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GE IS215VCMIH2BB IS200VCMIH2BCC Communication interface board

GE IS215VCMIH2BB is an industrial-grade analog I/O board of the GE Mark V series. Its core function is to scale, condition and transmit 18 channels of analog signals collected by terminal boards of I/O cores R1/R2/R3 in gas turbine control systems, supporting multi-type signal processing such as LVDT input, servo valve output and thermocouple signals. Output parameters are configured via hardware jumpers, providing accurate data support for gas turbine control. GE IS200VCMIH2BCC is a communication interface board of the GE Mark VI series, serving as an internal communication control card for the Speedtronic turbine management system. It enables data interaction between I/O cards within the rack and across modules, integrating IONet bus interface and multi-protocol communication capabilities to meet the distributed interconnection needs of modern turbine control systems. Both modules adopt industrial-grade rugged design, with an operating temperature range of -20°C to 60°C, adapting to Mark V/VI series control systems respectively, and are widely used in power, oil and gas and other scenarios with strict reliability requirements.

GE IS215VCMIH2BB IS200VCMIH2BCC Communication interface board

 

Specific Parameters

Core and Function Parameters

Product Type IS215VCMIH2BB: Analog I/O Board; IS200VCMIH2BCC: Communication Interface Board (Internal Interconnection Control Type)

Manufacturer GE (GE Automation & Controls)

Model IS215VCMIH2BB, IS200VCMIH2BCC

Series IS215VCMIH2BB: Mark V Series; IS200VCMIH2BCC: Mark VI Series (Speedtronic Product Line)

Core Functions Signal Acquisition, Scaling & Conditioning, Data Transmission; Internal Communication Control, I/O Card Interconnection, Protocol Conversion

Compatible Systems IS215VCMIH2BB: GE Mark V Gas Turbine Control System, I/O Cores R1/R2/R3; IS200VCMIH2BCC: GE Mark VI Steam/Gas Turbine Management System, Central Control Module Slot 1

Supported Signal Types IS215VCMIH2BB: LVDT Input, Servo Valve Output, Thermocouple Input/Output, 4-20mA Signal, Vibration Input, Relay Driver Output, Pulse Input, Voltage Input, Generator/Line Signals; IS200VCMIH2BCC: IONet Bus Signals, Control Module Interconnection Signals

Channel Count IS215VCMIH2BB: 18 Signal Conditioning Channels; IS200VCMIH2BCC: 3 IONet Communication Channels

Communication Interfaces IS215VCMIH2BB: RS485 Interface, 3PL Connector, JE Connector; IS200VCMIH2BCC: 3 IONet Interfaces, 9-pin RS232 Serial Interface, Backplane Bus Interface

Supported Protocols IS215VCMIH2BB: Modbus RTU, CAN; IS200VCMIH2BCC: IONet Protocol, Industrial Ethernet Protocol

Configuration Method IS215VCMIH2BB: Hardware Jumpers (J1/J2 for Output Circuit Selection, J5/J6 for Current Range Configuration, J7 for Port Testing); IS200VCMIH2BCC: Software Configuration

Diagnostic Functions Signal Validity Monitoring, Fault Status Feedback, Hardware Self-test; Power Bus Monitoring, Communication Anomaly Alarm

Installation Method Modular Installation, Compatible with System I/O Core Rack; Central Control Module Slot Installation

Certification Standards Industrial Automation Equipment Certification, ISO-9000-3 Quality Standard Certification

Status Indication Independent LED Indicators for Power Normal, Operation Status, Communication Status, Fault Alarm; 20 Groups of LED Indicators (Arranged in Three Sets)

Electrical and Performance Parameters

Power Supply Voltage IS215VCMIH2BB: Industrial DC Power Supply; IS200VCMIH2BCC: 24VDC±10%, Built-in +5V, 12V, 15V, 28V Power Buses

Power Consumption IS200VCMIH2BCC: 15W-25W (Typical), Peak ≤30W

Processor IS215VCMIH2BB: Dedicated Signal Processing Chip; IS200VCMIH2BCC: FPGA (Field Programmable Gate Array)

Output Current Range IS215VCMIH2BB: 20mA or 200mA (Jumper Selectable)

Overload Capacity IS215VCMIH2BB: 150% Overload Capacity (1 Minute Duration)

Efficiency IS215VCMIH2BB: Operating Efficiency Over 95%

Response Time Signal Processing Response Time

Voltage Monitoring IS200VCMIH2BCC: Power Bus Alarm Threshold 3.5% (5.5% for 28V Bus)

Isolation Level Electrical Isolation Between Channels, Complies with Industrial Anti-interference Standards

Physical and Environmental Parameters

Overall Dimensions IS215VCMIH2BB: 20cm×25cm×30cm; IS200VCMIH2BCC: Standard Slot Size (Compatible with Mark VI Control Module)

Weight IS215VCMIH2BB: Approximately 2.5kg; IS200VCMIH2BCC: Complies with Series Module Standard Weight

Operating Temperature Range -20°C to 60°C

Storage Temperature Range -40°C to 85°C

Relative Humidity 5%-95% (non-condensing, no dew)

Housing Material Industrial-grade Flame-retardant Rugged Housing; Printed Circuit Board with Double-sided Component Layout

Vibration Resistance Complies with Industrial Critical Equipment Vibration Standards

Shock Resistance Complies with Industrial Critical Equipment Shock Standards

Product Performance

Precise signal processing capability: IS215VCMIH2BB supports 18 channels of multi-type signal conditioning, 150% overload tolerance and 95% high-efficiency operation, adapting to high-frequency signal acquisition needs of gas turbines

Dedicated communication interconnection design: IS200VCMIH2BCC integrates 3 IONet channels and FPGA chip, enabling high-speed data interaction across modules and ensuring collaborative stability of turbine control systems

Flexible hardware configuration: IS215VCMIH2BB quickly sets output parameters via jumpers without complex programming, ensuring high on-site commissioning efficiency

Industrial-grade environmental adaptability: Wide operating temperature range and channel isolation technology resist electromagnetic interference and harsh working conditions with long mean time between failures

Seamless adaptation to corresponding generation control systems: IS215VCMIH2BB is perfectly compatible with Mark V I/O cores, and IS200VCMIH2BCC accurately matches Mark VI slot specifications with excellent compatibility

Comprehensive diagnostic mechanism: Combined with power monitoring, signal verification and LED status indication, enabling rapid fault location and low operation and maintenance costs

Modular structure design: Easy installation and disassembly, supporting system expansion and spare part replacement with high deployment flexibility

Compliance with international quality standards: Certified by ISO-9000-3, with reliable component quality and strong stability for long-term continuous operation




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