VCC. 10k -VEE V2 DC = 15 DC = 15 U1 LF Vin + V3 OUT. V1 Magnitude = 1 Phase = 0. AC Sweep -VEE VCC
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2 R3 VCC Vin R1 1k AC Sweep V1 Magnitude = 1 Phase = R2 1k U1 LF R4 1k 1k VEE V 4 7 V VCC B1 OUT B Vo V2 DC = 15 V3 DC = 15 VEE
3 ** Profile: "SCHEMATIC1AC Sweep" [ C:\DOCUMENTS AND SETTINGS\HERNITER\MY DOCUMENTS\Website\Rose_Classes... Date/Time run: 11/6/6 9:43:13 Temperature: 27. (A) AC Sweep.dat (active) 2 (45.186,2.) 1 (413.17K,16.985) Hz 1Hz 1Hz 1.KHz 1KHz 1KHz 1.MHz 1MHz db(v(vo)) Frequency Date: November 6, 26 Page 1 Time: 9:46:53
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7 R3 VCC Vin AC Sweep V1 Magnitude = 1 Phase = R1 1k R5 1k R2 1k U1 LF k VEE V 4 7 V VCC B1 OUT B Vo V2 DC = 15 V3 DC = 15 VEE R4 1k
8 ** Profile: "SCHEMATIC1AC Sweep" [ C:\DOCUMENTS AND SETTINGS\HERNITER\MY DOCUMENTS\Website\Rose_Classes... Date/Time run: 11/6/6 1:1:8 Temperature: 27. (B) AC Sweep.dat (active) 2 ( K,15.124) 2 1V db(v(vo)) ( ,8.95) 5V SEL>> V 1.Hz 1Hz 1Hz 1.KHz 1KHz 1KHz 1.MHz 1MHz V(Vo) Frequency Date: November 6, 26 Page 1 Time: 1:4:45
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10 R3 VCC Vin AC Sweep I1 Magnitude = 1 Phase = R2 1k U1 LF k VEE V 4 7 V B1 OUT B Vo V2 DC = 15 V3 DC = 15 VEE R4 1k VCC
11 ** Profile: "SCHEMATIC1AC Sweep" [ C:\DOCUMENTS AND SETTINGS\HERNITER\MY DOCUMENTS\Website\Rose_Classes... Date/Time run: 11/6/6 1:1:22 Temperature: 27. (C) AC Sweep.dat (active) 8 7 ( K,76.942) 6 SEL>> 5 1KV db(v(vo)) (182.81,1.K) 5KV V 1.Hz 1Hz 1Hz 1.KHz 1KHz 1KHz 1.MHz 1MHz V(Vo) Frequency Date: November 6, 26 Page 1 Time: 1:12:57
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15 Vin AC Sweep V1 Magnitude = 1 Phase = R1 1k R7 1k R2 1k U1 LF VCC V 7 4 V VEE B2 OUT B1 5 R6 1k VCC Vo R3 VCC R4 1k 1k V2 DC = U2 LF V 7 4 V VEE R5 B2 OUT B k V3 DC = 15 VEE
16 ** Profile: "SCHEMATIC1AC Sweep" [ C:\DOCUMENTS AND SETTINGS\HERNITER\MY DOCUMENTS\Website\Rose_Classes... Date/Time run: 11/6/6 1:33:19 Temperature: 27. (A) AC Sweep.dat (active) 3.V 2.5V 2.V 1.5V (43.152,681.47m) 1.V.5V V 1.Hz 1Hz 1Hz 1.KHz 1KHz 1KHz 1.MHz 1MHz V(Vo) Frequency Date: November 6, 26 Page 1 Time: 1:39:1
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18 LF411 Low Offset Low Drift JFET Input Operational Amplifier General Description These devices are low cost high speed JFET input operational amplifiers with very low input offset voltage and guaranteed input offset voltage drift They require low supply current yet maintain a large gain bandwidth product and fast slew rate In addition well matched high voltage JFET input devices provide very low input bias and offset currents The LF411 is pin compatible with the standard LM741 allowing designers to immediately upgrade the overall performance of existing designs These amplifiers may be used in applications such as high speed integrators fast D A converters sample and hold circuits and many other circuits requiring low input offset voltage and drift low input bias current high input impedance high slew rate and wide bandwidth Typical Connection TL H Simplified Schematic Features Ordering Information X Y Z LF411XYZ indicates electrical grade indicates temperature range M for military C for commercial indicates package type H or N February 1995 Y Internally trimmed offset voltage 5 mv(max) Y Input offset voltage drift 1 mv C(max) Y Low input bias current 5 pa Y Low input noise current 1 pa Hz Y Wide gain bandwidth 3 MHz(min) Y High slew rate 1V ms(min) Y Low supply current 1 8 ma Y High input impedance 1 12X Y Low total harmonic distortion AV e1 k 2% R L e1k V O e2 Vpp BWe2 Hzb2 khz Y Low 1 f noise corner 5 Hz Y Fast settling time to 1% 2 ms Connection Diagrams Metal Can Package TL H Top View Note Pin 4 connected to case Order Number LF411ACH or LF411MH 883 See NS Package Number H8A DualInLine Package LF411 Low Offset Low Drift JFET Input Operational Amplifier TL H TL H Top View Order Number LF411ACN LF411CN or LF411MJ 883 See NS Package Number N8E or J8A BIFET IITM is a trademark of National Semiconductor Corporation Available per JM C1995 National Semiconductor Corporation TL H 5655 RRDB3M115 Printed in U S A
19 Absolute Maximum Ratings If Military Aerospace specified devices are required please contact the National Semiconductor Sales Office Distributors for availability and specifications (Note 8) LF411A LF411 Supply Voltage g22v g18v Differential Input Voltage g38v g3v Input Voltage Range (Note 1) g19v g15v Output Short Circuit Duration Continuous Continuous DC Electrical Characteristics (Note 4) Symbol Parameter Conditions H Package N Package Power Dissipation (Notes 2 and 9) 67 mw 67 mw T j max 15 C 115 C i j A 162 C W (Still Air) 12 C W 65 C W (4 LF min Air Flow) i j C 2 C W Operating Temp Range (Note 3) (Note 3) Storage Temp Range b65 CsT A s15 C b65 CsT A s15 C Lead Temp (Soldering 1 sec ) 26 C 26 C ESD Tolerance Rating to be determined LF411A LF411 Min Typ Max Min Typ Max V OS Input Offset Voltage R S e1 kx T A e25 C mv DV OS DT Average TC of Input R S e1 kx (Note 5) Offset Voltage (Note 5) I OS Input Offset Current V S e g15v T j e25 C pa (Notes 4 6) T j e7 C 2 2 na Units mv C T j e125 C na I B Input Bias Current V S e g15v T j e25 C pa (Notes 4 6) T j e7 C 4 4 na T j e125 C 5 5 na R IN Input Resistance T j e25 C X A VOL Large Signal Voltage V S e g15v V O e g1v Gain R L e2k T A e25 C V mv Over Temperature V mv V O Output Voltage Swing V S e g15v R L e1k g12 g13 5 g12 g13 5 V V CM Input CommonMode g16 a19 5 g11 a14 5 V Voltage Range b16 5 b11 5 V CMRR CommonMode R S s1k Rejection Ratio PSRR Supply Voltage (Note 7) Rejection Ratio db db I S Supply Current ma AC Electrical Characteristics (Note 4) Symbol Parameter Conditions LF411A LF411 Min Typ Max Min Typ Max SR Slew Rate V S e g15v T A e25 C V ms GBW GainBandwidth Product V S e g15v T A e25 C MHz e n Equivalent Input Noise Voltage T A e25 C R S e1x fe1 khz Units nv SHz i n Equivalent Input Noise Current T A e25 C fe1 khz 1 1 pa SHz 2
20 VCC Vin AC Sweep V1 Magnitude = 1 Phase = U1 LF VEE V 4 7 V VCC B1 OUT B Vo V2 DC = 15 V3 DC = 15 VEE
21 ** Profile: "SCHEMATIC1AC Sweep" [ C:\DOCUMENTS AND SETTINGS\HERNITER\MY DOCUMENTS\Website\Rose_Classes... Date/Time run: 11/6/6 1:44:27 Temperature: 27. (A) AC Sweep.dat (active) 12 62,112.39) 8 (2.169,19.12) Hz 1Hz 1Hz 1.KHz 1KHz 1KHz 1.MHz 1MHz db(v(vo)) Frequency Date: November 6, 26 Page 1 Time: 1:53:26
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26 R3 R2 R1 1k 1k 1k R6 1k R5 1k VCC Vin V3 AC Magnitude = 1 Sweep Phase = R4 1k U1A TL VEE V 4 8 V OUT 1 Vo V1 DC = 15 V2 DC = 15 VCC VEE
27 ** Profile: "SCHEMATIC1AC Sweep" [ C:\Documents and Settings\herniter\My Documents\Website\Rose_Classes... Date/Time run: 11/3/5 11:32:42 Temperature: 27. (A) AC Sweep.dat (active) 8. upper3db(v(vo)) = k P Hz 1Hz 1Hz 1.KHz 1KHz 1KHz 1.MHz V(Vo) Frequency Date: November 3, 25 Page 1 Time: 11:33:8
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29 R3 8k VCC Vin V3 AC Magnitude = 1 Sweep Phase = R4 1k U1A TL VEE V 4 8 V OUT 1 Vo V1 DC = 15 V2 DC = 15 R5 1k VCC VEE
30 ** Profile: "SCHEMATIC1Sweep" [ C:\Documents and Settings\herniter\My Documents\Website\Rose_Classes\EC... Date/Time run: 11/3/5 11:35:7 Temperature: 27. (A) Sweep.dat (active) 8. upper3db(v(vo)) = k 6. P Hz 1Hz 1Hz 1.KHz 1KHz 1KHz 1.MHz 1MHz V(Vo) Frequency Date: November 3, 25 Page 1 Time: 11:35:27
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32 R3 11k AC Sweep I2 Magnitude = 1 Phase = I1 DC = 1m R4 5k U1A TL R6 1k VEE V 4 8 V VCC OUT 1 R5 1k Vo D1 D1N41 VCC V1 DC = 15 V2 DC = 15 VEE
33 ** Profile: "SCHEMATIC1Gain" [ C:\Documents and Settings\herniter\My Documents\Website\Rose_Classes\ECE... Date/Time run: 11/3/5 11:37:42 Temperature: 27. (A) Gain.dat (active) 12 1 upper3db(i(d1)) = meg P Hz 1Hz 1Hz 1.KHz 1KHz 1KHz 1.MHz 1MHz I(D1) Frequency Date: November 3, 25 Page 1 Time: 11:38:1
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