600V Instrument Current Transformers (Legacy)

Applications

  • Current,Power,Energy monitoring devices
  • Relay protection device

Features

  • Low cost
  • Water proof
  • More than 30 outline size
  • 5.0,1.0Aac secondary ratios available
Download Datasheet

Specifications

  • Shell material:
    PBT or ABS
  • Frequency:
    50-400 Hz
  • Operating Temperature:
    -25 to +55℃-40 to +85℃optional
  • Operating Voltage:
    600Vac
  • Isolation:
    600V,BIL 10KV Full Wave
  • Accuracy class:
    compliant ANSI
  • RoHS compliant
  • CE-approved

Product Overview

YuanXing Electronics manufactures high-quality (600V) Instrument Current Transformers (Legacy) for B2B power monitoring and relay protection tools. Our waterproof instrument transformers use rugged PBT / ABS materials and conform to the stringent ANSI accuracy requirements for dependable performance. These 600V instrument transformers are built to last with a 10kV BIL isolation and can operate over a broad range of frequencies (50 – 400 Hz). Featuring a variety of 30+ sizes & 5A / 1A outputs, these CE and RoHS compliant products are made to flourish in extreme industrial conditions (-40°C to +85°C) thus, providing customers with preferred reliability for Industrial Energy Management and Fault Detection solutions.

Typical Products

Image Part Number Rated Input (A) Turn Ratio Frequency (Hz) Secondary Burden (Ω) Accuracy Class Dimensions (mm) PDF
Image TA1111 5~30 1000:1
2000:1
2500:1
50 to 400 ≤200 0.1
0.2
0.5
ID-L-W-H 7.0-22.0-18.0-23.0
Image TA1311 5~80 1000:1
2000:1
2500:1
50 to 400 ≤800 0.1
0.2
0.5
ID-L-W-H 7.0-22.0-18.0-23.0
Image Part Number Rated Input (A) Turn Ratio Frequency (Hz) Secondary Burden (Ω) Accuracy Class Dimensions (mm) PDF
Image2 CTT0150 5-150 1:1000
1:2000
1:3000
1:5000
50 to 400 50-400 0.1
0.2
15-58-23-45

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    Frequently Asked Questions

    Honeywell needed a stable and highly accurate way to measure current fluctuations in large commercial buildings. Existing sensors often produced noise and drifted over time, creating errors in smart energy dashboards

    Honeywell needed a stable and highly accurate way to measure current fluctuations in large commercial buildings. Existing sensors often produced noise and drifted over time, creating errors in smart energy dashboards

    Honeywell needed a stable and highly accurate way to measure current fluctuations in large commercial buildings. Existing sensors often produced noise and drifted over time, creating errors in smart energy dashboards

    Honeywell needed a stable and highly accurate way to measure current fluctuations in large commercial buildings. Existing sensors often produced noise and drifted over time, creating errors in smart energy dashboards

    Honeywell needed a stable and highly accurate way to measure current fluctuations in large commercial buildings. Existing sensors often produced noise and drifted over time, creating errors in smart energy dashboards