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GE VME-1064 High-Performance Industrial Control Module, High-Speed Data Processing

GE VME-1064 is a VMEbus PMC (PCI Mezzanine Card) carrier board under General Electric (GE), serving as a core component for expanding PMC mezzanine card functions in industrial automation control systems, compatible with VME64 standard bus systems. Specifically designed for industrial embedded control, data acquisition and processing scenarios, its core function is to provide VME-to-PCI bridge conversion (using UNIVERSE CA91C142 bridge chip), supporting the installation of 2 single-size or 1 double-size PMC modules. All PMC I/O signals are routed to the VMEbus connector P2 according to the IEEE P1386 standard, enabling high-speed data interaction between the VMEbus system and PMC modules, and providing a hardware foundation for VME systems to expand functions such as communication, I/O control, and data processing. The product adopts a 6U standard VME board design with a mechanical keying positioning system, supporting hot-swappable replacement of PMC modules. It has built-in comprehensive power management and fault diagnosis functions, compatible with Class I, Div. 2 hazardous areas and conventional industrial environments, with a robust structure and easy installation. It can operate stably for a long time in complex industrial electromagnetic interference environments, consistent with GE's core technical positioning in the field of industrial embedded control, and widely used in various VMEbus control scenarios requiring high system scalability and reliability.

GE VME-1064 High-Performance Industrial Control Module, High-Speed Data Processing

 

Specific Parameters

Brand GE (General Electric)

Product Series VME-PMC Carrier Board Series

Product Type VMEbus PMC Carrier Board, VME-PCI Bridge Module, Industrial Embedded Expansion Card

Model VME-1064

VMEbus Standard Compliant with VME64 Standard

Bridge Chip UNIVERSE CA91C142

Number of PMC Slots 2 single-size PMC slots (or 1 double-size PMC slot)

Signal Routing All PMC I/O signals routed to VMEbus connector P2 (compliant with IEEE P1386 standard)

Board Dimensions 6U standard VME board (233.35mm×160mm)

Rated Power Supply +5V DC, +12V DC, -12V DC (compliant with VME power specifications)

Maximum Power Consumption 15W

Operating Temperature Range -40℃ to +85℃

Storage Temperature Range -55℃ to +125℃

Relative Humidity 5% to 95%, Non-Condensing

Isolation Voltage 1500V AC (between VMEbus and PMC modules)

Data Transfer Rate Up to 320MB/s (VME-PCI bridge)

Physical Weight 0.8kg

Mounting Method VME standard rack mounting

Compatible System VME64 standard bus control system

Core Functions VME-PCI Bridge, PMC Module Expansion, Signal Routing, Power Management, Fault Diagnosis

Mechanical Positioning Mechanical keying positioning system to prevent incorrect installation

Hot Swap Support Supports hot-swappable replacement of PMC modules

Hazardous Area Adaptation Class I, Div. 2 Hazardous Areas

Certification Standards CE, UL, CSA

Warranty Period 12 Months

Product Performance

Adopting the high-performance UNIVERSE CA91C142 bridge chip, it realizes high-speed data transmission from VME to PCI with a maximum transmission rate of 320MB/s, ensuring the real-time and efficiency of data interaction between the VMEbus system and PMC modules, and meeting the high requirements of industrial control for data processing speed.

Supports the installation of 2 single-size or 1 double-size PMC modules, providing flexible function expansion capabilities for the VMEbus system. It can add different types of PMC modules such as communication, I/O control, data acquisition and image processing according to application requirements, adapting to diversified industrial control scenarios.

All PMC I/O signals are strictly routed to the VMEbus connector P2 according to the IEEE P1386 standard, ensuring the compatibility and stability of signal transmission, avoiding signal conflicts or transmission errors, and guaranteeing the overall operational reliability of the system.

Adopting a 6U standard VME board design, it complies with the mechanical installation specifications of industrial embedded systems, can be seamlessly integrated into various VME standard racks, and does not require large-scale modification of the existing system, with strong versatility.

Equipped with a mechanical keying positioning system to prevent incorrect installation of PMC modules, reducing the risk of module damage. It also supports hot-swappable replacement of PMC modules, enabling module maintenance or upgrade without shutting down the system, greatly improving system maintenance efficiency.

It has built-in comprehensive power management and fault diagnosis functions, which can real-time monitor the power supply status and operating status of PMC modules, feedback fault information in a timely manner, facilitate staff to quickly locate fault points, reduce system downtime, and ensure continuous and stable operation of the system.

The isolation voltage reaches 1500V AC, with excellent anti-electromagnetic interference performance, which can resist complex electromagnetic interference in industrial fields, prevent voltage fluctuations or electromagnetic interference from damaging modules and systems, and ensure stable signal transmission and safe operation of modules.

The operating temperature range covers -40℃ to +85℃, which can operate stably under extreme industrial ambient temperature conditions without performance degradation, with a wide adaptation range, meeting the usage requirements of various harsh industrial environments.

Compatible with Class I, Div. 2 hazardous areas, certified by CE, UL and CSA safety standards, with a high safety level, it can be directly applied to VMEbus control systems in hazardous areas such as petrochemical and power energy industries, effectively ensuring the safety of equipment and personnel.

The maximum power consumption is only 15W, with low power consumption operation characteristics, reducing system energy consumption, lowering operating costs, and conforming to the development needs of industrial control systems for energy conservation and consumption reduction.

Application Fields

Petrochemical Industry

Power Energy Industry

Aerospace Industry

National Defense and Military Industry

Metallurgical Steel Industry

Industrial Automation Industry

Rail Transit Industry

Medical Equipment Industry

Marine Engineering Industry

Embedded Control System Field

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