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    Solid Core Current Transformer, 50/5A, 100/5A, 150/5A, 200/5A

    Favorable price solid core current transformer (CT) is a crucial component in electrical systems for measuring and monitoring current flow. This design ensures accuracy and reliability in current measurements. ATO 3 phase solid core CT comes with 0~3KV withstand voltage, available in current ratios of 30/5A, 50/5A, 70/5A, 100/5A, 150/5A, 200/5A, facilitating precise monitoring and control of electrical loads.
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    Delivery date: 6-12 days

    Solid core CTs are commonly used in applications such as power metering, protective relaying, and energy management systems. The absence of a split core simplifies installation, making them suitable for both new and existing electrical systems. These current transformers play a vital role in transforming high currents into proportional, manageable values for instruments and devices.


    • Model: ATO-TY18CT
    • Current Ratio (Optional): 30/5A, 50/5A, 70/5A, 100/5A, 150/5A, 200/5A
    • Wiring Method: White Wire S1, Black Wire S2
    • Accuracy Level: 0.5
    • Withstand Voltage: 0~3KV
    • Ambient Temperature: -25℃~+60℃
    • Protection Grade: IP67
    • Lead Length: 1m (Default), Customized
    • Installation Method: DIN Rail Installation or Cable Tie Installation


    Solid core current transformer dimension

    Tips: Difference between solid core and split core current transformer

    Solid-core and split-core current transformers are devices used to measure electric current in a power system. The key difference lies in their construction and installation.

    Solid-core transformers have a one-piece design, requiring the circuit to be disconnected for installation. They provide accuracy but are more challenging to install on existing systems.

    In contrast, split-core transformers have a hinged or openable design, allowing them to be installed around a conductor without the need for disconnecting the circuit. This feature simplifies retrofitting and makes them more convenient for installation in existing systems. However, split-core transformers may sacrifice a bit of accuracy compared to solid-core ones due to the air gap created by the opening mechanism. The choice between solid-core and split-core depends on the application's requirements and the ease of installation needed in a specific scenario.

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