SHARP S202SE1

S202SE1/S202SE2/S216SE1/S216SE2
S202SE1/S202SE2
S216SE1/S216SE2
SIP Type SSR for Medium
Power Control
■ Features
■ Outline Dimensions
* The metal parts marked * are common to terminal 1
❈ Do not allow external connection.
( ) : Typical dimensions
18.5 ± 0.2
φ 3.2 ± 0.2
A (Model No.)
B
S202SE1
8A260VAC
S202SE2
S216SE1
16A260VAC
S216SE2
1. Copiers
2. Laser beam printers
B
3
4
(2.54)
0.6 ± 0.1
S202SE2/S216SE2
zero-cross
circuit
RMS ON-state current
MAX. 8Arms MAX. 16Arms
S202SE1
S216SE1
S202SE2
S216SE2
Parameter
Output
2
4.2MAX.
1
11.2MIN.
+ -
4 - 1.1 ± 0.2
4 - 1.25 ± 0.3
4 - 0.8 ± 0.2
1
2
3
4
1 2
3 4
Output ( Triac. T2 )
Output ( Triac. T1 )
Input ( + )
Input ( - )
■ Absolute Maximum Ratings
Input
19.6 ± 0.2
(36.0)
A
■ Line-up
No built-in
Zero-cross circuit
Built-in
Zero-cross circuit
5.5 ± 0.2
5.0 ± 0.3
*
(5.08) (7.62)
Internal connection diagram
S202SE1/S216SE1
■ Applications
3.2 ± 0.2
16.4 ± 0.3
❈ 2.0MAX.
1. Comforms to European Safety Standard ( EN60950)
( Need of the insulation sheet when mounting external heat sink )
Internal insulation distance : 0.4mm or more
Creepage distance : 5mm or more
Space distance : 4mm or more
2. RMS ON-state current
S202SE1 / S202SE2 : 8Arms at Tc <= 80˚C
( with heat sink )
S216SE1 / S216SE2 : 16Arms at Tc <= 60˚C
( with heat sink )
3. Isolation voltage. .between input and output ( Viso : 3 000V rms )
4. Approved by TUV, No. R9051479
5. Recognized by UL, No. E94758
( S202SE1 / S202SE2 )
Approved by CSA, No. LR63705
( S202SE1 , S202SE2 )
( Unit : mm )
Forward current
Reverse voltage
RMS ON-state current
*1
Peak one cycle surge current
Repetitive peak OFF-state voltage
Non-repetitive peak OFF-state voltage
Critical rate of rise of ON-state current
Operating frequency
*2
Isolation voltage
Operating temperature
Storage temperature
*3
Soldering temperature
1
2
3
4
1 2
3 4
Output ( Triac. T2 )
Output ( Triac. T1 )
Input ( + )
Input ( - )
( Ta = 25˚C )
Symbol
IF
VR
IT
I surge
V DRM
V DSM
dI T /dt
f
V iso
T opr
T stg
T sol
Rating
S202SE1 / S202SE2 S216SE1 / S216SE2
50
6
*5
*4
8
16
80
160
600
600
50
45 to 65
3,000
- 25 to + 100
- 30 to + 125
260
Unit
mA
V
A rms
A
V
V
A/µ s
Hz
V rms
˚C
˚C
˚C
*1 60Hz sine wave, Tj = 25˚C start
*2 AC 60Hz for 1 minute, 40 to 60% RH, Apply voltages between input and output by the dielectric
withstand voltage tester with zero-cross circuit.( Input and output shall be shorted respectively) .
( Note) When the isolation voltage is necessary at using external heat sink, please use the insulation sheet.
*3 For 10 seconds *4 TC <=80˚C *5 TC<=60˚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.”
(1.4)
S202SE1/S202SE2/S216SE1/S216SE2
■ Electrical Characteristics
Parameter
Forward voltage
Input
Reverse current
Repetitive peak OFF-state current
S202SE1 / S202SE2
ON-state voltage
S216SE1 / S216SE2
Output
Holding current
Critical rate of rise of OFF-state voltage
Critical rate of rise of commutating OFF-state voltage
Zero-cross voltage S202SE2 / S216SE2
S202SE1 / S216SE1
Minimum trigger
current
S202SE2 / S216SE2
Transfer
Isolation resistance
characS202SE1 / S216SE1
teristics
Turn-on time
S202SE2 / S216SE2
Turn-off time
Thermal resistance
S202SE1 / S202SE2
( Between junction and case )
S216SE1 / S216SE2
Thermal resistance
( Between junction and ambience )
( Ta = 25˚C )
Symbol
VF
IR
I DRM
VT
IH
dV/dt
( dV/dt ) c
V OX
I FT
R ISO
Conditions
I F = 20mA
V R = 3V
V D = V DRM
I T = 2A rms
I T = 16A rms
V D = 2/3V DRM
Tj = 125˚C, VD = 400V *6
I F = 8mA
V D = 12V, R L = 30 Ω
V D = 6V, R L = 30 Ω
DC500V, 40 to 60 % RH
t on
AC60Hz
t off
AC60Hz
R th (j - c)
-
R th (j - a)
-
MIN.
30
5
1010
-
TYP.
1.2
4.5
3.3
MAX.
1.4
10 -4
10 -4
1.5
1.5
50
35
8
8
1
9.3
9.3
-
-
40
-
Fig.1-b RMS ON-state Current vs.
Ambient Temperature
(S216SE1 / S216SE2 )
4
RMS ON-state current I T ( Arms )
RMS ON-state current I T ( Arms )
4
3
2
1
0
- 20
0
20
40
60
80 100 120
Ambient temperature T a ( ˚C )
140
3
2
1
0
- 20
0
20
40
60
80 100 120
Ambient temperature T a ( ˚C )
V rms
mA
V/ µ s
V/ µ s
V
mA
Ω
ms
ms
˚C/W
˚C/W
*6 dIT /dt = - 4.0A/ms ( S202SE1 / S202SE2 )
dIT /dt = - 8.0A/ms ( S216SE1 / S216SE2 )
Fig.1-a RMS ON-state Current vs. Ambient
Temperature
(S202SE1 / S202SE2 )
Unit
V
A
A
140
S202SE1/S202SE2/S216SE1/S216SE2
Fig.2-a RMS ON-state Current vs. Case
Temperature
(S202SE1 / S202SE2 )
20
RMS ON-state current I T ( Arms )
RMS ON-state current I T ( Arms )
10
Fig.2-b RMS ON-state Current vs. Case
Temperature
(S216SE1 / S216SE2 )
8
6
4
2
0
- 25
0
25
50
75
100
Case temperature T c ( ˚C )
12
8
4
0
- 25
125
Fig. 3 Forward Current vs.
Ambient Temperature
16
0
25
50
75
100
Case temperature T c ( ˚C )
125
Fig. 4 Forward Current vs. Forward Voltage
60
100
Forward current I F ( mA )
Forward current I F ( mA )
50
40
30
20
10
T a = 75˚C
50˚C
25˚C
20
0˚C
- 25˚C
10
5
2
0
- 25
0
25
50
75
100
Ambient temperature T a ( ˚C )
1
0.9
125
Fig.5-a Surge Current vs. Power-ON Cycle
(S202SE1 / S202SE2 )
1.0
1.1
1.2
1.3
1.4
Forward voltage V F ( V )
1.5
Fig.5-b Surge Current vs. Power-ON Cycle
(S216SE1 / S216SE2 )
100
200
f = 60H z
T j = 25˚C Start
f = 60H z
T j = 25˚C Start
180
80
160
Surge current I surge ( A )
Surge current I surge ( A )
50
60
40
20
140
120
100
80
60
40
20
0
1
2
5
10
20
Power-on cycle ( Times )
50
100
0
1
2
5
20
10
Power-on cycle ( Times )
50
100
S202SE1/S202SE2/S216SE1/S216SE2
Fig.6-a Maximum ON-State Power Dissipation vs.
RMS ON-State Current
(S202SE1 / S202SE2 )
16
14
12
10
8
6
4
2
0
2
4
6
8
10
RMS ON-state current I T ( Arms )
6
4
2
10 - 5
S202SE2
S202SE1
10 - 8
10 - 9
- 25
0
25
50
75
100
Ambient temperature T a ( ˚C )
4
2
125
Please refer to the chapter “ Precautions for Use.”
0
2
4
6
8
10
12
14
RMS ON-state current I T ( Arms )
16
V D = 6V
RL = 30Ω
10
8
6
4
2
0
- 25
0
25
50
75
100
Ambient temperature Ta ( ˚C )
125
Fig.8-b Repetitive Peak OFF-state Current vs.
Ambient Temperature ( Typical Value )
(S216SE1 / S216SE2 )
Repetitive peak OFF-state current I DRM ( A )
Repetitive peak OFF-state current I DRM ( A)
-4
10 - 7
6
125
V D = 600V
10 - 6
8
12
8
Fig.8-a Repetitive Peak OFF-state Current vs.
Ambient Temperature ( Typical Value )
(S202SE1 / S202SE2 )
10
10
Fig.7-b Minimum Trigger Current vs.
Ambient Temperature ( Typical Value )
(S202SE2 / S216SE2 )
10
10 - 3
12
0
V D = 12V
RL = 30Ω
25
50
75
100
Ambient temperature Ta ( ˚C )
14
Minimum trigger current I FT ( mA )
Minimum trigger current I FT ( mA )
12
0
16
12
Fig.7-a Minimum Trigger Current vs.
Ambient Temperature ( Typical Value )
(S202SE1 / S216SE1 )
0
- 25
18
Maximum ON-state power dissipation ( W )
Maximum ON-state power dissipation ( W )
T a = 25˚C
T a = 25˚C
18
0
●
Fig.6-b Maximum ON-State Power Dissipation vs.
RMS ON-State Current
( S216SE1 / S216SE2 )
10 - 3
10
V D = 600V
-4
10 - 5
S216SE2
10 - 6
S216SE1
10 - 7
10 - 8
10 - 9
- 25
0
25
50
75
100
Ambient temperature T a ( ˚C )
125