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GE IS215VCMIH2CC VME Bus Master Controller Board
- Product Details
- FAQs
- Related
- Contact Us
- Packing & Delivery
- Product Ratings
Product Introduction
The GE IS215VCMIH2BE VME Bus Master Controller Board is a high-performance control module designed for industrial automation and turbine control applications within GE’s Mark VI and Mark VIe control systems. As a VME bus master controller, it serves as the communication and coordination hub between multiple boards, managing data transfer, synchronization, and execution of real-time tasks.
Built with advanced digital processing capability, the IS215VCMIH2BE ensures deterministic performance, allowing it to handle high-speed communication across the VME backplane. Its design emphasizes reliability, redundancy, and fault tolerance, making it a critical part of mission-critical turbine control and monitoring systems.
This controller board is equipped with integrated communication interfaces, robust error-checking protocols, and a firmware architecture optimized for continuous operation in harsh industrial environments.
Product Specifications
| Parameter | Specification |
|---|---|
| Model Number | IS215VCMIH2BE |
| Product Type | VME Bus Master Controller Board |
| System Compatibility | GE Mark VI / Mark VIe control systems |
| Bus Standard | VME64 backplane bus |
| Processing Unit | High-speed embedded processor for deterministic control |
| Memory | Onboard SRAM and flash for program execution and data retention |
| Communication Interfaces | VME bus interface, serial channels, Ethernet (if configured) |
| Power Supply Requirement | +5 VDC, +12 VDC from backplane |
| Operating Temperature | 0°C to +60°C (industrial standard) |
| Storage Temperature | -40°C to +85°C |
| Humidity | 5% to 95% non-condensing |
| Cooling | Forced-air convection via system chassis |
| Compliance | CE, UL, CSA industrial certifications |
| Dimensions | 330 × 100 × 40 mm |
| Weight | 0.5 kg |
Applications
The IS215VCMIH2BE is widely applied in industries requiring high-speed communication and reliable system coordination:
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Gas and Steam Turbine Control: Centralized control of turbine operation, synchronization, and protection.
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Power Generation Plants: Reliable system coordination for power output stability and efficiency.
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Industrial Automation Systems: Manages communication between distributed control modules.
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Petrochemical Facilities: Ensures stable operation of large rotating equipment.
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Aerospace Test Stands: Provides deterministic control and monitoring for testing high-speed machinery.
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Process Industries: Enhances reliability in mission-critical continuous production systems.
Advantages
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High-Speed Data Processing: Optimized for deterministic performance in real-time control applications.
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VME Bus Master Capability: Serves as the communication hub across the system backplane.
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Robust Reliability: Built with redundant design options to minimize downtime.
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Industrial-Grade Build: Withstands harsh environments with strong mechanical and thermal resilience.
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Scalability: Easily integrates with other GE Mark VI/VIe modules for expanded functionality.
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Fault Tolerance: Advanced error-checking protocols ensure data integrity and communication stability.
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Simplified Maintenance: Modular design allows quick replacement and reduced system downtime.
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Long-Term Support: Backed by GE’s industrial control expertise and lifecycle management.
FAQ
-
What is the primary function of the IS215VCMIH2BE board?
It operates as a VME bus master controller, managing communication and control tasks across the VME backplane. -
Which GE control systems support this board?
It is primarily designed for use within GE Mark VI and Mark VIe control systems. -
Does this board support redundant configurations?
Yes, it can be configured in redundant systems for high reliability in turbine applications. -
What communication standard does it use?
It uses the VME64 bus standard for data transfer between modules. -
How does the board handle fault detection?
It uses hardware-level error checking and firmware diagnostics for fault isolation. -
Is external cooling required for this module?
No, it relies on forced-air convection within the chassis for thermal management. -
What type of memory does it include?
It includes both SRAM for fast program execution and flash memory for data retention. -
Can it operate in high-vibration environments?
Yes, it is designed with industrial-grade mechanical resilience suitable for turbines and rotating machinery. -
How is firmware updated on this board?
Firmware updates are loaded via system integration tools provided in the Mark VI/VIe platform. -
What are the typical power requirements?
It draws regulated +5 VDC and +12 VDC from the VME backplane.
Related Models in the Same Series
| Model | Description |
|---|---|
| IS215VCMIH2CC | VME Bus Master Controller, alternative configuration |
| IS200VCRCH1B | VME Rack Controller Module |
| IS215UCVEM09A | Universal Controller for Mark VI systems |
| IS200VVIBH1C | VME Vibration Monitoring Board |
| IS200DSPXH1D | Digital Signal Processor Control Board |
| IS200STCIH6A | Simplex Contact Input Module |
Popular GE Models
| Model | Description |
|---|---|
| IS200SPIDG1A | Speed Input Module for turbine control |
| IS200TBAIH1C | Analog Input Terminal Board |
| IS215ACLEH1A | Application Control Layer Module |
| IS200TRLYH1B | Relay Output Board |
| IS200DSPXH1D | Digital Signal Processor Module |
| IS200VVIBH1C | VME Vibration Monitoring Board |
FAQ
-
What is the primary function of the IS215VCMIH2BE board?
It operates as a VME bus master controller, managing communication and control tasks across the VME backplane. -
Which GE control systems support this board?
It is primarily designed for use within GE Mark VI and Mark VIe control systems. -
Does this board support redundant configurations?
Yes, it can be configured in redundant systems for high reliability in turbine applications. -
What communication standard does it use?
It uses the VME64 bus standard for data transfer between modules. -
How does the board handle fault detection?
It uses hardware-level error checking and firmware diagnostics for fault isolation. -
Is external cooling required for this module?
No, it relies on forced-air convection within the chassis for thermal management. -
What type of memory does it include?
It includes both SRAM for fast program execution and flash memory for data retention. -
Can it operate in high-vibration environments?
Yes, it is designed with industrial-grade mechanical resilience suitable for turbines and rotating machinery. -
How is firmware updated on this board?
Firmware updates are loaded via system integration tools provided in the Mark VI/VIe platform. -
What are the typical power requirements?
It draws regulated +5 VDC and +12 VDC from the VME backplane.
Related Models in the Same Series
| Model | Description |
|---|---|
| IS215VCMIH2CC | VME Bus Master Controller, alternative configuration |
| IS200VCRCH1B | VME Rack Controller Module |
| IS215UCVEM09A | Universal Controller for Mark VI systems |
| IS200VVIBH1C | VME Vibration Monitoring Board |
| IS200DSPXH1D | Digital Signal Processor Control Board |
| IS200STCIH6A | Simplex Contact Input Module |
Popular GE Models
| Model | Description |
|---|---|
| IS200SPIDG1A | Speed Input Module for turbine control |
| IS200TBAIH1C | Analog Input Terminal Board |
| IS215ACLEH1A | Application Control Layer Module |
| IS200TRLYH1B | Relay Output Board |
| IS200DSPXH1D | Digital Signal Processor Module |
| IS200VVIBH1C | VME Vibration Monitoring Board |
| Company Information | ||||||||
| [email protected] | ||||||||
| Mobile | +8613666033393 | |||||||
| +8613666033393 | ||||||||
| 13666033393 | ||||||||
| Add | Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China | |||||||
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