MC100EL14DWR2 ON Semiconductor, MC100EL14DWR2 Datasheet - Page 5

Clock Drivers & Distribution 5V ECL 1:5 Clock

MC100EL14DWR2

Manufacturer Part Number
MC100EL14DWR2
Description
Clock Drivers & Distribution 5V ECL 1:5 Clock
Manufacturer
ON Semiconductor
Datasheet

Specifications of MC100EL14DWR2

Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Number Of Clock Inputs
2
Output Logic Level
ECL
Supply Voltage (max)
+/- 5.7 V
Supply Voltage (min)
+/- 4.2 V
Maximum Operating Temperature
+ 85 C
Package / Case
SOIC-20 Wide
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit
3. Input and output parameters vary 1:1 with V
4. Outputs are terminated through a 50 W resistor to V
5. V
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit
6. Input and output parameters vary 1:1 with V
7. Outputs are terminated through a 50 W resistor to V
8. V
Table 5. 100EL SERIES PECL DC CHARACTERISTICS
Table 6. 100EL SERIES NECL DC CHARACTERISTICS
I
V
V
V
V
V
V
I
I
I
V
V
V
V
V
V
I
I
EE
IH
IL
EE
IH
IL
Symbol
Symbol
OH
OL
IH
IL
BB
IHCMR
OH
OL
IH
IL
BB
IHCMR
signal. Normal operation is obtained if the HIGH level falls within the specified range and the peak−to−peak voltage lies between V
signal. Normal operation is obtained if the HIGH level falls within the specified range and the peak−to−peak voltage lies between V
IHCMR
IHCMR
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.
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.
min varies 1:1 with V
min varies 1:1 with V
Power Supply Current
Output HIGH Voltage (Note 4)
Output LOW Voltage (Note 4)
Input HIGH Voltage (Single−Ended)
Input LOW Voltage (Single−Ended)
Output Voltage Reference
Common Mode Range
(Differential Configuration)
(Note 5)
Input HIGH Current
Input LOW Current
Power Supply Current
Output HIGH Voltage (Note 7)
Output LOW Voltage (Note 7)
Input HIGH Voltage (Single−Ended)
Input LOW Voltage (Single−Ended)
Output Voltage Reference
Common Mode Range
(Differential Configuration)
(Note 8)
Input HIGH Current
Input LOW Current
Characteristic
Characteristic
EE
EE
, V
, V
IHCMR
IHCMR
V
V
V
V
PP
PP
PP
PP
< 500 mV
≥ 500 mV
< 500 mV
≥ 500 mV
max varies 1:1 with V
max varies 1:1 with V
CC
CC
.V
.V
EE
EE
CC
CC
can vary +0.8 V / −0.5 V.
can vary +0.8 V / −0.5 V.
−1085
−1830
−1810
−1165
−1.38
3915
3170
3835
3190
3.62
−3.7
−3.5
Min
Min
1.3
1.5
0.5
0.5
− 2.0 V.
− 2.0 V.
http://onsemi.com
CC
CC
−40°C
.The V
−40°C
.The V
−1005
−1695
3995
3305
Typ
Typ
V
32
32
V
CC
CC
5
IHCMR
IHCMR
= 0.0 V; V
= 5.0 V; V
−1555
−1475
−1.26
4120
3445
4120
3525
−880
−880
Max
3.74
Max
−0.4
−0.4
150
150
4.6
4.6
40
40
range is referenced to the most positive side of the differential input
range is referenced to the most positive side of the differential input
EE
EE
−1025
−1810
−1810
−1165
−1.38
3975
3190
3835
3190
3.62
−3.8
−3.6
Min
Min
1.2
1.4
0.5
0.5
= −5.0 V (Note 6)
= 0.0 V (Note 3)
−1705
25°C
4045
3295
25°C
−955
Typ
Typ
32
32
−1620
−1475
−1.26
4120
3380
4120
3525
−880
−880
Max
3.74
Max
−0.4
−0.4
150
150
4.6
4.6
40
40
−1025
−1810
−1165
−1810
−1.38
3975
3190
3835
3190
3.62
−3.8
−3.6
Min
Min
1.2
1.4
0.5
0.5
−1705
85°C
4050
3295
85°C
−955
Typ
Typ
34
34
PP
PP
−1620
−1475
−1.26
4120
3380
4120
3525
−880
−880
Max
3.74
Max
−0.4
−0.4
150
(min) and 1 V.
150
(min)and 1 V.
4.6
4.6
42
42
Unit
Unit
mA
mV
mV
mV
mV
mA
mV
mV
mV
mV
mA
mA
mA
mA
V
V
V
V

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