An Ultra-Low Voltage Analog Front End for Strain Gauge Sensory System Application in 0.18 μm CMOS

被引:0
作者
Edward, Alexander [1 ]
Chan, Pak Kwong [1 ]
机构
[1] Nanyang Technol Univ, Sch Elect & Elect Engn, Singapore, Singapore
来源
IEICE TRANSACTIONS ON ELECTRONICS | 2012年 / E95C卷 / 04期
关键词
active-bootstrapped; analog front end; chopper-stabilized amplifier; continuous-time filter; energy harvesting; instrumentation amplifier; low-dropout regulator; low voltage; strain gauge transducer; STABILIZED INSTRUMENTATION AMPLIFIER; DIFFERENTIAL-DIFFERENCE AMPLIFIER; OPERATIONAL-AMPLIFIER; OP-AMPS; CIRCUITS; BANDGAP; DTMOS;
D O I
10.1587/transele.E95.C.733
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper presents analysis and design of a new ultra-low voltage analog front end (AFE) dedicated to strain sensor applications. The AFE, designed in 0.18 mu m CMOS process, features a chopper-stabilized instrumentation amplifier (IA), a balanced active MOSFET-C 2nd order low pass filter (LPF), a clock generator and a voltage booster which operate at supply voltage (V-dd) of 0.6 V. The designed IA achieves 30 dB of closed-loop gain, 101 dB of common-mode rejection ratio (CMRR) at 50 Hz, 80 dB of power-supply rejection ratio (PSRR) at 50 Hz, thermal noise floor of 53.4 nV/root Hz, current consumption of 14 mu A, and noise efficiency factor (NEF) of 9.7. The high CMRR and rail-to-rail output swing capability is attributed to a new low voltage realization of the active-bootstrapped technique using a pseudo-differential gain-boosting operational transconductance amplifier (OTA) and proposed current-driven bulk (CDB) biasing technique. An output capacitor-less low-dropout regulator (LDO), with a new fast start-up LPF technique, is used to regulate this 0.6 V supply from a 0.8-1.0 V energy harvesting power source. It achieves power supply rejection (PSR) of 42 dB at frequency of 1 MHz. A cascode compensated pseudo differential amplifier is used as the filter's building block for low power design. The filter's single-ended-to-balanced converter is implemented using a new low voltage amplifier with two-stage common-mode cancellation. The overall AFE was simulated to have 65.6 dB of signal-to-noise ratio (SNR), total harmonic distortion (THD) of less than 0.9% for a 100 Hz sinusoidal maximum input signal, bandwidth of 2 kHz, and power consumption of 51.2 mu W. Spectre RF simulations were performed to validate the design using BSIM3V3 transistor models provided by GLOBALFOUNDRIES 0.18 mu m CMOS process.
引用
收藏
页码:733 / 743
页数:11
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