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A Floating-Gate Comparator With Automatic Offset Adaptation for 10-bit Data Conversion

机译:具有自动偏移量自适应功能的浮栅比较器,用于10位数据转换

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We present a novel voltage comparator that uses nonvolatile floating-gate charge storage for either offset nulling or automatic programming of a desired offset. We exploit the negative feedback mechanism of pFET hot-electron injection to achieve fully automatic offset cancellation. The adaptation guarantees an input offset less than the input-referred noise level regardless of initial device offset for a typical 8.3% observed injection mismatch. In addition, we demonstrate the ability to accurately program a desired offset. The design has been fabricated in a commercially available 0.35-μm process. Experimental results confirm the ability to reduce the variance of the initial offset by two orders of magnitude and to accurately program a desired offset with maximum observed deviation 728 μV and typical deviation 109 μV. The mean offset is reduced by a factor of 416 relative to fabricated chips directly from the foundry and by a factor of 202 relative to UV-irradiated chips. Adaptation is fast, with settling time typically under 50 ms and scaling inversely with the exponential of the injection voltage. We achieve controlled injection to accurately program the input offset to voltages uniformly distributed from -1 to 1V. The comparator exhibits a 5 ns propagation delay and consumes 270 μW.
机译:我们提出了一种新颖的电压比较器,该电压比较器使用非易失性浮栅电荷存储进行失调归零或对所需失调进行自动编程。我们利用pFET热电子注入的负反馈机制来实现全自动失调消除。对于典型的观察到的8.3%的注入失配,无论初始设备的失调如何,该自适应保证输入失调都小于输入参考噪声级。此外,我们展示了准确编程所需偏移量的能力。该设计采用可商购的0.35-μm工艺制造。实验结果证实了能够将初始偏移量的变化减少两个数量级,并能够以最大观察到的偏差728μV和典型偏差109μV准确地编程所需的偏移量。相对于直接从铸造厂制造的芯片,平均偏移降低了416倍,相对于经紫外线照射的芯片降低了202倍。自适应速度很快,建立时间通常在50 ms以下,并且与注入电压的指数成反比。我们实现了受控注入,以将输入失调准确地编程为从-1至1V均匀分布的电压。比较器具有5 ns的传播延迟,功耗为270μW。

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