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    MC10LVEP11 Price and Stock

    Rochester Electronics LLC MC10LVEP11DG

    IC CLK BUFFER 1:2 3GHZ 8SOIC
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    DigiKey MC10LVEP11DG Tube 30,109 70
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    Rochester Electronics LLC MC10LVEP11D

    IC CLK BUFFER 1:2 8SOIC
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    DigiKey MC10LVEP11D Tube 17,260 134
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    Rochester Electronics LLC MC10LVEP11DT

    IC CLK BUFFER 1:2 8TSSOP
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    DigiKey MC10LVEP11DT Tube 6,673 134
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    Rochester Electronics LLC MC10LVEP11DR2

    IC CLK BUFFER 1:2 3GHZ 8SOIC
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    DigiKey MC10LVEP11DR2 Bulk 4,600 134
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    onsemi MC10LVEP11DR2G

    IC CLK BUFFER 1:2 3GHZ 8SOIC
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    DigiKey MC10LVEP11DR2G Digi-Reel 2,480 1
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    MC10LVEP11DR2G Cut Tape 2,480 1
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    MC10LVEP11DR2G Reel 2,500
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    Avnet Americas MC10LVEP11DR2G Reel 31 Weeks 2,500
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    Mouser Electronics MC10LVEP11DR2G
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    Newark MC10LVEP11DR2G Reel 2,500
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    Onlinecomponents.com MC10LVEP11DR2G
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    Rochester Electronics MC10LVEP11DR2G 29,713 1
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    Avnet Silica MC10LVEP11DR2G 32 Weeks 2,500
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    MC10LVEP11 Datasheets (17)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    MC10LVEP11 On Semiconductor 2.5V - 3.3V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11 On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11 On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11D On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11D On Semiconductor 2.5 V/3.3 V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11D On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer; Package: SOIC-8 Narrow Body; No of Pins: 8; Container: Rail; Qty per Container: 98 Original PDF
    MC10LVEP11-D On Semiconductor 2.5V - 3.3V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11DG On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer; Package: SOIC-8 Narrow Body; No of Pins: 8; Container: Rail; Qty per Container: 98 Original PDF
    MC10LVEP11DR2 On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer; Package: SOIC-8 Narrow Body; No of Pins: 8; Container: Tape and Reel; Qty per Container: 2500 Original PDF
    MC10LVEP11DR2 On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11DR2G On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer; Package: SOIC-8 Narrow Body; No of Pins: 8; Container: Tape and Reel; Qty per Container: 2500 Original PDF
    MC10LVEP11DT On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer; Package: TSSOP 8 3.0x3.0x0.95 mm; No of Pins: 8; Container: Rail; Qty per Container: 100 Original PDF
    MC10LVEP11DT On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11DTG On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer; Package: TSSOP 8 3.0x3.0x0.95 mm; No of Pins: 8; Container: Rail; Qty per Container: 100 Original PDF
    MC10LVEP11DTR2 ON Semiconductor Clock/Timing - Clock Buffers, Drivers, Integrated Circuits (ICs), IC CLK BUFFER 1:2 3GHZ 8TSSOP Original PDF
    MC10LVEP11DTR2 On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer Original PDF
    MC10LVEP11DTR2G On Semiconductor 2.5V / 3.3V ECL 1:2 Differential Fanout Buffer; Package: TSSOP 8 3.0x3.0x0.95 mm; No of Pins: 8; Container: Tape and Reel; Qty per Container: 2500 Original PDF

    MC10LVEP11 Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    EP11

    Abstract: KVP11 MC100LVEP11 MC10LVEP11 930 TSSOP8
    Text: MC10LVEP11, MC100LVEP11 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

    MAX9320

    Abstract: MAX9320A MAX9320AEKA-T MAX9320EKA-T MAX9320ESA MAX9320EUA MC10LVEP11
    Text: 19-2201; Rev 2; 11/02 1:2 Differential LVPECL/LVECL/HSTL Clock and Data Drivers Features ♦ Improved Second Source of the MC10LVEP11 MAX9320 ♦ +2.25V to +3.8V Differential HSTL/LVPECL Operation ♦ -2.25V to -3.8V LVECL Operation ♦ Low 22mA (typ) Supply Current


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    PDF MC10LVEP11 MAX9320) 208ps 300mV MAX9320/MAX9320A MAX9320 MAX9320A MAX9320AEKA-T MAX9320EKA-T MAX9320ESA MAX9320EUA MC10LVEP11

    EP11

    Abstract: MC100LVEP11 MC10LVEP11 KU11 930 TSSOP8
    Text: MC10LVEP11, MC100LVEP11 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


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

    HVP11

    Abstract: HU11
    Text: MC10LVEP11 Product Preview Low Voltage 1:2 Differential Fanout Buffer The MC10LVEP11 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


    Original
    PDF MC10LVEP11 MC10LVEP11 LVEP11 HVP11 220ps r14525 MC10LVEP11/D HU11

    Untitled

    Abstract: No abstract text available
    Text: MC10LVEP11, MC100LVEP11 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


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

    single-ended I/O buffer pads differential

    Abstract: KVP11 555 ic marking 865 EP11 MC100LVEP11 MC10LVEP11
    Text: MC10LVEP11, MC100LVEP11 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


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

    MAX9320

    Abstract: MAX9320A MAX9320AEKA MAX9320EKA-T MAX9320ESA MAX9320EUA MC10LVEP11
    Text: 19-2201; Rev 0; 8/01 1:2 Differential LVPECL/LVECL/HSTL Clock and Data Drivers Features ♦ Improved Second Source of the MC10LVEP11 MAX9320 ♦ +2.25V to +3.8V Differential HSTL/LVPECL Operation ♦ -2.25V to -3.8V LVECL Operation ♦ Low 22mA (typ) Supply Current


    Original
    PDF MC10LVEP11 MAX9320) 208ps 300mV MAX9320/MAX9320A MAX9320 MAX9320A MAX9320AEKA MAX9320EKA-T MAX9320ESA MAX9320EUA MC10LVEP11

    86 sot23-8

    Abstract: MAX9320 MAX9320A MAX9320AEKA-T MAX9320EKA-T MAX9320ESA MAX9320EUA MC10LVEP11 630ps
    Text: 19-2201; Rev 1; 7/02 1:2 Differential LVPECL/LVECL/HSTL Clock and Data Drivers Features ♦ Improved Second Source of the MC10LVEP11 MAX9320 ♦ +2.25V to +3.8V Differential HSTL/LVPECL Operation ♦ -2.25V to -3.8V LVECL Operation ♦ Low 22mA (typ) Supply Current


    Original
    PDF MC10LVEP11 MAX9320) 208ps 300mV MAX9320/MAX9320A 86 sot23-8 MAX9320 MAX9320A MAX9320AEKA-T MAX9320EKA-T MAX9320ESA MAX9320EUA MC10LVEP11 630ps

    TR 1225 EP11

    Abstract: KVP11 MC100LVEP11 MC10LVEP11 EP11 KU11
    Text: MC10LVEP11, MC100LVEP11 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


    Original
    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, MC100LVEP11 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


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

    930 TSSOP8

    Abstract: No abstract text available
    Text: MC10LVEP11, MC100LVEP11 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


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

    Untitled

    Abstract: No abstract text available
    Text: MC10LVEP11, MC100LVEP11 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


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

    KVP11

    Abstract: EP11 MC100LVEP11 MC10LVEP11 hu11
    Text: MC10LVEP11, MC100LVEP11 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


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

    Untitled

    Abstract: No abstract text available
    Text: MC10LVEP11, MC100LVEP11 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


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

    TSSOP 8PIN MARK 21

    Abstract: No abstract text available
    Text: 19-2201; Rev 0; 8/01 1:2 Differential LVPECL/LVECL/HSTL Clock and Data Drivers Features ♦ Improved Second Source of the MC10LVEP11 MAX9320 ♦ +2.25V to +3.8V Differential HSTL/LVPECL Operation ♦ -2.25V to -3.8V LVECL Operation ♦ Low 22mA (typ) Supply Current


    Original
    PDF MAX9320/MAX9320A 208ps) MAX9320/MAX9320A TSSOP 8PIN MARK 21

    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, MC100LVEP11 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


    Original
    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

    Untitled

    Abstract: No abstract text available
    Text: ECL Pro SY10EP11U SY100EP11U FINAL 2.5V/3.3V/5V 1:2 DIFFERENTIAL PECL/LVPECL/ECL FANOUT BUFFER FEATURES • 2.5V, 3.3V and 5V power supply options ■ Guaranteed AC parameters over temperature: • fMAX > 3.0GHz • < 20ps output-to-output skew • < 200ps tr / tf


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    PDF 200ps 300ps SY10EP11U SY100EP11U SY10/100EP11U EL11V, EP11U SY100EP11U

    Untitled

    Abstract: No abstract text available
    Text: SN65LVEP11 www.ti.com . SLLS930A – NOVEMBER 2008 – REVISED DECEMBER 2008 2.5 V/3.3 V PECL/ECL 1:2 Fanout Buffer FEATURES


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    PDF SN65LVEP11 SLLS930A MC10LVEP11, MC100LVEP11

    SY100EP11U

    Abstract: SY10EP11U
    Text: 2.5V/3.3V/5V 1:2 DIFFERENTIAL PECL/LVPECL/ECL FANOUT BUFFER FEATURES DESCRIPTION • 2.5V, 3.3V and 5V power supply options ■ Guaranteed AC parameters over temperature: • fMAX > 3.0GHz • < 20ps output-to-output skew • < 200ps tr / tf • < 300ps propagation delay


    Original
    PDF SY10EP11U SY100EP11U 200ps 300ps SY10/100EP11U EL11V, EP11U SY100EP11U SY10EP11U

    Untitled

    Abstract: No abstract text available
    Text: 19-2201; Rev 3; 11/04 1:2 Differential LVPECL/LVECL/HSTL Clock and Data Drivers The MAX9320/MAX9320A are low-skew, 1-to-2 differential drivers designed for clock and data distribution. The input is reproduced at two differential outputs. The differential input can be adapted to accept single-ended


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    PDF MAX9320/MAX9320A 208ps) MS012

    CS5170

    Abstract: mps2112 MPS2112ZL1 100A 300V IGBT MC3346P CS4124YDW16 ON Semiconductor PRICE BOOK 12V to 220V smps inverter bd234 igbt ac motor speed control
    Text: SGD501/D REV 8, January 5, 2002 NORTH AMERICA SALES AND DISTRIBUTION ON Semiconductor PRICE BOOK THIS BOOK IS IN COMPUTER SORT PRODUCT CLASSIFICATION – Please see General Information Section EFFECTIVE DATE: JANUARY 5, 2002 General Information Elimination Of Ozone Depleting Chemicals . . . .


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    PDF SGD501/D Janua667 CS5170 mps2112 MPS2112ZL1 100A 300V IGBT MC3346P CS4124YDW16 ON Semiconductor PRICE BOOK 12V to 220V smps inverter bd234 igbt ac motor speed control

    NTP4N60

    Abstract: 8051 based thyristor firing circuit power MOSFET IRF740 driver circuit Curtis 1178 MAX766 8051 microcontroller Thyristor firing circuit ATX smps from 12 volt irf740 Intel ATX smps circuit diagram desktop computer smps circuit diagram
    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 THIRD QUARTER 2000 Vol. 1, No. 1 This Quarter. FEATURES ON Semiconductor Adds Cherry Semiconductor 3 Control Scheme Gives Power Tune-Up 15 A P P L I C AT I O N S


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    PDF MD-A550 ONDISPLAY3Q00/D NTP4N60 8051 based thyristor firing circuit power MOSFET IRF740 driver circuit Curtis 1178 MAX766 8051 microcontroller Thyristor firing circuit ATX smps from 12 volt irf740 Intel ATX smps circuit diagram desktop computer smps circuit diagram

    KLT20

    Abstract: k1648 klt22 KEL32 MC100 HEP64 KLT21 LP17 KEP32 HEP139
    Text: AND8002/D ECLinPS, ECLinPS Lite, ECLinPS Plus, ECLinPS MAX, and GigaComm Marking and Ordering Information Guide http://onsemi.com APPLICATION NOTE Prepared by: Paul Shockman ON Semiconductor HFPD Applications Engineer Introduction This application note describes the device markings and


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    PDF AND8002/D KLT20 k1648 klt22 KEL32 MC100 HEP64 KLT21 LP17 KEP32 HEP139

    Untitled

    Abstract: No abstract text available
    Text: SN65LVEP11 www.ti.com . SLLS930A – NOVEMBER 2008 – REVISED DECEMBER 2008 2.5 V/3.3 V PECL/ECL 1:2 Fanout Buffer FEATURES


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    PDF SN65LVEP11 SLLS930A MC10LVEP11, MC100LVEP11