Current transformer LB7-145
instrumentmeasurementimmersed

Current transformer - LB7-145 - Dowei Electric - instrument / measurement / immersed
Current transformer - LB7-145 - Dowei Electric - instrument / measurement / immersed
Add to favorites
Compare this product

Characteristics

Type
current, instrument, measurement
Configuration
immersed
Applications
industrial, for industrial applications, for industrial use, for electrical networks, protection, substation
Electrical characteristics
single-phase
Mounting
floor-standing
Norms
IEC, UL, ANSI, TUV
Other characteristics
protection, high-accuracy, oil-immersed, multi-winding
Primary voltage

145 kV

Secondary voltage

Max.: 220 V

Min.: 110 V

Description

• IEC 61869, ANSI/IEEE C57.13, NEMA
• ISO 9001, KEMA, CESI, CE, TUV, UL, ASTA
• Seismic design, ETGI-1.020, IEEE Std 693, NCh2369
• Structural design, ASTM A325, ANSI/AISC 360, AWS D1.1
• High altitude correction per IEC 61869 & IEEE C57, ~ 5000m
• High Quality Paper-Oil Insulation, Mineral oil (No PCB), Hermetically Sealed
• Special accuracy classes PR, PX, PXR, TPX, TPY, TPZ or C 100-800 (IEEE), etc..

145 kV Current Transformer (Hair-pin Type) is a high-voltage outdoor instrument transformer used in 132 kV and 145 kV air-insulated substations (AIS). It accurately converts high primary currents into standardized secondary currents (1 A or 5 A) for protective relays, energy metering, fault recording, and substation automation. The hair-pin type features an integral U-shaped primary conductor that forms a single-turn primary winding, providing high mechanical strength, excellent insulation performance, and reliable operation.

Working Principle
The 145 kV hair-pin type current transformer operates on the principle of electromagnetic induction.
When alternating current flows through the U-shaped primary conductor, an alternating magnetic flux is produced in the magnetic core. This changing flux induces a proportional current in the secondary winding while maintaining electrical isolation between the primary and secondary circuits.

Construction
A typical 145 kV hair-pin type current transformer consists of:
·Integral U-shaped copper or aluminum primary conductor
·High-permeability toroidal magnetic core
·Multiple secondary windings for metering and protection
·Oil-paper insulation system (most common)
·Porcelain or composite external insulator
·Oil expansion chamber or stainless-steel bellows
·Secondary terminal box
·Grounding terminal
·Galvanized steel support base
·Stainless steel nameplate

Features
·Single-turn hair-pin primary conductor.
·Excellent measurement accuracy.
·Multiple independent secondary cores.
·High insulation performance for 145 kV systems.
·High thermal and dynamic short-circuit withstand capability.
·Weather-resistant outdoor construction.
·Low partial discharge characteristics.
·Long service life with minimal maintenance.

Typical Ratings
·Highest system voltage: 145 kV
·Rated frequency: 50 or 60 Hz
·Primary current: 200–4000 A
·Secondary current: 1 A or 5 A
·Metering accuracy class: 0.1, 0.2, 0.2S, 0.5, 0.5S
·Protection accuracy class: 5P10, 5P20, 10P10, PX, TPX, TPY, TPZ
·Rated burden: 10–60 VA
·Lightning impulse withstand: Typically 650 kV
·Power-frequency withstand: Typically 275 kV (1 min)
·Installation: Outdoor AIS

Advantages
·High accuracy for both protection and revenue metering.
·Excellent insulation coordination for 132/145 kV systems.
·Robust single-turn primary conductor provides high mechanical strength.
·Multiple secondary cores support separate metering and protection functions.
·High resistance to thermal and mechanical stresses during short circuits.
·Reliable long-term performance under outdoor environmental conditions.

Limitations
·Oil-filled units require periodic inspection of oil condition, seals, and insulation integrity.
·Larger and heavier than medium-voltage resin-cast CTs.
·Requires adequate structural support during installation.
·The secondary winding must never be open-circuited while the primary is energized, because dangerous voltages can be induced across the secondary terminals.

Applications
145 kV hair-pin type current transformers are widely used in:
·132 kV and 145 kV transmission substations
·Transmission line bays
·Power transformer protection
·Busbar differential protection
·Circuit breaker bays
·Revenue and utility metering
·Industrial high-voltage substations
·Renewable energy grid substations
·Switching stations

Typical Secondary Core Arrangement
Core 1 Revenue metering 0.2S
Core 2 Operational metering 0.5
Core 3 Overcurrent and earth-fault protection 5P20
Core 4 Busbar or transformer differential protection PX / TPX / TPY / TPZ

Typical Uses
The 145 kV Hair-pin Type Current Transformer is widely deployed in 132 kV and 145 kV air-insulated substations for:
·Current measurement for supervisory control and data acquisition (SCADA)
·Revenue and utility energy metering
·Overcurrent and earth-fault protection
·Transformer and busbar differential protection
·Fault recording and disturbance monitoring
·Grid monitoring and substation automation

Its integral single-turn primary conductor, high dielectric strength, multiple secondary cores, and excellent measurement accuracy make it a dependable solution for modern high-voltage transmission systems where reliability, safety, and precision are critical.
*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.