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    Vishay Siliconix SI9801DY

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    Bristol Electronics SI9801DY 1,647
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    Vishay Siliconix SI9801DDY

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    Vishay Intertechnologies SI9801DY

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    SI9801 Datasheets (4)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    Si9801DY Toshiba Power MOSFETs Cross Reference Guide Original PDF
    Si9801DY Vishay Intertechnology P-Channel, Reduced Q g , Fast Switching Half-Bridge Original PDF
    SI9801DY Vishay Telefunken N-Channel and P-channel Reduced Qg Fast Switching Half-bridge Original PDF
    SI9801DY-T1 Vishay Intertechnology P-Channel, Reduced Q g , Fast Switching Half-Bridge Original PDF

    SI9801 Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    Si9801DY

    Abstract: SILICONIX Si9801DY
    Text: Si9801DY N- and P-Channel, Reduced Qg, Fast Switching Half-Bridge Product Summary VDS V N-Channel 20 P-Channel –20 rDS(on) (W) ID (A) 0.055 @ VGS = 4.5 V "4.5 0.075 @ VGS = 3.0 V "3.8 0.080 @ VGS = –4.5 V "4.0 0.120 @ VGS = –3.0 V "3.0 S2 SOĆ8 S1


    Original
    PDF Si9801DY S-51301--Rev. 19-Dec-96 SILICONIX Si9801DY

    SI9801DY

    Abstract: SILICONIX Si9801DY
    Text: Si9801DY Vishay Siliconix N-/P-Channel, Reduced Qg, Fast Switching Half-Bridge PRODUCT SUMMARY VDS V N-Channel P-Channel 20 –20 rDS(on) (W) ID (A) 0.055 @ VGS = 4.5 V "4.5 0.075 @ VGS = 3.0 V "3.8 0.080 @ VGS = –4.5 V "4.0 0.120 @ VGS = –3.0 V "3.0


    Original
    PDF Si9801DY S-61825--Rev. 16-Aug-99 SILICONIX Si9801DY

    Si9801DY

    Abstract: No abstract text available
    Text: Si9801DY Vishay Siliconix N-/P-Channel, Reduced Qg, Fast Switching Half-Bridge PRODUCT SUMMARY VDS V N-Channel P-Channel 20 –20 rDS(on) (W) ID (A) 0.055 @ VGS = 4.5 V "4.5 0.075 @ VGS = 3.0 V "3.8 0.080 @ VGS = –4.5 V "4.0 0.120 @ VGS = –3.0 V "3.0


    Original
    PDF Si9801DY 18-Jul-08

    Untitled

    Abstract: No abstract text available
    Text: Si9801DY Vishay Siliconix N-/P-Channel, Reduced Qg, Fast Switching Half-Bridge PRODUCT SUMMARY VDS V N-Channel P-Channel 20 –20 rDS(on) (W) ID (A) 0.055 @ VGS = 4.5 V "4.5 0.075 @ VGS = 3.0 V "3.8 0.080 @ VGS = –4.5 V "4.0 0.120 @ VGS = –3.0 V "3.0


    Original
    PDF Si9801DY 08-Apr-05

    Untitled

    Abstract: No abstract text available
    Text: Si9801DY Vishay Siliconix N-/P-Channel, Reduced Qg, Fast Switching Half-Bridge PRODUCT SUMMARY VDS V N-Channel P-Channel 20 –20 rDS(on) (W) ID (A) 0.055 @ VGS = 4.5 V "4.5 0.075 @ VGS = 3.0 V "3.8 0.080 @ VGS = –4.5 V "4.0 0.120 @ VGS = –3.0 V "3.0


    Original
    PDF Si9801DY S-61825--Rev. 16-Aug-99

    593D

    Abstract: 595D 6TPA150M LTC1773 LTC1773EMS MS10 Si9801DY TOKO D104C LR1206-01-R068 CDRH6D28-3RO
    Text: Final Electrical Specifications LTC1773 Synchronous Step-Down Regulator Controller U FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ The LTC 1773 is a current mode synchronous buck regulator controller that drives external complementary power


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    PDF LTC1773 550kHz LTC1771 LTC1772 OT-23 OT-23, 550kHz, LTC1877 600mA 593D 595D 6TPA150M LTC1773 LTC1773EMS MS10 Si9801DY TOKO D104C LR1206-01-R068 CDRH6D28-3RO

    Untitled

    Abstract: No abstract text available
    Text: LTC3736-1 Dual 2-Phase, No RSENSETM, Synchronous Controller with Spread Spectrum FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ U ■ DESCRIPTIO The LTC 3736-1 is a 2-phase dual synchronous stepdown switching regulator controller with tracking that


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    PDF LTC3736-1 550kHz, 16-Lead 28-Lead 10-Pin 37361f

    Untitled

    Abstract: No abstract text available
    Text: LTC3776 Dual 2-Phase, No RSENSETM, Synchronous Controller for DDR/QDR Memory Termination FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ U ■ DESCRIPTIO The LTC 3776 is a 2-phase dual output synchronous stepdown switching regulator controller for DDR/QDR memory


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    PDF LTC3776 LTC3736-1 LTC3737 LTC3831 3776fa

    LTMV

    Abstract: No abstract text available
    Text: LTC1773 Synchronous Step-Down DC/DC Controller FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ U ■ DESCRIPTIO The LTC 1773 is a current mode synchronous buck regulator controller that drives external complementary power MOSFETs using a fixed frequency architecture. The operating supply range is from 2.65V to 8.5V, making it


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    PDF LTC1773 550kHz 250mA LTC1877 550kHz, 600mA LTC1878 LTC3404 LTMV

    FDW2520C

    Abstract: LTC3736-2 LTC3736EGN-2 Si9801DY TSSOP-8 footprint and soldering sot-23 marking g02 tssop8 flyback pwm tssop8
    Text: LTC3736-2 Dual 2-Phase, No RSENSE , Synchronous Controller with Output Tracking DESCRIPTION TM FEATURES n n n n n n n n n n n n n n n n No Current Sense Resistors Required Out-of-Phase Controllers Reduce Required Input Capacitance Tracking Function Wide VIN Range: 2.75V to 9.8V


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    PDF LTC3736-2 24-Lead LTC3808 16-Lead LTC3809/LTC3809-1 10-Lead 37362fb FDW2520C LTC3736-2 LTC3736EGN-2 Si9801DY TSSOP-8 footprint and soldering sot-23 marking g02 tssop8 flyback pwm tssop8

    zeta converter its applications

    Abstract: for inductor for oscillator LTC1773 MSOP-10 Si9801DY Si9804DY D104C FDS6375 680uF 4v LR2512-01-R010-J
    Text: DESIGN FEATURES Synchronous Buck Controller Extends Battery Life and Fits in a Small Footprint by Peter Guan Introduction Operation Portable electronic devices continue to decrease in size and their supply voltages are also falling, but load current requirements are increasing as a


    Original
    PDF LTC1773 MSOP-10 500mA 200mA 700mA. LTC1734 zeta converter its applications for inductor for oscillator Si9801DY Si9804DY D104C FDS6375 680uF 4v LR2512-01-R010-J

    lt6910

    Abstract: No abstract text available
    Text: LT1990 ±250V Input Range G = 1, 10, Micropower, Difference Amplifier DESCRIPTIO U APPLICATIO S • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ U ■ The LT 1990 is a micropower precision difference amplifier with a very high common mode input voltage range. It


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    PDF LT1990 LT1990 LT1787 LT1789 LTC1921 LT1991 LT1995 30MHz, 000V/Â lt6910

    SR73H

    Abstract: TEC H bridge SR73H2 pwm control of tec TEC Driver LTC1923 LTC2053 ntc 10k 10% D5 TEC control circuit TEC LTC1658
    Text: LTC1923 High Efficiency Thermoelectric Cooler Controller DESCRIPTIO U FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ The LTC 1923 is a pulse width modulator intended for thermoelectric cooler TEC or heater applications requiring either unidirectional or bidirectional drive circuits. All


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    PDF LTC1923 LTC1923 LTC1658 14-Bit LTC1693-1 LTC2053 1923f SR73H TEC H bridge SR73H2 pwm control of tec TEC Driver LTC2053 ntc 10k 10% D5 TEC control circuit TEC LTC1658

    Si9801

    Abstract: GRM235Y5V106Z016AL SILICONIX Si9801 Si9801DY C25Y5U1E106Z MOSFET 1 KW 9801 so-8 C25Y5U1E106ZP DIFS4 Si6803DQ
    Text: Si9161DB Vishay Siliconix Si9161 Optimized-Efficiency Boost Converter Demonstration Board FEATURES D D D D Synchronous Boost Converter Voltage Mode Control Si9160 Architecture Optimized for “Light-Load” Efficiency High Frequency Switching up to 2 MHz


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    PDF Si9161DB Si9161 Si9160 CRW06032201FRT1 CRW06031000FRT1 CRW06031202FRT1 Si9801 GRM235Y5V106Z016AL SILICONIX Si9801 Si9801DY C25Y5U1E106Z MOSFET 1 KW 9801 so-8 C25Y5U1E106ZP DIFS4 Si6803DQ

    LTC2440CGN

    Abstract: LTC2440 SILICONIX Si9801 LTC2410 LTC2440IGN
    Text: LTC2440 24-Bit High Speed Differential ∆Σ ADC with Selectable Speed/Resolution U DESCRIPTIO FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ The LTC 2440 is a high speed 24-bit No Latency ∆ΣTM ADC with 5ppm INL and 5µV offset. It uses proprietary deltasigma architecture enabling variable speed and resolution


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    PDF LTC2440 24-Bit 200nVRMS 5kHz/25 880Hz/2 200nVRMS, 50/60Hz LTC2404/LTC2408 24-Bit, LTC2440CGN LTC2440 SILICONIX Si9801 LTC2410 LTC2440IGN

    MBRM120T3

    Abstract: 68uF 10V SANYO 47pF 50V NPO CR16-3162FM SILICONIX Si9801DY MMSD914T1 EEFUEOG181R BD 1206 CR16-303JM r025
    Text: A B C D E 4 4 E2 SYNC/FCB E3 RUN/SS R1 100K E4 +VIN C1 68uF,10V POSCAP R2 0.025 1206 2.8V to 8.5V + C2 47pF E5 GND 1 3 5 2 4 6 HEADER 3X2 1.8V 2.5V 3.3V VIN 8 5 VFB TG 7 BG 6 GND 4 R8 71.5K 1% C7 100pF 2 E6 +VOUT 1.5V/1.8V/2.5V/3.3V 2.5Aavg/3Apk 4 Q2A Opt.


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    PDF SI9801 SI6801 MBRM120T3 LTC1773MS10 100pF MMSD914T1 CDRH6D28-3R0 MBRM120T3 68uF 10V SANYO 47pF 50V NPO CR16-3162FM SILICONIX Si9801DY MMSD914T1 EEFUEOG181R BD 1206 CR16-303JM r025

    CDRH8D28-100nc

    Abstract: TEC H bridge LTC1923 Jim Williams Monolithic Switching Regulator linear jim williams "temperature controller" peltier cooler peltier schematic thermoelectric peltier FLD5F10NP
    Text: DESIGN FEATURES A Thermoelectric Cooler Temperature Controller for Fiber Optic Lasers by Jim Williams Introduction Temperature Controller Requirements The temperature controller must meet some unusual requirements.1 Most notably, because of ambient temperature variation and laser operation


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    PDF 01V/DIV 500ns/DIV CDRH8D28-100nc TEC H bridge LTC1923 Jim Williams Monolithic Switching Regulator linear jim williams "temperature controller" peltier cooler peltier schematic thermoelectric peltier FLD5F10NP

    mosfet cross reference

    Abstract: SMP40N06 SMP75N06-08 SI9952DY SMP60N03-10L IRFZ44 TO-263 Si9948DY irf1010e equivalent IRLL014N NDT3055L
    Text: Discrete POWER & Signal Technologies MOSFET Cross Reference Guide Industry Recommended Part Number Fairchild Device Package Industry Recommended Part Number Fairchild Device 2N7000 2N7000 TO-92, N IRF7203 FDS9435A 2N7002 2N7002 SOT-23, N IRF7204 NDS8434A SO-8, P


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    PDF 2N7000 IRF7203 FDS9435A 2N7002 OT-23, IRF7204 NDS8434A BS170 mosfet cross reference SMP40N06 SMP75N06-08 SI9952DY SMP60N03-10L IRFZ44 TO-263 Si9948DY irf1010e equivalent IRLL014N NDT3055L

    TEC H bridge

    Abstract: No abstract text available
    Text: LTC1923 High Efficiency Thermoelectric Cooler Controller DESCRIPTIO U FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ The LTC 1923 is a pulse width modulator intended for thermoelectric cooler TEC or heater applications requiring either unidirectional or bidirectional drive circuits. All


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    PDF LTC1923 LTC1923 LTC1658 14-Bit LTC1693-1 LTC2053 50nV/Â 1923f TEC H bridge

    lt6910

    Abstract: SILICONIX Si9801 CDRH6D2B-220NC
    Text: LT1990 ±250V Input Range G = 1, 10, Micropower, Difference Amplifier DESCRIPTIO U APPLICATIO S • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ U ■ The LT 1990 is a micropower precision difference amplifier with a very high common mode input voltage range. It


    Original
    PDF LT1990 LT1990 LT1787 LT1789 LTC1921 LT1991 LT1995 30MHz, LT6910 lt6910 SILICONIX Si9801 CDRH6D2B-220NC

    DJ-101ST

    Abstract: strain gauge and load cells rs232 wheatstone Bridge amplifier i2c tedea 1240 74HC14 so8 Load cells tedea nv320 EEPROM COPIER circuit LTC2440 AN9610
    Text: Application Note 96 January 2005 Delta Sigma ADC Bridge Measurement Techniques Mark Thoren Introduction In a typical 12-bit measurement system, the signal conditioning amplifier requires a very high gain in order to make use of the full ADC input range. A sensor with a 10mV fullscale output requires a gain of 500 to use the full input


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    PDF 12-bit AN96-19 bits32 bits32 bits32) bits32; an96f AN96-20 DJ-101ST strain gauge and load cells rs232 wheatstone Bridge amplifier i2c tedea 1240 74HC14 so8 Load cells tedea nv320 EEPROM COPIER circuit LTC2440 AN9610

    SSP35n03

    Abstract: bc417 ksh200 equivalent 2N5457 equivalent ss8050 equivalent 1N34 equivalent FQP50N06 equivalent bd139 equivalent 2N5458 equivalent 2N3563 equivalent
    Text: Cross Reference Guide Industry 1.5KE100A 1.5KE100CA 1.5KE10A 1.5KE10CA 1.5KE110A 1.5KE110CA 1.5KE11A 1.5KE11CA 1.5KE120A 1.5KE120CA 1.5KE12A 1.5KE12CA 1.5KE130A 1.5KE130CA 1.5KE13A 1.5KE13CA 1.5KE150A 1.5KE150CA 1.5KE15A 1.5KE15CA 1.5KE160A 1.5KE160CA 1.5KE16A


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    PDF 5KE100A 5KE100CA 5KE10A 5KE10CA 5KE110A 5KE110CA 5KE11A 5KE11CA 5KE120A 5KE120CA SSP35n03 bc417 ksh200 equivalent 2N5457 equivalent ss8050 equivalent 1N34 equivalent FQP50N06 equivalent bd139 equivalent 2N5458 equivalent 2N3563 equivalent

    16f73

    Abstract: EEPROM COPIER circuit LTC2440 Lucas NovaSensor DJ-101ST tedea 1240 TEDEA OPTREX DMC 74HC14 so8 weigh scale calibration program
    Text: Application Note 96 January 2005 Delta Sigma ADC Bridge Measurement Techniques Mark Thoren Introduction In a typical 12-bit measurement system, the signal conditioning amplifier requires a very high gain in order to make use of the full ADC input range. A sensor with a 10mV fullscale output requires a gain of 500 to use the full input


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    PDF 12-bit AN96-19 bits32 bits32 bits32) bits32; an96fa AN96-20 16f73 EEPROM COPIER circuit LTC2440 Lucas NovaSensor DJ-101ST tedea 1240 TEDEA OPTREX DMC 74HC14 so8 weigh scale calibration program

    SILICONIX Si9801

    Abstract: Si9801
    Text: Si9801 DY -Siliconix N-/P-Ch, Reduced Qg, Fast Switching Half-Bridge ACv > r PRODUCT SUMMARY Vds V N-Channel P-Channel r DS(ON) Id (-2) (A) 0.055 @ VGS = 4.5 V ± 4 .5 0.075 @ VGS = 3.0 V


    OCR Scan
    PDF Si9801 S-56944-- 23-Nov-98 SILICONIX Si9801