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AZ100LVEL16VS

Arizona Microtek
Part Number AZ100LVEL16VS
Manufacturer Arizona Microtek
Description ECL/PECL Differential Receiver
Published Sep 14, 2007
Detailed Description www.DataSheet4U.com ARIZONA MICROTEK, INC. AZ10LVEL16VS AZ100LVEL16VS ECL/PECL Differential Receiver with Variable Out...
Datasheet PDF File AZ100LVEL16VS PDF File

AZ100LVEL16VS
AZ100LVEL16VS


Overview
www.
DataSheet4U.
com ARIZONA MICROTEK, INC.
AZ10LVEL16VS AZ100LVEL16VS ECL/PECL Differential Receiver with Variable Output Swing FEATURES • • • • • • 250ps Propagation Delay High Bandwidth Output Transitions Operating Range of 3.
0V to 5.
5V Internal Input Pulldown Resistors Functionally Equivalent to ON Semiconductor MC10EL16, MC100EL16 & MC100LVEL16 Variable Output Swing PACKAGE SOIC 8 SOIC 8 TSSOP 8 TSSOP 8 1 PACKAGE AVAILABILITY PART NUMBER AZ10LVEL16VSD AZ100LVEL16VSD AZ10LVEL16VST AZ100LVEL16VST MARKING AZM10 LV16VS AZM100 LV16VS AZT L16VS AZH L16VS NOTES 1,2 1,2 1,2 1,2 DESCRIPTION 2 Add R1 at end of part number for 7 inch (1K parts), R2 for 13 inch (2.
5K parts) Tape & Reel.
Date code format: “Y” or “YY” for year followed by “WW” for week on underside of part.
The AZ10/100LVEL16VS is a differential receiver with variable output swing.
The LVEL16VS has functionality and output transition times similar to the EL16, with an input that controls the amplitude of the Q/Q ¯ outputs.
The operational range of the LVEL16VS control input, VCTRL, is from VBB (full swing) to VCC (min.
swing).
Maximum swing is achieved by leaving the VCTRL pin open or by tying it to the negative supply (VEE).
Simple control of the output swing can be obtained by a variable resistor between the VBB and VCC pins, with the wiper driving VCTRL.
Typical application circuits and results are described in this Data Sheet.
The LVEL16VS provides a VBB output for single-ended use or a DC bias reference for AC coupling to the device.
For single-ended input applications, the VBB reference should be connected to one side of the D/D ¯ differential input pair.
The input signal is then fed to the other D/D ¯ input.
The VBB pin can support 1.
5mA sink/source current.
When used, the VBB pin should be bypassed to ground via a 0.
01μF capacitor.
Under open input conditions internal input clamps will force the Q output LOW.
NOTE: Specifications in the ECL/PECL tables are valid when thermal equilibrium is es...



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