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Part : MC100LVE111FNG Supplier : ON Semiconductor Manufacturer : Avnet Stock : 10 Best Price : $5.39 Price Each : $8.29
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MC100LVE111/D Datasheet

Part Manufacturer Description PDF Type
MC100LVE111-D On Semiconductor 3.3V ECL 1:9 Differential Clock Driver Original

MC100LVE111/D

Catalog Datasheet MFG & Type PDF Document Tags

MC100LVE111

Abstract: DL140 MC100LVE111 OUTLINE DIMENSIONS FN SUFFIX PLASTIC PACKAGE CASE 776-02 ISSUE D 0.18 (0.007) B Y BRK , DL140 - Rev 3 4­5 *MC100LVE111/D* MC100LVE111/D MOTOROLA Motorola , MC100LVE111 is a low skew 1-to-9 differential driver, designed with clock distribution in mind. The , · MC100LVE111 LOW-VOLTAGE 1:9 DIFFERENTIAL ECL/PECL CLOCK DRIVER 200ps Part-to-Part Skew , mean a loss of skew margin. The MC100LVE111, as with most other ECL devices, can be operated from a
Motorola
Original
MC100E111 LVE111 uA78 D1294 MC100LVE111/D

PLCC28 layout

Abstract: LVE111 : MC100LVE111/D MC100LVE111 Q0 Q0 Q1 VCCO Q1 Q2 Q2 25 24 23 20 19 22 21 , MC100LVE111 Zo = 50 W Q D Receiver Device Driver Device Q D Zo = 50 W 50 W 50 W VTT , Representative MC100LVE111/D ON Semiconductor , MC100LVE111 3.3V ECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , , while not being catastrophic to most designs, will mean a loss of skew margin. The MC100LVE111, as
ON Semiconductor
Original
PLCC28 layout

D1294

Abstract: motorola ECL MC100LVE111 OUTLINE DIMENSIONS FN SUFFIX PLASTIC PACKAGE CASE 776-02 ISSUE D 0.18 (0.007) B Y BRK , DL140 - Rev 3 4­5 *MC100LVE111/D* MC100LVE111/D MOTOROLA Motorola , MC100LVE111 is a low skew 1-to-9 differential driver, designed with clock distribution in mind. The , · MC100LVE111 LOW-VOLTAGE 1:9 DIFFERENTIAL ECL/PECL CLOCK DRIVER 200ps Part-to-Part Skew , mean a loss of skew margin. The MC100LVE111, as with most other ECL devices, can be operated from a
Motorola
Original
motorola ECL
Abstract: AN1406/D. 12/94 © Motorola, Inc. 1996 4â'"1 REV 1 MC100LVE111 Q0 Q0 Q1 VCCO Q1 , 4â'"3 MOTOROLA MC100LVE111 OUTLINE DIMENSIONS FN SUFFIX PLASTIC PACKAGE CASE 776-02 ISSUE D , DL140 â'" Rev 3 4â'"5 *MC100LVE111/D* MC100LVE111/D MOTOROLA Motorola , The MC100LVE111 is a low skew 1-to-9 differential driver, designed with clock distribution in mind , '¢ â'¢ â'¢ â'¢ â'¢ â'¢ â'¢ MC100LVE111 LOW-VOLTAGE 1:9 DIFFERENTIAL ECL/PECL CLOCK DRIVER Motorola
Original

LVE111

Abstract: MC100E111 Publication Order Number: MC100LVE111/D MC100LVE111 LOGIC DIAGRAM AND PINOUT ASSIGNMENT Q0 Q0 Q1 , ://onsemi.com 8 MC100LVE111/D ON Semiconductor , MC100LVE111 3.3VECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , , while not being catastrophic to most designs, will mean a loss of skew margin. The MC100LVE111, as , , designers should refer to Application Note AN1406/D. The VBB pin, an internally generated voltage supply
ON Semiconductor
Original
AN1406
Abstract: = 250 devices 1 Publication Order Number: MC100LVE111/D © Semiconductor Components Industries , Representative. http://onsemi.com 8 MC100LVE111/D ON Semiconductor , MC100LVE111 3.3VECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , to most designs, will mean a loss of skew margin. The MC100LVE111, as with most other ECL devices , voltage. For more information on using PECL, designers should refer to Application Note AN1406/D. The VBB ON Semiconductor
Original

MC100LVE111G

Abstract: LVE111 : MC100LVE111/D MC100LVE111 Q0 Q0 Q1 VCCO Q1 Q2 Q2 25 24 23 20 19 22 21 , MC100LVE111 Zo = 50 W Q D Receiver Device Driver Device Q D Zo = 50 W 50 W 50 W VTT , Representative MC100LVE111/D ON Semiconductor , MC100LVE111 3.3V ECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , , while not being catastrophic to most designs, will mean a loss of skew margin. The MC100LVE111, as
ON Semiconductor
Original
MC100LVE111G
Abstract: Components Industries, LLC, 2013 April, 2013 - Rev. 8 1 Publication Order Number: MC100LVE111/D , MC100LVE111 Q Driver Device Q Zo = 50 W 50 W 50 W D Zo = 50 W D Receiver Device VTT VTT = VCC - 2.0 V , MC100LVE111 3.3VECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , to most designs, will mean a loss of skew margin. The MC100LVE111, as with most other ECL devices , voltage. For more information on using PECL, designers should refer to Application Note AN1406/D. The VBB ON Semiconductor
Original

LVE111

Abstract: MC100E111 : MC100LVE111/D MC100LVE111 Q0 Q0 Q1 VCCO Q1 Q2 Q2 25 24 23 20 19 22 21 , Representative. MC100LVE111/D ON Semiconductor , MC100LVE111 3.3V ECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , , while not being catastrophic to most designs, will mean a loss of skew margin. The MC100LVE111, as , , designers should refer to Application Note AN1406/D. The VBB pin, an internally generated voltage supply
ON Semiconductor
Original

LVE111

Abstract: MC100E111 Publication Order Number: MC100LVE111/D MC100LVE111 Q0 Q0 Q1 VCCO Q1 Q2 Q2 25 24 23 , Technical Support: 800­282­9855 Toll Free USA/Canada http://onsemi.com 8 MC100LVE111/D ON , MC100LVE111 3.3VECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , , while not being catastrophic to most designs, will mean a loss of skew margin. The MC100LVE111, as , , designers should refer to Application Note AN1406/D. The VBB pin, an internally generated voltage supply
ON Semiconductor
Original

LVE111

Abstract: MC100E111 Publication Order Number: MC100LVE111/D MC100LVE111 Q0 Q0 Q1 VCCO Q1 Q2 Q2 25 24 23 , Technical Support: 800­282­9855 Toll Free USA/Canada http://onsemi.com 8 MC100LVE111/D ON , MC100LVE111 3.3VECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , , while not being catastrophic to most designs, will mean a loss of skew margin. The MC100LVE111, as , , designers should refer to Application Note AN1406/D. The VBB pin, an internally generated voltage supply
ON Semiconductor
Original
Abstract: November, 2006 â' Rev. 7 1 Publication Order Number: MC100LVE111/D MC100LVE111 Q0 Q0 Q1 , MC100LVE111/D ON Semiconductor , MC100LVE111 3.3V ECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1â , , while not being catastrophic to most designs, will mean a loss of skew margin. The MC100LVE111, as , , designers should refer to Application Note AN1406/D. The VBB pin, an internally generated voltage supply ON Semiconductor
Original
Abstract: = 250 devices 124 Publication Order Number: MC100LVE111/D © Semiconductor Components Industries , MC100LVE111 3.3V ECL 1:9 Differential Clock Driver The MC100LVE111 is a low skew 1 , to most designs, will mean a loss of skew margin. The MC100LVE111, as with most other ECL devices , voltage. For more information on using PECL, designers should refer to Application Note AN1406/D. The VBB , * 1 28 MC100LVE111 AWLYYWW PLCC-28 FN SUFFIX CASE 776 A WL YY WW = Assembly Location = Wafer Lot = ON Semiconductor
Original
AND8020 AN1404 AN1405 AN1503 AN1504 AN1560
Abstract: M O T O R O L A motorol a sc , mean a loss of skew margin. The MC100LVE111, as with most other ECL devices, can be operated from a , voltage. For more information on using PECL, designers should refer to Motorola Application Note AN1406/D -
OCR Scan
BR1333
Abstract: MC100LVE111 is a low skew 1-to-9 differential driver, designed with clock distribution in mind. The , mean a loss of skew margin. The MC100LVE111, as with most other ECL devices, can be operated from a , /D. â SB ,   MC100LVE111 Qo Qo I I â'" Q1 vCCO Ql I I I I I I I I â'" â'" â'" â'" 25 24 23 22 , MOTOROLA 98 fc.3b7S.52 DOTbtilO ET2 TIMING SOLUTIONS B R I333 â'" REV 5 MC100LVE111 ECL DC -
OCR Scan
Abstract: MOTOROLA SEMICONDUCTOR TECHNICAL DATA Advance Information Low -Voltage 1:9 D ifferential ECL/PECL C lock Driver The MC100LVE111 is a low skew 1-to-9 differential driver, designed with clock , DIFFERENTIAL ECL/PECL CLOCK DRIVER FN SUFFIX PLASTIC PACKAGE CASE 776-02 The MC100LVE111, as with most , refer to Motorola Application Note AN1406/D. This document contains information on a new product , . 1994 M OTOROLA MC100LVE111 Qo 25 Qo 24 Qi 23 v CCO Q1 22 21 q2 20 °2 19 18 -
OCR Scan
Abstract: /PECL Clock Driver The MC100LVE111 is a low skew 1-to-9 differential driver, designed with clock , mean a loss of skew margin. The MC100LVE111, as with most other ECL devices, can be operated from a , voltage. For more information on using PECL, designers should refer to Motorola Application Note AN1406/D. T h is d o cu m e n t c o n tain s inform ation o n a n e w product. S p ecificatio n s a n d inform , V 0 ,8 (M) MOTOROLA MC100LVE111 Qo |â'" | 25 Qo I 24 q2 Q Vcco Qi 1 1 1 1 1 n -
OCR Scan
0Q155SQ
Abstract: MOTOROLA SEMICONDUCTOR TECHNICAL DATA Low -Voltage 1:9 D ifferential ECL/PECL Clock Driver The MC100LVE111 is a low ske w 1-to-9 differential driver, designed w ith clock d istribution in mind. The M C , t Skew · D ifferential Design · V b b O utput · Voltage and Tem perature C om pensated Outputs · Low , control lim its th a t ensure co nsiste n t tp d distributions from lot to lot. T h e net result is a , designs, w ill m ean a loss of skew m argin. FN SU FFIX PLASTIC PACKAGE CASE 776-02 The MC100LVE111 -
OCR Scan
100LVE111 100E111 DL140/D
Abstract: b b Output â'¢ V oltage a nd Tem perature C o m p e n sa te d O utputs â'¢ Low V oltag e V e e , ecifically designed, m odeled and produced with low skew a s the key goal. O ptim al d esig n and layout , net result is a d ep endab le, guaranteed low skew device. To ensure that the tight s ke w , will b e u se d and therefore term inated. In the c a s e w here few er than nine pairs a re used, it , pair(s) being u se d on that side, in order to m aintain m inimum skew . Failu re to do th is will -
OCR Scan
100LVE

MC100LVE111

Abstract: SPARC v9 architecture BLOCK DIAGRAM chips, one 32kx36 tag SRAM, four 32kx36 (for 1/2 Mbyte E-Cache) data SRAMs, and a MC100LVE111 clock , delivered to a MC100LVE111 clock buffer chip and redistributed to the UltraSPARC-I and five SRAMs. CPU and SRAM trace lengths from the MC100LVE111 are adjusted so that SRAMs are clocked 670 ps earlier than , ". MC10ELV38 System Clock Source f f/2 f MC100LVE111 UDB UDB UDB SRAM SRAM MC100LVE111 SRAM SRAM SRAM SRAM MC100LVE111 SRAM phase signal SRAM phase signal SRAM
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Original
SPARC v9 architecture BLOCK DIAGRAM STP5110A 167MH H-261 STP5110AUPA-167 STP1030A
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