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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Low-Power Small-Area Inverter-Based DSM for MEMS Microphone
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Low-Power Small-Area Inverter-Based DSM for MEMS Microphone

机译:用于MEMS麦克风的低功耗小区域逆变器的DSM

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摘要

A delta-sigma modulator (DSM) is proposed for the direct connection to micro-electro-mechanical systems (MEMS) microphone. To reduce power, both the DAC reference voltage (VREF) and the DSM supply voltage (VDD) are reduced to 700 mV by limiting the maximum linear acoustic input range to 110 dB SPL (sound pressure level). For the low VDD operation, the switched capacitor (SC) integrators of DSM employ CMOS inverters as amplifiers. A unity-gain buffer compensates the pole error of the SC integrator; it reduces chip area by replacing the auto-zero capacitor of conventional inverter-based SC integrator. Compared to the conventional integrator, the integrator of this brief reduces the pole error from 0.3% to 0.06%, reduces the chip area and the power by 32.4% and 24.8%, respectively. The 3rd order DSM in a 65 nm CMOS process was measured to have Walden-figure of merit (FoMw) 89.3fJ/step, dynamic range (DR) 90.1 dB, signal-to-noise ratio (SNR) 87.2 dB, signal-to-noise and distortion ratio (SNDR) 86.4 dB, and power 122 uW at 10 MHz clock frequency (Fs).
机译:提出了达达Σ调制器(DSM),用于直接连接微电机械系统(MEMS)麦克风。减少功率,DAC参考电压(V ref )通过将最大线性声学输入范围限制为110 dB SPL(声压级),DSM电源电压(VDD)减小到700 mV。对于低VDD操作,DSM的开关电容(SC)积分器使用CMOS逆变器作为放大器。 Unity-Gain缓冲区补偿了SC积分器的极误差;它通过更换传统的逆变器的SC积分器的自动零电容来减少芯片区域。与传统积分器相比,该简短的积分器将极误差从0.3%降低至0.06%,减少了芯片面积和功率分别为32.4%和24.8%。 3. rd 测量65 nm CMOS过程中的订单DSM以具有沃尔德 - 图(FOMW)89.3FJ /步骤,动态范围(DR)90.1 DB,信噪比(SNR)87.2 DB,信号对噪声和失真率(SNDR)86.4dB,以及10 MHz时钟频率(FS)的功率122 UW。

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