Power Engineering 
K-JIANG
NameDescriptionContent
Current Location:

A-B 1407-CGCM Combined generator control module

From:A-B | author:Mr.Chen | Time :2024-07-22 | 1034 view: | 🔊 Click to read aloud ❚❚ | Share:

Installation requirements

This device is intended for overvoltage applications of category II in industrial environments of pollution class 2 (as defined in IEC publication 60664-1).

The device must be mounted vertically as it contains a heat sink. Any other mounting angle will reduce the heat dissipation capability of the device and may result in premature failure of critical components.

The device can be mounted anywhere as long as the ambient temperature does not exceed the rated ambient conditions or clearance requirements.

Clearance requirements for CGCM equipment are

- 63.5 mm (2.5 inches) of clearance is required on both sides of the unit when mounted.

- 101.6 mm (4 in.) clearance is required above and below the unit when mounted.

Electrical Connections

The connection of the CGCM device depends on the application and the excitation programme. It is not possible to use all inputs or outputs in a given installation. Incorrect wiring may result in damage to the equipment.

Connect the terminals of the CGCM unit with copper wire rated at no less than 600V. General purpose wire rated for a minimum temperature of 105 °C (221 °F) may be used.

All wire must be copper. Select circuit wires according to good design practice.

The wire gauge ranges listed in the terminal block label instruction table indicate the physical capabilities of the connector.

Terminals for CGCM devices are located on the front, bottom, and right side panels of the device.

The nine-pin connector on the bottom of the unit is used for communication between CGCM devices in a redundant system. The recommended torque for the terminal screws is 1 N-m (9 lb-in).

Terminals that are used as shield wire landings are found on multiple terminal strips. Shielded terminals with the same name are connected together internally, but are not connected to a protective ground or any internal device circuit.

Excitation power supply

The excitation power supply is connected to the PMG terminals whether it is connected to the generator output (parallel excitation) or to the PMG.

The shunt excitation input is connected to the voltage transformer (VT).

The PMG inputs are located on TB1 and are labelled PMG A, PMG B and PMG C, indicating the respective phase relationship.

The single-phase excitation power supply must be connected to terminals PMG A and PMG C. The PMG inputs require twisted pair connections.

A twisted pair shielded cable is required for the PMG input.

See wiring diagram below.

Chassis Ground

The terminal marked CH GND on TB4 is the chassis ground terminal. There is also a grounding screw on the underside of the mounting flange that connects internally to the CH GND terminal.

Connect the chassis ground to the lower stud on either side of the unit with a minimum 2.6 mm2 (10 AWG) copper wire.

Connect the chassis ground to the lower stud on either side of the unit with a minimum 2.6 mm2 (10 AWG) copper wire and to the CH GND terminal with a 1.6 mm2 (14 AWG) copper wire.

When installed in a system with other CGCM devices, use a separate wire from each device to connect to the ground bus.

Analogue Inputs

The CGCM unit provides a number of analogue inputs for regulating and controlling independent or parallel generator systems. Each input is summarised below.

Generator Voltage Sense Input

The CGCM unit senses generator voltage through a voltage transformer (VT) mounted on the generator output leads.

The CGCM unit uses the voltage measured through the generator voltage sensing input for the generator voltage,

VAR and/or power factor regulation, kW and kVAR load sharing, synchronisation, metering and protection.

The input accepts signals with up to 40% total harmonic distortion (THD) and can be connected for single-phase and three-phase applications.

The generator voltage input is internally scaled by the CGCM unit according to its transformer configuration settings.

The generator voltage sense inputs are labelled V Gen A, V Gen B, V Gen C and V Gen N.

Bus Voltage Detect Inputs

The voltage measured via the bus voltage detection input is used to synchronise the generator with the bus.The CGCM device detects the bus voltage via VT.

  • Beckhoff ED2504 | EtherCAT Terminal, 4-channel PWM output
  • Beckhoff EL2262 | EtherCAT Terminal, 2-channel digital output
  • Beckhoff EL2258 | EtherCAT Terminal, 8-channel digital output
  • Beckhoff EL2252 | EtherCAT Terminal, 2-channel digital output, 24 V DC, 0.5 A, timestamp
  • Beckhoff EL2212 | EtherCAT Terminal, 2-channel digital output
  • Beckhoff EL2202-0100 | EtherCAT Terminal, 2-channel digital output
  • Beckhoff EL2202 | EtherCAT Terminal, 2-channel digital output, 24 V DC, 0.5 A, push-pull, tristate
  • Beckhoff EL2124 | EtherCAT Terminal, 4-channel digital output, 5 V DC, 20 mA
  • Beckhoff EL2088 | EtherCAT Terminal, 8-channel digital output, 24 V DC, 0.5 A, ground switching
  • Beckhoff EL2084 | EtherCAT Terminal, 4-channel digital output, 24 V DC, 0.5 A, ground switching
  • Beckhoff EL2068 | EtherCAT Terminal, 8-channel digital output, 24 V DC, 0.5 A, with channel diagnostics
  • Beckhoff EL2044 | EtherCAT Terminal, 4-channel digital output, 24 V DC, 2 A, with extended diagnostics
  • Beckhoff EL2042 | EtherCAT Terminal, 2-channel digital output, 24 V DC, 2 x 4 A/1 x 8 A
  • Beckhoff ED2034 | EtherCAT Terminal, 4-channel digital output, 24 V DC, 2 A, push-in, with channel diagnostics
  • Beckhoff EL2034 | EtherCAT Terminal, 4-channel digital output, 24 V DC, 2 A, with diagnostics
  • Beckhoff ED2032 | EtherCAT Terminal, 2-channel digital output, 24 V DC, 2 A, push-in, with channel diagnostics
  • Beckhoff EL2032 | EtherCAT Terminal, 2-channel digital output, 24 V DC, 2 A, with diagnostics
  • Beckhoff EL2024-0010 | EtherCAT Terminal, 4-channel digital output, 24 V DC, 2 A
  • Beckhoff EL2024 | EtherCAT Terminal, 4-channel digital output, 24 V DC, 2 A
  • Beckhoff EL2022 | EtherCAT Terminal, 2-channel digital output, 24 V DC, 2 A
  • Beckhoff EL2014 | EtherCAT Terminal, 4-channel digital output, 24 V DC, 0.5 A, with extended diagnostics
  • Beckhoff ELX2008 | EtherCAT Terminal, 8-channel digital output, 24 V DC, 30 mA, Ex i
  • Beckhoff ED2008 | EtherCAT Terminal, 8-channel digital output, 24 V DC, 0.5 A, push-in
  • Beckhoff EL2008 | EtherCAT Terminal, 8-channel digital output, 24 V DC, 0.5 A
  • Beckhoff EL2004 | EtherCAT Terminal, 4-channel digital output, 24 V DC, 0.5 A
  • Beckhoff ELX2002 | EtherCAT Terminal, 2-channel digital output, 24 V DC, 45 mA, Ex i
  • Beckhoff EL2002 | EtherCAT Terminal, 2-channel digital output, 24 V DC, 0.5 A
  • TMEIC TM21-TG Series 2-Pole Generator
  • TMEIC TM21-TG Series 4-Pole Generator for Turbine Drive
  • TMEIC Air-Cooled Type Synchronous Generators
  • TMEIC TMdrive-XL85 Medium Voltage AC Drives
  • TMEIC TMdrive-30 Medium Voltage AC Drives
  • TMEIC TMdrive-MVG2 Medium Voltage AC Drives
  • TMEIC TMdrive-70 Medium Voltage AC Drives
  • TMEIC TMdrive-50 Medium Voltage AC Drives
  • TMEIC TMdrive-MVe2 Medium Voltage AC Drives
  • TMEIC TMdrive-XL80 Medium Voltage AC Drives
  • TMEIC TMdrive-XL75 Medium Voltage AC Drives
  • TMEIC TMdrive-XL55 Medium Voltage AC Drives
  • TMEIC TMdrive-70e2 Medium Voltage AC Drives
  • TMEIC TMdrive-Guardian Medium Voltage AC Drives
  • TMEIC TMdrive®-10e2 DP DC Drives
  • TMEIC TMdrive-DCe2 DC Drives
  • TMEIC Dynamic VAR Compensation – Dyna-VAR™
  • TMEIC PV Inverters SOLAR WARE 2500
  • TMEIC PV Inverters SOLAR WARE 2700
  • TMEIC PV Inverters SOLAR WARE 3200
  • TMEIC Power Plant Controller
  • TMEIC High-voltage motors 21-L series
  • TMEIC MV Motor & Drive Solutions for Power Generation
  • TMEIC AC Motors Rolling Mills
  • TMEIC TMdrive®-70 Medium Voltage 3-Level IEGT System Drive
  • TMEIC TMdrive®-70e2 Medium Voltage 3-Level IEGT System Drive
  • TMEIC TMdrive-MVe2 Reactive Power Control
  • TMEIC TMdrive®-30 Medium Voltage 3-Level IGBT System Drive
  • TMEIC Unified Controller nv Series
  • DEIF MVR-F215 Product description
  • DEIF MVR-F210 Feeder Protection
  • DEIF MVR-F205 Directional Feeder Protection
  • DEIF PPM 300 Protection & power management
  • DEIF RMC-142D Current relay
  • DEIF GPU-3 hydro Generator protection unit
  • DEIF MVR-200 series Medium Voltage Relay
  • DEIF RMC-131D Current relay
  • DEIF MDR-2 Multi-differential relay
  • DEIF AGC 150 ATS: Advanced Generator Transfer Switch for Seamless Power Management
  • DEIF DVC 350 Digital automatic voltage regulator (AVR)
  • DEIF Digital Voltage Controller DVC 550
  • DEIF TAS-331DG AC transducer for active or reactive power
  • DEIF RMV-112D Undervoltage and overvoltage relay
  • DEIF DPS-1 DC Power Supply
  • DEIF DM 400 hydro Integrated systems
  • DEIF DBC-1 Battery charger
  • DEIF CSQ-3 Multi-function synchroscope
  • DEIF CODESYS Features Software - AWC 500 development package
  • DEIF AMC 300 Advanced Programmable Controller
  • DEIF AGI 400 Advanced graphical interface
  • DEIF BRW-2 & BW Analogue illuminated bridge wing indicators
  • DEIF AWC 500 - G59/3 Integrated G59/3 protection turbine controller unit
  • DEIF AWC 500 Advanced Controller
  • DEIF ASK & ASR Measuring transformer
  • DEIF ASC-4 Battery Automatic Sustainable Controller
  • DEIF ASC plant management Automatic sustainable controller
  • DEIF AOP Additional operator panel
  • DEIF AMC 600 Programmable automation controller with EtherCAT based I/O
  • DEIF AL8-2 Alarm panel
  • DEIF AGC 150 Hybrid Advanced Genset Controller
  • DEIF AGC 150 PMS Lite Simple power management controller
  • DEIF AGC 150 Generator Advanced Genset Controller
  • DEIF AGC 150 Remote Display Remote access and control unit
  • DEIF MVR-250 series Medium Voltage Relay
  • DEIF MVR-210 series Medium Voltage Relay
  • DEIF The SGC series
  • DEIF iE 350 Marine Highly flexible and cybersecure intelligent energy controller
  • DEIF iE 250 Marine Versatile and cybersecure intelligent energy controller for maritime applications
  • DEIF iE 150 Marine Simple and effective power management
  • DEIF iE 650 PLC Extreme robust Programmable Automation controller with EtherCAT based I/O
  • DEIF iE 350 PLC Robust right out of the box
  • DEIF iE 250 PLC Versatile and modular intelligent energy PLC controller
  • DEIF XL / BW / BRW-2 Illuminated indicators
  • DEIF SGC 120/121 Single Genset Controllers
  • DEIF Load Sharing Unit LSU-112DG
  • DEIF Automatic Genset Controller AGC-4
  • DEIF DU-2/MKIII Paralleling And Protection Unit 24VDC
  • DEIF AGC-4 Mk II Generator Set Automatic Controller
  • DEIF GPU-3 graphics card Generator protection unit
  • DEIF SGC 410 Single Genset Controller
  • DEIF SGC 110 Single Genset Controller
  • DEIF MTR-3 Multi-sensor
  • HIMA HIMax® HART Communication Module X-HART 32 01
  • HIMA 22121 Output modules
  • HIMA 22120 Output modules
  • HIMA 32110 Relay Amplifier – SIL 4 Certified Safety Module
  • HIMA 32103 Relay Amplifier – SIL 4 Certified Safety Module
  • HIMA 32102 Relay Amplifier – SIL 4 Certified Safety Module
  • HIMA 32102 Relay Amplifier – SIL 4 Certified Safety Module
  • 32100 | HIMA 2 Channel Relay Amplifier
  • HIMA 42500 Selection element,2003 voting Logic function modules
  • HIMA 42400 Blocking element, direct and inverted output Logic function modules
  • HIMA 42300 OR element with 2 inputs Logic function modules
  • HIMA 42200 Element combination AND/OR/blocking element Logic function modules
  • HIMA 42100 AND element with S inputs, 1 with OR Logic function modules
  • HIMA 52100 Time Delay Module
  • HIMA 62100 984162100 2-Fold Analog Limit Monitor
  • HIMA 80110 Reset module
  • HIMA HIMatrix Safety-Related Controller F3 AIO 8/4 01
  • HIMA HIMax®Relay Module X-D0 12 51
  • HIMA HIMax®Relay Output Module X-DO 12 01