OBSSCircuit DescriptionV1.1010/02/94 20:07 CET.Component & analysis parameters of a circuit.TINA 9.3.50.47 SFB(c) Copyright 1993,94,95,96 DesignSoft Inc. All rights reserved.; $Circuit$w?$??ƚQKE. 2l DQKE. EMF$ iRpArial@@Uu qu^uPArialO@w@@p0100000000000000000z&w͸uWSIIO@OX9IbE9iuB'dgGiudv%  % RpArial0100Arial000D@u b*D@uu@@\u8@@\͸uWSIIO@X9IbEdg@Z9?@dv%  % %  % %  % %  % %  % %  % %  % %  % %  % %  % %  % &%  '%   6mm6m% ??&%  6?6% ??%  6??6??6??6?t?t6t?S?S6S?2?262% ??%  6??6% ??&%  6% % %  &%  %     T|5GD@ B B5L\Time (s) H5% % %  %     Td8"P1@ B B8"LT0.00Q"% ( ??%  6? 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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 expressedG** or implied, with respect to this model, including the warranties ofF** 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 customer.N******************************************************************************A** Released by: WEBENCH(R) Design Center, Texas Instruments Inc.* Part: LM7322* Date: 4/19/2012* Model Type: All In One* Simulator: TINA-TI%* Simulator Version: 9.1.30.94 SF-TI* EVM Order Number: N/A* EVM Users Guide: N/A* Datasheet: SNOSAW8C** Model Version: 1.0*N****************************************************************************** * Updates:** Version 1.0 : Release to Web*N***************************************************************************** * Notes:N*****************************************************************************"* PINOUT ORDER +IN -IN +V -V OUT'* PINOUT ORDER Vip Vin VDD VSS Vout%.SUBCKT LM7322 Vip Vin VDD VSS Vout)* SEE BELOW FOR PROGRAMMING INFORMATIONa* SEE BELOW FOR MODEL FEATURES* START PROGRAMMINGF* BECAUSE THE PARAMETERS OF THE LM7322 VARY NOTICABLY AND NONLINEARLYF* WITH OPERATING VOLTAGE OVER THE WIDE OPERATING VOLTAGE RANGE OF THED* PART (2.7 TO 30 VOLTS), THE MODEL IS PROGRAMMABLE TO SOME EXTENT.C* THERE ARE THREE GROUPS OF SPICE STATEMENTS FOR PROGRAMMING. ONLYC* ONE GROUP SHOULD BE UN-COMMENTED AT A TIME. THE THREE GROUPS ARED* FOR 2.7, 10, AND 30 VOLTS TOTAL ACROSS THE PART. THE MODEL IS NOWF* SET UP FOR 30 VOLTS IE THE 30 VOLT GROUP IS UN-COMMENTED. FOR OTHERC* SUPPLY VOLTAGES THE VALUES MAY BE INTERPOLATED. SEE BELOW FOR ANC* INDEX TO THE FUNCTIONS OF THE PROGRAMMABLE COMPONENTS. V6 AND V7C* MAY BE ADJUSTED FOR ANY DESIRED OFFSET OR OFFSET DELTA FOR INPUTB* COMMON MODE NEAR THE POSITIVE RAIL. NOTE THAT BECAUSE THE MODELC* HAS REALISTIC COMMON MODE AND POWER SUPPLY REJECTION, THE OFFSET<* WILL CHANGE WITH SUPPLY VOLTAGES AND COMMON MODE VOLTAGE.** 30 VOLT TOTAL SUPPLY GROUPC24 16 28 5.6E-12R159 20 15 2E6R219 15 28 8E7R316 47 44 60R317 47 46 60R318 54 59 60R319 51 59 60R320 60 61 4.4E3R324 65 45 4.4E3I16 VDD VSS 1.33E-3G25 VDD VSS 42 0 -3.3E-3F1 VDD VSS V15 -0.23R153 15 16 500E152 82 81 75 0 0.37C29 71 75 150E-12E151 81 78 76 0 -0.53V6 43 53 -600E-6V7 61 53 2.7E-3E158 60 82 42 0 1.125E-3E150 78 Vip 77 0 3.3E-3E84 13 10 13 12 6.0E85 9 8 14 8 3.65E146 65 70 68 69 0.6G30 60 65 89 0 8E-5G27 60 65 66 67 1.7E-4* END 30 V TOTAL SUPPLY GROUP** 10 VOLT TOTAL SUPPLY GROUP*C24 16 28 8.2E-12*R159 20 15 1.2E6*R219 15 28 3E7*R316 47 44 55*R317 47 46 55*R318 54 59 55*R319 51 59 55*R320 60 61 5.3E3*R324 65 45 5.3E3*I16 VDD VSS 1.1E-3*G25 VDD VSS 42 0 -2.5E-3*F1 VDD VSS V15 -0.12*R153 15 16 400*E152 82 81 75 0 0.22*C29 71 75 150E-12*E151 81 78 76 0 -0.75*V6 43 53 -600E-6*V7 61 53 2.0E-3*E158 60 82 42 0 1.125E-3*E150 78 Vip 77 0 2E-3*E84 13 10 13 12 4.6*E85 9 8 14 8 3.75*E146 65 70 68 69 0.6*G30 60 65 89 0 8E-5*G27 60 65 66 67 1.7E-4* END 10 V TOTAL SUPPLY GROUP** 2.7 VOLT TOTAL SUPPLY GROUP*C24 16 28 11.5E-12*R159 20 15 5E5*R219 15 28 1.3E7*R316 47 44 42*R317 47 46 42*R318 54 59 42*R319 51 59 42*R320 60 61 3.6E3*R324 65 45 3.6E3*I16 VDD VSS 1.1E-3*G25 VDD VSS 42 0 -3.3E-3*F1 VDD VSS V15 -0.12*R153 15 16 500*E152 82 81 75 0 -0.57*C29 71 75 1E-12*E151 81 78 76 0 0.42*V6 43 53 -350E-6*V7 61 53 1.2E-3*E158 60 82 42 0 8.8E-4*E150 78 Vip 77 0 -1E-3*E84 13 10 13 12 6.3*E85 9 8 14 8 4.6*E146 65 70 68 69 0.55*G30 60 65 89 0 8E-6*G27 60 65 66 67 6.9E-5* END 2.7 V TOTAL SUPPLY GROUP** END PROGRAMMING1* INDEX TO SOME PROGRAMMABLE COMPONENT FUNCTIONS7* THE LINES IN THIS INDEX MUST ALWAYS REMAIN COMMENTED*,*V6 RELATIVE OFFSET BETWEEN INPUT STAGES*V7 OVERALL OFFSET*E158 TEMCO OF OFFSET** END OF INDEX*4* MODEL FEATURES INCLUDE GAIN AND PHASE, SLEW RATE,2* VOLTAGE NOISE WITH 1/F, CURRENT NOISE WITH 1/F,0* INPUT BIAS CURRENT, INPUT BIAS CURRENT CHANGE2* WHEN COMMON MODE VOLTAGE NEAR THE + RAIL, INPUT3* OFFSET VOLTAGE, INPUT OFFSET VOLTAGE CHANGE WHEN2* WHEN COMMON MODE VOLTAGE NEAR THE + RAIL, INPUT3* OFFSET TEMPCO, COMMON MODE RANGE, CMRR WITH FREQ1* EFFECTS, PSRR WITH FREQ EFFECTS, OUTPUT SWING,1* OUTPUT CURRENT FLOWS THROUGH THE RAILS, OUTPUT3* CURRENT LIMIT, IQ, IQ TEMPCO, AND IQ CHANGE WITH4* COMMON MODE VOLTAGE, AND CAPACATIVE LOAD EFFECTS.*Q41 6 7 8 QLN R148 7 9 1E3R149 10 11 1E3R150 12 13 2.7R151 8 14 2.7R154 17 13 2.7R155 8 18 2.7D22 19 VDD DDD23 VSS 19 DDE58 8 0 VSS 0 1E79 13 0 VDD 0 1R156 VSS VDD 1.1E5E60 20 8 13 8 0.5 D24 21 13 DD D25 8 22 DDR157 23 24 100R158 25 26 100G14 15 20 27 20 0.1E-3C25 19 0 0.5E-12 D26 26 6 DD D27 29 24 DDQ42 29 11 13 QLP R160 19 30 1 R161 31 19 1E71 32 20 33 34 -1R162 32 27 1E3C26 27 20 0.1E-12G15 35 20 15 20 -1E-3G16 20 36 15 20 1E-3G17 20 37 38 8 1E-3G18 39 20 13 40 1E-3 D28 39 35 DD D29 36 37 DDR163 35 39 1E9R164 37 36 1E9R165 39 13 1E3R166 8 37 1E3R167 36 20 1E7R168 37 20 1E7R169 20 39 1E7R170 20 35 1E7R171 20 27 1E9R172 23 13 1E9R173 8 25 1E9G20 40 38 41 0 90E-6L2 19 Vout 0.4E-9R175 19 Vout 4E2R176 40 13 1E8R177 8 38 1E8R178 14 26 1E8R179 12 24 1E8E24 28 0 19 0 1Q52 30 24 12 QOPQ53 31 26 14 QONQ54 38 38 18 QONQ55 40 40 17 QOPE144 13 23 13 39 1E145 25 8 37 8 1E51 15 22 20 8 0.9E52 21 15 13 20 0.9G23 VDD 0 30 19 1G24 VSS 0 19 31 -1Q56 33 43 44 QINQ57 34 45 46 QINQ58 47 48 8 QLNQ59 48 49 8 QLNQ60 50 45 51 QIPQ61 52 53 54 QIPQ62 55 56 13 QLPQ63 48 57 58 QPXR321 33 62 350R322 63 50 350R323 63 52 350 V4 13 64 1 D30 43 13 DD D31 45 13 DD D32 8 53 DD D33 8 45 DD D34 66 0 DIN D35 67 0 DINI9 0 66 0.1E-3I10 0 67 0.1E-3C27 60 0 1E-12C28 Vin 0 1E-12 D36 68 0 DVN D37 69 0 DVNI11 0 68 0.1E-3I12 0 69 0.1E-3E147 71 0 13 0 1E148 72 0 8 0 1E149 73 0 74 0 1R329 71 75 1E6R330 72 76 1E6R331 73 77 1E6R332 0 75 100R333 0 76 100R334 0 77 1E4R335 79 74 1E3R336 74 80 1E3C30 72 76 1E-12C31 73 77 1E-12R337 34 62 350C32 34 33 2E-12C33 50 52 2E-12G28 15 20 83 20 0.1E-3E153 84 20 50 52 1R338 84 83 1E3C34 83 20 0.1E-12R339 20 83 1E9 V12 41 0 1 V15 55 59 0 R341 55 58 1 R342 57 64 1R343 48 49 8E-2I14 0 85 1E-3 D39 85 0 DDR345 0 86 1E7E155 87 0 86 0 -1.75R346 0 87 1E7V17 85 86 1.2301G29 13 56 87 0 -30E-6E156 70 Vin 88 0 1.25E-6R347 0 88 9.6E4R348 0 88 9.6E4R349 0 89 1E4R350 0 89 1E4I15 0 90 1E-3 D40 90 0 DDR352 0 42 1E7V19 90 42 0.655R353 82 60 1E9R354 81 82 1E9R355 78 81 1E9R356 Vip 78 1E9R357 0 41 1E9E159 80 0 60 0 1E160 79 0 65 0 1V21 13 62 -0.3V22 63 8 -0.3.MODEL QON NPN RC=1 IS=1E-13.MODEL QOP PNP RC=1 IS=1E-13.MODEL QPX PNP BF=200 IS=1E-14 .MODEL DD D.MODEL QIN NPN BF=3200.MODEL QIP PNP BF=1350.MODEL DVN D KF=2.5E-15.MODEL DIN D KF=1E-15.MODEL QLN NPN.MODEL QLP PNP.ENDS* END MODEL LM7322VIPVINVDDVSSVOUTBn VCMT_07C8415020120404154838 NOPCB (J)BnPX VCMT_07C83B7020120404154838 NOPCB (J)BnX VDDT_07C8359020120404154838 NOPCB (J)Bn`VSST_07C82FB020120404154838 NOPCB (J)Bn0VDDT_07C829D020120404154838 NOPCB (J)Bnx VSST_07C823F020120404154838 NOPCB (J)Bn VDDT_07C81E1020120404154838 NOPCB (J)Bn VSST_07C8183020120404154838 NOPCB (J)Bn VCMT_07C8125020120404154838 NOPCB (J)Bnx VCMT_07C80C7020120404154838 NOPCB (J)BfxT_07C852F020120404154838 NOPCB (GND)BfxT_07C84D1020120404154838 NOPCB (GND)8?-_@ @MbP??ư>'dd?Y@[dddd$@?.A.A.AeAMbP?@@?~jth?ư> $ 4@D@ =B?& .>??ư>ư>ư>ư>ư>ư>?I@?I@?I@& .>#i;@& .>-q=ư>MbP?-q=MbP?vIh%<=@@D@& .>?MbP?4@?{Gz?ꌠ9Y>)F@?+= _BKH9$@Y@& .>ư>?.AMbP??????I@Default analysis parameters. These parameters establish convergence and sufficient accuracy for most circuits. In case of convergence or accuracy problems click on the "hand " button to Open other parameter sets.?Xd I@nMbP?{Gz?{Gz?MbP????|=Hz>}Ô%ITNoname