NI SHC68-68-EPM(2 ) Technical Specifications

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NI SHC68-68-EPM(2 ): High-Performance Industrial Module for Automation Solutions

The NI SHC68-68-EPM(2 ) stands out as a premium industrial module component designed for demanding automation engineering solutions. Engineers across various industries rely on this robust module for its exceptional performance and reliability in critical applications.

Key Technical Specifications

  • Connector Type: SHC68-68 high-density shielded
  • Contact Points: 68-position (34 pairs)
  • Voltage Rating: 300V AC/DC maximum
  • Current Rating: 5A per contact
  • Contact Resistance: ≤20mΩ initial
  • Insulation Resistance: ≥1000MΩ at 500VDC
  • Dielectric Withstanding Voltage: 1000V AC for 1 minute
  • Operating Temperature: -55°C to +125°C
  • Mating Cycles: 500 minimum
  • Shielding Effectiveness: ≥60dB at 1GHz

Performance Advantages

The NI SHC68-68-EPM(2 ) delivers superior performance in industrial environments. Firstly, its rugged construction withstands vibration and mechanical stress exceptionally well. Moreover, the gold-plated contacts ensure reliable signal transmission even in harsh conditions. Additionally, the module’s EMI shielding protects sensitive signals from interference, making it ideal for precision measurement applications.

Industrial Applications

This industrial module component serves multiple automation engineering solutions across various sectors. In manufacturing plants, it facilitates reliable data acquisition from production equipment. Similarly, in energy systems, the module enables secure power monitoring and control. Furthermore, research laboratories benefit from its precision when conducting sensitive measurements.

Installation Considerations

When implementing the NI SHC68-68-EPM(2 ), technicians must follow several best practices. First, always verify proper alignment before mating connectors to prevent damage. Second, maintain clean contact surfaces to ensure optimal conductivity. Finally, periodically inspect the module for signs of wear in high-usage environments.