MOC3041X [ETC]
OPTICALLY COUPLED BILATERAL SWITCH LIGHT ACTIVATED ZERO VOLTAGE CROSSING TRIAC; 光耦合双向开关光敏电压过零点TRIAC型号: | MOC3041X |
厂家: | ETC |
描述: | OPTICALLY COUPLED BILATERAL SWITCH LIGHT ACTIVATED ZERO VOLTAGE CROSSING TRIAC |
文件: | 总4页 (文件大小:86K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
MOC3040, MOC3041, MOC3042, MOC3043
MOC3040X, MOC3041X, MOC3042X, MOC3043X
OPTICALLYCOUPLEDBILATERAL
SWITCHLIGHTACTIVATEDZERO
VOLTAGECROSSINGTRIAC
Dimensions in mm
2.54
'X'SPECIFICATIONAPPROVALS
l
VDE 0884 in 3 available lead form : -
- STD
1
6
5
4
7.0
6.0
2
3
- G form
-SMDapprovedtoCECC00802
1.2
3.0
DESCRIPTION
7.62
6.62
7.62
0.26
4.0
3.0
The MOC304_ Series are optically coupled
isolators consisting of a Gallium Arsenide
infrared emitting diode coupled with a mono-
lithic silicon detector performing the functions
of a zero crossing bilateral triac mounted in a
standard 6 pin dual-in-line package.
13°
Max
0.5
3.35
0.5
ABSOLUTE MAXIMUM RATINGS
(25 °C unless otherwise noted)
FEATURES
l
Options :-
-550C-+1500C
10mm lead spread - add G after part no.
Surface mount - add SM after part no.
Tape&reel - add SMT&R after part no.
High Isolation Voltage (5.3kVRMS ,7.5kVPK
Zero Voltage Crossing
400V Peak Blocking Voltage
All electrical parameters 100% tested
Custom electrical selections available
Storage Temperature
Operating Temperature
Lead Soldering Temperature
(1.6mm from case for 10 seconds)
-400C - +1000C
2600C
l
l
l
l
l
)
INPUTDIODE
Forward Current
Reverse Voltage
Power Dissipation
50mA
6V
APPLICATIONS
120mW
l
l
l
l
l
CRTs
Power Triac Driver
Motors
Consumer appliances
Printers
(derate linearly 1.41mW/0C above 250C)
OUTPUT PHOTO TRIAC
Off-State Output Terminal Voltage
ForwardCurrent(Peak)
400V
1A
150mW
OPTION G
OPTION SM
SURFACEMOUNT
Power Dissipation
7.62
(deratelinearly1.76mW/0Cabove250C)
POWERDISSIPATION
0.6
1.25
0.1
0.26
0.75
10.46
9.86
Total Power Dissipation
250mW
10.16
(derate linearly 2.94mW/0C above 250C)
ISOCOM INC
1024 S.GreenvilleAve,Suite240,
Allen, TX75002 USA
ISOCOMCOMPONENTSLTD
Unit25B, ParkViewRoadWest,
Park View Industrial Estate, Brenda Road
Tel:(214)495-0755 Fax:(214)495-0901
e-mail info@isocom.com
Hartlepool,TS251YDEnglandTel:(01429)863609
Fax:(01429)863581 e-mail sales@isocom.co.uk
http://www.isocom.com
http://www.isocom.com
28/3/03
DB91048m-AAS/A6
ELECTRICAL CHARACTERISTICS ( TA = 25°C Unless otherwise noted )
PARAMETER
MIN TYP MAX UNITS
TEST CONDITION
Input
ForwardVoltage(VF)
Reverse Current (IR)
1.2
1.4
10
V
µA
IF =20mA
VR =6V
Output
Peak Off-state Current ( IDRM
Peak Blocking Voltage( VDRM
)
)
500 nA
V
VDRM =400V(note1)
IDRM =500nA
400
On-state Voltage ( VTM
)
3.0
V
ITM = 100mA ( peak )
Critical rate of rise of
off-state Voltage ( dv/dt )
600 1500
V/µs
Coupled Input Current to Trigger ( IFT )(note 2 )
MOC3040
MOC3041
MOC3042
30
15
10
mA
mA
mA
VTM = 3V ( note 2 )
MOC3043
5
mA
Holding Current , either direction ( IH )
Input to Output Isolation Voltage VISO
400
5300
7500
µA
VRMS
VPK
See note 3
See note 3
Zero
Inhibit Voltage ( VIH
)
20
V
IF= Rated IFT
Crossing
Charact-
-eristic
MT1-MT2 Voltage
above which device
will not trigger
Leakage in Inhibited State ( IS )
500
mA
IF= Rated IFT
VDRM = Rated VDRM
Off-state
Note 1. Test voltage must be applied within dv/dt rating.
Note 2. Guaranteed to trigger at an IF value less than or equal to max. IFT , recommended IF lies
between Rated IFT and absolute max. IF .
Note 3. Measured with input leads shorted together and output leads shorted together.
28/3/03
DB91048m-AAS/A6
CHARACTERISTIC CURVES
Fig.1 Forward Current vs.
Ambient Temperature
Fig.2 On-state Current vs. Ambient
Temperature
60
50
40
30
20
10
0
0.10
0.05
0
-40 -20
0
20 40 60 80 100 120
-40 -20
0
20 40 60 80 100 120
Ambient temperature Ta (oC)
Ambient temperature Ta (oC)
Fig.3 Minimum Trigger Current
Fig.4 Forward Current vs. Forward
Voltage
vs. Ambient Temperature
10
100
VP= 6V
R
L
= 100
8
6
4
2
0
60oC
40oC
20oC
80oC
100oC
10
1
20
40
60
80
100
0.4
0.8
1.2
1.6
2.0
Ambient temperature ( oC)
Forward voltage VF (V)
Fig.5 On-state Voltage vs. Ambient
Temperature
Fig.6 Holding Current vs.
Ambient Temperature
3.0
1
ITM= 100mA
VP= 6V
2.6
2.2
1.8
1.4
1.0
0.1
0.01
20
40
60
80
100
20
40
60
80
100
Ambient temperature Ta ( o C)
Ambient Temperature Ta ( oC)
28/03/03
DB91048m-AAS/A6
CHARACTERISTIC CURVES
Fig.7 Turn-on Time vs. Forward
Current
Fig.8 Repetitive Peak Off-state Current
vs. Temperature
10
1000
VP= 9V
RL= 100
8
6
4
2
0
100
10
1
10
20
30
40
50
20
40
60
80
100
O
Forward current IF (mA)
Ambient temperature Ta ( C)
Fig.9 On-state Current vs.
On-state Voltage
Static dv/dt Test Circuit
100
80
60
40
20
0
+ 400
Vdc
RTEST
R= 10k
CTEST
PULSE
INPUT
X100
SCOPE
PROBE
MERCURY
WETTED
RELAY
D.U.T.
APPLIED VOLTAGE
WAVEFORM
Vmax = 400V
252 V
τRC
0
0.5 1.0 1.5 2.0 2.5 3.0
On-state voltage VTM (V)
0.63 Vmax
378
0 VOLTS
dv/dt=
=
τRC
τRC
28/03/03
DB91048m-AAS/A6
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