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Meggitt Vibro-Meter 111-912-000-013-A1-B1-E1000-F0-G0-H05 Proximity Sensor

In stock (23 units), ready to be shipped
  • Vendor:

    Vibro-Meter

  • Type:

    Proximity Sensor

  • Country of Origin:

    CH

  • Dimensions:

    30*30*5cm

  • Weight:

    220 g

  • Tags: Proximity sensor

Meggitt (Vibro-Meter) 111-912-000-013-A1-B1-E1000-F0-G0-H05 Proximity Measuring System

The 111-912-000-013-A1-B1-E1000-F0-G0-H05 from Meggitt's Vibro-Meter brand features the TQ912 proximity sensor. This high-performance system provides non-contact displacement measurement for critical machinery monitoring, offering exceptional temperature stability and compliance with API 670 standards for industrial applications.

Core System Specifications

  • Full P/N: 111-912-000-013-A1-B1-E1000-F0-G0-H05
  • Sensor Model: TQ912 proximity sensor
  • Environment: Standard industrial (A1)
  • Thread Size: M10 × 1 (B1)
  • Integral Cable: 1000 mm ±100 mm (E1000)
  • Total System Length: 5 m (H05)
  • Protection: None (F0) - Basic configuration
  • Flexible Hose: None (G0)
  • Weight: 0.22 Kg
  • Measurement Principle: Eddy-current non-contact

Key Technical Features

  • Temperature Range: -40°C to 180°C operating (sensor)
  • Measurement Range: 2 or 4 mm linear range
  • Frequency Response: DC to 20 kHz (-3 dB)
  • Safety Rating: SIL 2 (IEC 61508), Cat 1 PL c (ISO 13849)
  • Compliance: API 670 5th edition compliant
  • Protection Rating: IP68 (sensor tip and integral cable)
  • Calibration: +23°C ±5°C on VCL 140 steel
  • Construction: Ø8mm wire coil, PPS tip, AISI 316L stainless steel body

Frequently Asked Questions

  • Q: What is the TQ912 sensor's measurement principle?
    A> The TQ912 uses the eddy-current principle for non-contact displacement measurement, providing reliable operation without physical contact with the target surface.
  • Q: What temperature range can this sensor handle?
    A> This sensor operates from -40°C to 180°C continuously, with short-term survival up to 220°C for 2 hours, making it suitable for high-temperature applications.
  • Q: What safety certifications does it have?
    A> The system is rated SIL 2 according to IEC 61508 and Category 1 PL c per ISO 13849, making it suitable for functional safety applications in machinery protection.
  • Q: What is the significance of API 670 compliance?
    A> API 670 5th edition compliance ensures the system meets rigorous standards for machinery protection systems in petroleum, chemical, and gas industries.
  • Q: What mounting thread does it use?
    A> This configuration features an M10 × 1 thread (B1), a standard size for industrial sensor installations in machinery housings and brackets.

Applications & Benefits

  • Machinery Protection: Shaft displacement, vibration monitoring
  • High-Temperature Environments: Turbines, compressors, engines
  • Safety Systems: Functional safety applications with SIL 2 rating
  • Industrial Standards: API 670 compliance for process industries
  • Robust Construction: IP68 rating, stainless steel body, FEP coaxial cable
  • Flexible Installation: 5m total length with 1m integral cable

Environmental & Physical Specifications

  • Cable Type: FEP-covered 70Ω coaxial, Ø3.6mm
  • Connectors: Self-locking miniature coaxial
  • Pressure Rating: 6 bar (100 psid) max between tip and body
  • Vibration Resistance: 5g peak (10-500 Hz)
  • Shock Resistance: 15g peak (11ms duration)
  • Measurement Drift: <5% from -30°C to 150°C

Ordering Information

  • System Includes: TQ912 sensor with 1m integral cable, 5m total system length
  • Mounting: M10×1 threaded sensor body
  • Optional: Flexible hose and protective sheath available
  • Shipping: Worldwide via FedEx, UPS, or DHL
  • Certification: Full SIL 2 and API 670 documentation

The Meggitt 111-912-000-013-A1-B1-E1000-F0-G0-H05 provides a robust, certified solution for critical machinery monitoring. Its combination of high-temperature capability, safety certifications, and industry compliance makes it ideal for demanding industrial applications where reliability and precision are essential.

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