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    100LVEP Search Results

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    100LVEP Price and Stock

    Flip Electronics MC100LVEP210MNRG

    IC CLK BUFFER 1:5 3GHZ 32QFN
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    DigiKey MC100LVEP210MNRG Reel 30,000 40
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    Flip Electronics MC100LVEP16DR2G

    DIFFERENTIAL DRIVER / RECEIVER
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    DigiKey MC100LVEP16DR2G Reel 15,000 150
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    Flip Electronics NB100LVEP56DTG

    MULTIPLEXER, 2:1 DIFFERENTIAL, D
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    DigiKey NB100LVEP56DTG Tube 9,525 100
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    Rochester Electronics LLC MC100LVEP05DR2G

    AND/NAND GATE
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    DigiKey MC100LVEP05DR2G Bulk 2,500 139
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    onsemi MC100LVEP05DTR2G

    IC GATE AND/NAND ECL 2INP 8TSSOP
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    DigiKey MC100LVEP05DTR2G Cut Tape 2,500 1
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    Ameya Holding Limited MC100LVEP05DTR2G 2,471
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    Avnet Silica MC100LVEP05DTR2G 37 Weeks 2,500
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    Chip1Stop MC100LVEP05DTR2G 2,371
    • 1 $41.4
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    EBV Elektronik MC100LVEP05DTR2G 30 Weeks 2,500
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    Wuhan P&S MC100LVEP05DTR2G 2,371 1
    • 1 $20.16
    • 10 $20.16
    • 100 $12.87
    • 1000 $9.76
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    100LVEP Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    D1875

    Abstract: HVP16 KVP16 LVEL16 MC100LVEP16 MC10LVEP16
    Text: MC10LVEP16, 100LVEP16 2.5V / 3.3V ECL Differential Receiver/Driver The MC10/100LVEP16 is a world class differential receiver/driver. The device is functionally equivalent to the EL16, EP16 and LVEL16 devices. With output transition times significantly faster than the EL16


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    PDF MC10LVEP16, MC100LVEP16 MC10/100LVEP16 LVEL16 LVEL16, LVEP16 MC10LVEP16/D D1875 HVP16 KVP16 LVEL16 MC100LVEP16 MC10LVEP16

    EP11

    Abstract: KVP11 MC100LVEP11 MC10LVEP11 930 TSSOP8
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Description The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HVP11 MC10LVEP11/D EP11 KVP11 MC100LVEP11 MC10LVEP11 930 TSSOP8

    EP11

    Abstract: MC100LVEP11 MC10LVEP11 KU11 930 TSSOP8
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HYP11 MC10LVEP11/D EP11 MC100LVEP11 MC10LVEP11 KU11 930 TSSOP8

    100LVEP16

    Abstract: KVP16
    Text: MC10LVEP16, 100LVEP16 2.5V / 3.3V ECL Differential Receiver/Driver The MC10/100LVEP16 is a world class differential receiver/driver. The device is functionally equivalent to the EL16, EP16 and LVEL16 devices. With output transition times significantly faster than the EL16


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    PDF MC10LVEP16, MC100LVEP16 MC10/100LVEP16 LVEL16 LVEL16, LVEP16 MC10LVEP16/D 100LVEP16 KVP16

    Untitled

    Abstract: No abstract text available
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HVP11 KVP11 MC10LVEP11/D

    HVP16

    Abstract: KVP16 LVEL16 MC100LVEP16 MC10LVEP16
    Text: MC10LVEP16, 100LVEP16 2.5V / 3.3V ECL Differential Receiver/Driver The MC10/100LVEP16 is a world class differential receiver/driver. The device is functionally equivalent to the EL16, EP16 and LVEL16 devices. With output transition times significantly faster than the EL16


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    PDF MC10LVEP16, MC100LVEP16 MC10/100LVEP16 LVEL16 LVEL16, LVEP16 MC10LVEP16/D HVP16 KVP16 LVEL16 MC100LVEP16 MC10LVEP16

    single-ended I/O buffer pads differential

    Abstract: KVP11 555 ic marking 865 EP11 MC100LVEP11 MC10LVEP11
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Description The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HVP11 MC10LVEP11/D single-ended I/O buffer pads differential KVP11 555 ic marking 865 EP11 MC100LVEP11 MC10LVEP11

    TR 1225 EP11

    Abstract: KVP11 MC100LVEP11 MC10LVEP11 EP11 KU11
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3VĄECL 1:2 Differential Fanout Buffer The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HVP11 r14525 MC10LVEP11/D TR 1225 EP11 KVP11 MC100LVEP11 MC10LVEP11 EP11 KU11

    AYWW marking code IC

    Abstract: EP11 KVP11 MC100LVEP11 MC10LVEP11 transistor d 945
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Description The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HVP11 MC10LVEP11/D AYWW marking code IC EP11 KVP11 MC100LVEP11 MC10LVEP11 transistor d 945

    Untitled

    Abstract: No abstract text available
    Text: MC10LVEP16, 100LVEP16 2.5V / 3.3V ECL Differential Receiver/Driver The MC10/100LVEP16 is a world class differential receiver/driver. The device is functionally equivalent to the EL16, EP16 and LVEL16 devices. With output transition times significantly faster than the EL16


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    PDF MC10LVEP16, MC100LVEP16 MC10/100LVEP16 LVEL16 LVEL16, LVEP16 MC10LVEP16/D

    930 TSSOP8

    Abstract: No abstract text available
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HYP11 KYP11 MC10LVEP11/D 930 TSSOP8

    Untitled

    Abstract: No abstract text available
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Description The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HVP11 MC10LVEP11/D

    KVP16

    Abstract: HVP16 LVEL16 MC100LVEP16 MC10LVEP16
    Text: MC10LVEP16, 100LVEP16 2.5V / 3.3VĄECL Differential Receiver/Driver The MC10/100LVEP16 is a world class differential receiver/driver. The device is functionally equivalent to the EL16, EP16 and LVEL16 devices. With output transition times significantly faster than the EL16


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    PDF MC10LVEP16, MC100LVEP16 MC10/100LVEP16 LVEL16 LVEL16, LVEP16 r14525 MC10LVEP16/D KVP16 HVP16 LVEL16 MC100LVEP16 MC10LVEP16

    KVP11

    Abstract: EP11 MC100LVEP11 MC10LVEP11 hu11
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3VĄECL 1:2 Differential Fanout Buffer The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HVP11 r14525 MC10LVEP11/D KVP11 EP11 MC100LVEP11 MC10LVEP11 hu11

    KVP11

    Abstract: EP11 MC100LVEP11 MC10LVEP11 930 TSSOP8
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Description The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 HVP11 MC10LVEP11/D KVP11 EP11 MC100LVEP11 MC10LVEP11 930 TSSOP8

    a1760

    Abstract: No abstract text available
    Text: MC10LVEP16, 100LVEP16 2.5V / 3.3V ECL Differential Receiver/Driver Description The MC10/100LVEP16 is a world class differential receiver/driver. The device is functionally equivalent to the EL16, EP16 and LVEL16 devices. With output transition times significantly faster than the EL16


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    PDF MC10LVEP16, MC100LVEP16 MC10/100LVEP16 LVEL16 LVEL16, LVEP16 MC10LVEP16/D a1760

    datasheet of ic 555

    Abstract: IC 555 DATA Sheet IC 555 PIN CONFIGURATION IC 555 datasheet ic 555 555 ic 865 IC marking application note ic 555 data sheet book ic 555 KVP11
    Text: MC10LVEP11, 100LVEP11 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer The MC10/100LVEP11 is a differential 1:2 fanout buffer. The device is pin and functionally equivalent to the EP11 device. With AC performance the same as the EP11 device, the LVEP11 is ideal for


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    PDF MC10LVEP11, MC100LVEP11 MC10/100LVEP11 LVEP11 MC10LVEP11/D datasheet of ic 555 IC 555 DATA Sheet IC 555 PIN CONFIGURATION IC 555 datasheet ic 555 555 ic 865 IC marking application note ic 555 data sheet book ic 555 KVP11

    N100

    Abstract: NB100LVEP17 NB100LVEP17DT NB100LVEP17DTR2 NB100LVEP17MN TSSOP-20 qfn24 socket N100 transistor QFN-24
    Text: 100LVEP17 2.5V / 3.3V / 5V ECL Quad Differential Driver/Receiver The 100LVEP17 is a 4-bit differential line receiver. The design incorporates two stages of gain, internal to the device, making it an excellent choice for use in high bandwidth amplifier applications.


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    PDF NB100LVEP17 NB100LVEP17 r14525 NB100LVEP17/D N100 NB100LVEP17DT NB100LVEP17DTR2 NB100LVEP17MN TSSOP-20 qfn24 socket N100 transistor QFN-24

    LVEP221

    Abstract: NB100LVEP221 NB100LVEP221FA NB100LVEP221FAR2
    Text: 100LVEP221 2.5V/3.3V 1:20 Differential HSTL/ECL/PECL Clock Driver The 100LVEP221 is a low skew 1-to-20 differential clock driver, designed with clock distribution in mind, accepting two clock sources into an input multiplexer. The two clock inputs are differential


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    PDF NB100LVEP221 NB100LVEP221 1-to-20 LVEP221 r14525 NB100LVEP221/D NB100LVEP221FA NB100LVEP221FAR2

    MC100LVEP14

    Abstract: 100 vp14 100VP14
    Text: 100LVEP14 2.5V / 3.3V 1:5 Differential ECL/PECL/HSTL Clock Driver Description The 100LVEP14 is a low skew 1−to−5 differential driver, designed with clock distribution in mind, accepting two clock sources into an input multiplexer. The ECL/PECL input signals can be either differential or


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    PDF MC100LVEP14 MC100LVEP14 LVEP14 MC100LVEP14/D 100 vp14 100VP14

    100LVEP111

    Abstract: cmos 4000 family LVDS388 MECL10k 92lv090a FCT3805 LVEP111 MC100LVEP111 SZZA016
    Text: AND8059/D A Comparison of LVDS, CMOS, and ECL Prepared by: Fred Zlotnick ON Semiconductor http://onsemi.com APPLICATION NOTE INTRODUCTION ECL is a high performance technology that has been available for the designer since the 1960s. It has always been at least an order of magnitude better in propagation delay


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    PDF AND8059/D 1960s. 1960s, r14525 100LVEP111 cmos 4000 family LVDS388 MECL10k 92lv090a FCT3805 LVEP111 MC100LVEP111 SZZA016

    rsn 3305

    Abstract: transmission lines Twisted Pair spice model MC10EP16 100EP 0.001 MF CAPACITOR AND8020
    Text: AND8020/D Termination of ECL Logic Devices Prepared by: Paul Shockman ON Semiconductor Logic Applications Engineering http://onsemi.com APPLICATION NOTE CONTENTS OF APPLICATION NOTE Introduction – DC Termination Analysis Section 3. Thevenin Equivalent/Parallel Termination


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    PDF AND8020/D r14525 rsn 3305 transmission lines Twisted Pair spice model MC10EP16 100EP 0.001 MF CAPACITOR AND8020

    MRB20200CT

    Abstract: hp laptop charging CIRCUIT diagram mrb20200 siemens ecu wiring diagram hp laptop battery pack pinout car ecu microprocessors hp 450 laptop charging circuit diagram ericsson rectifier 100 amp CD player LASER BURN circuit diagram diagram ecu igbt ignition
    Text: Q U A R T E R L Y T E C H N O L O G Y A N D A P P L I C AT I O N S M A G A Z I N E ON-Display FOURTH QUARTER 2000 Vol. 1, No. 3 This Quarter. FEATURES Continuing Automotive Leadership 3 Power Management for 42 V Vehicles 8 Broadband Solutions 22 POWER MANAGEMENT


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    PDF ONDISPLAY4Q00/D MRB20200CT hp laptop charging CIRCUIT diagram mrb20200 siemens ecu wiring diagram hp laptop battery pack pinout car ecu microprocessors hp 450 laptop charging circuit diagram ericsson rectifier 100 amp CD player LASER BURN circuit diagram diagram ecu igbt ignition

    mps2112

    Abstract: UC3842 smps design with TL431 MPS2111 dc motor speed control tl494 TRANSISTOR MPS2112 ic equivalent book ncp1203 mosfet triggering circuit USING TL494 smps with uc3842 and tl431 SG3526 tip122 tip127 mosfet audio amp
    Text: SG388/D Rev. 4, May-2002 Master Components Selector Guide Master Components Selector Guide ON Semiconductor and are registered trademarks of Semiconductor Components Industries, LLC SCILLC . SCILLC reserves the right to make changes without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular


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    PDF SG388/D May-2002 r14525 SG388 mps2112 UC3842 smps design with TL431 MPS2111 dc motor speed control tl494 TRANSISTOR MPS2112 ic equivalent book ncp1203 mosfet triggering circuit USING TL494 smps with uc3842 and tl431 SG3526 tip122 tip127 mosfet audio amp