描述
产品细节说明:MVME6100 MOTOROLA VMEbus单板计算机
MVME6100结合了恩智浦MPC7457 PowerPC®处理器和AltiVec协处理器,实现了高性能的数据处理能力。该产品采用Tundra Tsi148 VME总线接口芯片设计,支持双边缘源同步传输(2eSST)VME总线性能,使得VME总线在大多数情况下能以每秒320MB的实际带宽运行。
- 高性能:凭借高性能的处理器和高速总线设计,MVME6100能够快速、高效地处理大量数据。
- 高带宽:支持2eSST协议,VME总线传输速率高达320MB/s。
- 扩展性强:支持多种扩展接口和插槽,用户可以根据需求添加额外的功能模块。
- 操作系统支持:支持多种操作系统,包括VxWorks和Linux等,提供稳定的运行环境和丰富的软件开发工具。
- 可靠性高:经过严格的测试和验证,具有高可靠性和稳定性,适用于恶劣的工业环境。
产品详情参数 :MVME6100 MOTOROLA VMEbus单板计算机
- 处理器:MPC7457 PowerPC®处理器,运行频率高达1.267GHz,配备AltiVec协处理器,用于并行处理。
- 内存:板载DDR ECC内存,容量高达2GB,满足苛刻的应用需求。
- 存储:128MB闪存,用于存储程序和数据。
- 总线设计:支持133MHz的主机总线和DDR内存总线,确保高速数据传输。
- 接口:
- VMEbus接口:采用Tundra Tsi148 VMEbus接口芯片,支持2eSST协议。
- PMC-X接口:两个33/66/100 MHz PMC-X接口,允许添加符合行业标准的特定应用模块。
- 网络接口:双千兆以太网接口,实现高性能联网。
- 其他I/O接口:可能包括USB、串行端口等
MVME6100 MOTOROLA 应用领域:
MVME6100广泛应用于国防、航空航天、工业自动化等领域。在国防和航空航天领域,它适用于指挥和控制应用,如海军掩体系统、固定地面系统和侦察机系统等。在工业自动化领域,它适用于半导体工艺设备(SPE)、自动测试设备(ATE)和其他各种高端工业自动化应用。
Product Details: MVME6100 MOTOROLA VMEbus Single Board Computer
MVME6100 combines NXP MPC7457 PowerPC ® The processor and AltiVec co processor achieve high-performance data processing capabilities. This product adopts the Tundra Tsi148 VME bus interface chip design, which supports dual edge source synchronous transmission (2eSST) VME bus performance, enabling the VME bus to operate at an actual bandwidth of 320MB per second in most cases.
High performance: With its high-performance processor and high-speed bus design, the MVME6100 can quickly and efficiently process large amounts of data.
High bandwidth: Supports 2eSST protocol, with a VME bus transmission rate of up to 320MB/s.
Strong scalability: Supports multiple expansion interfaces and slots, allowing users to add additional functional modules according to their needs.
Operating system support: Supports multiple operating systems, including VxWorks and Linux, providing a stable operating environment and rich software development tools.
High reliability: After rigorous testing and verification, it has high reliability and stability, suitable for harsh industrial environments.
Product details and parameters: MVME6100 MOTOROLA VMEbus single board computer
Processor: MPC7457 PowerPC ® Processor, operating at a frequency of up to 1.267GHz, equipped with AltiVec coprocessor for parallel processing.
Memory: Onboard DDR ECC memory with a capacity of up to 2GB, meeting demanding application requirements.
Storage: 128MB flash memory, used for storing programs and data.
Bus design: Supports 133MHz host bus and DDR memory bus to ensure high-speed data transmission.
Interface:
VMEbus interface: using Tundra Tsi148 VMEbus interface chip, supporting 2eSST protocol.
PMC-X interface: Two 33/66/100 MHz PMC-X interfaces allow the addition of specific application modules that comply with industry standards.
Network interface: Dual Gigabit Ethernet interface for high-performance networking.
Other I/O interfaces: may include USB, serial ports, etc
MVME6100 MOTOROLA Application Fields:
MVME6100 is widely used in fields such as national defense, aerospace, and industrial automation. In the fields of national defense and aerospace, it is suitable for command and control applications such as naval bunker systems, fixed ground systems, and reconnaissance aircraft systems. In the field of industrial automation, it is suitable for semiconductor process equipment (SPE), automatic test equipment (ATE), and various other high-end industrial automation applications.
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ABB 5SHX1060H0003 3BHB020538R0001 IGCT M | ABB 5SHX1060H0003 3BHB020538R0001 IGCT Module |
ABB Silicon controlled 5SHX1060H0002 IGC | ABB Silicon controlled 5SHX1060H0002 IGCT Module |
ABB 5SHX1060H0001 3BHB003230R0101 Commut | ABB 5SHX1060H0001 3BHB003230R0101 Commutated Thyristor |
ABB IGCT Module 5SHX08F4502 Commutated T | ABB IGCT Module 5SHX08F4502 Commutated Thyristor |
ABB Gate Module 5SHX0860H0001 Commutated | ABB Gate Module 5SHX0860H0001 Commutated Thyristor |
ABB IGCT 5SHX0845F0001 Silicon controlle | ABB IGCT 5SHX0845F0001 Silicon controlled |
ABB MODULE 5SXE050151 3BHB003151P104 IGC | ABB MODULE 5SXE050151 3BHB003151P104 IGCT |
ABB 5SHX06F6004 3BHB003387R0101 IGCT MOD | ABB 5SHX06F6004 3BHB003387R0101 IGCT MODULE |
ABB 5SHX0660F0002 Silicon controlled | ABB 5SHX0660F0002 Silicon controlled |
ABB GVC703AE01 3BHL00386P0101 Silicon co | ABB GVC703AE01 3BHL00386P0101 Silicon controlled |
ABB IGCT 5SHX0660F0001 3BHB003387R0101 | ABB IGCT 5SHX0660F0001 3BHB003387R0101 |
ABB 5SHX0445D0001 Gate turn-off thyristo | ABB 5SHX0445D0001 Gate turn-off thyristor module |
ABB 5SHX0360D0001 Gate Module | ABB 5SHX0360D0001 Gate Module |
ABB 5SHY5055L0002 3BHE019719R0101 Commut | ABB 5SHY5055L0002 3BHE019719R0101 Commutated Thyristor |
ABB Silicon controlled AC10272001R0101 5 | ABB Silicon controlled AC10272001R0101 5SXE08-0167 |
ABB IGCT 5SHY5045L0020 5SXE10-0181 Commu | ABB IGCT 5SHY5045L0020 5SXE10-0181 Commutated Thyristor |
ABB 5SHY4045L0006 3BHB030310R0001 IGCT M | ABB 5SHY4045L0006 3BHB030310R0001 IGCT MODULE |
ABB 5SHY4045L0004 3BHB021400R0002 IGCT M | ABB 5SHY4045L0004 3BHB021400R0002 IGCT MODULE |
ABB 5SHY4045L0003 IGCT MODULE | ABB 5SHY4045L0003 IGCT MODULE |
ABB IGCT 5SHY4045L0002 silicon controlle | ABB IGCT 5SHY4045L0002 silicon controlled |
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