ACNV260E-000E Avago Technologies US Inc., ACNV260E-000E Datasheet - Page 8

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ACNV260E-000E

Manufacturer Part Number
ACNV260E-000E
Description
2MM DTI, Jupiter,type E
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of ACNV260E-000E

Voltage - Isolation
5000Vrms
Number Of Channels
1, Unidirectional
Current - Output / Channel
50mA
Data Rate
10MBd
Propagation Delay High - Low @ If
55ns @ 10mA
Current - Dc Forward (if)
20mA
Input Type
DC
Output Type
Open Collector
Mounting Type
Through Hole
Package / Case
10-DIP (0.433", 11.01mm)
Number Of Elements
1
Forward Voltage
1.85V
Forward Current
20mA
Output Current
50mA
Isolation Voltage
5000Vrms
Operating Temp Range
-40C to 105C
Power Dissipation
85mW
Mounting
Through Hole
Reverse Breakdown Voltage
3V
Operating Temperature Classification
Industrial
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Figure 6. Test circuit for t
Figure 7. Typical propagation delay vs. temperature.
Figure 9. Typical pulse width distortion vs. temperature.
8
MONITORING
PULSE GEN.
Z
t
100
f
O
-10
= t
90
80
70
60
50
40
30
20
40
35
30
25
20
15
10
= 50Ω
-5
5
0
r
-60
-60
INPUT
= 5 ns
NODE
V
T
CC
A
= 25°C
t
-40
-40
= 5.0 V
PLH
t
R
PLH
M
, R
I
, R
F
L
L
-20
= 350Ω
-20
= 1kΩ
R
L
PHL
1
2
3
4
5
= 350Ω
and t
0
T
0
t
T
A
PLH
A
- TEMPERATURE - °C
- TEMPERATURE - °C
SHIELD
R
, R
PLH
t
t
L
PHL
PHL
= 4kΩ
20
L
20
= 4kΩ
, R
, R
L
L
= 350Ω
= 1kΩ
40
40
4kΩ
R
L
= 1kΩ
10
9
8
7
6
60
60
0.1μF
BYPASS
80
80
V
I
F
CC
= 10.0 mA
*C
= 5.0 V
L
+5 V
100
100
R
L
OUTPUT V
MONITORING
NODE
120
120
O
Figure 8. Typical propagation delay vs. pulse input current.
Figure 10. Typical rise and fall time vs. temperature.
OUTPUT
300
250
200
150
100
90
80
70
60
50
40
30
INPUT
50
0
-60
8
V
*C
I
O
F
L
PROBE AND STRAY WIRING CAPACITANCE.
IS APPROXIMATELY 15 pF WHICH INCLUDES
V
I
F
t
CC
PHL
= 10.0 mA
-40
= 5.0 V
, R
9
t
t
PHL
L
PHL
= 1kΩ
R
-20
, R
L
= 350Ω
I
L
F
10
= 350Ω
- PULSE INPUT CURRENT - mA
0
T
A
t
PHL
- TEMPERATURE - °C
, R
11
R
20
R
t
L
PLH
L
L
= 1kΩ
= 4kΩ
= 4kΩ
t
PLH
40
12
t
, R
PLH
R
L
L
, R
= 4kΩ
= 350Ω, 1kΩ, 4kΩ
60
L
1.5 V
I
I
= 1kΩ
F
F
13
t
PLH
= 10 mA
= 5 mA
80
, R
V
T
A
CC
L
= 25°C
= 350Ω
= 5.0 V
14
100
t
t
RISE
FALL
120
15

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