Wire Lead Current Transformers
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Price
Price on request ≥1piece
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Model Number
CR8449 -
Data Sheet
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Package
Original packaging -
Specs
CR8449 -
Quantity
- +Send Inquiry
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Product Description
CR Magnetics CR8400 Series of Wire Lead Current Transformers are available in a wide range of sizes and materials to meet any AC current sensing needs. Major applications include ground fault relays, current measurements, power monitoring and over/under current sensing. This series of transformers provides the benefit of a high accuracy remote monitor for cost sensitive projects. Our General Purpose designs are made from the highest quality silicon steel cores available, and meet most of the common AC current measurement needs. Our Revenue Grade CTs (-N) are made from a nickel alloy core which provides the most linear response over temperature and current level. The High Frequency (-F) products are designed for high frequency applications such as high frequency power supplies and motor drives.
CR8449 Wire Lead Current Transformers Features
• Low cost
• 5 standard sizes
• Non-contact, isolated measurement
CR8449 Wire Lead Current Transformers Specifications
• Construction: Epoxy Encapsulated
• Operating Temperature: -40°C to +85°C
• Stroage Temperature: -45°C to +85°C
• High Potential: 3500 Vac/1 min.
• Frequency: 20 Hz to 200 KHz
CR8449 Wire Lead Current Transformers Applications
• Over/under current sensing
• Ground Faults
• Current measurements
• Power monitoring
CR8449 Wire Lead Current Transformers PART NUMBERS
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General Purpose Current Transformers |
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Part Number |
Ir |
Vmax RMS |
Te (typ.) |
DCR Ω |
Frequency |
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CR8449-1000 |
50 | 11.6 | 1016 | 35 |
20 - 1 KHz |
|
CR8449-2000 |
75 | 23 | 2046 | 150 |
20 - 1 KHz |
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Revenue Grade Current Transformers |
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Part Number |
Ir |
Vmax RMS |
Te (typ.) |
DCR Ω |
Frequency |
|
CR8449-2500-N |
50 | 10.0 | 2490 | 187 |
20 - 1 KHz |
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High Frequency Current Transformers |
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Part Number |
Ir |
Vmax RMS |
Te (typ.) |
DCR Ω |
Frequency |
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CR8449-2000-F |
75 | 7.4 | 2017 | 109 | 20 - 200KHz |
Vmax = Maximum Voltage (Saturation) CT will develop
Te = Effective turns ratio including losses (All Specifications tested at 60 Hz)