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    NC7SZ08L6X Search Results

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    NC7SZ08L6X Price and Stock

    onsemi NC7SZ08L6X

    IC GATE AND 1CH 2-INP 6MICROPAK
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    DigiKey NC7SZ08L6X Reel 60,000 5,000
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    NC7SZ08L6X Cut Tape 4,270 1
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    NC7SZ08L6X Digi-Reel 1
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    Mouser Electronics NC7SZ08L6X
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    Avnet Asia NC7SZ08L6X 18 Weeks 10,000
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    Flip Electronics NC7SZ08L6X 135,000
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    Flip Electronics NC7SZ08L6X-L22175

    IC GATE AND 1CH 2-INP 6MICROPAK
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    DigiKey NC7SZ08L6X-L22175 Reel 35,000 7,000
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    Rochester Electronics LLC NC7SZ08L6X

    IC GATE AND 1CH 2-INP 6MICROPAK
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    onsemi NC7SZ08L6X-L22175

    IC GATE AND 1CH 2-INP 6MICROPAK
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    Avnet Americas NC7SZ08L6X-L22175 Reel 0 Weeks, 2 Days 8,621
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    NC7SZ08L6X-L22175 Reel 10,000
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    Mouser Electronics NC7SZ08L6X-L22175 4,775
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    Flip Electronics NC7SZ08L6X-L22175 65,000
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    Fairchild Semiconductor Corporation NC7SZ08L6X

    AND Gate, LVC/LCX/Z Series, 1-Func, 2-Input, CMOS, PDSO6
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    Rochester Electronics NC7SZ08L6X 21,469 1
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    NC7SZ08L6X Datasheets (2)

    Part ECAD Model Manufacturer Description Curated Type PDF
    NC7SZ08L6X Fairchild Semiconductor TinyLogic UHS 2-Input AND Gate Original PDF
    NC7SZ08L6X Fairchild Semiconductor TinyLogic UHS 2-Input AND Gate; Package: MicroPak; No of Pins: 6; Container: Tape & Reel Original PDF

    NC7SZ08L6X Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    Untitled

    Abstract: No abstract text available
    Text: 1 2 3 4 5 6 A A TP40 Keystone 5015 5V U10 NC7SZ08L6X 2 5VHS 33 Ohm C20 100nF, 25V R13 Y DNP J10 U20 LM5113 Lin 4 3 2 1 Hin 5V D10 40V 30mA C14 100pF, 25V C12 100nF, 25V .1" Male Vert. 1 GUL 1 GUH GUL 5 SWNode R40 2 1 Ohm 5VHS 3 4 Vsup J40 GUH SWNode 2 Vsup


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    PDF NC7SZ08L6X 100nF, 100pF, LM5113 70VDC EPC2015 NC7SZ00L6Xn

    5555 FAIRCHILD optocoupler

    Abstract: MC74HC374N 74hc14n equivalent NC7S125M5 14069 HCF4541BEY APPLICATION HCF4013BE 4026 fairchild datasheet 14543 motorola Motorola DM74LS139N
    Text: R E L I A B L E . L O G I C . I N N O V A T I O N . Logic Cross-Reference Logic Cross-Reference 2003 Texas Instruments Printed in the U.S.A. by Texoma Business Forms, Durant, Oklahoma Printed on recycled paper. SCYB017A NEW First Revision Logic Cross-Reference


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    PDF SCYB017A A010203 5555 FAIRCHILD optocoupler MC74HC374N 74hc14n equivalent NC7S125M5 14069 HCF4541BEY APPLICATION HCF4013BE 4026 fairchild datasheet 14543 motorola Motorola DM74LS139N

    7Z08

    Abstract: NC7SZ08P5X-NL Programmable Voltage mark mo sc70 JEDEC J-STD-020B NC7SZ08P5X nc7sz08 MA05B NC7SZ08L6X NC7SZ08M5 NC7SZ08M5X
    Text: NC7SZ08 TinyLogic UHS 2-Input AND Gate tm Features General Description • Space saving SOT23 or SC70 5-lead package The NC7SZ08 is a single 2-Input AND Gate from Fairchild’s Ultra High Speed Series of TinyLogic®. The device is fabricated with advanced CMOS technology to


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    PDF NC7SZ08 NC7SZ08 7Z08 NC7SZ08P5X-NL Programmable Voltage mark mo sc70 JEDEC J-STD-020B NC7SZ08P5X MA05B NC7SZ08L6X NC7SZ08M5 NC7SZ08M5X

    Untitled

    Abstract: No abstract text available
    Text: NOTE. The EPC9006 development board does not have any current or thermal protection on board. Figure 4: Typical Waveforms for VIN = 48 V to 5 V/5 A 1000kHz Buck converter CH1: VPWM Input voltage – CH2: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage


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    PDF EPC9006 1000kHz) EPC2007

    stackpole potentiometer

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/14 A 500 kHz Buck converter CH1: Switch node voltage (VSW) - CH2: PWM input voltage (VPWM) NOTE. The EPC9017 development board does not have any current or thermal protection on board. Figure 3: Proper Measurement of Switch Node – VSW


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    PDF EPC9017 EPC2001 stackpole potentiometer

    7z08

    Abstract: NC7SZ08M5X JESD22-A114 MO-178 NC7SZ08 NC7SZ08FHX NC7SZ08L6X NC7SZ08P5X SC70-5
    Text: NC7SZ08 TinyLogic UHS Two-Input AND Gate Features Description ƒ Ultra-High Speed: tPD 2.7ns Typical into 50pF at 5V VCC ƒ ƒ ƒ ƒ ƒ High Output Drive: ±24mA at 3V VCC The NC7SZ08 is a single two-input AND gate from Fairchild’s Ultra-High Speed (UHS) series of


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    PDF NC7SZ08 NC7SZ08 7z08 NC7SZ08M5X JESD22-A114 MO-178 NC7SZ08FHX NC7SZ08L6X NC7SZ08P5X SC70-5

    Untitled

    Abstract: No abstract text available
    Text: Figure 3: Proper Measurement of Switch Node – OUT Figure 4: Typical Waveforms for VIN = 48 V to 5 V/7 A 500kHz Buck converter CH1: Switch node voltage (VSW) - CH2: PWM input voltage (VPWM) NOTE. The EPC9002 development board does not have any current or thermal protection on board.


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    PDF 500kHz) EPC9002 EPC2001

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 24 V to 1.2 V/15 A 500kHz Buck converter CH1: VPWM Input voltage – CH3: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9001 development board does not have any current or thermal protection on board.


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    PDF 500kHz) EPC9001 EPC2015

    7Z08

    Abstract: NC7SZ08P5X_NL NC7SZ08M5X SOT23-5 MARK R50 SOT23 JEDEC JA SOT23 R50 SOT23 NC7SZ08 NC7SZ08L6X NC7SZ08M5
    Text: Revised February 2005 NC7SZ08 TinyLogic£ UHS 2-Input AND Gate General Description Features The NC7SZ08 is a single 2-Input AND Gate from Fairchild's Ultra High Speed Series of TinyLogic£. The device is fabricated with advanced CMOS technology to achieve ultra high speed with high output drive while maintaining low static power dissipation over a very broad VCC


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    PDF NC7SZ08 NC7SZ08 7Z08 NC7SZ08P5X_NL NC7SZ08M5X SOT23-5 MARK R50 SOT23 JEDEC JA SOT23 R50 SOT23 NC7SZ08L6X NC7SZ08M5

    Untitled

    Abstract: No abstract text available
    Text: 1 A 2 4 3 5 6 A 7 - 12 Vdc U3 MCP1703 J1 8 1 2 7 CON2 C4 1uF, 25V 6 OUT NC NC NC NC GND 1 VCC 2 C11 1uF, 25V 3 C4 1uF, 25V 4 9 GND 5 IN NC A 1 2 3 4 VDD D5 D4 D3 D2 4 3 2 1 11 9 B J6 CON4 R11 Zero VDD HB HOH HS HOL 10 C16 4.7uF, 50V D6 Optional LOH 11 EPC2015


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    PDF MCP1703 EPC2015 03U40 LM5113 NC7SZ08L6X NC7SZ00L6X

    NC7SZ08P5X

    Abstract: MARK Z08 NC7SZ08M5X
    Text: Revised August 2004 NC7SZ08 TinyLogic UHS 2-Input AND Gate General Description Features The NC7SZ08 is a single 2-Input AND Gate from Fairchild’s Ultra High Speed Series of TinyLogic. The device is fabricated with advanced CMOS technology to achieve ultra high speed with high output drive while maintaining low static power dissipation over a very broad VCC


    Original
    PDF NC7SZ08 NC7SZ08P5X MARK Z08 NC7SZ08M5X

    CD4558

    Abstract: NC7S125 MC74F138N HCF4541 Motorola MC74HC251N 74ACT161 DHVQFN-20 74V1G08 SOT323/5 HCF4017 SN74ACT14DR
    Text: Logic Cross-Reference Introduction This Logic Cross-Reference for Buyers, Distribution Specialists and others with an interest in Logic will assist in finding a device made by Texas Instruments that is identical or similar to many of our competitors’ Logic products.


    Original
    PDF 74ABT16244 A010203 53001cov SCYB017 CD4558 NC7S125 MC74F138N HCF4541 Motorola MC74HC251N 74ACT161 DHVQFN-20 74V1G08 SOT323/5 HCF4017 SN74ACT14DR

    Untitled

    Abstract: No abstract text available
    Text: NC7SZ08 TinyLogic UHS Two-Input AND Gate Features Description ̇ Ultra-High Speed: tPD 2.7ns Typical into 50pF at 5V VCC ̇ ̇ ̇ ̇ ̇ High Output Drive: ±24mA at 3V VCC The NC7SZ08 is a single two-input AND gate from Fairchild’s Ultra-High Speed (UHS) series of


    Original
    PDF NC7SZ08 NC7SZ08

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/7 A 1000kHz Buck converter CH1: VPWM Input voltage – CH2: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9010 development board does not have any current or thermal protection on board.


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    PDF 1000kHz) EPC9010 EPC2016

    SS8410BB

    Abstract: No abstract text available
    Text: 1 2 4 3 5 6 7 - 12 Vdc J1 1 2 A CON2 U3 IN OUT 1 7 NC NC 2 6 NC NC 3 5 NC GND 4 VCC A C11 1uF, 25V C4 1uF, 25V 9 GND C10 1uF, 25V 8 MCP1703 U13 EN C18 OPT IN NC GND D3 BAV21 OUT OPT TP2 Keystone 5015 J5 CON4 PWM1 1 B 2 B 3 GND VCC 6 VDD U2 6 C2 1uF, 25V 5 5


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    PDF MCP1703 BAV21 EPC2010 LM5114MF SS8410BB NC7SZ00L6X NC7SZ08L6X SDM03U40 SS8410BB

    EPC2001

    Abstract: EPC9002 rmcf0603ft10k0 EPC-200 HMK325B7225K j6 con4 03U40 stackpole potentiometer LM5113
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/7 A 500kHz Buck converter CH1: VPWM Input voltage – CH3: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9002 development board does not have any current or thermal protection on board.


    Original
    PDF EPC9002 EPC2001 EPC2001 rmcf0603ft10k0 EPC-200 HMK325B7225K j6 con4 03U40 stackpole potentiometer LM5113

    J5 controller board circuit diagram

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/35 A 300 kHz Buck converter CH1: PWM input voltage (VPWM) – CH4: Switch node voltage (VSW) NOTE. The EPC9013 development board does not have any current or thermal protection on board. Figure 3: Proper Measurement of Switch Node – VSW


    Original
    PDF EPC9013 EPC2001 J5 controller board circuit diagram

    Untitled

    Abstract: No abstract text available
    Text: NOTE. The EPC9005 development board does not have any current or thermal protection on board. The EPC9005 development board showcases the EPC2014 eGaN FET. Although the electrical performance surpasses that for traditional silicon devices, their relatively smaller size does magnify the thermal management requirements. The EPC9005 is intended for bench evaluation with low


    Original
    PDF EPC9005 EPC2014 1000kHz)

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 24 V to 1.2 V/25 A 1000kHz Buck converter CH2: Switch node voltage (VSW) – CH4: PWM input voltage (VPWM) NOTE. The EPC9016 development board does not have any current or thermal protection on board. Figure 3: Proper Measurement of Switch Node – VSW


    Original
    PDF 1000kHz) EPC9016 EPC2015

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Waveforms for VIN = 150 V to 5 V/5 A 100kHz Buck converter CH1: VPWM Input voltage – CH2: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9003 development board does not have any current or thermal protection on board.


    Original
    PDF 100kHz) EPC9003 EPC2010

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 28 V to 3.3 V/4 A 5 MHz Buck converter CH2: (VOUT) Switch node voltage –– CH4: VPWM Input voltage NOTE. The EPC9027 development board does not have any current or thermal protection on board. Figure 3: Proper Measurement of Switch Node – OUT


    Original
    PDF EPC9027 EPC8007

    MC0628R

    Abstract: 40373 74hc14n equivalent 4046 application note philips HCF4060BE HCF4017BE SN74121 application note MC74HC373DW mc0628 HCF4053BE
    Text: R E L I A B L E . L O G I C . I N N O V A T I O N . Logic Cross-Reference Logic Cross-Reference 2003 Texas Instruments Printed in the U.S.A. by Texoma Business Forms, Durant, Oklahoma Printed on recycled paper. SCYB017A NEW First Revision Logic Cross-Reference


    Original
    PDF SCYB017A T74ALVC32374 74CBTLV16211 SN74CBTD16211 SN74SSTV16859 SN74CBTLV16211GRDR SN74ALVC16245AGRDR -SN74SSTV16859GKER MC0628R 40373 74hc14n equivalent 4046 application note philips HCF4060BE HCF4017BE SN74121 application note MC74HC373DW mc0628 HCF4053BE

    Untitled

    Abstract: No abstract text available
    Text: NC7SZ08 TinyLogic UHS 2-Input AND Gate Features General Description • Space saving SOT23 or SC70 5-lead package The NC7SZ08 is a single 2-Input AND Gate from Fairchild’s Ultra High Speed Series of TinyLogic®. The device is fabricated with advanced CMOS technology to


    Original
    PDF NC7SZ08

    NC7SZ08M5X

    Abstract: 7z08 MA05B MO-178 NC7SZ08 NC7SZ08L6X NC7SZ08P5X
    Text: Revised September 2001 NC7SZ08 TinyLogic UHS 2-Input AND Gate General Description Features The NC7SZ08 is a single 2-Input AND Gate from Fairchild’s Ultra High Speed Series of TinyLogic. The device is fabricated with advanced CMOS technology to achieve ultra high speed with high output drive while maintaining low static power dissipation over a very broad VCC


    Original
    PDF NC7SZ08 NC7SZ08 NC7SZ08M5X 7z08 MA05B MO-178 NC7SZ08L6X NC7SZ08P5X