• MVME2400  Multiple input Multiple Output (MIMO) module  Features 16 channels of 48V DC input with current sink function
  • MVME2400  Multiple input Multiple Output (MIMO) module  Features 16 channels of 48V DC input with current sink function

MVME2400 Multiple input Multiple Output (MIMO) module Features 16 channels of 48V DC input with current sink function

No.MVME2400
The MVME2400 is a multi-input multiple-output (MIMO) module from Motorola with unique features and functions. The module uses a low-power, high-performance PowerPC 750 microprocessor and uses Peripheral Component Interconnect (PCI) bus technology to bridge the processor/memory bus to the PCI bus and also provides a VME interface. This enables the MVME2400 processor module to achieve the best level of flexibility and performance in a single VME slot.
  • MVME2400  Multiple input Multiple Output (MIMO) module  Features 16 channels of 48V DC input with current sink function
Desciption
The MVME2400 is a multi-input multiple-output (MIMO) module from Motorola with unique features and functions. The module uses a low-power, high-performance PowerPC 750 microprocessor and uses Peripheral Component Interconnect (PCI) bus technology to bridge the processor/memory bus to the PCI bus and also provides a VME interface. This enables the MVME2400 processor module to achieve the best level of flexibility and performance in a single VME slot.

The MVME2400 has 16 channels of 48V DC input and current sink function, which means that it is able to receive and process 16 input signals, each of which is 48V DC, and is also able to sink current. This design makes the MVME2400 ideal for use in complex control systems, such as large telescopes, manual muscle strength tests, and other applications.

In addition, the MVME2400 supports IEEE P1386.1-compatible PMC slots with dual PMC ports, front panel support and P2 input/output. This gives the MVME2400 the flexibility to scale I/O capabilities to meet changing input/output requirements, while reusing the same underlying platform and reducing long-term cost ownership.

Another important feature of the MVME2400 is the VME64 expansion connector, which supports 5-row 160 DIN pin connectors, replacing the 3-row 96-pin connectors previously used on the P1 and P2 VME. This design provides increased performance and flexibility, enabling the MVME2400 to be adapted to a wider range of application scenarios.

Overall, the MVME2400 is a powerful and stable multi-input multiple-output module suitable for a variety of complex control systems and application scenarios. Its unique characteristics and flexible scalability make it ideal for applications such as industrial automation, process control, military and aerospace.

The MVME2400 is suitable for a variety of complex application scenarios, especially those requiring high performance and flexible scalability.

First, the MVME2400 has a wide range of applications in the control systems of large telescopes. Due to its multi-input and multi-output characteristics, as well as the ability to support high performance and flexible scaling, it can handle a large number of complex input signals, providing stable and precise control for large telescopes.

Secondly, the MVME2400 is also suitable for applications such as manual muscle strength testing. In these applications, muscle strength data needs to be precisely measured and processed, and the MVME2400's high performance and flexibility make it an ideal choice.

In addition, the MVME2400 supports IEEE P1386.1-compatible PMC slots with dual PMC ports, front panel support and P2 input/output. This gives the MVME2400 the flexibility to scale I/O capabilities to meet changing input/output requirements, while reusing the same underlying platform and reducing long-term cost ownership. Therefore, it can also be applied in the field of industrial automation and process control where flexible expansion of I/O capabilities is required.

Overall, the MVME2400 is a powerful and stable multi-input multi-output module suitable for a variety of complex control systems and application scenarios, especially in the fields of large telescope control systems, manual muscle force testing, industrial automation and process control.