AEIC-2631-S16TR Avago Technologies, AEIC-2631-S16TR Datasheet - Page 2

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AEIC-2631-S16TR

Manufacturer Part Number
AEIC-2631-S16TR
Description
Buffers & Line Drivers Quad Diff Line Driver
Manufacturer
Avago Technologies
Datasheet

Specifications of AEIC-2631-S16TR

Rohs
yes
Table 1. Absolute Maximum Ratings
Table 2. Electrical Characteristics
Unless otherwise specifi ed, typical values given at Vcc = 2 V, T
Notes :
1. This is not a test parameter, but for information only.
2. It may be necessary to clamp the outputs with Schottky diodes when driving extremely long cables with high capacitance between outputs. These
Table 3. AC Switching Characteristics
Values given at V
2
Parameters
Operating Temperature Range
Supply Voltage Range
Parameters
Overtemp Operate Point (junction)
Overtemp Release Point (junction)
Supply Current
Input Positive-Going Threshold
Input Negative-Going Threshold
Low Level Input Current
High Level Input Current
Low Level Output1
Low Level Output2
High Level Output1
High Level Output2
Parameters
Propagation delay, rising input 50% point
to zero crossing of diff erential outputs
Propagation delay, falling input 50% point
to zero crossing of diff erential outputs
Output Rise Time
Output Fall Time
diodes should have a forward voltage of less than 0.4 V, and be connected with cathode to the output and anode to ground.
CC
= 24 V, T
A
= 25° C, C
L
= 100 pF on all outputs.
Symbol
T
V
Symbol
T
T
I
I
V
V
I
I
V
V
V
V
Symbol
T
T
T
T
CC1
CC2
IL
IH
A
JOP
JRP
PLH
PHL
R
F
CCD
T+
T-
OL1
OL2
OH1
OH2
Min.
-55
4.75
Min.
-
-
7.0
9.0
1.1
0.7
-4.0
-
-
-
2.5
27.8
Min.
-
-
-
-
A
= 25° C and EN- < 0.8 V
Typ.
155
105
11.0
13.0
1.5
1.0
-0.13
0
375
375
2.8
28.0
Typ.
150
170
95
40
Max.
125
30
Max.
-
-
17.0
20.0
1.9
1.4
-
4.0
500
500
-
-
Max.
285
310
310
165
Units
°C
V
Units
°C
°C
mA
V
V
A
A
mV
mV
V
V
Units
ns
ns
ns
ns
Ref.
Test Conditions
Note 1
Note 1
V
V
V
V
I
I
I
I
Test Conditions
See above.
See above.
See above.
See above.
OL
OL
OH
OH
CC
CC
IN
IN
= 20 mA, V
= 20 mA, V
= 0 V, V
= 30 V, V
= -20 mA, V
= -20 mA, V
= 5 V (I
= 30 V (I
CC
CC1
CC
CC2
= 30 V
)
CC
CC
= 30 V
CC
CC
)
= 5 V
= 30 V
= 5 V
= 30 V

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