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    BINARY WEIGHTED RESISTOR LADDER BIPOLAR DAC Search Results

    BINARY WEIGHTED RESISTOR LADDER BIPOLAR DAC Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    GT30J110SRA Toshiba Electronic Devices & Storage Corporation IGBT, 1100 V, 60 A, Built-in Diodes, TO-3P(N) Visit Toshiba Electronic Devices & Storage Corporation
    TB67S539FTG Toshiba Electronic Devices & Storage Corporation Stepping Motor Driver/Bipolar Type/Vout(V)=40/Iout(A)=2/Clock Interface Visit Toshiba Electronic Devices & Storage Corporation
    TB67S549FTG Toshiba Electronic Devices & Storage Corporation Stepping Motor Driver/Bipolar Type/Vout(V)=40/Iout(A)=1.5/Clock Interface Visit Toshiba Electronic Devices & Storage Corporation
    TTC5886A Toshiba Electronic Devices & Storage Corporation NPN Bipolar Transistor / hFE=400~1000 / VCE(sat)=0.22V / tf=120ns Visit Toshiba Electronic Devices & Storage Corporation
    TTA2097 Toshiba Electronic Devices & Storage Corporation PNP Bipolar Transistor / hFE=200~500 / VCE(sat)=-0.27V / tf=60ns Visit Toshiba Electronic Devices & Storage Corporation

    BINARY WEIGHTED RESISTOR LADDER BIPOLAR DAC Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    Untitled

    Abstract: No abstract text available
    Text: No. AN9741 Intersil July 1997 Basic DACs for Electronic Engineers Author: Ronald Mancini Why and Where are DACs Used? 2 1 EQ. 1 206 = 2 ( 10 ) + 0 ( 10 ) + 6 ( 10 ) The name is digital-to-analog converter, and the function of a DAC, as the name implies, is to convert digital signals into


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    PDF AN9741

    binary Weighted resistor ladder dac

    Abstract: analog memory Mancini binary Weighted resistor ladder bipolar dac agc circuit use op amp signal path designer r2r resistor ladder
    Text: No. AN9741 Intersil Linear July 1997 Basic DACs for Electronic Engineers Author: Ronald Mancini Why and Where are DACs Used? 2 1 EQ. 1 206 = 2 ( 10 ) + 0 ( 10 ) + 6 ( 10 ) The name is digital-to-analog converter, and the function of a DAC, as the name implies, is to convert digital signals into


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    PDF AN9741 binary Weighted resistor ladder dac analog memory Mancini binary Weighted resistor ladder bipolar dac agc circuit use op amp signal path designer r2r resistor ladder

    transistor M 9741

    Abstract: binary Weighted resistor ladder bipolar dac binary Weighted resistor ladder dac analog memory R-2R resistor HARRIS SEMICONDUCTOR Mancini signal path designer
    Text: Harris Semiconductor No. AN9741 Harris Linear July 1997 Basic DACs for Electronic Engineers Author: Ronald Mancini Why and Where are DACs Used? 2 EQ. 1 Notice that 206, in the decimal number system, is made up from three sums: each sum is based on a power of 10, and


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    PDF AN9741 1-800-4-HARRIS transistor M 9741 binary Weighted resistor ladder bipolar dac binary Weighted resistor ladder dac analog memory R-2R resistor HARRIS SEMICONDUCTOR Mancini signal path designer

    ad550

    Abstract: ad850 r-2r networks dac ic Binary Weighted DAC successive approximation adc ic binary Weighted resistor ladder dac R2R network MT-015 r2r ladder binary Weighted resistor ladder bipolar dac
    Text: MT-015 TUTORIAL Basic DAC Architectures II: Binary DACs by Walt Kester INTRODUCTION While the string DAC and thermometer DAC architectures are by far the simplest, they are certainly not the most efficient when high resolutions are required. Binary-weighted DACs


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    PDF MT-015 1920s ad550 ad850 r-2r networks dac ic Binary Weighted DAC successive approximation adc ic binary Weighted resistor ladder dac R2R network MT-015 r2r ladder binary Weighted resistor ladder bipolar dac

    162b5

    Abstract: national semiconductor MDAC AN-277 C1995 DAC1000 DAC1001 DAC1002 DAC1006 DAC1007 DAC1008
    Text: National Semiconductor Application Note 277 James B Cecil July 1981 A second generation of the popular MDAC or multiplying DAC is now available which has been designed to provide an easy interface to microprocessor systems These new MICRO-DAC products are low power drain CMOS converters which typically require only 0 5 mA supply current (2 mA


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    AN277

    Abstract: 24064 national semiconductor MDAC AN-277 DAC1000 DAC1001 DAC1002 DAC1006 DAC1007 DAC1008
    Text: A second generation of the popular MDAC or multiplying DAC is now available which has been designed to provide an easy interface to microprocessor systems. These new MICRO-DAC products are low power drain CMOS converters, which typically require only 0.5 mA supply current (2 mA


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    PDF 10-bit an008717 AN277 24064 national semiconductor MDAC AN-277 DAC1000 DAC1001 DAC1002 DAC1006 DAC1007 DAC1008

    HS3140

    Abstract: HS3140C-4Q
    Text: SP7514 and HS3140 Corporation SIGNAL PROCESSING EXCELLENCE 14-Bit Multiplying DACs • ■ ■ ■ ■ ■ ■ Monolithic Construction 14–Bit Resolution 0.003% Non-Linearity Four-Quadrant Multiplication Latch-up Protected Low Power - 30mW Single +15V Power Supply


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    PDF SP7514 HS3140 14-Bit HS3140 20-pin 20-pin HS3140C-4Q

    TTL 74273

    Abstract: uses of 74273 hs3140c 74273 74273 latch application note buffer register 74273 pin configuration HS3140B-4Q HS3140 HS3140C-4
    Text: SP7514 and HS3140 Corporation SIGNAL PROCESSING EXCELLENCE 14-Bit Multiplying DACs • Monolithic Construction ■ 14–Bit Resolution ■ 0.003% Non-Linearity ■ Four-Quadrant Multiplication ■ Latch-up Protected ■ Low Power - 30mW ■ Single +15V Power Supply


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    PDF SP7514 HS3140 14-Bit HS3140 20-pin 20-pin TTL 74273 uses of 74273 hs3140c 74273 74273 latch application note buffer register 74273 pin configuration HS3140B-4Q HS3140C-4

    4 bit shift register 74273 pin diagram

    Abstract: 74273 latch application note ttl 74273 HS3160 SP7516 OP27 6-pin 74LS138 pin configuration
    Text: SP7516 and HS3160 Corporation SIGNAL PROCESSING EXCELLENCE 16-Bit Multiplying DACs • Monolithic Construction ■ 16–Bit Resolution ■ 0.003% Non-Linearity ■ Four-Quadrant Multiplication ■ Latch-up Protected ■ Low Power - 30mW ■ Single +15V Power Supply


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    PDF SP7516 HS3160 16-Bit HS3160 24-pin 22-pin 4 bit shift register 74273 pin diagram 74273 latch application note ttl 74273 OP27 6-pin 74LS138 pin configuration

    74LS138 pin configuration

    Abstract: current to voltage converter using 741 HS3160 SP7516
    Text: SP7516 and HS3160 Corporation SIGNAL PROCESSING EXCELLENCE 16-Bit Multiplying DACs • Monolithic Construction ■ 16–Bit Resolution ■ 0.003% Non-Linearity ■ Four-Quadrant Multiplication ■ Latch-up Protected ■ Low Power - 30mW ■ Single +15V Power Supply


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    PDF SP7516 HS3160 16-Bit HS3160 24-pin 22-pin 74LS138 pin configuration current to voltage converter using 741

    hs3140c

    Abstract: ttl 74273 HS3140
    Text: HS3140/SP7514 14-Bit Multiplying DACs • Monolithic Construction ■ 14–Bit Resolution ■ 0.003% Non-Linearity ■ Four-Quadrant Multiplication ■ Latch-up Protected ■ Low Power - 30mW ■ Single +15V Power Supply DESCRIPTION… The SP7514 and HS3140 are precision 14-bit multiplying DACs, that provide four-quadrant


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    PDF HS3140/SP7514 14-Bit SP7514 HS3140 20-pin 20-pin SP7514, hs3140c ttl 74273

    AD7541

    Abstract: 10k trimpot resistor
    Text: AD7541 S E M I C O N D U C T O R 12-Bit, Multiplying D/A Converter August 1997 Features Description • 12-Bit Linearity 0.01% The AD7541 is a monolithic, low cost, high performance, 12-bit accurate, multiplying digital-to-analog converter DAC . • Pretrimmed Gain


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    PDF AD7541 12-Bit, AD7541 12-bit AD7541. AD7521, 10k trimpot resistor

    AD7541

    Abstract: HP5082-2811 AD7521 AD7541JN AD7541KN AD7541LN diode hp5082
    Text: AD7541 12-Bit, Multiplying D/A Converter August 1997 Features Description • 12-Bit Linearity 0.01% The AD7541 is a monolithic, low cost, high performance, 12-bit accurate, multiplying digital-to-analog converter DAC . • Pretrimmed Gain • Low Gain and Linearity Tempcos


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    PDF AD7541 12-Bit, 12-Bit AD7541 HP5082-2811 AD7521 AD7541JN AD7541KN AD7541LN diode hp5082

    AD7541JN

    Abstract: AD7541SD AD7541 AD7541KN AD7541LN AD7541TD AD7521 AD7541AD AD7541BD 1m trimpot
    Text: AD7541 S E M I C O N D U C T O R 12-Bit Multiplying D/A Converter December 1993 Features Description • 12-Bit Linearity 0.01% The AD7541 is a monolithic, low cost, high performance, 12bit accurate, multiplying digital-to-analog converter DAC . • Pretrimmed Gain


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    PDF AD7541 12-Bit AD7541 12bit AD7541JN AD7541SD AD7541KN AD7541LN AD7541TD AD7521 AD7541AD AD7541BD 1m trimpot

    7514K

    Abstract: 3140C
    Text: S ip e p c " Corporato»» ▼ SIGNAL PROCESSING EXCELLENCE SP7514 and HS3140 14-Bit Multiplying DACs • ■ ■ ■ ■ ■ ■ Monolithic Construction 14-Bit Resolution 0.003% Non-Linearity Four-Quadrant Multiplication Latch-up Protected Low Power - 30mW


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    PDF SP7514 HS3140 14-Bit 20-pin 7514K 3140C

    Untitled

    Abstract: No abstract text available
    Text: S in A v I I Corporation A A ▼ SIGNAL PROCESSING EXCELLENCE SP7516 and HS3160 16-Bit Multiplying DACs • Monolithic Construction ■ 16-Bit Resolution ■ 0.003% Non-Linearity ■ Four-Quadrant Multiplication ■ Latch-up Protected ■ Low Power - 30mW


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    PDF SP7516 HS3160 16-Bit 24-pin

    Untitled

    Abstract: No abstract text available
    Text: C irs A v U I *I A tfA Corporation ▼ SP7514 and HS3140 SIGNAL PROCESSING EXCELLENCE 14-Bit Multiplying DACs Monolithic Construction 14-Bit Resolution 0.003% Non-Linearity Four-Quadrant Multiplication Latch-up Protected Low Power - 30mW Single +15V Power Supply


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    PDF SP7514 HS3140 14-Bit HS3140 20-pin

    Untitled

    Abstract: No abstract text available
    Text: C in A v % llk A J v Corporation ▼ SIGNAL PROCESSING EXCELLENCE SP7516 and HS3160 16-Bit Multiplying DACs Monolithic Construction 16-Bit Resolution 0.003% Non-Linearity Four-Quadrant Multiplication Latch-up Protected Low Power - 30mW I Single +15V Power Supply


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    PDF SP7516 HS3160 16-Bit 24-pin

    Untitled

    Abstract: No abstract text available
    Text: Sipe* SP7516 and HS3160 ^ Capannoni SIGNAL PROCESSING EXCELLENCE 16-Bit Multiplying DACs • ■ ■ ■ ■ ■ ■ Monolithic Construction 16-Bit Resolution 0.003% Non-Linearity Four-Quadrant Multiplication Latch-up Protected Low Power - 30mW Single +15V Power Supply


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    PDF SP7516 HS3160 16-Bit HS3160 24-pin

    Untitled

    Abstract: No abstract text available
    Text: f lJ H A R R AD7541 IS S E M I C O N D U C T O R 12-Bit Multiplying D/A Converter December 1993 Features Description • 12-Bit Linearity 0.01% The AD7541 is a monolithic, low cost, high performance, 12bit accurate, multiplying digital-to-analog converter DAC .


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    PDF AD7541 12-Bit AD7541 12bit

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    Abstract: No abstract text available
    Text: harris , AD7523 AD7533 S E M I C O N D U C T O R • 7 “ " W W 8-Bit Multiplying D/A Converters December 1993 Features Description • 8 ,9 and 10-Blt Linearity The AD7523 and AD7533 monolithic, low cost, high perfor­ mance, 8 -bit and 10 -bit accurate, multiplying digital-to-analog converter DAC , in a 16 pin DIP.


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    PDF AD7523 AD7533 10-Blt AD7533 10-bit 10-bit 150ns AD7523,

    Untitled

    Abstract: No abstract text available
    Text: S E M I C O N D U C T O R 10-Bit Multiplying D/A Converter GENERAL DESCRIPTION FEATURES The Harris AD7533 is a low cost, monolithic 10-bit, fourquadrant multiplying digital-to-analog converter DAC . Har­ ris’ thin-film resistor on CMOS circuitry provide 10, 9 and 8


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    PDF 10-Bit AD7533 10-bit,

    Untitled

    Abstract: No abstract text available
    Text: AD7523, AD7533 Semiconductor 8-Bit, Multiplying D/A Converters August 1997 Features Description • 8-Bit, 9-Bit and 10-Bit Linearity The AD7523 and AD7533 are monolithic, low cost, high performance, 8-bit and 10-bit accurate, multiplying digital-toanalog converter DAC , in a 16 pin DIP.


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    PDF AD7523, AD7533 10-Bit AD7523 AD7533 10-bit

    Untitled

    Abstract: No abstract text available
    Text: æ AD7541 MARRIS S E M I C O N D U C T O R 12-Bit, Multiplying D/A Converter August 1997 Features • Description 12-Bit Linearity 0.01% The AD7541 is a monolithic, low cost, high performance, 12-bit accurate, multiplying digital-to-analog converter DAC .


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    PDF AD7541 12-Bit, AD7541 12-bit D7541. AD7521,