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S21MD3V PDF даташит

Спецификация S21MD3V изготовлена ​​​​«Sharp Electrionic Components» и имеет функцию, называемую «High Noise Resistance Type Phototriac Coupler».

Детали детали

Номер произв S21MD3V
Описание High Noise Resistance Type Phototriac Coupler
Производители Sharp Electrionic Components
логотип Sharp Electrionic Components логотип 

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S21MD3V Даташит, Описание, Даташиты
S21MD3V
S21MD3V
High Noise Resistance Type
Phototriac Coupler
..g Lead forming type and taping reel type are also available. ( S21MD3W/S21MD3P )
gg TUV ( VDE0884 ) approved type is also available as an option.
s Features
s Outline Dimensions
( Unit : mm )
1. High critical rate of rise of OFF-state voltage
( dv/dt : MIN. 500V/µ s )
2. High repetitive peak OFF-state voltage
( V DRM : MIN. 600V )
3. Isolation voltage between input and output
Viso : 5 000Vrms
4. UL recognized, file No.E64380 (S21MD3V / S21MD3W )
g S21MD3V is for 200V line.
s Applications
1. For triggering medium/high power triac
2.54± 0.25
654
S21MD3V
Anode
mark
12
3
0.9± 0.2
1.2± 0.3
7.12± 0.5
Internal connection
diagram
654
1 23
7.62± 0.3
1 Anode
2 Cathode
3 NC
4 Anode/
Cathode
5 No external
connection
6 Anode/
Cathode
0.5± 0.1
0.26± 0.1
θ
θ : 0 to 13 ˚
s Absolute Maximum Ratings
Input
Output
Parameter
Forward current
Reverse voltage
RMS ON-state current
1Peak one cycle surge current
Repetitive peak OFF-state voltage
2Isolation voltage
Operating temperature
Storage temperature
3Soldering temperature
1 Sine wave
2 40 to 60% , RH
AC 1 minute, f = 60Hz
3 For 10 seconds
Symbol
IF
VR
IT
I surge
V DRM
Viso
T opr
T stg
T sol
( Ta = 25˚C)
Rating
50
6
100
1.2
600
5 000
- 30 to + 100
- 55 to + 125
260
Unit
mA
V
mA rms
A
V
Vrms
˚C
˚C
˚C
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.









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S21MD3V Даташит, Описание, Даташиты
S21MD3V
s Electro-optical Characteristics
Input
Output
Transfer
charac-
teristics
Parameter
Forward voltage
Reverse current
Repetitive peak OFF-state current
On-state voltage
Holding current
Critical rate of rise of
OFF-state voltage
Minimum trigger current
Isolation resistance
Turn-on time
Symbol
VF
IR
I DRM
VT
IH
dV/dt
I FT
R ISO
t on
Conditions
IF = 30mA
VR = 3V
V DRM = Rated
IT = 100mA
VD = 6V
VDRM = 1/ 2 Rated
VD = 6V, R L = 100
DC500V, 40 to 60% RH
VD = 6V, I F = 30mA, R L = 100
MIN.
-
-
-
-
0.1
500
-
5 x 1010
TYP.
1.2
-
-
1.7
1
-
-
1011
100
( Ta = 25˚C)
MAX.
1.4
10- 5
10- 6
2.5
3.5
-
15
-
250
Unit
V
A
A
V
mA
V/ µ s
mA
µs
Fig. 1 RMS ON-state Current vs.
Ambient Temperature
0.10
0.05
0
- 30 0 20 40 60 80 100
Ambient temperature T a (˚C)
Fig. 3 Forward Current vs. Forward Voltage
200
100
T a = 100˚C
50 75˚C
50˚C
20
10
25˚C
0˚C
- 30˚C
5
2
1
0 0.5 1.0 1.5 2.0 2.5 3.0
Forward voltage V F (V)
Fig. 2 Forward Current vs.
Ambient Temperature
70
60
50
40
30
20
10
0
- 30 0 25 50 75 100 125
Ambient temperature T a (˚C)
Fig. 4 Minimum Trigger Current vs.
Ambient Temperature
14
V D = 6V
R L = 100
12
10
8
6
4
2
0
-30 -20 0 20
40 60 80
Ambient temperature T a (˚C)
100









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S21MD3V Даташит, Описание, Даташиты
Fig. 5 Relative Repetitive Peak OFF-state
Voltage vs. Ambient Temperature
1.3
1.2
1.1
1.0
0.9
0.8
0.7
- 30
0 20 40 60 80
Ambient temperature T a (˚C)
100
Fig. 7 Holding Current vs.
Ambient Temperature
10
5
V D = 6V
2
1
0.5
0.2
0.1
- 30
0 20 40 60 80
Ambient temperature T a (˚C)
100
Fig. 9 Repetitive Peak OFF-state Current vs.
Ambient Temperature
10- 5
5 V DRM = Rated
2
10- 6
5
2
10- 7
5
2
10- 8
5
2
10- 9
- 30
0 20 40 60 80
Ambient temperature T a (˚C)
100
S21MD3V
Fig. 6 ON-state Voltage vs.
Ambient Temperature
2.0
IT = 100mA
1.9
1.8
1.7
1.6
1.5
1.4
- 30
0 20 40 60 80
Ambient temperature T a (˚C)
100
Fig. 8 Repetitive Peak OFF-state Current vs
OFF-state Voltage
2
T a = 25˚C
10 - 7
5
2
10 - 8
5
100 200 300 400 500 600
OFF-state voltage V D (V)
Fig.10 Turn-on Time vs. Forward Current
200
V D = 6V
RL = 100
T a = 25˚C
100
50
20
10 20
50 100
Forward current I F ( mA )










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