MOTOROLA+MCP750

  • Processor: PowerPC 750 (or equivalent)
  • Clock Speed: Typically 200 MHz to 400 MHz
  • Processor Cores: Single core
  • Instruction Set: PowerPC (32-bit/64-bit)
  • Memory:
    • Onboard DRAM: 64 MB to 256 MB (depending on the configuration)
    • Flash Storage: 8 MB to 32 MB
    • External memory options supported via memory interfaces (e.g., SDRAM, Flash, etc.)
Manufacturer:

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Description

The MOTOROLA MCP750 module is a powerful embedded microprocessor module designed primarily for industrial, telecommunications, and other embedded system applications. It is based on the Motorola 750 microprocessor, which is a part of the PowerPC architecture.

Product Name:

MOTOROLA MCP750 Module

Product Description:

The MOTOROLA MCP750 module is a compact, high-performance embedded computing platform that integrates the Motorola PowerPC 750 microprocessor. This module provides users with a flexible, cost-effective solution for high-speed, low-power applications, featuring robust processing power, reliability, and scalability. It is designed for a variety of industrial, networking, and telecommunications applications, offering strong support for embedded systems development.

The MCP750 module typically includes the core PowerPC 750 processor, memory options, I/O ports, and connectivity features, making it suitable for integration into embedded products requiring advanced computing power and energy efficiency.

Product Parameters:

  • Processor: PowerPC 750 (or equivalent)
  • Clock Speed: Typically 200 MHz to 400 MHz
  • Processor Cores: Single core
  • Instruction Set: PowerPC (32-bit/64-bit)
  • Memory:
    • Onboard DRAM: 64 MB to 256 MB (depending on the configuration)
    • Flash Storage: 8 MB to 32 MB
    • External memory options supported via memory interfaces (e.g., SDRAM, Flash, etc.)
  • I/O Ports:
    • Ethernet ports (10/100/1000 Mbps)
    • Serial ports (RS232/RS485)
    • USB 1.1/2.0 (optional)
    • Parallel port or PCI bus interface (varies by specific model)
    • GPIO (General Purpose Input/Output)
  • Connectivity:
    • UART (Universal Asynchronous Receiver/Transmitter)
    • SPI (Serial Peripheral Interface)
    • I2C (Inter-Integrated Circuit)
  • Form Factor: Typically in a compact embedded module form (e.g., PC/104, DIMM, or proprietary form)
  • Operating Voltage: 3.3V or 5V depending on the configuration
  • Power Consumption: Typically in the range of 5W – 10W (depending on usage and clock speed)

Product Specifications:

  1. Processor:
    • Motorola PowerPC 750 microprocessor
    • Clock speed: 200 MHz to 400 MHz
    • FPU (Floating Point Unit) for efficient numerical calculations
    • 32-bit architecture with a 64-bit memory address space
  2. Memory:
    • DRAM: 64MB to 256MB
    • Flash Memory: 8MB to 32MB (non-volatile storage)
  3. Interfaces:
    • Ethernet (10/100/1000 Mbps)
    • Serial ports: RS-232, RS-485
    • USB 1.1/2.0 ports (depending on module version)
    • I2C, SPI, and GPIO for sensor or peripheral connectivity
  4. Operating Environment:
    • Operating temperature: 0°C to 70°C (commercial-grade)
    • Storage temperature: -40°C to 85°C (industrial-grade options)
    • Humidity: 10% to 90% non-condensing
  5. Power Supply:
    • Operating voltage: 3.3V or 5V (depending on configuration)
    • Power consumption: 5W to 10W
  6. Software Support:
    • Compatible with embedded OS like Linux, VxWorks, or custom real-time operating systems (RTOS)
    • Supports development environments such as Eclipse or CodeWarrior
  7. Connectivity:
    • 10/100/1000 Ethernet (for networked applications)
    • USB (for peripheral device support)
    • Serial (for communication with legacy equipment)

Product Use:

The MOTOROLA MCP750 module is primarily used in embedded system applications where high processing power, energy efficiency, and compact form factor are required. Typical use cases include:

  1. Industrial Automation:
    • Control and monitoring systems for manufacturing equipment and processes
    • Robotics and intelligent automation
    • SCADA (Supervisory Control and Data Acquisition) systems
  2. Telecommunications:
    • Network routers, switches, and embedded networking hardware
    • Gateways for communication systems
  3. Medical Equipment:
    • Diagnostic devices and medical data processing
  4. Consumer Electronics:
    • Embedded systems for consumer devices that require high-speed processing and low power
  5. Military and Aerospace:
    • Embedded computing for rugged, mission-critical applications
    • Flight control systems and unmanned aerial vehicles (UAVs)
  6. Automotive:
    • Advanced driver-assistance systems (ADAS)
    • In-vehicle infotainment and navigation systems

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