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一种无需SDAC的新型流水线ADC架构——桥电位式流水线ADC架构
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作者 陈启星 罗启宇 《电子学报》 EI CAS CSCD 北大核心 2019年第7期1518-1524,共7页
ADC/DAC是计算机技术的重要组成部分之一.本文提出的桥电位架构ADC,类似于流水线ADC,也是由多个StageADC采用流水线方式构成.文中提出了两个创新点:一是桥电位架构,在某个瞬间,基准电位链中必有一个基准电位既对应着模拟输入信号,又对... ADC/DAC是计算机技术的重要组成部分之一.本文提出的桥电位架构ADC,类似于流水线ADC,也是由多个StageADC采用流水线方式构成.文中提出了两个创新点:一是桥电位架构,在某个瞬间,基准电位链中必有一个基准电位既对应着模拟输入信号,又对应着数字输出信号,称桥电位,相对于流水线ADC而言,桥电位ADC中的基准电位链扩展了一项功能:将基准电位链中的桥电位直接取出与模拟输入信号相减就等于尾数电压,无需SDAC;二是翻转点ON式零损开关链,由此构成桥电位提取模块,使得桥电位只需流经仅仅一个零损开关即可被取出.这两项改进使得每个StageADC都只包含了SADC,而SDAC被摒弃. 展开更多
关键词 ADC架构 桥电位 翻转点 零损开关 流水线ADC SDAC 基准电位 子级ADC
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SOFT SWITCHED SYNCHRONOUS RECTIFIER WITH PHASE-SHIFTED FULL BRIDGE CONVERTER AND ITS SMALL-SIGNAL ANALYSIS
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作者 潘三博 潘俊民 万健如 《Transactions of Tianjin University》 EI CAS 2006年第1期6-12,共7页
By using the output inductors and body capacitances without adding any component compared with hard switching synchronous rectifier,the topology of a soft switched synchronous rectifier with phase-shifted full bridge ... By using the output inductors and body capacitances without adding any component compared with hard switching synchronous rectifier,the topology of a soft switched synchronous rectifier with phase-shifted full bridge zero voltage switching DC/DC converter is proposed. The converter efficiency is maximized due to soft switching of the full bridge MOSFETs and the synchronous MOSFETs, and also the low conduction loss of synchronous MOSFET. The operation principles of the circuit are analyzed in detail and the small-signal model is derived, also the converter dynamic characteristics are analyzed. Frequency responses of transfer functions under different values of transformer primary leakage inductance are discussed. The experimental results were obtained from a 400 V input and 100 A/12 V output DC/DC converter operating at 100 kHz. The results show that the converter efficiency is 2% higher in rated power than traditional diode rectifier. 展开更多
关键词 phase-shifted full bridge zero voltage switch synchronous rectifier DC/DC small signal
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High-precision inductance measurement system based on double-excitation auto-balancing bridge
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作者 AI Yu FU Xiao +3 位作者 LI Yao WANG Xianquan DUAN Fajie JIANG Jiajia 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2022年第3期253-260,共8页
In order to achieve high precision measurement of inductance in a wide frequency range,a method of inductance measurement based on double-excitation auto-balancing bridge is proposed.In this method,the direct digital ... In order to achieve high precision measurement of inductance in a wide frequency range,a method of inductance measurement based on double-excitation auto-balancing bridge is proposed.In this method,the direct digital synthesizer(DDS)as signal generator is used as the bridge excitation source,and the bridge is automatically balanced by adjusting and measuring the voltage ratio.Using standard resistors,the system can achieve high precision measurement of four-terminal pair inductors in the frequency range of 100Hz-100kHz.Aiming at the low efficiency of bridge balancing,an iterative balancing algorithm based on the steepest descent method is proposed.In order to suppress the interference caused by the initial phase change and non-integer periodic sampling,the high-precision measurement of the complex impedance of inductance is realized based on the all-phase fast Fourier transform(apFFT).Finally,the corresponding measurement system is built and the inductance measurement experiment is carried out.The experimental results show that the relative error of the system for inductance measurement can be as low as 0.009%,and the optimal relative measurement uncertainty of the system can reach 9.89×10^(-4)compared with 5×10^(-5)of commercial impedance analyzer. 展开更多
关键词 double-excitation auto-balancing bridge inductance measurement all-phase fast Fourier transform(apFFT) relative measurement uncertainty
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