HCPL-354-06AE

4
Absolute Maximum Ratings
Parameters Symbol Min. Max. Units
Storage Temperature T
S
–55 150 ˚C
Ambient Operating Temperature T
A
–55 100 ˚C
Lead Solder Temperature for 10s T
sol
260 ˚C
(1.6 mm below seating plane)
Average Forward Current I
F
±50 mA
Input Power Dissipation P
I
70 mW
Collector Current I
C
50 mA
Collector-Emitter Voltage V
CEO
35 V
Emitter-Collector Voltage V
ECO
6 V
Collector Power Dissipation P
C
150 mW
Total Power Dissipation P
tot
170 mW
Isolation Voltage V
iso
3750 V
rms
(AC for 1 minute, R.H. = 40 ~ 60%)
[1]
Rank Mark CTR (%) Conditions
A 50 ~ 150 I
F
= ±1 mA,
No Mark 20 ~ 400 V
CE
= 5 V,
T
A
= 25˚C
Electrical Specications (T
A
= 25˚C)
Parameter Symbol Min. Typ. Max. Units Test Conditions
Forward Voltage V
F
1.2 1.4 V I
F
= ±20 mA
Terminal Capacitance C
t
30 250 pF V = 0, f = 1 kHz
Collector Dark Current I
CEO
100 nA V
CE
= 20 V, I
F
= 0
Collector-Emitter Breakdown Voltage BV
CEO
35 V I
C
= 0.1 mA, I
F
= 0
Emitter-Collector Breakdown Voltage BV
ECO
6 V I
E
= 10 µA, I
F
= 0
Collector Current I
C
0.2 4 mA I
F
= ±1 mA,
Current Transfer Ratio
[2]
CTR 20 400 % V
CE
= 5 V
Collector-Emitter Saturation Voltage V
CE(sat)
0.1 0.2 V I
F
= ±20 mA, I
C
= 1 mA
Isolation Resistance R
iso
5 x 10
10
1 x 10
11
DC 500 V
40 ~ 60% R.H.
Floating Capacitance C
f
0.6 1 pF V = 0, f = 1 MHz
Response Time (Rise) t
r
4 18 µs V
CE
= 2 V, I
C
= 2 mA,
Response Time (Fall) t
f
3 18 µs R
L
= 100
Notes:
1. Isolation voltage shall be measured using the following method:
(a) Short between anode and cathode on the primary side and between collector and emitter on the secondary side.
(b) The isolation voltage tester with zero-cross circuit shall be used.
(c) The waveform of applied voltage shall be a sine wave.
2.
CTR = x 100%
I
C
I
F
5
I
F
– FORWARD CURRENT – mA
1
V
F
– FORWARD VOLTAGE – V
20 30
10
5
500
100
HCPL-354 fig 4
T
A
= 75°C
5 15 25
2
20
50
100
200
T
A
= 50°C
T
A
= 25°C
T
A
= 0°C
T
A
= -25°C
Figure 1. Forward current vs. ambient temperature. Figure 2. Collector power dissipation vs. ambient
temperature.
Figure 3. Collector-emitter saturation voltage vs.
forward current.
Figure 4. Forward current vs. forward voltage. Figure 5. Current transfer ratio vs. forward current. Figure 6. Collector current vs. collector-emitter volt-
age.
Figure 7. Relative current transfer ratio vs. ambient
temperature.
Figure 8. Collector-emitter saturation voltage vs.
ambient temperature.
Figure 9. Collector dark current vs. ambient tempera-
ture.
I
F
– FORWARD CURRENT – mA
0
T
A
– AMBIENT TEMPERATURE – °C
75 125
50
25
10
40
0 50 100-55
60
HCPL-354 fig 1
30
20
P
C
– COLLECTOR POWER DISSIPATION – mW
0
T
A
– AMBIENT TEMPERATURE – °C
100
50
200
150
HCPL-354 fig 2
75 125250 50 100-55
0
I
F
– FORWARD CURRENT – mA
10 100
40
0.20.1
HCPL-354 fig 5
20
60
120
140
CTR – CURRENT TRANSFER RATIO – %
80
100
0.5 201 5052
V
CE
= 5 V
T
A
= 25°C
I
C
– COLLECTOR CURRENT – mA
0
V
CE
– COLLECTOR-EMITTER VOLTAGE – V
6 10
40
20
50
30
HCPL-354 fig 6
P
C
(MAX.)
T
A
= 25°C
I
F
= 30 mA
I
F
= 20 mA
I
F
= 5 mA
30
10
1 2 4 5 7 8 9
I
F
= 1 mA
I
F
= 10 mA
RELATIVE CURRENT TRANSFER RATIO – %
0
100
50
150
HCPL-354 fig 7
V
CE
= 5 V
I
F
= 1 mA
T
A
– AMBIENT TEMPERATURE – °C
8040 60 10020
V
CE(SAT.)
– COLLECTOR-EMITTER
SATURATION VOLTAGE – V
0
0.10
0.02
HCPL-354 fig 8
I
C
= 1 mA
I
F
= 20 mA
T
A
– AMBIENT TEMPERATURE – °C
804020 60 100
0.04
0.06
0.08
I
CEO
– COLLECTOR DARK CURRENT – nA
HCPL-354 fig 9
T
A
– AMBIENT TEMPERATURE – °C
1
8040 60 10020
V
CE
= 20 V
10
100
1000
10000
0
I
F
– FORWARD CURRENT – mA
10.0 15.0
2
5.00
HCPL-354 fig 3
1
3
4
5
6
V
CE(SAT.)
– COLLECTOR-EMITTER
SATURATION VOLTAGE – V
T
A
= 25°C
I
C
= 0.5 mA
I
C
= 1 mA
I
C
= 3 mA
I
C
= 5 mA
I
C
= 7 mA
2.5 7.5 12.5
6
Figure 10. Response time vs. load resistance. Figure 11. Frequency response.
Figure 12. Test circuit for response time.
Figure 13. Test circuit for frequency response.
R
D
V
CC
R
L
OUTPUT
HCPL-354 fig 13
V
CC
R
D
INPUT
R
L
OUTPUT
INPUT
OUTPUT
10%
90%
t
d
t
r
t
s
t
f
HCPL-354 fig 12
RESPONSE TIME – µs
0.1
R
L
– LOAD RESISTANCE – kΩ
0.1 5
1
0.5
0.2
0.5
0.2 2 10
2
HCPL-354 fig 10
1
5
10
20
50
100
V
CE
= 2 V
I
C
= 2 mA
T
A
= 25°C
t
f
t
r
t
s
t
d
VOLTAGE GAIN AV – dB
f – FREQUENCY – kHz
0.5 102
-20
-10
1 50.2
0
HCPL-354 fig 11
100
R
L
= 10 k
R
L
= 1 k
R
L
= 100
1000
V
CE
= 2 V
I
C
= 2 mA
T
A
= 25°C
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Data subject to change. Copyright © 2007 Avago Technologies Limited. All rights reserved.
AV02-0775EN - October 18, 2007

HCPL-354-06AE

Mfr. #:
Manufacturer:
Broadcom / Avago
Description:
Transistor Output Optocouplers 3750 Vrms 20% CTR
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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