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A Smart IGBT Gate Driver IC With Temperature Compensated Collector Current Sensing

机译:具有温度补偿电流传感器的智能IGBT栅极驱动器IC

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Conventional insulated gate bipolar transistor (IGBT) current sensing and protection techniques usually employ discrete sensors, such as lossy shunt resistors, and may involve accessing the high-voltage collector load of the IGBT. This would normally present difficulties for integration. This paper presents an IGBT gate driver I-C with a collector current sensing circuit and an on-chip CPU for local data processing. This I-C is prototyped using a TSMC 0.18 mu m 40 V BCD Gen-2 process. The collector current sensing technique is based on the unique Miller plateau relationship between the gate current and collector current (I-C and I-G) for a particular gate resistance (R-G). It allows a cycleby- cycle measurement of I-C during both turn-ON and turn-OFF transients without any extra discrete components. The temperature variation is compensated internally by the on-chip CPU using polynomial curve fitting. This technique only monitors the lowvoltage signal at the gate terminal, without the need to handle any high-voltage signal on the collector/load side. Measurements using a double pulse test setup show an accuracy of +/- 0.5 A over the current ranges of 1-30 A for turn-ON and 1-50 A for turn-OFF from 25 to 75 degrees C.
机译:传统的绝缘栅双极晶体管(IGBT)电流检测和保护技术通常采用离散传感器,例如有损分流电阻器,并且可以涉及访问IGBT的高压收集器负载。这通常会出现整合困难。本文介绍了IGBT栅极驱动器I-C,带有集电极电流检测电路和用于本地数据处理的片上CPU。使用TSMC 0.18 mu M 40 V BCD Gen-2处理来解决该I-C原型。收集电流检测技术基于用于特定栅极电阻(R-G)的栅极电流和集电极电流(I-C和I-G)之间的独特米尔平台关系。它允许在没有任何额外的离散组件的接通和关闭瞬变期间进行周期测量I-C。使用多项式曲线配件,片上CPU在内部补偿温度变化。该技术仅监视栅极端子处的低压信号,无需处理收集器/负载侧的任何高压信号。使用双脉冲测试设置的测量显示在电流范围内的+/- 0.5 a,用于开启的电流范围,1-50°A从25到75摄氏度关闭。

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