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A High Linearity,13bit Pipelined CMOS ADC 被引量:1
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作者 李福乐 段静波 王志华 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2008年第3期497-501,共5页
A 13bit,pipelined analog-to-digital converter (ADC) designed to achieve high linearity is described. The high linearity is realized by using the passive capacitor error-averaging technique to calibrate the capacitor... A 13bit,pipelined analog-to-digital converter (ADC) designed to achieve high linearity is described. The high linearity is realized by using the passive capacitor error-averaging technique to calibrate the capacitor mismatch error, a gain-boosting opamp to minimize the finite gain error and gain nonlinearity,a bootstrapping switch to reduce the switch on-resistor nonlinearity, and an anti-disturb design to reduce the noise from the digital supply. This ADC is implemented in 0.18μm CMOS technology and occupies a die area of 3.2mm^2 , including pads. Measured performance includes - 0.18/ 0.15LSB of differential nonlinearity, -0.35/0.5LSB of integral nonlinearity, 75.7dB of signal-to-noise plus distortion ratio (SNDR) and 90. 5 dBc of spurious-free dynamic range (SFDR) for 2.4MHz input at 2.5MS/s. At full speed conversion (5MS/s) and for the same 2.4MHz input, the measured SNDR and SFDR are 73.7dB and 83.9 dBc, respectively. The power dissipation including output pad drivers is 21mW at 2.5MS/s and 34mW at 5MS/s,both at 2.7V supply. 展开更多
关键词 analog-to-digital converter high linearity capacitor error-averaging GAIN-BOOSTING bootstrapping switch anti-disturb
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基于低压电力线的载波模块设计
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作者 李照彬 林宏 谢嘉倍 《电子产品世界》 2018年第1期63-65,68,共4页
由传统的高压电力线通信技术发展而来的低压电力线载波通信技术已经越来越受到关注,低压电力线载波通信技术是利用现有的电力线作为信号传输信道来实现一对一、一对多或多对多的通信技术。选择有效的方案实现电网中的通信至关重要,本设... 由传统的高压电力线通信技术发展而来的低压电力线载波通信技术已经越来越受到关注,低压电力线载波通信技术是利用现有的电力线作为信号传输信道来实现一对一、一对多或多对多的通信技术。选择有效的方案实现电网中的通信至关重要,本设计通过建立低压电力线载波模块系统模型,设计了基于HLPLCS521F的低压电力线载波模块。在完成本设计硬件部分的理论分析后,进行相关的测试,并对测试结果做进一步的分析,实现了利用低压电力线进行数据传输的目的。通过在实验室和现场环境中测试了其通信效果,该载波模块设计方案具有较高的信号保真度和抗噪声能力。 展开更多
关键词 电力线载波 HLPLCS521F 高保真度 强抗扰
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Application of pseudo-random frequency domain electromagnetic method in mining areas with strong interferences 被引量:7
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作者 Yan-fang HU Di-quan LI +2 位作者 Bo YUAN Guang-yun SUO Zi-jie LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第3期774-788,共15页
Due to the strong electromagnetic interferences and human interference,traditional electromagnetic methods cannot obtain high quality resistivity data of mineral deposits in Chinese mines.The wide field electromagneti... Due to the strong electromagnetic interferences and human interference,traditional electromagnetic methods cannot obtain high quality resistivity data of mineral deposits in Chinese mines.The wide field electromagnetic method(WFEM),in which the pseudo-random signal is taken as the transmitter source,can extract high quality resistivity data in areas with sever interference by only measuring the electric field component.We use the WFEM to extract the resistivity information of the Dongguashan mine in southeast China.Compared with the audio magnetotelluric(AMT)method,and the controlled source audio-frequency magnetotelluric(CSAMT) method,the WFEM can obtain data with higher quality and simpler operations.The inversion results indicate that the WFEM can accurately identify the location of the main ore-body,which can be used for deep mine exploration in areas with strong interference. 展开更多
关键词 pseudo-random signal frequency domain electromagnetic method wide field electromagnetic method(WFEM) strong interference anti-interference capability Dongguashan copper deposit
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