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Low-Power Operational Amplifier for Real-Time Signal Processing System of Micro Air Vehicle

Low-Power Operational Amplifier for Real-Time Signal Processing System of Micro Air Vehicle
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摘要 A low-power complementary metal oxide semiconductor(CMOS) operational amplifier (op-amp) for real-time signal processing of micro air vehicle (MAV) is designed in this paper.Traditional folded cascode architecture with positive channel metal oxide semiconductor(PMOS) differential input transistors and sub-threshold technology are applied under the low supply voltage.Simulation results show that this amplifier has significantly low power,while maintaining almost the same gain,bandwidth and other key performances.The power required is only 0.12 mW,which is applicable to low-power and low-voltage real-time signal acquisition and processing system. A low-power complementary metal oxide semiconductor(CMOS) operational amplifier (op-amp) for real-time signal processing of micro air vehicle (MAV) is designed in this paper.Traditional folded cascode architecture with positive channel metal oxide semiconductor(PMOS) differential input transistors and sub-threshold technology are applied under the low supply voltage.Simulation results show that this amplifier has significantly low power,while maintaining almost the same gain,bandwidth and other key performances.The power required is only 0.12 mW,which is applicable to low-power and low-voltage real-time signal acquisition and processing system.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2010年第3期353-356,共4页 北京理工大学学报(英文版)
基金 Sponsored by the National Natural Science Foundation of China (60843005) the Basic Research Foundation of Beijing Institute of Technology(20070142018)
关键词 microelectromechanical system(MEMS) operational amplifier(op-amp) LOW-POWER real-time signal processing system micro air vehicle(MAV) microelectromechanical system(MEMS) operational amplifier(op-amp) low-power real-time signal processing system micro air vehicle(MAV)
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  • 1张杰,方厚辉,房华,华孝泉.低电压低功耗恒跨导CMOS推挽运算放大器的设计与研究[J].中国仪器仪表,2006(2):83-86. 被引量:1
  • 2曹三林,何乐年.一种1.8-V Rail-to-Rail CMOS运算放大器的设计[J].微电子学与计算机,2006,23(11):121-125. 被引量:6
  • 3陈斯,恽廷华.采用最大电流选择的恒定跨导Rail-to-RailCMOS运放输入级[J].电路与系统学报,2006,11(6):120-123. 被引量:5
  • 4[1]Razavi B:Design of Analog CMOS Integrated Circuits[M],New Yorks,McGraw-Hill,2001.
  • 5[2]R.Jacob Baker,Harry W.Li,David E.Boyce:CMOS Circuit Design,Layout,and Simulation,John Wiley &Sons,Inc,1998.
  • 6[3]Phillip E.Allen,Douglas R.Holberg:CMOS Analog Circuit Design[M].2nd Edition.Oxford University Press,2002.
  • 7Vincnce V C,Montoro C G, Schneider M C. A Low - Voltage CMOS Class - AB Operational Amplifier [-JJ. IEEE Trans. Circuits and Systems, 2002. ISCAS 2002. IEEE International Symposium [A].Universidade Federal de Santa Catarina. 2002(3) :603 - 606.
  • 8Zhu D,Tanno K, Ishizuka O. A Highly Linear, Low - Voltage and Low- Power CMOS OTA and its Application[J]. ICITA. Harbin,2004:250 - 255.
  • 9Rajput S S, Jamuar S S. Low Voltage Analog Circuit Design Techniques [J]. IEEE Circ. Syst. Mag. , 2002,2 (1) : 24 - 242.
  • 10Loikkanen M, Kostamovaara J. Low Voltage CMOS Power Amplifier with Rail - to - Rail Input and Output[J]. Analog Integral Circuits Process , 2006 : 46 - 183.

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