MULTI-LINE 2 APPLICATION NOTES. Converting PPM-2 to PPM-3 Parameter conversion Wiring Options I/O list Modbus. Document no.: A SW version:

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1 MULTI-LINE 2 APPLICATION NOTES Converting to Parameter conversion Wiring Options I/O list Modbus DEIF A/S Frisenborgvej 33 DK-7800 Skive Tel.: Fax: info@deif.com Document no.: A SW version:

2 1. General information 1.1. Warnings, legal information and safety Warnings and notes Legal information and disclaimer Safety issues Electrostatic discharge awareness Factory settings About the Application Notes General purpose Intended users Contents and overall structure About the application General description Converting the display Converting the additional display Description of options Installation and parameter setup Wiring installation Parameter settings - system setup Parameter setup regulator governor Parameter setup relay or analogue governor Parameter setup governor relay Synchronisation setup Protection setup External communication - using Modbus M-Logic in DEIF A/S Page 2 of 38

3 General information 1. General information 1.1 Warnings, legal information and safety Warnings and notes Throughout this document, a number of warnings and notes with helpful user information will be presented. To ensure that these are noticed, they will be highlighted as follows in order to separate them from the general text. Warnings Notes Warnings indicate a potentially dangerous situation, which could result in death, personal injury or damaged equipment, if certain guidelines are not followed. Notes provide general information, which will be helpful for the reader to bear in mind Legal information and disclaimer DEIF takes no responsibility for installation or operation of the generator set. If there is any doubt about how to install or operate the engine/generator controlled by the Multi-line 2 unit, the company responsible for the installation or the operation of the set must be contacted. The Multi-line 2 unit is not to be opened by unauthorised personnel. If opened anyway, the warranty will be lost. Disclaimer DEIF A/S reserves the right to change any of the contents of this document without prior notice. The English version of this document always contains the most recent and up-to-date information about the product. DEIF does not take responsibility for the accuracy of translations, and translations might not be updated at the same time as the English document. If there is a discrepancy, the English version prevails Safety issues Installing and operating the Multi-line 2 unit may imply work with dangerous currents and voltages. Therefore, the installation should only be carried out by authorised personnel who understand the risks involved in working with live electrical equipment. Be aware of the hazardous live currents and voltages. Do not touch any AC measurement s as this could lead to injury or death Electrostatic discharge awareness Sufficient care must be taken to protect the terminals against static discharges during the installation. Once the unit is installed and connected, these precautions are no longer necessary. DEIF A/S Page 3 of 38

4 General information Factory settings The Multi-line 2 unit is delivered from factory with certain factory settings. These are based on average values and are not necessarily the correct settings for matching the engine/generator set in question. Precautions must be taken to check the settings before running the engine/generator set. 1.2 About the Application Notes General purpose This document includes application notes for DEIF's Multi-line 2 unit. It mainly includes examples of different applications suitable for the unit. For functional descriptions, the procedure for parameter setup, parameter lists, and so on, see the Designer's Reference Handbook. The general purpose of the application notes is to offer the designer information about suitable applications for the Multi-line 2 unit. Make sure to read this document before starting to work with the Multi-line 2 unit and the genset to be controlled. Failure to do this could result in human injury or damage to the equipment Intended users The Application Notes are mainly intended for the person responsible for designing Multi-line 2 systems. In most cases, this would be a panel builder designer. Naturally, other users might also find useful information in this document Contents and overall structure This document is divided into chapters, and in order to make the structure simple and easy to use, each chapter will begin from the top of a new page. DEIF A/S Page 4 of 38

5 INFO ACK JUMP INFO ACK JUMP INFO ACK JUMP STOP START CB OFF CB OFF CB ON CB ON VIEW LOG 1st Standby Base load VIEW LOG VIEW LOG BACK BACK BACK 1st Prior. 1st PRIOR INFO JUMP START STOP INFO JUMP INFO JUMP INFO JUMP START STOP VIEW LOG AUTO SEMI AUTO VIEW LOG DG SG/SC VIEW LOG VIEW LOG AUTO SEMI AUTO BACK BACK BACK BACK 1st PRIOR TEST About the application General description This document mainly includes general information (in point form) on how to upgrade a standard to a system, including mounting instructions and wiring descriptions, parameter and general standard conversions. Contact DEIF support for more details. The general purpose of this document is to help the user with the first steps of upgrading a standard PPU power management system. DEIF A/S always recommends to create a full backup parameter file before the old unit is powered down Converting the display The table below shows an overview of standard displays and the options of converting the displays. 00 Note Engine control Alarm PPU - Power Management PMS control Power Alarm Protection and Power Management Ready Power Alarm inh. multi-line PPM Regulator on Self check ok multi-line PPM Regulator on Self check CAN bus Cool. down Run Ready Deload On Run Open Closed G Load Bus tie breaker Alarm PPU - Power Management PMS control Power Alarm Protection and Power Management Ready Power Alarm inh. multi-line PPM Self check ok multi-line PPM Self check CAN bus Ready Deload On Open Closed Shaft generator/shore generator Alarm PPU - Power Management PMS control Power Alarm Protection and Power Management Ready Power Alarm inh. multi-line PPM Self check ok multi-line PPM Self check CAN bus Ready Deload On Open Closed Load Emergency generator Alarm Protection and Power Management Ready Power multi-line PPM Regulator on Self check CAN bus Run Open Closed Open Closed MBB G Load DEIF A/S Page 5 of 38

6 2.1.3 Converting the additional display The PPU power management unit will always be equipped with an additional operator panel for plant mode selection and control functions. The additional operator panel has 16 predefined text messages and 8 predefined push-buttons. The text messages for the LEDs and for the push-buttons can differ between the application types. For, the additional display is an option X3. None of the 16 text messages and 8 push-buttons are predefined. The programming of the AOP-1 is made with the PC utility software, which can be downloaded from Please refer to the help function in the PC utility software for programming instructions. The option X3 can be used as an interface to the ML-2 units for indication of status and alarms together with buttons for alarm acknowledge and mode selection, for example. The table below shows an overview of standard AOP-2 and the options X converting the displays. Note SYSTEM 1 SEMI-AUTO SCB POS ON NEL TRIP AOP-2 AUTO FORCED SWBD SECURED ON BUSBAR ALARM AOP-1 HC REQUESTED PMS BLOCKED CB TRIPPED HC CONNECTED LD STOP BLOCKED DG SHUTDOWN SEMI-AUTO SECURED ON AUTO SECURED OFF LAMP TEST SYSTEM 2_ SHAFT SEMI-AUTO SCB POS ON NEL TRIP AOP-2 AUTO FORCED SWBD SECURED ON BUSBAR ALARM AOP-1 SHAFT HC REQUESTED PMS BLOCKED CB TRIPPED HC CONNECTED LD STOP BLOCKED DG SHUTDOWN SEMI-AUTO SHAFT SECURED ON AUTO SECURED OFF LAMP TEST SYSTEM 2_ SHORE SEMI-AUTO NEL TRIP AOP-2 AUTO FORCED SWBD SECURED ON BUSBAR ALARM AOP-1 SHORE HC REQUESTED PMS BLOCKED CB TRIPPED HC CONNECTED LD STOP BLOCKED DG SHUTDOWN SEMI-AUTO SHORE SECURED ON AUTO SECURED OFF LAMP TEST SYSTEM 3 SEMI-AUTO SCB POS ON NEL TRIP AOP-2 AUTO FORCED SWBD SECURED ON BUSBAR ALARM AOP-1 SHAFT(2A) / SHORE(2B) HC REQUESTED PMS BLOCKED CB TRIPPED HC CONNECTED LD STOP BLOCKED DG SHUTDOWN SEMI-AUTO SHAFT SECURED ON AUTO SHORE SECURED OFF LAMP TEST DEIF A/S Page 6 of 38

7 2.1.4 Description of options The unit housing is divided into board slot positions. This means that the unit consists of a number of printed circuit boards (PCBs) mounted in numbered slots - #1, 3, 4 and 5. Some of these board slots are standard and some are intended for options. The board slot positions are arranged as illustrated below. = and Terminal block #2, H10: RS232 serial interface Terminal block #4, E1: 2 x +/- 25 ma GOV/AVR Terminal block #4, E1: 2 x +/- 25 ma GOV/AVR = Only = Only H2: Modbus RTU H3: Pofibus DP H8.2: CAN bus interface for external I/O modules (Beckhoff) E2: 2 x 0(4) to 20 ma out for GOV/AVR EF2: 1 x +/- 25 ma out for GOV/AVR 1 x 0(4) to 20 ma out for GOV/AVR EF4: 1 x +/- 25 ma out for GOV/AVR 2 x relay output for GOV/AVR or configurable EF5: 1 x PWM out for CAT GOV 1 x +/- 25 ma out for GOV/AVR 2 x relay output for GOV/AVR EF2: 1 x +/- 25 ma out for GOV/AVR 1 x 0(4) to 20 ma out for GOV/AVR EF4: 1 x +/- 25 ma out for GOV/AVR 2 x relay output for GOV/AVR or configurable Terminal block #6, Inputs/outputs F1: 2 x transducer M 13.6: 7 x bin. s Terminal block #7, M1: Engine interface (PT100) M2: Engine interface (VDO) M4: Engine control and protection (safety system) Terminal block #8, Engine comm., in-/outputs H5: J1939 and MTU Engine comm. H 8.8: Ext.I/O s M 13.8: 7 x bin. Inputs M 14.8: 4 x relay outputs M 14.6: 4 x relay outputs M 15.6: 4x 4 to 20 ma inp. M 16: 7 x bin. Inputs M 18: 4 x relay outputs H7: CAN bus J1939 M 15.8: 4x 4 to 20 ma inp. M 16: 7 x bin. Inputs M 18: 4 x relay outputs DEIF A/S Page 7 of 38

8 The illustration below shows the location of the various options related to slots #2, 4, 6, 7 and 8. = and = Only = Only Terminal block #3, Load distribution module - 13 x digital - 4 x relay output Terminal block #1, 1-28 Power supply and CPU module 8 to 36 V DV - 1 x self-check status output - 5 x relay output - 5 x bin. - 2 x transistor output Terminal block #4, Governor and AVR output - 4 x relay output J1 : Display cable 3 m J2 : Display cable 6 m J4: PC cable option N-programming J6: display cable 1 m J7: (USB) 3 m programming N: Modbus TCP/IP Terminal block #5, measurement module - 3 x phase current, -/1 A or -/5 A - 3 x phase generator voltage 100 to 690 V AC - 3 x phase voltage, 100 to 690 V AC DEIF A/S Page 8 of 38

9 The table below provides an overview and description of the options and shows which options can be converted to. Description Option type Option D1 Voltage/var/cos phi controlq load sharing Option D1 Software/Hardware Option E1 Option EF2 Option EF4 +/-25 ma for speed governor +/-25 ma for AVR +/-25 ma for speed governor 1 0(4) 20 ma transducer output +/-25 ma for speed governor or AVR 2 relay outputs for speed governor or AVR Option E1 Option EF2 Option EF4 Hardware Hardware Hardware Option F1 2 0(4) to 20 ma transducer out Option F1 Hardware N/A +/-25 ma for AVR PWM speed governor signal. Option EF5 Hardware Option H2 Modbus communication Option H2 Hardware N/A Serial communication Profibus Option H3 Hardware N/A Reading of J1939 values Option H5 Hardware N/A Engine communication - CAN bus J1939 Option H7 Hardware N/A CAN bus interface for external I/O modules (Beckhoff) in slot #2 or slot #8 Option H8.x Hardware Option J1 Display cable, 3 m Standard Hardware Option J2 Display cable, 6 m Option J2 Hardware Option J3 PC cable for utility software (RS-232) N/A Hardware N/A PC cable for option N-programming Option J4 Hardware Option J6 Display cable, 1 m Option J6 Hardware N/A PC cable for utility software (USB), 1 m Option J7 Hardware Option K1 and K2 Documentation Option K1 and K2 Hardware Standard Engine control and protection (safety system) Standard Hardware N/A 7 binary s in slot #6 and/or slot #8 Option M13.x Hardware M18 4 relay outputs in slot #6 and/or slot #8 Option M14.x Hardware Option M15 4 analogue s in slot #8 Option M15.x Hardware Option M16 7 Binary s in slot #6 Option M13.x Hardware N5 Modbus TCP/IP and alarms via SMS or Option N Hardware N6 N/A Verified class 0.5 Option Q1 Hardware X2 Additional standard display on CAN bus Option X2 Hardware N/A Additional Operator Panel (AOP-1) Option X3 Hardware X4 Additional Operator Panel (AOP-2) Option X4 Hardware DEIF A/S Page 9 of 38

10 2.2 Installation and parameter setup Wiring installation Terminals for NEL and GB feedback have been changed. The table below shows an overview of the terminals on and. General description Terminal Terminal description Terminal Terminal description Power supply 1 24 V DC (+) 1 24 V DC (+) Power supply 2 0 V DC (-) 2 0 V DC (-) Status relay relay Configurable/ Trip NEL 1 Configurable/ Trip NEL Relay 1 (NO) Configurable/Trip NEL 1 Relay 61 (NO) Relay 2 (NO) Configurable/Trip NEL 2 Relay 63 (NO) Note Difference between the terminals Difference between the terminals PMS Alarm Relay 3 (NO) Relay 5 (NO) Difference between the terminals In called Alarm horn CB OFF Open breaker Relay 4 (NO) Relay 14 (NO) CB ON sync Relay output (NO) Relay 17 (NO) Configurable (Relay 26) Configurable (Relay 27) COMMON (TERM.20-21) Configurable/ secured ON Configurable/ secured OFF Shore pos. OFF 20 Transistor output 20 Configurable (Relay 20) 21 Transistor output 21 Configurable (Relay 21) 22 COMMON 22 COMMON (TERM ) 23 Binary optocoupler 24 Binary optocoupler 25 Binary optocoupler Different relay name Different relay name 24 Configurable Difference between the terminals. Not preconfigured in 25 Configurable Difference between the terminals. Not preconfigured in 43 Shore conn. ON/ Configurable Difference between feedback state DEIF A/S Page 10 of 38

11 General description Terminal Terminal description Forced SWBD 26 Binary optocoupler PMS CON- TROL Common for terminals Modbus RTU RS Binary optocoupler Terminal Terminal description Note 23 SWBD Control Difference between the terminals 28 Common 28 Common for terminals Load sharing NOT USED! DATA + DATA GND DATA - Active (P)load sharing Common Reactive (Q)load sharing to 0 to 10 V DC BLACKOUT 43 Binary optocoupler HC 1 RE- QUEST/ Configurable HC 2 RE- QUEST/ Configurable HC 1 CON- NECTED/ Configurable HC 2 CON- NECTED/ Configurable HC 1 FIXED LOAD/Configurable HC 2 FIXED LOAD/Configurable 44 Binary optocoupler 45 Binary optocoupler 46 Binary optocoupler 47 Binary optocoupler 48 Binary optocoupler 49 Binary optocoupler 42 DATA + DATA GND DATA - Active (P)load sharing Common Reactive (Q)load sharing Ext. KW/Hz set point Common Ext. PF/var/V set point Configurable digital 48 HC 1 REQUEST/ Configurable 49 HC 2 REQUEST/ Configurable 50 HC 1 Fixed load feedb./configurable 51 HC 2 Fixed load feedb./configurable Configure an available digital from USW 3 Difference between the terminals. Difference between the terminals.. Difference between the terminals Difference between the terminals DEIF A/S Page 11 of 38

12 General description ALARM INHIB- IT 1/Configurable ALARM INHIB- IT 2/Configurable Terminal Terminal description 50 Binary optocoupler 51 Binary optocoupler Configurable 52 Binary optocoupler Difference between the terminals Load-dependent stop block 53 Binary optocoupler CB OPEN 54 Binary optocoupler CB CLOSED 55 Binary optocoupler COMMON (TERM ) Start ACKN. HC 1/Configurable Start ACKN. HC 2/Configurable Terminal Terminal description 54 ALARM INHIBIT 1/ Configurable 55 ALARM INHIBIT 2/ Configurable Digital Configurable digital Note Difference between the terminals Configure an available digital from USW 3 26 GB open Difference between the terminals 27 GB closed Difference between the terminals 56 Common 56 COMMON (TERM ) Relay 6 (NO) Relay 57 (NO) Relay 7 (NO) Relay 59 (NO) Configurable Relay 8 (NO) Configure an available digital from USW 3 Configurable Relay 9 (NO) Configure an available digital from USW 3 SPEED Raise Relay ouput Relay 65 (NO) Configurable digital output from USW 3 SPEED Lower Relay output Relay 67 (NO) Configurable digital output from USW 3 Configurable (Relay 12)/ Raise U (Option D) Relay output Relay 69 (NO) Configurable digital output from USW 3 DEIF A/S Page 12 of 38

13 General description Configurable (Relay 13)/ Lower U (Option D) Terminal Terminal description Terminal Terminal description Note Relay output Relay 71 (NO) Configurable digital output from USW 3 I Current meas Current meas. I Current meas Current meas. I Current meas Current meas. U1 79 Volt. meas. Gen 79 Volt. meas. Gen U2 81 Volt. meas. Gen 81 Volt. meas. Gen U3 83 Volt. meas. Gen 83 Volt. meas. Gen U1 85 Volt. meas. BB 85 Volt. meas. BB U2 87 Volt. meas. BB 87 Volt. meas. BB U3 89 Volt. meas. BB 89 Volt. meas. BB CAN bus interface #1 CAN bus interface #1 CAN bus interface #2 CAN bus interface #2 128 CAN-L A3 CAN-L Internal power management communication (redundant to CAN bus interface #2) or option H7 J1939 engine interface. 130 CAN-H A1 CAN-H Internal power management communication (redundant to CAN bus interface #2) or option H7 J1939 engine interface. 131 CAN-L B3 CAN-L Internal power management communication (redundant to CAN bus interface #1) 133 CAN-H B1 CAN-H Internal power management communication (redundant to CAN bus interface #1) DEIF A/S Page 13 of 38

14 2.2.2 Parameter settings - system setup The PC utility software is a software program that can be used for configuration of the Multi-line 2 products. There are two versions, 1.x for and 3.x. for. The utility software can be downloaded at The table below shows a direct conversion of the parameters that include nominal settings. Nominal settings Parameter 6001 Nom. frequency 6002 Nom. power 6003 Nom. current 6004 Nom. voltage Address Value Parameter Description Description Address 269 Hz 6001 Nom. f (1) 407 Hz 270 kw 6002 Nom. P (1) 408 kw 271 A 6003 Nom. I (1) 409 A 272 V 6004 Nom. U (1) 410 V N/A 6005 Nom. RPM (1) 6021 Volt. prim. GEN 6022 Volt. sec. GEN 6023 Current prim Current sec Volt. prim. BUS 6032 Volt. sec. BUS 273 V 6041 G primary U 274 V 6042 G secondary U Value 411 RPM 428 V 429 V 275 A 6043 G primary I 430 A 276 A 6044 G secondary I 277 V 6051 BB primary U1 278 V 6052 BB secondary U1 N/A 6053 BB nominal U1 431 A 432 V 433 V 1326 V DEIF A/S Page 14 of 38

15 2.2.3 Parameter setup regulator governor The table below illustrates the differences in the regulator parameter setup. In, the possibility to adjust the differential band in the regulator has been added. Parameter setup regulator governor Parameter 2512 Freq. control Kp Description Address Parameter Description f Kp Freq. control Ki f Ti 123 N/A 2513 f Td Power control Kp 2523 Power control Ki P Kp P Ti 127 N/A 2533 P Td 128 Address Parameter setup relay or analogue governor In, it is possible to change between relay and analogue governor setup, see the table below. Parameter setup relay or analogue governor Controller Parameter Description Address Set point N/A N/A N/A N/A 2781 Reg. output GOV 183 Relay or analogue Parameter setup governor relay The standard unit controls the governor on relay output terminals 65-68, slot #4, these are not configurable. The standard unit has four configurable relay outputs, placed in slot #4, terminals The table below shows the differences in the standard parameter settings. Parameter setup governor relay Controller Parameter Description Address Value Output A Output B 2622 GOV period time 2602 GOV period time 113 ms N/A N/A 144 ms Not used Change to Terminal 65 Not used Change to Terminal 67 DEIF A/S Page 15 of 38

16 2.2.6 Synchronisation setup The table below shows which parameters are to be configured when setting the synchronisation. Synchronisation setup Parameter Description Address Parameter Description 2021 Sync. dfmax Sync. dfmax Sync. dfmin Sync. dfmin Sync. dumax Sync. dumax Sync. t CB Sync. t GB Blackout dfmax Blackout dfmax Blackout dumax Blackout dumax 95 N/A 2113 Sync. blackout enable Address Protection setup The following adjustment points are available in : Set points, delay timer, fail class, output A or B. The protection has a commissioning window where live status is shown. DEIF A/S Page 16 of 38

17 In, the same adjustment points are present, but "Fail class" is different. has eight different fail classes. has six different fail classes. In, it is NOT possible to set fail class to for example DG Prewarning, CB shortcircuit, and System alarm. See the Designers Reference Handbook for more information Fail class Fail class In order to select when the alarms are to be active, there is a configurable inhibit setting for every alarm. Inhibits are also different from to parameter. The inhibit functionality is only available via the PC utility software. For every alarm, there is a drop-down window where it is possible to select which signals have to be present in order to inhibit the alarm. See the Designers Reference Handbook for more information Inhibits Inhibits DEIF A/S Page 17 of 38

18 2.2.8 External communication - using Modbus This only applies to the external communication board (options H2 and H3) located in slot #2. The USB service port and Ethernet port (option N) also support Modbus. The functions and readings on Modbus addresses are not the same in a as in a controller. DEIF A/S Page 18 of 38

19 Th below table shows the comparability from to Modbus tables Function code Address Item Description Function code F:03h 0 Application version F:03h 1 U L1-L2 Generator voltage. in [V] F:03h 2 U L2-L 3 Generator voltage. in [V] F:03h 3 U L3-L1 Generator voltage. in [V] F:03h 4 U L1-N Generator voltage. in [V] F:03h 5 U L2-N Generator voltage. in [V] F:03h 6 U L3-N Generator voltage. in [V] F:03h 7 F GEN Generator frequency. in [HZ/100] F:03h 8 I L1 Generator current. in [A] F:03h 9 I L2 Generator current. in [A] F:04h Address Bit Item Description N/A F:04h 501 U L1-L2 Generator voltage L1- L2 [V] F:04h 502 U L2-L3 Generator voltage L2- L3 [V] F:04h 503 U L3-L1 Generator voltage L3- L1 [V] F:04h 504 U L1-N Generator voltage L1- N [V] F:04h 505 U L2-N Generator voltage L1- N [V] F:04h 506 U L3-N Generator voltage L1- N [V] F:04h 507 F L1 Generator f L1 [HZ/100] F:04h 513 I L1 Generator current L1 [A] F:04h 514 I L2 Generator current L2 [A] DEIF A/S Page 19 of 38

20 F:03h 10 I L3 Generator current. in [A] F:03h 11 Cos-phi 0 to 100 Generator cos phi. in [cos-phi/ 100]. Unsigned value F:03h 12 P GEN Generator active power. in [kw]. Negative value means reverse power F:03h 13 Q GEN Generator reactive power. in [kvar]. Positive value means generated inductive reactive power F:03h 14 U BBL1-L2 Busbar. Measure in [V] F:03h 15 F BB Busbar frequency L1. in [Hz/100] F:04h 515 I L3 Generator current L3 [A] F:04h 538 PF Generator PF [PF/100] F:04h 519 P GEN Generator power [kw] F:04h 523 Q GEN Generator reactive power [kvar] F:04h 539 U BBL1-L2 U BB L1-L2 [V] F:04h 545 F BB BB f L1 [Hz/ 100] DEIF A/S Page 20 of 38

21 F:03h 16 [HI] R GEN EX- F:03h 17 [LO] PORT R GEN EX- PORT Reactive energy counter, exported reactive power. in [kvar]. Max MVArh Reactive energy counter, exported reactive power. in [kvar]. Max MVArh F:03h 18 [HI] Energy counter, exported power. in [kwh]. Max MWh F:03h 19 [LO] Energy counter, exported power. in [kwh]. Max MWh F:03h 20 Alarms Bit Reverse power 1 Bit Reverse power 2 Bit Reverse power inv. F:04h 528 [HI] R GEN,EXP Export, reactive energy counter [KVArh] F:04h 829 [LO] R GEN,EXP Export, reactive energy counter [KVArh] F:04h 530 [HI] E GEN,EXP Export, active energy counter, day [KWh] F:04h 531 [LO] E GEN,EXP Export, active energy counter, day [KWh] F:04h 1000 Bit 0 G-P>1 Bit 1 Bit 2 G-P>2 Not used DEIF A/S Page 21 of 38

22 Bit Overcurrent step 1 Bit Overcurrent step 2 Bit Overcurrent step 3 Bit Overcurrent step 4 Bit Overcurrent inverse Bit 8 Not used Bit Fast overcurrent 1 Bit Fast overcurrent 2 Bit U-DH High step 1 Bit U-DH High step 2 Bit Low step 1 Bit U-DG Low step 2 Bit U-DG Low step 3 F:03h 21 Alarms Bit f-dg High step 1 Bit f-dg High step 2 Bit 3 G I>1 Bit 4 G I>2 Bit 5 G I>3 Bit 6 G I>4 Bit 8 G I> inv. Bit 7 Not used Bit 9 G I>>1 Bit 10 G I>>2 Bit 11 G U>1 Bit 12 G U>2 Bit 13 G U<1 Bit 14 G U<2 Bit 15 G U>3 F:04h 1001 Bit 0 G f>1 Bit 1 G f>2 DEIF A/S Page 22 of 38

23 Bit f-dg High step 3 Bit f-dg Low step 1 Bit f-dg Low step 2 Bit f-dg Low step 3 Bit U-BB High step 1 Bit U-BB High step 2 Bit U-BB High step 3 Bit U-BB Low step 1 Bit U-BB Low step 2 Bit U-BB Low step 3 Bit U-BB Low step 4 Bit f-bb High step 1 Bit f-bb High step 2 Bit f-bb High step 3 Bit 2 G f>3 Bit 3 G f<1 Bit 4 G f<2 Bit 5 G f<3 Bit 6 BB U> 1 Bit 7 BB U>2 Bit 8 BB U>3 Bit 9 BB U<1 Bit 10 BB U<2 Bit 11 BB U<3 Bit 12 BB U<4 Bit 13 BB f>1 Bit 14 BB f>2 Bit 15 BB f>3 DEIF A/S Page 23 of 38

24 F:03h 22 Alarms Bit f-bb Low step 1 Bit f-bb Low step 2 Bit f-bb Low step 3 Bit f-bb Low step 4 Bit 4 Reserved Bit 5 Reserved Bit 6 Not used Bit Overload step 1 Bit Overload step 2 Bit Overload step 3 Bit Overload step 4 Bit Overload step 5 Bit Unbalance current Bit Unbalance Voltage F:04h 1002 Bit 0 BB f< 1 Bit 1 BB f< 2 Bit 2 BB f< 3 Bit 3 BB f< 4 Bit 7 G P> 1 Bit 8 G P> 2 Bit 9 G P> 3 Bit 10 G P> 4 Bit 11 G P> 5 Bit 12 Bit 13 Unbalance current Unbalance voltage Q import Bit 14 G -Q> Q export Bit 15 G Q> DEIF A/S Page 24 of 38

25 F:03h 23 Alarms Bit Gen neg. sequence current Bit Gen neg. sequence voltage Bit 2 Reserved Bit 3 Reserved Bit 4 Not used Bit 5 Not used Bit 6 Not used Bit 7 Not used Bit Overcurrent NEL 1 Bit Overcurrent NEL 2 Bit f-bb Low NEL 1 Bit f-bb Low NEL 2 Bit Overload step 1 NEL 1 Bit Overload step 1 NEL 2 Bit Overload step 2 NEL 1 F:04h 1003 Bit 0 Gen. neg.seq.i Bit 1 Gen. neg. seq. U Bit 7 NEL 1 I> Bit 8 NEL 2 I> Bit 10 NEL 1 BB f< Bit 11 NEL 2 BB f< Bit 13 NEL 1 P> Bit 14 NEL 2 P> F:04h 1004 Bit 0 NEL 1 P>> DEIF A/S Page 25 of 38

26 Bit Overload step 2 NEL 2 F:03h 24 Alarms Bit Dig. term. 23 Bit Dig. term. 24 Bit Dig. term. 25 Bit Dig. term. 26 Bit Dig. term. 27 Bit Dig. term. 43 Bit Dig. term. 44 Bit Dig. term. 45 Bit Dig. term. 46 Bit Dig. term. 47 Bit Dig. term. 48 Bit Dig. term. 49 Bit Dig. term. 50 Bit 1 NEL 2 P>> F:04h 1007 Bit 0 23 Bit 1 Bit 2 Bit 3 Bit F:04h 1008 Bit 0 43 Bit 1 Bit 2 Bit 3 Bit 4 Bit 5 Bit 6 Bit DEIF A/S Page 26 of 38

27 F:03h 25 System alarms/ status Bit Dig. term. 51 Bit Dig. term. 52 Bit Dig. term. 53 Bit Sync.window Bit Sync. fail. alarm Bit Phase sequence error alarm Bit Connection breaker Close failure Bit Connection breaker Open failure Bit CB position fail. alarm Bit Governor regulation fail. alarm Bit AVR regulation fail. alarm Bit Battery low voltage alarm Bit 8 Bit 9 Bit F:04h 1005 Bit 0 Synchronising window Bit 1+2 Bit 3 Bit 5+8 Bit 4+7 Bit 6+9 Synchronising failure GB Phase seq. failure GB close failure GB open failure GB pos. failure F:04h 1006 Bit 0 GOVER- NOR regulation fail. Bit 2 F:04h 1014 Bit 1+3 AVR regulation fail. U< aux. term 1 and 98 DEIF A/S Page 27 of 38

28 F:03h 26 Alarm relay status Bit Battery high voltage alarm Bit 0 Relay 0 status OK Bit 1 Relay 1 Bit 2 Relay 2 Bit 3 Relay 3 Bit 4 Relay 4 Bit 5 Not used Bit 6 HC 1 Acknowledge Bit 7 HC 2 Acknowledge Bit 8 Relay 8 Bit 9 Relay 9 Bit 14 Relay 14 Bit 15 Relay 15 F:03h 27 Status Bit 9 Connection breaker position ON F:03h 28 Alarm relay status Synchronising Bit 0 Relay 16 Bit 1 Relay 17 Bit 2 Relay 18 Start F:04h 1016 Bit 2+4 U> aux. term 1 and 98 Bit 0 Relay 5 Bit 1 Relay 8 Bit 2 Relay 11 Bit 3 Relay 14 Bit 11 Relay 57 Bit 12 Relay 59 Bit 13 Relay 61 Bit 14 Relay 63 F:04h 1017 Bit 4 Relay 90 F:04h 1018 Bit 1+4 Bit 5 Relay 92 Bit 5 SGB/SCB pos. ON + GB pos. ON GB synchronising (NOT SG+SC) F:04h 1017 Bit 6 Relay 94 Bit 7 Relay 96 Bit 14 Start relay DEIF A/S Page 28 of 38

29 Bit 3 Relay 19 stop coil Bit 4 Relay 20 Start prepare F:03h 31 U BBL2-L3 Busbar voltage. in [V] F:03h 32 U BBL3-L1 Busbar voltage. in [V] F:03h 35 U BBL1-N Busbar voltage. in [V] F:03h 36 U BBL2-N Busbar voltage. in [V] F:03h 37 U BBL3-N Busbar voltage. in [V] F:03h 38 Running time Bit 15 Bit 13 Stop coil relay Start prepare F:04h 540 U BB L2-L3 [V] F:04h 541 U BB L3-L1 [V] F:04h 542 U BB L1-N [V] F:04h 543 U BB L2-N [V] F:04h 544 U BB L3-N [V] Hour F:04h 562 Running hour counter, shutdown override F:03h 39 RPM RPM F:04h 576 RPM F:03h 40 S GEN Generator apparent power. in [kva] F:03h 44 PHI BBL1-L2 0 to 359 Busbar phase angle. in [deg.] F:03h 45 PHI BBL1- DGL1 0 to 359 Busbar/ generator phase angle. in [deg.] F:04h 527 Generator apparant power [kva] F:04h 548 U BB phase angle L1-L2 [Deg./10] F:04h 551 U BB L1-U GEN L1 phase angle [Deg./10] DEIF A/S Page 29 of 38

30 F:03h 46 Circuit breaker operations counter F:03h 47 Supply voltage. in [V/10] F:03h 55 Analogue no. 1 (scaled) F:03h 56 Analogue no. 2 (scaled) F:03h 57 Analogue no. 3 (scaled) F:03h 59 Analogue no. 5 (scaled) F:03h 60 Analogue no. 6 (scaled) F:03h 61 Analogue no. 7 (scaled) F:03h 62 Analogue no. 8 (scaled) F:03h 63 No.of alarms F:03h 64 No. of unacknowledged alarms F:03h 70 Alarms Bit Dig. term 91 Bit Dig. term 92 F:04h No. of GB operations + No. of SGB/SCB operations F:04h DC supply term. 1-2 [V/10] + DC supply term98-99 [V/10] F:04h ma, scaled term. 127 F:04h ma, scaled term. 129 F:04h ma, scaled term. 131 F:04h ma, scaled term. 91 F:04h ma, scaled term. 93 F:04h ma, scaled term. 95 F:04h ma, scaled term. 97 F:04h 558 No. of alarms F:04h 559 No. of unack. alarms F:04h 1009 Bit 7 91 Bit 8 92 DEIF A/S Page 30 of 38

31 Bit Dig. term 93 Bit Dig. term 94 Bit Dig. term 95 Bit Dig. term 96 Bit Dig. term 91 Bit VDO. term 104 Bit VDO. term 105 Bit VDO. term 106 Bit Dig. inout term 112 Bit Dig. term 113 Bit Dig. term 114 Bit Dig. term 115 F:03h 71 Alarms Bit Dig. term 116 Bit Dig. term 117 Bit 9 Bit 10 Bit 11 Bit 12 Bit F:04h 1010 Bit 0 Multi- alarm 102 Bit 1 Bit 2 Multi- alarm 105 Multi- alarm 108 F:04h Bit Bit 7 Bit 8 Bit 9 Bit 10 Bit DEIF A/S Page 31 of 38

32 Bit Dig. term 118 F:03h 72 Alarms Bit ma no Bit ma no Bit Wire break failure 91 Bit ma no Bit ma no Bit Wire break failure 93 Bit ma no Bit ma no Bit Wire break failure 95 Bit ma no Bit ma no Bit Wire break failure 97 Bit ma no Bit F:04h 1012 Bit ma 91.1 Bit 1 Bit 2 Bit 3 Bit 4 Bit 5 Bit 6 Bit 7 Bit 8 Bit 9 Bit 10 Bit ma 91.2 Wire failure analogue ma ma 93.2 Wire failure analogue ma ma 95.2 Wire failure analogue ma ma 97.2 Wire failure analogue 97 F:04h 1046 Bit ma DEIF A/S Page 32 of 38

33 Bit ma no Bit Wire break failure 98 Bit ma no F:03h 73 Alarms Bit ma no Bit Wire break failure 100 Bit ma no Bit ma no Bit Wire break failure 102 F:03h 78 Alarms Bit Overspeed 1 Bit Overspeed 2 F:03h 79 Alarms Bit VDO Bit VDO Bit Wire break failure 104 Bit 1 Bit 2 Bit 3 Bit 4 Bit 5 Bit 6 Bit 7 Bit ma Wire failure analogue ma ma Wire failure analogue ma ma Wire failure analogue 131 F:04h 1013 Bit 9 Overspeed 1 Bit 10 Bit 0 Bit 1 Bit 2 Overspeed 2 VDO/RMI oil/water/fuel VDO/RMI oil/water/fuel Wire break 102 DEIF A/S Page 33 of 38

34 Bit VDO Bit VDO Bit Wire break failure 105 Bit VDO Bit VDO Bit Wire break failure 106 F:03h 80 P avail Total available power. in [kw] F:03h 81 P cons Total consumed power. in [kw] F:03h 106 Status Bit 0 PMS control Bit 1 DG ready Bit 2 DG running Bit 3 Connection breaker position ON Bit 3 Bit 4 Bit 5 Bit 6 Bit 7 Bit 8 VDO/RMI oil/water/fuel VDO/RMI oil/water/fuel Wire break 105 VDO/RMI oil/water/fuel VDO/RMI oil/water/fuel Wire break 108 F:04h 1501 Available power F:04h 1500 Total power (Consumed) F:04h 1019 Bit 1 Status text (not 46- SWBD control) 1080 Status text [47 - ready for operation) F:02h 3 Running 0+1 GB position ON + SGB/SCB position ON DEIF A/S Page 34 of 38

35 Bit 4 Synchronising Bit 5 Ramp down Bit 6 Voltage/ frequency OK Bit 8 Base load F:04h 1080 Status text (87-DG, 62- BTB, 63- SG, 64- SC, 65-EDG) F:02h 1018 Bit 2 Ramp dowwn 4 Generator voltage/ frequency OK F:04h 1080 Status text (44- Fixed power) F:03h Base load set point[%] P Avail Total available power [kw] P Cons Total consumed power [kw] Power regulator set point [%] Total power available Total consumed power DEIF A/S Page 35 of 38

36 F:10h 4371 Select the 1st priority Year setting Month setting Date setting Day setting Hour setting Minute setting Second settting 2003 to 2099 F:03h 7 Bit 8 1st priority F:10h to to 12 F:10h to 12 1 to 31 F:10h to 31 1t o 7 (1=Monday, 7=Sunday) F:10h to 7 ( 1=Monday, 7=Sunday) 0 to 23 F:10h to 23 0 to 59 F:10h to 59 0 to 59 F:10h to 59 DEIF A/S Page 36 of 38

37 F:0h 9 Alarm ackn. 13 Start Semi-auto start command 14 CB ON Semi-auto connection breaker ON command 15 CB OFF Semi-auto connection breaker OFF command 16 Stop Semi-auto stop command F:0h 9 Alarm acknowledge F:0h 0 Remote start F:0h 1 Remote GB ON F:0h 2 Remote GB OFF F:0h 3 Remote stop DEIF A/S Page 37 of 38

38 2.2.9 M-Logic in The M-Logic functionality is included in the unit and is not an option-dependent function. M-Logic is used to execute different commands at predefined conditions. M-Logic is not a PLC, but substitutes one if only very simple commands are needed. M-Logic is a simple tool based on logic events. One or more conditions are defined, and at the activation of those s, the defined output will occur. A great variety of s can be selected, such as digital s, alarm conditions and running conditions. A variety of the outputs can also be selected, such as relay outputs, change of genset modes and change of running modes. DEIF A/S Page 38 of 38

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