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Data Sheet
Home > Data Sheet > S101S15V
S101S15V

S101S15V

Model S101S15V
Description SIP Type SSR with Built-in Snubber Circuit
PDF file Total 4 pages (File size: 61K)
Chip Manufacturer SHARP
S101S15V/S101S16V/S201S15V/S201S16V
S101S15V/S101S16V
S201S15V/S201S16V
s
Features
1. High radiation resin mold package
I
T
: MAX. 3A
rms
2. Isolation voltage between input and output
V
iso
: 3 000 V
rms
3. Built-in zero-cross circuit
( S101S16V/ S201S16V)
4. Built-in snubber circuit
5. Recognized by UL, file No. E94758
Approved by CSA, file No. LR63705
SIP Type SSR with Built-in
Snubber Circuit
s
Outline Dimensions
18.5
±
0.2
16.4
±
0.3
Common to Pin No.1
A Model No,
B
( Unit : mm )
Common to Pin No.1
3.2
±
0.2
5.5
±
0.2
5.0
±
0.3
φ
3.2
±
0.2
S101S15V 3A125VAC
S101S16V
S201S15V
3A265VAC
S201S16V
g
B
4.2
MAX.
4
-
1.1
±
0.2
4
-
1.25
±
0.3
4
-
0.8
±
0.2
1
2
3
4
+ -
A
s
Applications
1. Air conditioners
2. OA equipment
11.2
MIN.
0.6
±
0.1
s
Model Line-ups
No built-in
zero-cross circuit
Built-in zero-cross
circuit
19.6
±
0.2
(36.0)
(5.08) (7.62)
(2.54)
(1.4)
For 100V lines
S101S15V
S101S16V
For 200V lines
S201S15V
S201S16V
g
May not be externally
connected
Internal connection diagram
S101S15V/S201S15V
S101S16V/S201S16V
s
Absolute Maximum Ratings
Parameter
Input
Forward current
Reverse current
RMS ON-state current
*1
Peak
( Ta = 25˚C )
Ratings
100V line 200V line
Zero-cross
circuit
1
1
2
3
4
2
3 4
1
2
3
4
1 2
3 4
Symbol
Unit
mA
V
A
rms
A
V
A/µ s
H
Z
˚C
˚C
kV
rms
˚C
Output
one cycle surge
current
Repetitive peak OFF-
state voltage
Critical rate of rise of
ON-state current
I
F
50
6
V
R
( T
c
<=100˚C)
I
T
3
I
surge
30
V
DRM
400 600
dI
T
/dt
f
T
opr
T
stg
V
iso
T
sol
40
45 to 65
- 20 to + 80
- 30 to + 100
3.0
260
Output ( Triac T2 )
Output ( Triac T1 )
Input (
+
)
Input (
-
)
Output ( Triac T2 )
Output ( Triac T1 )
Input (
+
)
Input (
-
)
Operating frequency
Operating temperature
Storage temperature
*2
*3
Isolation voltage
Soldering temperature
*1 60H
Z
sine wave, T
j
= 25˚C
*2 AC 60Hz for 1 minute, 40 to 60% RH
Isolation voltage measuring method:
( 1 ) Dielectric withstand tester, with zero-cross circuit shall be used.
( 2 ) The waveform of applied voltage shall be sine wave.
( 3 ) It shall be applied voltage between input and output.
( Input and output shall be short-circuited respectively)
*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.”
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