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New TI sensor targets smoother, longer-range EVs

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The component sits where an electric vehicle decides how much power reaches its motor: inside the traction inverter, the system that manages electricity between the battery and the drive unit. Texas Instruments says its new TMCS2100-Q1 sensor can make that handoff more precise, potentially bringing smoother acceleration and less motor noise to future EVs.

The sensor tackles a small movement with large consequences. Conventional magnetic-core sensors can be accurate but larger and heavier, while smaller coreless sensors can lose precision when vibration shifts them. TI’s design reads the magnetic field in two directions at once—horizontally and vertically—so it can compensate when the sensor moves out of position.

TI says the result is 20 times as accurate as current single-direction coreless sensors, with measurement errors kept below 1% even after a position shift of 0.4 millimeters. That precision matters particularly in newer 800-volt powertrains, which can deliver substantial electrical power quickly.

So what changes for drivers? If automakers adopt the sensor, more accurate motor control could reduce energy lost as heat, limit torque ripple—the tiny power fluctuations that can make acceleration feel less smooth—and quiet the motor. Its small size could also support smaller, lighter inverters. The likely benefit is an accumulation of efficiency gains, not a predictable number of extra miles.

The boundary is clear: TI’s figures describe the sensor, not a measured improvement in a finished EV. No independent test is cited, and the company says the real-world range effect will depend on how automakers use the component and on the rest of the powertrain.

20 timesTI’s claimed accuracy gain over single-direction coreless sensors

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