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F D I NL GB E P DIRIS A40/A41 RS485 – PROFIBUS ® DP Operating instructions ON 1 COM PROFIBUS ® Certification

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Page 1: 876 786 A gb - Socomec · PDF file4 SOCOMEC - Réf. : 876 786 A GB DIRIS A40/A41- RS485 - PROFIBUS® DP PRELIMINARY OPERATIONS N° 1 N° 2 N° n 1500 M

F D I NLGB E P

DIRIS A40/A41RS485 – PROFIBUS® DP

Operating instructions

ON1

COM

PROFIBUS® Certification

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PRELIMINARY OPERATIONS_____________________ 4GENERAL INFORMATION _______________________ 4INSTALLATION _________________________________ 5PROGRAMMING _______________________________ 6CONFIGURATION _____________________________ 10USE OF PROFIBUS®-DP MODULES _____________ 15MODULE 1: MAIN MEASUREMENTS ___________ 15MODULE 2: ADDITIONAL MEASUREMENTS_____ 20MODULE 3: TROUGH/POWER CUT/

MEAN POWER____________________ 22MODULE 4: OVERVOLTAGE/MEAN VOLTAGE

AND FREQUENCIES/MAXIMUMAND MEAN In_____________________ 23

MODULE 5: CURRENT HARMONICS ___________ 24MODULE 6: PHASE TO PHASE VOLTAGE _______ 25MODULE 7: PHASE TO NEUTRAL VOLTAGE_____ 26MODULE 8: INSTANTANEOUS MIN/MAX ________ 27MODULE 9: SPECIAL FRAME__________________ 28MODULE 11: LIMITED SPECIAL FRAME ________ 35

DIAGNOSTICS ________________________________ 37TECHNICAL CHARACTERISTICS________________ 39PROFIBUS® CERTIFICATION____________________ 40

Con

tent

s

GB

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

PRELIMINARY OPERATIONS

N° 1 N° 2 N° n

� 1500 M

Programmablecontrollers

Other systems

N° 1

RS485

0+- -+0N° n

� 1500 M � 1500 M

Programmablecontrollers

Other systems

repetor

DIR

IS 6

99 A

GB

DIR

IS 7

00 A

GB

Recommendations:You should use a garantieed cable PROFIBUS.

NB :It is essential to attach an active termination to the2 link-up ends. This termination can be found on themodel RS 485. Remember to put the 2 switches toON when attaching.

For personnel and product safety please read thecontents of these operating instructions carefullybefore connecting.Check the following points as soon as you receivethe Diris A40/A41 package:• the packing is in good condition,• the product has not been damaged during transit,

• the product reference number conforms to yourorder,

• the package contains 2 option modules, the first ofwhich is equipped with a disconnectable terminalblock,

• a CD-Rom.

GENERAL INFORMATIONFunctionsThis optional module must be connected to theDIRIS A40/A41 (ref. 4825 0A40, 4825 0A41, 4825 1A40,4825 1A41). It provides an RS485 serial link (2 or 3wires) with PROFIBUS® DP protocol for the use ofDIRIS A40/A41 from a PC or PLC.

General pointsIn a standard configuration, an RS485 link allows 1 to 32DIRIS A40/A41 to be linked to 1 to 32 pieces of equip-ment using the PROFIBUS®-DP protocol. The maximumcommunication speed is 1.5 Mbauds over 200 m.This distance can be increased if the speed is reduced(Standards: EN50170).

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CONNECTION

The option modules are installed on the rear panel of the DIRIS A40/A41 in one of the four positions provided.

DIR

IS 3

42 A

DIR

IS 3

43 A

ON1

ON1

0V - +

COM

DIR

IS 4

69 B

�Fix the option modules next to each other

�Follow indications when connecting the terminalSwitch on voltage supply

The DIRIS A40/A41 must be switched off

DIRIS A40/A41 - RS485 - PROFIBUS® DP

INSTALLATION

Note :Correspondence with a HAN BRID connector+ = B (red)- = A (green)

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

PROGRAMMATION

Previous menu

Following menu

p.7

p.8

p.9

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DIRIS A40/A41 - RS485 - PROFIBUS® DPPROGRAMMATION

COMMUNICATION ADDRESS

> Example : COM ADR = 7

x 3

x 2

x 1confirm

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

PROGRAMMATION

DIAGNOSTIQUE

> Example : COM DIAG = NO

x 1

x 1 (NO)x 2 (YES)

x 1confirm

NB :This function allows switching the diagnosis functionor off. (see p. 37)

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DIRIS A40/A41 - RS485 - PROFIBUS® DPPROGRAMMATION

ACTIVATION OF THE PROGRAMME VIA THE PROFIBUS MASTER> Example : COM PARA = YES

x 1

x 1 (YES)x 2 (NO)

x 1confirm

Nb :This function allows activating or deactivation of theDIRIS programming by the PROFIBUS DP master. Ifthis function is deactivated please note that in case ofloss of the slave (DIRIS) the master will not send theGSD file parameters and thus won’t re-programmethe DIRIS A with the factory parameters.

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

CONFIGURATION

The table below gives the configuration of the DIRIS A40/A41 used when starting a PROFIBUS®-DP cycle.

Name Size (bytes)

Manufacturer parameter 1Always equal to zero

Network type 10 : 1 BL1 : 2 BL2 : 3 BL3 : 3 NBL4 : 4 BL5 : 4 NBLCT secondary (A) 11 : 1 A5 : 5 ACT primary (A) 2Voltage input on PT 10 : No1 : YesPT primary (V) 4PT secondary (V) 160 : 60 V100 : 100 V110 : 110 V115 : 115 V120 : 120 V173 : 173 V190 : 190 VSynchronisation of I AVG / MAX 15 : 5 mn8 : 8 mn10 : 10 mn15 : 15 mn20 : 20 mn30 : 30 mn60 : 60 mnSynchronisation of P / Q / S AVG / MAX 15 : 5 mn8 : 8 mn10 : 10 mn15 : 15 mn20 : 20 mn30 : 30 mn60 : 60 mnOUT 1 allocation 10 : kWh+1 : kvarh+2 : kVAh3 : kWh-4 : kvarh-OUT 1 impulse value (kWh / kvarh / kVAh) 10 : 0,11 : 12 : 10

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DIRIS A40/A41 - RS485 - PROFIBUS® DPCONFIGURATION

3 : 1004 : 10005 : 10000OUT 1 impulse duration (ms) 11 : 1002 : 2003 : 3004 : 4005 : 5006 : 6007 : 7008 : 8009 : 900OUT 2 allocation 10 : kWh+1 : kvarh+2 : kVAh3 : kWh-4 : kvarh-OUT 2 impulse value (kWh / kvarh / kVAh) 10 : 0,11 : 12 : 103 : 1004 : 10005 : 10000OUT 2 impulse duration (ms) 11 : 1002 : 2003 : 3004 : 4005 : 5006 : 6007 : 7008 : 8009 : 900Analog output type OUT 1 10 : 0 / 20 mA1 : 4 / 20 mA2 : Alim Allocation of analog output OUT 1 10 : I11 : I22 : I3 3 : In4 : U125 : U236 : U317 : P8 : Q9 : S

Name Size (bytes)

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

CONFIGURATION

Name Size (bytes)

10 : PF11 : V112 : V213 : V314 : FValue at 0 or 4 mA from analog output OUT 1 2Unit at 0 or 4 mA from analog output OUT 1 10 : /1 : k2 : MValue at 20 mA from analog output OUT 1 2Unit at 20 mA from analog output OUT 1 10 : /1 : k2 : MAnalog output type OUT 2 10 : 0 / 20 mA1 : 4 / 20 mA2 : AlimAllocation of analog output OUT 2 10 : I11 : I22 : I3 3 : In4 : U125 : U236 : U317 : P8 : Q9 : S10 : PF11 : V112 : V213 : V314 : FValue at 0 or 4 mA from analog output OUT 2 2Unit at 0 or 4 mA from analog output OUT 2 10 : /1 : k2 : MValue at 20 mA from analog output OUT 2 2Unit at 20 mA from analog output OUT 2 10 : /1 : k2 : MAnalog output type OUT 3 10 : 0 / 20 mA1 : 4 / 20 mA2 : Supply

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DIRIS A40/A41 - RS485 - PROFIBUS® DPCONFIGURATION

Name Size (bytes)

Allocation of analog output OUT 3 10 : I11 : I22 : I3 3 : In4 : U125 : U236 : U317 : P8 : Q9 : S10 : PF11 : V112 : V213 : V314 : FValue at 0 or 4 mA from analog output OUT 3 2Unit at 0 or 4 mA from analog output OUT 3 10 : /1 : k2 : MValue at 20 mA from analog output OUT 3 2Unit at 20 mA from analog output OUT 3 10 : /1 : k2 : MAnalog output type OUT 4 10 : 0 / 20 mA1 : 4 / 20 mA2 : Supply Allocation of analog output OUT 4 10 : I11 : I22 : I3 3 : In4 : U125 : U236 : U317 : P8 : Q9 : S10 : PF11 : V112 : V213 : V314 : FValue at 0 or 4 mA from analog output OUT 4 2Unit at 0 or 4 mA from analog output OUT 4 10 : /1 : k2 : M

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

CONFIGURATION

Name Size (bytes)

Value at 20 mA from analog output OUT 4 2Unit at 20 mA from analog output OUT 4 10 : /1 : k2 : MCT In secondary (A) 11 : 1 A5 : 5 ACT In primary (A) 2

Length: 54 bytes

NB:All this information is integrated in the GSD file (User-Prm-Data).

Check that the parameterisation data are identical to the data programmedin the device.

When the PROFIBUS® master loses a slave, it re-injects the parameters fromthe GSD file which will re set the factory configuration.There are two solutions to inhibit this function:- Deactivate the master’s DIRIS A programming (see also page 9) - Configure the DIRIS A through the master, then open and close the DIRIS A

programming menu directly by the keypad (code =100).

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

USE OF THE PROFIBUS®-DP MODULES

Name Size (bytes)

Change of relay status if bit on 1, then taken into account, otherwise bit on 0 1bit 0: Relay 1bit 1: Relay 2bit 2: Relay 3 (second option relay 1)bit 3: Relay 4 (second option relay 2)bit 4: Change in relay configurationbit 5: Resetting of one measurementbit 6: not usedbit 7: not usedRelay 1 on break 10: open1: closedRelay 2 on break 10: open1: closedRelay 3 on break 10: open1: closedRelay 4 on break 10: open1: closedAllocation OUT 1 10: Cde1: I2: U3: P+4: Q+5: S6: F7: PFL8: Thd 3I9: Thd 3U10: In11: time12: V13: Thd In14: Thd 3V15: P-16: Q-17: PFCLower threshold OUT 1 2Lower threshold unit OUT 1 10: /1: k2: MUpper threshold OUT 1 2

MODULE 1: MAIN MEASUREMENTS

This module contains the currents, powers, frequen-cies, power factor, positive energies and hour meter.

Example: Modification of relay 1: • set bit 4 (relay configuration change),• set bit 0 (relay 1 to 1),• modify the status byte on relay 1 break (next byte).

The modules contain the inputs (display) and outputs(configuration).

Output frame

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

USE OF THE PROFIBUS®-DP MODULES

Name Size (bytes)

Upper threshold unit OUT 1 10: /1: k2: MHysteresis 0 to 99 OUT 1 (%) 1Time delay OUT 1 (s) 2Allocation OUT 2 10: Cde1: I2: U3: P+4: Q+5: S6: F7: PFL8: Thd 3I9: Thd 3U10: In11: time12: V13: Thd In14: Thd 3V15: P-16: Q-17: PFCLower threshold OUT 2 2Lower threshold unit OUT 2 10: /1: k2: MUpper threshold OUT 2 2Upper threshold unit OUT 2 10: /1: k2: MHysteresis 0 to 99 OUT 2 (%) 1Time delay OUT 2 (s) 2Zero reset 2bit 0: Max 3Ibit 1: Max P+bit 2: Max P-bit 3: Max Q+bit 4: Max Q-bit 5: Max Sbit 6: hour meterbit 7: kWh+bit 8: kvarh+bit 9: kVAbit 10: kWh-bit 11: kvarh-bit 12: all the parametersbit 13: Input 1bit 14: Input2bit 15: not used

MODULE 1: MAIN MEASUREMENTSOutput frame

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DIRIS A40/A41 - RS485 - PROFIBUS® DPUSE OF THE PROFIBUS®-DP MODULES

MODULE 1: MAIN MEASUREMENTSOutput frame

Name Size (bytes)

Zero reset, supplementary options 2bit 0: Input 1bit 1: Input 2bit 2: Input 3bit 3: Input 4bit 4: Not usedbit 5: Not usedbit 6: Min Max Ibit 7: Min Max Inbit 8: Min Max Ubit 9: Min Max Frequency bit 10: Min Max PFbit 11: Min Max Pbit 12: Min Max Qbit 13: Min Max Thd Ibit 14: Min Max Thd Inbit 15: Min Max Thd U

Length: 29 bytes

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

USE OF THE PROFIBUS®-DP MODULES

MODULE 1: MAIN MEASUREMENTSFrame of inputs not allocated for current and voltage transformation ratios

Name Size (bytes)

Phase 1 current (mA) 2Phase 2 current (mA) 2Phase 3 current (mA) 2Neutral current (mA) 2Phase to phase voltage U12 (V / 10) 2Phase to phase voltage U23 (V / 10) 2Phase to phase voltage U31 (V / 10) 2Phase to neutral voltage phase 1 (V / 10) 2Phase to neutral voltage phase 2 (V / 10) 2Phase to neutral voltage phase 3 (V / 10) 2Frequency (Hz / 100) 2∑ Active power + /- (kW / 10) 2∑ Reactive power + /- (kvar / 10) 2∑ Apparent power + /- (kVa / 10) 2∑ Power factor L / C 2-: capacitive and +: inductive (0.001)I1 max (mA) 2I2 max (mA) 2I3 max (mA) 2Maximum value active power + (W) 2Maximum value active power – (W) 2Maximum value reactive power + (var) 2Maximum value reactive power – (var) 2Maximum apparent power (VA) 2Active energy + < 10000 (kWh) 2Active energy + > 10000 (kWh) 2Reactive energy + < 10000 (kvarh) 2Reactive energy + > 10000 (kvarh) 2Apparent energy < 10000 (kVAh) 2Apparent energy > 10000 (kVAh) 2System I (mA) 2System U (V / 10) 2System V (V / 10) 2Hour meter < 10000 (H / 100) 2Hour meter >10000 (H / 100) 2

Length: 68 bytes

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DIRIS A40/A41 - RS485 - PROFIBUS® DPUSE OF THE PROFIBUS®-DP MODULES

Calculation of the values allocated:The currents must be multiplied by the CT ratio, the vol-tages by the PT ratio (in HV) and the powers by the ratioCT x PT.Example:

CT = 100 = 20 VT = 20000 = 2005 100

CT x VT = 20 x 200= 4000

Powers will be multiplied by 4000 (if there is no VT,then VT = 1), currents by 20 and voltages by 200.

NB :

I system = I1 + I2 + I3

3

U system = U12 + U21 + U31

3

V system = V1 + V2 + V3

3

Transformation of signed values into unsigned values

If the currents, voltages or energies are negative, thefollowing rule must be applied:• take the opposite bit by bit of the datum• add 1 to this oppositeExample:• negative datum - 28864mv

or in binary : 0111 0000 1100 0000• opposite is equal to : 1000 1111 0011 1111• opposite + 1 is equal to : 1000 1111 0100 0000

or in decimal 366,72.

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

USE OF THE PROFIBUS®-DP MODULES

MODULE 2: SUPPLEMENTARY MEASUREMENTS

Name Size (bytes)

Active power phase 1 + /- (kW/10) 2Active power phase 2 + /- (kW/10) 2Active power phase 3 + /- (kW/10) 2Reactive power phase 1 + /- (kvar/10) 2Reactive power phase 2 + /- (kvar/10) 2Reactive power phase 3 + /- (kvar/10) 2Apparent power phase 1 (kVA/10) 2Apparent power phase 2 (kVA/10) 2Apparent power phase 3 (kVA/10) 2Power factor phase 1 (0.001) 2-: capacitive and +: inductivePower factor phase 2 (0.001) 2-: capacitive and +: inductivePower factor phase 3 (0.001) 2-: capacitive and +: inductive Average value I1 (mA) 2Average value I2 (mA) 2Average value I3 (mA) 2Average value active power + (W) 2Average value active power - (W) 2Average value reactive power + (var) 2Average value reactive power - (var) 2Average value apparent power (VA) 2Active energy - < 10000 (kWh) 2Active energy - >10000 (kWh) 2Reactive energy - < 10000 (kvarh) 2Reactive energy - > 10000 (kvarh) 2Input pulse meter 1 < 10000 2Input pulse meter 1 > 10000 2Input pulse meter 2 < 10000 2Input pulse meter 2 > 10000 2Input pulse meter 3 < 10000 2Input pulse meter 3 > 10000 2Input pulse meter 4 < 10000 2Input pulse meter 4 > 10000 2Status inputs 1, 2, 3, 4. 2

This module contains the measurements by phase,average values, negative energies, impulse meters(on / off inputs) and statuses (on / off inputs). The output frame is identical to module 1.

Input frame

Length: 66 bytes

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DIRIS A40/A41 - RS485 - PROFIBUS® DPUSE OF THE PROFIBUS®-DP MODULES

Calculation of the values allocated:The currents must be multiplied by the CT ratio, thevoltages by the PT ratio (in HV) and the powers by theCT x PT ratio.Example:

CT = 100 = 20 VT = 20000 = 2005 100

CT x VT = 20 x 200= 4000

Powers will be multiplied by 4000 (if there is no VT,then VT = 1), currents by 20 and voltages by 200.

Status of the inputs :input 1 = bit 0input 2 = bit 1input 3 = bit 2input 4 = bit 4

If active the bit is on 1.If inactive the bit is on 0.

Transformation of signed values into unsigned values

If the currents, voltages or energies are negative, thefollowing rule must be applied:• take the opposite bit by bit of the datum• add 1 to this oppositeExample:• negative datum - 28864mv

or in binary : 0111 0000 1100 0000• opposite is equal to : 1000 1111 0011 1111• opposite + 1 is equal to : 1000 1111 0100 0000

or in decimal 366,72 V.

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

USE OF THE PROFIBUS®-DP MODULES

MODULE 3: DIPS/INTERRUPTION/TREND POWERS AND FREQUENCY

Name Size (bytes)

Last voltage dipsResidual phase to phase voltage involved: 0: none, 5: U12, 6: U23, 7: U31 1Value (V/100) 4Residual phase to neutral voltage involved: 0: none, 22 : V1, 23: V2, 24: V3 1Value (V/100) 4Length (ms) 4Month 1Day 1Year 1Hour 1Minute 1Second 1Last power interruptionMonth 1Day 1Year 1Hour 1Minute 1Second 1Last average powerLast P+ value (kW/10) 2Last P- value (kW/10) 2Last Q+ value (kvar/10) 2Last Q- value (kvar/10) 2Last average frequencyLast frequency value (Hz/100) 2

Length: 36 bytes

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DIRIS A40/A41 - RS485 - PROFIBUS® DPUSE OF THE PROFIBUS®-DP MODULES

MODULE 4: SWELL/TREND VOLTAGES/IN MAXIMUM AND AVERAGE

Name Size (bytes)

Last swellMaximum phase to phase voltage involved: 0: none, 5: U12, 6: U23, 7: U31 1Value (V/100) 4Maximum phase to neutral voltage involved: 0: none, 22 : V1, 23: V2, 24: V3 1Value (V/100) 4Length (ms) 4Month 1Day 1Year 1Hour 1Minute 1Second 1Average voltageLast phase to phase voltage value U12 (V/10) 2Last phase to phase voltage value U23 (V/10) 2Last phase to phase voltage value U31 (V/10) 2Last phase to neutral voltage value V1 (V/10) 2Last phase to neutral voltage value V2 (V/10) 2Last phase to neutral voltage value V3 (V/10) 2Average and maximum neutral currentAverage In (mA) 2Average maximum In (mA) 2

Length: 36 bytes

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DIRIS A40/A41 - RS485 - PROFIBUS® DP

USE OF THE PROFIBUS®-DP MODULES

MODULE 5: CURRENT HARMONICS

This module contains the thd Is, the thd INs and theindividual harmonics up to number 15. The output frame is identical to module 1.

Name Size (bytes)

Thd I1 (0.1 %) 2Thd I2 (0.1 %) 2Thd I3 (0.1 %) 2Thd In (0.1 %) 2Harmonic I1 row 3 (0.1 %) 2Harmonic I2 row 3 (0.1 %) 2Harmonic I3 row 3 (0.1 %) 2Harmonic In row 3 (0.1 %) 2Harmonic I1 row 5 (0.1 %) 2Harmonic I2 row 5 (0.1 %) 2Harmonic I3 row 5 (0.1 %) 2Harmonic In row 5 (0.1 %) 2Harmonic I1 row 7 (0.1 %) 2Harmonic I2 row 7 (0.1 %) 2Harmonic I3 row 7 (0.1 %) 2Harmonic In row 7 (0.1 %) 2Harmonic I1 row 9 (0.1 %) 2Harmonic I2 row 9 (0.1 %) 2Harmonic I3 row 9 (0.1 %) 2Harmonic In row 9 (0.1 %) 2Harmonic I1 row 11 (0.1 %) 2Harmonic I2 row 11 (0.1 %) 2Harmonic I3 row 11 (0.1 %) 2Harmonic In row 11 (0.1 %) 2Harmonic I1 row 13 (0.1 %) 2Harmonic I2 row 13 (0.1 %) 2Harmonic I3 row 13 (0.1 %) 2Harmonic In row 13 (0.1 %) 2Harmonic I1 row 15 (0.1 %) 2Harmonic I2 row 15 (0.1 %) 2Harmonic I3 row 15 (0.1 %) 2Harmonic In row 15 (0.1 %) 2

Input frame

NB:The individual harmonics are available if the harmonicmodule is connected.

Length: 64 bytes

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DIRIS A40/A41 - RS485 - PROFIBUS® DPUSE OF THE PROFIBUS®-DP MODULES

MODULE 6: PHASE TO PHASE VOLTAGE HARMONICS

This module contains the thd 3U and the individual har-monics up to number 15.The output frame is identical to module 1.

Name Size (bytes)

Thd U12 (0.1 %) 2Thd U23 (0.1 %) 2Thd U31 (0.1 %) 2Harmonic U12 row 3 (0.1 %) 2Harmonic U23 row 3 (0.1 %) 2Harmonic U31 row 3 (0.1 %) 2Harmonic U12 row 5 (0.1 %) 2Harmonic U23 row 5 (0.1 %) 2Harmonic U31 row 5 (0.1 %) 2Harmonic U12 row 7 (0.1 %) 2Harmonic U23 row 7 (0.1 %) 2Harmonic U31 row 7 (0.1 %) 2Harmonic U12 row 9 (0.1 %) 2Harmonic U23 row 9 (0.1 %) 2Harmonic U31 row 9 (0.1 %) 2Harmonic U12 row 11 (0.1 %) 2Harmonic U23 row 11 (0.1 %) 2Harmonic U31 row 11 (0.1 %) 2Harmonic U12 row 13 (0.1 %) 2Harmonic U23 row 13 (0.1 %) 2Harmonic U31 row 13 (0.1 %) 2Harmonic U12 row 15 (0.1 %) 2Harmonic U23 row 15 (0.1 %) 2Harmonic U31 row 15 (0.1 %) 2

Input frame

NB:The individual harmonics are available if the harmonicmodule is connected.

Length: 48 bytes

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MODULE 7: PHASE TO NEUTRAL VOLTAGE HARMONICS

This module contains the thd 3V and the individual har-monics up to number 15.The output frame is identical to module 1.

Name Size (bytes)

Thd V1 (0.1 %) 2Thd V2 (0.1 %) 2Thd V3 (0.1 %) 2Harmonic V1 row 3 (0.1 %) 2Harmonic V2 row 3 (0.1 %) 2Harmonic V3 row 3 (0.1 %) 2Harmonic V1 row 5 (0.1 %) 2Harmonic V2 row 5 (0.1 %) 2Harmonic V3 row 5 (0.1 %) 2Harmonic V1 row 7 (0.1 %) 2Harmonic V2 row 7 (0.1 %) 2Harmonic V3 row 7 (0.1 %) 2Harmonic V1 row 9 (0.1 %) 2Harmonic V2 row 9 (0.1 %) 2Harmonic V3 row 9 (0.1 %) 2Harmonic V1 row 11 (0.1 %) 2Harmonic V2 row 11 (0.1 %) 2Harmonic V3 row 11 (0.1 %) 2Harmonic V1 row 13 (0.1 %) 2Harmonic V2 row 13 (0.1 %) 2Harmonic V3 row 13 (0.1 %) 2Harmonic V1 row 15 (0.1 %) 2Harmonic V2 row 15 (0.1 %) 2Harmonic V3 row 15 (0.1 %) 2

Input frame

NB:The individual harmonics are available if the harmonicmodule is connected.

Length: 48 bytes

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MODULE 8: MIN / MAX INSTANTS

This module contains the storage of the minimum andmaximum values (if the 2 input / 2 output module isinstalled). The output frame is identical to module 1.

Name Size (bytes)

Min. current (mA) 2Min. neutral current (mA) 2Min. phase to phase voltage (V/10) 2Min. frequency (Hz/100) 2Min. power factor (0.001) 2Min. active power (W) 2Min. reactive power (var) 2Thd I min (0.1 %) 2Thd In min (0.1 %) 2Thd U min (0.1 %) 2Max. current (mA) 2Max. neutral current (mA) 2Max. phase to phase voltage (V/10) 2Max. frequency (Hz/100) 2Max. power factor (0.001) 2Max. active power (W) 2Max. reactive power (var) 2Thd I max (0.1 %) 2Thd In max (0.1 %) 2Thd U max (0.1 %) 2

Input frame

Length: 48 bytes

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MODULE 9: SPECIAL FRAME

This module allows the creation of a personalised module.

Name Size (bytes)

Change of relay status if bit on 1, then taken into account, otherwise bit on 0 1bit 0: Relay 1bit 1: Relay 2bit 2: Relay 3 (second option relay 1)bit 3: Relay 4 (second option relay 1)bit 4: change in relay configurationbit 5: resetting of one measurementbit 6: not usedbit 7: 0 -> configuration frameRelay 1 on break 10: open1: closedRelay 2 on break 10: open

1: closedRelay 3 on break 10: open1: closedRelay 4 on break 10: open1: closedAllocation OUT 1 10: Command1: I2: U3: P+4: Q+5: S6: F7: PFL8: Thd 3I9: Thd 3U10: In11: time12: V13: Thd In14: Thd 3V15: P-16: Q-17: PFCLower threshold OUT 1 2Lower threshold unit OUT 1 10: /1: k2: MUpper threshold OUT 1 2

Input frameIf bit 7 is on 0, then the output frame is a normal frame

Example:Modification of relay 1 :• set bit 4 (relay configuration

change),• set bit 0 (relais 1 à 1),• modify the status byte on relay 1

break (next byte).

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Name Size (bytes)

Upper threshold unit OUT 1 10: /1: k2: MHysteresis 0 to 99 OUT 1 (%) 1Time delay OUT 1 (s) 2Allocation OUT 2: – 10: Cde1: I2: U3: P+4: Q+5: S6: F7: PFL8: Thd 3I9: Thd 3U10: In11: time12: V13: Thd In14: Thd 3V15: P-16: Q-17: PFCLower threshold OUT 2 2Lower threshold unit OUT 2 10: /1: k2: MUpper threshold OUT 2 2Upper threshold unit OUT 2 10: /1: k2: MHysteresis 0 to 99 OUT 2 (%) 1Time delay OUT 2 (s) 2Zero reset 2bit 0: Max 3Ibit 1: Max P+bit 2: Max P-bit 3: Max Q+bit 4: Max Q-bit 5: Max Sbit 6: hour meterbit 7: kWh+bit 8: kvarh+bit 9: kVAbit 10: kWh-bit 11: kvarh-bit 12: all the parametersbit 13: Input 1

MODULE 9: SPECIAL FRAMEInput frame

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Name Size (bytes)

bit 14: Input2bit 15: not usedZero reset, supplementary options 2bit 0: Input 1bit 1: Input 2bit 2: Input 3bit 3: Input 4bit 4: Input 5bit 5: Input 6bit 6: Min Max Ibit 7: Min Max Inbit 8: Min Max Ubit 9: Min Max Frequencybit 10: Min Max PFbit 11: Min Max Pbit 12: Min Max Qbit 13: Min Max Thd Ibit 14: Min Max Thd Inbit 15: Min Max Thd UNot used 4

MODULE 9: SPECIAL FRAMEInput frame

Name Size (bytes)

Frame number 1bit 0-6: frame number bit 7: 1 -> address frameAddress of value 1 2Address of value 2 2Address of value 3 2Address of value 4 2Address of value 5 2Address of value 6 2Address of value 7 2Address of value 8 2Address of value 9 2Address of value 10 2Address of value 11 2Address of value 12 2Address of value 13 2Address of value 14 2Address of value 15 2Address of value 16 2

Length: 33 bytes

NB:The frame number is an identification number. It isused to check if the answer coming from the slavedevice corresponds to the PLC’s request.The list of values is available p. 31 to 35.

If the bit is on 1, then the output frame is as follows

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Name Decimal Hexa. address address

Phase 1 current (mA) 0 0000Phase 2 current (mA) 1 0001Phase 3 current (mA) 2 0002Neutral current (mA) 3 0003Phase to phase voltage U12 (V/10) 4 0004Phase to phase voltage U23 (V/10) 5 0005Phase to phase voltage U31 (V/10) 6 0006Phase to neutral voltage phase 1 (V/10) 7 0007Phase to neutral voltage phase 2 (V/10) 8 0008Phase to neutral voltage phase 3 (V/10) 9 0009Frequency (Hz/100) 10 000A_ Active power (W) 11 000B_ Reactive power (var) 12 000C_ Apparent power (VA) 13 000D_ Power factor L / C (0.001) 14 000EMax. value I1 (mA) 15 000FMax. value I2 (mA) 16 0010Max. value I3 (mA) 17 0011Maximum value active power + (W) 18 0012Maximum value active power - (W) 19 0013Maximum value reactive power + (var) 20 0014Maximum value reactive power - (var) 21 0015Maximum value apparent power (VA) 22 0016Active energy + < 10000 (kWh) 23 0017Active energy + > 10000 (kWh) 24 0018Reactive energy + < 10000 (kvarh) 25 0019Reactive energy + > 10000 (kvarh) 26 001AApparent energy < 10000 (kVAh) 27 001BApparent energy > 10000 (kVAh) 28 001CActive power phase 1 (W) 29 001DActive power phase 2 (W) 30 001EActive power phase 3 (W) 31 001FReactive power phase 1 (var) 32 0020Reactive power phase 2 (var) 33 0021Reactive power phase 3 (var) 34 0022Apparent power phase 1 (VA) 35 0023Apparent power phase 2 (VA) 36 0024Apparent power phase 3 (VA) 37 0025Power factor phase 1 (0.001) 38 0026Power factor phase 2 (0.001) 39 0027Power factor phase 3 (0.001) 40 0028Average value I1 (mA) 41 0029Average value I2 (mA) 42 002AAverage value I3 (mA) 43 002BAverage value active power + (W) 44 002CAverage value active power - (W) 45 002DAverage value reactive power + (var) 46 002EAverage value reactive power - (var) 47 002FAverage value Apparent power (VA) 48 0030Active energy - < 10000 49 0031Active energy - >10000 50 0032

MODULE 9: SPECIAL FRAMEList of values

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Name Decimal Hexa. address address

Reactive energy - < 10000 51 0033Reactive energy - > 10000 52 0034Input pulse meter 1 < 10000 53 0035Input pulse meter 1 > 10000 54 0036Input pulse meter 2 < 10000 55 0037Input pulse meter 2 > 10000 56 0038Input pulse meter 3 < 10000 57 0039Input pulse meter 3 > 10000 58 003AInput pulse meter 4 < 10000 59 003BInput pulse meter 4 > 10000 60 003CStatus inputs 1 2 3 4 61 003DThd I1 62 003EThd I2 63 003FThd I3 64 0040Thd In 65 0041Harmonic I1 row 3 66 0042Harmonic I2 row 3 67 0043Harmonic I3 row 3 68 0044Harmonic IN row 3 69 0045Harmonic I1 row 5 70 0046Harmonic I2 row 5 71 0047Harmonic I3 row 5 72 0048Harmonic IN row 5 73 0049Harmonic I1 row 7 74 004AHarmonic I2 row 7 75 004BHarmonic I3 row 7 76 004CHarmonic IN row 7 77 004DHarmonic I1 row 9 78 004EHarmonic I2 row 9 79 004FHarmonic I3 row 9 80 0050Harmonic IN row 9 81 0051Harmonic I1 row 11 82 0052Harmonic I2 row 11 83 0053Harmonic I3 row 11 84 0054Harmonic IN row 11 85 0055Harmonic I1 row 13 86 0056Harmonic I2 row 13 87 0057Harmonic I3 row 13 88 0058Harmonic IN row 13 89 0059Harmonic I1 row 15 90 005AHarmonic I2 row 15 91 005BHarmonic I3 row 15 92 005CHarmonic IN row 15 93 005DThd U12 94 005EThd U23 95 005FThd U31 96 0060Harmonic U12 row 3 97 0061Harmonic U23 row 3 98 0062Harmonic U31 row 3 99 0063Harmonic U12 row 5 100 0064Harmonic U23 row 5 101 0065

MODULE 9: SPECIAL FRAMEList of values

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Name Decimal Hexa. address address

Harmonic U31 row 5 102 0066Harmonic U12 row 7 103 0067Harmonic U23 row 7 104 0068Harmonic U31 row 7 105 0069Harmonic U12 row 9 106 006AHarmonic U23 row 9 107 006BHarmonic U31 row 9 108 006CHarmonic U12 row 11 109 006DHarmonic U23 row 11 110 006EHarmonic U31 row 11 111 006FHarmonic U12 row 13 112 0070Harmonic U23 row 13 113 0071Harmonic U31 row 13 114 0072Harmonic U12 row 15 115 0073Harmonic U23 row 15 116 0074Harmonic U31 row 15 117 0075Thd V1 118 0076Thd V2 119 0077Thd V3 120 0078Harmonic V1 row 3 121 0079Harmonic V2 row 3 122 007AHarmonic V3 row 3 123 007BHarmonic V1 row 5 124 007CHarmonic V2 row 5 125 007DHarmonic V3 row 5 126 007EHarmonic V1 row 7 127 007FHarmonic V2 row 7 128 0080Harmonic V3 row 7 129 0081Harmonic V1 row 9 130 0082Harmonic V2 row 9 131 0083Harmonic V3 row 9 132 0084Harmonic V1 row 11 133 0085Harmonic V2 row 11 134 0086Harmonic V3 row 11 135 0087Harmonic V1 row 13 136 0088Harmonic V2 row 13 137 0089Harmonic V3 row 13 138 008AHarmonic V1 row 15 139 008BHarmonic V2 row 15 140 008CHarmonic V3 row 15 141 008DI System 142 008EU System 143 008FV System 144 0090Hour meter < 10000 145 0091Hour meter > 10000 146 0092

MODULE 9: SPECIAL FRAMEList of values

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Name Decimal Hexa. address address

Last voltage dipsResidual phase to phase involved:0: none,5: U126: U237: U31 4096 1000Msb value (V/100) 4097 1001lsb value (V/100) 4098 1002Residual phase to neutral involved 4099 10030: none22 : V123: V224: V3Msb value (V/100) 4100 1004lsb value (V/100) 4101 1005Msb length (ms) 4102 1006lsb length (ms) 4103 1007Day 4104 1008Month 4105 1009Year 4106 100AHour 4107 100BMinute 4108 100CSecond 4109 100DLast power interruptionDay 4110 100EMonth 4111 100FYear 4112 1010Hour 4113 1011Minute 4114 1012Second 4115 1013Last average powerLast P+ value (W) 4116 1014Last P- value (W) 4117 1015Last Q+ value (var) 4118 1016Last Q- value (var) 4119 1017Average frequencyLast frequency value (Hz/100) 4120 1018Last swellMaximum phase to phase involved 4121 10190: none5: U126: U237: U31lsb value (V/100) 4122 101AMsb value (V/100) 4123 101BMaximum phase to neutral involved 4124 101C0: none22 : V123: V224: V3

MODULE 9: SPECIAL FRAME

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Name Decimal Hexa. address address

lsb value (V/100) 4125 101DMsb value (V/100) 4126 101EMsb length (ms) 4127 101Flsb length (ms) 4128 1020Month 4129 1021Day 4130 1022Year 4131 1023Hour 4132 1024Minute 4133 1025Second 4134 1026Average voltageLast value U12 (V/10) 4135 1027Last value U23 (V/10) 4136 1028Last value U31 (V/10) 4137 1029Last value U1 (V/10) 4138 102ALast value U2 (V/10) 4139 102BLast value U3 (V/10) 4140 102CNew values availableAverage In (mA) 4141 102DAverage maximum In (mA) 4142 102E

MODULE 9: SPECIAL FRAME

Name Size (bytes)

Frame number 1Value 1 2Value 2 2Value 3 2Value 4 2Value 5 2Value 6 2Value 7 2Value 8 2Value 9 2Value 10 2Value 11 2Value 12 2Value 13 2Value 14 2Value 15 2Value 16 2

Input frame

Length: 33 bytes

Note:msb: most significant byte.lsb: least significant byte.

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Name Size (bytes)

Frame number 1Address of value 1 2Address of value 2 2Address of value 3 2Address of value 4 2

MODULE 10 : RESERVED FOR MANUFACTURER

MODULE 11 : SIZE LIMITED SPECIAL FRAMEThis module allows the creation of a personalisedmodule of 4 values.

Output frame

NB:The frame number is an identification number. It isused to check if the answer coming from the slavedevice corresponds to the PLC’s request.The list of values is available p. 31 to 35 (module 9).

Length: 9 bytes

Name Size (bytes)

Frame number 1Value 1 2Value 2 2Value 3 2Value 4 2

Input frame

Length: 9 bytes

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DIAGNOSTICS

Name Size (bytes)

Option present on slot 1 10: RS4851: Metering3: HarmonicsF0: In20: 2 In / 2 out30: 2 0 / 4 - 20 mA50: PROFIBUS®-DPOption present on slot 2 10: RS4851: Metering3: HarmonicsF0: In20: 2 In / 2 out30: 2 0 / 4 - 20 mA50: PROFIBUS®-DPOption present on slot 3 10: RS4851: Metering3: HarmonicsF0: In20: 2 In / 2 out30: 2 0 / 4 - 20 mA50: PROFIBUS®-DPOption present on slot 4 10: RS4851: Metering3: HarmonicsF0: In20: 2 In / 2 out30: 2 0 / 4 - 20 mA50: PROFIBUS®-DP

These contain an indication of the presence ofDIRIS A40/A41 option modules, the serial number, theDIRIS A40/A41 product code and the presence of analarm or an excess.

Slot

1

Slot

2

Slot

3

Slot

4

DIR

IS 4

75 A

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DIAGNOSTICS

Name Size (bytes)

Serial number 4Product code 1Alarms 4bit 0: Alarm Ibit 1: Alarm Inbit 2: Alarm Ubit 3: Alarm Vbit 4: Alarm P+bit 5: Alarm Q+bit 6: Alarm Sbit 7: Alarm Fbit 8: Alarm PFLbit 9: Alarm Timebit 10: Alarm Thd Ibit 11: Alarm Thd Inbit 12: Alarm Thd Ubit 13: Alarm Thd Vbit 14: Alarm P-bit 15: Alarm Q-bit 16: Alarm PFCbit 17-31: not usedExcesses 4bit 0: Excess Ibit 1: Excess Inbit 2: Excess Ubit 3: Excess Vbit 4: Excess P+bit 5: Excess Q+bit 6: Excess Sbit 7: Excess Fbit 8: Excess PFLbit 9: Excess Timebit 10: Excess Thd Ibit 11: Excess Thd Inbit 12: Excess Thd Ubit 13: Excess Thd Vbit 14: Excess P-bit 15: Excess Q-bit 16: Excess PFCbit 17-31: not used

Length: 17 bytes

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TECHNICAL CHARACTERISTICS

COMMUNICATIONRS485 2 or 3 wires half duplexProtocol PROFIBUS®-DPSpeed 9.6 to 1500 kbaudsGalvanic insulation 4 kVUL-CSA ApprovalStandard UL 61010-1

CSA-C22.2 No. 61010-1Certificate UL file No: E257746

CSA report No. for DIRIS A20: 1810571CSA report No. for DIRIS A40: 1810577

GLOSSARY OF ABBREVIATIONSCOM Communication ADR Slave addressDIAG Diagnostic function activated or notPARA Remote parametering activated or not

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TECHNICAL CHARACTERISTICS

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SOCOMEC - Ref.: 876 786 A GB - 08 / 07

This document is not a contract. SOCOMEC reserves the right to modify features without prior notice in view of continued improvement.

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