参数资料
型号: S212S01F
厂商: Sharp Microelectronics
文件页数: 8/13页
文件大小: 0K
描述: RELAY SSR 240VAC 12A TRIAC 4-SIP
产品目录绘图: S101S05F, S2(0,1)2S01F Circuit
标准包装: 200
系列: S212
电路: SPST-NO(1 Form A)
输出类型: AC
负载电流: 12A
输入电压: 1.2VDC
电压 - 负载: 0 ~ 240 V
安装类型: 通孔
端接类型: PC 引脚
封装/外壳: 4-SIP
供应商设备封装: 4-SIP
包装: 散装
继电器类型: 继电器
产品目录页面: 2634 (CN2011-ZH PDF)
其它名称: 425-2412-5
S112S01 Series
S212S01 Series
■ Design Considerations
● Recommended Operating Conditions
Parameter
Symbol
Conditions
MIN.
MAX.
Unit
Input
Input signal current at ON state
Input signal current at OFF state
I F (ON)
I F (OFF)
?
?
16
0
24
0.1
mA
mA
Load supply voltage
S112S01
S212S01
V OUT (rms)
?
80
80
120
240
V
Output
Load supply current
I OUT (rms)
Locate snubber circuit between output terminals
(Cs = 0.1 μ F, Rs = 47 ? )
0.1
I T (rms)
× 80%( ? )
mA
Frequency
Operating temperature
f
T opr
?
?
47
? 20
63
80
Hz
?C
( ? ) See Fig.2 about derating curve (I T (rms) vs. ambient temperature).
● Design guide
In order for the SSR to turn off, the triggering current (l F ) must be 0.1mA or less.
In phase control applications or where the SSR is being by a pulse signal, please ensure that the pulse width
is a minimum of 1ms.
When the input current (I F ) is below 0.1mA, the output Triac will be in the open circuit mode. However, if the
voltage across the Triac, V D , increases faster than rated dV/dt, the Triac may turn on. To avoid this situation,
please incorporate a snubber circuit. Due to the many different types of load that can be driven, we can
merely recommend some circuit vales to start with : Cs=0.1 μ F and Rs=47 ? . The operation of the SSR and
snubber circuit should be tested and if unintentional switching occurs, please adjust the snubber circuit com-
ponent values accordingly.
When making the transition from On to Off state, a snubber circuit should be used ensure that sudden drops
in current are not accompanied by large instantaneous changes in voltage across the Triac.
This fast change in voltage is brought about by the phase difference between current and voltage.
Primarily, this is experienced in driving loads which are inductive such as motors and solenoids.
Following the procedure outlined above should provide sufficient results.
Any snubber or Varistor used for the above mentioned scenarios should be located as close to the main out-
put triac as possible.
The load current should be within the bounds of derating curve. (Refer to Fig.2)
Also, please use the optional heat sink when necessary.
In case the optional heat sink is used and the isolation voltage between the device and the optional heat sink
is needed, please locate the insulation sheet between the device and the heat sink.
When the optional heat sink is equipped, please set up the M3 screw-fastening torque at 0.3 to 0.5N?m.
In order to dissipate the heat generated from the inside of device effectively, please follow the below sugges-
tions.
(a) Make sure there are no warps or bumps on the heat sink, insulation sheet and device surface.
(b) Make sure there are no metal dusts or burrs attached onto the heat sink, insulation sheet and device sur-
face.
(c) Make sure silicone grease is evenly spread out on the heat sink, insulation sheet and device surface.
Sheet No.: D4-A02501EN
8
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