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运算放大器     
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  operational amplifier
     A 1.8V Rail-to-Rail Operational Amplifier Based on 0.25μm CMOS Technology
     基于0.25μm CMOS工艺的1.8V Rail-to-Rail运算放大器
短句来源
     A High Gain 0.6μm CMOS Operational Amplifier
     高增益0.6μm CMOS运算放大器
短句来源
     2. 5V/0. 25um RAll-TO RAIL OPERATIONAL AMPLIFIER
     2.5V/0.25umRail-to-Rail运算放大器
短句来源
     A 1.5V Low Power Rail-to-Rail CMOS Operational Amplifier
     1.5V低功耗Rail-to-RailCMOS运算放大器
短句来源
     E_n-I_n Noise Matrix Modeling for Bipolar Operational Amplifier
     双极型运算放大器的E_n-I_n噪声矩阵建模
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  operation amplifier
     Design of Low-Power Operation Amplifier for ∑-Δ ADC
     基于∑-ΔADC的低功耗运算放大器设计
短句来源
     The application method is brought forward for the application of the SCM observe and control technology in the development of the instrument of flat heat conduction coefficient, the hardware connection of the serial A/D transformer TLC2543 with SCM, the cold end compensation method for the thermocouple signal and the application of high precision operation amplifier ICL7650 are introduced, a new application method of digital PID arithmetic is put forward.
     就单片机测控技术应用于平板导热系数仪的研制提出了应用方法,介绍了串行A/D转换器TLC2543与单片机的硬件连接,热电偶信号的冷端补偿方法以及高精度运算放大器ICL7650的应用,对数字PID算法提出了新的应用方式。
短句来源
     A Study and Application of Coated-Wire Operation Amplifier Potassium-Selective Electrode Based on 4-Picrylaminobenzo-15-Crown-5
     4-苦胺基苯并-15-冠-5涂丝运算放大器钾电极的研制及应用
短句来源
     A kind of low-power operation amplifier circuit for ∑-Δ ADC was introduced.
     介绍了一种用于∑-ΔADC的低功耗运算放大器电路。
短句来源
     Discussion on Teaching of Nonlinear Application of Integrated Operation Amplifier
     “集成运算放大器非线性应用”教学研讨
短句来源
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  operational amplifiers
     Precision Micropower Single-Supply Operational Amplifiers: OP777/727/747
     精密微功耗单电源运算放大器0P777/727/747
短句来源
     0.5um CMOS Process Parameters Current-feedback Operational Amplifiers
     0.5umCMOS工艺参数电流反馈运算放大器
短句来源
     The aim of this paper is to describe a new CMOS current-feedback operational amplifiers based on the references , simulation results of the CFOA,using 0.5um CMOS process parameters with threshold voltage 0.7v, result in a high slewrate as well as bandwidth gain-independence ,and power consumption 6.2mW from 1.5V supply voltage.
     本篇论文主要在文献1、2、3基础上设计了一种新型的CMOS电流反馈运算放大器,使用0.5umCMOS工艺参数(阈值电压为0.7v),模拟获得了与增益无关的带宽、极大的转换速率以及在1.5V电源电压下产生了约6.2mW的功耗。
短句来源
     The aim of this paper is to describe a new CMOS current-feedback operational amplifiers based on the literature\,simulation results of the CFOA,using 0.5 μm CMOS process parameters with threshold voltage 0.7 V,result in bandwidth gain-independence.
     主要在文献[1]基础上设计了一种新型的CMOS电流反馈运算放大器(CFOA),使用了0.5μmCMOS工艺参数(阈值电压为0.7 V),模拟结果获得了与增益关系不大的带宽。
短句来源
     The aim of this paper is to describe a new CMOS current-feedback operational amplifiers based on the references[1~3], simulation results of the CFOA,using 0.5μm CMOS process parameters with threshold voltage 0.7V, result in a high slewrate as well as bandwidth gain-independence .
     文章主要在文献[1 ̄3]基础上设计了一种新型的CMOS电流反馈运算放大器,使用0.5μmCMOS工艺参数(阈值电压为0.7V),模拟结果获得了与增益无关的带宽、极大的转换速率。
短句来源
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  op amp
     chip test results demonstrated that the power consumption and maximum output current of this op amp are 625μW and 1.2mA separately by using 2-poly, 4-metal (2P4M) 3.3V power supply, 0.35μm CMOS technology of Taiwan TSMC.
     采用台积电(TSMC)2层多晶硅、4层金属(2P4M)3·3V,0·35μmCMOS工艺流片得到所设计的全差分低电压、高驱动能力运算放大器在3·3V电源电压工作条件下的功耗仅为625μW,电流输出幅度达到1·2mA。
短句来源
     By the BSIM3V3 model of TSMC 0.25 μm CMOS process, the low voltage characteristics of the proposed op amp is stimulated. Simulation results indicate that under a single 0.8 V power supply, the dc open-loop gain of the amplifier is 106 dB, the phase margin is 62° and the unit gain band width is 260 kHz with 3.9 μW power dissipation.
     采用TSMC0.25μmCMOS工艺的BSIM3V3模型,对所设计运放的低压特性进行仿真,结果表明,在0.8V电源电压下,运算放大器的直流开环增益为106dB,相位裕度为62°,单位增益带宽为260kHz,功耗仅为3.9μW。
短句来源
     NOISE SIMULATION AND LOW-NOISE DESIGN FOR MOS OP AMP
     MOS运算放大器的噪声模拟和低噪声设计
短句来源
     Computer analog results verify that the Op amp has a 73dB open-loop gain,can drive ±4.8V into 10kΩat 1kHz and with ±5V suppties.
     计算机模拟结果表明,运算放大器具有73dB的开环增益。 在电源电压为±5V时,负载电阻为10kΩ,输出电压摆幅为±4.8V。
短句来源
     An Automated Optimization Algorithm of a CMOS Gain-boost Op Amp
     增益增强型CMOS运算放大器的自动优化算法
短句来源
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  operational amplifier
The macromodel of an operational amplifier with current output
      
The results of development of the macromodel of an operational amplifier with current output, which is widely used in complex functional blocks of analog-to-digital and digital-to-analog converters, are presented.
      
Current-feedback operational amplifier: Some features of its transient radiation response
      
Design and analysis of integrated operational amplifier XD1531 with low noise at low frequencies
      
Two novel switched-capacitor (SC) bandpass filters using a single operational amplifier (op amp) are presented.
      
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  operation amplifier
It is now possible to achieve perfect linearity with the aid of a modern operation amplifier, owing to the extremely low impedance of the photoelement input.
      
  operational amplifiers
Predicting the Effect of Pulsed Ionizing Radiation on Operational Amplifiers
      
The response of IC operational amplifiers (op amps) to pulsed ionizing irradiation is studied theoretically and experimentally.
      
This method saves the number of operational amplifiers, and thereby lowers the cost and power consumption.
      
A versatile current-mode biquad using operational amplifiers
      
A versatile current-mode biquadratic filter using three operational amplifiers and nine passive elements is proposed.
      
更多          
  op amp
The ionization-induced failure of an op amp is traced to its intermediate stages.
      
Ways to define the performance index of an op amp exposed to pulsed ionizing radiation are discussed.
      
This paper discusses the design method of E/D NMOS chopper-stabilized op amp.
      
Two novel switched-capacitor (SC) bandpass filters using a single operational amplifier (op amp) are presented.
      
With our approach, for the 741 op amp, the CMRR of the differential stage exceeds 126 dB at 10 Hz and 106 dB at 100 Hz, which is higher than the 90 dB of the op amp alone.
      
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