Sheet No.: D2-A05601EN
7
PC910L0NSZ Series
Fig.4 Forward Current vs. Ambient
Temperature
Fig.5 Collector Power Dissipation vs.
Ambient Temperature
Fig.8 Low Level Output Voltage vs. Ambient
Temperature
Fig.9 Input Threshold Current vs.
Ambient Temperature
Fig.6 Forward Current vs. Forward Voltage Fig.7 High Level Output Current vs.
Ambient Temperature
Forward current I
F
(mA)
Ambient temperature T
a
(°C)
0
5
10
15
20
25
40 0 25 50 100 12525
75
8570
Forward voltage V
F
(V)
Forward current I
F
(mA)
1.00 1.20 1.40 1.60 1.80 2.00
1
10
100
0.1
T
a
=50˚C
T
a
=0˚C
T
a
=−20˚C
T
a
=−40˚C
T
a
=85˚C
T
a
=25˚C
Ambient temperature T
a
(˚C)
High level output current I
OH
(µA)
50 25 0 25 50 10075
0.01
0.1
1.0
10.0
100.0
0.001
I
F
=250µA
V
CC
=5.5V
V
O
=5.5V
V
E
=2.0V
Input threshold current I
FHL
(mA)
4.0
5.0
6.0
0.0
V
CC
=5V
V
O
=0.8V
V
E
=2.0V
R
L
=350
3.0
2.0
Ambient temperature T
a
(˚C)
50 25 0 25 50 10075
1.0
Low level output voltage V
OL
(V)
0.4
0.6
0.8
0.0
I
F
=5.0mA
V
CC
=5.5V
V
E
=2.0V
0.2
I
O
=16.0mA
I
O
=12.8mA
I
O
=9.6mA
I
O
=6.4mA
Ambient temperature T
a
(˚C)
50 25 0 25 50 10075
Collector power dissipation P
C
(mW)
Ambient temperature T
a
(°C)
0
20
40
60
80
85
100
40 0 25 50 100 12525
75
8570
Sheet No.: D2-A05601EN
8
PC910L0NSZ Series
Fig.10 Output Voltage vs. Forward Current
Fig.12 Propagation Delay Time vs.
Ambient Temperature
Fig.11 Propagation Delay Time vs. Forward
Current
Remarks : Please be aware that all data in the graph are just for reference and not for guarantee.
0
1
2
60
3
12
6
43
5
4
5
Output voltage V
O
(V)
Forward current I
F
(mA)
V
CC
=5.0V
V
O
=0.8V
V
E
=2.0V
T
a
=25˚C
R
L
=350
R
L
=1k
R
L
=4k
Propagation delay time t
PHL
, t
PLH
(ns)
0
100
20
40
60
80
50 025 755025 100
Ambient temperature T
a
(˚C)
I
F
=7.5mA
V
CC
=5.0V
R
L
=350
t
PLH
t
PHL
Propagation delay time t
PHL
, t
PLH
(ns)
0
100
20
40
60
80
5101520
Forward current I
F
(mA)
T
a
=25˚C
V
CC
=5.0V
R
L
=350
t
PLH
t
PHL
Sheet No.: D2-A05601EN
For additional design assistance, please review our corresponding Optoelectronic Application Notes.
9
PC910L0NSZ Series
Design Considerations
Transistor of detector side in bipolar configuration may be damaged by static electricity due to its minute de-
sign.
When handling these devices, general countermeasure against static electricity should be taken to avoid
breakdown of devices or degradation of characteristics.
Notes about static electricity
In order to stabilize power supply line, we should certainly recommend to connect a by-pass capacitor of
0.01µF or more between V
CC
and GND near the device.
In case that some sudden big noise caused by voltage variation is provided between primary and secondary
terminals of photocoupler some current caused by it is floating capacitance may be generated and result in
false operation since current may go through LED or current may change.
If the photocoupler may be used under the circumstances where noise will be generated we recommend to
use the bypass capacitors at the both ends of LED.
The detector which is used in this device, has parasitic diode between each pins and GND.
There are cases that miss operation or destruction possibly may be occurred if electric potential of any pin
becomes below GND level even for instant.
Therefore it shall be recommended to design the circuit that electric potential of any pin does not become
below GND level.
This product is not designed against irradiation and incorporates non-coherent LED.
Design guide
Degradation
In general, the emission of the LED used in photocouplers will degrade over time.
In the case of long term operation, please take the general LED degradation (50% degradation over 5years)
into the design consideration.
Please decide the input current which become 2times of MAX. I
FHL
.
Low level input current
High level input current
High level enable input voltage
Low level enable input voltage
Supply voltage
Fan out (TTL load)
Operating temperature
Parameter
I
FL
I
FH
V
EH
V
EL
V
CC
N
T
opr
Symbol
0
8
2.0
0
4.5
40
MIN.
250
15
V
CC
0.8
5.5
8
70
MAX.
TYP.
µA
mA
V
V
V
˚C
Unit
Recommended operating conditions

PC910L0NSZ

Mfr. #:
Manufacturer:
Sharp Microelectronics
Description:
OPTOISO 5KV OPEN COLLECTOR 8DIP
Lifecycle:
New from this manufacturer.
Delivery:
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