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    LT1017* OPEN COLLECTOR Search Results

    LT1017* OPEN COLLECTOR Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    TCTH022BE Toshiba Electronic Devices & Storage Corporation Over Temperature Detection IC / VDD=1.7~5.5V / IPTCO=10μA / IDD=11.3μA / Open-drain type / FLAG signal latch function Visit Toshiba Electronic Devices & Storage Corporation
    TCTH021BE Toshiba Electronic Devices & Storage Corporation Over Temperature Detection IC / VDD=1.7~5.5V / IPTCO=10μA / IDD=11.3μA / Open-drain type Visit Toshiba Electronic Devices & Storage Corporation
    TCTH012BE Toshiba Electronic Devices & Storage Corporation Over Temperature Detection IC / VDD=1.7~5.5V / IPTCO=1μA / IDD=1.8μA / Open-drain type / FLAG signal latch function Visit Toshiba Electronic Devices & Storage Corporation
    TCTH011BE Toshiba Electronic Devices & Storage Corporation Over Temperature Detection IC / VDD=1.7~5.5V / IPTCO=1μA / IDD=1.8μA / Open-drain type Visit Toshiba Electronic Devices & Storage Corporation
    LBAA0QB1SJ-295 Murata Manufacturing Co Ltd SX1262 MODULE WITH OPEN MCU Visit Murata Manufacturing Co Ltd

    LT1017* OPEN COLLECTOR Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    LT1016

    Abstract: LT317A LTC1042 LT685 LT1003 LT350A LT1038 LT1015 LT1017 LT1116
    Text: 10mV ≤2mV MAXIMUM VOS ≤ 3mV 1mV LTC1042 LT 1017 0.5mV LTC1041 LTC®1040 TTL OUTPUTS ECL OPEN-DRAIN OUTPUTS COLLECTOR LT1017 QUAD LTC1443/4/5 DUAL LTC1040 LT1017 Voltage Comparators LTC1040 GROUND SENSE LTC1041 LTC1040 MICROPOWER 60µA Max. ICC /Operates to 1.1V


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    PDF LTC1443/4/5 LT1011 LTC1042 LTC1041 LT1011A LTC1443/5 LT1017 LTC1040 LT1016 LT317A LTC1042 LT685 LT1003 LT350A LT1038 LT1015 LT1017 LT1116

    AM685

    Abstract: LT1017 equivalent 5v input 3v output LT1719 equivalent LT1719 lt1011 datasheet lt1016 equivalent ultrafast rail to rail amp LM111 LT1015
    Text: Comparators InfoCard 24 Comparators High Speed Maximum Propagation Delay Single Supply TM LT1719, UltraFast , Ground Sensing Rail-Rail, Hysteresis LT1720, UltraFast, Rail-Rail, Ground-Sensing, 3V/5V, Dual LT1721, UltraFast, Ground Sensing Rail-Rail, Hysteresis, Quad


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    PDF LT1719, LT1720, LT1721, LT1394, LT1015, LT1016, LT1116, LT1671, LT1011/A, LM111, AM685 LT1017 equivalent 5v input 3v output LT1719 equivalent LT1719 lt1011 datasheet lt1016 equivalent ultrafast rail to rail amp LM111 LT1015

    hp5082-2810

    Abstract: YSI 44018 HP5082 2N3904 LM10 LT1034 varactor diode sample problems YSI-44018 Widlar 1N914
    Text: Application Note 15 November 1985 Circuitry for Single Cell Operation Jim Williams Portable, battery-powered operation of electronic apparatus has become increasingly desirable. Medical, remote data acquisition, power monitoring and other applications are good candidates for battery operation. In some circumstances, due to space, power or reliability considerations,


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    PDF 1017/LT1018 600mV LT1017/LT1018 LT1004 LT1034 an15f AN15-8 hp5082-2810 YSI 44018 HP5082 2N3904 LM10 varactor diode sample problems YSI-44018 Widlar 1N914

    AN7530

    Abstract: LM393 Spice COILTRONICS CTX01 ccfl transformer CTX01 12926 LM393 spice model IN5711 npn-pnp dual laptop lcd ccfl inverter Royer converter Royer oscillator circuit diagram
    Text: Application Note 75 March 1999 Circuitry for Signal Conditioning and Power Conversion Designs From a Once Lazy Sabbatical Jim Williams Introduction Linear Technology has a sabbatical program. Every five years employees are granted sabbatical leave, which may


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    PDF EL2004 400pA 50MHz 50MHz AN75-31 AN75-32 an75f AN7530 LM393 Spice COILTRONICS CTX01 ccfl transformer CTX01 12926 LM393 spice model IN5711 npn-pnp dual laptop lcd ccfl inverter Royer converter Royer oscillator circuit diagram

    LTC1056

    Abstract: lt1021s oscilloscope service manual LT317A 2N5160 equivalent ad639 datasheet polystyrene TRW capacitor MC10136 CD4013 application 2N5160
    Text: Application Note 14 March 1986 Designs for High Performance Voltage-to-Frequency Converters Jim Williams Monolithic, modular and hybrid technologies have been used to implement voltage-to-frequency converters. A number of types are commercially available and overall


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    PDF an14f AN14-20 LTC1056 lt1021s oscilloscope service manual LT317A 2N5160 equivalent ad639 datasheet polystyrene TRW capacitor MC10136 CD4013 application 2N5160

    Hughes 3121H-P laser

    Abstract: sprague 673D pin diagram for IC cd 1619 fm receiver transistor databook ztx MBR170 AD7800 ADS7880 IN4002 diode motor driver IRFZ44 microcontroller AD1674 AND APPLICATION NOTES
    Text: LINEAR TECHNOLOGY FEBRUARY 1993 IN THIS ISSUE . . . COVER ARTICLE New Switching Regulators Maximize Efficiency . 1 Milton Wilcox and Randy Flatness Editor's Page . 2 Richard Markell DESIGN FEATURES New Isolators Replace “Optos” . 3


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    PDF LTC1148/LTC1149 12-Bit Hughes 3121H-P laser sprague 673D pin diagram for IC cd 1619 fm receiver transistor databook ztx MBR170 AD7800 ADS7880 IN4002 diode motor driver IRFZ44 microcontroller AD1674 AND APPLICATION NOTES

    LT1017* open collector

    Abstract: LT6703-2 lt6703
    Text: LT6703-2/LT6703-3 Micropower, Low Voltage Comparator with 400mV Reference DESCRIPTION FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ Internal 400mV Reference Total Threshold Error: ± 1.25% Max at 25°C Wide Supply Range: 1.4V to 18V Specified for –40 to 125°C Temperature Range


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    PDF LT6703-2/LT6703-3 400mV 6703-2/LT6703-3 LT1017/LT1018 LTC1441/LTC1442 LTC1998 LT6700 670323f LT1017* open collector LT6703-2 lt6703

    LT6703-2

    Abstract: comparator 399 pin out LT6703-3
    Text: LT6703-2/LT6703-3 Micropower, Low Voltage Comparator with 400mV Reference DESCRIPTION FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ Internal 400mV Reference Total Threshold Error: ± 1.25% Max at 25°C Wide Supply Range: 1.4V to 18V Specified for –40 to 125°C Temperature Range


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    PDF LT6703-2/LT6703-3 400mV 6703-2/LT6703-3 LT1017/LT1018 LTC1441/LTC1442 LTC1998 LT6700 LT6703-2 comparator 399 pin out LT6703-3

    LT1155

    Abstract: COILTRONICS-CTX110092-1 SUMIDA-6345-020 Self-Oscillating Flyback mosfet tempsistor CTX110092 BSS315 mosfet base inverter with chargers circuit an5115 current controlled lead acid battery charging circuits with regulators and transistors including mo
    Text: Application Note 51 August 1992 Power Conditioning for Notebook and Palmtop Systems Robert Dobkin Carl Nelson Dennis O’Neill Steve Pietkiewicz Tim Skovmand Milt Wilcox INTRODUCTION Battery systems include NiCad, nickel-hydride, lead acid, and rechargeable lithium, as well as throw-away alkaline


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    PDF LT1432 LT1173 MPS650 1N4148 1N5818 SUMIDA-6345-020 COILTRONICS-CTX110092-1. 262LYF-0091K LTAN51 LT1155 COILTRONICS-CTX110092-1 Self-Oscillating Flyback mosfet tempsistor CTX110092 BSS315 mosfet base inverter with chargers circuit an5115 current controlled lead acid battery charging circuits with regulators and transistors including mo

    ltc1680

    Abstract: apple laptop battery pinout R5485 ccfl inverter pinout laptop LT1764-3.3 ltc485 laptop backlight inverter pinout apple ccfl inverter dc 12v lt1073 equivalent ic Improved MF10
    Text: Table of Contents LTC1872 Constant Frequency Current Mode Step-Up DC/DC Controller in SOT-23 . LTC1874 Dual Constant Frequency Current Mode Step-Down DC/DC Controller .


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    PDF LTC1872 OT-23 LTC1874 LTC1876 LTC1922-1 LTC1555L-1 LTC1235 LTC690 LTC691 LTC694 ltc1680 apple laptop battery pinout R5485 ccfl inverter pinout laptop LT1764-3.3 ltc485 laptop backlight inverter pinout apple ccfl inverter dc 12v lt1073 equivalent ic Improved MF10

    LT1074 design manual

    Abstract: 92112 reset DC/AC 115V 400Hz converter circuit wiring diagram hoover AN35 TY-94 IC 92112 8 pin circuit to reset eprom 92112 triad ty-94 pin diagram of ic 74191
    Text: Application Note 35 August 1989 Step-Down Switching Regulators Jim Williams lost in this voltage-to-current-to-magnetic field-to-current-to-charge-to-voltage conversion. In practice, the circuit elements have losses, but step-down efficiency is still higher than with inherently dissipative e.g., voltage


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    PDF an35f AN35-30 AN35-31 AN35-32 LT1074 design manual 92112 reset DC/AC 115V 400Hz converter circuit wiring diagram hoover AN35 TY-94 IC 92112 8 pin circuit to reset eprom 92112 triad ty-94 pin diagram of ic 74191

    sot-23 Marking LTADM

    Abstract: LT6700-1 YSI 409 LT6700-2 LT6700-3
    Text: LT6700-1/LT6700-2/LT6700-3 Micropower, Low Voltage, SOT-23, Dual Comparator with 400mV Reference U FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ DESCRIPTIO Low Quiescent Current: 6.5µA Typ at 5V Wide Supply Range: 1.4V to 18V 400mV Reference ±2% Accuracy Over Temperature


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    PDF LT6700-1/LT6700-2/LT6700-3 OT-23, 400mV LT6700-1/LT6700-2/ LT6700-3 OT-23 LT1017/LT1018 LTC1441/LTC1442 LTC1998 sot-23 Marking LTADM LT6700-1 YSI 409 LT6700-2 LT6700-3

    Untitled

    Abstract: No abstract text available
    Text: LT6703-2/LT6703-3 LT6703HV-2/LT6703HV-3 Micropower, Low Voltage Comparator with 400mV Reference DESCRIPTION FEATURES n n n n n n n n n n n n Internal 400mV Reference Total Threshold Error: ±1.25% Max at 25°C Wide Supply Range: 1.4V to 18V Input and Output Operate to 36V


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    PDF LT6703-2/LT6703-3 LT6703HV-2/LT6703HV-3 400mV LT6703-2/LT6703-3/ OT-23 LT1017/LT1018 LTC1441/LTC1442 LTC1998

    LTdmp

    Abstract: No abstract text available
    Text: LT6703-2/LT6703-3 LT6703HV-2/LT6703HV-3 Micropower, Low Voltage Comparator with 400mV Reference DESCRIPTION FEATURES n n n n n n n n n n n n Internal 400mV Reference Total Threshold Error: ± 1.25% Max at 25°C Wide Supply Range: 1.4V to 18V Input and Output Operate to 36V


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    PDF LT6703-2/LT6703-3 LT6703HV-2/LT6703HV-3 400mV LT6703-2/LT6703-3/ 6703-2/LT6703-3/LT6703HV-2/LT6703HV-3 LT1017/LT1018 LTC1441/LTC1442 LTC1998 LTdmp

    T101f

    Abstract: LT10171S8 LT1017 LT1017MH LT1018 74C02 URM 95
    Text: uimt TECHNOLOGY . _ L:ftQW LTW £ M icropower Dual Com parator F€nTUR€S DCSCRIPTIOn • ■ ■ ■ ■ ■ ■ The LT1017 and LT1018 are general purpose micropower comparators. The LT1017 is optimized for lowest operat­ ing power while the LT1018 operates at higher power and


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    PDF 30fiA LT1017) 110/xA LT1018) LT1017 LT1018 HP5082-2810 RL1123-4 T101f LT10171S8 LT1017MH 74C02 URM 95

    1018C

    Abstract: No abstract text available
    Text: u n ü \ R _ TECHNOLOGY M icropower Dual Com parator F€ n T U R € S D C S C M P T IO n • ■ ■ ■ ■ ■ ■ The LT1017 and LT1018 are general purpose micropower comparators. The LT1017 is optimized for lowest operat­ ing power while the LT1018 operates at higher power and


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    PDF LT1017 LT1018 LT1017/ LT1018 LT1017/LT1018 2N3904 200pF 1018C

    LT1017 APPLICATION

    Abstract: No abstract text available
    Text: / T L I M Ü \ ß TECHNOLOGY LT1017/LT1018 Micropower Dual Comparator F€flTU ߀S D CSCftlPTIO n • ■ ■ ■ ■ ■ ■ The LT1017 and LT1018 are general purpose micropower com parators. The LT1017 is optimized for lowest operat­ ing power while the LT1018 operates at higher power and


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    PDF LT1017 LT1018 200Hz 17V/ms LT1017/LT1018 LT1017 APPLICATION

    Untitled

    Abstract: No abstract text available
    Text: L l l I U \ k _ _ _ L T O 7 /L T O TECHNOLOGY M icro p o w e r Dual C o m p a ra to r D € S C R IP TIO n F€ ftTU fl€ S • M axim um O ffse t Voltage ■ M axim um Bias Current ■ Typical O u tpu t Drive ■ ■ ■ ■ 1m V 15nA 70m A


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    PDF LT1017/LT1018 200oF 74C02

    Untitled

    Abstract: No abstract text available
    Text: um LT1017CS/LT1018CS TECHNOLOGY Micropower Dual Comparator D C S C ftlP T IO n F€ATU A€S • ■ ■ ■ ■ ■ ■ Maximum Offset Voltage Maximum Bias Current Typical Output Drive Operates from 1.1V to 40V Internal Pull-Up Current Output Can Drive Loads Above V +


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    PDF LT1017CS/LT1018CS 30/iA LT1017) LT1018) LT1017 LT1018 100mV

    Untitled

    Abstract: No abstract text available
    Text: LINEAR TECHNOLOGY CORP 43E D • S51ö4bfl OOOSlbfc, *1 ■ LTC LintAR_ ^ TECHNOLOGY /883 M icropower Dual C om parator DESCRIPTION ABSOLUTE M A X IM U M RATINGS The LT1017/883 is a general purpose micropower com­ parator, operable from a single 1.1V cell up to 40V. The


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    PDF LT1017/883 LT101

    ci sn7402

    Abstract: 10GHz OSCILLATOR pulse generator LT1017 failure rate LT1017 LM111 LT1011 Transistor 2N3866 1Hz-10MHz AM6012 LT1016CS8
    Text: r r m r LT1011/LTlOl 1A n TECHNOLOGY Voltage Com parator FCftTURCS D6SCRIPTIOI1 • Pin-Compatible with LM111 Series Devices ■ Guaranteed Max. 0.5mV Input Offset Voltage ■ Guaranteed Max. 25nA Input Bias Current ■ Guaranteed Max. 3nA Input Offset Current


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    PDF LM111 250ns LT1011/LT1011A LT1011 LM111. HP5082-2810 RL1123-4 1N4148 g10kt 2N3904 ci sn7402 10GHz OSCILLATOR pulse generator LT1017 failure rate LT1017 Transistor 2N3866 1Hz-10MHz AM6012 LT1016CS8

    YSI 44018

    Abstract: YSI-44018 hp5082-2810 0-10v ramp ic Germanium diode 0.2V varactor diode sample problems hp5082 1N4148 LM10 voltage reference IC LM10
    Text: ' LU IL/M<_ ! •' TECHNOLOGY Application Note 15 November 1985 Circuitry for Single Cell Operation Jim Williams Portable, battery powered operation of electronic appara­ tus has become increasingly desirable. Medical, remote data acquisition, power monitoring and other applications


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    PDF LT1017/LT1018 600mV YSI 44018 YSI-44018 hp5082-2810 0-10v ramp ic Germanium diode 0.2V varactor diode sample problems hp5082 1N4148 LM10 voltage reference IC LM10

    IC 74C14

    Abstract: catalyst 2736 CI 74C00 capacitor 100vf AN23-2 24 volt 200 w to mosfet inverter circuit diagram ic cd4066 PTC104 Voltage to Current Converter dual 4-20mA scheme LT1006
    Text: r j untAß Application Note 23 April 1987 TECHNOLOGY Micropower Circuits for Signal Conditioning Jim Williams Low power operation of electronic apparatus has become increasingly desirable. Medical, remote data acquisition, power monitoring and other applications are good candi­


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    PDF LT1G22 LT101Q LT1010 50uftc IC 74C14 catalyst 2736 CI 74C00 capacitor 100vf AN23-2 24 volt 200 w to mosfet inverter circuit diagram ic cd4066 PTC104 Voltage to Current Converter dual 4-20mA scheme LT1006

    12V to 300V dc dc converter step-up

    Abstract: compote figaro 813 Voltage to Current Converter dual 4-20mA scheme resistive linear position transducer rosemount temperature sensors rosemount 118mf bridge transducer 4-20ma using instrumentation LTC1043S transformer 400Hz 115v
    Text: u im TECHNOLOGY Application Note 11 September 1985 Designing Linear Circuits for 5V Single Supply O peration Jim Williams In predominantly digital systems it is often necessary to include linear circuit functions. Traditionally, separate power supplies have been used to run the linear compo­


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    PDF AN11-16 12V to 300V dc dc converter step-up compote figaro 813 Voltage to Current Converter dual 4-20mA scheme resistive linear position transducer rosemount temperature sensors rosemount 118mf bridge transducer 4-20ma using instrumentation LTC1043S transformer 400Hz 115v