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    74LS04 NOT GATE IC Search Results

    74LS04 NOT GATE IC Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    7UL2T125FK Toshiba Electronic Devices & Storage Corporation One-Gate Logic(L-MOS), Buffer, SOT-765 (US8), -40 to 85 degC Visit Toshiba Electronic Devices & Storage Corporation
    7UL2T126FK Toshiba Electronic Devices & Storage Corporation One-Gate Logic(L-MOS), Buffer, SOT-765 (US8), -40 to 85 degC Visit Toshiba Electronic Devices & Storage Corporation
    7UL1G07FU Toshiba Electronic Devices & Storage Corporation One-Gate Logic(L-MOS), Non-Inverter Buffer (Open Drain), USV, -40 to 85 degC Visit Toshiba Electronic Devices & Storage Corporation
    TB67H481FTG Toshiba Electronic Devices & Storage Corporation Stepping and Brushed Motor Driver /Bipolar Type / Vout(V)=50 / Iout(A)=3.0 / IN input type / VQFN32 Visit Toshiba Electronic Devices & Storage Corporation
    TLP5702H Toshiba Electronic Devices & Storage Corporation Photocoupler (Gate Driver Coupler), High-Topr / IGBT driver, 5000 Vrms, SO6L Visit Toshiba Electronic Devices & Storage Corporation

    74LS04 NOT GATE IC Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    74ls08n

    Abstract: 74ls04n 74LS14N 74LS07N 74LS05N 74LS11N 74ls06n 74LS02N IC 74LS14 74ls04 hex inverter
    Text: Standard Logic Call us to see if you can save 10-20%. 74F Series Continued – General purpose family of high speed advanced bipolar logic DIP SOIC Save Up To 20% When Purchasing Texas Instruments Products. Save Up To 30%! Jameco Value Offering Jameco now offers two ways to save! Our selection of Texas Instruments products will save you


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    PDF 74LS14N* 74ls08n 74ls04n 74LS14N 74LS07N 74LS05N 74LS11N 74ls06n 74LS02N IC 74LS14 74ls04 hex inverter

    M54HCT04

    Abstract: M54HCT04F1R M74HCT04 M74HCT04B1R M74HCT04C1R M74HCT04M1R
    Text: M54HCT04 M74HCT04 HEX INVERTER . . . . . . . HIGH SPEED tPD = 8 ns TYP. AT VCC = 5 V LOW POWER DISSIPATION ICC = 1 µA (MAX.) AT TA = 25 °C COMPATIBLE WITH TTL OUTPUTS VIH = 2V (MIN.) VIL = 0.8V (MAX) OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS SYMMETRICAL OUTPUT IMPEDANCE


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    PDF M54HCT04 M74HCT04 54/74LS04 M54/74HCT04 M54HCT04 M54HCT04F1R M74HCT04 M74HCT04B1R M74HCT04C1R M74HCT04M1R

    8085 microprocessor

    Abstract: intel 8085 microprocessor IC 74ls138 8085 memory organization 74LS373 Decoder 8085 microprocessor Datasheet 8085 microprocesor ic 74ls138 information interfacing of ram with 8085 intel 8085
    Text: Designing with the Avago Technologies HDSP-211x Smart Display Family Application Note 1033 Introduction Avago Technologies’ smart alphanumeric display, the HDSP-211x, is built to optimize the user’s display design. Each HDSP-211x has an on-board CMOS IC which


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    PDF HDSP-211x HDSP-211x, HDSP-211x 5988-5632EN 8085 microprocessor intel 8085 microprocessor IC 74ls138 8085 memory organization 74LS373 Decoder 8085 microprocessor Datasheet 8085 microprocesor ic 74ls138 information interfacing of ram with 8085 intel 8085

    M54HCT04

    Abstract: M54HCT04F1R M74HCT04 M74HCT04B1R M74HCT04C1R M74HCT04M1R 74LS04 Hex Inverter Gate function table IC - 74LS04 74LS04 dip14
    Text: M54HCT04 M74HCT04 HEX INVERTER . . . . . . . HIGH SPEED tPD = 8 ns TYP. AT VCC = 5 V LOW POWER DISSIPATION ICC = 1 µA (MAX.) AT TA = 25 °C COMPATIBLE WITH TTL OUTPUTS VIH = 2V (MIN.) VIL = 0.8V (MAX) OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS SYMMETRICAL OUTPUT IMPEDANCE


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    PDF M54HCT04 M74HCT04 54/74LS04 M54/74HCT04 M54HCT04 M54HCT04F1R M74HCT04 M74HCT04B1R M74HCT04C1R M74HCT04M1R 74LS04 Hex Inverter Gate function table IC - 74LS04 74LS04 dip14

    intel 8085 microprocessor

    Abstract: 8085 memory organization 8085 microprocessor 74LS373 Decoder latch used for 8085 ic 74ls138 8085 clock circuit 8085 hardware reset 74LS138 decoder 8085 microprocessor application
    Text: Designing with the HDSP-211X Smart Display Family Application Note 1033 Introduction Hewlett-Packard’s smart alphanumeric display, the HDSP-211X, is built to optimize the user’s display design. Each HDSP-211X has an on-board CMOS IC which displays eight alphanumeric characters. The


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    PDF HDSP-211X HDSP-211X, intel 8085 microprocessor 8085 memory organization 8085 microprocessor 74LS373 Decoder latch used for 8085 ic 74ls138 8085 clock circuit 8085 hardware reset 74LS138 decoder 8085 microprocessor application

    M74HC04B1

    Abstract: M74HC04M1R M74HC04 M74HC04B1R 74ls04 hex M54HC04 M54HC04F1R M74HC04C1R
    Text: M54HC04 M74HC04 HEX INVERTER . . . . . . . . HIGH SPEED tPD = 6 ns TYP. AT VCC = 5 V LOW POWER DISSIPATION ICC = 1 µA (MAX.) AT TA = 25 °C HIGH NOISE IMMUNITY VNIH = VNIL = 28 % VCC (MIN.) OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS SYMMETRICAL OUTPUT IMPEDANCE


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    PDF M54HC04 M74HC04 54/74LS04 M54HC04F1R M74HC04M1R M74HC04B1R M74HC04C1R M54/74HC04 M74HC04B1 M74HC04M1R M74HC04 M74HC04B1R 74ls04 hex M54HC04 M54HC04F1R M74HC04C1R

    2N3904 TRANSISTOR using darlington amplifier

    Abstract: crystal 20Mhz of 2n3904 10mhz crystal oscillator 74LS04 as colpitts oscillator 74LS04 LT1034 20MHz quartz crystal crystal oscillator 4049 LT1011
    Text: Application Note 12 October 1985 Circuit Techniques for Clock Sources Jim Williams Almost all digital or communication systems require some form of clock source. Generating accurate and stable clock signals is often a difficult design problem. Quartz crystals are the basis for most clock sources. The


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    PDF 50ppm an25fa AN12-8 2N3904 TRANSISTOR using darlington amplifier crystal 20Mhz of 2n3904 10mhz crystal oscillator 74LS04 as colpitts oscillator 74LS04 LT1034 20MHz quartz crystal crystal oscillator 4049 LT1011

    M74HC04M1R

    Abstract: M74HC04 M74HC04B1R M54HC04 M54HC04F1R M74HC04C1R 74LS04 dip14
    Text: M54HC04 M74HC04 HEX INVERTER . . . . . . . . HIGH SPEED tPD = 6 ns TYP. AT VCC = 5 V LOW POWER DISSIPATION ICC = 1 µA (MAX.) AT TA = 25 °C HIGH NOISE IMMUNITY VNIH = VNIL = 28 % VCC (MIN.) OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS SYMMETRICAL OUTPUT IMPEDANCE


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    PDF M54HC04 M74HC04 54/74LS04 M54HC04F1R M74HC04M1R M74HC04B1R M74HC04C1R M54/74HC04 M74HC04M1R M74HC04 M74HC04B1R M54HC04 M54HC04F1R M74HC04C1R 74LS04 dip14

    Z80h

    Abstract: TDA 718 z80b 74LS74 timing diagram Z80B-CPU Z850 74ls74 timing setup hold z80a cpu Z850D 74LS164M
    Text: A p p l ic a t io n N o t e <£ZiI£3G INTERFACING Z80 CPUS TO THE Z8500 P e rip h e ra l fa m ily INTRODUCTION Data Bus Signals The Z8500 Family consists of universal peripherals that can interface to a variety of microprocessor systems that use a non-multiplexed address and


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    PDF Z8500 00-2013-A0) Z8530 Z8536 Z8038 Z80h TDA 718 z80b 74LS74 timing diagram Z80B-CPU Z850 74ls74 timing setup hold z80a cpu Z850D 74LS164M

    M74HC04

    Abstract: No abstract text available
    Text: / = T M 5 4 H C 04 M 7 4 H C 04 S G S -T H O M S O N ^ 7 # RiflD g[S i[LIl(gM RDD©i HEX INVERTER HIGH SPEED tpD = 8 ns (TYP.) at Vcc = 5V LOW POWER DISSIPATION Ice = 1 /*A (MAX.) at TA = 25°C HIGH NOISE IMMUNITY V n IH = VnIL= 280/0 VCC (MIN.) OUTPUT DRIVE CAPABILITY


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    PDF 54/74LS04 M54HC04 M74HC04

    IC 74hct04 pin diagram

    Abstract: ALH IC 74LS04 Hex Inverter Gate function table lc1235
    Text: r r z S GS-THOMSON Ä 7# M54HCT04 M74HCT04 HEX INVERTER • HIGH SPEED tPD = 8 ns TYP. AT Vcc = 5 V ■ LOW POWER DISSIPATION Ice = 1 |iA (MAX.) AT Ta = 25 "C ■ COMPATIBLE WITH TTL OUTPUTS ViH = 2V (MIN.) ViL = 0.8V (MAX) ■ OUTPUT DRIVE CAPABILITY 10 LSTTLLOADS


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    PDF M54HCT04 M74HCT04 54/74LS04 M54/74HCT04 IC 74hct04 pin diagram ALH IC 74LS04 Hex Inverter Gate function table lc1235

    Untitled

    Abstract: No abstract text available
    Text: n r z SGS-THOMSON « M E IL iO T O M S M:54HCT04 M74HCT04 HEX INVERTER • HIGH SPEED tpD - 8 ns TYP. AT Vcc = 5 V . LOW POWER DISSIPATION Ice = 1 nA (MAX.) AT T a = 25 "C ■ COMPATIBLE WITH TTL OUTPUTS V ih = 2V (MIN.) V il = 0.8V (MAX) ■ OUTPUT DRIVE CAPABILITY


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    PDF 4HCT04 M74HCT04 54/74LS04 54HCT04F1R 74HCT04M 74HCT04B1R M74HCT04C1R M54/74HCT04

    M74HC04

    Abstract: No abstract text available
    Text: SGS-THOMSON IM iM lILiO TO K S M54HC04 M74HC04 HEX INVERTER • HIGH SPEED tPD = 6 ns TYP. AT Vcc = 5 V ■ LOW POWER DISSIPATION Icc = 1 |iA (MAX.) AT T a = 25 "C ■ HIGH NOISE IMMUNITY Vnih = V n il = 28 % V cc (MIN.) ■ OUTPUT DRIVE CAPABILITY 1 0 LSTTLLOADS


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    PDF M54HC04 M74HC04 54/74LS04 54HC04F1R 74HC04M 74HC04B1R 74HC04C1R M54/74HC04 M74HC04

    74HC04M

    Abstract: 54HC04 M74HC04M1R truth 74ls04 54HC04F 74LS04 Hex Inverter 74HC04C 74hc04b1r
    Text: r z 7 S G S -T tfO M S O N Ä 7 # RÆ«@ [iLiOT KS M 54HC04 M74HC04 HEX INVERTER • HIGHSPEED tpD = 6 ns TYP. AT Vcc = 5 V ■ LO W POWER DISSIPATION Icc = 1 HA (MAX.) AT T a = 25 °C ■ HIGH NOISE IMMUNITY V nih = V nil = 28 % V c c (MIN.) ■ OUTPUT DRIVE CAPABILITY


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    PDF 54HC04 M74HC04 54HC04F1R 74HC04M 04B1R 74HC04C1R 54/74LS04 M54/74HC04 M74HC04M1R truth 74ls04 54HC04F 74LS04 Hex Inverter 74HC04C 74hc04b1r

    68HC24

    Abstract: 14049UB mc14000 series 74LS240-74HC240 74LS04 Hex Inverter Gate function table 74LS04 NOT gate MC14049 IC AN1102 motorola AN1102-D CMOS IC 4069UB
    Text: by AN1102/D MOTOROLA SEMICONDUCTOR APPLICATION NOTE AN1102 Interfacing Power MOSFETs to Logic Devices Prepared by Ken Berringer Motorola Discrete Applications POWER MOSFET DRIVE CHARACTERISTICS Power M OSFETs are commonly used in switching applica­ tions due to their fast switching speeds and low static losses.


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    PDF AN1102/D AN1102 25178T AN1102/D 68HC24 14049UB mc14000 series 74LS240-74HC240 74LS04 Hex Inverter Gate function table 74LS04 NOT gate MC14049 IC AN1102 motorola AN1102-D CMOS IC 4069UB

    74HCU04 equivalent

    Abstract: M74HCU04
    Text: GL SGSTHO M SON ¡iD g (S i[Li ?®©RiO©i M54HCU04 M74HCU04 HEX INVERTER (SINGLE STAGE) HIGH SPEED tpo = 5ns (TYP.) at Vcc = 5V LOW POWER DISSIPATION Ice = 1 M (MAX.) at Ta = 25°C OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS BALANCED PROPAGATION DELAYS tPLH = tp H L


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    PDF M54HCU04 M74HCU04 54/74LS04 M54/74HCU04 inp16 74HCU04 equivalent M74HCU04

    Untitled

    Abstract: No abstract text available
    Text: M54HCT04 M74HCT04 H Z J SCS-THOM SON Ä 7#„ ÜIO gls! IILIlÊîls!©R!IDIgS HEX INVERTER • LOW POWER DISSIPATION Ice = 1 pA (MAX. at Ta = 25°C ■ HIGH NOISE IMMUNITY V NIH = VNIL « 28% VCC (MIN.) ■ OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS ■ SYMMETRICAL OUTPUT IMPEDANCE


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    PDF M54HCT04 M74HCT04 54/74LS04 M54/74HCT04

    M74HCU04

    Abstract: No abstract text available
    Text: Sb E G ì D • GD3T75G 3 0 e ■ S G T H S G S -T H O M S O N DMflD IS [l[LE gTriS©ROÖ©S M54HCU04 M74HCU04 S G S-THOMSON T - H 3 - ~ Z l HEX INVERTER (SINGLE STAGE) ■ HIGH SPEED tpD = 5ns (TYP.) at Vcc = 5V ■ LOW POWER DISSIPATION IC C = 1 ^ (M AX) a t t A = 25°C


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    PDF GD3T75G M54HCU04 M74HCU04 54/74LS04 M54HCU04 M74HCU04â M74HCU04

    Untitled

    Abstract: No abstract text available
    Text: M54HCT04 M74HCT04 r Z J SGS-THOMSON HEX INVERTER • LOW POW ER DISSIPATION Ic e = 1 MAX. at T a = 2 5 °C ■ HIGH NOISE IM M U NITY Vfsim = V N|L = 2 8 % VCc (MIN.) ■ SYM M ETRICAL O U TPU T IMPEDANCE IIo h I = Io l = 4 mA (MIN.) 1 B IN Plastic Package


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    PDF M54HCT04 M74HCT04 54/74LS04 M54/74HCT04 M54HCT04 M74HCT04

    M74HCT04

    Abstract: 54HC 74HC M54HCT04 NOT gate 74LS04 sgs 74LS04 PIN
    Text: M 54HCT04 M 74H C T04 / = T S G S -T H O M S O N ^7# R ô ^©[E[L[l gïï^©Rilô(êi HEX INVERTER • LOW POW ER DISSIPATION Ic e = 1 (MAX. at T a = 2 5 °C ■ HIGH NOISE IM M UN ITY Vfsim = V N|L = 2 8 % VCc (MIN.) ■ SYMM ETRICAL O U TPU T IM PEDANCE


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    PDF M54HCT04 M74HCT04 54/74LS04 M54/74HCT04 -40to85oc 55to125Â M74HCT04 54HC 74HC NOT gate 74LS04 sgs 74LS04 PIN

    M74HC04B1N

    Abstract: M74HC04 74HC04 NOT GATE IC 74HC04 74HC04 54HC 74HC M54HC04 74LS04 NOT GATE
    Text: /= T M 54HC04 M74HC04 S G S -T H O M S O N RiflD [S©i[LIl©TnS RDD©^ HEX INVERTER HIGH SPEED = 8 ns TYP. at V c c = 5V LOW POWER DISSIPATION ICC = 1 /*A (MAX.) at TA = 25°C HIGH NOISE IMMUNITY V m h = V NIL= 28% VCc (MIN.) OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS


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    PDF M54HC04 M74HC04 54/74LS04 M54/74HC04 M74HC04B1N M74HC04 74HC04 NOT GATE IC 74HC04 74HC04 54HC 74HC 74LS04 NOT GATE

    GG3L

    Abstract: No abstract text available
    Text: SbE J> m 7T2TE37 GG3li74b 'ÎSB • S G T H SCS-THOMSON ' S G M54HCT04 M74HCT04 S-THOMSON HEX INVERTER ■ LOW POWER DISSIPATION Ice = 1 MAX. at Ta = 25°C ■ HIGH NOISE IMMUNITY V n IH = VNIL = 28% Vcc (MIN.) ■ OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS


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    PDF 7T2TE37 M54HCT04 M74HCT04 54/74LS04 M54/74HCT04 55to125l GG3L

    54HCT04f

    Abstract: t04c 74h ttl inverter or gate 54HCT04
    Text: S G S -T H O M S O N jL iM s iO (g S m s 4 H C T 04 M 7 4 H C T 04 HEX INVERTER • HIG HSPEED 1pd = 8 ns (TYP.) AT Vcc = 5 V ■ LOW POWER DISSIPATION Ice = 1 |iA (MAX.) A T T a = 25°C ■ COMPATIBLE WITH TTL OUTPUTS V ih = 2V (MIN.) V il = 0.8V (MAX)


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    PDF 54/74LS04 M54/74HCT04 54HCT04f t04c 74h ttl inverter or gate 54HCT04

    ZO125

    Abstract: transistor c373 74HC244 HD74HC273 74hc123 application notes lm 74ls04 74L 74H 74S 3T5T PNP power transistors by hitachi HD74HC04
    Text: Application Note 1. Input Protection Circuit An Si-gate process is applied to Hitachi's high-speed CMOS input protection resistor as shown in Figure 1a , input over­ logic ICs. They have a thinner gate oxide compared to conven­ current flows directly to the power supply and the destruction


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    PDF HD74BC HD74AC HD74BC! HD74BC245AT ZO125 transistor c373 74HC244 HD74HC273 74hc123 application notes lm 74ls04 74L 74H 74S 3T5T PNP power transistors by hitachi HD74HC04