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PICVZ Series

Zero Sequence CT

  • for indoor service
  • rated 720V/10kV BIL
  • insulating varnish coating
  • ground leakage and ground fault applications
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Voltage (kV)
BIL (kV)
CCRF
Height (Inches)
Window Width (Inches)
Window Length (Inches)
Drawing Purchase
138-031-01R - 0.6 10 50-5A C5 1.50 3.25 7.00 17.00 Request Quote
138-031-03R - 0.6 10 100-5A 10L10 1.50 3.25 7.00 17.00 Request Quote
138-032-01R - 0.6 10 50-5A 10L10 2.00 5.00 7.00 17.00 Request Quote
138-032-03R - 0.6 10 100-5A 10L20 2.00 5.00 7.00 17.00 Request Quote
138-033-01R - 0.6 10 50-5A 10L5 1.50 3.25 8.00 26.00 Request Quote
138-033-03R - 0.6 10 100-5A 10L10 1.50 3.25 8.00 26.00 Request Quote
138-034-01R - 0.6 10 50-5A 10L10 2.00 5.00 8.00 26.00 Request Quote
138-034-03R - 0.6 10 100-5A 10L20 2.00 5.00 8.00 26.00 Request Quote
138-035-01R - 0.6 10 50-5A 10L5 1.50 3.25 12.00 32.00 Request Quote
138-035-03R - 0.6 10 100-5A 10L10 1.50 3.25 12.00 32.00 Request Quote

General Description
- Voltage rating of 0.72kV
- Impulse rating of 10kV BIL
- Fibreglass insulation impregnated with dielectric varnish
- Suitable for higher voltage installation over bushing or insulated cable


Applications
The PICVZ series current transformers are designed for indoor service, for ambient
temperatures between -25°C to +70°C. Applications include:
- Protective relay applications
- Leakage current measurement
- Ground fault protection


Construction
- Annealed toroidal cores of high grade electrical steel
- 200°C enamel coated copper magnet wire
- Secondary turns uniformly distributed around the core for each tap position
- #10 Black Tefzel secondary lead wires are standard, other options available
- Prominent polarity markings
- Paperless insulation for high temperature applications available

Voltage Class - 0.72kV
Impulse (BIL) - 10kV
Frequency – 60Hz
Thermal Withstand – up to 160 x Rated Current (1 sec.)
Mechanical Withstand – up to 270 x Rated Current (6 cycles)
Continuous Current Rating Factor – up to 2.0 @ 30°C


Note: For low ratio current transformers (250-5A and less), the ratio error at rated current
may exceed the limit specified by industry standards.