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MOTOROLA MVME6100 VMEbus Single – Board Computer

The MOTOROLA MVME6100 is a high – performance VMEbus single – board computer that has been engineered to meet the most rigorous demands of industrial and embedded applications. It is an integral part of the MOTOROLA MVME series, which has long been revered for its excellence in delivering advanced computing solutions.

Model MVME6100
Brand MOTOROLA
Type VMEbus Single – Board Computer
Processor PowerPC MPC7457 (up to 1.267 GHz)
Memory Up to 2 GB DDR SDRAM
Storage 128 MB flash memory
Ethernet Interfaces 2 x Gigabit Ethernet
Serial Ports RS – 232/422/485
Expansion Slots 3 x PCI slots, 3 x VME64 bus ports
USB Interface USB 2.0
Video Outputs DVI and VGA
Power Supply +3.3V and +5V with over – current and over – voltage protection
Operating Temperature – 40°C to + 85°C
Mounting Designed for industrial – standard mounting
Dimensions 233 x 167 mm
Certifications Meets relevant industrial standards
Cooling Efficient thermal design for heat dissipation
Environmental Rating Suitable for harsh industrial environments

Description

The MOTOROLA MVME6100 is a high – performance VMEbus single – board computer that has been engineered to meet the most rigorous demands of industrial and embedded applications. It is an integral part of the MOTOROLA MVME series, which has long been revered for its excellence in delivering advanced computing solutions.

MVME6100

MVME6100

At its core, the MVME6100 is powered by a high – performance processor, such as the PowerPC MPC7457. This processor, running at speeds up to 1.267 GHz, endows the board with the ability to handle complex computational tasks with ease. It serves as the central processing unit within a control system architecture, acting as the brain that interfaces with a wide variety of input and output devices.

 

The MVME6100 is highly adaptable and can be seamlessly integrated into larger systems. It can be a key component of a distributed control system (DCS) in an industrial plant or an embedded system in a medical device. Its primary role is to process data received from sensors, analyze it in real – time, and then send out control signals to actuators. Engineers and integrators highly value the MVME6100 for its versatility. It is compatible with multiple operating systems, including popular real – time operating systems like VxWorks and Linux. This compatibility makes it suitable for a broad spectrum of applications, from industrial automation to medical imaging.
MVME6100

MVME6100

Main features and advantages:

The MOTOROLA MVME6100  boasts an impressive array of technical features that translate into substantial functional benefits.

 

In terms of functional performance, its high – speed processor enables rapid data processing. Whether it’s handling real – time sensor data in an industrial setting or running complex algorithms in a defense application, the MVME6100  can keep pace with the most demanding requirements. With a clock speed of up to 1.267 GHz, it ensures minimal latency in data processing, which is critical for applications where split – second decisions are necessary. Additionally, it features a 128 – bit AltiVec coprocessor, which is a boon for data – intensive applications such as multimedia processing and scientific computing.

 

The hardware design of the MVME6100  is both rugged and compact. Measuring 233 x 167 mm, it can be easily installed in tight spaces within control cabinets. Its rugged construction allows it to withstand harsh environmental conditions, including vibrations, shocks, and temperature variations ranging from – 40°C to + 85°C. This makes it suitable for use in industrial plants, military vehicles, and aircraft, where the operating environment can be extremely challenging.

 

Compatibility is one of the MVME6100 ‘s strong suits. It is equipped with a wide range of interfaces, including 2 gigabit Ethernet ports, 3 PCI slots, 3 VME64 bus ports, serial ports (RS – 232/422/485), a USB 2.0 interface, and DVI and VGA video outputs. This wealth of interfaces allows for seamless integration with other devices and systems. For example, it can easily connect to other networked components in a factory via its Ethernet ports, facilitating data sharing and remote monitoring. It also supports a diverse range of communication protocols, making it adaptable to different industrial setups.

 

When it comes to long – term reliability, the MVME6100  is built to last. It has a thermal design that ensures efficient heat dissipation, which helps maintain stable operation even during extended periods of use. The use of high – quality components further enhances its reliability, reducing the likelihood of failures and minimizing maintenance requirements. It also offers up to 2 GB of DDR SDRAM and 128 MB of flash memory, providing ample storage and memory resources for running complex applications.
MVME6100

MVME6100

Technical specifications:
Model MVME6100
Brand MOTOROLA
Type VMEbus Single – Board Computer
Processor PowerPC MPC7457 (up to 1.267 GHz)
Memory Up to 2 GB DDR SDRAM
Storage 128 MB flash memory
Ethernet Interfaces 2 x Gigabit Ethernet
Serial Ports RS – 232/422/485
Expansion Slots 3 x PCI slots, 3 x VME64 bus ports
USB Interface USB 2.0
Video Outputs DVI and VGA
Power Supply +3.3V and +5V with over – current and over – voltage protection
Operating Temperature – 40°C to + 85°C
Mounting Designed for industrial – standard mounting
Dimensions 233 x 167 mm
Certifications Meets relevant industrial standards
Cooling Efficient thermal design for heat dissipation
Environmental Rating Suitable for harsh industrial environments

 

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MVME6100

MVME6100

Application areas:

In the fast – paced and demanding world of modern technology, the MOTOROLA MVME6100 stands as a cornerstone in various industries, solving complex problems and enabling seamless operations.

 

In industrial automation, which forms the backbone of modern manufacturing, the MVME6100 is indispensable. Factories rely on it to manage intricate robotic assembly lines. For instance, in an automotive manufacturing plant, robotic arms need to precisely fit together tiny components of engines. The MVME6100‘s high – speed data processing capabilities ensure that these robots move with micron – level accuracy. It rapidly analyzes data from sensors placed on the production line, such as those detecting the position and orientation of parts, and adjusts the robotic arms’ movements accordingly. This not only reduces errors but also significantly boosts production efficiency. In process control systems, like those in chemical plants, the MVME6100 regulates variables such as temperature, pressure, and fluid flow. By continuously monitoring real – time sensor data, it controls valves and pumps to maintain optimal production conditions, ensuring product quality and safety.

 

The medical field benefits immensely from the MVME6100 as well. In diagnostic imaging equipment such as CT scanners and MRI machines, this device is at the heart of operations. It processes the vast amounts of data generated during scans at high speeds. For example, in a CT scanner, the MVME6100 quickly reconstructs the images from the X – ray data, allowing doctors to obtain clear and detailed images for accurate diagnoses. In radiation therapy devices, it precisely controls the delivery of radiation to the targeted areas in patients, ensuring effective treatment while minimizing damage to healthy tissues.

 

Defense and aerospace applications have stringent requirements for components, and the MVME6100 rises to the occasion. In military communication systems, it processes encrypted data, ensuring secure and reliable transmission even in harsh and contested environments. In aircraft avionics, it plays a crucial role in managing navigation systems. By integrating data from GPS, inertial sensors, and other sources, it provides pilots with accurate and up – to – date flight information, enabling safe takeoffs, landings, and in – flight maneuvers. Its ability to function reliably under extreme conditions, including high vibrations, extreme temperatures, and high altitudes, makes it the go – to choice for these critical applications.
MVME6100

MVME6100

Related products:

  • MVME5100 – An earlier model in the MOTOROLA VMEbus family. It has a lower processing power compared to the MVME6100, making it more suitable for less data – intensive applications, such as basic monitoring systems in small – scale industrial setups.
  • MVME6200 – A more advanced model in the series. It may have enhanced features, like a more powerful processor or additional memory options, making it suitable for applications that require even higher performance, such as large – scale data – intensive simulations in aerospace.
MVME6100

MVME6100

Installation and maintenance:

Before installing the MOTOROLA MVME6100, integrators must take several factors into careful consideration. The control cabinet where it will be installed should have sufficient space to accommodate the board while allowing for proper ventilation. Given the board’s ability to operate in a wide temperature range, maintaining good air circulation around it helps in ensuring optimal performance. Grounding is also of utmost importance. A proper grounding connection not only protects the MVME6100 from electrical surges but also helps in reducing electromagnetic interference, which can affect the performance of other components in the system.

 

For maintenance, regular visual inspections are recommended at least once every six months. During these inspections, check for any signs of physical damage, such as cracks on the board or loose connections. Signal diagnostics should be carried out quarterly. Use appropriate diagnostic tools to check the integrity of the signals going in and out of the module. This helps in detecting any potential issues early on. Firmware updates are crucial for keeping the MVME6100 running smoothly. Motorola provides regular firmware updates, which can improve performance, add new features, and fix any known bugs. It is advisable to update the firmware at least once a year or as soon as a relevant new version is available.
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