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Featured researches published by Li Bo.


Journal of Semiconductors | 2016

A reference voltage in capacitor–resister hybrid SAR ADC for front-end readout system of CZT detector*

Liu Wei; Wei Tingcun; Li Bo; Yang Lifeng; Hu Yongcai

An on-chip reference voltage has been designed in capacitor–resister hybrid SAR ADC for CZT detector with the TSMC 0.35 μm 2P4M CMOS process. The voltage reference has a dynamic load since using variable capacitors and resistances, which need a large driving ability to deal with the current related to the time and sampling rate. Most of the previous articles about the reference for ADC present only the bandgap part for a low temperature coefficient and high PSRR. However, it is not enough and overall, it needs to consider the output driving ability. The proposed voltage reference is realized by the band-gap reference, voltage generator and output buffer. Apart from a low temperature coefficient and high PSRR, it has the features of a large driving ability and low power consumption. What is more, for CZT detectors application in space, a radiation-hardened design has been considered. The measurement results show that the output reference voltage of the buffer is 4.096 V. When the temperature varied from 0 to 80 °C, the temperature coefficient is 12.2 ppm/°C. The PSRR was −70 dB @ 100 kHz. The drive current of the reference can reach up to 10 mA. The area of the voltage reference in the SAR ADC chip is only 449 × 614 μm2. The total power consumption is only 1.092 mW.


Journal of Semiconductors | 2015

A 12-bit 1 MS/s SAR-ADC for multi-channel CdZnTe detectors*

Liu Wei; Wei Tingcun; Li Bo; Guo Panjie; Hu Yongcai

This paper presents a low power, area-efficient and radiation-hardened 12-bit 1 MS/s successive approximation register (SAR) analog-to-digital converter (ADC) for multi-channel CdZnTe (CZT) detector applications. In order to improve the SAR-ADCs accuracy, a novel comparator is proposed in which the offset voltage is self-calibrated and also a new architecture for the unit capacitor array is proposed to reduce the capacitance mismatches in the charge-redistribution DAC. The ability to radiation-harden the SAR-ADC is enhanced through circuit and layout design technologies. The prototype chip was fabricated using a TSMC 0.35 μm 2P4M CMOS process. At a 3.3/5 V power supply and a sampling rate of 1 MS/s, the proposed SAR-ADC achieves a peak signal to noise and distortion ratio (SINAD) of 67.64 dB and consumes only 10 mW power. The core of the prototype chip occupies an active area of 1180 × 1080 μm2.


Archive | 2014

Circuit and method for digital compensation correction of OLED luminous efficiency attenuation

Li Bo; Wei Tingcun; Wei Xiaomin


Archive | 2014

Detection device and detection method of signal of projected capacitive touch screen

Li Bo; Zhan Siwei; Wei Xiaomin; Liu Wei; Wang Yulong


Archive | 2013

Non-isolated LED (Light Emitting Diode) power supply

Wei Xiaomin; Wei Tingcun; Li Bo; Chen Qimeng


Archive | 2015

Projected capacitive touch screen panel with single-layer indium tin compound electrode

Li Bo; Wang Yulong; Tang Siping; Zhi Yongyao


Archive | 2015

Method for encrypting and protecting system by aid of touch screen device

Wang Yulong; Li Bo; Tang Shiping; Zhi Yongyao


Archive | 2016

FULL-TOUCH SYSTEM ACTIVATION METHOD AND SYSTEM THEREOF

Wang Yulong; Li Bo


Archive | 2016

Full-high-definition video processing device

Fan Chao; Yang Jingbao; Xu Yifei; Yang Licheng; Zhan Siwei; Li Bo


Archive | 2016

METHOD OF USING TOUCH SCREEN DEVICE FOR SYSTEM ENCRYPTION AND PROTECTION

Wang Yulong; Li Bo; Zhi Yongyao; Tang Shiping

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Wei Tingcun

Northwestern Polytechnical University

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Hu Yongcai

Northwestern Polytechnical University

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Liu Wei

Northwestern Polytechnical University

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Gao Wu

Northwestern Polytechnical University

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Zheng Ran

Northwestern Polytechnical University

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Gao Deyuan

Northwestern Polytechnical University

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Yang Lifeng

Northwestern Polytechnical University

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