Motorola MVME167-33A

Product Introduction:
The Motorola MVME167-33A is a high-capacity model within the MVME167 series. Compared to the 32 series, the 33A is equipped with larger onboard memory, specifically designed for data-intensive applications and complex algorithmic processing.

Category:

Description

Motorola MVME167-33A

Technical Specifications:

  • Brand: Motorola
  • Model: MVME167-33A
  • Product Positioning: MVME167 Series High-Capacity Single Board Computer
  • Core Configuration: MC68040 33MHz Processor with 64MB ECC DRAM

Functional Features:

  • Massive Memory Capacity: Satisfies the demands of extremely complex algorithms and massive data buffering.
  • High-Speed Communication: Optimized network and serial communication configurations supporting higher bandwidth data transmission.
  • Advanced Debugging & Diagnostics: Enhanced diagnostic reporting functions support disabling or enabling specific types of alarms to flexibly adapt to different testing and production environments.

Application Scenarios:
Advanced radar signal processing, main controllers for large automated testing platforms (ATE), and real-time database nodes requiring massive data caching.

Performance Parameters:

  • Memory Bandwidth: Extremely high memory read/write rates and floating-point computation concurrency.
  • Data Processing: Significantly reduces data transmission pressure on the VME bus.

Material Composition:
High-density multi-layer PCB equipped with large-capacity, high-speed memory chips and high-performance processors.

Structural Characteristics:
Standard 6U VME size with a rich front panel interface layout and a large-area metal heat sink.

Working Principle:
Leveraging large memory and high clock speeds, it completes highly complex local data preprocessing and algorithmic computations, coordinating globally via the VME bus.

Installation Requirements:
Ensure the chassis power supply has sufficient power margin to support the peak power consumption of high-configuration boards.

Usage Precautions:
Flagship boards generate significant heat. Ensure the chassis airflow is unobstructed and clean dust filters regularly to prevent thermal throttling.