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GREEN POWER 2.0 AND DELPHYS BC Modbus - TCP / Jbus serial link Installation and operating manual GB

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Page 1: Modbus - TCP / Jbus serial link - Socomec€¦ · Modbus - TCP / Jbus serial link Installation and operating manual GB. 1. Foreword 4 2. SaFety requirement 4 2. 1. Using conditions

green power 2.0 and Delphys BCM o d b u s - T C P / J b u s s e r i a l l i n k

Installation and operating manual GB

Page 2: Modbus - TCP / Jbus serial link - Socomec€¦ · Modbus - TCP / Jbus serial link Installation and operating manual GB. 1. Foreword 4 2. SaFety requirement 4 2. 1. Using conditions

1. Foreword 4

2. SaFety requirement 4

2. 1. Using conditions 4

2. 2. dELPHYs grEEn PowEr oPErating rEfErEncE 4

3. environment 4

3. 1. rEcYcLing of ELEctricaL ProdUcts and EqUiPmEnt 4

4. introduction 5

4. 1. gEnEraL PUrPosE 5

4. 2. modbUs ProtocoL 5

4. 3. data dEcoding 5

5. inStallation inSide uPS 6

5. 1. ‘com-sLots’ LocaLisation 6

5. 2. modbUs sEriaL intErfacE PLUg in 6

5. 3. modbUs intErfacE in ParaLLEL sYstEm configUration 6

5. 4. connEctions and wiring 7

5. 5. modbUs sEriaL Link dEfaULt sEttings 8

5. 6. How to cHangE tHE sEriaL Link sEttings ? 8

6. conFiGuration oF the modBuS tcP ida connection 9

7. conventionS 9

7. 1. framE Errors managEmEnt 9

8. modBuS in SinGle uPS unit 10

8. 1. How to rEad data 10

8. 2. incoming data strUctUrE 10

8. 3. UPs idEntification: addrEss 0x1100, 32 words 11

8. 4. datE & HoUrs: addrEss 0x1360, 4 words 11

8. 5. UPs configUration: addrEss 0x1120, 16 words 11

8. 6. Unit statUs: addrEss 0x1143, 4 words 12

8. 7. Unit aLarms: addrEss 0x114a, 4 words 14

8. 8. Unit mEasUrEmEnts tabLEs: addrEss 0x1220, 80 words 16

8. 9. Unit EnabLEd controLs tabLE: addrEss 0x1150; 1 words 18

8. 10. controLs sEnd to UPs: addrEss 0x1190, writE 1 words 18

Index

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Page 3: Modbus - TCP / Jbus serial link - Socomec€¦ · Modbus - TCP / Jbus serial link Installation and operating manual GB. 1. Foreword 4 2. SaFety requirement 4 2. 1. Using conditions

9. modBuS in modular Parallel SyStem conFiGuration 19

9. 1. rEmindEr 19

9. 2. modbUs tabLE in modULar ParaLLEL sYstEm 20

9. 3. UPs idEntification: addrEss 0x0100, 32 words 20

9. 4. datE & HoUrs: addrEss 0x0360, 4 words 20

9. 5. UPs configUration: addrEss 0xm120, 16 words 20

9. 6. PrELiminarY rEmarks 20

9. 7. UPs statUs: addrEss 0x0140, 3 words 21

9. 8. UPs aLarms: addrEss 0x0148, 2 words 22

9. 9. UPs mEasUrEmEnts: addrEss 0x0200, 32 words 23

9. 10. UPs EnabLEd controLs tabLE: addrEss 0xm150, 2 words 24

9. 11. to sEnd controL to UPs: addrEss 0x15b0, writE 1 words 24

10. modBuS in Parallel SyStem with centraliSed ByPaSS 25

10. 1. rEmindEr 25

10. 2. modbUs tabLE in ParaLLEL sYstEm witH cEntraLisEd bYPass 26

10. 3. UPs idEntification: addrEss 0x0100, 32 words 26

10. 4. datE & HoUrs: addrEss 0x0360, 4 words 26

10. 5. UPs configUration: addrEss 0xm120, 16 words 26

10. 6. PrELiminarY rEmarks 26

10. 7. UPs statUs: addrEss 0x0140, 3 words 27

10. 8. UPs aLarms: addrEss 0x0148, 2 words 28

10. 9. UPs mEasUrEmEnts: addrEss 0x0200, 32 words 29

10. 10. UPs EnabLEd controLs tabLE: addrEss 0xm150, 2 words 30

10. 11. to sEnd controL to UPs: addrEss 0x15b0, writE 1 words 30

11. ByPaSS taBle 31

11. 1. bYPass statUs: addrEss 0xf143, 4 words 31

11. 2. bYPass aLarms: addrEss 0xf14a, 4 words 33

11. 3. bYPass mEasUrEmEnts tabLEs: addrEss 0xf220, 80 words 35

12. module taBle 37

12. 1. modULE statUs: addrEss 0xm143, 4 words 37

12. 2. modULE aLarms: addrEss 0xm14a, 4 words 39

12. 3. modULE mEasUrEmEnts tabLEs: addrEss 0xm220, 80 words 41

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Page 4: Modbus - TCP / Jbus serial link - Socomec€¦ · Modbus - TCP / Jbus serial link Installation and operating manual GB. 1. Foreword 4 2. SaFety requirement 4 2. 1. Using conditions

we thank you for the trust you have in our uninterruptible Power Systems.

This equipment is fitted with up to date technology. Rectifier and inverter subsets are provided with power semicon-

ductors (IGBT) including a digital micro-controller.

Our equipment complies with IEC EN 62040-2 standard.

CAUTION : “This is a product for restricted sales distribution to informed partners. Installation restrictions or addi-

tional measures may be needed to prevent disturbances”.

SOCOMEC UPS reserves the right to modify their specifications at any time as far as this contributes

to technical progress.

2. Safety RequIRement

2. 1. Using conditions

Do read carefully these operation instructions before using the JBUS/MODBUS interface.

Whatever the repairs, they must be made only by authorised staffs, which have been suitably trained.

For an optimal operation, it is recommended to maintain the ambient temperature and humidity of the DELPHYS

Green Power environment below the values specified by the manufacturer.

2. 2. dELPHYs grEEn PowEr oPErating rEfErEncE

Respect the safety requirements.

Do read carefully the operation instructions of DELPHYS Green Power.

This equipment meets the requirements of the European directives applied to this product. As a consequence it is

labelled as follows:

3. envIRonment

3. 1. rEcYcLing of ELEctricaL ProdUcts and EqUiPmEnt

Provision is made in European countries to break up and recycle materials making up the system. The various com-

ponents must be disposed of in accordance with the legal provisions in force in the country where the system is

installed.

1. foRewoRd

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4. 1. gEnEraL PUrPosE

This document provides required information of the MODBUS protocol serial link or Ethernet network.

Before connecting a supervision equipment or BMS system (Building management system) to the UPS, it is neces-

sary to install and set up the serial interface or network configurations in the case of a network connection..

4. 2. modbUs ProtocoL

This document does not explain the MODBUS protocol management. Please refer on

www.modbus.org web site for more information.

the DELPHYS Green Power MODBUS uses the following functions :

– function 3 for reading Input Registers (16 bits),

– function 6 for writing single Registers (to control DELPHYS Green Power).

The data field is composed of 1 word, defined by a MSB (most significant byte) and a LSB (lowest significant byte),

and displayed in the following order on the serial link.

1 woRd data

b7 mSB b0 b7 LSB b0

b15 b0

4. 3. data dEcoding

Status and alarms Information

This information are coding in bit. This means that 1 word defines 16 information. If the related bit is set to 1, this

information is active or true.

Measurements and counters data

1 word defines a measurement or a counter. Some values are numeric decimal signed or unsigned (0 to 65535 or

from -32767 to 32767), or in hexadecimal (0x0000 to 0xFFFF).

4. IntRoductIon

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5. 1. ‘com-sLots’ LocaLisation

The « Com-Slots » integrates all communication interfaces and it is located on the right side.

Please, see on the manual of the concerned UPS to see the correct localisation of the «com slot 2»

5. 2. modbUs sEriaL intErfacE PLUg in

The serial interface should be plugged in the slot 2, and fixed with 2 crews.

5. 3. modbUs intErfacE in ParaLLEL sYstEm configUration

There is only one MODBUS serial link interface for a parallel system configuration. One serial interface

is used for the whole installation. The access to the data of the UPS module or unit is managed by the

table addressing .

In a parallel installation with centralized bypass, it is recommended to install the serial card in slot 2

of the bypass.

1

2

5. InStaLLatIon InSIde uPS

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5. 4. connEctions and wiring

NOTE : there is only one connection per interface (RS232 or RS422 or RS485)

5. 4.1. RS232 connection:

– Standard PC connection

– Sub-D 9 pins connector

– Pin 2 : Rx

– Pin 3 : Tx

– Pin 5 : Gnd

5. 4.2. Isolated RS485 connection

– 2 wires connection

– « dip-switch 1 » allows connecting the terminal resistor

– Isolation via “opto-coupler”

– 2 polarization resistors could be removed easily (if needed).

5. 4.3. Isolated RS422 connection

– 4 wires connection

– « dip-switch 1 and 2 » allows connecting the terminal

resistor

– Isolation via “opto-coupler”

– 4 polarization resistors could be removed easily (if needed).

RTX + RTX -

TX -

RX -

TX +

RX +

Before making any connection, please check the cabling. A wrong connection or cabling can damage

the serial link interface.

the shield should be earthing at one point.

the shield should be earthing at one point.

InstallatIon InsIde UPs

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5. 5. modbUs sEriaL Link dEfaULt sEttings

Baud rate: 9600 bauds

Parity: none

data: 8 bits

Stop: 1 bit

Slave: 1

The serial link settings can be set from the control panel.

5. 6. How to cHangE tHE sEriaL Link sEttings ?

Available baud rate: 1200 - 2400 - 4800 - 9600 - 19200 bauds

Parity: even - odd - none

Slave number: 1 to 32

Please, see on the manual of the concerned UPS to see the correct localisation of the «com slot»

InstallatIon InsIde UPs

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This protocol is available via Ethernet. RJ45 on the back of the mimic panel allows the connection to Ethernet net-

work. The IP settings and MODBUS TCP port selection is available on the mimic panel.

7. conventIonSThe table addresses are written in hexadecimal, beginning with ‘0x’.

Some PLC systems request a relative address starting from 400 (0x0190) or 40001 (0x9C41), on this address it’s

necessary to add the first address of the MODBUS table.

7. 1. framE Errors managEmEnt

In case of wrong data request, the DELPHYS Green Power answers with the following frame error :

error function code error code cause

80 + code function 1 Function error

80 + code function 2 Addresses error

80 + code function 3 Wrong data

80 + code function 6 busy

80 + code function 8 Write register error

6. confIguRatIon of the modBuS tcP Ida connectIon

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8. modBuS In SIngLe uPS unIt

taBLe Start addresses table length in words modBuS functIon

UPS Identification 0x1100 32 3 read

Date and hours 0x1360 4 3 read

UPS Configurations 0x1200 16 3 read

UNIT Status (64 bits) 0x1143 4 3 read

UNIT Alarm (80 bits) 0x114A 5 3 read

unit measurements 0x1220 96 3 read

controls permission 0x1150 4 3 read

uPS controls 0x1190 4 6 write

8. 1. How to rEad data

The identification, status and alarms tables should be read completely (this means the number of word to read is

equal to the table length).

The measurements table should be read word by word or per group, without exceed the length of the table. (from

0x1220 to 0x127F).

8. 2. incoming data strUctUrE

Example of 6 words

1 2 3 4 5 6 7 8 9 10 11 12

mSB 0 lSB 0 mSB 1 lSB 1 mSB 2 lSB 2 mSB 3 lSB 3 mSB 4 lSB 4 mSB 5 lSB 5

word 0 word 1 word 2 word 3 word 4 word 5

b15 b0 b15 b0 b15 b0 b15 b0 b15 b0 b15 b0

S015 S000 S031 S016 S047 S032 S063 S048 S079 S064 S095 S080

a015 a000 a031 a016 a047 a032 a063 a048

m000 m001 m002 m003 m004 m005

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8. 3. UPs idEntification: addrEss 0x1100, 32 words

code description number address type Remarks

i000 UPS identification 10 wordS 0x1100 1 word = 2 ASCII codes MSB = 1. Char, LSB = 2. Char

i010 UPS Description 6 wordS 0x110A 1 word = 2 ASCII codes MSB = 1. Char, LSB = 2. Char

i016 Location 6 wordS 0x1110 1 word = 2 ASCII codes MSB = 1. Char, LSB = 2. Char

i022 Serial number 10 wordS 0x1116 1 word = 2 ASCII codes MSB = 1. Char, LSB = 2. Char

8. 4. datE & HoUrs: addrEss 0x1360, 4 words

code description number address type Remarks

d00 Minutes / seconds 1 wordS 0x1360 Byte value MSB = minutes, LSB = seconds

d01 Hours / day 1 wordS 0x1361 Byte value MSB = day, LSB = hours

d02Month / day of

week1 wordS 0x1362 Byte value

MSB = month,

LSB = day of the week

1=Monday...7=Sunday

d03 year 1 wordS 0x1363 00 = 2000

8. 5. UPs configUration: addrEss 0x1120, 16 words

code measurements unit address Remarks

t000 Kind of equipment 0x11201= single unit, 3= parallel + centralised bypass 6 = modular parallel system

t001 uPS output power kva 0x1121

t002 unit output power kva 0x1122

t003 unit number 0x1123 1 - 8

t004 number of unit 0x1124 1 - 8

t005 UPS redundant 0x1125 0 - 1

t006 with battery 0x1126 0 - 1

t007 With flywheel 0x1127 0 - 1

t008 0x1128

t009 With genset 0x1129 0 - 1

t010 0x112A

t011 0x112B

t012 0x112C

t013 With rectifier input supply 0x112D 0 - 1

t014 Single 0x112E 0 = Tri, 1 = Single

t015 Measurements management 0x112F 0 = x 1, 1 = x 10

sIngle UnIt UPs modbUs tables

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8. 6. Unit statUs: addrEss 0x1143, 4 words

code description Bit address Remarks

S048 Load on inverter 0 0x1143

S049 Load on auto. Bypass 1

S050 Load on maintenance Bypass 2

S051 Load not supplied 3

S052 unit is available 4

S053 Unit isolated from inst. 5

S054 Output switch Q2/3 closed 6

S055 Rectifier ON 7

S056 Battery charging 8

S057 Battery charged 9

S058 10

S059 inverter on 11

S060 Inverter switch/contactor closed 12

S061 Bypass switch activated 13

S062 14

S063 Servicing alert 15

S064 Rectifier input supply fault 0 0x1144

S065 Bypass input supply out of tolerance 1

S066 Bypass input supply failure V/F 2 2

S067 Bypass input supply is synchro ref 3

S068 Ext. synchro ref (ACS on) 4

S069 Synchro forced on ACS 5

S070 “UPS general power off” input active 6

S071 Generator set active 7

S072 Unit in normal mode 8

S073 Unit in eco-mode 9

S074 10

S075 Unit in stand-by mode 11

S076 12

S077 13

S078 14

S079 Unit in servicing mode 15

sIngle UnIt UPs modbUs tables

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code description Bit address Remarks

S080 Unit Start procedure progress 0 0x1145

S081 Unit maintenance bypass procedure progress 1

S082 2

S083 Battery test interrupted 3

S084 Battery test in progress 4

S085 Battery test in stand-by 5

S086 6

S087 7

S088 8

S089 9

S090 Q1 closed 10

S091 Q4 closed 11

S092 Local maintenance bypass Q5 clos. 12

S093 Remote maintenance bypass closed 13 only on parallel

S094 Q21 switch closed 14 only on parallel

S095 Q22 switch closed 15 only on parallel

S096 Auxiliary input 1 active 0 0x1146

S097 Auxiliary input 2 active 1

S098 Auxiliary input 3 active 2

S099 Auxiliary input 4 active 3

S100 Auxiliary input 5 active 4

S101 Auxiliary input 6 active 5

S102 Auxiliary input 7 active 6

S103 Auxiliary input 8 active 7

S104 Auxiliary input 9 active 8

S105 Auxiliary input 10 active 9

S106 Auxiliary input 11 active 10

S107 Auxiliary input 12 active 11

S108 12

S109 13

S110 14

S111 Acknowledgement alarm request 15

sIngle UnIt UPs modbUs tables

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8. 7. Unit aLarms: addrEss 0x114a, 4 words

code description Bit address Remarks

a032 unit imminent stop 0 0x114A

a033 Unit overload 1

a034 Transfer blocked 2

a035 transfer impossible 3

a036 Insufficient Resources 4 only on parallel

a037 5

a038 6

a039 Rectifier critical 7

a040 Inverter critical 8

a041 Bypass critical 9

a042 Common critical 10

a043 Fan alarm 11

a044 Back feed protection open 12

a045 ACS synchro source fault 13

a046 14

a047 15

a048 Operating on battery 0 0x114B

a049 Battery alarm 1

a050 Battery room 2

a051 Battery discharged 3

a052 End of autonomy time 4

a053 Battery test failure 5

a054 Earth leakage fault 6

a055 Battery circuit open 7

a056 on battery with mains oK 8

a057 DC voltage not OK 9

a058 Rectifier preventive 10

a059 inverter preventive 11

a060 Bypass preventive 12

a061 common preventive 13

a062 Mimic panel 14

a063 Ambient T° max 15

a064 BHC general alarm 0 0x114C

a065 1

a066 2

a067 3

a068 4

a069 5

a070 6

sIngle UnIt UPs modbUs tables

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code description Bit address Remarks

a071 7

a072 8

a073 9

a074 10

a075 11

a076 12

a077 13

a078 14

a079 15

a080 Preventive maintenance 0 0x114D

a081 1

a082 Maintenance bypass alarm 2

a083 rotation phase fault 3

a084 Rectifier or Bypass Input supply not OK 4

a085 5

a086 6

a087 7

a088 8

a089 9

a090 10

a091 11

a092 12

a093 13

a094 Output since xx minutes on auto bypass 14

a095 unit General alarm 15

a096 Fly Wheel disconnected 0 0x114E

if seta097 Fly Wheel Critical 1

a098 Fly wheel preventive 2

a099 3

a100 4

a101 Aux. input alarm 5 if set

a102 6

a103 7

a104 8

a105 9

a106 10

a107 11

a108 12

a109 kW - kVA configuration Error 13

a110 Eco-mode configuration Error 14

a111 Option board alarm 15

sIngle UnIt UPs modbUs tables

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8. 8. Unit mEasUrEmEnts tabLEs: addrEss 0x1220, 80 words

code description unit addressformat

t015=0

format

t015=1

m032 Output voltage U12 v 0x1220 ### ###m033 Output voltage U23 v 1 ### ###m034 Output voltage U31 v 2 ### ###m035 Output voltage L1 v 3 ### ###m036 Output voltage L2 v 4 ### ###m037 Output voltage L3 v 5 ### ###m038 Output current L1 a 6 # ### # ###.#m039 Output current L2 a 7 # ### # ###.#m040 Output current L3 a 8 # ### # ###.#m041 Output frequency x10 hz 9 ##.# ##.#m042 Output Power factor L1 a +/- #.## +/- #.##m043 Output Power factor L2 B +/- #.## +/- #.##m044 Output Power factor L3 c +/- #.## +/- #.##m045 Output Active Power L1 kw d # ### # ###.#m046 Output Active Power L2 kw e # ### # ###.#m047 Output Active Power L3 kw F # ### # ###.#m048 output apparent Power l1 kva 0x1230 # ### # ###.#m049 output apparent Power l2 kva 1 # ### # ###.#m050 output apparent Power l3 kva 2 # ### # ###.#m051 Output Crest Factor 3 #.# #.#m052 Output load rate L1 % 4 ### ###m053 Output load rate L2 % 5 ### ###m054 Output load rate L3 % 6 ### ###m055 Unit load rate % 7 ### ###m056 unit Power S output kva 8 # ### # ###.#m057 unit Power P output kw 9 # ### # ###.#m058 Rectifier input supply volt. U12 v a ### ###m059 Rectifier input supply volt. U23 v B ### ###m060 Rectifier input supply volt. U31 v c ### ###m061 Rectifier V1 v d ### ###m062 Rectifier V2 v e ### ###m063 Rectifier V3 v F ### ###m064 Rectifier input supply frequency x10 hz 0x1240 ##.# ##.#m065 Rectifier input supply current L1 a 1 ###.# ###.#m066 Rectifier input supply current L2 a 2 ###.# ###.#m067 Rectifier input supply current L3 a 3 ###.# ###.#m068 Inverter output voltage U12 v 4 ### ###m069 Inverter output voltage U23 v 5 ### ###m070 Inverter output voltage U31 v 6 ### ###

sIngle UnIt UPs modbUs tables

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code description unit addressformatt015=0

formatt015=1

m071 Inverter frequency x10 hz 7 ##.# ##.#m072 Bypass input supply voltage U12 v 8 ### ###m073 Bypass input supply voltage U23 v 9 ### ###m074 Bypass input supply voltage U31 v a ### ###m075 Bypass input supply voltage V1 v B ### ###m076 Bypass input supply voltage V2 v c ### ###m077 Bypass input supply voltage V3 v d ### ###m078 Bypass input supply frequency x10 hz e ###.# ###.#m079 ambient t° °c F ##.# ##.#m080 Vdc + v 0x1250 ### ###m081m082 Battery voltage string + v 2 ### ###.#m083m084 Battery current + a 4 # ### # ###.#m085m086 6m087 7m088 8m089 9m090 am091 Battery t° °c B ##.# ##.#m092 Average battery T° °c c ##.# ##.#m093 Battery capacity ah d # ### # ###.#m094 Battery capacity % e ### ###m095 Remaining backup time mn F ### ###m096 0x1260m097 1m098 2m099 3m100 4m101 5m102 6m103 7m104 8m105 9m106 am107 Bm108 cm109 dm110 em111 F

sIngle UnIt UPs modbUs tables

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8. 9. Unit EnabLEd controLs tabLE: addrEss 0x1150; 1 words

code description Bit address Remarksv007 Eco-mode 7 0x1150v008 Normal-mode 8v032 Unit Start procedure 0 0x1152v033 Reserved 1v034 make unit available 2v035 Switch load to inverter 3v036 Switch load to mains 4v037 Switch off unit output 5v038 6v039 7v040 Rectifier on 8v041 Rectifier off 9v042 inverter on 10v043 inverter off 11v044 12v045 Battery test 13

8. 10. controLs sEnd to UPs: addrEss 0x1190, writE 1 words

For a remote UPS control, it is necessary to set the serial interface in “remote” mode using ADICOM interface.The control table below shows if the selected control is allowed or not. If the control sent to the UPS is not allowed, the function will be ignored. Controls available by MODBUS connection:

code description Bit to write address Remarksc007 Eco-mode 7 0x1190c008 Normal-mode 8c032 Unit Start procedure 0 0x1192c033 Reserved 1c034 make unit available 2c035 Switch load to inverter 3c036 Switch load to mains 4c037 Switch off unit output 5 load oFF immediate!!c038 6c039 7c040 Rectifier on 8c041 Rectifier off 9c042 inverter on 10c043 inverter off 11c044 12c045 Battery test 13c046 14c047c048 reset alarm 0 0x1193

sIngle UnIt UPs modbUs tables

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9. modBuS In moduLaR PaRaLLeL SyStem confIguRatIon

9. 1. rEmindEr

In UPS parallel system configuration, there is only one MODBUS interface. The addresses mapping gives the pos-

sibility to read data from each unit and system. There is no link between the MODBUS salve number and the unit

number.

The interface is plugged in the ‘com-slots’ in the UPS unit 1 “com slots” in case of modular system (see bellow).

MODBUS link setting

The setting of the link is made from the mimic panel unit where the board is plugged.

How to read data:

In the MODBUS table, one part is dedicated to UPS part; it means the data from the whole system.

This part is the same for each unit. Same data are present in the UPS fields addresses.

unit 1 unit 2 unt 3

uPS data = uPS data = uPS data

unit 1 data unit 2 data unit 3 data

1 2 3

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9. 2. modbUs tabLE in modULar ParaLLEL sYstEm

table Start addresses table Length In words modbus function

UPS Identification 0x0100 32 3 read

Date and hours 0x0360 4 3 read

UPS Configurations 0x0200 16 3 read

UPS Status (48 bits) 0x0140 3 3 read

UNIT Status (64 bits) 0xm143 4 3 read

UPS Alarms (32 bits) 0x0148 2 3 read

UNIT Alarm (80 bits) 0xm14A 5 3 read

uPS measurements 0x0200 32 3 read

unit measurements 0xm220 80 3 read

controls permission 0xm150 4 3 read

uPS controls 0xm190 4 6 write

m = number of unit

Example: 0x3100 = ID of unit 3 0x3140 = UPS States 0x3143 = unit 3 states

9. 3. UPs idEntification: addrEss 0x0100, 32 words

See unit part

9. 4. datE & HoUrs: addrEss 0x0360, 4 words

See unit part

9. 5. UPs configUration: addrEss 0xm120, 16 words

See unit part

9. 6. PrELiminarY rEmarks

The UNIT data are the same as described for single unit.

Following tables describe only the UPS part (common for all units)

modbUs tables In modUlar Parallel system confIgUratIon

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9. 7. UPs statUs: addrEss 0x0140, 3 words

code description Bit address Remarks

S000 Load supplied by inverter 0 0x0140

S001 Load on automatic bypass 1

S002 Load on maintenance. Bypass 2

S003 Load not supplied 3

S004 Eco-mode 4

S005 Energy Saver 5

S006 UPS in normal mode 6

S007 UPS Starting procedure in progress 7

S008 UPS on maintenance bypass proc. in progress 8

S009 9

S010 10

S011 11

S012 12

S013 13

S014 14

S015 Remote control enabled 15

S016 Unit 1 operating 0 0x0141

S017 Unit 2 operating 1

S018 Unit 3 operating 2

S019 Unit 4 operating 3

S020 Unit 5 operating 4

S021 Unit 6 operating 5

S022 Unit 7 operating 6

S023 Unit 8 operating 7

S024 8

S025 9

S026 10

S027 11

S028 12

S029 13

S030 14

S031 15

S032 unit 1 available 0 0x0142

S033 unit 2 available 1

S034 unit 3 available 2

S035 unit 4 available 3

S036 unit 5 available 4

S037 unit 6 available 5

S038 unit 7 available 6

S039 unit 8 available 7

modbUs tables In modUlar Parallel system confIgUratIon

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9. 8. UPs aLarms: addrEss 0x0148, 2 words

code description Bit address Remarks

a000 uPS imminent stop 0 0x0148

a001 UPS overload 1

a002 UPS transfer blocked 2

a003 uPS transfer impossible 3

a004 UPS insufficient Resource 4

a005 UPS Redundancy loss 5

a006 Parallel fault 6

a007 7

a008 8

a009 9

a010 10

a011 11

a012 12

a013 13

a014 14

a015 15

a016 Unit 1 general 0 0x0149

a017 Unit 2 general 1

a018 Unit 3 general 2

a019 Unit 4 general 3

a020 Unit 5 general 4

a021 Unit 6 general 5

a022 Unit 7 general 6

a023 Unit 8 general 7

a024 8

a025 9

a026 10

a027 11

a028 12

a029 13

a030 14

a031 15

modbUs tables In modUlar Parallel system confIgUratIon

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9. 9. UPs mEasUrEmEnts: addrEss 0x0200, 32 words

code description unit addressformatt015=0

formatt015=1

m000 Output voltage U12 v 0x0200 ### ###

m001 Output voltage U23 v 1 ### ###

m002 Output voltage U31 v 2 ### ###

m003 Output voltage L1 v 3 ### ###

m004 Output voltage L2 v 4 ### ###

m005 Output voltage L3 v 5 ### ###

m006 Output current L1 a 6 # ### # ###.#

m007 Output current L2 a 7 # ### # ###.#

m008 Output current L3 a 8 # ### # ###.#

m009 Output frequency x10 hz 9 ##.# ##.#

m010 Output Power factor L1 a +/- #.## +/- #.##

m011 Output Power factor L2 B +/- #.## +/- #.##

m012 Output Power factor L3 c +/- #.## +/- #.##

m013 Output Active Power L1 kw d # ### # ###.#

m014 Output Active Power L2 kw e # ### # ###.#

m015 Output Active Power L3 kw F # ### # ###.#

m016 output apparent P. l1 kva 0x210 # ### # ###.#

m017 output apparent P. l2 kva 1 # ### # ###.#

m018 output apparent P. l3 kva 2 # ### # ###.#

m019 Output Crest Factor 3 #.# #.#

m020 Output load rate L1 % 4 ### ###

m021 Output load rate L2 % 5 ### ###

m022 Output load rate L3 % 6 ### ###

m023 UPS load rate % 7 ### ###

m024 uPS output power kva 8 # ### # ###.#

m025 9

m026 a

m027 B

m028 c

m029 d

m030 e

m031 F

modbUs tables In modUlar Parallel system confIgUratIon

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9. 10. UPs EnabLEd controLs tabLE: addrEss 0xm150, 2 words

code description Bit address Remarks

UPS Start procedure 0 0xm150

Reserved 1

Transfer load to inverter 2

Transfer load to mains 3

UPS load off 4

Energy Saver ON 5

Energy Saver OFF 6

Eco-mode 7

Normal mode 8

9

10

11

12

13

14

15

Remark: A bit set to 0 means that the control is disabled by the UPS. The control will be not executed.

9. 11. to sEnd controL to UPs: addrEss 0x15b0, writE 1 words

For a remote UPS control, it is necessary to set the serial interface in “remote” mode using the Human Machine

Interface. Local controls are then locked.

The control table below shows if the selected control is allowed or not. If the control sent to the UPS is not allowed,

the function will be ignored.

Controls available by MODBUS connection:

code control value to write address Remarks

UPS Start procedure 1 0xm190

Reserved 2

Transfer load to inverter 4

Transfer load to mains 8

UPS load off 16 immediate load oFF !!

Energy Saver ON 32

Energy Saver OFF 64

Eco-mode 128

Normal mode 256

512

modbUs tables In modUlar Parallel system confIgUratIon

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10. modBuS In PaRaLLeL SyStem wIth centRaLISed ByPaSS

10. 1. rEmindEr

In UPS parallel system configuration, there is only one MODBUS interface. The addresses mapping gives the pos-

sibility to read data from each unit and system. There is no link between the MODBUS salve number and the unit

number.

The interface is plugged in the ‘com-slots’ in the UPS unit 1 “com slots” in case of modular system (see bellow).

MODBUS link setting

The setting of the link is made from the mimic panel unit where the board is plugged.

How to read data:

In the MODBUS table, one part is dedicated to UPS part; it means the data from the whole system.

This part is the same for each unit. Same data are present in the UPS fields addresses.

ByPaSS unit 1 unt 2

uPS data = uPS data = uPS data

UNIT BYPASS (15) unit 1 data unit 2 data

By-pass1

2

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10. 2. modbUs tabLE in ParaLLEL sYstEm witH cEntraLisEd bYPass

table Start addresses table Length In words modbus function

UPS Identification 0x0100 32 3 read

Date and hours 0x0360 4 3 read

UPS Configurations 0x0200 16 3 read

UPS Status (48 bits) 0x0140 3 3 read

UNIT Status (64 bits) 0xm143 4 3 read

UPS Alarms (32 bits) 0x0148 2 3 read

UNIT Alarm (80 bits) 0xm14A 5 3 read

uPS measurements 0x0200 32 3 read

unit measurements 0xm220 80 3 read

controls permission 0xm150 4 3 read

uPS controls 0xm190 4 6 write

m = 1- - - - number of modulem = 8

m = 15 Bypass data

Example: 0x3100 = ID of unit 3 0x3140 = UPS States 0xF143 = Bypass 3 states

10. 3. UPs idEntification: addrEss 0x0100, 32 words

See unit part

10. 4. datE & HoUrs: addrEss 0x0360, 4 words

See unit part

10. 5. UPs configUration: addrEss 0xm120, 16 words

See unit part

10. 6. PrELiminarY rEmarks

Following tables describe only the UPS part (common for all units)

modbUs In Parallel system wIth centralIsed byPass

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10. 7. UPs statUs: addrEss 0x0140, 3 words

code description Bit address RemarksS000 Load supplied by inverter 0 0x0140

S001 Load on automatic bypass 1

S002 Load on maintenance. Bypass 2

S003 Load not supplied 3

S004 Eco-mode 4

S005 Energy Saver 5

S006 UPS in normal mode 6

S007 UPS Starting procedure in progress 7

S008 UPS on maintenance bypass proc. in progress 8

S009 9

S010 10

S011 11

S012 12

S013 13

S014 14

S015 Remote control enabled 15

S016 Module 1 operating 0 0x0141

S017 Module 2 operating 1

S018 Module 3 operating 2

S019 Module 4 operating 3

S020 Module 5 operating 4

S021 Module 6 operating 5

S022 Module 7 operating 6

S023 Module 8 operating 7

S024 8

S025 9

S026 10

S027 11

S028 12

S029 13

S030 Bypass working 14

S031 15

S032 Module 1 available 0 0x0142

S033 Module 2 available 1

S034 Module 3 available 2

S035 Module 4 available 3

S036 Module 5 available 4

S037 Module 6 available 5

S038 Module 7 available 6

S039 Module 8 available 7

S046 Bypass available 14

modbUs In Parallel system wIth centralIsed byPass

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10. 8. UPs aLarms: addrEss 0x0148, 2 words

code description Bit address Remarks

a000 uPS imminent stop 0 0x0148

a001 UPS overload 1

a002 UPS transfer blocked 2

a003 uPS transfer impossible 3

a004 UPS insufficient Resource 4

a005 UPS Redundancy loss 5

a006 Parallel fault 6

a007 7

a008 8

a009 9

a010 10

a011 11

a012 12

a013 13

a014 14

a015 15

a016 Module 1 general 0 0x0149

a017 Module 2 general 1

a018 Module 3 general 2

a019 Module 4 general 3

a020 Module 5 general 4

a021 Module 6 general 5

a022 Module 7 general 6

a023 Module 8 general 7

a024 8

a025 9

a026 10

a027 11

a028 12

a029 13

a030 Bypass alarm 14

a031 15

modbUs In Parallel system wIth centralIsed byPass

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10. 9. UPs mEasUrEmEnts: addrEss 0x0200, 32 words

code description unit addressformatt015=0

formatt015=1

m000 Output voltage U12 v 0x0200 ### ###

m001 Output voltage U23 v 1 ### ###

m002 Output voltage U31 v 2 ### ###

m003 Output voltage L1 v 3 ### ###

m004 Output voltage L2 v 4 ### ###

m005 Output voltage L3 v 5 ### ###

m006 Output current L1 a 6 # ### # ###.#

m007 Output current L2 a 7 # ### # ###.#

m008 Output current L3 a 8 # ### # ###.#

m009 Output frequency x10 hz 9 ##.# ##.#

m010 Output Power factor L1 a +/- #.## +/- #.##

m011 Output Power factor L2 B +/- #.## +/- #.##

m012 Output Power factor L3 c +/- #.## +/- #.##

m013 Output Active Power L1 kw d # ### # ###.#

m014 Output Active Power L2 kw e # ### # ###.#

m015 Output Active Power L3 kw F # ### # ###.#

m016 output apparent P. l1 kva 0x0210 # ### # ###.#

m017 output apparent P. l2 kva 1 # ### # ###.#

m018 output apparent P. l3 kva 2 # ### # ###.#

m019 Output Crest Factor 3 #.# #.#

m020 Output load rate L1 % 4 ### ###

m021 Output load rate L2 % 5 ### ###

m022 Output load rate L3 % 6 ### ###

m023 UPS load rate % 7 ### ###

m024 uPS output power kva 8 # ### # ###.#

m025 9

m026 a

m027 B

m028 c

m029 d

m030 e

m031 F

modbUs In Parallel system wIth centralIsed byPass

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10. 10. UPs EnabLEd controLs tabLE: addrEss 0xm150, 2 words

code description Bit address Remarks

UPS Start procedure 0 0xm150

Reserved 1

Transfer load to inverter 2

Transfer load to mains 3

UPS load off 4

Energy Saver ON 5

Energy Saver OFF 6

Eco-mode 7

Normal mode 8

9

10

11

12

13

14

15

Remark: A bit set to 0 means that the control is disabled by the UPS. The control will be not executed.

10. 11. to sEnd controL to UPs: addrEss 0x15b0, writE 1 words

For a remote UPS control, it is necessary to set the serial interface in “remote” mode using the Human Machine

Interface. Local controls are then locked.

The control table below shows if the selected control is allowed or not. If the control sent to the UPS is not allowed,

the function will be ignored.

Controls available by MODBUS connection:

code control value to write address Remarks

UPS Start procedure 1 0xm190

Reserved 2

Transfer load to inverter 4

Transfer load to mains 8

UPS load off 16 immediate load oFF !!

Energy Saver ON 32

Energy Saver OFF 64

Eco-mode 128

Normal mode 256

512

modbUs In Parallel system wIth centralIsed byPass

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11. 1. bYPass statUs: addrEss 0xf143, 4 words

code description Bit address Remarks

S048 Load on inverter 0 0xF143

S049 Load on auto. Bypass 1

S050 Load on maintenance Bypass 2

S051 Load not supplied 3

S052 4

S053 5

S054 Output switch 3 closed 6

S055 7

S056 8

S057 9

S058 10

S059 1

S060 12

S061 Bypass switch activated 13

S062 14

S063 Servicing alert 15

S064 0 0xF144

S065 1

S066 2

S067 3

S068 4

S069 5

S070 6

S071 7

S072 Unit in normal mode 8

S073 9

S074 10

S075 1

S076 12

S077 13

S078 14

S079 Bypass in servicing mode 15

byPass tables

11. ByPaSS taBLe

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code description Bit address Remarks

S080 Starting 0 0xF145

S081 Unit maintenance bypass procedure progress 1

S082 2

S083 3

S084 4

S085 5

S086 6

S087 7

S088 8

S089 9

S090 10

S091 Q4 closed 11

S092 Local maintenance bypass Q5 clos. 12

S093 Remote maintenance bypass closed 13

S094 14

S095 15

S096 Auxiliary input 1 active 0 0xF146

S097 Auxiliary input 2 active 1

S098 Auxiliary input 3 active 2

S099 Auxiliary input 4 active 3

S100 Auxiliary input 5 active 4

S101 Auxiliary input 6 active 5

S102 Auxiliary input 7 active 6

S103 Auxiliary input 8 active 7

S104 Auxiliary input 9 active 8

S105 Auxiliary input 10 active 9

S106 Auxiliary input 11 active 10

S107 Auxiliary input 12 active 11

S108 12

S109 13

S110 14

S111 Acknowledgement alarm request 15

byPass tables

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11. 2. bYPass aLarms: addrEss 0xf14a, 4 words

code description Bit address Remarks

a032 unit imminent stop 0 0xF14A

a033 Unit overload 1

a034 Transfer blocked 2

a035 transfer impossible 3

a036 Insufficient Resources 4 only on parallel

a037 5

a038 6

a039 7

a040 8

a041 Bypass critical 9

a042 Common critical 10

a043 Fan alarm 11

a044 Back feed protection open 12

a045 ACS synchro source fault 13

a046 14

a047 15

a048 0 0xF14B

a049 1

a050 2

a051 3

a052 4

a053 5

a054 6

a055 7

a056 8

a057 9

a058 10

a059 11

a060 Bypass preventive 12

a061 13

a062 14

a063 15

a064 0 0xF14C

a065 1

a066 2

a067 3

a068 4

a069 5

a070 6

byPass tables

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code description Bit address Remarks

a071 7

a072 8

a073 9

a074 10

a075 11

a076 12

a077 13

a078 14

a079 15

a080 Preventive maintenance 0 0xF14D

a081 1

a082 Maintenance bypass alarm 2

a083 3

a084 4

a085 5

a086 6

a087 7

a088 8

a089 9

a090 10

a091 11

a092 12

a093 13

a094 Output since xx minutes on auto bypass 14

a095 Bypass General alarm 15

a096 0 0xF14E

a097 1

a098 2

a099 3

a100 4

a101 Aux. input alarm 5 if set

a102 6

a103 7

a104 8

a105 9

a106 10

a107 11

a108 12

a109 13

a110 14

a111 Option board alarm 15

byPass tables

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11. 3. bYPass mEasUrEmEnts tabLEs: addrEss 0xf220, 80 words

code description unit addressformat

t015=0

format

t015=1

m032 Output voltage U12 v 0xF220 ### ###m033 Output voltage U23 v 1 ### ###m034 Output voltage U31 v 2 ### ###m035 Output voltage L1 v 3 ### ###m036 Output voltage L2 v 4 ### ###m037 Output voltage L3 v 5 ### ###m038 Output current L1 a 6 # ### # ###.#m039 Output current L2 a 7 # ### # ###.#m040 Output current L3 a 8 # ### # ###.#m041 Output frequency x10 hz 9 ##.# ##.#m042 Output Power factor L1 a +/- #.## +/- #.##m043 Output Power factor L2 B +/- #.## +/- #.##m044 Output Power factor L3 c +/- #.## +/- #.##m045 Output Active Power L1 kw d # ### # ###.#m046 Output Active Power L2 kw e # ### # ###.#m047 Output Active Power L3 kw F # ### # ###.#m048 output apparent Power l1 kva 0xF230 # ### # ###.#m049 output apparent Power l2 kva 1 # ### # ###.#m050 output apparent Power l3 kva 2 # ### # ###.#m051 Output Crest Factor 3 #.# #.#m052 Output load rate L1 % 4 ### ###m053 Output load rate L2 % 5 ### ###m054 Output load rate L3 % 6 ### ###m055 Unit load rate % 7 ### ###m056 unit Power S output kva 8 # ### # ###.#m057 unit Power P output kw 9 # ### # ###.#m058 am059 Bm060 cm061 dm062 em063 Fm064 0xF240m065 1m066 2m067 3m068 4m069 5m070 6

byPass tables

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code description unit addressformatt015=0

formatt015=1

m071 7m072 Bypass input supply voltage U12 v 8 ### ###m073 Bypass input supply voltage U23 v 9 ### ###m074 Bypass input supply voltage U31 v a ### ###m075 Bypass input supply voltage V1 v B ### ###m076 Bypass input supply voltage V2 v c ### ###m077 Bypass input supply voltage V3 v d ### ###m078 Bypass input supply frequency x10 hz e ###.# ###.#m079 ambient t° °c F ##.# ##.#m080 0xF250m081 1m082 2m083 3m084 4m085m086 6m087 7m088 8m089 9m090 am091 Bm092 cm093 dm094 em095 Fm096 0xF260m097 1m098 2m099 3m100 4m101 5m102 6m103 7m104 8m105 9m106 am107 Bm108 cm109 dm110 em111 F

byPass tables

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12. 1. modULE statUs: addrEss 0xm143, 4 words

code description Bit address Remarks

S048 Load on inverter 0 0xm143

1

2

S051 Load not supplied 3

S052 Module is available 4

S053 Module isolated from inst. 5

S054 Output switch 2 closed 6

S055 Rectifier ON 7

S056 Battery charging 8

S057 Battery charged 9

S058 10

S059 inverter on 11

S060 Inverter switch/contactor closed 12

S061 13

S062 14

S063 Servicing alert 15

S064 Rectifier input supply fault 0 0xm144

S065 Bypass input supply out of tolerance 1

S066 2

S067 Bypass input supply is synchro ref 3

S068 4

S069 5

S070 “UPS general power off” input active 6

S071 Generator set active 7

S072 Module in normal mode 8

S073 Module in eco-mode 9

S074 10

S075 Module in stand-by mode 11

S076 12

S077 13

S078 14

S079 Module in servicing mode 15

12. moduLe taBLe

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code description Bit address Remarks

S080 Module Start procedure progress 0 0xm145

S081 1

S082 2

S083 Battery test interrupted 3

S084 Battery test in progress 4

S085 Battery test in stand-by 5

S086 6

S087 7

S088 8

S089 9

S090 Q1 closed 10

S091 11

S092 12

S093 13

S094 Q21 switch closed 14

S095 Q22 switch closed 15

S096 Auxiliary input 1 active 0 0xm146

S097 Auxiliary input 2 active 1

S098 Auxiliary input 3 active 2

S099 Auxiliary input 4 active 3

S100 Auxiliary input 5 active 4

S101 Auxiliary input 6 active 5

S102 Auxiliary input 7 active 6

S103 Auxiliary input 8 active 7

S104 Auxiliary input 9 active 8

S105 Auxiliary input 10 active 9

S106 Auxiliary input 11 active 10

S107 Auxiliary input 12 active 11

S108 12

S109 13

S110 14

S111 Acknowledgement alarm request 15

modUle tables

38 Delphys green power - Ref.: IOMDGPJB0910-GB_07

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12. 2. modULE aLarms: addrEss 0xm14a, 4 words

code description Bit address Remarks

a032 unit imminent stop 0 0xm14A

a033 Module overload 1

a034 2

a035 3

a036 4

a037 5

a038 6

a039 Rectifier critical 7

a040 Inverter critical 8

a041 9

a042 Common critical 10

a043 Fan alarm 11

a044 Back feed protection open 12

a045 13

a046 14

a047 15

a048 Operating on battery 0 0xm14B

a049 Battery alarm 1

a050 Battery room 2

a051 Battery discharged 3

a052 End of autonomy time 4

a053 Battery test failure 5

a054 Earth leakage fault 6

a055 Battery circuit open 7

a056 on battery with mains oK 8

a057 DC voltage not OK 9

a058 Rectifier preventive 10

a059 inverter preventive 11

a060 12

a061 common preventive 13

a062 Mimic panel 14

a063 Ambient T° max 15

a064 BHC general alarm 0 0xm14C

a065 1

a066 2

a067 3

a068 4

a069 5

a070 6

modUle tables

39Delphys green power - Ref.: IOMDGPJB0910-GB_07

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Page 40: Modbus - TCP / Jbus serial link - Socomec€¦ · Modbus - TCP / Jbus serial link Installation and operating manual GB. 1. Foreword 4 2. SaFety requirement 4 2. 1. Using conditions

code description Bit address Remarks

a071 7

a072 8

a073 9

a074 10

a075 11

a076 12

a077 13

a078 14

a079 15

a080 Preventive maintenance 0 0xm14D

a081 1

a082 2

a083 rotation phase fault 3

a084 4

a085 5

a086 6

a087 7

a088 8

a089 9

a090 10

a091 11

a092 12

a093 13

a094 14

a095 unit General alarm 15

a096 Fly Wheel disconnected 0 0xm14E

if seta097 Fly Wheel Critical 1

a098 Fly wheel preventive 2

a099 3

a100 4

a101 Aux. input alarm 5 if set

a102 6

a103 7

a104 8

a105 9

a106 10

a107 11

a108 12

a109 kW - kVA configuration Error 13

a110 Eco-mode configuration Error 14

a111 Option board alarm 15

modUle tables

40 Delphys green power - Ref.: IOMDGPJB0910-GB_07

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12. 3. modULE mEasUrEmEnts tabLEs: addrEss 0xm220, 80 words

code description unit addressformat

t015=0

format

t015=1

m032 Output voltage U12 v 0xm220 ### ###m033 Output voltage U23 v 1 ### ###m034 Output voltage U31 v 2 ### ###m035 Output voltage L1 v 3 ### ###m036 Output voltage L2 v 4 ### ###m037 Output voltage L3 v 5 ### ###m038 Output current L1 a 6 # ### # ###.#m039 Output current L2 a 7 # ### # ###.#m040 Output current L3 a 8 # ### # ###.#m041 Output frequency x10 hz 9 ##.# ##.#m042 Output Power factor L1 a +/- #.## +/- #.##m043 Output Power factor L2 B +/- #.## +/- #.##m044 Output Power factor L3 c +/- #.## +/- #.##m045 Output Active Power L1 kw d # ### # ###.#m046 Output Active Power L2 kw e # ### # ###.#m047 Output Active Power L3 kw F # ### # ###.#m048 output apparent Power l1 kva 0xm230 # ### # ###.#m049 output apparent Power l2 kva 1 # ### # ###.#m050 output apparent Power l3 kva 2 # ### # ###.#m051 Output Crest Factor 3 #.# #.#m052 Output load rate L1 % 4 ### ###m053 Output load rate L2 % 5 ### ###m054 Output load rate L3 % 6 ### ###m055 Unit load rate % 7 ### ###m056 unit Power S output kva 8 # ### # ###.#m057 unit Power P output kw 9 # ### # ###.#m058 Rectifier input supply volt. U12 v a ### ###m059 Rectifier input supply volt. U23 v B ### ###m060 Rectifier input supply volt. U31 v c ### ###m061 Rectifier V1 v d ### ###m062 Rectifier V2 v e ### ###m063 Rectifier V3 v F ### ###m064 Rectifier input supply frequency x10 hz 0xm240 ##.# ##.#m065 Rectifier input supply current L1 a 1 ###.# ###.#m066 Rectifier input supply current L2 a 2 ###.# ###.#m067 Rectifier input supply current L3 a 3 ###.# ###.#m068 Inverter output voltage U12 v 4 ### ###m069 Inverter output voltage U23 v 5 ### ###m070 Inverter output voltage U31 v 6 ### ###

modUle tables

41Delphys green power - Ref.: IOMDGPJB0910-GB_07

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Page 42: Modbus - TCP / Jbus serial link - Socomec€¦ · Modbus - TCP / Jbus serial link Installation and operating manual GB. 1. Foreword 4 2. SaFety requirement 4 2. 1. Using conditions

code description unit addressformatt015=0

formatt015=1

m071 Frequency inverter x10 hz 7 ##.# ##.#m072 v 8 ### ###m073 v 9 ### ###m074 v a ### ###m075 v B ### ###m076 v c ### ###m077 v d ### ###m078 hz e ###.# ###.#m079 ambient t° °c F ##.# ##.#m080 Vdc + v 0xm250 ### ###m081m082 Battery voltage string + v 2 ### ###.#m083m084 Battery current + a 4 # ### # ###.#m085m086 6m087 7m088 8m089 9m090 am091 Battery t° °c B ##.# ##.#m092 Average battery T° °c c ##.# ##.#m093 Battery capacity ah d # ### # ###.#m094 Battery capacity % e ### ###m095 Remaining backup time mn F ### ###m096 0xm260m097 1m098 2m099 3m100 4m101 5m102 6m103 7m104 8m105 9m106 am107 Bm108 cm109 dm110 em111 F

modUle tables

42 Delphys green power - Ref.: IOMDGPJB0910-GB_07

Page 43: Modbus - TCP / Jbus serial link - Socomec€¦ · Modbus - TCP / Jbus serial link Installation and operating manual GB. 1. Foreword 4 2. SaFety requirement 4 2. 1. Using conditions

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