1.
A 1-nW Ultra-Low Voltage High PSRR Subthreshold CMOS Voltage Refer..
[41]
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2.
A Fully-On-Chip Analog Low-Dropout Regulator With Negative Charge ..
[23]
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3.
An Energy-Efficient Frequency-Domain CMOS Temperature Sensor With ..
[23]
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4.
A 0.7-V 28-nW CMOS Subthreshold Voltage and Current Reference in O..
[21]
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5.
A Transient-Enhanced Output-Capacitor-Free Low-Dropout Regulator W..
[21]
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6.
A fast-transient-response fully-integrated digital LDO with adapti..
[21]
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7.
A Fast-Transient-Response Fully-Integrated Digital LDO With Adapti..
[18]
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8.
A Transient-Improved Dynamic-Replica LDO Regulator with Bulk Modul..
[17]
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9.
A 0.9-v 22.7-ppm/ºC sub-bandgap voltage reference with single BJT..
[16]
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10.
A 2×V DD ..
[15]
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11.
A Nano-Watt Dual-Output Subthreshold CMOS Voltage Reference
[15]
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12.
A 0.7V Fully-on-Chip Pseudo-Digital LDO Regulator with 6.3μA Quie..
[14]
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13.
A −80 dB PSRR 4.99 ppm/°C TC bandgap reference with nonlinear ..
[14]
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14.
A Fully-on-Chip Low-Voltage Low-Dropout Regulator with Negative Ch..
[13]
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15.
A power and area efficient CMOS voltage reference with second-orde..
[12]
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16.
A High-Efficiency Dual-Antenna RF Energy Harvesting System Using F..
[12]
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17.
A 0.5V 46.2ppm°C CMOS Voltage Reference Based on Compensated Δv ..
[11]
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18.
A 0.035mm2 150mA fast-response low-dropout regulator based on matc..
[11]
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19.
Mind Map for Task Oriented Teaching of “Digital System Design”
[11]
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20.
A −40 °C to 120 °C, 169 ppm/°C Nano-Ampere CMOS Current Refere..
[11]
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21.
Closed-Loop Transfer Functions and Frequency-Point Spectrum Simula..
[10]
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22.
A Single-Stage Dual-Output Regulating Rectifier With Hysteretic Cu..
[9]
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23.
A 6.15–10.9 Gb/s 0.58 pJ/Bit Reference-Less Half-Rate Clock and D..
[9]
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24.
一种脉冲宽度调制电路及装置
[9]
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25.
A 10MHz Buck Converter with Type-III Control and Transient Enhance..
[8]
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26.
A 6.78-MHz Single-Stage Regulating Rectifier with Hysteretic Contr..
[8]
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27.
Analysis of multi-phase trans-inductor voltage regulator with fast..
[8]
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28.
A 19–48.3-GHz 6th-Order Transformer-Based Injection-Locked Freque..
[8]
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29.
A 0.035mm(2) 150mA Fast-Response Low-Dropout Regulator Based on Ma..
[7]
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30.
A Fully Integrated FVF LDO With Enhanced Full-Spectrum Power Suppl..
[7]
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31.
A −40–125 °C, 0.8 V, 33 kHz relaxation oscillator with integrat..
[7]
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32.
An Ultra-low Power Consumption Dual-Output Subthreshold CMOS Volta..
[7]
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33.
A 127 nA Quiescent Current Capacitorless NMOS LDO with Fast-Transi..
[7]
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34.
一种全数字锁相环
[7]
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35.
A 4-MHz Digitally Controlled Voltage-Mode Buck Converter With Embe..
[6]
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36.
A 6.78-MHz Single-Stage Wireless Power Receiver with Ultra-Fast Tr..
[6]
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37.
A 95% Peak Efficiency Modified KY (Boost) Converter for IoT with C..
[6]
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38.
A switched-capacitor-assisted wireless power transfer system with ..
[6]
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39.
A − 40°C–125 °C 0.4-μA Low-Noise Bandgap Voltage Reference Wi..
[6]
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40.
An area-efficient low quiescent current output capacitor-less LDO ..
[5]
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41.
1V relaxation oscillator with integrated voltage and current refer..
[4]
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42.
A 19-30ppm/°C Temperature Coefficient Sub-Nanowatt CMOS Voltage R..
[4]
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43.
A −40 °C to 140 °C Picowatt CMOS Voltage Reference With 0.25-V ..
[3]
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44.
A 5.72-μW, 1.02-MHz,-40~125°C, 1μs-Startup Time Relaxation Osci..
[3]
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45.
A 1.1-V 26.2-ppm/°C Sub-Bandgap Voltage Reference with 6.5-nW Pow..
[3]
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46.
一种低压差线性稳压器
[3]
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47.
A 210nA Quiescent Current Bandgap Reference with 5mA Load Capabili..
[3]
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48.
A 6.78-MHz Wireless Power Transfer System With Inherent Wireless P..
[3]
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49.
A High-Efficiency Low-Cost Multi-Antenna Energy Harvesting System ..
[3]
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50.
A 2.06μW/MHz, 5.05-MHz, -40-125°C, 22ppm/°C Relaxation Oscillat..
[2]
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51.
A 120nW, 121 kHz, -20~100°C CMOS Relaxation Oscillator with Digit..
[2]
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52.
SLiMO: A 61.8% Efficiency Single-Link Multiple-Output Isolated DC-..
[2]
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53.
A Battery-Input Three-Mode Buck–Boost Hybrid DC–DC Converter Wit..
[2]
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54.
A 63% Efficiency 1.29-W Single-Link Multiple-Output (SLiMO) Isolat..
[2]
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55.
A Single-Stage Bipolar-Output Regulating Rectifier With Negligible..
[2]
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56.
一种有源整流器
[1]
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57.
探索"数字系统设计"课程的"任务型"教学模式
[1]
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58.
8.4 A Fast-Transient 3-Fine-Level Buck-Boost Hybrid DC-DC Converte..
[1]
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59.
A Three-Fine-Level Buck–Boost Hybrid Converter Achieving Half- ${..
[1]
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