17 18 Alimentaci n Auxiliar Power Supply A1 A2 9 11 Figure 13 3 phase mai...

Page 18: ...a b A B a b A B CARGA LOAD 5 3 1 Alimentaci n Auxiliar Power Supply A1 A2 S1 S2 S1 S2 S1 S2 13 15 17 18 3P1 2P1 1P1 3P2 2P2 1P2 9 11 14 16 Brown Green Grey Pink Green White Red Blue Figure 14 3 phase...

Page 19: ...ARON VL1 VL2 VL3 L1 L2 L3 VL3 L2 V L1 V VL1 VL2 VL3 a b A B a b A B CARGA LOAD 5 3 1 Alimentaci n Auxiliar Power Supply S1 S2 S1 S2 S1 S2 S1 S2 P1 P2 S1 S2 P1 P2 13 14 15 16 17 18 A1 A2 9 11 Figure 1...

Page 20: ...type 3W 2Ph VL1 VL2 N L1 L2 N N L2 V L1 V VL1 N VL2 a b A B a b A B CARGA LOAD 6 3 Alimentaci n Auxiliar Power Supply S1 S2 S1 S2 S1 S2 S1 S2 P1 P2 S1 S2 P1 P2 13 14 15 16 A1 A2 1 11 9 Figure 16 2 ph...

Page 21: ...CTION Installation type 2W 2Ph VL1 VL2 L1 L2 L2 V L1 V VL1 VL2 a b A B CARGA LOAD 3 1 Alimentaci n Auxiliar Power Supply S1 S2 S1 S2 S1 S2 S1 S2 P1 P2 13 14 A1 A2 9 11 Figure 17 Single phase mains mea...

Page 22: ...ONNECTION Installation type 2W 1Ph VL1 N L1 N N L1 V VL1 N a b A B CARGA LOAD 6 1 Alimentaci n Auxiliar Power Supply S1 S2 S1 S2 S1 S2 S1 S2 P1 P2 13 14 9 A2 A1 11 Figure 18 Single phase mains measure...

Page 23: ...CONVENTION Measurement convention CIRCUTOR 0 90 180 90 Capacitive Capacitive Inductive Inductive Generation Power Consumption Power Single phase Three phase Single phase Single phase Single phase Thre...

Page 24: ...oltages dips and interruptions according to EN50160 Table 5 Line CVM D32 measurement parameters Parameter Units Phases L1 L2 L3 Total III Value Max Value Min Phase Neutral voltage V Phase to Phase Vol...

Page 25: ...rLh Consumed Capacitive Reactive Energy kvarCh 2 Generated Capacitive Reactive Energy kvarCh 2 Consumed Capacitive Reactive Energy Tariffs 1 2 3 4 kvarCh Generated Capacitive Reactive Energy Tariffs 1...

Page 26: ...evels to be used by the device to log an event must be defined at true RMS value According to the EN 61000 4 30 Standard the RMS value for all AC magni tudes must be calculated in each cycle being ref...

Page 27: ...e time the signal is below the set threshold value 6 2 3 INTERRUPTION AND HYSTERESIS VALUE in this example it is 10 of the nominal voltage plus the time it takes for the signal to in crease from the v...

Page 28: ...u Key Keystroke Previous screen Long keystroke 2s Displays maximum values or generated values Skips to the next display menu Long keystroke 2s Accesses or Exits the configuration menu Next screen Long...

Page 29: ...and 21 in Table 4 The digital outputs can be configured as alarms pulse outputs or can be manually activated via the configuration menu see 6 6 CONFIGURATION OF DIGITAL OUTPUTS 1 and 2 19 Carga Load...

Page 30: ...G DEM A A A T1 L1 0 00 0 00 0 00 L2 THDV T1 L1 0 00 0 00 0 00 L2 THDA T1 3 h 25 14 TOT EUR kgCO2 T1 10 07 2019 08 56 55 DATE TOT kvar kvar L3 T1 L3 L3 OUT1 MAN OFF OUT1 OUT2 MAN OFF CVM IO ENER L1 1 0...

Page 31: ...t A Frequency Hz Cos three phase 0 00 w 0 00 0 00 1 00 LIII INST var VA PF T1 Total active power W Total reactive power var Total apparent power VA Three phase power factor L1 0 00 V 0 00 0 00 0 00 L2...

Page 32: ...phase L1 1 00 PF 0 00 0 00 0 00 L2 LIII INST PF PF PF T1 L3 Power factor L1 Power factor L2 Power factor L3 Three phase power factor 5 1 1 MAXIMUM AND MINIMUM VALUES A long keystroke 2 seconds on key...

Page 33: ...ed inductive reactive energy Tariff 2 kvarLh MvarLh 3 Consumed apparent energy Tariff 2 kVAh MVAh 3 kWh T3 ENER Ch Lh kVAh T1 kvar kvar 0 00 0 00 0 00 0 00 Consumed active energy Tariff 3 kWh MWh 3 Co...

Page 34: ...nductive reactive energy Tariff 3 kvarLh MvarLh 3 Generated apparent energy Tariff 3 kVAh MVAh 3 kWh ENER Ch Lh kVAh T1 T4 kvar kvar 0 00 0 00 0 00 0 00 Generated active energy Tariff 4 kWh MWh 3 Gene...

Page 35: ...l Active Power Demand Tariff 1 W L1 0 00 VA 0 00 0 00 0 00 L2 DEM VA VA VA T1 L3 T1 Maximum L1 Apparent Power Demand Tariff 1 VA Maximum L2 Apparent Power Demand Tariff 1 VA Maximum L3 Apparent Power...

Page 36: ...iff 4 A Maximum L2 Current Demand Tariff 4 A Maximum L3 Current Demand Tariff 4 A Total Maximum Current Demand Tariff 4 A L1 0 00 W 0 00 0 00 0 00 L2 DEM W W W T1 L3 T4 Maximum L1 Active Power Demand...

Page 37: ...1 L2 EVQ T1 L3 SWELL No of overvoltages SWELL detected in L1 No of overvoltages SWELL detected in L2 No of overvoltages SWELL detected in L3 L1 0 0 1 L2 EVQ T1 L3 DIP No of voltage gaps DIP detected i...

Page 38: ...V Odd voltage harmonic display up to 39th is identified by the literal HVx in the bottom left area of the display X Harmonic No L1 0 0 0 0 0 0 L2 L3 HV3 T1 3rd voltage harmonic L1 3rd voltage harmoni...

Page 39: ...ons from total active energy consumed kgCO2 0 h T1 EUR kgCO2 T1 0 0 COUNT N of hours of active energy consumed Tariff 1 h Cost of active energy consumed Tariff 1 EUR CO2 emissions from active energy c...

Page 40: ...Tariff 1 EUR CO2 emissions from active energy generated Tariff 1 kgCO2 h T2 EUR T1 0 kgCO2 0 0 COUNT N of hours of active energy generated Tariff 2 h Cost of active energy generated Tariff 2 EUR CO2 e...

Page 41: ...odule Firmware version of the expansion module MODEL S N line M 4IO R FW 12355523412 0 1 4 SLOT2 INFO Note Displayed if an expansion module is connected Expansion module model connected to line CVM D3...

Page 42: ...n expansion module is connected IN1 0 0 0 0 IN2 M 4IO R IN3 IN4 IO Input status value of the connected expansion module 7 OUT1 ON M 4IO R OUT2 OUT3 OUT4 ON ON ON IO Output Status Value of the connecte...

Page 43: ...9600 bps BAUDRATE MODBUS SETUP VARIABLE 1 V1 OUT1 SETUP VARIABLE 1 V1 OUT2 SETUP SLOT1 MODE IMPULSE IN1 NAME D IN1 MEASURE SETUP 230 0 50 EVQ NOMINAL VOLTAGE NOMINAL FREQUENCY V Hz DATE FORMAT DATE D...

Page 44: ...nd to modify the digit s value Press key to skip through the digits Hold down key to validate the value Default password 97531 Note The password can be modified see 6 1 9 DISPLAY BACKLIGHT AND PASSWOR...

Page 45: ...econdary Current value configuration SETUP PRIMARY CT A 5 0 5 000 SECONDARY CT A MEASURE Hold down key to set the Primary Current PRIMARY CT Hold down key to set the Secondary Current SECONDARY CT Use...

Page 46: ...onvention IEC CIRC Measurement convention Circutor IEEE Measurement convention IEEE To validate the option hold down key Use key to skip to the next programming point 6 1 4 INSTALLATION TYPE This scre...

Page 47: ...et the aggregation period i e measurement integration period AGGREGATION PERIOD Hold down key to set the integration period for maximum demand calculation PD PERIOD Use keys and to modify the digit s...

Page 48: ...e not cleared To validate the option hold down key Use key to skip to the next programming point 6 1 7 CLEAR ENERGIES AND DELETE ALL This screen enables the energy meters to be cleared and data to be...

Page 49: ...modify the digit s value Press key to skip through the digits To validate the option hold down key Use key to skip to the next programming point 6 1 9 DISPLAY BACKLIGHT AND PASSWORD This screen enabl...

Page 50: ...een enables configuration of the nominal voltage and frequency in order to detect the quality parameters SETUP 230 0 50 EVQ NOMINAL VOLTAGE NOMINAL FREQUENCY V Hz Hold down key to set the nominal volt...

Page 51: ...e digits Hold down key to validate the value Overvoltage Minimum value 100 0 Maximum value 150 0 Gap Minimum value 50 0 Maximum value 97 0 Use key to skip to the next programming point 6 2 3 INTERRUPT...

Page 52: ...key to skip to the next programming point 6 2 4 CLEAR QUALITY PARAMETERS This screen enables the quality parameter meters to be cleared RESET EVQ SETUP EVQ YES NO Hold down key to clear the quality p...

Page 53: ...Year MM DD YY Month Day Year To validate the option hold down key Use key to skip to the next programming point 6 3 2 DATE AND TIME This screen enables current date and time configuration SETUP DATE D...

Page 54: ...key to skip through the digits Peripheral number Minimum value 1 Maximum value 255 Hold down key to validate the value Hold down key to set the transmission speed BAUDRATE Use keys and to skip throug...

Page 55: ...meter 6 1 5 CALCULATION PERIODS Hold down key to validate the value Use key to skip to the next programming point 6 5 RATIO CONFIGURATION 6 5 1 CO2 EMISSIONS IN CONSUMPTION TARIFFS 1 AND 2 This screen...

Page 56: ...emission ratio for Tariff 3 in consumption RATIO T3 Hold down key to set emission ratio for Tariff 4 in consumption RATIO T4 Use keys and to modify the digit s value Press key to skip through the dig...

Page 57: ...O T3 Hold down key to set the ratio per kWh for Tariff 4 in consumption RATIO T4 Use keys and to modify the digit s value Press key to skip through the digits Hold down key to validate the value Tarif...

Page 58: ...Screen displayed if the device has been configured to operate in all 4 quadrants 6 1 3 QUAD RANTS AND MEASUREMENT CONVENTION This screen enables carbon emission ratio configuration in generation Carbo...

Page 59: ...f 2 in generation RATIO T2 Use keys and to modify the digit s value Press key to skip through the digits Hold down key to validate the value Tariff 1 and 2 ratio per kWh in generation Minimum value 0...

Page 60: ...digital output variable VARIABLE SETUP VARIABLE 1 V1 OUT1 Hold down key to enter programming mode Use keys and to modify the digit s value Press key to skip through the digits The codes for the varia...

Page 61: ...med Power Factor L1 733 L2 740 L3 747 III 754 Cos Total L1 8 L2 16 L3 24 III 39 Cos Generated L1 706 L2 713 L3 720 III 727 Cos Consumed L1 734 L2 741 L3 748 III 755 THD Voltage L1 40 L2 41 L3 42 THD C...

Page 62: ...le 13 Variable codes for Digital Output programming Table 4 Parameter Tariff Code Tariff Code Tariff Code Maximum Current Demand L1 T1 600 T2 612 T3 624 T4 636 Maximum Current Demand L2 T1 601 T2 613...

Page 63: ...44 T2 169 T2 174 T2 179 T2 184 T3 209 T3 214 T3 219 T3 224 T4 249 T4 254 T4 259 T4 264 Total 489 Total 494 Total 499 Total 504 Generated Active Energy T1 149 T1 154 T1 159 T1 164 T2 189 T2 194 T2 199...

Page 64: ...276 T4 281 T4 286 Total 511 Total 516 Total 521 Total 526 Consumed Apparent Energy T1 133 T1 138 T1 143 T1 148 T2 173 T2 178 T2 183 T2 188 T3 213 T3 218 T3 223 T3 228 T4 253 T4 258 T4 263 T4 268 Total...

Page 65: ...y to set connection delay DELAY ON to validate the value Hold down key to set disconnection delay DELAY OFF to validate the value Use keys and to modify the digit s value Press key to skip through the...

Page 66: ...or Table 13 This screen enables alarm latching configuration LATCH NO 0 S TIME ON OUT1 SETUP Hold down key to set latching LATCH i e if it remains interlocked after the alarm is triggered even if the...

Page 67: ...set the energy per pulse WEIGHT Use keys and to modify the digit s value Press key to skip through the digits Energy per pulse Minimum value 1 wh varLh varCh varh VAh Maximum value 1999999 wh varLh v...

Page 68: ...programming point 6 6 8 DIGITAL OUTPUT MANUAL OPERATION Note Screen displayed if the selected digital output variable is MANUAL see Table 12 This screen enables manual digital output activation RATIOS...

Page 69: ...line CVM D32 device and the master unit must not exceed 12m in length A maximum of 32 line CVM D32 devices can be connected to the bus For communication with the master unit a smart RS 232 to RS 485...

Page 70: ...gister readout Function 0x02 Input status readout Function 0x10 Writing multiple registers Function 0x01 Relay status readout Function 0x05 Writing a relay status 7 2 1 MODBUS QUERY EXAMPLE Question I...

Page 71: ...ctive reactive power L2 Float 32 16 17 varL Capacitive reactive power L2 Float 32 18 19 varC Apparent Power L2 Float 32 1A 1B VA Power factor L2 Float 32 1C 1D Cos L2 Float 32 1E 1F Voltage phase L3 F...

Page 72: ...wer Float 32 74 75 var Quadrant L1 Uint 16 76 Quadrant L2 Uint 16 77 Quadrant L3 Uint 16 78 Three phase quadrant Uint 16 79 Consumed Active Power L1 Float 32 7A 7B W Consumed Active Power L2 Float 32...

Page 73: ...Cos Power generated L3 Float 32 C6 C7 Cos Three phase Power generated Float 32 C8 C9 Table 16 Modbus Memory Map Measurement Variables Table 2 Maximum Value Parameter Value Date Format Address Units F...

Page 74: ...tor Float 32 194 195 Uint 32 196 197 Epoch Cos three phase Float 32 198 199 Uint 32 19A 19B Epoch THD voltage L1 Float 32 19C 19D Uint 32 19E 19F Epoch THD voltage L2 Float 32 1A0 1A1 Uint 32 1A2 1A3...

Page 75: ...rC Uint 32 236 237 Epoch Total Capacitive Reactive Power consumed Float 32 238 239 varC Uint 32 23A 23B Epoch Capacitive Reactive Power generated L1 Float 32 23C 23D varC Uint 32 23E 23F Epoch Capacit...

Page 76: ...Power L3 Float 32 348 349 W Uint 32 34A 34B Epoch Inductive reactive power L3 Float 32 34C 34D varL Uint 32 34E 34F Epoch Capacitive reactive power L3 Float 32 350 351 varC Uint 32 352 353 Epoch Appa...

Page 77: ...otal Active Power generated Float 32 408 409 W Uint 32 40A 40B Epoch Inductive Reactive Power consumed L1 Float 32 40C 40D varL Uint 32 40E 40F Epoch Inductive Reactive Power consumed L2 Float 32 410...

Page 78: ...Active Energy L1 Uint 64 514 515 516 517 Wh Consumed Active Energy L2 Uint 64 518 519 51A 51B Wh Consumed Active Energy L3 Uint 64 51C 51D 51E 51F Wh Total Active Energy consumed Uint 64 520 521 522...

Page 79: ...AE 5AF VAh Total Apparent Energy generated Uint 64 5B0 5B1 5B2 5B3 VAh Table 19 Modbus Memory Map Energy variables Table 2 Energies per Tariffs Tariff 1 Parameter Format Address Units Consumed Active...

Page 80: ...648 649 64A 64B VAh Generated Apparent Energy L3 Uint 64 64C 64D 64E 64F VAh Total Apparent Energy generated Uint 64 650 651 652 653 VAh Tariff 2 Parameter Format Address Units Consumed Active Energy...

Page 81: ...64 6EC 6ED 6EE 6EF VAh Total Apparent Energy Generated Uint 64 6F0 6F1 6F2 6F3 VAh Tariff 3 Parameter Format Address Units Consumed Active Energy L1 Uint 64 6F4 6F5 6F6 6F7 Wh Consumed Active Energy...

Page 82: ...d Uint 64 790 791 792 793 VAh Tariff 4 Parameter Format Address Units Consumed Active Energy L1 Uint 64 794 795 796 797 Wh Consumed Active Energy L2 Uint 64 798 799 79A 79B Wh Consumed Active Energy L...

Page 83: ...M DEMAND VARIABLES Function 0x04 register readout is used for these variables Table 20 Modbus Memory Map Maximum Demand Variables Table 1 Parameter Format Tariff 1 Tariff 2 Tariff 3 Tariff 4 Units Cur...

Page 84: ...32 D6E D6F Epoch Inductive Reactive Power L3 Float 32 D70 D71 varL Uint 32 D72 D73 Epoch Total Inductive Reactive Power Float 32 D74 D75 varL Uint 32 D76 D77 Epoch Capacitive Reactive Power L1 Float 3...

Page 85: ...E09 A Uint 32 E0A E0B Epoch Current L2 Float 32 E0C E0D A Uint 32 E0E E0F Epoch Current L3 Float 32 E10 E11 A Uint 32 E12 E13 Epoch Total current Float 32 E14 E15 A Uint 32 E16 E17 Epoch Active Power...

Page 86: ...otal Capacitive Reactive Power Float 32 EA4 EA5 varC Uint 32 EA6 EA7 Epoch Reactive Power L1 Float 32 EA8 EA9 var Uint 32 EAA EAB Epoch Reactive Power L2 Float 32 EAC EAD var Uint 32 EAE EAF Epoch Rea...

Page 87: ...26 1C27 1CBC 1CBD 30th Harmonic Float 32 1B92 1B93 1C28 1C29 1CBE 1CBF 31st Harmonic Float 32 1B94 1B95 1C2A 1C2B 1CC0 1CC1 32nd Harmonic Float 32 1B96 1B97 1C2C 1C2D 1CC2 1CC3 33rd Harmonic Float 32...

Page 88: ...32 1DEC 1DED 1E82 1E83 1F18 1F19 32nd Harmonic Float 32 1DEE 1DEF 1E84 1E85 1F1A 1F1B 33rd Harmonic Float 32 1DF0 1DF1 1E86 1E87 1F1C 1F1D 34th Harmonic Float 32 1DF2 1DF3 1E88 1E89 1F1E 1F1F 35th Ha...

Page 89: ...issions from active energy consumed Tariff 3 Float 32 1608 1609 kgCO2 N of hours of active energy generated Tariff 3 Uint 32 160A 160B hours Cost of active energy generated Tariff 3 Float 32 160C 160D...

Page 90: ...odule Uint 32 35EA 35EB ID number of Slot 2 expansion module Uint 32 35EC 35ED Device serial number String 364C 364D 364E 364F 3650 3651 3652 Serial number of Slot 1 expansion module String 3653 3654...

Page 91: ...iguration variable Format Address Valid data range Default value Primary voltage Float 32 2710 2711 1 0 2000000 0 V Secondary voltage Float 32 2712 2713 1 0 2000000 0 V Primary current Float 32 2714 2...

Page 92: ...0 2 0 Interruption hysteresis Float 32 2AC8 2AC9 0 0 100 0 2 0 7 3 10 3 Device clock Table 31 Modbus Memory Map Device clock Device clock Configuration variable Format Address Valid data range Defaul...

Page 93: ...2 2788 2789 0 00000 99 99999 KgCO2 0 00000 KgCO2 CO2 emission ratio in generation Tariff 3 Float 32 278A 278B 0 00000 99 99999 KgCO2 0 00000 KgCO2 CO2 emission ratio in generation Tariff 4 Float 32 27...

Page 94: ...lse width 0 999 ms x10 Disconnection delay Uint 16 4E3B 0 65499 s 0 s Low level pulse width 0 999 ms x10 Hysteresis Uint 16 4E3C 0 99 0 Contact status Uint 16 4E35 0 Normally open 1 Normally closed 0...

Page 95: ...A In 0 250A 0 01 10 A 0 01 2 A 0 01 0 5 A Maximum current impulse 1s 100 A Minimum current measurement Istart 0 01 A Max consumption of the current input 0 9 VA Installation category CAT III 300V Meas...

Page 96: ...ion degree IP30 Front IP40 Mechanical features Terminals 1 24 2 5 mm2 0 4 Nm M2 5 Flat Dimensions Figure 32 mm Weight 350 g Enclosure Self extinguishing V0 plastic Attachment DIN rail 21 21 Recommende...

Page 97: ...97 Instruction Manual line CVM D32 118 52 5 90 35 7 45 44 70 Figure 32 Line CVM D32 Dimensions...

Page 98: ...derived from a possible failure improper installation or improper usage of the unit Consequently this guarantee does not apply to failures occurring in the following cases Overvoltages and or electri...

Page 99: ...line M 20I line M 3G line TCPRS1 Brand CIRCUTOR The object of the declaration is in conformity with the relevant EU harmonisation legislation provided that it is installed maintained and used for the...

Page 100: ...4I0 T line M 4I0 R line M 4I0 A line M EXT PS line M 20I line M 3G line TCPRS1 Marca CIRCUTOR O objeto da declara o est conforme a legisla o de harmoniza o pertinente na UE sempre que seja instalado...

Page 101: ...3G line TCPRS1 marka CIRCUTOR Przedmiot deklaracji jest zgodny z odno nymi wymaganiami prawodawstwa harmonizacyjnego w Unii Europejskiej pod warunkiem e b dzie instalowany konserwowany i u ytkowany z...

Page 102: ...15 PD PERIOD min 15min MEASURE 2s 2s 2s SETUP CLEAR MAX MIN YES NO YES NO CLEAR PD EDIT CLEAR MAX MIN YES NO YES NO CLEAR PD 2s 2s 2s YES NO EDIT EDIT EDIT CLEAR ENERGY YES NO YES NO CLEAR ALL DISPLA...

Page 103: ...MM YY DATE FORMAT DATE DD MM YY EDIT EDIT DATE DATE 05 05 2019 HOUR 12 14 47 SETUP DATE DATE 05 05 2019 HOUR 12 14 47 MM DD YY SETUP SETUP PERIPH NUMBER 1 9600 bps BAUDRATE MODBUS DATA SETTINGS 8N1 ME...

Page 104: ...RATIO T2 2s 2s 2s PROG CIRCUIT TYPE MEASURE EUR EDIT RATIO T3 0 00000 0 00000 RATIO T4 RATIO T1 0 00000 0 00000 RATIO T2 kgCO2 SETUP RATIO T3 0 00000 0 00000 RATIO T4 SETUP kgCO2 EUR SETUP RATIO T1 0...

Page 105: ...GH VALUE 0 0 V 0 0 v LOW VALUE OUT1 SETUP DELAY ON 0 S 0 S DELAY OFF OUT1 SETUP HYSTERESIS 0 NO CONTACT TYPE OUT1 SETUP LATCH NO 0 S TIME ON OUT1 SETUP 0 9 0 0 00 2s 2s 2s NO NC 0 9 0 0 00 NO TIME YES...

Page 106: ...CIRCUTOR S A U Vial Sant Jordi s n 08232 Viladecavalls Barcelona Tel 34 93 745 29 00 Fax 34 93 745 29 14 www circutor com central circutor com...

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