轨至轨运放设计课件.ppt
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1、RAIL-to-RAIL OP AMPS轨至轨运放的设计,主要内容,设计原理采用电平移位法轨至轨运放的设计采用恒定电压法实现跨导恒定的设计,Op Amp Configurations,Why Rail-to-Rail Differential Input Stage?,问题,为什么要提高运放的输入信号共模范围?为什么要实现跨导的恒定?,How to Obtain a Rail-to-Rail Input Common Mode Range?,(a)P-type differential input stage,(b)N-type differential input stage,How to
2、Obtain a Rail-to-Rail Input Common Mode Range?,How to Obtain a Rail-to-Rail Input Common Mode Range?,combining a PMOS and a NMOS Differential pairs,combining a PMOS and a NMOS Differential pairs,Why is a Constant Gm needed?,Techniques for N-P ComplementaryRail-to-Rail Input Stage,1.For input stages
3、with input transistors working in weak-inversion region,using current complementary circuit to keep the sum of IN andIP constant 126;2.Using square root circuit to keep constant 31316;3.and 4.Using current switches to change the tail current of input differential pairs 3456;4.Using hex-pair structur
4、e to control the tail currents of backup pairs 7;,Techniques for N-P ComplementaryRail-to-Rail Input Stage(contd),5.Using maximum/minimum selection circuit to conduct the output current of the differential pair with larger current,as well as larger gm,to the next stage 89;6.Using electronic zener di
5、ode to keep constant 10;7.Using DC level shift circuit to change the input DC level 11.We will analyze them one by one in the following sections.There are still other techniques 1214151718,interested readers may check these references.,Rail-to-Rail Input Stage,Structure 2,Basic idea For an input dif
6、ferential pair,using a 1st order approximation,Rail-to-Rail Input Stage,Structure 3 346,Using current switches to change the tail current of input differential pairs,具体电路,Rail-to-Rail Input Stage,Structure 6 89,Using Maximum/Minimum selection circuit,The block diagram,最大电流选择电路,Rail-to-Rail Input Sta
7、ge,Structure 7,Using DC shifting circuit to change the input DC level,具体电路,Rail-to-rail amplifier with Zener diode,Summary and Comparison,进一步研究的问题,Mismatch between N-channel andP-channel transconductorsTransition RegionCMRR degradation(40-60 dB)Nonlinearity,References I,1 J.F.Duque-Carrillo,J.M.Cari
8、llo,J.L.Ausin,and E.Sanchez-Sinencio,“Robust and universal constant-gm circuit technique,”Electronics Letters,vol.38,no.9,pp.396-397,Apr.2002.2 M.Wang,T.L.Mayhugh,S.H.K.Embabi,and E.Sanchez-Sinencio,“Constant-gm Rail-to-Rail CMOS Op-Amp Input Stage with Overlapped Transition Regions,”IEEE J.of Solid
9、 State Circuits,vol.34,no.2,pp.148-156,Feb.1999.3 G.Ferri and W.Sansen,“A Rail-to-Rail Constant-gm Low-Voltage CMOS Operational Transconductance Amplifier,”IEEE J.of Solid State Circuits,vol.32,no.10,pp.1563-1567,Oct.1997.4 J.Ramirez-Angulo,R.G.Carvajal,J.Tombs,and A.Torralba,“Low-Voltage CMOS Op-Am
10、p with Rail-toRail Input and Output Signal Swing for Continuous-Time Signal Processing Using Multiple-Input Floating-Gate Transistors,”IEEE Trans.On Circuits and Systems II,vol.48,no.1,pp.111-116,Jan 2001.5 J.M.Carrillo,J.F.Duque-Carrillo,G.Torelli,and J.L.Ausin,“General Purpose rail-to-rail input c
11、ircuit with constant behavior for VLSI cell libraries,”IEEE International Symposium on Circuits and Systems,vol.3,pp.607-610,May 2002,References II,1 J.H.Huijsing,and D.Linebarger,“Low voltage operational amplifier with rail-to-rail input and output stages,”IEEE Journal of Solid-State Circuits,vol.S
12、C-20,no.6,pp.1144-1150,December 19852 W.-C.S.Wu,W.J.Helms,J.A.Kuhn,and B.E.Byrkett,“Digital-compatible high-performance operational amplifier with rail-to-rail input and output ranges,”IEEE Journal of Solid-State Circuits,vol.29,no.1,pp.63-66,January 19943 R.Hogervorst,R.J.Wiegerink,P.A.L.de Jong,J.
13、Fonderie,R.F.Wassenaar,and J.H.Huijsing,“CMOS low-voltage operational amplifiers with constant-gm rail-to-rail input stage,”IEEE Proc.ISCAS 1992,pp.2876-28794 R.Hogervost,J.P.Tero,R.G.H.Eschauzier and J.H.Huijsing,“A compact power-efficient 3-V CMOS rail-to-rail input/output operational amplifier fo
14、r VLSI cell libraries,”IEEE Journal of Solid-State Circuits,vol.29,no.12,pp.1505-1513,December 19945 R.Hogervorst,S.M.Safai,and J.H.Huijsing,“A programmable 3-V CMOS railto-rail opamp with gain boosting for driving heavy loads,”IEEE Proc.ISCAS 1995,pp.1544-15476 J.H.Huijsing,R.Hogervorst,and K.-J.de
15、 Langen,“Low-power low-voltageVLSI operational amplifier cells,”IEEE Trans.Circuits and Systems-I,vol.42.no.11,pp.841-852,November 1995,References(contd),7 W.Redman-White,“A high bandwidth constant gm,and slew-rate rail-to-rail CMOS input circuit and its application to analog cell for low voltage VL
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