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PDF PC902 Data sheet ( Hoja de datos )

Número de pieza PC902
Descripción AC Input Type OPIC Photocoupler
Fabricantes Sharp Electrionic Components 
Logotipo Sharp Electrionic Components Logotipo



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PC902
AC Input Type OPIC
Photocoupler
PC902
s Features
1. Capable of forming an integration circuit
in conjunction with an external capacitor
2. AC input
3. High sensitivity
( IFHL : MAX. 2mA )
4. High isolation voltage between input and
output
( Viso : 5 000V rms )
5. Standard dual-in-line package
6. Recognized by UL, file No. E64380
s Applications
1. Programmable controllers
2. Telephone sets
3. AC line monitors
s Outline Dimensions
( Unit : mm)
0.85 ± 0.3
1.2 ± 0.3
8 7 65
PC902
Internal connection
diagram
10k
0.01 µ F
(ExternalC)
8 76
5
Voltage
regulator
1 2 34
Primarys side mark ( Sunken place )
Amp
1234
9.22 ± 0.5
7.62 ± 0.3
0.5 ± 0.1
2.54 ± 0.25
θ = 0˚ to 13 ˚
θ 0.26 ± 0.1
θ
s Absolute Maximum Ratings
Input
Output
Parameter
Forward current
*1Peak forward current
Power dissipation
Supply voltage
Output voltage
Output current
Power dissipation
Total power dissipation
*2Isolation voltage
Operating temperature
Storage temperature
*3Soldering temperature
1 NC
2 VIN1
3 VIN2
4 NC
5 VAUX
6 GND
7 VO
8 VCC
* “ OPIC ” ( Optical IC ) is a trademark of the SHARP Corporation.
An OPIC consists of a light-detecting element and signal-
processing circuit integrated onto a single chip.
( Ta = 25˚C)
Symbol
IF
I FM
P
V CC
VO
IO
PO
P tot
V iso
T opr
T stg
T sol
Rating
± 20
±1
30
15
15
16
150
170
5 000
- 25 to + 85
- 55 to + 125
260
Unit
mA
A
mW
V
V
mA
mW
mW
V rms
˚C
˚C
˚C
*1 Pulse width<=100 µ s,
Duty ratio : 0.001
*2 40 to 60% RH, AC for
1 minute
*3 For 10 seconds
In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that occur in equipment using any of SHARP's devices, shown in catalogs,
data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device.

1 page




PC902 pdf
Fig. 5 Low Level Output Voltage vs.
Low Level Output Current
1.0
VCC = 5V
T a = 25˚C
0.5
0.2
0.1
0.05
0.02
0.01
1
2
5 10 20
50
Low level output current I OL ( mA )
100
Fig. 7 Supply Current vs. Supply Voltage
3
Ta=
2 - 25˚C
25˚C
85˚C
1
ICCL
ICCL
ICCH
ICCL
I CCH
ICCH
0
0 5 10 15
Supply voltage V CC (V)
Fig. 9 AUX Current vs. Ambient
Temperature
2
V CC = 5V
1
AUX sink current I AUX2
IF = 0mA
V AUX
= 1.3V
0
-1
-2
-3
-4
- 25
AUX source current I AUX1
IF = ± 2mA
0 25 50 75 100
Ambient Temperature T a (˚C)
PC902
Fig. 6 Low Level Output Voltage vs.
Ambient Temperature
0.2
VCC
= 5V
ICC = 16mA
0.15
0.1
8mA
5mA
0.05
0
- 25 0
25 50 75 100
Ambient temperature T a (˚C)
Fig. 8 AUX Current vs. Forward Current
4 VCC = 5V
VAUX = 1.3V
2 AUX sink current
T a = 25˚C
I AUX2
0
- 2 AUX source current
I AUX1
-4
AUX source current
I AUX1
-6
-8
- 20 - 15 - 10 - 5 0 5 10 15 20
Forward current I F ( mA )
Test Circuit for AUX
Forward
current IF
2
3
Amp.
Voltage regulator
8
10k
7
IAUX
5I
5V
6
{ + : Current flowed from 2 terminal
- : Current flowed out to 2 terminal

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