AC Current Transducer Transmitter Sensor 0 50A Mutual Inductance Monitoring Safe Isolation Output 0 5V 0 10V 4 20mA for Industrial Automation Power Grid Systems
R 1,976
or 4 x payments of R494.00 with
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Delivery: 10-20 working days
AC Current Transducer Transmitter Sensor 0 50A Mutual Inductance Monitoring Safe Isolation Output 0 5V 0 10V 4 20mA for Industrial Automation Power Grid Systems
[HIGH PRECISION CURRENT MONITORING] The SZT15-CH-420E AC Current Transducer offers mutual inductance current monitoring with exceptional accuracy (±1%) and . It safely isolates input and output while detecting currents up to 50A, making it ideal for precise measurements in industrial and power grid applications. The through-heart design ensures reliable performance even in strong magnetic fields.
[VERSATILE OUTPUT OPTIONS] This current transmitter provides flexible output signals including 0-5V, 0-10V DC, or 4-20mA DC current, allowing seamless integration with various AD systems, PLCs, and digital instruments. Choose the output type for your specific application needs, whether for data acquisition or automatic control systems.
[EASY INSTALLATION & SAFE OPERATION] Featuring a convenient through-heart structure, this sensor requires no direct circuit connection during measurement. With isolation withstand voltage up to 2000V AC and self-extinguishing ABS housing, it ensures safe operation in demanding environments while simplifying installation processes.
[ROBUST PERFORMANCE SPECIFICATIONS] Designed for professional use, this transducer boasts 1% magnetic hysteresis, 200ms response time, and can handle currents up to 200% of rated value temporarily. It operates reliably in temperatures from -20°C to 60°C with 5-95% humidity, making it suitable for harsh industrial conditions.
[WIDE APPLICATION RANGE] for AC current monitoring, overload protection, and automatic control systems. The transducer excels in power grid monitoring, industrial automation, and equipment protection scenarios where high isolation (2000V), strong anti-interference, and precise current conversion are required.