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  4. Current transformer TZLU-100-1

Current transformer TZLU-100-1

The current transformer TZLU-100-1 operates according to the following principle: it is connected to a three-phase cable with a diameter of up to 100 mm. The cable passes through the transformer window. A zero magnetic field is formed around it due to the same angle of displacement of all phases during normal operation.

This compensates for the emerging fields. And when any cable cores are shorted, the compensating force disappears, which leads to the appearance of a voltage in the transformer under the influence of zero-sequence currents. This voltage is transmitted to the relay, which triggers the protection. It is also used to transmit signals to control, signaling and automatic devices. It is installed indoors or under a canopy. It is used in areas with a temperate climate (climatic design "U").

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Technical specifications

Parameter nameValue
Rated voltage, kV0,66
Note. When installing a cable with a rated operating voltage of 10 kV (maximum 12 kV), the main insulation between the current-carrying conductors of the cable and the secondary winding of the transformer is provided by the cable insulation, while the metal sheath and cable armor must be grounded.
Rated frequency, Hz50
Number of secondary windings1
Transformation ratio30/160/1
Rated primary current, A3060
Maximum primary current, A60250
Rated current strength of the secondary winding, A11
Rated load of the secondary winding at cos φ = 1, Ohm11
Limit of error of the secondary winding at rated load: - current, %, not more than; - angular, o, not more thanf = 1,5 %
δ = 3
f = 1 %
δ = 1
Sensitivity: on S1-S2 at rated load and primary current of 0.25 A, not less than, mV84
1 sec thermal resistance current of the secondary winding, A150
Test one-minute insulation voltage, kV3
Weight, kg2,8
Stability of characteristics, at least, years50
Warranty period, years5
Guaranteed storage life, years3
Note.1. The error is normalized in the range of currents from 1% of the rated current to the maximum primary current at rated load.2. With a decrease in the rated load, the transformer error decreases and the current range expands with it.3. The primary current sensitivity of the protection is determined by the expression: (primary current, A) = (installation current, A) * (transformation ratio), taking into account the transformer error and the error of the relay used.

At the customer's request, transformers can be manufactured with a different transformation ratio. The winding of the transformers is made on a nanocrystalline alloy core. This ensures a large linear dynamic range of winding characteristics in terms of current and angle. This ensures long-term stability of the characteristics throughout the entire service life of the transformer and the resistance of the magnetic circuit to magnetization (from unipolar pulse short-circuit currents of a three-phase cable). In addition, a safety factor of no more than three is provided, which significantly reduces emergency overloads of measuring devices connected to the secondary winding. The use of these transformers reduces operating costs for consumers.

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