HEINZMANN Company Group

HEINZMANN
Engine & Turbine Management

HEINZMANN Electric Drives
Robust electric motors

HEINZMANN China
Control & Actuation

HEINZMANN Automation
Marine Automation

HEINZMANN Regulateurs Europa
Gas & Water Turbine Control

HEINZMANN Australia
Steam Turbine Control

CPK Automotive
Emission Control

Giro Engineering
Diesel Engine Components

HEINZMANN IFT GmbH
Oil Mist Separators and Blow-by Filter Technology

REGULATEURS EUROPA

Technologies empowering efficiency

HEINZMANN speed governors are designed to satisfy all requirements in the industrial sector in an outstanding way. They are highly valued on account of their flexibility, which means they can meet all customer requirements and prerequisites. Our governor systems are known for their durability and tried-and-tested reliability. They can be used for diesel, gas and dual-fuel engines and turbines of any size, type and make.

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XIOSUC

Si-TEC³ CGC-D

Si-TEC³ CGC-G

Si-TEC GSM Grid

Si-TEC GSM BTB

XIOSUC

Multi-functional and modular engine governor with advanced I/O system. Follow-up product for PRIAMOS DC 1-03 / DC 1-04.

Technical data

  • Processor: 32 Bit 264 MHz
  • Communication interfaces: Ethernet, CAN, RS-232, RS-485
  • Display: 4.3" (optional)
  • Degree of protection: IP20
  • Power supply: 9...32 VDC

Engine Types & Applications

Diesel Engines
Gas Engines
Dual-Fuel Engines
Turbines
Industrial Vehicles
Ships
Gensets

Si-TEC³ CGC-D GENSET Controls – Diesel Engines

The Si-TEC³ CGC-D is used in diesel fuelled reciprocating engines for generator set applications where utility paralleling functions are required. Digital governor functions are fully integrated with generator control functions (i.e. synchronising, kW load control, kVAr/PF control, etc.).

  • Precise speed governing typically within 0.1 % of operating speed at steady state
  • Dual MPU (or prox.) speed sensors for redundancy
  • Cranking, start fuel limiting, speed ramping
  • Automatic synchronising with phase and voltage matching
  • Fuel limiting to boost pressure
  • Grid-parallel and islanded operation
  • Isochronous/references/base load
  • Load share and kW control
  • Volt-kVAr share control
  • Wide range of control valve actuator drivers available
  • Si-TEC³ GSM Master compatible – Single/multiple GSM control
  • Load share with all Si-TEC³ CGC including turbines/extraction turbines and diesel generators
  • Dedicated communications port for customer PLC/DCS interface
  • SD card with dual dynamic logging feature
  • 24 Si-TEC unit capacity with standard system logging feature
  • Extensive user selected control functionality
  • Extensive alarm functions
  • TCP-IP ethernet port
  • On-board diagnostic

Engine Types & Applications

Mining
Oil & Gas
Standby Power Systems
Hospitals
Utility Generation

Si-TEC³ CGC-G GENSET Controls – Gas Engines

The Si-TEC³ CGC-G is used in gas fuelled reciprocating engines for generator set applications where utility paralleling functions are required. Digital governor functions are fully integrated with generator control functions (i.e. synchronising, kW load control, kVAr/PF control, etc.)

  • Precise speed governing typically within 0.1 % of operating speed at steady state
  • Dual MPU (or prox.) speed sensors for redundancy
  • Cranking, start fuel limiting, speed ramping
  • Automatic synchronising with phase and voltage matching
  • Fuel limiting to boost pressure
  • Grid-parallel and islanded operation
  • Isochronous/references/base load
  • Load share and kW control
  • Volt- kVAr share control
  • Wide range of control valve actuator drivers available
  • Si-TEC³ GSM Master compatible – Single/multiple GSM control
  • Load share with all Si-TEC³ CGC including turbines/extraction turbines and diesel generators
  • Dedicated communications port for customer PLC/DCS interface
  • SD card with dual dynamic logging feature
  • 24 Si-TEC unit capacity with standard system logging feature
  • Extensive user selected control functionality
  • Extensive alarm functions
  • TCP-IP ethernet port
  • On-board diagnostic

Engine Types & Applications

Mining
Oil & Gas
Standby Power Systems
Hospitals
Utility Generation

Si-TEC GSM Grid

Grid Synchronising and Import/Export kW & kVAr Control

  • Synchronising, paralleling, loading and unloading of 3-phase power generation system with the supply grid
  • Multiple functions including synchronising, paralleling, loading and unloading of a 3-phase power generation system with the “Supply Authority Mains or Grid”
  • Up to 24 modules (combination of GSM and CGC) may communicate in a single network
  • Standby power stations where “Bump less” (delayed soft) transfer back to the supply grid is required, with no exporting of power to the grid
  • Standby power stations used for “Peak Shaving” (peak lopping) applications where generators parallel with the supply grid during “Peak Demand” periods, setting a maximum limit for the imported grid supply
  • Prime power stations that are parallel and “Base Loaded” (constant supply) to the supply grid, with provision to “Export kW” to suit the supply grid
  • Prime power stations that supply power for plant load requirements, and export excess power to the supply grid (e.g. sugar mills, other industries, etc.)
  • Prime power stations that supply power for plant load requirements, and require “Standby or Back Up” power from the supply grid
  • Power stations that are “Islanded” (isolated) and require “True Time Error Correction” for the power system. This is utilised where the power system synchronising clocks are tied to the plant load
  • Extensive user selected control functionality
  • Extensive alarm functions
  • On-board diagnostic
  • Dedicated communications port for customer PLC/DCS interface
  • Compatible with all Si-TEC support PC software
  • 24 Si-TEC unit capacity with standard system

Engine Types & Applications

Sugar Mills
Paper Mills
Standby Power Systems
Hospitals
Mining
Oil & Gas
Utility Feeder Control

Si-TEC GSM BTB

For Bus Tie Synchronising (2-way) between Generator Buses

  • Automatic synchronizing of Bus Tie CB for integration of split bus system to common bus, in island mode (reference point may be selected based on “Swap Grid Synchronising ” mode).
  • Features also include “Dead Bus”close function as well as “Permissive Sync”function
  • Up to 24 modules (combination of GSM and CGC) may communicate in a single network
  • Standby power stations where “Bump less” (delayed soft) transfer back to the supply grid is required, with no exporting of power to the grid
  • Standby power stations used for “Peak Shaving” (peak lopping) applications where generators parallel with the supply grid during “Peak Demand” periods, setting a maximum limit for the imported grid supply
  • Prime power stations that are parallel and “Base Loaded” (constant supply) to the supply grid, with provision to “Export kW” to suit the supply grid
  • Prime power stations that supply power for plant load requirements, and export excess power to the supply grid (e.g. sugar mills, other industries, etc.)
  • Prime power stations that supply power for plant load requirements, and require “Standby or Back Up” power from the supply grid
  • Power stations that are “Islanded” (isolated) and require “True Time Error Correction” for the power system. This is utilised where the power system synchronising clocks are tied to the plant load
  • Extensive user selected control functionality
  • Extensive alarm functions
  • On-board diagnostic
  • Dedicated communications port for customer PLC/DCS interface
  • Compatible with all Si-TEC support PC software
  • 24 Si-TEC unit capacity with standard system

Engine Types & Applications

Sugar Mills
Paper Mills
Standby Power Systems
Hospitals
Mining
Oil & Gas
Utility Feeder Control

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