MC100LVE210 ON Semiconductor, MC100LVE210 Datasheet - Page 4

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MC100LVE210

Manufacturer Part Number
MC100LVE210
Description
Low Voltage Dual 1:4 / 1:5 Differential Fanout Buffer
Manufacturer
ON Semiconductor
Datasheet

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MC100E210
ECL DC CHARACTERISTICS
MC100E210
PECL DC CHARACTERISTICS
1. These values are for V CC = 5.0V. Level Specifications will vary 1:1 with V CC .
MC100E210
AC CHARACTERISTICS (V EE = V EE (min) to V EE (max); V CC = V CCO = GND)
1. The differential propagation delay is defined as the delay from the crossing points of the differential input signals to the crossing point of the
2. 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.
3. The within–device skew is defined as the worst case difference between any two similar delay paths within a single device.
4. V PP (min) is defined as the minimum input differential voltage which will cause no increase in the propagation delay. The V PP (min) is AC limited
5. V CMR is defined as the range within which the V IH level may vary, with the device still meeting the propagation delay specification. The V IL
Symbol
V OH
V OL
V IH
V IL
V BB
V EE
I IH
I EE
Symbol
V OH
V OL
V IH
V IL
V BB
V CC
I IH
I EE
Symbol
t PLH
t PHL
t skew
V PP
V CMR
t r /t f
differential output signals.
for the E210 as a differential input as low as 50 mV will still produce full ECL levels at the output.
level must be such that the peak to peak voltage is less than 1.0 V and greater than or equal to V PP (min).
Output HIGH Voltage
Output LOW Voltage
Input HIGH Voltage
Input LOW Voltage
Output Reference
Voltage
Power Supply Voltage
Input HIGH Current
Power Supply Current
Output HIGH Voltage 1
Output LOW Voltage 1
Input HIGH Voltage 1
Input LOW Voltage 1
Output Reference
Voltage 1
Power Supply Voltage
Input HIGH Current
Power Supply Current
Propagation Delay to Output
Within–Device SkewQa Qb
Part–to–Part Skew (Diff)
Minimum Input Swing
Common Mode Range
Output Rise/Fall Time
IN (differential)
IN (single–ended)
Characteristic
Characteristic
Characteristic
Qa Qa,Qb Qb
–1.085
–1.830
–1.165
–1.810
–1.38
–5.25
3.915
3.170
3.835
3.190
3.62
4.75
Min
Min
–1.5
Min
475
400
500
200
–1.005
–1.695
–40 C
–40 C
3.995
3.305
Typ
Typ
–40 C
Typ
50
50
MC100LVE210, MC100E210
–0.880
–1.555
–0.880
–1.475
–1.26
3.445
3.525
Max
–4.2
Max
4.12
4.12
3.74
5.25
150
150
55
55
Max
–0.4
675
700
200
600
75
75
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–1.025
–1.810
–1.165
–1.810
–1.38
–5.25
3.975
3.835
3.190
–1.5
Min
475
400
500
200
3.19
3.62
4.75
Min
Min
0 C
Typ
50
30
–0.955
–1.705
4.045
3.295
0 C
Typ
0 C
Typ
4
Max
–0.4
675
700
200
600
75
50
–0.880
–1.620
–0.880
–1.475
–1.26
3.525
Max
–4.2
Max
4.12
3.38
4.12
3.74
5.25
150
150
55
55
–1.5
Min
500
450
500
200
–1.025
–1.810
–1.165
–1.810
–1.38
–5.25
3.975
3.835
3.190
3.19
3.62
4.75
Min
Min
25 C
Typ
50
30
–0.955
–1.705
4.045
3.295
Max
–0.4
25 C
25 C
700
750
200
600
Typ
Typ
75
50
–1.5
Min
500
450
500
200
–0.880
–1.620
–0.880
–1.475
–1.26
3.525
Max
–4.2
Max
4.12
3.38
4.12
3.74
5.25
150
150
55
55
85 C
Typ
50
30
–1.025
–1.810
–1.165
–1.810
–1.38
–5.25
3.975
3.835
3.190
3.19
3.62
4.75
Min
Min
Max
–0.4
700
750
200
600
75
50
–0.955
–1.705
4.045
3.295
85 C
85 C
Typ
Typ
Unit
mV
ps
ps
ps
V
–0.880
–1.620
–0.880
–1.475
–1.26
3.525
Max
–4.2
Max
4.12
3.38
4.12
3.74
5.25
150
150
65
65
Condition
20%–80%
Note 1
Note 2
Note 3
Note 4
Note 5
Unit
Unit
mA
mA
V
V
V
V
V
V
V
V
V
V
V
V
A
A

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