az100el16vo Arizona Microtek, Inc., az100el16vo Datasheet

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az100el16vo

Manufacturer Part Number
az100el16vo
Description
Ecl/pecl Oscillator Gain Stage And Buffer With Enable
Manufacturer
Arizona Microtek, Inc.
Datasheet
FEATURES
DESCRIPTION
Q
continuous oscillator operation. When EN
When EN
be passed to the Q/Q ¯ outputs. The EN
EN
should be bypassed to ground or V
recommended if an AC coupled load is present. At 5.0V, a 330Ω resistor is recommended for the AC load case.
Alternately, a 50Ω load terminated to V
may be left floating (NC).
¯¯ pin does not power-down the chip but only disables the high gain Q
1630 S. STAPLEY DR., SUITE 127 • MESA, ARIZONA 85204 • USA • (480) 962-5881 • FAX (480) 890-2541
HG
/Q ¯
Green and RoHS Compliant Available
250ps Propagation Delay on Q ¯ Output
High Voltage Gain vs. Standard EL16
For Oscillator Applications
Available in 2x2 or 3x3mm MLP Package
75kΩ Enable Pull-Down Resistor
S–Parameter (.s2p) and IBIS Model
Files Available on Arizona Microtek Website
The AZ10/100EL16VO is an oscillator gain stage with a high gain output buffer including an enable. The
The input impedance of the D/D ¯ inputs remain constant for all operating modes since forcing the outputs via the
Input protection diodes are included on the D/D ¯ inputs for enhanced ESD protection.
The EL16VO also provides a V
Any used output must have an external pull down resistor. For 3.3V operation, an 180Ω resistor to V
NOTE: Specifications in ECL/PECL tables are valid when thermal equilibrium is established.
HG
¯¯ is HIGH, the Q
V
EN
Q
Q
D
D
BB
outputs have a voltage gain several times greater than the Q/Q ¯ outputs. An enable input (EN
HG
/Q ¯
ECL/PECL Oscillator Gain Stage and Buffer with Enable
HG
outputs will be forced LOW/HIGH respectively, while input data will continue to
CC
¯¯ input can be driven with an ECL/PECL signal or a CMOS logic signal.
via a 0.01μF capacitor.
BB
¯¯ is LOW or floating (NC), input data is passed to both sets of outputs.
CC
output that supports 1.5mA sink/source current. When used, the V
AZ100EL16VO
AZ10EL16VO
– 2V or the Thevenin equivalent may be driven directly. Unused outputs
www.azmicrotek.com
Q
Q
HG
HG
HG
/Q ¯
D/D ¯
Q/Q ¯
Q
V
EN
V
V
¯¯
HG
BB
CC
EE
HG
PIN
/Q ¯
outputs.
HG
ARIZONA MICROTEK, INC.
PIN/PAD DESCRIPTION
Data Inputs
Data Outputs
Data Outputs w/High Gain
Reference Voltage Output
Enable Input
Positive Supply
Negative Supply
FUNCTION
¯¯ ) allows
BB
EE
pin
is

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az100el16vo Summary of contents

Page 1

... 1630 S. STAPLEY DR., SUITE 127 • MESA, ARIZONA 85204 • USA • (480) 962-5881 • FAX (480) 890-2541 AZ10EL16VO AZ100EL16VO ¯¯ is LOW or floating (NC), input data is passed to both sets of outputs. /Q ¯ HG output that supports 1.5mA sink/source current. When used, the V BB via a 0.01μ ...

Page 2

... AZ100EL16VONBG <Date Code> AZM AZ10/100EL16VOL 16J <Date Code> AZMG AZ10/100EL16VOLG 16J <Date Code> AZM10 AZ10EL16VOD EL16VO AZM100 AZ100EL16VOD EL16VO AZT AZ10EL16VOT 16VO AZT+ AZ10EL16VOT+ 16VO AZH AZ100EL16VOT 16VO AZH+ AZ100EL16VOT+ 16VO AZT+ AZ10EL16VOU+ 16VOU AZH+ AZ100EL16VOU+ 16VOU AZ10/100EL16VOXP N/A AZ10/100EL16VOXR N/A www.azmicrotek.com 2 NOTES 1,2 1,2,3 1,2 1,2 1,2 ...

Page 3

... AZ10EL16VO AZ100EL16VO TRUTH TABLE EN ¯¯ Q/Q ¯ LOW or NC Data HIGH Data LOW Connect Absolute Maximum Ratings are those values beyond which device life may be impaired. Symbol V PECL Power Supply CC V PECL Input Voltage I V ECL Power Supply EE V ECL Input Voltage ...

Page 4

... AZ10EL16VO AZ100EL16VO 10K ECL DC Characteristics (V EE Symbol Characteristic Min 1 V Output HIGH Voltage -1080 Output LOW Voltage -1950 OL Input HIGH Voltage V D/D ¯ -1230 IH EN ¯¯ -1230 Input LOW Voltage V D/D ¯ -2300 IL EN ¯¯ Reference Voltage -1430 BB Input HIGH Current I D/D ¯ ...

Page 5

... AZ10EL16VO AZ100EL16VO 10K PECL DC Characteristics (V EE Symbol Characteristic Min 1,2 V Output HIGH Voltage 3920 OH 1,2 V Output LOW Voltage 3050 OL Input HIGH Voltage 1 V D/D ¯ 3770 IH EN ¯¯ 3770 Input LOW Voltage 1 V D/D ¯ 2700 IL EN ¯¯ Reference Voltage 3570 ...

Page 6

... AZ10EL16VO AZ100EL16VO 100K LVPECL DC Characteristics (V Symbol Characteristic Min 1,2 V Output HIGH Voltage 2215 OH 1,2 V Output LOW Voltage 1400 OL Input HIGH Voltage 1 V D/D ¯ 2135 IH EN ¯¯ 2135 Input LOW Voltage 1 V D/D ¯ 1050 IL EN ¯¯ Reference Voltage 1910 BB Input HIGH Current I D/D ¯ ...

Page 7

... AZ10EL16VO AZ100EL16VO AC Characteristics (V = -3.0V to -5.5V Symbol Characteristic Propagation Delay t /t PLH PHL D to Q/Q ¯ Outputs (SE ¯ Outputs (SE Duty Cycle Skew (SE) SKEW 2 V (AC) Input Swing PP Output Rise/Fall Times (20% – 80%) 1. Duty cycle skew is the difference between the peak-to-peak differential input swing for which AC parameters are guaranteed. The device has a voltage gain of ≈ ...

Page 8

... AZ10EL16VO AZ100EL16VO 2.05 2 1.95 1.9 1.85 1.8 50 150 250 350 450 550 FREQUENCY (MHz) S11 ¯ Ω load to V 200 180 160 140 120 100 150 250 350 450 550 FREQUENCY (MHz) S12 ¯ Ω load to V May 2008 * REV - 24 ...

Page 9

... AZ10EL16VO AZ100EL16VO 150 250 350 450 550 FREQUENCY (MHz) S21 ¯ Ω load to V 0.6 0.5 0.4 0.3 0.2 0 150 250 350 450 550 FREQUENCY (MHz) S22 ¯ Ω load to V May 2008 * REV - 24 200.00 180.00 160.00 140.00 120 ...

Page 10

... AZ10EL16VO AZ100EL16VO Application Circuit for CMOS Inputs 1 R1 should be chosen so that the input swing on the D input with respect to D ¯ the range of ±80 to ±1000 mV, per the AC Characteristics table. Recommended Component Values for CMOS Single Ended Inputs May 2008 * REV - ...

Page 11

... Float (NC) pin/pad 10K select 100K operation. V connection must be less than 1Ω Pin 6 of the MLP 16 package may connected to pin the circuit. 8 return. EE www.azmicrotek.com 11 AZ10EL16VOD AZ100EL16VOD AZ10EL16VOT AZ100EL16VOT TSSOP 8 D SOIC ...

Page 12

... AZ10EL16VO AZ100EL16VO AZ10/100EL16VO DIE: EL16VO Note: Other die thicknesses available. Contact factory for further information. PAD CENTER COORDINATES NAME PAD DESIGNATION connect, leave open. May 2008 * REV - 24 DIE PAD COORDINATES L M DIE SIZE: 950u X 940u ...

Page 13

... AZ10EL16VO AZ100EL16VO DIE ID Package Suffix Reel Diameter X (Die) R 7” May 2008 * REV - 24 DIE ON TAPE OREINTATION Direction of Feed Quantity Carrier Tape Width 3000 8mm www.azmicrotek.com 13 Carrier Tape Pitch 4mm ...

Page 14

... AZ10EL16VO AZ100EL16VO Pin 1 Dot By Marking 0.250±0.050 0.500 bsc 0.750±0.050 0.000-0.050 Note: All dimensions are in mm May 2008 * REV - 24 PACKAGE DIAGRAM MLP 8 2x2mm 2.000±0.050 MLP 8 2.000±0.050 (2x2mm) TOP VIEW 0.350±0.050 1.200± ...

Page 15

... AZ10EL16VO AZ100EL16VO NOTES: 1. DIMENSIONS D AND E DO NOT INCLUDE MOLD PROTRUSION. 2. MAXIMUM MOLD PROTRUSION FOR D IS 0.15mm. 3. MAXIMUM MOLD PROTRUSION FOR E IS 0.25mm. May 2008 * REV - 24 PACKAGE DIAGRAM SOIC 8 MILLIMETERS MIN DIM 0.19 c 4 ...

Page 16

... AZ10EL16VO AZ100EL16VO NOTES: 1. DIMENSIONS D AND E DO NOT INCLUDE MOLD PROTRUSION. 2. MAXIMUM MOLD PROTRUSION FOR D IS 0.15mm. 3. MAXIMUM MOLD PROTRUSION FOR E IS 0.25mm. May 2008 * REV - 24 PACKAGE DIAGRAM TSSOP 8 DIM θ ...

Page 17

... AZ10EL16VO AZ100EL16VO NOTES: 1. DIMENSIONS D AND E DO NOT INCLUDE MOLD PROTRUSION. 2. MAXIMUM MOLD PROTRUSION FOR D IS 0.15mm. 3. MAXIMUM MOLD PROTRUSION FOR E IS 0.25mm. May 2008 * REV - 24 PACKAGE DIAGRAM TSSOP θ ...

Page 18

... AZ10EL16VO AZ100EL16VO D 2. INDEX AREA (D aaa C TOP VIEW 2 x aaa C 4. NOTES: 1. DIMENSIONING AND TOLERANCING CONFORM TO ASME T14-1994. 2. THE TERMINAL #1 AND PAD NUMBERING CONVENTION SHALL CONFORM TO JESD 95-1 SPP-012. 3. DIMENSION b APPLIES TO METALLIZED PAD AND IS MEASURED BETWEEN 0.25 AND 0.30 mm FROM PAD TIP. 4. COPLANARITY APPLIES TO THE EXPOSED PADS AS WELL AS THE TERMINALS ...

Page 19

... AZ10EL16VO AZ100EL16VO Arizona Microtek, Inc. reserves the right to change circuitry and specifications at any time without prior notice. Arizona Microtek, Inc. makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Arizona Microtek, Inc. assume any liability arising out of the application or use of any product or circuit and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages ...

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