10
Device
Parameter Sym. HCPL- Min. Typ.* Max. Units Test Conditions Fig. Note
Propagation Delay t
PHL
2731 25 100 µs T
A
= 25°C 6, 7, 2
Time to Logic 0731 8, 9
Low at Output 120 I
F
= 0.5 mA
Rl = 4.7 kΩ
2730 5 20 T
A
= 25°C
2731
0730
0731
25 I
F
= 1.6 mA, Rl = 2.2 kΩ
0.5 2 T
A
= 25°C
3 I
F
= 12 mA, Rl = 270 Ω
Propagation Delay t
PLH
2731 10 60 µs T
A
= 25°C 7, 8, 2
Time to Logic 0731 9
High at Output 90 I
F
= 0.5 mA, Rl = 4.7 kΩ
2730 10 35 T
A
= 25°C
2731
0730
0731
50 I
F
= 1.6 mA, Rl = 2.2 kΩ
1 10 T
A
= 25°C
15 I
F
= 12 mA, Rl = 270 Ω
Common Mode |CM
H
| 1000 10000 V/µs I
F
= 0 mA, T
A
= 25°C, 10 2, 6,
Transient Immunity Rl = 2.2 kΩ 7
at Logic High |V
CM
| = 10 V
p-p
Output
Common Mode |CM
L
1000 10000 V/µs I
F
= 1.6 mA, T
A
= 25°C,
Transient Immunity Rl = 2.2 kΩ
at Logic Low Level |V
CM
| = 10 V
p-p
Output
*All typical values at T
A
= 25°C and V
CC
= 5 V, unless otherwise noted.
Switching Specications (AC)
Over recommended operating conditions (T
A
= 0°C to 70°C), V
CC
= 5 V, unless otherwise specied.
(See note 8.)
Notes:
1. Pin 5 should be the most negative voltage at the detector side.
2. Each channel.
3. DC CURRENT TRANSFER RATIO (CTR) is dened as the ratio of output collector current, I
O
, to the forward LED input current, I
F
, times 100%.
4. Device considered a two-terminal device: pins 1, 2, 3, and 4 shorted together, and pins 5, 6, 7, and 8 shorted together.
5. Measured between pins 1 and 2 shorted together, and pins 3 and 4 shorted together.
6. Common mode transient immunity in a Logic High level is the maximum tolerable (positive) dV
CM
/dt of the common mode pulse, V
CM
, to as-
sure that the output will remain in a Logic High state (i.e., V
O
> 2.0 V). Common mode transient immunity in a Logic Low
level is the maximum tolerable (negative) dV
CM
/dt of the common mode pulse, V
CM
, to assure that the output will remain in a Logic Low state
(i.e., V
O
< 0.8 V).
7. In applications where dV/dt may exceed 50,000 V/µs (such as static discharge) a series resistor, R
CC
, should be included to protect the detec-
tor IC from destructively high surge currents. The recommended value is R
CC
= 110 Ω.
8. Use of a 0.1 µF bypass capacitor connected between pins 5 and 8 adjacent to the device is recommended.
9. In accordance with UL 1577, each optocoupler is proof tested by applying an insulation test voltage > 4500 V rms for 1 second (leakage
detection current limit, I
I-O
< 5 µA).
10. In accordance with UL 1577, each optocoupler is proof tested by applying an insulation test voltage > 6000 V rms for 1 second (leakage
detection current limit, I
I-O
< 5 µA).
11. Measured between the LED anode and cathode shorted together and pins 5 through 8 shorted together.
12. Derate linearly above 65°C free-air temperature at a rate of 2.3 mW/°C for the SO-8 package.
Package Characteristics
Device
Parameter Symbol HCPL- Min. Typ.* Max. Units Test Conditions Fig. Note
Input-Output Momentary V
ISO
3750 V rms RH ≤50%, 4, 9
Withstand Voltage** t = 1 min.,
Option 020 2730 5000 4, 10
2731
Resistance R
I-O
10
12
V
I-O
= 500 VDC 4
(Input-Output) RH ≤45%
Capacitance C
I-O
0.6 pF f = 1 MHz 11
(Input-Output)
Input-Input Insulation I
I-I
0.005 µA RH ≤45% 5
Leakage Current V
I-I
= 500 VDC
Input-Input Insulation R
I-I
10
11
5
Leakage Current
Capacitance C
I-I
2730 0.03 pF 5
(Input-Input) 2731
0730 0.25
0731
*All Typical values at T
A
= 25°C unless otherwise noted.
**The Input-Output Momentary Withstand Voltage is a dielectric voltage rating that should not be interpreted as an input-output continuous
voltage rating. For the continuous voltage rating refer to the IEC/EN/DIN EN 60747-5-2 Insulation Characteristics Table (if applicable), your equip-
ment level safety specication or Avago Application Note 1074 entitled “Optocoupler Input-Output Endurance Voltage.
T
A
= 25°C
11
Figure 7. Propagation delay vs. temperature. Figure 8. Propagation delay vs. input diode forward
current.
Figure 6. Propagation delay to logic low vs. pulse
period.
Figure 4. Input diode forward current vs. forward
voltage.
Figure 5. Supply current per channel vs. input
diode forward current.
Figure 1. DC transfer characteristics. Figure 2. Current transfer ratio vs. forward current. Figure 3. Output current vs. input diode forward
current.
HCPL-2730 fig 1
0 1 2
V
O
– OUTPUT VOLTAGE – V
I
O
– OUTPUT CURRENT – mA
60
30
0
I
F
= 5.0 mA
I
F
= 4.5 mA
I
F
= 4.0 mA
I
F
= 3.5 mA
I
F
= 1.0 m
A
T
A
= 25° C
V
CC
= 5.0 V
I
F
= 0.5 mA
I
F
= 1.5 m
A
I
F
= 2.0 m
A
I
F
= 2.5 mA
I
F
= 3.0 mA
HCPL-2730 fig 2
I
F
– FORWARD CURRENT – mA
2500
2000
1000
500
0.1 1.0
CTR – CURRENT TRANSFER RATIO – %
10
1500
0
V
CC
= 5.0 V
V
O
= 0.4 V
T
A
= 25° C
T
A
= 0° C
T
A
= 70° C
T
A
= 85° C
T
A
= -40° C
HCPL-2730 fig 3
I
F
– INPUT DIODE FORWARD CURRENT – mA
100
10
0.1
0.1 1 10
I
O
– OUTPUT CURRENT – mA
1.0
T
A
= 85° C
T
A
= 25° C
T
A
= -40° C
V
CC
= 5.0 V
V
O
= 0.4 V
HCPL-2730 fig 8
I
F
– INPUT DIODE FORWARD CURRENT – mA
50
40
20
10
0 2 4 6
t
P
– PROPAGATION DELAY – µs
108
30
0
60
V
CC
= 5 V
T
A
= 25° C
70
t
PHL
R
L
= 2.2 k OR 4.7 k
t
PLH
R
L
= 4.7 k
t
PLH
R
L
= 2.2 k
HCPL-2730 fig 4
V
F
– FORWARD VOLTAGE – V
100
10
0.1
0.01
1.1 1.2 1.3 1.4
I
F
– FORWARD CURRENT – mA
1.61.5
1.0
0.001
1000
I
F
T = 25°C
A
V
F
+
HCPL-2730 fig 5
I
F
– INPUT DIODE FORWARD CURRENT – mA
100
10
0.1 1.0
I
CC
(PER CHANNEL) – SUPPLY CURRENT – mA
10
1.0
T
A
= 25° C
100
0.1
HCPL-2731
V
CC
= 18 V
HCPL-2730
HCPL-2731
V
CC
= 7 V
HCPL-2730 fig 6
T – INPUT PULSE PERIOD – ms
100
10
0.01 0.1
t
PHL
– PROPAGATION DELAY
TO LOGIC LOW – µs
1.0
1.0
T
A
= 25° C
10
0.1
HCPL-2731/0731
I
F
= 0.5 mA
R
L
= 4.7 k
HCPL-2730/0730
HCPL-2731/0731
I
F
= 1.6 mA
R
L
= 2.2 k
0
V
O
I
F
V
OL
t
PHL
T
50 µs
1.5 V
5 V
12

HCPL-2731

Mfr. #:
Manufacturer:
Broadcom / Avago
Description:
High Speed Optocouplers 100kBd 2Ch 0.5mA
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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