acpl-w611 Avago Technologies, acpl-w611 Datasheet - Page 10

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acpl-w611

Manufacturer Part Number
acpl-w611
Description
High Cmr, High Speed Ttl Compatible Optocoupler
Manufacturer
Avago Technologies
Datasheet
Figure 7. Propagation delay vs. temperature
Figure 9. Pulse width distortion vs. temperature
Figure 11. Test circuit for common mode transient immunity and typical
waveforms
10
I F
100
-10
80
60
40
20
V
30
20
10
0
40
0
-60
FF
-60
V
V
I
CM
V
V
F
CC
t
-40
O
O
= 7.5 mA
-40
PHL
0.5 V
t
0 V
5 V
= 5.0 V
PLH
R
B
A
, R
R
-20
L
T
-20
L
A
T
= 350 kΩ
L
, R
SWITCH AT B: I
= 4 kΩ
A
SWITCH AT A: I
= 350 Ω
– TEMPERATURE – °C
L
– TEMPERATURE – °C
= 350 Ω
0
1 KΩ
4 KΩ
0
t
1
3
PLH
R
20
L
, R
20
= 1 kΩ
t
PLH
L
GENERATOR
= 1 KΩ
40
Z
+
40
O
F
F
PULSE
, R
= 50 Ω
= 7.5 mA
= 0 mA
V
I
L
F
60
CC
= 4 KΩ
60
= 7.5 mA
_
= 5.0 V
GND
80
V
80
V
V
V
CC
CM
O
O
(MIN.)
(MAX.)
100
100
(PEAK)
6
5
4
0.1 μF
BYPASS
CM
CM
350 Ω
H
L
OUTPUT V
MONITORING
NODE
+5 V
O
Figure 12. Temperature coefficient for forward voltage vs. input current
Figure 8. Propagation delay vs. pulse input
current
Figure 10. Rise and fall time vs. temperature
105
300
290
90
75
60
45
30
60
40
20
0
-2.4
-2.2
-2.0
-1.8
-1.6
-1.4
-1.2
-60
5
0.1
V
I
V
T
F
CC
A
t
-40
CC
PHL
= 7.5 mA
I
= 25°C
F
= 5.0 V
= 5.0 V
– PULSE INPUT CURRENT – mA
I
7
, R
F
-20
t
T
– PULSE INPUT CURRENT – mA
PLH
A
L
= 350 Ω
– TEMPERATURE – °C
R
R
R
R
, R
L
L
L
L
1 KΩ
4 KΩ
0
= 350 Ω, 1 kΩ, 4 kΩ
1
L
= 1 kΩ
= 350 Ω
9
= 4 kΩ
= 350 Ω
20
t
PLH
t
PLH
11
, R
40
, R
L
L
= 1 KΩ
10
= 4 KΩ
60
13
t
t
RISE
FALL
80
100
15
100

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