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    LM394 NATIONAL Search Results

    LM394 NATIONAL Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    54HC221AJ/883C Rochester Electronics Replacement for National Semiconductor part number MM54HC221AJ/883C. Buy from authorized manufacturer Rochester Electronics. Visit Rochester Electronics Buy
    9015DM/B Rochester Electronics LLC Replacement for National Semiconductor part number 9015DMQB. Buy from authorized manufacturer Rochester Electronics. Visit Rochester Electronics LLC Buy
    LMX2305WG/B Rochester Electronics LLC Replacement for National Semiconductor part number LMX2305WG. Buy from authorized manufacturer Rochester Electronics. Visit Rochester Electronics LLC Buy
    DM54173J/B Rochester Electronics LLC Replacement for National Semiconductor part number DM54173J/883. Buy from authorized manufacturer Rochester Electronics. Visit Rochester Electronics LLC Buy
    54161DM/B Rochester Electronics LLC Replacement for National Semiconductor part number 54161DMQB. Buy from authorized manufacturer Rochester Electronics. Visit Rochester Electronics LLC Buy

    LM394 NATIONAL Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    LM394H

    Abstract: LM194 supermatch pair LM394 LM394CH LM394CN accurate logging amplifier H 9241 LM394BH
    Text: LM194,LM394 LM194 LM394 Supermatch Pair Literature Number: SNLS385A LM194 LM394 Supermatch Pair General Description matched transistor pair In many cases trimming can be eliminated entirely improving reliability and decreasing costs Additionally the low noise and high gain make this


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    PDF LM194 LM394 LM394 SNLS385A LM394H supermatch pair LM394CH LM394CN accurate logging amplifier H 9241 LM394BH

    RETS194X

    Abstract: LM194 LM394CN LM394 LM394BH LM394CH LM194 NPN Monolithic Transistor Pair LM394N Vishay Ultronix Grand Junction CO Q81 C1995
    Text: LM194 LM394 Supermatch Pair General Description The LM194 and LM394 are junction isolated ultra wellmatched monolithic NPN transistor pairs with an order of magnitude improvement in matching over conventional transistor pairs This was accomplished by advanced linear processing and a unique new device structure


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    PDF LM194 LM394 RETS194X LM394CN LM394BH LM394CH LM194 NPN Monolithic Transistor Pair LM394N Vishay Ultronix Grand Junction CO Q81 C1995

    lm394

    Abstract: LM194 LM394H LM394CH supermatch pair Vishay Ultronix Grand Junction CO Q81 LM194 NPN Monolithic Transistor Pair Super matched pair smd transistor marking TL LM394 Spice
    Text: LM194 LM394 Supermatch Pair General Description The LM194 and LM394 are junction isolated ultra wellmatched monolithic NPN transistor pairs with an order of magnitude improvement in matching over conventional transistor pairs This was accomplished by advanced linear processing and a unique new device structure


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    PDF LM194 LM394 AN-222: LB-21: 24-Feb- 28-Jun- LM394H LM394CH supermatch pair Vishay Ultronix Grand Junction CO Q81 LM194 NPN Monolithic Transistor Pair Super matched pair smd transistor marking TL LM394 Spice

    LM194 NPN Monolithic Transistor Pair

    Abstract: LM394CH LM194 accurate logging amplifier TRANSISTOR REPLACEMENT GUIDE supermatch pair LM194H
    Text: LM194 LM394 Supermatch Pair General Description The LM194 and LM394 are junction isolated ultra wellmatched monolithic NPN transistor pairs with an order of magnitude improvement in matching over conventional transistor pairs This was accomplished by advanced linear processing and a unique new device structure


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    PDF LM194 LM394 operatiN-222: 24-Feb-99 28-Jun-96 LB-21: LM194 NPN Monolithic Transistor Pair LM394CH accurate logging amplifier TRANSISTOR REPLACEMENT GUIDE supermatch pair LM194H

    AN-31

    Abstract: Op Amp Circuit Collection Reference Vishay Ultronix Grand Junction CO Q81 Q81, 1K, 3500 ppm "multiple aperture Window Discriminator" noise detector using instrumentation amplifier CO Q81 zero crossing detector in rectifier circuit Vishay Q81
    Text: National Semiconductor Application Note 31 September 2002 Note: National Semiconductor recommends replacing 2N2920 and 2N3728 matched pairs with LM394 in all application circuits. Section 1—Basic Circuits Inverting Amplifier Non-Inverting Amplifier Op Amp Circuit Collection


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    PDF 2N2920 2N3728 LM394 AN-31 AN007057 AN-31 Op Amp Circuit Collection Reference Vishay Ultronix Grand Junction CO Q81 Q81, 1K, 3500 ppm "multiple aperture Window Discriminator" noise detector using instrumentation amplifier CO Q81 zero crossing detector in rectifier circuit Vishay Q81

    LM709 equivalent

    Abstract: Widlar pins 2N2920 alcohol sensor abstract national semiconductor application note 29 IC OP AMP for Piezoelectric transducers 2N2920 logarithmic applications LM102A op amp transistor current booster circuit LM709
    Text: National Semiconductor Application Note 29 Robert J. Widlar September 2002 Note: National Semiconductor recommends replacing 2N2920 and 2N3728 matched pairs with LM394 in all application circuits. mance is often limited by leakages in capacitors, diodes, analog switches or printed circuit boards, rather than by the


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    PDF 2N2920 2N3728 LM394 LM709 equivalent Widlar pins 2N2920 alcohol sensor abstract national semiconductor application note 29 IC OP AMP for Piezoelectric transducers 2N2920 logarithmic applications LM102A op amp transistor current booster circuit LM709

    anti-log

    Abstract: sensistor 2N2920 logarithmic applications sensistor Q81 2N3728 log and antilog amplifier Widlar 2N2920 Vishay Ultronix Grand Junction CO Q81 Vishay Q81
    Text: Note: National Semiconductor recommends replacing 2N2920 and 2N3728 matched pairs with LM394 in all application circuits. One of the most predictable non-linear elements commonly available is the bipolar transistor. The relationship between collector current and emitter base voltage is precisely logarithmic from currents below one picoamp to currents above


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    PDF 2N2920 2N3728 LM394 LM108 AN-30 anti-log sensistor 2N2920 logarithmic applications sensistor Q81 log and antilog amplifier Widlar Vishay Ultronix Grand Junction CO Q81 Vishay Q81

    "Microphone Preamplifier" 1.5V transistor

    Abstract: "Microphone Preamplifier" 1.5V "Microphone Preamplifier" riaa filter LF412 LM329 amplifier lm10 de riaa equalized Japan Servo POTENTIOMETER 1K ONE LM3046
    Text: National Semiconductor Application Note 299 April 1982 Although operational amplifiers and other linear ICs have been applied as audio amplifiers, relatively little documentation has appeared for other audio applications. In fact, a wide variety of studio and industrial audio areas can be served by


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    LM329 amplifier

    Abstract: 7496 NATIONAL LM394 Voltage multiplier lm10 preamplifier microphone LM118 LM3046 7496 nvb50 2N2907A
    Text: National Semiconductor Application Note 299 April 1982 Although operational amplifiers and other linear ICs have been applied as audio amplifiers relatively little documentation has appeared for other audio applications In fact a wide variety of studio and industrial audio areas can be


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    National "Audio Handbook"

    Abstract: PF5102 Lm194 high accuracy riaa riaa preamp analog devices balanced riaa AN-222 lm114 operational amplifier discrete schematic phono preamp
    Text: National Semiconductor Application Note 222 July 1979 Matched bipolar transistor pairs are a very powerful design tool, yet have received less and less attention over the last few years. This is primarily due to the proliferation of high-performance monolithic circuits which are replacing


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    PDF tran4466 AN-222 National "Audio Handbook" PF5102 Lm194 high accuracy riaa riaa preamp analog devices balanced riaa AN-222 lm114 operational amplifier discrete schematic phono preamp

    National "Audio Handbook"

    Abstract: PF5102 2N4250 strain gauge amplifier National LM194 LM394 AN-222 LM118 Cold-Junction
    Text: National Semiconductor Application Note 222 July 1979 Matched bipolar transistor pairs are a very powerful design tool, yet have received less and less attention over the last few years. This is primarily due to the proliferation of high-performance monolithic circuits which are replacing


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    PDF LM194 absolute959 National "Audio Handbook" PF5102 2N4250 strain gauge amplifier National LM394 AN-222 LM118 Cold-Junction

    Non-Linear Circuits Handbook Analog Devices

    Abstract: inverter linear application handbook national semiconductor linear application handbook national semiconductor CO Q81 Ultrasonic Transducer application notes fuel tank LM394 AN-311 Vishay Q81 LM331
    Text: National Semiconductor Application Note 311 April 1991 A number of instrumentation applications can benefit from the use of logarithmic or exponential signal processing techniques. The design and use of logarithmic/exponential circuits are often associated with involved temperature compensation requirements and difficult to stabilize feedback


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    Q81, 1K, 3500 ppm

    Abstract: Vishay Q81 LF412 Vishay Ultronix Grand Junction CO Q81, 1K Non-Linear Circuits Handbook Analog Devices fuel tank MM74C76 Vishay Ultronix Grand Junction CO Q81 Ultrasonic Transducer for gas meter C1995
    Text: National Semiconductor Application Note 311 April 1991 A number of instrumentation applications can benefit from the use of logarithmic or exponential signal processing techniques The design and use of logarithmic exponential circuits are often associated with involved temperature compensation requirements and difficult to stabilize feedback


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    PF5102 equivalent

    Abstract: National "Audio Handbook" LM194 lm114 National AN-222 C1995 LM114/PF5102 equivalent LM118 PF5102
    Text: National Semiconductor Application Note 222 July 1979 Matched bipolar transistor pairs are a very powerful design tool yet have received less and less attention over the last few years This is primarily due to the proliferation of highperformance monolithic circuits which are replacing many


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    alternative of LM386

    Abstract: LM386 FIXED LOW GAIN AUDIO POWER AMPLIFIER 2N3819 NATIONAL SEMICONDUCTOR 2N3810 NATIONAL SEMICONDUCTOR 2n3819 equivalent ic LM3900 VCO sine wave Oscillator jfet circuit pin diagram for IC 7483 IC LM386 12V supply LM386 circuit with capacitors
    Text: National Semiconductor Application Note 263 Rereleased May 26, 2009 October 21, 1999 Producing and manipulating the sine wave function is a common problem encountered by circuit designers. Sine wave circuits pose a significant design challenge because they represent a constantly controlled linear oscillator. Sine wave


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    PDF AN-263 alternative of LM386 LM386 FIXED LOW GAIN AUDIO POWER AMPLIFIER 2N3819 NATIONAL SEMICONDUCTOR 2N3810 NATIONAL SEMICONDUCTOR 2n3819 equivalent ic LM3900 VCO sine wave Oscillator jfet circuit pin diagram for IC 7483 IC LM386 12V supply LM386 circuit with capacitors

    7483 IC

    Abstract: ic 7483 pin configuration of IC 7483 ic 7483 pin diagram for IC 7483 applications of IC 7483 7483 IC APPLICATIONS 7483 comparator Datasheet of IC 7483 data sheet ic 7483
    Text: National Semiconductor Application Note 263 March 1981 Producing and manipulating the sine wave function is a common problem encountered by circuit designers Sine wave circuits pose a significant design challenge because they represent a constantly controlled linear oscillator Sine


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    Non-Linear Circuits Handbook Analog Devices

    Abstract: remote irrigation control system Top Octave Synthesizer fuel tank AN-311 LM394 LF412 LM329 LM331A MM74C76
    Text: A number of instrumentation applications can benefit from the use of logarithmic or exponential signal processing techniques. The design and use of logarithmic/exponential circuits are often associated with involved temperature compensation requirements and difficult to stabilize feedback


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    PDF circuit959 Non-Linear Circuits Handbook Analog Devices remote irrigation control system Top Octave Synthesizer fuel tank AN-311 LM394 LF412 LM329 LM331A MM74C76

    power amplifier 2000w

    Abstract: 2000w power amplifier 2000w power amplifier Chart digital electricity meter schematic analog multiplier 3 phase watthour meter electronic watt hour meter LM331 1N1195 AN-265
    Text: National Semiconductor Application Note 265 February 1984 The continued emphasis on energy conservation has forced designers to consider the power consumption and efficiency of their products While equipment for the industrial market must be designed with attention towards these factors the


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    3 phase GE analog KWH meter

    Abstract: GE digital KWH meter GE Refrigerator Compressor digital electricity meter schematic 50-140034NDAA lm394 lm331 pin configuration kilowatt hour meter LM331 1N4148
    Text: National Semiconductor Application Note 265 February 1984 The continued emphasis on energy conservation has forced designers to consider the power consumption and efficiency of their products. While equipment for the industrial market must be designed with attention towards these factors, the


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    PDF AN-265 3 phase GE analog KWH meter GE digital KWH meter GE Refrigerator Compressor digital electricity meter schematic 50-140034NDAA lm394 lm331 pin configuration kilowatt hour meter LM331 1N4148

    2N3810 NATIONAL SEMICONDUCTOR

    Abstract: 5636 TUBE dc motor speed control lm3524 TY-90 flyback by lm3524 LM3524* motor control pin 10 lm3524 lm319 triangle LM135 pin configuration 2n3810 datasheet
    Text: National Semiconductor Application Note 293 March 1986 The CMOS multiplying digital-to-analog converter can be widely applied in processor-driven control applications Because these devices can have a bipolar reference voltage their versatility is increased In some control applications the


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    square root extractor

    Abstract: LM101 LM102 LM709 LM709 equivalent Widlar LM101 disadvantages square root extractor using log antilog LM709 AN007357 square root extractor application LM7104
    Text: National Semiconductor Application Note 4 Robert J. Widlar April 1968 Introduction Operational amplifiers are undoubtedly the easiest and best way of performing a wide range of linear functions from simple amplification to complex analog computation. The cost of monolithic amplifiers is now less than $2.00, in large


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    lm394

    Abstract: LM194 NPN Monolithic Transistor Pair accurate logging amplifier LM394CH
    Text: LM194/LM394 EHNational ^•Sem iconductor LM194/LM394 Supermatch Pair General Description The LM194 and LM394 are junction isolated ultra wellmatched monolithic NPN transistor pairs with an order of magnitude improvement in matching over conventional tran­


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    PDF LM194/LM394 LM194/LM394 LM194 LM394 TL/H/9241-10 TL/H/9241-11 TL/H/9241-12 LM194H, LM194H/883* LM394H, LM194 NPN Monolithic Transistor Pair accurate logging amplifier LM394CH

    transistor smd ALG

    Abstract: LM394 smd transistor alg supermatch pair PV smd transistor LM394CH
    Text: SflE » b S 0 1 1 2 4 007S3DD NATL semicon] T43 « N S C 5 LM194/LM394 ^ N a t io n a l • LINEAR) m A Semiconductor LM194/LM394 Supermatch Pair General Description The LM194 and LM394 are junction isolated ultra wellmatched monolithic NPN transistor pairs with an order of


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    PDF 007S3DD LM194/LM394 LM194/LM394 LM194 LM394 TL/H/9241-11 00038C G0753D7 TL/H/9241-12 transistor smd ALG smd transistor alg supermatch pair PV smd transistor LM394CH

    LM394CM

    Abstract: LM394 536 E .2H LM394N supermatch pair
    Text: bSQllEM 0Q70ta3S 1 SEE D NATL SEMICOND {LINEAR} T - Y 3 - Z 5 LM194/LM394 Supermatch Pair General Description The LM194 and LM394 are junction isolated ultra wellmatched monolithic NPN transistor pairs with an order of magnitude improvement In m atching over conventional tran­


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    PDF 0Q70ta3S LM194/LM394 LM194/LM394 LM194 LM394 b5011S4 0D70bMS TL/H/9241-12 LM194H, LM394CM 536 E .2H LM394N supermatch pair