S22MD1V Sharp Microelectronics, S22MD1V Datasheet

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S22MD1V

Manufacturer Part Number
S22MD1V
Description
PHOTOCOUPL 600VAC .2A TRIAC 6DIP
Manufacturer
Sharp Microelectronics
Datasheet

Specifications of S22MD1V

Rohs Status
RoHS non-compliant
Voltage - Isolation
5000Vrms
Number Of Channels
1
Voltage - Off State
600V
Output Type
SCR
Current - Gate Trigger (igt) (max)
10mA
Current - Hold (ih)
200µA
Current - Dc Forward (if)
50mA
Current - Output / Channel
200mA
Mounting Type
Through Hole
Package / Case
6-DIP
Other names
425-1775-5

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
S22MD1V
Manufacturer:
SHARP
Quantity:
4 600
Part Number:
S22MD1V
Manufacturer:
SHARP
Quantity:
2 736
Part Number:
S22MD1V
Manufacturer:
SHARP
Quantity:
20 000
S22MD1V/S22MD3
1. High repetitive peak OFF-state voltage
2. Low trigger current
3. High isolation voltage between input and
4. Recognized by UL, file NO. 64380
1. ON-OFF operation for a low power load
2. For triggering high power thyristor and
“ 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.”
( V
( I
triac
output
S22MD1V ••• V
S22MD3V ••• V
S22MD1V and S22MD3 are for 200V line.
Lead forming type ( I type ) and taping reel type ( P type ) of S22MD1V
Applications
Features
TUV ( DIN-VDE0884 ) approved type is also available as an option.
FT
..
DRM
: MAX. 10mA at R
: MIN. 600V )
iso
iso
: 5 000V
: 2 500V
G
= 20k )
rms
rms
are also available (
Photothyristor Coupler
S22MD3
1.2
S22MD1V
2.54
± 0.3
Outline Dimensions
mark
Anode
2.54
9.22
0.5
± 0.25
8
1
S22MD3
S22MD1V
7.12
± 0.1
6
1
± 0.25
± 0.5
7
2
± 0.5
5
2
6
3
S22MD1VI/S22MD1P
Anode mark
0.8
4
3
0.5
0.9
1.2
4
0.85
5
± 0.2
± 0.1
± 0.2
± 0.3
± 0.3
Internal connection diagram
Internal connection diagram
8
1
6
1
0.26
: 0 to 13˚
: 0 to 13˚
0.26
7.62
7.62
7
2
± 0.1
± 0.1
± 0.3
5
2
± 0.3
S22MD1V/S22MD3
)
6
3
4
3
5
4
( Unit : mm )
1 4 Anode
2 3 Cathode
5 8 Gate
6 7 Anode/
1 Anode
2 Cathode
3 NC
4 Cathode
5 Anode
6 Gate
Cathode

Related parts for S22MD1V

S22MD1V Summary of contents

Page 1

... S22MD1V/S22MD3 Lead forming type ( I type ) and taping reel type ( P type ) of S22MD1V .. TUV ( DIN-VDE0884 ) approved type is also available as an option. Features 1. High repetitive peak OFF-state voltage ( V : MIN. 600V ) DRM 2. Low trigger current ( I = 20k ) : MAX. 10mA High isolation voltage between input and output S22MD1V • ...

Page 2

... Forward voltage Input Reverse current Repetitive peak OFF-state current 5 Repetitive peak reverse current ON-state voltage Output Holding current Critical rate of rise of OFF-state voltage Transfer Minimum trigger current charac- Isolation resistance teristics Turn-on time 5 Applies only to S22MD1V Symbol surge V DRM V RRM V iso T ...

Page 3

... Gate Resistance 100 Gate resistance R G Fig. 2 Forward Current vs. 80 100 ( ˚C ) Fig. 4 Minimum Trigger Current vs. 25˚C 0˚C 2.5 3.0 Fig. 6 Break Over Voltage vs 100 25˚ 100 200 ( k ) S22MD1V/S22MD3 Ambient Temperature 100 ( ˚C ) Ambient temperature T a Ambient Temperature 10k 100 ...

Page 4

... R = 20k Rated 2 DRM ˚C ) Ambient temperature T a Fig. 9 Repetitive Peak OFF-state Current vs. Ambient Temperature Rated DRM 20k ˚C ) Ambient temperature T a Fig. 8 Holding Current vs. 100 80 100 S22MD1V/S22MD3 Ambient Temperature 0 0.2 0.1 20k 50k 0.05 0.02 0. ˚C ) Ambient temperature 10k 80 100 ...

Page 5

... Medium/High Power Triac Drive Circuit ( Zero-cross Operation ) S22MD3 Low Power Load Drive Circuit Medium/High Power Triac Drive Circuit Please refer to the chapter “ Precautions for Use” ( Page Snubber circuit S22MD1V/S22MD3 Load AC 100V, 200V Load AC 100V, 200V Load AC 100V, 200V : Snubber circuit S Load AC 100V, 200V ...

Page 6

Application Circuits NOTICE The circuit application examples in this publication are provided to explain representative applications of SHARP devices and are not intended to guarantee any circuit design or license any intellectual property rights. SHARP takes no responsibility for any ...

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