Motorola PCI-6020TM

Product Introduction:
The Motorola PCI-6020TM is a single-board computer based on the CompactPCI standard. It combines high-performance computing with a compact physical footprint, optimized specifically for rack-mounted deployment in telecommunications and industrial sectors.

Category: SKU: Motorola PCI-6020TM

Description

Motorola PCI-6020TM

Technical Specifications:

  • Brand: Motorola
  • Model: PCI-6020TM
  • Bus Architecture: CompactPCI
  • Processor: High-Performance PowerPC Architecture Processor

Functional Features:

  • High-Bandwidth Communication: Supports high-speed PCI bus data transmission to meet massive data throughput requirements.
  • Hot-Swapping Support: Capable of hot-swapping, allowing module replacement without interrupting system operation.
  • Modular Expansion: Provides PMC (PCI Mezzanine Card) expansion slots to support flexible functional customization.

Application Scenarios:
Primarily applied in telecommunications switches, network routers, industrial automation controllers, and test and measurement equipment.

Performance Parameters:

  • Operating Temperature: Industrial-grade wide temperature range
  • Reliability: Meets telecommunications-grade 99.999% availability requirements

Material Composition:
Manufactured using high-Tg flame-retardant PCB materials. Critical components undergo strict derating design to ensure thermal stability during long-term operation.

Structural Characteristics:
Complies with CompactPCI mechanical standards, featuring front-panel ejector handles for safe insertion and extraction in dense rack environments.

Working Principle:
Achieves high-speed interconnection between the processor and peripherals via PCI bridge chips. System firmware handles hardware initialization and interacts with other nodes through the CompactPCI backplane.

Installation Requirements:
Ensure chassis rails are properly aligned during installation and secure the module using front-panel screws. Pay attention to the airflow direction inside the chassis to avoid thermal dead zones.

Usage Precautions:
Before hot-swapping, verify that the system supports this feature and is configured correctly. Never forcefully insert or remove modules that do not support hot-swapping while energized.