MOTOROLA MVME2400-0361 VMEbus Single – Board Computer
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MOTOROLA MVME2400-0361 VMEbus Single – Board Computer
The MOTOROLA MVME2400-0361 is a VMEbus – compliant single – board computer. It is part of Motorola’s esteemed lineup of industrial – grade computing products. In a control system’s architecture, it functions as the central processing unit, acting as the brain that coordinates all operations. This module adheres to the VMEbus standard, which is a well – established industrial standard bus. This allows it to integrate seamlessly with other VME – based modules, such as input/output (I/O) cards, communication modules, and storage devices.
Model MVME2400-0361
Brand MOTOROLA
Type VMEbus Single – Board Computer
Processor PowerPC 750, 450 MHz
Memory 512 MB ECC SDRAM
Storage 128 MB Flash ROM, 1 MB NVRAM
Interfaces Two VMEbus interfaces, one RS – 232 interface, one Ethernet interface
Expansion Supports two PCI Mezzanine Cards (PMCs)
Operating Temperature 0°C to 55°C
Humidity Range 5% to 95% RH (non – condensing)
Dimensions Standard VME module size (compatible with VME system enclosures)
The MOTOROLA MVME2400-0361 is a VMEbus – compliant single – board computer. It is part of Motorola’s esteemed lineup of industrial – grade computing products. In a control system’s architecture, it functions as the central processing unit, acting as the brain that coordinates all operations. This module adheres to the VMEbus standard, which is a well – established industrial standard bus. This allows it to integrate seamlessly with other VME – based modules, such as input/output (I/O) cards, communication modules, and storage devices.
MVME2400-0361
It comes equipped with a PowerPC 750 processor running at a frequency of 450 MHz, which provides substantial computing power. For engineers and integrators, the MVME2400-0361 offers great value. Its modular design allows for easy customization. With support for two PCI Mezzanine Cards (PMCs), users can add specific functionality according to their application needs. Whether it’s enhancing communication capabilities or adding more I/O ports, the flexibility of this module makes it suitable for a wide range of industrial and embedded applications.
MVME2400-0361
Main features and advantages:
Functionally, the MOTOROLA MVME2400-0361 stands out with its high – performance capabilities. The 450 MHz PowerPC 750 processor enables it to handle complex computational tasks with ease. It has a 32 KB / 32 KB L1 cache and a 1 MB backside L2 cache. These caches significantly boost performance by reducing the time the processor takes to access frequently used data. The 512 MB of on – board ECC SDRAM ensures data integrity. Even in environments with electrical interference or other potential disruptions, the error – correcting code feature helps maintain accurate data storage and retrieval.
In terms of hardware design, the MVME2400-0361 is rugged. It can endure the harsh conditions typical of industrial and military settings, including high temperatures, vibrations, and electrical noise. Its form factor is designed to fit standard VME system enclosures, simplifying installation within existing systems. The support for two PCI Mezzanine Cards (PMCs) offers ample room for expansion. This means that as the requirements of an application grow, additional functionality can be added without having to replace the entire module.
Compatibility is one of its strong suits. Thanks to its VMEbus compliance, it can integrate smoothly with other VME – based systems and modules. This allows for seamless communication and data transfer within a control system. The inclusion of interfaces like two VMEbus interfaces, one RS – 232 interface, and one Ethernet interface further enhances its connectivity options.
Long – term reliability is also a key aspect. The module is designed with thermal efficiency in mind. It dissipates heat effectively, even during continuous operation. This not only helps in maintaining stable performance but also contributes to a longer service life, reducing maintenance costs over time.
MVME2400-0361
Technical specifications:
Model MVME2400-0361
Brand MOTOROLA
Type VMEbus Single – Board Computer
Processor PowerPC 750, 450 MHz
Memory 512 MB ECC SDRAM
Storage 128 MB Flash ROM, 1 MB NVRAM
Interfaces Two VMEbus interfaces, one RS – 232 interface, one Ethernet interface
Expansion Supports two PCI Mezzanine Cards (PMCs)
Operating Temperature 0°C to 55°C
Humidity Range 5% to 95% RH (non – condensing)
Dimensions Standard VME module size (compatible with VME system enclosures)
Contact Us Phone:+86 16626708626 WeChat/WhatsApp:+86 16626708626 Email: 3772179818@qq.com
MVME2400-0361
Application areas:
In the dynamic world of industrial operations, the MOTOROLA MVME2400-0361 plays a pivotal role. It’s a go – to solution in the industrial automation sphere, where it’s deployed in manufacturing plants to streamline production lines. For instance, in automotive manufacturing, the MVME2400-0361 controls robotic arms that precisely assemble car parts. Its high – performance computing capabilities ensure that these robots move with extreme accuracy, reducing errors and increasing production speed. In food and beverage production, it manages the complex processes of filling, capping, and packaging products, maintaining the high – speed and high – precision operations required.
In the medical field, this module is crucial for medical imaging systems like MRI and CT scanners. It processes vast amounts of data generated during imaging, enabling quick and accurate image reconstruction. This helps doctors in making precise diagnoses. In hospitals, it can also be found in laboratory automation systems, where it controls the movement of samples and the operation of testing equipment, ensuring efficient and reliable medical testing.
The MOTOROLA MVME2400-0361 is also widely used in the defense and aerospace industries. In aircraft, it manages flight control systems, handling real – time data from various sensors to ensure smooth and safe flights. In military applications, it processes data for surveillance systems, analyzing information from cameras and other sensors to detect potential threats. Its ability to operate in harsh environments, such as high – altitude aircraft or military combat zones, makes it an ideal choice for these critical applications. By being used in industrial automation, medical equipment, and defense systems, it enhances productivity, improves healthcare, and strengthens national security.
Related products:Installation and maintenance:
MVME2400 – 0362 – Similar to the MVME2400 – 0361, but may have different memory configurations or clock speeds, suitable for applications with slightly different performance requirements.
MVME2401 – 1 – Part of the MVME2400 series, it could offer enhanced features in certain areas like communication capabilities, making it useful for applications where data transfer speed is crucial.
MVME2402 – This module might support different types of PMCs compared to the MVME2400 – 0361, providing more flexibility for specific industrial or embedded applications.
MVME2300 – Although not from the exact same model line, it can be used in combination with MVME2400 – 0361 in larger systems, perhaps handling different aspects of a control process, such as pre – processing data before it’s sent to the MVME2400 – 0361 for further analysis.
3BHE032025R0102 – From a different family, it can be paired with the MVME2400 – 0361 in environments where higher temperature resistance is required, complementing the MVME2400 – 0361’s capabilities in harsh conditions.
Installation and maintenance:
Before installing the MOTOROLA MVME2400-0361, integrators need to pay attention to several factors. First, ensure that the VME system enclosure has sufficient space. The MVME2400-0361, along with any PMCs that might be added later, should fit comfortably without overcrowding the enclosure. Proper grounding is essential. A well – grounded system protects the module from electrical surges, which are common in industrial and some medical environments. Adequate clearance around the module is also necessary. This allows for proper ventilation, which in turn helps with heat dissipation, ensuring the module operates within its optimal temperature range.
For maintenance, regular visual inspections are recommended. Check for any signs of physical damage, such as cracks on the board or loose connections. Signal diagnostics should be carried out at regular intervals. This involves testing the integrity of signals transmitted through the various interfaces, ensuring that data is being sent and received correctly. Firmware updates are crucial. Motorola may release updates to improve performance, fix bugs, or add new features. Integrators should stay informed about these updates and apply them as appropriate to keep theMVME2400-0361operating at its peak.