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    LT1070 EQUIVALENT Search Results

    LT1070 EQUIVALENT Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    TMP89FS60AUG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/LQFP64-P-1010-0.50E Visit Toshiba Electronic Devices & Storage Corporation
    TMP89FS63AUG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/LQFP52-P-1010-0.65 Visit Toshiba Electronic Devices & Storage Corporation
    TMP89FS60BFG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/P-LQFP64-1414-0.80-002 Visit Toshiba Electronic Devices & Storage Corporation
    TMP89FS63BUG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/P-LQFP52-1010-0.65-002 Visit Toshiba Electronic Devices & Storage Corporation
    TMP89FS62AUG Toshiba Electronic Devices & Storage Corporation 8-bit Microcontroller/Processing Performance Equivalent to a 16-bit MCU/LQFP44-P-1010-0.80A Visit Toshiba Electronic Devices & Storage Corporation

    LT1070 EQUIVALENT Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    mallory capacitor fp 150

    Abstract: lt1072 mallory capacitor fp tapped inductor boost converter LT1070 MALLORY CAPACITORS sx 6W Buck Topology EX 0045 bm diode zener frequency and duty cycle control lt1070ct LM308 pin configuration
    Text: Application Note 19 June 1986 LT1070 Design Manual Carl Nelson INTRODUCTION Three terminal monolithic linear voltage regulators appeared almost 20 years ago, and were almost immediately successful for a variety of reasons. In particular, there were relatively few engineers capable of designing a good


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    PDF LT1070 O-220) an19fc AN19-80 mallory capacitor fp 150 lt1072 mallory capacitor fp tapped inductor boost converter MALLORY CAPACITORS sx 6W Buck Topology EX 0045 bm diode zener frequency and duty cycle control lt1070ct LM308 pin configuration

    IC 92112 Q101

    Abstract: Ferroxcube 3C8 Ferrite 3c8 flyback 24v primary center tapped buck and boost power HV Flyback TRANSFORMERS toroid ferrite smps inductor FERRITE TRANSFORMER 20khz toroid pin diagram of LM308 Op Amp IC Self Oscillating Flyback Converters LT1070
    Text: Application Note 19 June 1986 LT1070 Design Manual Carl Nelson INTRODUCTION Three terminal monolithic linear voltage regulators appeared almost 20 years ago, and were almost immediately successful for a variety of reasons. In particular, there were relatively few engineers capable of designing a good


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    PDF LT1070 O-220) an19fb AN19-80 IC 92112 Q101 Ferroxcube 3C8 Ferrite 3c8 flyback 24v primary center tapped buck and boost power HV Flyback TRANSFORMERS toroid ferrite smps inductor FERRITE TRANSFORMER 20khz toroid pin diagram of LM308 Op Amp IC Self Oscillating Flyback Converters

    Ferroxcube 3C8

    Abstract: AN19-16 LT1070 Ferrite 3c8 flyback 6W Buck Topology kelvin 1102 tesla 516 12CM32 TRANSISTOR 22W UG AN-1910
    Text: Application Note 19 June 1986 LT1070 Design Manual Carl Nelson INTRODUCTION Three terminal monolithic linear voltage regulators appeared almost 20 years ago, and were almost immediately successful for a variety of reasons. In particular, there were relatively few engineers capable of designing a good


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    PDF LT1070 Switc65) O-220) AN19-80 an19fa Ferroxcube 3C8 AN19-16 Ferrite 3c8 flyback 6W Buck Topology kelvin 1102 tesla 516 12CM32 TRANSISTOR 22W UG AN-1910

    C 9013

    Abstract: LT1572
    Text: RELIABILITY DATA LT1070/71/72/73/1082/1170/71/72/73/1268/69/70/71 LT1572 LT1676/84/1776/77 8/21/2006 • OPERATING LIFE TEST PACKAGE TYPE SAMPLE SIZE OLDEST DATE CODE CERDIP SIDEBRAZE TO-3 PLASTIC DIP SOIC/SOT/MSOP DD PACK TO-220 50 9013 119 9013 302 8601


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    PDF LT1572 LT1676/84/1776/77 O-220 00-03-6209B. C 9013

    LT1572

    Abstract: C 9013 9013 sot 9934 9013 LT1070 equivalent
    Text: RELIABILITY DATA LT1070/71/72/73/1082/1170/71/72/73/1268/69/70/71 LT1572 LT1676/84/1776/77 12/8/2000 • OPERATING LIFE TEST PACKAGE TYPE SAMPLE SIZE OLDEST DATE CODE CERDIP SIDEBRAZE TO-3 PLASTIC DIP SOIC/SOT/MSOP DD PACK TO-220 50 9013 119 9013 302 8601


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    PDF LT1572 LT1676/84/1776/77 O-220 00-03-6209B. LT1572 C 9013 9013 sot 9934 9013 LT1070 equivalent

    801-2003-01

    Abstract: Cambion peltier regulator 48V mosfet 10a 500v 40khz peltier cooler wiring diagram "motor speed regulator" negative voltage regulator, 48V an25fa led driver 12v 100w IRF P CHANNEL MOSFET 200V 20A
    Text: Application Note 25 September 1987 Switching Regulators for Poets A Gentle Guide for the Trepidatious Jim Williams The above title is not happenstance and was arrived at after considerable deliberation. As a linear IC manufacturer, it is our goal to encourage users to design and build switching


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    PDF an25fa AN25-23 AN25-24 801-2003-01 Cambion peltier regulator 48V mosfet 10a 500v 40khz peltier cooler wiring diagram "motor speed regulator" negative voltage regulator, 48V an25fa led driver 12v 100w IRF P CHANNEL MOSFET 200V 20A

    eprom 92112

    Abstract: SPRAGUE 11Z-2003 AN3030 MALLORY CAPACITOR CATALOG hp5082-2810 STANCOR 11Z-2003 pe-6197 2N4391 MOTOROLA P50N05E stancor rectifier transformer
    Text: Application Note 30 February 1989 Switching Regulator Circuit Collection John Seago Switching regulators are of universal interest. Linear Technology has made a major effort to address this topic. A catalog of circuits has been compiled so that a design engineer can swiftly determine which converter type is


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    PDF 2N2222 1N4148 LT1072CN8 VN2222LL 2N3906 5V-35V LT317AH MBR1535 eprom 92112 SPRAGUE 11Z-2003 AN3030 MALLORY CAPACITOR CATALOG hp5082-2810 STANCOR 11Z-2003 pe-6197 2N4391 MOTOROLA P50N05E stancor rectifier transformer

    chopper transformer winding for 24v battery charging

    Abstract: hp laptop charging CIRCUIT diagram p50n05 43a Hall effect pin out 2N2219 transistor substitute PURE SINE WAVE inverter schematic diagram 2n3906 npn magnetic amplifier saturable core P50N05E pe-61592
    Text: Application Note 29 October 1988 Some Thoughts on DC/DC Converters Jim Williams and Brian Huffman INTRODUCTION Many systems require that the primary source of DC power be converted to other voltages. Battery driven circuitry is an obvious candidate. The 6V or 12V cell in a laptop computer must be converted to different potentials needed for


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    PDF 1500pF CTX300-4 B-07T CTX33-4 D45C1 CTX-02-13949-X1 21-110J LT1533 an29f AN29-46 chopper transformer winding for 24v battery charging hp laptop charging CIRCUIT diagram p50n05 43a Hall effect pin out 2N2219 transistor substitute PURE SINE WAVE inverter schematic diagram 2n3906 npn magnetic amplifier saturable core P50N05E pe-61592

    LT1257

    Abstract: LT485 AN6752 OP227 "direct replacement" ltc1097 an6266 AN2544 LTC201 spice AN6677 AN1523
    Text: SUBJECT INDEX Subject Index to Linear Technology’s Applications Circuits A GUIDE TO THE INDEX Linear Technology has made a major effort to address a wide variety of circuit topics. The number of application problems solvable with innovative circuit techniques or new linear integrated circuits continues to grow. This comprehensive index includes


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    PDF DN134) LT1016, LT1097, LT1222 LT1166, LT1431 LT1172, LT1006 LT1013, LT1088, LT1257 LT485 AN6752 OP227 "direct replacement" ltc1097 an6266 AN2544 LTC201 spice AN6677 AN1523

    Untitled

    Abstract: No abstract text available
    Text: LT1432 5V High Efficiency Step-Down Switching Regulator Controller OBSOLETE: FOR INFORMATION PURPOSES ONLY Contact Linear Technology for Potential Replacement DESCRIPTIO U FEATURES • ■ ■ ■ ■ ■ ■ ■ The LT1432 is a control chip designed to operate with the


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    PDF LT1432 LT1432 LT1170/LT1270

    laptop mother board voltage details

    Abstract: LT 432 LT1270 application notes LT432 LT1170 LT1171 buck LT1271 digital display datasheet with input voltage 12V inverter FERRITE TRANSFORMER design SWITCH MODE CURRENT SOURCE
    Text: LT1432 5V High Efficiency Step-Down Switching Regulator Controller NOT RECOMMENDED FOR NEW DESIGNS Contact Linear Technology for Potential Replacement U DESCRIPTIO FEATURES • ■ ■ ■ ■ ■ ■ ■ The LT1432 is a control chip designed to operate with the


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    PDF LT1432 LT1432 LT1170/LT1270 uses018 laptop mother board voltage details LT 432 LT1270 application notes LT432 LT1170 LT1171 buck LT1271 digital display datasheet with input voltage 12V inverter FERRITE TRANSFORMER design SWITCH MODE CURRENT SOURCE

    laptop mother board voltage details

    Abstract: LT1270 application notes LT432 LT1171 buck LT1271 inverter FERRITE TRANSFORMER design laptop inverter board schematic 1N4148 LT1070 LT1170
    Text: LT1432 5V High Efficiency Step-Down Switching Regulator Controller U DESCRIPTIO FEATURES • ■ ■ ■ ■ ■ ■ ■ The LT1432 is a control chip designed to operate with the LT1170/LT1270 family of switching regulators to make a very high efficiency 5V step-down buck switching regulator. A minimum of external components is needed.


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    PDF LT1432 LT1432 LT1170/LT1270 laptop mother board voltage details LT1270 application notes LT432 LT1171 buck LT1271 inverter FERRITE TRANSFORMER design laptop inverter board schematic 1N4148 LT1070 LT1170

    laptop mother board voltage details

    Abstract: LT1270 application notes universal laptop inverter LT1170 boost converter 12v dc LT432 1N4148 LT1070 LT1170 LT-432 LT1432
    Text: LT1432 5V High Efficiency Step-Down Switching Regulator Controller OBSOLETE: FOR INFORMATION PURPOSES ONLY Contact Linear Technology for Potential Replacement DESCRIPTIO U FEATURES • ■ ■ ■ ■ ■ ■ ■ The LT1432 is a control chip designed to operate with the


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    PDF LT1432 LT1432 LT1170/LT1270 accurat018 laptop mother board voltage details LT1270 application notes universal laptop inverter LT1170 boost converter 12v dc LT432 1N4148 LT1070 LT1170 LT-432

    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

    BMF 11A

    Abstract: r02f 16V7K MALLORY CAPACITOR CATALOG 20h inductor TOTALLY ISOLATED CONVERTER 630fl IL393 K895 LG TV flyback transformer
    Text: urm ECHNOLOGY Application Note 19 June 1986 LT1070 Design Manual Carl Nelson INTRODUCTION Three terminal monolithic linear voltage regulators appeared almost 20 years ago, and were almost immediately success­ ful for a variety of reasons. In particular, there were relatively


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    PDF LT1070 O-220Type LT1070MK, LT1070HVMK LT1070CK, LT1070HVCK LT1070CT, LT1070HVCT BMF 11A r02f 16V7K MALLORY CAPACITOR CATALOG 20h inductor TOTALLY ISOLATED CONVERTER 630fl IL393 K895 LG TV flyback transformer

    LT1070

    Abstract: LT1070 equivalent electromagnetic pulse kit jim Williams AN-19 AN-25
    Text: ri i i i i i i i i '’K n iT z iE m 'i DESIGN NOTES Number 8 in a series from Linear Technology Corporation March, 1988 Inductor Selection for LT1070 Switching Regulators Jim Williams A common problem area in switching regulator design is the inductor, and the most common difficulty is saturation. An in­


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    PDF LT1070 450/iH, 55/tH, LT1070 equivalent electromagnetic pulse kit jim Williams AN-19 AN-25

    MOTOROLA-MBR745

    Abstract: LT1270 LT1070 equivalent capacitor wima mks 04 nichicon electrolytic capacitor 2200MF MARCON AMERICA CORP LT1070IC snubber overshoot composite Marcon capacitor Co Sanyo 9980 lu
    Text: LintiAß Application Note 46 TECHNOLOGY November 1991 Efficiency and Power Characteristics of Switching Regulator Circuits Brian Huffman Efficiency is often the main objective when using switch­ ing regulators. High efficiency means less power drain on the input source batteries, etc. and less heat buildup


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    PDF LT1070IC. AN46-28 MOTOROLA-MBR745 LT1270 LT1070 equivalent capacitor wima mks 04 nichicon electrolytic capacitor 2200MF MARCON AMERICA CORP LT1070IC snubber overshoot composite Marcon capacitor Co Sanyo 9980 lu

    peltier cooler wiring diagram

    Abstract: 801-2003-01 Cambion peltier regulator 48V 48V 100W zener diode Cambion 801 118ME mth5n100 Rosemount RTD wiring diagram for a 20v ac to 12v dc transformer
    Text: urm TECHNOLOGY Application Note 25 September 1987 Switching Regulators for Poets A Gentle Guide for the Trepidatious Jim Williams The above title is not happenstance and was arrived at after considerable deliberation. As a linear 1C manufac­ turer, it is our goal to encourage users to design and build


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    PDF AN25-23 AN25-24 peltier cooler wiring diagram 801-2003-01 Cambion peltier regulator 48V 48V 100W zener diode Cambion 801 118ME mth5n100 Rosemount RTD wiring diagram for a 20v ac to 12v dc transformer

    P50N05E

    Abstract: dc-dc converter royer PE-65050 p50n05 figure 19 hysteresis loop of magnetic core in flyback circuit 2n3507 1amp IRFZ44 mosfet for square wave inverter pe-6197 diode r 4kl c 46 PE-65066
    Text: L ir m Application Note 29 O ctober 1988 TECHNOLOGY Some Thoughts on DC-DC Converters Jim Williams Brian Huffman INTRODUCTION Many systems require that the primary source of DC power be converted to other voltages. Battery driven cir­ cuitry is an obvious candidate. The 6V or 12V cell in a lap­


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    PDF California92112 P50N05E dc-dc converter royer PE-65050 p50n05 figure 19 hysteresis loop of magnetic core in flyback circuit 2n3507 1amp IRFZ44 mosfet for square wave inverter pe-6197 diode r 4kl c 46 PE-65066

    Untitled

    Abstract: No abstract text available
    Text: / T u r _ LT1432 m TECHNOLOGY 5V High Efficiency Step-Down Switching Regulator Controller FCOTURCS D C SC R IPTIO H • ■ ■ ■ ■ ■ ■ ■ The LT1432 is a control chip designed to operate with the LT1170/LT1270 family of switching regulators to make a


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    PDF LT1432 LT1432 LT1170/LT1270 50jaH LT1070

    Untitled

    Abstract: No abstract text available
    Text: r r u n TECHNOLOGY eAß _ LT1432 5V High Efficiency Step-Down Switching Regulator Controller F€RTU R€S D C S C R IP T IO n • ■ ■ ■ ■ ■ ■ ■ The LT1432 is a control chip designed to operate with the LT1170/LT1270 family of switching regulators to make a


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    PDF LT1432 LT1432 LT1170/LT1270 15joA 100-C

    LT1270 application notes

    Abstract: No abstract text available
    Text: v* 8* _ LT1432 u m TECHNOLOGY 5v High Efficiency Step-Down Switching Regulator Controller F€ fìTU R € S D C S C R IP T IO n • Accurate Preset +5V Output ■ Up to 90% Efficiency ■ Optional Burst Mode for Light Loads ■ Can be Used with Many LTC Switching ICs


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    PDF LT1432 50juH LT1432 LT1170/LT1270 300-Q LT1270 application notes

    phillips 031 ko Capacitor

    Abstract: laptop mother board voltage details LT1432 LT107C amplifier circuit diagram techno 5a schematic diagram of laptop inverter LT1171 buck npn fet EI type bobbin 8 pin ic used in laptop
    Text: | Ar* *« _ u rre A ß TECHNOLO GY LT1432 5 v High E fficie n cy S te p -D o w n S w itch in g R e g u la to r C o n tro lle r F€fiTUR€S DCSCMPTIOn • ■ ■ ■ ■ ■ ■ ■ The LT1432 is a control chip designed to operate with the LT1170/LT1270 family of switching regulators to make a


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    PDF LT1432 50juH LT1432 LT1170/LT1270 150X/W 170-CAV GP0392 10KREV0 phillips 031 ko Capacitor laptop mother board voltage details LT107C amplifier circuit diagram techno 5a schematic diagram of laptop inverter LT1171 buck npn fet EI type bobbin 8 pin ic used in laptop

    an 503 hall sensor

    Abstract: LT1074 design manual MBB745 LT1074/LTPG e3 74c122 ic 7490 pin diagram 3055 5C pnp transistor IC 92112 m8r745 3055 5c pnp
    Text: Lirm Application Note 35 TECHNOLOGY August 1989 Step Down Switching Regulators Jim Williams A substantial percentage of regulator requirements in­ volve stepping down the primary voltage. Although linear regulators can do this, they cannot achieve the efficiency


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