FREI MOC 3083 Datasheet

PRODUCT SPECIFICATION
DATE:03/24/2004
Photocoupler :
NO.60P42002
cosmo
ELECTRONICS CORPORATION
KMOC3083
Zero Crossing Optoisolators TRIAC
Driver Output (800V Volts Peak)
Features
1. Compact dual-in-line package.
2. 800V peak blocking voltage.
3. Isolation voltage between input and output (Viso:5000Vrms).
REV.
3
For 115/240 Vac(rms) Application:
1. Solenoid/Valve Controls.
2. Lighting Controls.
3. Static Power Switches.
4. AC Motor Drives.
5. Temperature Controls.
6. E.M. Contactors.
7. AC Motor Staters.
8. Solid State Relays.
9. Programmable controllers.
PRODUCT SPECIFICATION
DATE:03/24/2004
cosmo
ELECTRONICS CORPORATION
1.
OUTSIDE DIMENSION : UNIT (mm)
Photocoupler :
KMOC3083
7.62
6.50
Anode
3.50
3.00
0.4
3083
XXX
7.30
NO.60P42002
Date Code
2.70
REV.
3
0.26
13.00
o
13.00
o
2. SCHEMATIC : TOP VIEW
1
2
Zero
Crossing
3
Circuit
6
4
1.2
2.54
5.08
1.Anode
2.Cathode
3.NC
4.Main Terminal
6.Main Terminal
0.5
TOLERANCE : ±0.2mm
PRODUCT SPECIFICATION
y
)
(
DATE:03/24/2004
Photocoupler :
cosmo
ELECTRONICS CORPORATION
Absolute Maximum Ratings
Parameter
Forward current
Input
Output
Peak forward current Reverse voltage Power dissipation Off-State Output Terminal voltage On-State R.M.S. Current Peak Repetitive Surget Current
PW=10ms.DC 10%)
Power dissipation Total power dissipation Isolation voltage 1 minute Operating temperature Storage temperature Soldering temperature 10 second
KMOC3083
S
mbol Rating Unit
I
F
I
FM
V
R
P
D
V
DRM
T(RMS
I
TSM
D
tot
iso opr stg sol
I
P P V T T T
NO.60P42002
50 mA
1 A 6 V
70 mW 800 V 100 mA
1 A
300 mW 330 mW
5000 Vrms
-40 to +80
-40 to +125 260
REV.
PEAK
3
Electro-optical Characteristics
Parameter
Input
Output
Tranfer charac­teristics
Forward voltage Reverse current Peak Blocking Current ON-State Voltage Holding Current Critical rate of rise of OFF-state
Inhibit Voltage(MT1-MT2 Voltage above which device not trigger)
Leakage in Inhibited State
Isolation resistance Minimum trigger current
Symbol Conditions MIN. TYP. MAX. Unit
=10mA
I
V
F
I
R
I
DRM
V
TM
IH
dV/dt
V
INH
I
DRM2
iso
R
I
FT
F
=4V
V
R
V
=800V
DRM
=100mA
I
TM
V
=(1/2)*Rated
DRM
IF= Rated IFT - 8 20 V
=Rated IFT,Rated V
I
F
State DC500V
Main Terminal Voltage=3V
DRM
,Off
– –
- 60 500
- 100 - uA
600 - - V/uS
5x10
1.2 1.4 V 10 uA
nA
1.8 3 V
- - 500 uA
10
1011
ohm
- 5 mA
PRODUCT SPECIFICATION
1.0
0
0.5
3.0
2.0
1.5
2.5
DATE:03/24/2004
cosmo
ELECTRONICS CORPORATION
Fig.1 Forward Current vs. Ambient Temperature
50
40
F
30
20
10
Forward current I (mA)
25
Ambient Temperature Ta( ℃)
Fig.3 On-State R.M.S. Current vs. Ambient Temperature
120
Photocoupler :
KMOC3083
7555
125
1000-30
NO.60P42002
Fig.2 Diode Power Dissipation vs.
Ambient Temperature
100
80 70 60
40
20
Diode power dissipation P (mW)
0
250-30
Ambient Temperature Ta( ℃)
Fig.4 Total Power Dissipation vs.
Ambient Temperature
600
1007550
REV.
3
100
80
60
40
20
On-State R.M.S. Current(mA)
0
25
Ambient temperature Ta( ℃)
Fig.5 Peak Forward Current vs. Duty Ratio
10000
FM
1000
100
Peak forward current I (mA)
10
-3 -2
7555
1000-30
1010
Duty ratio
500
400
330 300
200
100
125
Total power dissipation Pc (mW)
75
25-3000
10050
Ambient Temperature Ta( ℃)
Fig.6 Forward Current vs.
Forward Voltage
CTa=25°
-1
10
1
500
200
100
F
Forward current I (mA)
50
20
10
Ta=75°
50°
5
2
1
25°
-25°
Forward voltage VF (V)
PRODUCT SPECIFICATION
DATE:03/24/2004
cosmo
ELECTRONICS CORPORATION
Fig.7 On-State Characteristics
VTM ,On- State Voltage(V)
Fig.9 Leakage with LED Off vs. Temperature
Photocoupler :
KMOC3083
NO.60P42002
Fig.8 Inhibit Voltage vs. Temperature
1.4
1.3
1.2
1.1
1.0
0.9
0.8
0.7
0.6
Ambient Temperature Ta( ℃)
Fig.10 IDRM2 ,Leakage in Inhibit
State vs. Temperature
REV.
3
Ambient Temperature Ta( ℃)
Fig.11 Trigger Current vs. Temperature
Ambient Temperature Ta( ℃)
Ambient Temperature Ta( ℃)
PRODUCT SPECIFICATION
DATE: 03/24/2004
Photocoupler :
cosmo
ELECTRONICS CORPORATION
NOTICE
a general product description and is subject to change without notice. Please contact cosmo in order to obtain the latest device data sheets before using any cosmo device. cosmo does not assume any responsibility for use of any circuitry described. No circuit patent licenses are implied. This publication is the property of cosmo . No part of this publication may be reproduced or copied in any form or by any means, or transferred to any third party without the prior written consent of cosmo Electronics Corporation.
The devices listed in this document are designed for general
The information contained in this document is intended to be
KMOC3083
NO.60P42002
REV.
3
applications only in electronic equipment. No devices shall be deployed which require higher level of reliability such as:
-- Medical and other life support equipments.
-- Space application.
-- Telecommunication equipment (trunk lines).
-- Nuclear power control equipment.
Unless it received prior written approval from cosmo.
cosmo takes no responsibility for damages arise form the improper usage of our device. Please contact cosmo for further information regarding the above notices.
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