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  • GE DS3800NVRC Controller Card
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  • GE DS3800NVRC Controller Card

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia

    GE DS3800NVRC Controller Card

    • ¥22500.00
      ¥24520.00
      ¥22500.00
      ¥22500.00
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    Weight:3.600KG
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    • (Inventory: 33)
Description

GE DS3800NVRC Controller Card


GE DS3800NVRC Controller Card

Part Number DS3800NVRC Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI/VIe Function Module Availability In StockDS3800NVRC is an SVR Controller Card manufactured and designed by General Electric as part of the Mark IV Series used in GE Speedtronic Gas Turbine Control Systems. SVR (Static Var Reactor) Controller Card is a type of electronic control card used in power system equipment such as Static Var Compensators (SVCs) and Statcoms. These devices are used to control the reactive power flow in power systems and improve voltage stability. 

The SVR Controller Card is responsible for monitoring the power system voltage and adjusting the output of the SVC or Statcom accordingly. It uses advanced control algorithms to determine the required reactive power compensation and sends signals to the power electronic devices to adjust the output. The SVR Controller Card also communicates with other control systems in the power system, such as the SCADA (Supervisory Control and Data Acquisition) system, to exchange data and perform coordinated control. The SVR Controller Card is an essential component in modern power systems, as it helps to improve the power system stability, increase power transfer capacity, and reduce transmission losses. It is typically designed to operate reliably in harsh environments, with high temperatures, humidity, and electromagnetic interference.

SPECIFICATIONS:

Part Number: DS3800NVRC
Manufacturer: General Electric
Series: Mark IV
Product Type: SVR Controller Card
Power Requirements: +5 V dc
Power supply voltage: 28 V dc
Operating temperature: -40 to +65°C
Size: 15.7 cm high x 17.5 cm
Weight: 0.5kg
Repair: 3-7 Day
Availability: In Stock
Country of Origin: United States

Compatibility 

ƒ Compatible with any Series 90-30 CPU except IC693CPU321 and IC693CPU340. Configuration size is limited for CPU311/313/331, as described on the next page. 

ƒ Requires release 8.0 CPU firmware. The latest Release 10 is recommended, if available for the particular CPU. 

ƒ Requires CIMPLICITY Machine Edition Logic Developer PLC version 3.0 plus the appropriate service pack or special (or a version later than 3.0). 

ƒ Not compatible with the VersaPro™, Control, or Logicmaster™ programming software. 

ƒ The Series 90-30 Hand-Held Programmer (IC693PRG300) cannot be used to configure this module. New Features The Series 90-30 DeviceNet Master Module allows a Series 90-30 PLC to send and receive I/O data from a DeviceNet network. 

Module features include: 

ƒ Support for all standard data rates (125K, 250K, 500K) 

ƒ Support for 255 bytes input data transfer and 255 bytes output data transfer per slave 

ƒ Support for 3972 bytes of input data transfer and 3972 bytes of output data transfer per master 

ƒ Support for two I/O connections per Slave - Typically one connection is used for Polled and the other is used for Strobe, Cyclic, or COS 

ƒ Support for Poll, Strobe, Cyclic and COS I/O Connections, Fragmented I/O and Explicit Messaging 

ƒ Support for Unconnected Message Manager (UCMM) with 1 proxy connection per slave device 

ƒ Support for configuration of the global scan rate 

ƒ Support for configuration of update rates for Poll and COS/Cyclic on a connection basis 

ƒ Support for PLC-application initiated explicit messaging via a COMMREQ 

ƒ Master can be configured to operate as a slave simultaneously with master operation 

ƒ Configurable fault behavior on loss of communication 

ƒ Reports loss or reestablishment of communication with slaves in PLC fault table (configurable) 

ƒ Support for 64 network device status bits (note: the bit for the master itself is always zero) 

ƒ Firmware update via service port on module


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