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    LM321 EQUIVALENT Search Results

    LM321 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

    LM321 EQUIVALENT Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    a63a

    Abstract: IC MARKING A63a MARKING A63A LM321 equivalent equivalent components of diode sr 2100 sot23 marking A63A a63a Ic LM3215 SNOS935B of lm321
    Text: LM321 www.ti.com SNOS935B – FEBRUARY 2001 – REVISED MARCH 2013 LM321 Low Power Single Op Amp Check for Samples: LM321 FEATURES DESCRIPTION • The LM321 brings performance and economy to low power systems. With a high unity gain frequency and a specified 0.4V/µs slew rate, the quiescent current is


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    PDF LM321 SNOS935B LM321 LM324 a63a IC MARKING A63a MARKING A63A LM321 equivalent equivalent components of diode sr 2100 sot23 marking A63A a63a Ic LM3215 SNOS935B of lm321

    IC MARKING A63a

    Abstract: a63a sot23-5 dc/SMD a63a
    Text: LM321 www.ti.com SNOS935B – FEBRUARY 2001 – REVISED MARCH 2013 LM321 Low Power Single Op Amp Check for Samples: LM321 FEATURES DESCRIPTION • The LM321 brings performance and economy to low power systems. With a high unity gain frequency and a specified 0.4V/µs slew rate, the quiescent current is


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    PDF LM321 SNOS935B LM321 IC MARKING A63a a63a sot23-5 dc/SMD a63a

    MARKING A63A

    Abstract: lm324 applications a63a sot23-5 IC MARKING A63a of lm324 LM324 AUDIO OP AMP LM324 distortion lm321
    Text: LM321 LM321 Low Power Single Op Amp Literature Number: SNOS935A LM321 Low Power Single Op Amp General Description Features The LM321 brings performance and economy to low power systems. With a high unity gain frequency and a guaranteed 0.4V/µs slew rate, the quiescent current is only


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    PDF LM321 LM321 SNOS935A OT23-5 MARKING A63A lm324 applications a63a sot23-5 IC MARKING A63a of lm324 LM324 AUDIO OP AMP LM324 distortion

    LM321

    Abstract: LM321MF dc/SMD a63a
    Text: LM321 www.ti.com SNOS935B – FEBRUARY 2001 – REVISED MARCH 2013 LM321 Low Power Single Op Amp Check for Samples: LM321 FEATURES DESCRIPTION • The LM321 brings performance and economy to low power systems. With a high unity gain frequency and a specified 0.4V/µs slew rate, the quiescent current is


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    PDF LM321 SNOS935B LM321 LM321MF dc/SMD a63a

    Untitled

    Abstract: No abstract text available
    Text: UNISONIC TECHNOLOGIES CO., LTD LM321 Preliminary LINEAR INTEGRATED CIRCUIT LOW POWER SINGLE OP AMP  DESCRIPTION The UTC LM321’s quiescent current is only 430µA 5V . The UTC LM321 brings performance and economy to low power systems, With a high unity gain frequency and a specified 0.4V/µs


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    PDF LM321 LM321â LM321 QW-R104-007

    a63a

    Abstract: a63a Ic lm3217 LM321MFX LM321MF a63a sot23-5
    Text: LM321 www.ti.com SNOS935A – MAY 2004 – REVISED MAY 2004 LM321 Low Power Single Op Amp Check for Samples: LM321 FEATURES APPLICATIONS • • • • • • 1 2 • • • • • • VCC = 5V, TA = 25°C. Typical values unless specified. Gain-Bandwidth Product 1MHz


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    PDF LM321 SNOS935A LM321 LM324 a63a a63a Ic lm3217 LM321MFX LM321MF a63a sot23-5

    a63a

    Abstract: a63a sot23-5 MARKING A63A IC MARKING A63a of lm324 a63a Ic LM321 LM324 SOT23-5 MARKING V4 LM321 equivalent
    Text: LM321 Low Power Single Op Amp General Description Features The LM321 brings performance and economy to low power systems. With a high unity gain frequency and a guaranteed 0.4V/µs slew rate, the quiescent current is only 430µA/amplifier 5V . The input common mode range includes ground and therefore the device is able to operate in


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    PDF LM321 LM321 OT23-5 a63a a63a sot23-5 MARKING A63A IC MARKING A63a of lm324 a63a Ic LM324 SOT23-5 MARKING V4 LM321 equivalent

    A63A

    Abstract: a63a sot23-5 IC MARKING A63a LM321 equivalent v4 sot23-5 MARKING A63A SOT23-5 MARKING V4 of lm321 LM321 of lm324
    Text: General Description Features The LM321 brings performance and economy to low power systems. With a high unity gain frequency and a guaranteed 0.4V/µs slew rate, the quiescent current is only 430µA/amplifier 5V . The input common mode range includes ground and therefore the device is able to operate in


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    PDF LM321 OT23-5 A63A a63a sot23-5 IC MARKING A63a LM321 equivalent v4 sot23-5 MARKING A63A SOT23-5 MARKING V4 of lm321 of lm324

    LM3488

    Abstract: LM321 equivalent 595D227X06R3C2T IRLR3715 LM321 MBRD1035CTL P0398 cuk isolation VJ0805Y563KXXAT
    Text: 1.0 Design Specifications Inputs Outputs #1 VinMin=2.97 Vout1=-5.2 VinMax=5.5 Iout1=3.3 Theory of operation: CUK converter operates via capacitive energy transfer. The capacitor C5 is connected to the input source through the input inductor L1 coupled inductor and stores the energy from


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    PDF LM321 LM3488 400KHz) CSP-9-111S2) CSP-9-111S2. LM3488 LM321 equivalent 595D227X06R3C2T IRLR3715 MBRD1035CTL P0398 cuk isolation VJ0805Y563KXXAT

    lm2623

    Abstract: VJ0603C0G102GXAT BAT54C DFLS120L LM321 LMV301 LM321 equivalent step-up DC-DC switching regulator for battery-powered LM2623A
    Text: National Semiconductor LM2623A June 2006 1.0 Design Specifications Inputs Outputs #1 VinMin=1.8 V Vout1=3.5 V VinMax=3.4 V Iout1=0.65 A 2.0 Design Description This design uses a boost topology. Specifically this circuit uses the LM2623 which is a high efficiency, general purpose,


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    PDF LM2623A LM2623 CSP-9-111S2) CSP-9-111S2. VJ0603C0G102GXAT BAT54C DFLS120L LM321 LMV301 LM321 equivalent step-up DC-DC switching regulator for battery-powered LM2623A

    C2012X7R2E103K

    Abstract: LM5007 LM321 S397D VJ0805Y104KXXAT 8V16V led bulb schematic 8v-16v LED vehicles signal turn lights CRCW0805471J
    Text: 1.0 Design Specifications Inputs Outputs #1 VinMin=9.0 V Vout1=2.3 V VinMax=40.0 V Iout1=0.35 A the LM5007 can withstand inputs voltages of up to 75V. This circuit does not need additional protection from 'load dump' events of up to 75V. Although not shown, the brightness of the LED can be


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    PDF LM5007 100Hz CSP-9-111S2) CSP-9-111S2. LM5007 C2012X7R2E103K LM321 S397D VJ0805Y104KXXAT 8V16V led bulb schematic 8v-16v LED vehicles signal turn lights CRCW0805471J

    1W LED LM2623

    Abstract: lm2623 lm321mf LM2623A Application Note Nationals LM2623 C3216X5R0J106M DS1608 LM2623MM MBR0520LT1 VJ0603Y103KXAAT
    Text: National Semiconductor LM2623 May 2006 1.0 Design Specifications Inputs Outputs #1 VinMin=1.5 Vout1=2 VinMax=3.3 Iout1=0.5 2.0 Design Description This design is a basic boost that is capable of providing constant current of 350mA and an open circuit maximum voltage


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    PDF LM2623 350mA LM321MF CSP-9-111S2) CSP-9-111S2. 1W LED LM2623 lm2623 LM2623A Application Note Nationals LM2623 C3216X5R0J106M DS1608 LM2623MM MBR0520LT1 VJ0603Y103KXAAT

    TNY278GN

    Abstract: TNY280GN TNY279GN EF16 TRANSFORMER AWG31 light sensing circuit using op-amp EN55015-B dc to ac converter schematic using op-amp EF16 DI-173
    Text: DI-173 Design Idea TinySwitch-III 14 W, LED Driver Power Supply With High Efficiency Application Device Power Output Input Voltage Output Voltage Topology LED Driver TNY279GN 14 W 195 – 265 VAC 20 V Flyback Design Highlights • High ambient temperature operation 75 ºC


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    PDF DI-173 TNY279GN 2008/ENERGY EN55015B DI-173 TNY278GN TNY280GN TNY279GN EF16 TRANSFORMER AWG31 light sensing circuit using op-amp EN55015-B dc to ac converter schematic using op-amp EF16

    LX5600

    Abstract: LM308 replacement lm308 equivalent LM199 LM308 Zener diode with 9v LM395 datasheet LM108A LM321 LM321 equivalent
    Text: National Semiconductor Application Note 161 June 1976 A new linear IC now provides the ultimate in highly stable voltage references Now a new monolithic IC the LM199 out-performs zeners and can provide a 6 9V reference with a temperature drift of less than 1 ppm and excellent long


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    PDF LM199 LX5600 LM308 replacement lm308 equivalent LM199 LM308 Zener diode with 9v LM395 datasheet LM108A LM321 LM321 equivalent

    LM199

    Abstract: LM308 replacement LX5600 AN-161 1n829 noise LM308 Op Amp IC LM308 application LM308
    Text: A new linear IC now provides the ultimate in highly stable voltage references. Now, a new monolithic IC the LM199, out-performs zeners and can provide a 6.9V reference with a temperature drift of less than 1 ppm/˚ and excellent long term stability. This new IC, uses a unique subsurface zener to


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    PDF LM199, an005613 LM199 LM308 replacement LX5600 AN-161 1n829 noise LM308 Op Amp IC LM308 application LM308

    LTV817A

    Abstract: lnk306pn TOP250YN PLC810PG TNY280 buck lnk606 LNK605DG TOP266EG TOP250Y LM431AIM3DR
    Text: D9 BYV28-200 C7 680 uF 35 V Product Selector Guide LED Driver Products D8 UF4002 C6 220 uF 25 V C March 2010 R4 10 kΩ 5% R2 499 Ω 1% R3 1.00 kΩ 1% Q1 PN2907A U1 TOP246F R1 0 kΩ 1% C5 1.0 uF D7 1N4148 R5 3.01 kΩ 1% C8 100 uF 25 V R8 U2 PC81711NSZ


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    PDF BYV28-200 UF4002 PN2907A OP246F 1N4148 PC81711NSZ BAV19WS 1N525IB LM431AIM3DR LTV817A lnk306pn TOP250YN PLC810PG TNY280 buck lnk606 LNK605DG TOP266EG TOP250Y LM431AIM3DR

    LTC1643L

    Abstract: AN5760 ECTF IRF7413 LMV321 LTC1421 MT90866 MVIP-90 SMH4042 B925
    Text: MSAN-191 Designing a HotSwap Board with Zarlink Components Application Note Contents AN5760 1.0 Overview 2.0 System Models 3.0 Physical Connection Process 3.1 Insertion Process 3.2 Extraction Process 4.0 Hot Swap Technical Specifications 4.1 Power Usage 4.2 CT Bus Signal Conditioning


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    PDF MSAN-191 AN5760 LTC1643L AN5760 ECTF IRF7413 LMV321 LTC1421 MT90866 MVIP-90 SMH4042 B925

    wv4 sot-23

    Abstract: smd diode wv4 smd glass diode color codes smd glass zener diode color codes smd transistor wv4 SMD wv4 pj 69 SMD diode smd diode zener code pj 78 10n capacitor smd zener color codes
    Text: Development Board Instruction Manual ADC08D500DEV - Dual 8-Bit, 500 MSPS, 1.4W A/D Converter with Xilinx Virtex 4 XC4VLX15 FPGA Copyright 2006 National Semiconductor Corporation 1 www.national.com ADC08D500DEV Development Board June 4, 2006 Revision B


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    PDF ADC08D500DEV XC4VLX15) ADC08D500EVAL wv4 sot-23 smd diode wv4 smd glass diode color codes smd glass zener diode color codes smd transistor wv4 SMD wv4 pj 69 SMD diode smd diode zener code pj 78 10n capacitor smd zener color codes

    lnk304pn

    Abstract: LNK306PN top247yn LNK304PN equivalent lnk302pn LNK606PG PLC810PG FREE LNK304PN TOP250Y TOP250R
    Text: 2 11 D2 DL4007 FL1 Solid-State Lighting Solutions VR1 1 FL2 1.5KE200A AC-DC LED Driver ICs D8 MBRS4201T3G 3 D3 UF4007 R2 2 MΩ 1% R8 D6 150 Ω DL4936 1% 2 D4 SB3100 D LinkSwitch-PH U1 LNK406EG V D5 SS14 R5 3.01 kΩ 1% CONTROL S FB R4 49.9 kΩ 1% C5 22 µ


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    PDF DL4007 5KE200A MBRS4201T3G UF4007 DL4936 SB3100 LNK406EG BAV21WS-7-F MMBT3904 ZMM5259B-7 lnk304pn LNK306PN top247yn LNK304PN equivalent lnk302pn LNK606PG PLC810PG FREE LNK304PN TOP250Y TOP250R

    wv4 sot-23

    Abstract: atmel 602 24c02 atmel 24c02 B20 zener diode glass zener SMD A9 SMD wv4 smd glass zener diode color codes diode ZENER u22 pj 69 SMD diode smd transistor wv4
    Text: June 9, 2006 Revision B ADC08D1500DEV - Dual 8-Bit, 1.5 GSPS, 1.8W A/D Converter with Xilinx Virtex 4 XC4VLX15 FPGA Copyright 2006 National Semiconductor Corporation ADC08D1500DEV Development Board User’s Guide Development Board Instruction Manual 2


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    PDF ADC08D1500DEV XC4VLX15) ADC08D1500EVAL wv4 sot-23 atmel 602 24c02 atmel 24c02 B20 zener diode glass zener SMD A9 SMD wv4 smd glass zener diode color codes diode ZENER u22 pj 69 SMD diode smd transistor wv4

    6Bp SMD

    Abstract: 6BT SMD W17 marking code sot 23 marking w18 sot23-5 marking code E5 SMD ic sot23-5 smd marking e5 5Pin smd marking sot23 W16 smd transistor 6Bp sot marking code w17 Z5238BLT1
    Text: • The user can use the on-board clock source or provide 1.0 Design Description their own clock source and operate the ADC under various sampling frequencies ■ The analog input has two ports, one for single-ended sources and one for differential sources


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    PDF CSP-9-111S2) CSP-9-111S2. RD-143 6Bp SMD 6BT SMD W17 marking code sot 23 marking w18 sot23-5 marking code E5 SMD ic sot23-5 smd marking e5 5Pin smd marking sot23 W16 smd transistor 6Bp sot marking code w17 Z5238BLT1

    wv4 sot-23

    Abstract: smd transistor wv4 p6 wv4 71 SMD smd transistor wv4 zener SMD W9 sot 23 ADC08D1000 SMD wv4 y6 smd zener sot-23 wv4 wv4 smd
    Text: June 9, 2006 Revision B ADC08D1000DEV - Dual 8-Bit, 1.0 GSPS, 1.6W A/D Converter with Xilinx Virtex 4 XC4VLX15 FPGA Copyright 2006 National Semiconductor Corporation ADC08D1000DEV Development Board User’s Guide Development Board Instruction Manual 2


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    PDF ADC08D1000DEV XC4VLX15) ADC08D1000EVAL wv4 sot-23 smd transistor wv4 p6 wv4 71 SMD smd transistor wv4 zener SMD W9 sot 23 ADC08D1000 SMD wv4 y6 smd zener sot-23 wv4 wv4 smd

    2n3773 power Amplifier circuit diagrams

    Abstract: 10000 watt stabilizer transformer winding formula 2N3773 audio amplifier diagram lm380 equivalent LM566 "direct replacement" LM1820 LM1800 schematic diagram audio power amplifier using 2n3055 mc1349 GS 358S
    Text: Volume 2 National P R E F A C E The second volum e o f N a tio n a l's Linear A p p lic a tio n s h a n d b o o k picks up w here V o lu m e I le ft o ff. Data sheets, a p p lic a tio n briefs and p e rtin e n t articles published in th e 3 years since V o lu m e I was p rin te d are


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    AM97C11CN

    Abstract: AM9711CN LM378 equivalent SVI 3102 b LM1850 National Semiconductor LM2706 320l 78l05 lm1900 SVI 3105 B mc1458cp1 sgs
    Text: Edge Index by Function 2 l e i . Voltage Regulators Voltage References Operational Amplifiers/Buffers Instrumentation Amplifiers Voltage Comparators Analog Switches Sample and Hold A to D, D to A 8 Industrial/Automotive/Functional Blocks 9 Audio, Radio and TV Circuits


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