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General Electric IS200VSPAH1ACC Mark VI System Monitoring Card Assembly
General Electric IS200VSPAH1ACC Mark VI System Monitoring Card Assembly
General Electric IS200VSPAH1ACC Mark VI System Monitoring Card Assembly
General Electric IS200VSPAH1ACC Mark VI System Monitoring Card Assembly
Popular Product

General Electric IS200VSPAH1ACC Mark VI System Monitoring Card Assembly


Manufacturer:GE

Product Number:IS200VSPAH1ACC

Product Type:Monitoring Card Assembly

Origin:USA

Dimensions:178 x 330.2 x 43 mm

Weight:0.25kg

Views:71

Payment Methods:T/T, PayPal, Western Union

Condition:New & In Stock

Warranty:1 Year

Lead Time:1-3 Working Days

Certificate:COO

Courier partners:DHL, UPS, TNT, FedEx and EMS.

Business hours:7*24

Contact Sales

Product Description

The IS200VSPAH1ACC is a monitoring card assembly developed by GE for use in the Mark VI Turbine Control System. Designed for robust industrial environments, this module offers reliable system diagnostics and communication interfaces, ideal for gas and steam turbine applications.

Technical Specifications

Parameter Description
Product Name IS200VSPAH1ACC
System Compatibility GE Mark VI Control System
Configuration Simplex or TMR (Triple Modular Redundant)
LED Indicators 3 front-panel status LEDs
Connectors (Front) 2 D-shell connectors
Backplane Connections 2 dedicated connectors
FPGA XILINX field-programmable gate array
Mounting Rack-mounted with faceplate screws
Power Supply 120/240 V AC or 125 V DC via control rack
Communication UDH (Ethernet), IONet (I/O network)
I/O Support Local and Remote
Dimensions (W x D x H) 178 × 330.2 × 43 mm
Weight 0.25 kg

Applications

Advantages

  • Direct Turbine Interface: Eliminates interposing devices, increasing system reliability.

  • Flexible Integration: Supports both simplex and TMR setups.

  • Enhanced Communication: Integrates with UDH and IONet for high-speed data exchange.

  • Stable Power Supply: Converts input to 125 V DC for consistent module operation.

  • Secure Rack Mounting: Dual screws and connectors for vibration-resistant installation.

FAQ

Q1: What system is IS200VSPAH1ACC used in?

A1: It is used in the GE Mark VI control system for turbine control.

Q2: Is the module compatible with both simplex and TMR configurations?

A2: Yes, it supports both control configurations.

Q3: What type of network does it use for I/O communication?

A3: It uses the high-speed IONet for I/O connections.

Q4: What indicators are present on the module?

A4: It features three LED status indicators on the front panel.

Q5: Can this card be used with remote I/O?

A5: Yes, it supports both local and remote I/O configurations.

Q6: Does the board use fiber-optic communication?

A6: Yes, fiber-optic communication is supported through UDH.

Q7: What type of FPGA is used on the board?

A7: The board includes a XILINX FPGA for flexible signal processing.

Q8: How is the board secured in the rack?

A8: It is secured with a faceplate and two set screws.

Q9: Can the UDH network be redundant?

A9: Yes, redundant cable operation is optional for UDH.

Q10: What are the power requirements of the board?

A10: It requires power converted to 125 V DC from either 120/240 V AC or 125 V DC input.

Popular Product

General Electric IS200VSPAH1ACC Mark VI System Monitoring Card Assembly

Manufacturer:GE

Product Number:IS200VSPAH1ACC

Product Type:Monitoring Card Assembly

Origin:USA

Dimensions:178 x 330.2 x 43 mm

Weight:0.25kg

Views:71

Payment Methods:T/T, PayPal, Western Union

Condition:New & In Stock

Warranty:1 Year

Lead Time:1-3 Working Days

Certificate:COO

Courier partners:DHL, UPS, TNT, FedEx and EMS.

Business hours:7*24

Contact Sales

Product Description

The IS200VSPAH1ACC is a monitoring card assembly developed by GE for use in the Mark VI Turbine Control System. Designed for robust industrial environments, this module offers reliable system diagnostics and communication interfaces, ideal for gas and steam turbine applications.

Technical Specifications

Parameter Description
Product Name IS200VSPAH1ACC
System Compatibility GE Mark VI Control System
Configuration Simplex or TMR (Triple Modular Redundant)
LED Indicators 3 front-panel status LEDs
Connectors (Front) 2 D-shell connectors
Backplane Connections 2 dedicated connectors
FPGA XILINX field-programmable gate array
Mounting Rack-mounted with faceplate screws
Power Supply 120/240 V AC or 125 V DC via control rack
Communication UDH (Ethernet), IONet (I/O network)
I/O Support Local and Remote
Dimensions (W x D x H) 178 × 330.2 × 43 mm
Weight 0.25 kg

Applications

Advantages

  • Direct Turbine Interface: Eliminates interposing devices, increasing system reliability.

  • Flexible Integration: Supports both simplex and TMR setups.

  • Enhanced Communication: Integrates with UDH and IONet for high-speed data exchange.

  • Stable Power Supply: Converts input to 125 V DC for consistent module operation.

  • Secure Rack Mounting: Dual screws and connectors for vibration-resistant installation.

FAQ

Q1: What system is IS200VSPAH1ACC used in?

A1: It is used in the GE Mark VI control system for turbine control.

Q2: Is the module compatible with both simplex and TMR configurations?

A2: Yes, it supports both control configurations.

Q3: What type of network does it use for I/O communication?

A3: It uses the high-speed IONet for I/O connections.

Q4: What indicators are present on the module?

A4: It features three LED status indicators on the front panel.

Q5: Can this card be used with remote I/O?

A5: Yes, it supports both local and remote I/O configurations.

Q6: Does the board use fiber-optic communication?

A6: Yes, fiber-optic communication is supported through UDH.

Q7: What type of FPGA is used on the board?

A7: The board includes a XILINX FPGA for flexible signal processing.

Q8: How is the board secured in the rack?

A8: It is secured with a faceplate and two set screws.

Q9: Can the UDH network be redundant?

A9: Yes, redundant cable operation is optional for UDH.

Q10: What are the power requirements of the board?

A10: It requires power converted to 125 V DC from either 120/240 V AC or 125 V DC input.

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