| | | | | | | | | Partial discharge occurs when a small area of insulation, in a high-voltage environment, can’t handle the electrical stress level, leading to breakdown. |
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Advertisement | | Unlock leading-edge accuracy and speed for maximum system performance and protect your wide-bandgap power FETs with sensing technology designed by high-voltage experts. |
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| | Advertisement | TMCS1123 provides the best accuracy for a Hall-effect current sensor with industry-leading total sensitivity error over temperature & lifetime of ±1.75%. Achieve more precise control and reach new levels of efficiency for high-voltage systems. |
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| | | Evaluate the features and performance of the TMCS1123, ±1100-V reinforced isolation Hall-effect current sensor. Reach new levels of system efficiency and protection with ultra-low propagation delay of just 600 ns. |
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| | | Achieve more accurate, reliable and fast current and voltage sensing while reducing solution size in polyphase energy metering systems with an ultra-low EMI precision ADC designed for shunt-based topologies. |
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| | | Evaluate the features of performance of the AMC131M03, data- and power-isolated, 24-bit, precision ADC. Boost isolation performance to 5000 VRMS while reducing solution size by 74%. |
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| | | | Advertisement | | Read about current-sensing design considerations across technologies and how you can now accurately sense current in high-voltage applications while limiting design complexity and tackling design problems quickly and at the right price with TMCS1123. |
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Advertisement | | Learn about higher system voltages, increased system protection, telemetry monitoring and reduced form factors. |
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Advertisement | | Learn about design considerations for current sensing in EV charging applications, with a focus on the gain error, offset, bandwidth, and latency concerning system performance. |
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