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MC100EL91DWR2G Datasheet(PDF) 4 Page - ON Semiconductor

Part # MC100EL91DWR2G
Description  5 V Triple PECL Input to ?? V ECL Output Translator
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

MC100EL91DWR2G Datasheet(HTML) 4 Page - ON Semiconductor

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MC100EL91
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4
Table 5. AC CHARACTERISTICS VCC= 5.0 V; VEE= −5.0 V; GND= 0 V (Note 8).
Symbol
Characteristic
−40°C
25°C
85°C
Unit
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
fmax
Maximum Toggle Frequency
700
700
700
MHz
tPLH
tPHL
Propagation Delay D to Q
Differential
Single−Ended.
540
490
640
640
740
790
570
520
670
670
770
820
610
560
710
710
810
860
ps
tSKEW
Skew
Output−to−Output (Note 5)
Part−to−Part (Differential) (Note 5)
Duty Cycle (Differential) (Note 6)
40
25
100
200
40
25
100
200
40
25
100
200
ps
tJITTER
Random Clock Jitter @ 700 MHz
1.2
1.2
1.2
pS(RMS)
VPP
Input Swing (Note 7)
200
1000
200
1000
200
1000
mV
tr
tf
Output Rise/Fall Times Q
(20% − 80%)
270
400
530
270
400
530
270
400
530
ps
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit
values are applied individually under normal operating conditions and not valid simultaneously.
5. Skews are valid across specified voltage range, part−to−part skew is for a given temperature.
6. Duty cycle skew is the difference between a tPLH and tPHL propagation delay through a device.
7. VPP(min) is the minimum input swing for which AC parameters are guaranteed. The device has a DC gain of ≈40.
8. VCC = +4.75 V to +5.2 V, VEE = −4.20 V to −5.5 V. Outputs are terminated through a 50 W resistor to GND − 2.0 V.
Figure 2. Typical Termination for Output Driver and Device Evaluation
(See Application Note AND8020/D − Termination of ECL Logic Devices.)
Driver
Device
Receiver
Device
QD
Q
D
Zo = 50 W
Zo = 50 W
50 W
50 W
VTT
VTT = VCC − 2.0 V


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