Product Short Description
Technical Specifications
- Processor and Control Chips
- Core Processor: Adopts the PowerPC MPC7457 processor, which operates at a stable frequency of 1.267GHz and works with a 128 – bit AltiVec coprocessor to efficiently handle data – intensive parallel computing tasks.
- Auxiliary Control Chips: Equipped with the MV64360 system controller and Tundra TSI148 VMEbus bridge ASIC. The MV64360 controls two flat PCI buses on the board, and the Tundra TSI148 realizes the high – speed connection between the board and the VMEbus.
- Memory and Storage
- Main Memory: Comes with 512MB DDR SDRAM and can be expanded to a maximum of 2GB. It supports ECC error correction protection, which can effectively ensure the accuracy of data during operation.
- Flash Storage: Configured with 128MB flash memory, which is specially used to store system boot programs, operating systems and key fixed application software to ensure the rapid startup of the board.
Description
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- I/O and Expansion Interfaces
- Basic Communication Interfaces: Integrates dual gigabit Ethernet interfaces with RJ – 45 connectors. It is also equipped with 4 serial ports supporting RS – 232/RS – 485, 2 USB 2.0 interfaces, 1 SCSI interface, and 1 IDE interface for expanding storage. In addition, there is an asynchronous serial port connected to the on – board header.
- Expansion Slots: Has two mezzanine card slots that support IEEE 1386.1 PCI and PCI – X. The PMC slots have 64 – bit functionality and support both front and rear I/O. The I/O pins of the slots are reasonably wired to the corresponding connectors to ensure normal data transmission.
- VMEbus Connection: Connects to the VMEbus through P1 and P2 5 – row 160 – pin connectors that meet the VME64 extension standard, and obtains +12V and +5V power from the VMEbus backplane through these two connectors.
- Physical and Environmental Parameters
- Dimensions and Weight: The dimensions are approximately 210mm × 240mm × 114mm, and the weight is about 0.36 kilograms, which is convenient for installation in standard equipment cabinets.
- Operating Temperature: The operating temperature range is -40°C to +85°C, which can adapt to extreme temperature environments such as high – temperature industrial workshops and low – temperature outdoor operation sites.
- Supported Operating Systems: Compatible with the VxWorks real – time operating system and Linux system. It provides a VxWorks board support package to facilitate developers to carry out software development and deployment.
- I/O and Expansion Interfaces
- Function Features
- High – speed Data Transmission Performance
The integration of the Tundra TSI148 VMEbus interface chip enables the board to support the 2eSST VMEbus protocol, and the actual transmission bandwidth on the VMEbus can reach 320MB/s. The dual gigabit Ethernet interfaces also ensure high – speed network data interaction, which completely eliminates the bottleneck of data transmission in scenarios such as large – volume data collection and processing.
- Strong and Flexible Expansion Capability
The two PMC – X expansion slots support the access of various industry – standard functional modules. The two flat PCI buses controlled by the MV64360 system controller further expand the hardware expansion space. Users can add analog I/O, special communication and other modules according to their needs. Meanwhile, its compatibility with the existing VMEbus infrastructure also reduces the difficulty of system upgrading and transformation.
- Reliable Industrial – grade Stable Operation
The board uses industrial – grade components and has been rigorously anti – impact and anti – vibration tests. The ECC – protected DDR DRAM can automatically detect and correct data errors, avoiding system failures caused by data exceptions. The power supply system can stably convert the input power to the required voltage levels such as 3.3V and 2.5V, ensuring the stable operation of each component.
- Convenient Operation and Maintenance and Integration
The front panel is equipped with BRD FAIL and CPU operation indicator LEDs, as well as a combined reset and abort switch, allowing operators to quickly check the running status of the board and perform emergency operations. The modular design and standard VMEbus interface make the board easy to integrate with other equipment. The configurable Ethernet port and PMC slot working modes also enhance the flexibility of system integration.
- High – speed Data Transmission Performance
- Application Scenarios
- Industrial Automation and Process Control
It is used as the core control unit in manufacturing production lines, chemical plants and water treatment systems. It can collect real – time data such as temperature, pressure and flow from the production site, perform logical operation and process control calculations, and send control signals to actuators such as motors and valves. It also can be applied to CNC machine tools and mechanical processing equipment to realize high – precision control of the processing process.
- National Defense and Aerospace
It is deployed in military equipment such as radar systems and ship – borne control systems. It processes radar detection signals and tactical communication data at high speed, and assists in completing target positioning and tracking tasks. Its ability to work stably in harsh environments such as vibration and extreme temperatures also makes it suitable for data processing tasks in aerospace equipment.
- Power System Monitoring
It is integrated into power plant monitoring systems and substation automation equipment. It monitors the operation parameters of power generation and transmission equipment in real time, processes power load data quickly, and sends early warning signals when abnormal conditions are found. It ensures the safe and stable operation of the power grid and improves the reliability of the power supply system.
- Environmental Monitoring Equipment
It is used in atmospheric, water quality and soil parameter monitoring systems. It collects data from various environmental sensors uniformly, processes and analyzes the collected data through built – in programs, and transmits the results to the central monitoring platform. It provides a reliable data basis for environmental protection decision – making and pollution treatment.
- Industrial Automation and Process Control





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