OBSSCircuit DescriptionV1.1010/02/94 20:07 CET.Component & analysis parameters of a circuit.TINA 7.0.80.267 SFB(c) Copyright 1993,94,95,96 DesignSoft Inc. 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'C"#/@"2]@9QYdv%  TA(A LdPhase [deg]<% ( %  % %    TT 5%BA(A 5LP0&5% '<'<%  6+<*4*46+4*-*-6+-*%*%6+%% %    TX%#A(ALP45&% ''%  6+**6+**6+**6+% %    TX%A(ALP90&% ''%  6+**6+**6+**6+% %    T`%A(ALT135&% ''%  6+**6+**6+**6+% %    T`%A(ALT180&% ''%  6+% % ++%  6006556::6??6EE6JJ6OO6TT6YY6^^6cc6hh6mm6ss6xx6}}6666666666666666666666666666  6666  6%%6**6006556::6??6DD6II6NN6SS6XX6^^6cc6hh6mm6rr6ww6||66666666666666666666  6  6666  6&&6--6 3 36886<<6<% % Rp Arial"qd""B*q"8:IG`""cI0f4L^w^I6Y^I"0f" I""0fArialJY" EB`teCeC r6I"6I`w@"Yiu X"&B Odv%  & %  %   +1% % ( %  %   +1% %    T.A(A LhRL=2k CL=100p  % % % ???ƚ D):l M_ D) EMFXx-ȗRpMS Sans Serifpp0"JLp J"p"p p "JL/ 1 ,"p/ X"X"(d" IX"(d(d "}w"cw  1cw01dv%  '%   TT A(A LPT % RpArial "Qu 0".@p# t"]@x# 8"^@D"@p"@Frequency (#Hz)UP8&P40100000000000000000DBv@BvPdv%  % RpArialGGVPIqHY0599917487149965056F4ua "GkG/G0100000000000000000DBv@BvPdvU;v@"]adv%  % %  % %  % %  % %  % %  % %  % %  % %  % % %  %   +Oj% %   +Oj% <.<.&%  6<Q.Q.6Q].].6]f.f.6fm.m.6mr.r.6rw.w.6w{.{.6{~.~.6~..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6 . .6  . .6  . .6 ".".6"....6.7.7.67=.=.6=C.C.6CH.H.6HL.L.6LO.O.6OR.R.6RR.R.6Rg.g.6gs.s.6s|.|.6|..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6..6 . .6 % <.<.&%  6<#.#.6#% <<%  6#<<6#<<6#<<6#<e<e6#e<<<<6#<% <.<.%  6#.<<6#% <.<.&%  6#.% %  &%    TOx_A(AOLhFrequency (Hz)  yO% %    TT4:;JA(A4:LP1<:% <.<.%  6<9Q.Q.6Q4].].6]4f.f.6f4m.m.6m4r.r.6r4w.w.6w4{.{.6{4~.~.6~4% %    TXz:JA(Az:LP10:% ..%  69..64..64..64..64..64..64..64..64% %    T`:JA(A:LT100:% ..%  69..64..64..64..64..64..64..64 . .6 4% %    TX:JA(A:LP1k:%  . .%  6 9".".6"4....6.47.7.674=.=.6=4C.C.6C4H.H.6H4L.L.6L4O.O.6O4% %    T`J:bJA(AJ:LT10kb:% R.R.%  6R9g.g.6g4s.s.6s4|.|.6|4..64..64..64..64..64% %    Td:JA(A:LT100k:% ..%  69..64..64..64..64..64..64..64..64% %    Td:JA(A:LT1MEG :% ..%  69..64..64..64..64..64..64..64 . .6 4% %    Tl:MJA(A:LX10MEG N:% #.#.%  6#9% <.<.6<% %  %    % Rp Arial"34uP".uQYdv%  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6A9g.g.6g4}.}.6}4..64..64..64..64..64..64% &%    TX:JA(A:LP1k:% ( ..%  69..64..64 . .6 4..64".".6"4*.*.6*42.2.6248.8.684% &%    T`6:NJA(A6:LT10kN:% ( >.>.%  6>9% D.D.6D% %  &%    % Rp Arial"34uP".u !t"/u !t !t !t" t# !t"u " t/!t`tW,"2u#p"H"XQw !tHr#p"NAI"'C!tHr#p"BHrD 'C"#/@"2]@QYdv%  T ,A(A#LInput Voltage Noise Density (V/Hz)      % ( %  % %    TX(%75A(A(%LP1n8%% ( :.:.%  6D.@.@.6D.@@6D@@6D@@6D@@6D@@6D@@6D@@6D@@6D% &%    T` 7A(A LT10n8% ( ::%  6D@@6D@w@w6Dw@^@^6D^@L@L6DL@>@>6D>@3@36D3@*@*6D*@"@"6D"@@6D% &%    Td 7A(A LT100n8 % ( ::%  6D% % D>D>&%  6MBMB6VGVG6_L_L6gPgP6pUpU6yYyY6^^6bb6ff6jj6nn6rr6vv6zz6}}6666666666!!6**6336<<6EE6NN6WW6__6hh6qq6zz6666666666666666666""6++6446==6>%  % % % gO~??ƚ D$*69l Mb D$* EMF0O_ x-ȗRpMS Sans Serifpp0"JLp J"p"p p "JL/ 1 ,"p/ X"X"(d" IX"(d(d "}w"cw  1cw01dv%  '%   TT A(A LPT % RpArial "Qu 0".@p# t"]@x# 8"^@D"@p"@Frequency (#Hz)UP8&P40100000000000000000DBv@BvPdv%  % RpArialGGVPIqHY0599917487149965056F4ua "GkG/G0100000000000000000DBv@BvPdvU;v@"]adv%  % %  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6SS6XX6]]6bb6gg6ll6qq6vv6{{66666666666666666666666666666yy6jj6YY6PP6KK6KK6NN6RR6VV6YY6[[6\\6\\6\\6[[6[[6ZZ6ZZ6ZZ6 Z Z6ZZ6ZZ6ZZ6ZZ6#Z#Z6(Z(Z6-Z-Z62Z2Z67Z7Z6=Z=Z6BZBZ6GZGZ6LZLZ6QZQZ6VZVZ6[Z[Z6`Z`Z6eZeZ6jZjZ6oZoZ6tZtZ6yZyZ6~Z~Z6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6[[6\\6]]6__6bb6ee6kk6vv6666666666666666666666666  66666##6((6--6226776<<6AA6F% % Rp Arial"qd""B*q"8:IG`""cI0f4L^w^I6Y^I"0f" I""0fArialJY" EB`teCeC r6I"6I`w@"Yiu X"&B Odv%  % %  % %  % Rp SymbolN@uC/!C  $"CP?kw"kw!C"Ct$"CP?P?C pt"CtB$"$" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % Rp SymbolN@uC/!C  $"CP?kw"kw!C"Ct$"CP?P?C pt"CtB$"$" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % Rp SymbolN@uC/!C  $"CP?kw"kw!C"Ct$"CP?P?C pt"CtB$"$" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % Rp SymbolN@uC/!C  $"CP?kw"kw!C"Ct$"CP?P?C pt"CtB$"$" pt"C.N,C4CP?P?"CSymboldv%  % ( %  & %  %   +% % ( % %  % %  % Rp SymbolN@uC/!C  $"CP?kw"kw!C"Ct$"CP?P?C pt"CtB$"$" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % Rp SymbolN@uC/!C  $"CP?kw"kw!C"Ct$"CP?P?C pt"CtB$"$" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % Rp SymbolN@uC/!C  $"CP?kw"kw!C"Ct$"CP?P?C pt"CtB$"$" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % Rp SymbolN@uC/!C  $"CP?kw"kw!C"Ct$"CP?P?C pt"CtB$"$" pt"C.N,C4CP?P?"CSymboldv%  % ( %  %  %   +% %    TA(ALpG=+1 RL=2k CL=100p   % %  6<% %   Tx<`A(A<L\ Vin  a% Rp SymbolN "C/!C  "CP?kw"kw!C"Ct"CP?P?C pt"CtB"" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % Rp SymbolN@uC/!C  "CP?kw"kw!C"Ct"CP?P?C pt"CtB"" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % %  6<% %   T|<hA(A<L\ Vout  i% Rp SymbolN C/!C  "CP?kw"kw!C"Ct"CP?P?C pt"CtB"" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % Rp SymbolN@uC/!C  "CP?kw"kw!C"Ct"CP?P?C pt"CtB"" pt"C.N,C4CP?P?"CSymboldv%  % ( %  % % % gv?k`[?ƚ D$*69l Mb D$* EMF0x-ȗRpMS Sans Serifpp0"JLp J"p"p p "JL/ 1 ,"p/ X"X"(d" IX"(d(d "}w"cw  1cw01dv%  '%   TT A(A LPT % RpArial "Qu 0".@p# t"]@x# 8"^@D"@p"@Frequency (#Hz)UP8&P40100000000000000000DBv@BvPdv%  % RpArialGGVPIqHY0599917487149965056F4ua "GkG/G0100000000000000000DBv@BvPdvU;v@"]adv%  % %  % %  % %  % %  % %  % %  % %  % %  % % %  %   +Om% %   +Om% 9191&%  69Q1Q16Q_1_16_i1i16iq1q16qx1x16x}1}16}116116116116116116116116116116116116116116116116 1 16 116116116"1"16"&1&16&*1*16**1*16*B1B16BP1P16PZ1Z16Zb1b16bi1i16in1n16ns1s16sw1w16wz1z16zz1z16z116116116116116116116116116116116116116116 1 16 116116116% 9191&%  69116% 99%  69969969L9L6L% 9191%  61996% 9191&%  61% %  &%    TRvbA(ARLhFrequency (Hz)  wR% %    T`1=HMA(A1=LT100I=% 9191%  69<Q1Q16Q6_1_16_6i1i16i6q1q16q6x1x16x6}1}16}611661166% %    TX=MA(A=LP1k=% 11%  6<11661166116611661166116611661166% %    T`=MA(A=LT10k=% 11%  6<11661166 1 16 6116611661166"1"16"6&1&16&6% %    Td"=BMA(A"=LT100kB=% *1*1%  6*<B1B16B6P1P16P6Z1Z16Z6b1b16b6i1i16i6n1n16n6s1s16s6w1w16w6% %    Tdr=MA(Ar=LT1MEG =% z1z1%  6z<11661166116611661166116611661166% %    Tl=MA(A=LX10MEG =% 11%  6<1166116611661166 1 16 6116611661166% %    Tp=MMA(A=LX100MEG N=% 11%  6<% 919169% %  %    % Rp Arial"34uP".u!QP".u!Q"/u!Q0"u7" @u =@ QW,"2up"H"XQw!QGp"NAI"'C!QGp"BGPeN'C"#/@"2]@QYdv%  TWA(ALxClosed Loop Gain (dB)   % ( %  % %    T`',7A(A'LT-60-'% /1/1%  6914#4#69#44694469% %    T`,A(ALT-40-% //%  69446944694469% %    T`,A(ALT-20-% //%  69446944694469% %    TT%|,A(A%|LP0-|% //%  694w4w69w4i4i69i4Z4Z69Z% %    TXC,SA(ACLP20-C% /L/L%  69L4>4>69>40406904!4!69!% %    TX ,A(A LP40- % //%  69% % 99& %  6>>6CC6GG6LL6QQ6VV6[[6``6dd6ii6nn6ss6xx6||666666666666666666666666666666  6666  6%%6**6//6446886==6BB6GG6LL6QQ6UU6ZZ6__6dd6ii6mm6rr6ww6||666666666666666666666666666666  666% 9L9L& %  6>L>L6CLCL6GLGL6LLLL6QLQL6VLVL6[L[L6`L`L6dLdL6iLiL6nLnL6sLsL6xLxL6|L|L6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6LL6 L L6LL6LL6LL6 L L6%L%L6*L*L6/M/M64M4M68M8M6=M=M6BMBM6GMGM6LNLN6QNQN6UOUO6ZPZP6_P_P6dQdQ6iSiS6mTmT6rVrV6wXwX6|Z|Z6]]6__6bb6ee6hh6ll6oo6ss6vv6zz6~~6666666666666666666  66  6% 99& %  6>>6CC6GG6LL6QQ6VV6[[6``6dd6ii6nn6ss6xx6||666666666666666666666666666666  6666  6%%6**6//6446886==6BB6GG6LL6QQ6UU6ZZ6__6dd6ii6mm6rr6ww6||666666666666666666666666666666    666% % Rp Arial"qd""B*q"8:IG`""cI0f4L^w^I6Y^I"0f" I""0fArialJY" EB`teCeC r6I"6I`w@"Yiu X"&B Odv%  % %  % %  % %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  & %  %   +% % ( % %  % %  % %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  $"C8,kw"kw!Q"Ct$"C8,8,C pt"CtBJ$"J$" pt"CeN,C4C8,8,"CSymboldv%  % ( %  %  %   +% %    TA(A LhRL=2k CL=100p-1  % %  6% %   TxA(AL\ G=+10=1 % Rp SymbolN0"Q/!Q  "C8,kw"kw!Q"Ct"C8,8,C pt"CtBJ"J" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  "C8,kw"kw!Q"Ct"C8,8,C pt"CtBJ"J" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % %  6% %   TpA(ALX G=+1 % Rp SymbolN8"Q/!Q  "C8,kw"kw!Q"Ct"C8,8,C pt"CtBJ"J" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  "C8,kw"kw!Q"Ct"C8,8,C pt"CtBJ"J" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % %  6% %   TpA(ALX G=-1 % Rp SymbolN8"Q/!Q  "C8,kw"kw!Q"Ct"C8,8,C pt"CtBJ"J" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % Rp SymbolN@uQ/!Q  "C8,kw"kw!Q"Ct"C8,8,C pt"CtBJ"J" pt"CeN,C4C8,8,"CSymboldv%  % ( %  % % % K^w??ƚ D$*69l Mb D$* EMF^H x-ȗRpMS Sans Serifpp0"JLp J"p"p p "JL/ 1 ,"p/ X"X"(d" IX"(d(d "}w"cw  1cw01dv%  '%   TT A(A LPT % RpArial "Qu 0".@p# t"]@x# 8"^@D"@p"@Frequency (#Hz)UP8&P40100000000000000000DBv@BvPdv%  % RpArialGGVPIqHY0599917487149965056F4ua "GkG/G0100000000000000000DBv@BvPdvU;v@"]adv%  % %  % %  % %  % %  % %  % %  % %  % %  % % %  %   +Om% %   +Om% 11&%  6 1 16 t1t16t116% 9191&%  69F1F16F% 99%  6F996F9Z9Z6FZ% 9191%  6F1996F% 9191&%  6F1% %  &%    T|)R_bA(A)RL\Time (s)  `R% %    TT1=8MA(A1=LP09=% 9191%  69<D1D16D4N1N16N4X1X16X4c1c16c4n1n16n6x1x16x4116411641164% %    TX=MA(A=LP1u=% 11%  6<116411641164116411661164116411641164% %    TX=MA(A=LP2u=%  1 1%  6 <1164 1 16 4*1*16*45151654@1@16@6J1J16J4T1T16T4_1_16_4j1j16j4% %    TXl={MA(Al=LP3u|=% t1t1%  6t<~1~16~411641164116411661164116411641164% %    TX=MA(A=LP4u=% 11%  6<116411641164116411661164&1&16&41111614<1<16<4% %    TX>=MMA(A>=LP5uN=% F1F1%  6F<% 919169% %  %    % Rp Arial"34uP".u!ӠP".u!"/u!0"u7" @u = W,"2up"H"XQw!H֎p"NAI"'C!H֎p"BH֎CN'C"#/@"2]@QYdv%  T;A(ALLarge Signal Step Response (V)    % ( %  % %    T`',7A(A'LT-20-'% /1/1%  6917*7*69*7#7#69#776977694 4 69 7769776977697769% %    T`,A(ALT-10-% //%  69776977697769776944697769776977697769% %    TT%,A(A%LP0-% //%  6977697769776977694~4~69~7w7w69w7p7p69p7i7i69i7b7b69b% %    TXQ,aA(AQLP10-Q% /Z/Z%  69Z7S7S69S7L7L69L7E7E69E7>7>69>474769770706907(7(69(7!7!69!7769% %    TX ,A(A LP20- % //%  69% % 99& %  66ZZ6ZZ66F% 99& %  6>>6DD6II6NN6SS6XX6^^6cc6hh6nn6ss6xx6}}666666666666666666666666666666666666666xx6vv6tt6qq6oo6ll6hh6__6]]6\\6[[6[[6ZZ6ZZ6ZZ6ZZ6ZZ6 Z Z6 Z Z6 [ [6 [ [6 [ [6[[6[[6[[6[[6[[6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6!Z!Z6#Z#Z6&Z&Z6+Z+Z6/Z/Z64Z4Z69Z9Z6>Z>Z6DZDZ6IZIZ6NZNZ6SZSZ6YZYZ6^Z^Z6cZcZ6hZhZ6nZnZ6sZsZ6xZxZ6}Z}Z6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6ZZ6[[6\\6]]6^^6__6aa6dd6gg6ii6kk6mm6oo6rr6ww6}}6666666666666666666666666666666666666666666666666  6666!!6&&6++6116666;;6@@6F% % Rp Arial"qd""B*q"8:IG`""cI0f4L^w^I6Y^I"0f" I""0fArialJY" EB`teCeC r6I"6I`w@"Yiu X"&B Odv%  % %  % %  % Rp SymbolN@u/!  $"CIkw"kw!"Ct$"CIIC pt"CtB0W $"0W $" pt"CCN,C4CII"CSymboldv%  % ( %  % Rp SymbolN@u/!  $"CIkw"kw!"Ct$"CIIC pt"CtB0W $"0W $" pt"CCN,C4CII"CSymboldv%  % ( %  % Rp SymbolN@u/!  $"CIkw"kw!"Ct$"CIIC pt"CtB0W $"0W $" pt"CCN,C4CII"CSymboldv%  % ( %  % Rp SymbolN@u/!  $"CIkw"kw!"Ct$"CIIC pt"CtB0W $"0W $" pt"CCN,C4CII"CSymboldv%  % ( %  & %  %   +% % ( % %  % %  % Rp SymbolN@u/!  $"CIkw"kw!"Ct$"CIIC pt"CtB0W $"0W $" pt"CCN,C4CII"CSymboldv%  % ( %  % Rp SymbolN@u/!  $"CIkw"kw!"Ct$"CIIC pt"CtB0W $"0W $" pt"CCN,C4CII"CSymboldv%  % ( %  % Rp SymbolN@u/!  $"CIkw"kw!"Ct$"CIIC pt"CtB0W $"0W $" pt"CCN,C4CII"CSymboldv%  % ( %  % Rp SymbolN@u/!  $"CIkw"kw!"Ct$"CIIC pt"CtB0W $"0W $" pt"CCN,C4CII"CSymboldv%  % ( %  %  %   +% %    TA(ALpG=+1 RL=2k CL=100p   % %  6;% %   Tx;_A(A;L\ Vin su `% Rp SymbolN "/!  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?6 ? ?6 ? ?6 ? ?6 ? ?6??6??6??6??6??6??6??6??6??6??6??6??6??6??6??6??6??6??6 ? ?6!?!?6"?"?6#?#?6$?$?6%?%?6&@&@6'@'@6(@(@6)@)@6*@*@6+@+@6,@,@6-@-@6.@.@6/@/@60@0@61@1@62@2@63@3@64@4@65@%  % % % Sx??ƚ D$*69l Mb D$* EMFS x-ȗRpMS Sans Serifpp0"JLp J"p"p p "JL/ 1 ,"p/ X"X"(d" IX"(d(d "}w"cw  1cw01dv%  '%   TT A(A LPT % RpArial "Qu 0".@p# t"]@x# 8"^@D"@p"@Frequency (#Hz)UP8&P40100000000000000000DBv@BvPdv%  % RpArialGGVPIqHY0599917487149965056F4ua "GkG/G0100000000000000000DBv@BvPdvU;v@"]adv%  % %  % %  % %  % %  % %  % %  % %  % %  % % %  %   +Om% %   +Om% 11&%  6116r1r16r116% 4141&%  64F1F16F% 44%  6F446F4Z4Z6FZ% 4141%  6F1446F% 4141&%  6F1% %  &%    T|&R\bA(A&RL\Time (s)  ]R% %    TT,=3MA(A,=LP04=% 4141%  64<?1?16?4I1I16I4T1T16T4^1^16^4i1i16i6t1t16t4~1~16~411641164% %    TX=MA(A=LP1u=% 11%  6<116411641164116411661164116411641164% %    TX=MA(A=LP2u=% 11%  6<11641164(1(16(42121624=1=16=6H1H16H4R1R16R4]1]16]4g1g16g4% %    TXj=yMA(Aj=LP3uz=% r1r1%  6r<}1}16}411641164116411661164116411641164% %    TX=MA(A=LP4u=% 11%  6<116411641164116411661164&1&16&41111614;1;16;4% %    TX>=MMA(A>=LP5uN=% F1F1%  6F<% 414164% %  %    % Rp Arial"34uP".uQ!yP".uQ!y"/uQ!y0"u7" @u =pQyW,"2u p"H"XQwQ!ypQ p"NAI"'C!ypQ p"BpQ@B'C"#/@"2]@GQYdv%  T{A(A LdVoltage (V)  J% ( %  % %    TX''7A(A'LP-5('% *1*1%  6412*2*64*2#2#64#226422640 0 64 2264226422642264% %    TT 'A(A LP0(% **%  64226422642264226400642264226422642264% %    TT 'A(A LP5(% **%  6422642264226422640~0~64~2w2w64w2p2p64p2i2i64i2b2b64b% %    TXQ'aA(AQLP10(Q% *Z*Z%  64Z2S2S64S2L2L64L2E2E64E2>2>64>070764720206402(2(64(2!2!64!2264% %    TX 'A(A LP15( % **%  64% % 44& %  666F% 4!4!& %  69!9!6?!?!6D!D!6I!I!6N!N!6T!T!6Y!Y!6^!^!6d!d!6i!i!6n!n!6t!t!6y!y!6~!~!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6!!6 ! !6 ! !6 ! !6 ! !6!!6!!6!!6++6006556 < <6"C"C6%Q%Q6*c*c6/x/x6446::6??6DD6JJ6OO6TT6YY6__6dd6ii6oo6tt6yy6666666666666666666666666666  6666""6((6--6226886==6BB6F% % Rp Arial"qd""B*q"8:IG`""cI0f4L^w^I6Y^I"0f" I""0fArialJY" EB`teCeC r6I"6I`w@"Yiu X"&B Odv%  % %  % %  % Rp SymbolB@uQy/!y  $"CZkw"kwQ!y"Ct$"CZZC pt"CtBzc$"zc$" pt"CxB,C4CZZ"CSymboldv%  % ( %  % Rp SymbolB@uQy/!y  $"CZkw"kwQ!y"Ct$"CZZC pt"CtBzc$"zc$" pt"CxB,C4CZZ"CSymboldv%  % ( %  % Rp SymbolB@uQy/!y  $"CZkw"kwQ!y"Ct$"CZZC pt"CtBzc$"zc$" pt"CxB,C4CZZ"CSymboldv%  % ( %  % Rp SymbolB@uQy/!y  $"CZkw"kwQ!y"Ct$"CZZC pt"CtBzc$"zc$" pt"CxB,C4CZZ"CSymboldv%  % ( %  & %  %   +zX% % ( % %  % %  % Rp SymbolB@uQy/!y  $"CZkw"kwQ!y"Ct$"CZZC pt"CtBzc$"zc$" pt"CxB,C4CZZ"CSymboldv%  % ( %  % Rp SymbolB@uQy/!y  $"CZkw"kwQ!y"Ct$"CZZC pt"CtBzc$"zc$" pt"CxB,C4CZZ"CSymboldv%  % ( %  % Rp SymbolB@uQy/!y  $"CZkw"kwQ!y"Ct$"CZZC pt"CtBzc$"zc$" pt"CxB,C4CZZ"CSymboldv%  % ( %  % Rp SymbolB@uQy/!y  $"CZkw"kwQ!y"Ct$"CZZC pt"CtBzc$"zc$" pt"CxB,C4CZZ"CSymboldv%  % ( %  %  %   +zX% %    TXgA(AXLxPos. Overload Recovery   X TjyA(AjLtG=-10 RL=2k CL=100p   j% %  6% %   Tx|A(A|L\ Vin  |% Rp SymbolB "Qy/!y  "CZkw"kwQ!y"Ct"CZZC pt"CtBzc"zc" pt"CxB,C4CZZ"CSymboldv%  % ( %  % Rp SymbolB@uQy/!y  "CZkw"kwQ!y"Ct"CZZC pt"CtBzc"zc" pt"CxB,C4CZZ"CSymboldv%  % ( %  % %  6% %   T|A(AL\ Vout  % Rp SymbolB Qy/!y  "CZkw"kwQ!y"Ct"CZZC pt"CtBzc"zc" pt"CxB,C4CZZ"CSymboldv%  % ( %  % Rp SymbolB@uQy/!y  "CZkw"kwQ!y"Ct"CZZC pt"CtBzc"zc" pt"CxB,C4CZZ"CSymboldv%  % ( %  % % % Q??ƚ D$*69l Mb D$* EMFPr x-ȗRpMS Sans Serifpp0"JLp J"p"p p "JL/ 1 ,"p/ X"X"(d" IX"(d(d "}w"cw  1cw01dv%  '%   TT A(A LPT % RpArial "Qu 0".@p# t"]@x# 8"^@D"@p"@Frequency (#Hz)UP8&P40100000000000000000DBv@BvPdv%  % RpArialGGVPIqHY0599917487149965056F4ua "GkG/G0100000000000000000DBv@BvPdvU;v@"]adv%  % %  % %  % %  % %  % %  % %  % %  % %  % % %  %   +Om% %   +Om% 11&%  6@1@16@116% 9191&%  69F1F16F% 99%  6F996F9Z9Z6FZ% 9191%  6F1996F% 9191&%  6F1% %  &%    T|)R_bA(A)RL\Time (s)  `R% %    TT1=8MA(A1=LP09=% 9191%  69<F1F16F4S1S16S4`1`16`4n1n16n4{1{16{61164116411641164% %    TX=MA(A=LP1u=% 11%  6<11641164116411641166 1 16 41164%1%16%42121624% %    TX8=GMA(A8=LP2uH=% @1@1%  6@<M1M16M4Z1Z16Z4g1g16g4t1t16t411661164116411641164% %    TX=MA(A=LP4u=% 11%  6<1164116411641164116611641164,1,16,49191694% %    TX>=MMA(A>=LP5uN=% F1F1%  6F<% 919169% %  %    % Rp Arial"34uP".u!P".u!"/u!0"u7" v@u v=pW,"2u p"H"XQw!w p"NAI"'C!w p"Bw`B'C"#/@"2]@GQYdv%  T{A(A LdVoltage (V)  J% ( %  % %    T`',7A(A'LT-15-'% /1/1%  6917*7*69*7#7#69#776977694 4 69 7769776977697769% %    T`,A(ALT-10-% //%  69776977697769776944697769776977697769% %    TX ,A(A LP-5-% //%  6977697769776977694~4~69~7w7w69w7p7p69p7i7i69i7b7b69b% %    TT%Q,aA(A%QLP0-Q% /Z/Z%  69Z7S7S69S7L7L69L7E7E69E7>7>69>474769770706907(7(69(7!7!69!7769% %    TT% ,A(A% LP5- % //%  69% % 9E9E& %  6 E E6 Z Z6FZ% 9191& %  6>1>16D1D16I1I16N1N16S1S16X1X16^1^16c1c16h1h16n1n16s1s16x1x16}1}16116116116116116116116116116116116116116116116116116116116116116116116116116116 1 16 1 16 1 16116116116116--6$$6  6!!6##6% % 6))6..6336886>>6CC6HH6MM6RR6WxWx6]r]r6bnbn6gjgj6lglg6rere6wcwc6|a|a6``6__6^^6]]6]]6\\6\\6\\6\\6[[6[[6[[6[[6[[6[[6[[6[[6[[6[[6[[6[[6[[6[[6[[6[[6[[6 [ [6[[6[[6[[6[[6$[$[6)[)[6/[/[64[4[69[9[6>[>[6D[D[6F[% % Rp Arial"qd""B*q"8:IG`""cI0f4L^w^I6Y^I"0f" I""0fArialJY" EB`teCeC r6I"6I`w@"Yiu X"&B Odv%  % %  % %  % Rp SymbolB@u/!v $"C!kw"kw!"Ct$"C!C pt"CtB~$"~$" pt"CB,C4C!!"CSymboldv%  % ( %  % Rp SymbolB@u/!v $"C!kw"kw!"Ct$"C!C pt"CtB~$"~$" pt"CB,C4C!!"CSymboldv%  % ( %  % Rp SymbolB@u/!v $"C!kw"kw!"Ct$"C!C pt"CtB~$"~$" pt"CB,C4C!!"CSymboldv%  % ( %  % Rp SymbolB@u/!v $"C!kw"kw!"Ct$"C!C pt"CtB~$"~$" pt"CB,C4C!!"CSymboldv%  % ( %  & %  %   +f % % ( % %  % %  % Rp SymbolB@u/!v $"C!kw"kw!"Ct$"C!C pt"CtB~$"~$" pt"CB,C4C!!"CSymboldv%  % ( %  % Rp SymbolB@u/!v $"C!kw"kw!"Ct$"C!C pt"CtB~$"~$" pt"CB,C4C!!"CSymboldv%  % ( %  % Rp SymbolB@u/!v $"C!kw"kw!"Ct$"C!C pt"CtB~$"~$" pt"CB,C4C!!"CSymboldv%  % ( %  % Rp SymbolB@u/!v $"C!kw"kw!"Ct$"C!C pt"CtB~$"~$" pt"CB,C4C!!"CSymboldv%  % ( %  %  %   +f % %    TkA(AkLxNeg. Overload Recovery    TkA(AkLtG=-10 RL=2k CL=100p   % k%  6% %   TxA(AL\ Vin  % Rp SymbolB "/!v "C!kw"kw!"Ct"C!C pt"CtB~"~" pt"CB,C4C!!"CSymboldv%  % ( %  % Rp SymbolB@u/!v "C!kw"kw!"Ct"C!C pt"CtB~"~" pt"CB,C4C!!"CSymboldv%  % ( %  % k%  6% %   T|A(AL\ Vout  % Rp SymbolB /!v "C!kw"kw!"Ct"C!C pt"CtB~"~" pt"CB,C4C!!"CSymboldv%  % ( %  % Rp SymbolB@u/!v "C!kw"kw!"Ct"C!C pt"CtB~"~" pt"CB,C4C!!"CSymboldv%  % ( %  % % % s aoA??ƚ D$*69l Mb D$* EMFs x-ȗRpMS Sans Serifpp0"JLp J"p"p p "JL/ 1 ,"p/ X"X"(d" IX"(d(d "}w"cw  1cw01dv%  '%   TT A(A LPT % RpArial "Qu 0".@p# t"]@x# 8"^@D"@p"@Frequency (#Hz)UP8&P40100000000000000000DBv@BvPdv%  % RpArialGGVPIqHY0599917487149965056F4ua "GkG/G0100000000000000000DBv@BvPdvU;v@"]adv%  % %  % %  % %  % %  % %  % %  % %  % %  % % %  %   +Om% %   +Om% r1r1&%  6r116116116*1*16*X1X16X116116116116% D1D1&%  6D>1>16>% DD%  6>DD6>DZDZ6>Z% D1D1%  6>1DD6>% D1D1&%  6>1% %  &%    TRbA(ARLlTemperature (C)   R% %    T`<=PMA(A<=LT-40Q=% D1D1%  6D<P1P16P6[1[16[6f1f16f6% %    T`j=~MA(Aj=LT-25=% r1r1%  6r<~1~16~611661166% %    T`=MA(A=LT-10=% 11%  6<116611661166% %    TT=MA(A=LP5=% 11%  6<116611661166% %    TX=MA(A=LP20=% 11%  6<116611661166% %    TX"=1MA(A"=LP352=% *1*1%  6*<6161666A1A16A6L1L16L6% %    TXP=_MA(AP=LP50`=% X1X1%  6X<d1d16d6o1o16o6z1z16z6% %    TX~=MA(A~=LP65=% 11%  6<116611661166% %    TX=MA(A=LP80=% 11%  6<116611661166% %    TX=MA(A=LP95=% 11%  6<116611661166% %    T`=MA(A=LT110 =% 11%  6<1166'1'16'62121626% %    T`6=MMA(A6=LT125N=% >1>1%  6><% D1D16D% %  %    % Rp Arial"34uP".u !ҠP".u !"/u !0"u7"v@uv=`  W,"2up"H"XQw !Ќ !p"NAI"'C!Ќ !p"BЌ ! 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C pt"CtB$"$" pt"CXB,C4C ! !"CSymboldv%  % ( %  % Rp SymbolB@u /!v $"C !kw"kw !"Ct$"C ! C pt"CtB$"$" pt"CXB,C4C ! !"CSymboldv%  % ( %  % Rp SymbolB@u /!v $"C !kw"kw !"Ct$"C ! C pt"CtB$"$" pt"CXB,C4C ! !"CSymboldv%  % ( %  % Rp SymbolB@u /!v $"C !kw"kw !"Ct$"C ! C pt"CtB$"$" pt"CXB,C4C ! !"CSymboldv%  % ( %  & %  %   +4rX% % ( % %  % %  % Rp SymbolBX" /!v $"C !kw"kw !"Ct$"C ! C pt"CtB$"$" pt"CXB,C4C ! !"CSymboldv%  % ( %  % Rp SymbolB@u /!v $"C !kw"kw !"Ct$"C ! C pt"CtB$"$" pt"CXB,C4C ! !"CSymboldv%  % ( %  % Rp SymbolB@u /!v $"C !kw"kw !"Ct$"C ! C pt"CtB$"$" pt"CXB,C4C ! !"CSymboldv%  % ( %  % Rp SymbolB@u /!v $"C !kw"kw !"Ct$"C ! C pt"CtB$"$" pt"CXB,C4C ! !"CSymboldv%  % ( %  %  %   +4rX% %   % <%  6<% %   T4mCA(A4L| Vos Drift = +1.7uv/'c  n4% Rp SymbolB D /!v "C !kw"kw !Ҹ"Ct"C ! C pt"CtB"" pt"CXB,C4C ! !"CSymboldv%  % ( %  % Rp SymbolB@u /!v "C !kw"kw !Ҹ"Ct"C ! 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F@F Arial+TLE214x TINA-TI Reference Design based on +Green-Williams-Lis Pspice simulation modelSymbol????333333??"@" Arial$3* Simulated with TINA TI Version 9.3.200.277 SF-TIR.................................................................................* TLE214x - Rev. 1.2-* Created by Krishnam Suryateja; 21-SEP-2022B* Created with Green-Williams-Lis Op Amp Macro-model Architecture2* Copyright 2022 by Texas Instruments Corporation7******************************************************$* MACRO-MODEL SIMULATED PARAMETERS:7******************************************************D* OPEN-LOOP GAIN AND PHASE VS. FREQUENCY WITH RL, CL EFFECTS (Aol)* UNITY GAIN BANDWIDTH (GBW)9* INPUT COMMON-MODE REJECTION RATIO VS. FREQUENCY (CMRR)4* POWER SUPPLY REJECTION RATIO VS. FREQUENCY (PSRR)%* DIFFERENTIAL INPUT IMPEDANCE (Zid)$* COMMON-MODE INPUT IMPEDANCE (Zic)0* OPEN-LOOP OUTPUT IMPEDANCE VS. FREQUENCY (Zo)+* OUTPUT CURRENT THROUGH THE SUPPLY (Iout)1* INPUT VOLTAGE NOISE DENSITY VS. FREQUENCY (en)1* INPUT CURRENT NOISE DENSITY VS. FREQUENCY (in)/* OUTPUT VOLTAGE SWING vs. OUTPUT CURRENT (Vo)%* SHORT-CIRCUIT OUTPUT CURRENT (Isc)* QUIESCENT CURRENT (Iq))* SETTLING TIME VS. CAPACITIVE LOAD (ts)* SLEW RATE (SR)-* SMALL SIGNAL OVERSHOOT VS. CAPACITIVE LOAD* LARGE SIGNAL RESPONSE* OVERLOAD RECOVERY TIME (tor)* INPUT BIAS CURRENT (Ib)* INPUT OFFSET CURRENT (Ios)* INPUT OFFSET VOLTAGE (Vos)3* INPUT OFFSET VOLTAGE VS. TEMPERATURE (VOS DRIFT)(* INPUT COMMON-MODE VOLTAGE RANGE (Vcm)C* INPUT OFFSET VOLTAGE VS. INPUT COMMON-MODE VOLTAGE (Vos vs. Vcm))* INPUT/OUTPUT ESD CELLS (ESDin, ESDout)K* TLE214x model is available in single core(TLE2141), dual core(TLE2142). * and quad core(TLE2144).Symbol????333333??!!    ! h  h %HhXpHhXhXp%HXHXX!HH!!!%00!%``!`X`X!    !    %(@ h(@ @ h%P@`HP@`@`H!!88!D9 VccT_079BBCC020180215122906 JP100 (V).@D9P@VeeT_079BB6E020180215122906 JP100 (V).@ 98RFT_079BB10020180215122906R_AX600_W200 (R)@@@?fffffqY@90 VinT_079BAB2020180215122906 JP100 (VG)?@@V 9RIT_079BA54020180215122906R_AX600_W200 (R)@@@?fffffqY@9oVosT_079B9F6020180215122906 NOPCB (VF) 9CLT_079BCE6020180215123050CP_CYL300_D700_L1400 (C) |=@eAY@? 9 C2T_0F056F0020180215123248CP_CYL300_D700_L1400 (C) Iz>@eAY@? 9 hC3T_0F05692020180215123248CP_CYL300_D700_L1400 (C) Iz>@eAY@?9pVoutT_0F057AC020180215123307 NOPCB (VF):9;O(U1T_17BCC66020220921151543 TLE214xTLE214xSC:\Users\x1093544\AppData\Local\Temp\DesignSoft\{Tina9-TI-09092021-185451}\TLE214xSCK#TLE214xLabel#PP(d*VCCzD  @d*VEE A  @d*OUT  @d*IN+p4Gp4G<  @d*IN-8 @h 00g"- Courier New?g"+ Courier New ?g"+ Courier New? IY4@ IY4@*$ * TLE214xN*****************************************************************************v* (C) Copyright 2022 Texas Instruments Incorporated. All rights reserved. N*****************************************************************************H** This model is designed as an aid for customers of Texas Instruments.K** TI and its licensors and suppliers make no warranties, either expressedH** or implied, with respect to this model, including the warranties of F** merchantability or fitness for a particular purpose. The model isK** provided solely on an "as is" basis. The entire risk as to its quality(** and performance is with the customerN******************************************************************************D* This model is subject to change without notice. Texas Instruments;* Incorporated is not responsible for updating this model.*N******************************************************************************<** Released by: Online Design Tools, Texas Instruments Inc.* Part: TLE214x* Date: 21SEP20228* Model Type: Generic (suitable for all analysis types)* EVM Order Number: N/A * EVM Users Guide: N/A =* Datasheet: SLOS183D - FEBRUARY 1997 - REVISED OCTOBER 2012B* Created with Green-Williams-Lis Op Amp Macro-model Architecture** Model Version: Final 1.2*N****************************************************************************** * Updates:* * Final 1.2N* 1. Modified the capacitor(C14) value from 1F to 3uF in GND Float-IQ block L* to resolve the convergence issue in single and asymmetric supply test.1* 2. Updated model name from TLE2141 to TLE214x.* 3. Updated Aol and Zo curve.* 4. Updated slew rate.* * Final 1.1E* Updated with unique subckt name, vos drift and edits in claw block* * Final 1.0 * Release to Web.*N****************************************************************************** Model Usage Notes:,* 1. The following parameters are modeled: J* a. OPEN-LOOP GAIN AND PHASE VS. FREQUENCY WITH RL, CL EFFECTS (Aol)#* b. UNITY GAIN BANDWIDTH (GBW)?* c. INPUT COMMON-MODE REJECTION RATIO VS. FREQUENCY (CMRR):* d. POWER SUPPLY REJECTION RATIO VS. FREQUENCY (PSRR)+* e. DIFFERENTIAL INPUT IMPEDANCE (Zid)** f. COMMON-MODE INPUT IMPEDANCE (Zic)6* g. OPEN-LOOP OUTPUT IMPEDANCE VS. FREQUENCY (Zo)1* h. OUTPUT CURRENT THROUGH THE SUPPLY (Iout)7* i. INPUT VOLTAGE NOISE DENSITY VS. FREQUENCY (en)7* j. INPUT CURRENT NOISE DENSITY VS. FREQUENCY (in)5* k. OUTPUT VOLTAGE SWING vs. OUTPUT CURRENT (Vo)+* l. SHORT-CIRCUIT OUTPUT CURRENT (Isc)* m. QUIESCENT CURRENT (Iq)/* n. SETTLING TIME VS. CAPACITIVE LOAD (ts)* o. SLEW RATE (SR)3* p. SMALL SIGNAL OVERSHOOT VS. CAPACITIVE LOAD* q. LARGE SIGNAL RESPONSE%* r. OVERLOAD RECOVERY TIME (tor) * s. INPUT BIAS CURRENT (Ib)#* t. INPUT OFFSET CURRENT (Ios)#* u. INPUT OFFSET VOLTAGE (Vos)9* v. INPUT OFFSET VOLTAGE VS. TEMPERATURE (Vos Drift).* w. INPUT COMMON-MODE VOLTAGE RANGE (Vcm)I* x. INPUT OFFSET VOLTAGE VS. INPUT COMMON-MODE VOLTAGE (Vos vs. Vcm)/* y. INPUT/OUTPUT ESD CELLS (ESDin, ESDout)N* 2. TLE214x model is available in single core(TLE2141), dual core(TLE2142). * and quad core(TLE2144).N*****************************************************************************&.SUBCKT TLE214x IN+ IN- VCC VEE OUT N*****************************************************************************-C_C1 N5296613 N5296623 265.26F -C_C10 N5298247 N5298259 94.046N &C_C108 N5298821 MID 12.7F %C_C11 MID N52997611 20N /C_C113 N5296597 N5296587 8.419E-16 -C_C123 N5296633 N5296643 530.52F 0C_C128 N5296653 N5296663 6.1213E-16 !C_C13 N5302951 0 1F -C_C131 N5335803 N5335793 7.9577F (C_C132 N5298885 N5298855 1F *C_C133 N5356487 N5356477 300F !C_C14 0 N5302475 3U !C_C15 N5302991 0 1F #C_C16 N5301567 MID 1F #C_C17 N5302227 MID 1F #C_C18 N5301581 MID 1F #C_C19 N5302261 MID 1F #C_C20 N5301595 MID 1F #C_C21 N5302295 MID 1F #C_C22 MID N5301537 1F #C_C23 N5303823 MID 1F #C_C24 N5304615 MID 1F #C_C25 N5304181 MID 1P #C_C26 N5304435 MID 1P (C_C27 SW_OL_TLE214x MID 1P C_C29 VIMON MID 1N !C_C30 VOUT_S MID 1N #C_C4 N5299343 MID 1F #C_C5 CLAMP MID 11.6N !C_C70 VCLP MID 100P !C_C_COM0 ESDP MID 2.5P !C_C_COM1 MID ESDN 2.5P "C_C_DIFF ESDN ESDP 1.5P "E_E1 MID 0 N5302475 0 1&E_E3 N5297811 MID OUT MID 1+E_E4 N5297995 MID CL_CLAMP MID 1-G_G1 N5296613 MID ESDP MID -6.992M1G_G100 N5296915 MID N5296663 MID -7.6923,G_G103 N5335803 MID N5296587 MID -1.G_G104 N5339457 MID N5335793 MID -150 G_G18 VCC_B 0 VCC 0 -1 G_G19 VEE_B 0 VEE 0 -12G_G2 N5297653 N5297649 N5296623 MID -1M,G_G20 VCC_CLP MID N5303823 MID -1M,G_G21 VEE_CLP MID N5304615 MID -1M,G_G22 N5304315 MID N5304303 MID -1,G_G23 N5304383 MID N5304405 MID -17G_G39 N5298247 MID CL_CLAMP N5298565 -89.05497G_G5 N5297697 N5297689 N5339457 N5296915 -1M(G_G6 VSENSE MID CLAMP MID -1M+G_G79 N5298821 MID VSENSE MID -1U.G_G80 N5298855 MID N5298821 MID -200,G_G84 N5356477 MID N5298999 MID -1/G_G85 N5296597 MID VCC_B MID -172.86U1G_G86 N5298977 MID N5298259 MID -5.6218/G_G93 CLAW_CLAMP MID N5298885 MID -1M/G_G96 N5296633 MID VEE_B MID -47.699M/G_G97 CL_CLAMP MID CLAW_CLAMP MID -1M,G_G99 N5296653 MID N5296643 MID -1'I_I_B N5298577 MID DC -700N #I_I_OS ESDN MID DC -707N !I_I_Q VCC VEE DC 3.5M 0R_R15 N5297689 N5297653 R_NOISELESS 1M0R_R16 N5297697 N5297689 R_NOISELESS 1K-R_R167 N5297995 VCLP R_NOISELESS 100,R_R17 N5300247 ESDN R_NOISELESS 1M+R_R18 MID N5298335 R_NOISELESS 1T+R_R19 MID N5300937 R_NOISELESS 1T*R_R20 N5299325 MID R_NOISELESS 10R_R21 N5299343 N5299325 R_NOISELESS 1M-R_R22 MID N5298735 R_NOISELESS 1MEG*R_R23 MID CLAMP R_NOISELESS 1MEG)R_R24 MID VSENSE R_NOISELESS 1K-R_R266 MID N5298821 R_NOISELESS 1MEG4R_R273 N5296587 N5296597 R_NOISELESS 100MEG4R_R274 MID N5296587 R_NOISELESS 452.034154K*R_R275 MID N5296597 R_NOISELESS 1-R_R291 MID CLAW_CLAMP R_NOISELESS 1K4R_R297 N5296643 N5296633 R_NOISELESS 100MEG2R_R300 MID N5296643 R_NOISELESS 15.00225K*R_R301 MID N5296633 R_NOISELESS 1+R_R306 MID CL_CLAMP R_NOISELESS 1K4R_R310 N5296663 N5296653 R_NOISELESS 100MEG5R_R311 MID N5296663 R_NOISELESS 14.942529MEG*R_R312 MID N5296653 R_NOISELESS 1*R_R313 MID N5296915 R_NOISELESS 14R_R318 N5335793 N5335803 R_NOISELESS 100MEG3R_R319 MID N5335793 R_NOISELESS 671.14094K*R_R320 MID N5335803 R_NOISELESS 11R_R321 N5298855 N5298885 R_NOISELESS 10K*R_R322 MID N5298855 R_NOISELESS 1+R_R323 MID N5298885 R_NOISELESS 501R_R324 N5356477 N5356487 R_NOISELESS 10K*R_R325 MID N5356477 R_NOISELESS 1/R_R326 MID N5356487 R_NOISELESS 1.4251*R_R327 MID N5339457 R_NOISELESS 11R_R34 N5298259 N5298247 R_NOISELESS 10K*R_R35 MID N5298247 R_NOISELESS 12R_R36 MID N5298259 R_NOISELESS 2.163636K*R_R37 MID N5298977 R_NOISELESS 13R_R38 N5298999 N5298977 R_NOISELESS 5.45K2R_R39 N52997611 N5298999 R_NOISELESS 10K*R_R43 MID N5299111 R_NOISELESS 1%R_R46 VCC_B 0 R_NOISELESS 1-R_R47 VCC_B N5302951 R_NOISELESS 1M2R_R48 N5302951 N5302475 R_NOISELESS 1MEG)R_R49 N5302475 0 R_NOISELESS 1T*R_R5 MID N5296613 R_NOISELESS 12R_R50 N5302475 N5302991 R_NOISELESS 1MEG-R_R51 N5302991 VEE_B R_NOISELESS 1M%R_R52 VEE_B 0 R_NOISELESS 1*R_R53 VCC_CLP MID R_NOISELESS 1T*R_R54 N5301563 MID R_NOISELESS 10R_R55 N5301567 N5301563 R_NOISELESS 1M*R_R56 VEE_CLP MID R_NOISELESS 1T*R_R57 N5302333 MID R_NOISELESS 10R_R58 N5302227 N5302333 R_NOISELESS 1M+R_R59 N5301533 MID R_NOISELESS 1T4R_R6 N5296623 N5296613 R_NOISELESS 100MEG*R_R60 N5301577 MID R_NOISELESS 10R_R61 N5301581 N5301577 R_NOISELESS 1M0R_R62 N5302261 N5302369 R_NOISELESS 1M+R_R63 N5302495 MID R_NOISELESS 1T*R_R64 N5302369 MID R_NOISELESS 1+R_R65 N5301543 MID R_NOISELESS 1T*R_R66 N5301591 MID R_NOISELESS 10R_R67 N5301595 N5301591 R_NOISELESS 1M0R_R68 N5302295 N5302405 R_NOISELESS 1M+R_R69 N5302499 MID R_NOISELESS 1T3R_R7 MID N5296623 R_NOISELESS 60.036022K*R_R70 N5302405 MID R_NOISELESS 1.R_R71 N5301537 VSENSE R_NOISELESS 1M-R_R72 VCC_B N5303741 R_NOISELESS 1K0R_R73 N5303741 N5303823 R_NOISELESS 1M-R_R74 N5304593 VEE_B R_NOISELESS 1K0R_R75 N5304593 N5304615 R_NOISELESS 1M*R_R76 MID VCC_CLP R_NOISELESS 1K*R_R77 VEE_CLP MID R_NOISELESS 1K*R_R78 N5304383 MID R_NOISELESS 1*R_R79 N5304315 MID R_NOISELESS 10R_R8 N5297653 N5297649 R_NOISELESS 1K,R_R80 V11 N5304181 R_NOISELESS 100,R_R81 V12 N5304435 R_NOISELESS 100*R_R82 N5304195 MID R_NOISELESS 16R_R83 N5304195 SW_OL_TLE214x R_NOISELESS 100+R_RDUMMY MID N5298565 R_NOISELESS 1K(R_RS_INN IN- ESDN R_NOISELESS 10M(R_RS_INP IN+ ESDP R_NOISELESS 10M1R_RX N5298565 N5299111 R_NOISELESS 10K+R_RX1 MID N5298043 R_NOISELESS 1T.R_RX2 VIMON N5298043 R_NOISELESS 100+R_RX3 MID N5297811 R_NOISELESS 1T/R_RX4 VOUT_S N5297811 R_NOISELESS 100'R_R_CM1 ESDP MID R_NOISELESS 1T'R_R_CM2 MID ESDN R_NOISELESS 1T#V_VCM_MAX N5298335 VCC_B -1.8$V_VCM_MIN N5300937 VEE_B -300M!V_V_GRN N5302499 MID -222 V_V_GRP N5301543 MID 108#V_V_ISCN N5302495 MID -76.52"V_V_ISCP N5301533 MID 78.96"V_V_ORN N5304303 VCLP -4.3!V_V_ORP N5304405 VCLP 4.3>X_H1 N5298565 OUT N5298043 MID BLOCK_DC_H1_TLE214x >X_H2 N5303803 N5304383 V12 MID BLOCK_DC_H2_TLE214x >X_H3 N5303747 N5304315 V11 MID BLOCK_DC_H3_TLE214x BX_S1 N5303747 CLAMP N5303747 CLAMP BLOCK_DC_S1_TLE214x BX_S2 CLAMP N5303803 CLAMP N5303803 BLOCK_DC_S2_TLE214x YX_U10 VCC_CLP VEE_CLP VOUT_S MID N5301563 N5302333 CLAMP_AMP_LO_TLE214x PARAMS:+ G=1RX_U11 N5301533 N5302495 VIMON MID N5301577 N5302369 CLAMP_AMP_LO_TLE214x+ PARAMS: G=1UX_U12 N5301543 N5302499 N5301537 MID N5301591 N5302405 CLAMP_AMP_HI_TLE214x+ PARAMS: G=10?X_U16 MID N5304195 N5304181 N5304435 OL_SENSE_TLE214x6X_U18 VIMON MID N5303741 VCC_B CLAWP_TLE214x6X_U19 MID VIMON VEE_B N5304593 CLAWN_TLE214x0X_U20 ESDN ESDP ESD_BB_TLE214x PARAMS:3X_U21 OUT VCC VEE ESD_OUT_TLE214x PARAMS:YX_U22 N5301581 N5302261 CL_CLAMP MID CL_SRC_TLE214x PARAMS: GAIN=1 IPOS=1200E-3+ INEG=-1200E-3VX_U23 N5301595 N5302295 CLAMP MID GR_SRC_TLE214x PARAMS: GAIN=1 IPOS=1.098E1+ INEG=-1.098E1IX_U25 SW_OL_TLE214x MID N5298247 N5298259 SW_OL_TLE214x PARAMS:BX_U26 VIMON MID VCC MID IQ_SRC_TLE214x PARAMS: GAIN=1E-3BX_U27 MID VIMON MID VEE IQ_SRC_TLE214x PARAMS: GAIN=1E-3VX_U30 N5299343 N5300247 MID N5298735 AOL_1_TLE214x PARAMS: GAIN=1E-4 IPOS=.5 + INEG=-.5SX_U31 N5298735 MID MID CLAMP AOL_2_TLE214x PARAMS: GAIN=0.00510 IPOS=0.84+ INEG=-0.71YX_U32 N5356487 MID MID N5299111 ZO_SRC_TLE214x PARAMS: GAIN=7018.0175 IPOS=1580+ INEG=-1540PX_U35 N5301567 N5302227 CLAW_CLAMP MID CLAW_SRC_TLE214x PARAMS: GAIN=1+ IPOS=600E-3 INEG=-600E-3:X_U36 N5298577 MID FEMT_TLE214x PARAMS: NVRF=470NX_U4 N5297649 N5298577 VOS_DRIFT_TLE214x PARAMS: DC=81.014E-6 POL=1+ DRIFT=1.7E-06RX_U43 ESDP N5298577 VNSE_TLE214x PARAMS: FLW=1 GLF=0.042955 RNV=123.18336X_U44 ESDN MID FEMT_TLE214x PARAMS: NVRF=4708X_U5 ESDN ESDP VCC VEE ESD_IN_TLE214x PARAMS:UX_U6 N5297697 MID N5299325 MID N5298335 N5300937 VCM_CLAMP_TLE214x PARAMS: + GAIN=1'.MODEL R_NOISELESS RES (T_ABS=-273.15).ENDS TLE214x*&.SUBCKT BLOCK_DC_H1_TLE214x 1 2 3 4 H_H1 3 4 VH_H1 1KVH_H1 1 2 0V.ENDS BLOCK_DC_H1_TLE214x*&.SUBCKT BLOCK_DC_H2_TLE214x 1 2 3 4 H_H2 3 4 VH_H2 1VH_H2 1 2 0V.ENDS BLOCK_DC_H2_TLE214x*&.SUBCKT BLOCK_DC_H3_TLE214x 1 2 3 4 H_H3 3 4 VH_H3 -1VH_H3 1 2 0V.ENDS BLOCK_DC_H3_TLE214x*&.SUBCKT BLOCK_DC_S1_TLE214x 1 2 3 4 S_S1 3 4 1 2 _S1RS_S1 1 2 1G?.MODEL _S1 VSWITCH ROFF=1E9 RON=10M VOFF=0.0V VON=10MV.ENDS BLOCK_DC_S1_TLE214x*&.SUBCKT BLOCK_DC_S2_TLE214x 1 2 3 4 S_S2 3 4 1 2 _S2RS_S2 1 2 1G?.MODEL _S2 VSWITCH ROFF=1E9 RON=10M VOFF=0.0V VON=10MV.ENDS BLOCK_DC_S2_TLE214x*M.SUBCKT AOL_1_TLE214x VC+ VC- IOUT+ IOUT- PARAMS: GAIN=1E-4 IPOS=.5 INEG=-.58G1 IOUT+ IOUT- VALUE={LIMIT(GAIN*V(VC+,VC-),INEG,IPOS)}.ENDS AOL_1_TLE214x*T.SUBCKT AOL_2_TLE214x VC+ VC- IOUT+ IOUT- PARAMS: GAIN=0.00510 IPOS=0.84 INEG=-0.718G1 IOUT+ IOUT- VALUE={LIMIT(GAIN*V(VC+,VC-),INEG,IPOS)}.ENDS AOL_2_TLE214x*A.SUBCKT CLAMP_AMP_HI_TLE214x VC+ VC- VIN COM VO+ VO- PARAMS: G=1OGVO+ COM VO+ VALUE = {IF(V(VIN,COM)>V(VC+,COM),((V(VIN,COM)-V(VC+,COM))*G),0)}OGVO- COM VO- VALUE = {IF(V(VIN,COM)V(VC+,COM),((V(VIN,COM)-V(VC+,COM))*G),0)}OGVO- COM VO- VALUE = {IF(V(VIN,COM)10E-3 | V(OLP,COM)>10E-3),1,0)}.ENDS OL_SENSE_TLE214x*4.SUBCKT SW_OL_TLE214x SW_OL_TLE214x MID CAP_L CAP_R@.MODEL OL_SW VSWITCH(RON=1E-3 ROFF=1E12 VON=900E-3 VOFF=800E-3)'S1 CAP_L CAP_R SW_OL_TLE214x MID OL_SW.ENDS SW_OL_TLE214x*G.SUBCKT VCM_CLAMP_TLE214x VIN+ VIN- IOUT- IOUT+ VP+ VP- PARAMS: GAIN=1IG1 IOUT+ IOUT- VALUE={LIMIT(GAIN*V(VIN+,VIN-),V(VP-,VIN-), V(VP+,VIN-))}.ENDS VCM_CLAMP_TLE214x*A.SUBCKT VNSE_TLE214x 1 2 PARAMS: FLW=1 GLF=0.042955 RNV=123.1833/.MODEL DVN D KF={PWR(FLW,0.5)/1E11} IS=1.0E-16 I1 0 7 10E-3 I2 0 8 10E-3 D1 7 0 DVN D2 8 0 DVNE1 3 6 7 8 {GLF} R1 3 0 1E9 R2 3 0 1E9 R3 3 6 1E9E2 6 4 5 0 10 R4 5 0 {RNV} R5 5 0 {RNV} R6 3 4 1E9 R7 4 0 1E9 E3 1 2 3 4 1.ENDS VNSE_TLE214x*L.SUBCKT VOS_DRIFT_TLE214x VOS+ VOS- PARAMS: DC=81.014E-6 POL=1 DRIFT=1.7E-6,E1 VOS+ VOS- VALUE={DC+POL*DRIFT*(TEMP-27)}.ENDS VOS_DRIFT_TLE214x*W.SUBCKT ZO_SRC_TLE214x VC+ VC- IOUT+ IOUT- PARAMS: GAIN=7018.0175 IPOS=1580 INEG=-15408G1 IOUT+ IOUT- VALUE={LIMIT(GAIN*V(VC+,VC-),INEG,IPOS)}.ENDS ZO_SRC_TLE214x*IN+IN-VCCVEEOUT9d T_079B998020180215122906 NOPCB (GND)9d`HT_079B93A020180215122906 NOPCB (GND)9d`T_079B8DC020180215122906 NOPCB (GND)9dT_079BC88020180215122906 NOPCB (GND)9dT_07C6D48020180215123058 NOPCB (GND)9dXT_0F05634020180215123248 NOPCB (GND)9dXpT_0F0580A020180215123328 NOPCB (GND)-? 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