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LT1055/56/22

Catalog Datasheet MFG & Type PDF Document Tags

Low Noise Op Amps equivalent

Abstract: LT1001 LT1Q01, LT1012 LT1001 70k to 150k LT1012 LT1001, LT1012 LT1055/56/22, LT1057/58 150k to 600k LT1012, LT1006/13/14 LT1012, LT1006/13/14 LT1055/56/22, LT1057/58 600k to 2M LT1012 LT1055/56/22, LT1057/58 LT1012, LT1006/13/14 LT1055/56/22, LT1057/58 2M to 10M LT1055/56/22, LT1057/58 LT1012 LT1055/56/22, LT1057/58 >10M LT1055/56/22, LT1057/58 LT1055/56/22, LT1057/58 DN3-1 The actual achievable total noise
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OCR Scan
LT1028 Low Noise Op Amps equivalent lt1007 LT1013 equivalent LT1028 equivalent LT10 LT1007137 LT1007/37 LT1055/56/22 LT1028- LT1007

LT1028

Abstract: LT1001 LT1055/56/22, LT1057/58 150k to 600k LT1012, LT1006/13/14 LT1012, LT1006/13/14 LT1055/56/22, LT1057/58 600k to 2M LT1012 LT1055/56/22, LT1057/58 LT1012, LT1006/13/14 LT1055/56/22, LT1057/58 2Mto10M LT1055/56/22, LT1057/58 LT1012 LT1055/56/22, LT1057/58 >10M LT1055/56/22, LT1057/58 LT1055/56/22, LT1057/58
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LT105 LT1012 equivalent LT1007 equivalent LT1006 equivalent OP AMP LT1Q12

LT10XX

Abstract: LT1001 , LT1007/37 30k to 70k LT1001, LT1012 LT1001 70k to 150k LT1012 LT1001, LT1012 LT1055/56/22, LT1057/58 150k to 600k LT1012, LT1006/13/14 LT1012, LT1006/13/14 LT1055/56/22, LT1057/58 600k to 2M LT1012 LT1055/56/22, LT1057/58 LT1012, LT1006/13/14 LT1055/56/22, LT1057/58 2M to 10M LT1055/56/22, LT1057/58 LT1012 LT1055/56/22, LT1057/58 >10M LT1055/56/22, LT1057/58 LT1055/56/22, LT1057/58 For literature on
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LT10XX audio amplifier using op amp j353 128x101 DN15-1 EN12 DN15-2

1N148 diode

Abstract: LF351 op-amp D/A ) LT1055/56 TA02 LT1055/56 TA01 10556fc 1 LT1055/LT1056 U W W W ABSOLUTE MAXIMUM , 0 5 10 ­10 COMMON MODE INPUT VOLTAGE (V) LT1055/56 G01 BATTERY VOLTAGE (V) 120 50 , ­600 ­400 ­200 0 200 400 600 800 INPUT OFFSET VOLTAGE (µV) 15 LT1055/56 G03 Long Term Drift , FROM 120 TWO RUNS (LT1056) 100 140 LT1055/56 G02 Distribution of Offset Voltage Drift with , 3 4 2 TIME AFTER POWER ON (MINUTES) 0 5 1 0 3 2 TIME (MONTHS) 4 LT1055/56
Linear Technology
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1N148 diode LF351 op-amp D/A 2N160 2N5160 equivalent 747 op amp datasheet LF351 op-amp application LT1055/LT1056 1055/LT1056 LT1055/ 2N2222 1N4148 2N2907

1N148 diode

Abstract: 1n148 OPERATION. 0 ­400 200 ­200 400 0 INPUT OFFSET VOLTAGE (µV) LT1055/56 TA02 LT1055/56 TA01 , ­10 COMMON MODE INPUT VOLTAGE (V) LT1055/56 G01 BATTERY VOLTAGE (V) 120 50% TO ±1.5µV/°C , 400 600 800 INPUT OFFSET VOLTAGE (µV) 15 LT1055/56 G03 Long Term Drift of Representative , (LT1056) 100 140 LT1055/56 G02 Distribution of Offset Voltage Drift with Temperature (H Package , TIME AFTER POWER ON (MINUTES) 0 5 1 0 3 2 TIME (MONTHS) 4 LT1055/56 G05
Linear Technology
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1n148 LT1056CS8 LF351 Op Amp IC tl081 schematic LM329 amplifier 2N3906 2N5415 1N965 2N3440 LT1055/56 LT1122 LT1792

ad611

Abstract: lt356a (|xV) LT1055/56 TA02 LT1055/56 TA01 1 LT1055/LT1056 r b s o iu t cm n x im u m r r t ir g s , 600 800 INPUT OFFSET VOLTAGE (jiV) LT1055/56 G02 LT1055/56 G03 Long Term Drift of Representative Units Warm-Up Drift TIME AFTER POWER ON (MINUTES) TIME (MONTHS) LT1055/56 G05 , Av = 1, CL = 10OpF, 0.5| /DIV js LT1055/56 G 12 Av = 1, CL = 100pF, 0.2(os/DIV Undistorted , > 0 3 > -25 FREQUENCY (MHz) 25 LT1055/56 G13 Gain vs Frequency LT1055/56 G15
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ad611 lt356a 055/LT1056

1N148 diode

Abstract: exponential Voltage-to-Frequency Converter ) LT1055/56 TA02 LT1055/56 TA01 1 LT1055/LT1056 W U U W W W Supply Voltage , COMMON-MODE INPUT VOLTAGE (V) LT1055/56 G01 BATTERY VOLTAGE (V) 120 50% TO ±1.5µV/°C 100 80 , 800 INPUT OFFSET VOLTAGE (µV) 15 LT1055/56 G03 Long Term Drift of Representative Units , ±15V TA = 25°C 140 550 UNITS TESTED FROM 120 TWO RUNS (LT1056) 100 LT1055/56 G02 , TIME AFTER POWER ON (MINUTES) 0 5 1 0 3 2 TIME (MONTHS) 4 LT1055/56 G05
Linear Technology
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exponential Voltage-to-Frequency Converter 2N3866 SCHEMATIC ic u440 lt1056 datasheet CA3096 Power AMPLIFIER 6012

1N148 diode

Abstract: 1N148 ) LT1055/56 TA02 LT1055/56 TA01 1 LT1055/LT1056 W U U W W W Supply Voltage , NEGATIVE INPUT CURRENT B ­120 ­15 ­5 0 5 10 ­10 COMMON-MODE INPUT VOLTAGE (V) LT1055/56 , LT1055/56 G03 Long Term Drift of Representative Units Warm-Up Drift 100 CHANGE IN OFFSET , TESTED FROM 120 TWO RUNS (LT1056) 100 LT1055/56 G02 Distribution of Offset Voltage Drift with , 2 TIME (MONTHS) 4 LT1055/56 G05 *DISTRIBUTION IN THE PLASTIC (N8) PACKAGE IS
Linear Technology
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ic lf351 as operational amplifier LF155A Q450-4 hp5082
Abstract: '"400 200 â'"200 400 0 INPUT OFFSET VOLTAGE (µV) LT1055/56 TA02 LT1055/56 TA01 10556fc 1 , '"800 â'"600 â'"400 â'"200 0 200 400 600 800 INPUT OFFSET VOLTAGE (µV) 15 LT1055/56 G03 Long , UNITS TESTED FROM 120 TWO RUNS (LT1056) 100 140 LT1055/56 G02 Distribution of Offset Voltage , '"40 LT1055/56 G01 140 400 A 160 NUMBER OF INPUTS 300 1200 120 80 60 LT1056CN8 , 3 2 TIME (MONTHS) 4 LT1055/56 G05 *DISTRIBUTION IN THE PLASTIC (N8) PACKAGE IS Linear Technology
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2N3440 pinout

Abstract: LM329 amplifier INPUT OFFSET VOLTAGE (µV) LT1055/56 TA02 LT1055/56 TA01 1 LT1055/LT1056 W U U W W , NEGATIVE INPUT CURRENT B ­120 ­15 ­5 0 5 10 ­10 COMMON-MODE INPUT VOLTAGE (V) LT1055/56 , LT1055/56 G03 Long Term Drift of Representative Units Warm-Up Drift 100 CHANGE IN OFFSET , TESTED FROM 120 TWO RUNS (LT1056) 100 LT1055/56 G02 Distribution of Offset Voltage Drift with , 2 TIME (MONTHS) 4 LT1055/56 G05 *DISTRIBUTION IN THE PLASTIC (N8) PACKAGE IS
Linear Technology
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2N3440 pinout 2N2222 NPN Transistor features 3 phase AC servo drive schematic 74C906 74c906 datasheet cmos 74C00

LT1334

Abstract: LT1220 LT1001/02 LT1113, LT1124/25/26/27 LT1354/57/60/63 20k to 100k LT1001/02 LT1055/56/57/58, LT1113, LT1169 LT1351 100k to 1M LT1022, LT1055/56/57/58, LT1113, LT1122, LT1169 LT1022, LT1055/56/57/58, LT1113 LT1122, LT1169, LT1457 LT1351 1M to 10M LT1022, LT1055/56/57/58, LT1113, LT1122, LT1169 LT1022, LT1055/56/57/58, LT1113 LT1122, LT1169, LT1457 For literature on , LT1028, LT1115, LT1128 LT1028, LT1115, LT1128 LT1220/21/22/24/25/26 500 to 1.5k LT1007
Linear Technology
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LT1037 LT1334 LT1220 LT133 George Erdi LT1122 LTC 1028 VTR1 DN140 1000H LT1220/21/22/24/25/26 LT1055/56/57/58 1-800-4-LINEAR
Abstract: uim TECHNOLOGY LT1055/LT1056 Precision, High Speed, JFET Input Operational Amplifiers , . 150pA Max. 2.5nAMax. 12V//iS Min. The LT1055/1056 JFET input operational amplifiers com­ bine , Sample and Hold The LT1055 and LT1056 are differentiated by their operating currents. The lower power dissipation LT1055 achieves lower bias and offset currents and offset volt­ age. The additional power , applications which utilize both the precision and high speed of the LT1055/1056. For a JFET input op amp with -
OCR Scan
LT1055/1056 50/A/ 12-BIT DAC-80 15CPC/W

lt1334

Abstract: LT1028 to 100k LT1001/02 LT1055/56/57/58, LT1113, LT1169 LT1351 100k to 1M LT1022, LT1055/56/57/58, LT1113, LT1122, LT1169 LT1022, LT1055/56/57/58, LT1113 LT1122, LT1169, LT1457 LT1351 1M to 10M LT1022, LT1055/56/57/58, LT1113, LT1122, LT1169 LT1022, LT1055/56/57/58, LT1113 , /22/24/25/26 500 to 1.5k LT1007, LT1037 LT1028, LT1115, LT1128 LT1220/21/22/24/25/26 1.5k to 3k LT1124/25/26/27 LT1028, LT1115, LT1128 LT1220/21/22/24/25/26 3k to 5k LT1124
Linear Technology
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LT1037 equivalent LT1354 LT1363

LT055

Abstract: LT05 /LT10 5 6 C H LT1055 C N 8/LT10 56 C N8 M IN TYP M AX - - - - - - - - - - - - - - - - , W ID E R . LT1055/56 tM W O .I H z t o 1 0 H z Noise Noise vs Chip Tem perature Voltage , /T L in t A B _ LT1055/LT1056 TECHNOLOGY Precision, High Speed, / JFET Input Operational Amplifiers DCSCRIPTIOn 150|iV M ax 500|W Max 4|iV/°C Max 150pA Max 2.5nA Max 12V/|isM in The LT1055/LT1056 , best available on any JFET input operational amplifier. The LT1055 and LT1056 are differentiated by
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LT055 LT05 potentiometer 10k surface KH U10 055/56TAM LT105V56

lt1334

Abstract: LT1028 to 100k LT1001/02 LT1055/56/57/58, LT1113, LT1169 LT1351 100k to 1M LT1022, LT1055/56/57/58, LT1113, LT1122, LT1169 LT1022, LT1055/56/57/58, LT1113 LT1122, LT1169, LT1457 LT1351 1M to 10M LT1022, LT1055/56/57/58, LT1113, LT1122, LT1169 LT1022, LT1055/56/57/58, LT1113 , /22/24/25/26 500 to 1.5k LT1007, LT1037 LT1028, LT1115, LT1128 LT1220/21/22/24/25/26 1.5k to 3k LT1124/25/26/27 LT1028, LT1115, LT1128 LT1220/21/22/24/25/26 3k to 5k LT1124
Linear Technology
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LTC1454 LTC1454L LT1037 "pin compatible" BD02 LTC1456 LT1460 1454/LTC1454L LTC1454/LTC1454L LT1307B

lt1056

Abstract: LT1055/LT1056 JFET input operational amplifiers com bine precision specifications with high speed , amplifier in the plastic SO package. The LT1055 and LT1056 are differentiated by their operat ing currents. The lower power dissipation LT1055 achieves lower bias and offset currents and offset voltage. The , many applications which utilize both the precision and high speed of the LT1055/LT1056. a p p u c a , 0.1Hzto10Hz LT1055 LT1056 f0=10Hz(Note 2) f0=1kHz (Note 2) f0= 10Hz, 1kHz (Note 3) V0= ±10V R|_=2k Rl = 1k MIN
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LT1055S8/LT1056S8 LT1055SS/10S6S6

LT1066

Abstract: LT1056 /iV/°CTyp. 400pA Max. 9V//iS Min. dcscaiption The LT1055/LT1056 JFET input operational amplifiers , LT1055 and LT1056 are differentiated by their operating currents. The lower power dissipation LT1055 , precision and high speed of the LT1055/LT1056. 0 to 10kHz Voltage-to-Frequency Converter X w-w- OV TO , « Input Noise Voltage 0.1 Hz to 10Hz LT1055 LT1056 2.5 3.5 /â'¢Vp-p /»Vp-p en Input Noise Voltage Density fo=10Hz(Note2) f0=1kHz (Note 2) 35 15 70 22 n V/VFTz nV/VHz ¡n Input Noise Current Density fo =
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LT1066 Voltage-to-Frequency Converters LT1056S8 LT1055S8/ 056S8
Abstract:   Guaranteed Bias Current 70°C W armed Up â  Guaranteed Slew Rate 1.5m VMThe LT1055/LT1056 JFET input ,   â  â  â  â  â  â  The LT1055 and LT1056 are differentiated by their operat­ ing currents. The lower power dissipation LT1055 achieves lower bias and offset currents and offset voltage , below is one of the many applications which utilize both the precision and high speed of the LT1055 , LT1055 LT1066 Input Noise Current Density Large Signal Voltage Gain Vo = ± 1 0 V CMRR -
OCR Scan
Abstract:   Guaranteed Slew Rate 400pA Max. 9V/fiS Min. The LT1055/LT1056 J F E T input operational amplifiers , amplifier in the plastic S O package. â  â  â  â  â  Â» â  The LT1055 and LT1056 are differentiated by their operat­ ing currents. The lower power dissipation LT1055 achieves lower bias and , speed of the LT1055/LT1056. 0 to 10 k H z Voltage-to-Frequency Converter 1QkHz TRIM OV TO 10V IN , Gain Vo = ± 1 0 V CM RR Comm on-Mode Rejection Ratio Vcm= ± 1 1 V LT1055 LT1056 RL -
OCR Scan
0DQ3113

DC-M4

Abstract: 000E-16 urm TECHNOLOGY SPICE MACROMODELS LT1055 Macromodel * Linear Technology LT1055 op amp model * Written: 11-30-198 9 Type: PFET input, internal comp. * Typical specs: * Ref. LT1055 data sheet, LTC 1990 databook p2-219 * Comments: * Uses input common-mode * clamp (comment out if * Connections: + - V+V- â 0 .subekt LT1055 3 2 7 4 * 6 rdl 4 80 9.474E+02 d3a 131 70 dm3 rd2 4 90 , dm4 d .ends LT1055 * * fini LT1055 *-* rso 1 6 eel 18 0 gel 0 8 rcl 20 0 dl d2 1 1 20 0 le3
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000E-16 DC-M4 400E 200E-04 579E-12 329E-08 056E-03
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