HCPL-2200#300 Avago Technologies US Inc., HCPL-2200#300 Datasheet - Page 10

OPTOCOUPLER, LOGIC GATE, 3750VRMS

HCPL-2200#300

Manufacturer Part Number
HCPL-2200#300
Description
OPTOCOUPLER, LOGIC GATE, 3750VRMS
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HCPL-2200#300

No. Of Channels
1
Optocoupler Output Type
Logic Gate
Input Current
5mA
Output Voltage
20V
Opto Case Style
SMD
No. Of Pins
8
Propagation Delay Low-high
0.17µs
Isolation Voltage
3.75kV
Voltage - Isolation
3750Vrms
Number Of Channels
1, Unidirectional
Current - Output / Channel
25mA
Data Rate
2.5MBd
Propagation Delay High - Low @ If
210ns @ 3mA
Current - Dc Forward (if)
10mA
Input Type
DC
Output Type
Tri-State
Mounting Type
Surface Mount, Gull Wing
Package / Case
8-SMD Gull Wing
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
516-1054-5

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10
Notes:
1. Derate total package power dissipation, P
2. Duration of output short circuit time should
3. Device considered a two-terminal device:
4. The t
Figure 1. Typical logic low output voltage vs.
temperature.
Figure 4. Typical input diode forward
characteristic.
0.001
1000
linearly above 70 C free air temperature at a
rate of 4.5 mW/ C.
not exceed 10 ms.
pins 1, 2, 3, and 4 shorted together and pins
5, 6, 7, and 8 shorted together.
from the 50% point on the leading edge of
the input pulse to the 1.3 V point on the
leading edge of the output pulse. The t
propagation delay is measured from the
0.01
1.0
0.9
0.8
0.7
0.6
0.5
0.4
0.3
0.2
0.1
100
1.0
0.1
10
0
-60
1.1
PLH
-40
propagation delay is measured
V
F
T
1.2
A
– FORWARD VOLTAGE – V
-20
V
– TEMPERATURE – °C
+
F
I
F
0
1.3
20
V
I
V
40
1.4
F
CC
O
= 0 mA
= 6.4 mA
T
= 4.5 V
60
A
= 25 °C
1.5
80
PHL
100
T
,
Figure 2. Typical logic high output current vs.
temperature.
INPUT
MONITORING
NODE
5. When the peaking capacitor is omitted,
6. CM
Figure 5. Test circuit for t
50% point on the trailing edge of the input
pulse to the 1.3 V point on the trailing edge
of the output pulse.
propagation delay times may increase by
100 ns.
common mode voltage that can be
sustained with the output voltage in the
logic low state (V
maximum rate of fall of the common mode
voltage that can be sustained with the
output voltage in the logic high state
(V
-1
-2
-3
-4
-5
-6
-7
-8
PULSE GEN.
0
t
f = 100 kHz
10 % DUTY
r
-60
O
V
= t
CYCLE
L
R
> 2.0 V).
O
is the maximum rate of rise of the
1
f =
= 5 V
-40
INPUT I
5 ns
T
OUTPUT
V
A
O
V
-20
O
– TEMPERATURE – °C
I
F
C
120 pF
V
= 2.4 V
1
F
O
=
0
O
= 2.7 V
< 0.8 V). CM
THE PROBE AND JIG CAPACITANCES
ARE INCLUDED IN C
ALL DIODES ARE 1N916 OR 1N3064.
I
1
2
3
4
20
F
(ON)
R
PLH
I
HCPL-2200
V
I
40
F
, t
CC
= 5 mA
2.15 k
1.6 mA
PHL
t
= 4.5 V
60
PLH
H
, t
is the
GND
r
V
, and t
80
CC
t
1.10 k
PHL
3 mA
100
8
7
6
5
1 AND
f
.
V
CC
681
5 mA
C
2 .
Figure 3. Output voltage vs. forward input
current.
7. Use of a 0.1 F bypass capacitor connected
8. In accordance with UL1577, each
OUTPUT V
MONITORING
NODE
50 % I
1.3 V
between pins 5 and 8 is recommended.
optocoupler is proof tested by applying an
insulation test voltage 4500 V rms for one
second (leakage detection current limit, I
100% production test for partial discharge
(Method b) shown in the IEC/EN/DIN EN
60747-5-2 Insulation Characteristics Table, if
applicable.
5 A). This test is performed before the
C
15 pF
5
4
3
2
1
0
2
I
0 mA
V
0
F
F
I
OH
OL
=
(ON)
(ON)
V
OL
= 6.4 mA
O
I
F
5 k
– INPUT CURRENT – mA
0.5
D
1
5 V
V
T
A
CC
619
= 25 °C
D
D
D
1.0
= 4.5 V
2
3
4
I
OH
= -2.6 mA
1.5
2.0
I-O

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