| PART |
Description |
Maker |
| AND8090 AND8090D MC100H601 MC100H601FN MC10H106FN |
3.3V / 5V ECL Quad 2-Input Differential AND/NAND 5V ECL Low Impedance Driver LOW VOLTAGE DUAL 1:4, 1:5 DIFFERENTIAL FANOUT BUFFER 8 Input Priority Encoder 3.3V ECL Triple D-Type Flip-Flop with Set and Reset 3.3V / 5V ECL Quad D Flip Flop with Set, Reset, and Differential Clock 3.3V Dual Differential LVPECL to LVTTL Translator 3.3V / 5V ECL 6-Bit Differential Register with Master Reset 3.3V ECL 1:15 Differential ÷1/÷2 Clock Driver Fibre Channel Coaxial Cable Driver and Loop Resillency Circuit 3.3 V 1:9 Differential HSTL/PECL to HSTL Clock Driver with LVTTL Clock Select and Enable 3.3V / 5V ECL 8-Bit Synchronous Binary Up Counter 2.5 V/3.3 V SiGe Selectable Differential Clock and Data D Flip-Flop/Clock Divider with Reset and OLS 3.3V / 5V Programmable PLL Synthesized Clock Generator (25 to 400 MHz) 2.5 V/3.3 V SiGe 1:2 Differential Clock Driver with RSECL Outputs 2.5 V/3.3 V SiGe 1:10 Differential Clock Driver with RSECL Outputs Triple 4-3-3-Input NOR Gate 9-Bit ECL-TTL Translator AC Characteristics of ECL Devices
|
Motorola ONSEMI[ON Semiconductor]
|
| MC100EP01 MC10EP445 MC10H172FNR2 MC100EL29 MC100H6 |
3.3V / 5V ECL 4-Input OR/NOR 3.3V / 5VECL 8-Bit Serial/Parallel Converter Dual Binary 1-4-Decoder (High) 5V ECL Dual Differential Data and Clock D Flip-Flop With Set and Reset 9-Bit TTL-ECL Translator Quad TTL-ECL Translator Dual 2-Wide 2-3-Input OR-AND/OR-AND-Invert Gate 3.3V / 5V ECL 8-Bit Synchronous Binary Up Counter 3.3 V 1:9 Differential HSTL/PECL to HSTL Clock Driver with LVTTL Clock Select and Enable 3.3V 10-bit LVTTL/LVCMOS to LVPECL Translator 3.3V / 5V ECL Quad D Flip Flop with Set, Reset, and Differential Clock 5V ECL Voltage Controlled Oscillator 3.3V ECL D-Type Flip-Flop with Set and Reset Binary to 1-8 Decoder (Low) Differential -5V ECL To TTL Translator -3.3V / -5V Triple ECL Input to PECL Output Translator 5V ECL Dual Differential 2:1 Multiplexer Quad MSTR 5V ECL Quad 4-Input OR/NOR Gate 3.3V ECL Dual Differential Data and Clock D-Type Flip-Flop with Set and Reset Dual 4-5-Input OR/NOR
|
ON Semiconductor
|
| MAX9312 MAX9312ECJ MAX9312ETJ MAX9314 MAX9314ECJ |
Dual 1:5 Differential LVPECL/LVECL/HSTL Clock and Data Drivers ECL SERIES, LOW SKEW CLOCK DRIVER, 10 TRUE OUTPUT(S), 0 INVERTED OUTPUT(S), PQFP32
|
Maxim Integrated Products, Inc.
|
| SY100EP210UTC SY100EP210UTCTR SY100EP210UTG SY100E |
2.5V/3.3V DUAL 1:5 DIFFERENTIAL LVECL/LVPECL/HSTL CLOCK DRIVER
|
Micrel Semiconductor
|
| PCK210BD PCK210BS PCK210 |
Low voltage dual 1-5 differential ECL/PECL clock driver
|
NXP Semiconductors PHILIPS[Philips Semiconductors]
|
| MAX9317-BMAX9317C |
Dual 1:5 Differential Clock Drivers with LVPECL Inputs and LVDS Outputs
|
Maxim Integrated Products
|
| MC100ES6220TB MC100ES6220 MC100ES6220AE |
Low Voltage Dual 1:10 Differential ECL/PECL Clock Fanout Buffer
|
FREESCALE[Freescale Semiconductor, Inc]
|
| MC100H646 MC100EP445FA MC100E156FNR2 MC100EPT22D M |
PECL/TTL-TTL 1:8 Distribution Chip 3.3V / 5VECL 8-Bit Serial/Parallel Converter 5V ECL 3-Bit 4:1 Mux-Latch 3.3V Dual LVTTL/LVCMOS to Differential LVPECL Translator 3.3V / 5V ECL 6-Bit Differential Register with Master Reset 3.3V / 5V 2-Input Differential AND/NAND 3.3V / 5V ECL ÷2 Divider 5V ECL Divide by 2, Divide by 4/6 Clock Generation Chip 5V ECL Low Impedance Driver
|
ON Semiconductor
|
| NB4L339 |
2.5 V / 3.3 V Differential 2:1 Clock IN to Differential LVPECL Clock Generator
|
ON Semiconductor
|
| PI6C4853111FAE PI6C4853111 PI6C4853111FAEX |
6C SERIES, LOW SKEW CLOCK DRIVER, 10 TRUE OUTPUT(S), 0 INVERTED OUTPUT(S), PQFP32 2.5V/3.3V 500MHz Low Skew 1-to-10 Differential to LVPECL Fanout Buffer with 2 to 1 Differential Clock Input Mux
|
Pericom Semiconductor Corporation
|
| NB4N111KMNR4G NB4N111KMNG |
3.3V Differential In 1:10 Differential Fanout Clock Driver with HCSL Level Output
|
ON Semiconductor
|
| ICS9DB202 ICS9DB202CF ICS9DB202CFLF ICS9DB202CFLFT |
From old datasheet system Two 0.7V current mode differential HCSL output pairs, 1 differential clock input
|
http:// ICST[Integrated Circuit Systems]
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