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HCPL0630 Datasheet, PDF (8/10 Pages) Agilent(Hewlett-Packard) – Dual Channel, High CMR, High Speed, TTL Compatible Optocouplers 8 Pin DIP and SOIC-8
8
105
VCC = 5.0 V
TA = 25°C
90
t PLH , R L = 4 KΩ
75
60
45
t PHL , R L = 350 Ω
1 KΩ
4 KΩ
30
5
7
9
t PLH , R L = 1 KΩ
t PLH , R L = 350 Ω
11
13
15
I F – PULSE INPUT CURRENT – mA
Figure 9. Propagation Delay vs.
Pulse Input Current.
40
RL = 4 kΩ
30
20
RL = 350 Ω
10
VCC = 5.0 V
I F = 7.5 mA
0
RL = 1 kΩ
-60 -40 -20 0 20 40 60 80 100
TA – TEMPERATURE – °C
Figure 10. Pulse Width Distortion
vs. Temperature.
IF
B
1
A
2
3
4
VCC 8
6
GND 5
+5 V
0.1 µF
BYPASS 350 Ω
OUTPUT V O
MONITORING
NODE
VCM
+
_
PULSE GEN.
Z O = 50 Ω
VCM
0V
5V
VO
VO
0.5 V
VCM (PEAK)
SWITCH AT A: IF = 0 mA
VO (min.)
SWITCH AT B: I F = 7.5 mA
VO (max.)
CM H
CM L
Figure 12. Test Circuit for Common Mode
Transient Immunity and Typical Waveforms.
VCC = 5.0 V
I F = 7.5 mA
300
290
R L = 4 KΩ
60
R L = 1 KΩ
40
t FALL
t RISE
20
R L = 350 Ω
0
R L = 350 Ω, 1 KΩ, 4 KΩ
-60 -40 -20 0 20 40
60 80 100
TA – TEMPERATURE – °C
Figure 11. Rise and Fall Time vs.
Temperature.
-2.4
-2.2
-2.0
-1.8
-1.6
-1.4
-1.2
0.1
1
10
100
I F – PULSE INPUT CURRENT – mA
Figure 13. Temperature Coefficient of
Forward Voltage vs. Input Current.
5V
VCC1
CHANNEL 1 SHOWN
8
5V
VCC2
GND 1
1
470
*D1
IF 1
+
VF
–2
SHIELD
390Ω
7
0.1 µF
BYPASS
5
2
GND 2
*DIODE D1 (1N916 OR EQUIVALENT) IS NOT REQUIRED FOR UNITS WITH OPEN COLLECTOR OUTPUT.
Figure 14. Recommended TTL/LSTTL to TTL/LSTTL Interface Circuit.