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MOTOROLA MVME172-513 Embedded Controller Module

MOTOROLA MVME172-513 Embedded Controller Module photo-1
MOTOROLA MVME172-513 Embedded Controller Module photo-2
MOTOROLA MVME172-513 Embedded Controller Module photo-3
Negotiable MOQ: 1 Piece (Price negotiable depending on order volume and customization)
Key Specifications
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Material:
Other
Certification:
Other
Function:
Other, Global universal model
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Payment Methods:
Port of Shipment:
China
Delivery Detail:
Delivery time depends on order quantity.
Material Other
Certification Other
Function Other, Global universal model
Condition Other
Task Other
Mathematical Model Other
Signal Other
Customized Other, Global universal model
Structure Other

MOTOROLA MVME172-513 embedded controller module


I. Powerful processor and computing power

High-performance CPU architecture It adopts the enhanced 32-bit microprocessor of 60MHz MC68060 or 64MHz MC68LC060, integrating MMU (Memory Management Unit) and FPU (Floating-point Operation Unit) (for some models), which can efficiently handle complex control algorithms and real-time data operations. It is particularly suitable for scenarios that require high-speed logical judgment (such as industrial robot trajectory planning and power system fault analysis).

Cache and memory expansion: 16KB cache paired with 16-256MB DRAM supports dynamic data caching and quick invocation. Combined with 295KB of additional flash memory and non-volatile memory (630KB), it can store system programs and critical data, reducing the risk of information loss due to power outages.

MVME172-513—02

Ii. flexible interface configuration and communication capabilities

Multi-type serial port:

Supports the EIA-232-D (DCE) serial interface (Port B), is compatible with traditional industrial equipment communication protocols (such as Modbus, RS-232/485), and can be connected to underlying devices such as sensors and actuators.

The 400/500 series provides dual serial ports through the DB-25 connector and is compatible with the VMEbus P2 interface, facilitating the cascading of multiple devices and distributed control.

Ethernet and DMA Transmission: Integrated Ethernet transceiver interface, supporting high-speed network data interaction; 32-bit Local Bus DMA (Direct Memory Access) technology can bypass the CPU to achieve direct data transmission between devices and memory, significantly enhancing data throughput (such as real-time video streaming on industrial production lines or data collection from sensor arrays).


Iii. High reliability and environmental adaptability

Wide temperature range and anti-vibration design: As an industrial-grade embedded module, it can operate stably in a wide temperature range from -40 ℃ to + 85℃. Combined with an anti-vibration structure design, it is suitable for harsh scenarios such as aerospace (aircraft vibration environment) and metallurgical workshops (high-temperature dust).

Redundancy and fault tolerance mechanisms: Battery backup clocks and non-volatile memory ensure that parameters are not lost after system power failure. Hardware-level error detection (such as parity checking) enhances operational stability, meeting the 7× 24-hour uninterrupted operation requirements of industrial automation.

MVME172-353—03

Iv. Modularization and scalability advantages

VMEbus standard compatibility: Adhering to the VMEbus industrial bus standard, it can be seamlessly integrated with modules of the same series (such as I/O modules, communication modules) to build complex control systems (such as large-scale factory DCS distributed control systems), and supports flexible expansion of system scale.

Memory and function customization: DRAM capacity can be configured within the range of 16-256MB, and 280KB of application runtime memory supports user-defined program development, adapting to the computing power requirements of different scenarios (such as image processing algorithms for medical devices and protocol parsing for communication base stations).


V. Industry Adaptability and Scene Value

Automobile production line control: On the assembly production line of a certain automobile manufacturing enterprise, MVME172-513 is used to control robot arms and automated conveying equipment. It is connected to the central control system of the production line through a high-speed Ethernet interface, and at the same time, it is connected to each robot controller and sensor through a serial port. It can receive production instructions in real time, precisely control the robot arm to complete the assembly actions of parts, and at the same time monitor the operation status of the equipment and product quality data in real time, ensuring the efficient and stable operation of the production line, and significantly improving the accuracy and production efficiency of automotive assembly.

MVME172-263—02

Petrochemical production process monitoring: In a certain oil refinery, MVME172-513 is applied to the industrial automation control network. It conducts real-time monitoring of crude oil heating, distillation, cracking and other processes. By connecting various temperature, pressure and flow sensors, it collects key data during the production process and conducts rapid processing and analysis. Based on the analysis results, MVME172-513 precisely controls the valve opening, pump speed and other actuating mechanisms, achieving precise control over the production process. Meanwhile, through the monitoring and analysis of energy data, it optimizes energy allocation and reduces energy consumption.


Aircraft flight control system: In the flight control system of a certain type of unmanned aerial vehicle (UAV), the MVME172-513 plays a crucial role. As the core processing module, it is responsible for receiving data from sensors (such as gyroscopes and accelerometers), calculating the attitude and position information of the aircraft in real time, and at the same time sending control instructions to executive components such as motors and servos according to the preset flight path and control algorithm, ensuring that the unmanned aerial vehicle can fly stably along the predetermined route. Its wide temperature range and anti-vibration characteristics adapt to the complex flight environment of unmanned aerial vehicles and ensure the reliability of the flight control system.

MVME172-513—01

Medical imaging equipment control: In a certain CT imaging equipment, MVME172-513 is used to control the scanning motion mechanism of the equipment and process image data. It precisely controls the rotation of the scanning frame and the movement of the hospital bed through the serial port to ensure the precise positioning during the scanning process. Meanwhile, by taking advantage of its powerful computing capabilities, the large amount of raw image data collected by the detector is preliminarily processed and reconstructed, providing high-quality images for subsequent image diagnosis and improving the imaging quality and working efficiency of medical imaging equipment.


Product Tags: MVME172-513

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Verified Business License
Business Type
Trading Company
Year Established
2014
Factory Size
1,000-3,000 square meters
Product Certifications
SA8000