AZ100E111FN AZM [Arizona Microtek, Inc], AZ100E111FN Datasheet - Page 4

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AZ100E111FN

Manufacturer Part Number
AZ100E111FN
Description
ECL/PECL 1:9 Differential Clock Driver
Manufacturer
AZM [Arizona Microtek, Inc]
Datasheet
AC Characteristics (V
1.
2.
3.
4.
5.
6.
7.
8.
9.
t
t
t
t
t
V
V
t
Symbol
PLH
S
H
R
SKEW
r
EN
PP
CMR
/ t
IN
IN
f
/ t
(AC)
The within-device skew is defined as the worst-case difference between any two similar delay paths within a single device.
The setup time is the minimum time that EN
V
AZ10E111
AZ100E111
The differential propagation delay is defined as the delay from the crossing points of the differential input signals to the crossing point of the
differential output signals.
The single-ended propagation delay is defined as the delay from the 50% point of the input signal to the 50% point of the output signal.
Enable is defined as the propagation delay from the 50% point of a negative transition on EN
negative transition on Q ¯ ). Disable is defined as the propagation delay from the 50% point of a positive transition on EN
negative transition on Q (or a positive transition on Q ¯ ).
±75mV to that IN/ IN ¯¯ transition (see Figure 1).
The hold time is the minimum time that EN
greater than ±75 mV to that IN/ IN ¯¯ transition (see Figure 2).
The release time is the minimum time that EN
specified IN to Q propagation delay and output transition times (see Figure 3).
is AC limited for the E111, because differential input as low as 50 mV will still produce full ECL levels at the output.
V
must be such that the peak-to-peak voltage is less than 1.0V and greater than or equal to V
November 2006 * REV - 3
PHL
PP
CMR
(min) is defined as the minimum peak-to-peak input differential voltage which will cause no increase in the propagation delay. The V
is defined as the range within which the V
Propagation Delay
to Output
Setup Time
Hold Time
Release Time EN
Within-Device Skew
Minimum Input Swing
Common Mode Range
Rise/Fall Time
Characteristic
IN to EN
EN
¯¯ to IN
V
¯¯ to IN
IN (SE)
Disable
IN (Diff)
EE
Enable
CC
=10E(-4.94V to -5.46V), 100E(-4.2V to -5.46V); V
=V
¯¯
4
9
8
3
2
7
3
6
5
1
CCO
V
= 10E(+4.94V to +5.46V), 100E(+4.2V to +5.46V) )
Min
380
280
400
400
250
350
250
250
1.6
50
CC
¯¯ must remain asserted after a negative going IN or a positive going IN ¯¯ to prevent an output response
-
¯¯ must be asserted prior to the next transition of IN/ IN ¯¯ to prevent an output response greater than
¯¯ must be de-asserted prior to the next IN/ IN ¯¯ transition to ensure an output response that meets the
-40°C
-200
Typ
100
25
IH
0
level may vary, with the device still meeting the propagation delay specification. The V
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EN
IN
IN
V
Max
680
780
900
900
650
0.4
75
CC
-
V
Min
460
410
450
450
200
300
250
275
1.6
CC
4
0
-
H
-200
Typ
0°C
100
25
0
V
Max
560
610
850
850
600
0.4
50
CC
-
¯¯ to the 50% point of a positive transition on Q (or a
PP
CC
(min).
V
Min
480
430
450
450
200
300
250
275
1.6
CC
0
=V
-
CCO
25°C
-200
Typ
100
25
0
=GND or V
EN
IN
IN
V
Max
580
630
850
850
600
0.4
50
CC
-
¯¯ to the 50% point of a
EE
V
Min
510
460
450
450
200
300
250
275
1.6
CC
=GND;
0
-
85°C
Typ
-200
100
25
0
PP
IL
V
Max
(min)
610
660
850
850
600
0.4
50
CC
level
-
Unit
mV
ps
ps
ps
ps
ps
ps
V

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