HCPL-263N#300 Avago Technologies US Inc., HCPL-263N#300 Datasheet - Page 12

OPTOCOUPLER 2CH 10MBD 8-SMD GW

HCPL-263N#300

Manufacturer Part Number
HCPL-263N#300
Description
OPTOCOUPLER 2CH 10MBD 8-SMD GW
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HCPL-263N#300

Package / Case
8-SMD Gull Wing
Voltage - Isolation
3750Vrms
Number Of Channels
2, Unidirectional
Current - Output / Channel
50mA
Data Rate
10MBd
Propagation Delay High - Low @ If
53ns @ 3.5mA
Current - Dc Forward (if)
10mA
Input Type
DC
Output Type
Open Collector
Mounting Type
Surface Mount, Gull Wing
Isolation Voltage
3750 Vrms
Maximum Continuous Output Current
50 mA
Maximum Fall Time
12 ns
Maximum Forward Diode Current
10 mA
Maximum Rise Time
42 ns
Minimum Forward Diode Voltage
1 V
Output Device
Logic Gate Photo IC
Configuration
2 Channel
Maximum Baud Rate
10 MBps
Maximum Forward Diode Voltage
1.6 V
Maximum Reverse Diode Voltage
3 V
Maximum Power Dissipation
60 mW
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
HCPL-263N#300HCPL-263N
Manufacturer:
AVAGO
Quantity:
8 000
Company:
Part Number:
HCPL-263N#300HCPL-263N-000E
Manufacturer:
AVAGO
Quantity:
3 100
Company:
Part Number:
HCPL-263N#300HCPL-263N-000E
Manufacturer:
AVAGO
Quantity:
8 000
Company:
Part Number:
HCPL-263N#300HCPL-263N-020E
Manufacturer:
AVAGO
Quantity:
20 000
Company:
Part Number:
HCPL-263N#300HCPL-263N-300E
Manufacturer:
AVAGO
Quantity:
8 000
Figure 13. Typical pulse width distortion vs.
temperature.
12
Figure 10. Typical input threshold current vs.
temperature.
2.0
1.5
1.0
0.5
60
50
40
30
20
10
0
0
-60
-60
-40
-40
R
R
R
R
T
T
L
A
A
L
L
L
-20
-20
= 1 kΩ
= 350 Ω
= 1 kΩ
= 4 kΩ
– TEMPERATURE – C
– TEMPERATURE – C
HCPL-261A fig 10
HCPL-261A fig 13
R
L
0
0
= 4 kΩ
20
20
40
40
R
V
V
V
I
L
F
CC
O
CC
60
= 350 Ω
60
= 3.5 mA
= 0.6 V
= 5 V
= 5 V
80
80
100
100
Figure 11. Typical propagation delay vs. tem-
perature.
Figure 14. Typical rise and fall time vs. temperature.
160
140
120
120
100
60
40
20
80
60
40
20
0
0
-60
-60
V
I
F
CC
-40
-40
= 3.5 mA
TPLH
R
TPLH
R
TPLH
R
T
= 5 V
T
L
L
L
A
A
-20
-20
= 4 kΩ
= 1 kΩ
= 350 kΩ
– TEMPERATURE – C
– TEMPERATURE – C
HCPL-261A fig 14
HCPL-261A fig 11
R
R
R
R
L
L
L
L
0
0
= 1 kΩ
= 350 Ω
= 350 Ω, 1 kΩ, 4 kΩ
= 4 kΩ
TPHL
R
L
20
20
= 350 Ω, 1 kΩ, 4 kΩ
V
I
F
CC
40
40
= 3.5 mA
= 5 V
60
60
t
t
rise
fall
80
80
100
100
Figure 12. Typical propagation delay vs. pulse
input current.
120
100
80
60
40
20
0
0
TPLH
R
I
L
F
= 4 kΩ
– PULSE INPUT CURRENT – mA
2
TPHL
R L = 350 Ω, 1 kΩ, 4 kΩ
HCPL-261A fig 12
4
V
T
CC
A
= 25 C
= 5 V
6
8
TPLH
R
TPLH
R
L
L
= 350 Ω
10
= 1 kΩ
12

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