MOTOROLA MVME2400

MOTOROLA MVME2400 is a high-performance single-slot VMEbus single-board computer (SBC) built on Motorola’s PowerPlus II Architecture, powered by the MPC750 (PowerPC 750) processor, tailored for real-time industrial control, data acquisition, and embedded computing in aerospace, energy, and heavy manufacturing.

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Description

MOTOROLA MVME2400 is a high-performance single-slot VMEbus single-board computer (SBC) built on Motorola’s PowerPlus II Architecture, powered by the MPC750 (PowerPC 750) processor, tailored for real-time industrial control, data acquisition, and embedded computing in aerospace, energy, and heavy manufacturing. MOTOROLA MVME2400 integrates a VME64 – compliant interface with 64 – bit data transfers and A16/A24/A32 addressing, enabling seamless connectivity with VME – based I/O and system controllers. MOTOROLA MVME2400 comes with 32MB–512MB ECC SDRAM, 8MB flash, and dual IEEE P1386.1 – compliant PMC slots, offering flexible expansion for I/O, motion control, or communication modules. MOTOROLA MVME2400’s Hawk SMC/PCI Host Bridge ASIC optimizes processor – memory – PCI bus throughput, critical for time – sensitive tasks like process monitoring and high – speed data logging. MOTOROLA MVME2400 also features 10/100Mb/s Ethernet, dual serial ports, and on – board diagnostics, simplifying system integration and maintenance in harsh industrial environments. With its industrial – grade design, MOTOROLA MVME2400 operates reliably in wide – temperature (-40°C to +85°C) and high – vibration settings, making it a top choice for mission – critical embedded systems.

Technical Parameters MOTOROLA MVME2400

Parameter Item Parameter Value
Product Model MOTOROLA MVME2400
Product Type Single – slot VMEbus PowerPC single – board computer
Processor MPC750 (PowerPC 750) 32 – bit microprocessor, up to 450MHz; 32KB L1 I – cache/32KB L1 D – cache; 1MB backside L2 cache
Memory 32MB–512MB ECC SDRAM; 8MB flash; 8KB battery – backed NVRAM (with RTC)
VMEbus Interface VME64 – compliant, A16/A24/A32 addressing, D8/D16/D32/D64 data widths, master/slave operation
Communication Interfaces 10/100Mb/s Ethernet; 2x EIA – 232 serial ports; parallel port; optional SCSI
Expansion 2x IEEE P1386.1 – compliant PMC slots (front – panel/P2 I/O supported)
Timers 4x 32 – bit timers; 1x 16 – bit timer; programmable watchdog timer; RTC (M48T59)
Operating Temperature -40°C to +85°C
Power Supply +5V DC, ±12V DC, ±5V DC (VME standard)
Form Factor Single – slot VME module (100mm × 160mm)

Advantages and Features MOTOROLA MVME2400

  1. Powerful Real – time Processing: The high – speed MPC750 processor of MOTOROLA MVME2400 delivers robust 32 – bit computing with FPU for time – critical industrial control tasks.
  2. Flexible Expansion: Dual PMC slots of MOTOROLA MVME2400 allow on – demand I/O customization without extra VME slots, reducing system footprint.
  3. Data Integrity: ECC SDRAM and battery – backed NVRAM of MOTOROLA MVME2400 prevent data corruption and loss during power outages, essential for safety – critical systems.
  4. Harsh Environment ReadyMOTOROLA MVME2400’s wide – temperature design and industrial – grade components ensure stable operation in extreme industrial settings.
  5. Easy Integration: VME64 compliance and Ethernet of MOTOROLA MVME2400 enable smooth integration with legacy VME infrastructure and networked control systems.

Application Cases MOTOROLA MVME2400

  1. Aerospace Avionics Test: An aerospace firm used MOTOROLA MVME2400 as the core controller for its aircraft avionics test bench. Its dual PMC slots with high – speed data acquisition modules enabled real – time processing of 150+ sensor signals, cutting test cycle time by 25% and improving measurement accuracy by 20%.
  2. Offshore Oil Drilling Control: An energy company deployed MOTOROLA MVME2400 in its offshore platform’s drilling control system. Its wide – temperature tolerance and ECC memory ensured reliable operation amid – 20°C to +60°C temperature swings, reducing unplanned downtime by 30%.
  3. Steel Mill Rolling Mill Control: A metallurgical plant integrated MOTOROLA MVME2400 into its hot rolling mill’s thickness control system. Its high – speed processing and PMC – based motion control modules achieved 0.02mm thickness precision, boosting product yield by 18% and reducing material waste.

Competitor Comparison

Feature MOTOROLA MVME2400 Siemens SIMATIC VME1430 GE Fanuc VME – 1630
Processor MPC750 (up to 450MHz, FPU) 30MHz 80486DX 25MHz MC68040
Max DRAM 512MB ECC SDRAM 16MB DRAM 64MB DRAM
Expansion 2x PMC slots PC/104 IndustryPack
VMEbus D64, master/slave D32, slave only D32, master/slave
Operating Temp -40°C to +85°C 0°C to +60°C 0°C to +70°C
Price Range Mid – High Mid Mid – High

Selection Suggestions

  1. Choose MOTOROLA MVME2400 for VME64 – based systems needing high – speed PowerPC processing, ECC memory, and dual PMC expansion, such as aerospace test benches and offshore industrial control.
  2. Prioritize MOTOROLA MVME2400 for applications in extreme temperature/vibration environments, leveraging its wide – temperature design and industrial – grade build.
  3. Select MOTOROLA MVME2400 for projects with legacy VME setups, as its master/slave VMEbus support ensures compatibility with existing modules and controllers.

Precautions

  1. Use only VME – compliant power supplies (±5V, ±12V, +5V) with MOTOROLA MVME2400 to avoid damaging the processor and on – board circuits.
  2. Ensure proper grounding of MOTOROLA MVME2400 during installation to minimize electromagnetic interference and maintain stable VMEbus/PCI communication.
  3. Do not exceed the -40°C – +85°C operating temperature range of MOTOROLA MVME2400 to prevent memory errors and processor failure.
  4. Replace the NVRAM backup battery of MOTOROLA MVME2400 every 2-3 years to preserve RTC and critical data during power outages.
  5. Use IEEE P1386.1 – compliant PMC modules with MOTOROLA MVME2400 to avoid electrical or mechanical incompatibility and bus conflicts.

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