DC,Industrial Scientific , Industrial Electrical , Controls Indicators,DC,to,Output,State,SSR-100DD,Solid,$11,To,CG,3-32VDC,Relay,/overgreedy352910.html,Input,willied.com DC,Industrial Scientific , Industrial Electrical , Controls Indicators,DC,to,Output,State,SSR-100DD,Solid,$11,To,CG,3-32VDC,Relay,/overgreedy352910.html,Input,willied.com $11 CG Solid State Relay SSR-100DD DC to DC Input 3-32VDC To Output Industrial Scientific Industrial Electrical Controls Indicators CG Solid State Relay SSR-100DD DC Input to To 3-32VDC Output Manufacturer OFFicial shop CG Solid State Relay SSR-100DD DC Input to To 3-32VDC Output Manufacturer OFFicial shop $11 CG Solid State Relay SSR-100DD DC to DC Input 3-32VDC To Output Industrial Scientific Industrial Electrical Controls Indicators

CG Solid State Relay SSR-100DD DC Input to To 3-32VDC Output Manufacturer Mail order cheap OFFicial shop

CG Solid State Relay SSR-100DD DC to DC Input 3-32VDC To Output

$11

CG Solid State Relay SSR-100DD DC to DC Input 3-32VDC To Output

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Product Description

solid state relaysolid state relay
used to control computer peripheral devicesused to control computer peripheral devices

Widely Application

Solid state relays can be widely used to control computer peripheral devices, thermostats and resistance furnaces, AC motors, intermediate relays and solenoid valves, copiers and fully automatic washing machines, signal lights, traffic lights and scintillators, lighting and stage lighting, CNC remote control systems, automatic fire protection and security systems, high-power thyristor triggering and industrial automation equipment, etc.

Advantage

It is specially designed for harsh environments with corrosion, humidity or light-proof/explosion-proof requirements and frequent turn-on/off requirements.

computercomputer

Widely Application

Solid state relays can be widely used to control computer peripheral devices, thermostats and resistance furnaces, AC motors, intermediate relays and solenoid valves, copiers and fully automatic washing machines, signal lights, traffic lights and scintillators, lighting and stage lighting, CNC remote control systems, automatic fire protection and security systems, high-power thyristor triggering and industrial automation equipment, etc.

Advantage

It is specially designed for harsh environments with corrosion, humidity or light-proof/explosion-proof requirements and frequent turn-on/off requirements.

factoryfactory

Widely Application

Solid state relays can be widely used to control computer peripheral devices, thermostats and resistance furnaces, AC motors, intermediate relays and solenoid valves, copiers and fully automatic washing machines, signal lights, traffic lights and scintillators, lighting and stage lighting, CNC remote control systems, automatic fire protection and security systems, high-power thyristor triggering and industrial automation equipment, etc.

Advantage

It is specially designed for harsh environments with corrosion, humidity or light-proof/explosion-proof requirements and frequent turn-on/off requirements.

kk

Widely Application

Solid state relays can be widely used to control computer peripheral devices, thermostats and resistance furnaces, AC motors, intermediate relays and solenoid valves, copiers and fully automatic washing machines, signal lights, traffic lights and scintillators, lighting and stage lighting, CNC remote control systems, automatic fire protection and security systems, high-power thyristor triggering and industrial automation equipment, etc.

Advantage

It is specially designed for harsh environments with corrosion, humidity or light-proof/explosion-proof requirements and frequent turn-on/off requirements.

used to control computer peripheral devicesused to control computer peripheral devices

computercomputer

factoryfactory

kk

Features:

Model SSR-100DD
Control Voltage 3~32VDC
Min Control Current 5mA
Max Control Current 25mA
Load Voltage 5~240VDC
Load Current 100A
Insulation Resistance 500M Ohm/500VDC
Off Leakage Current ≤2mA
On Voltage ≤2V
On-off-Time ≤10ms
Ambient Temperature -20~+75℃
Mouting Method Screw fixed
Relative Humidity ≤95%(Non-condensing)
Dimensions 57.4×44.8×32mm
Weight ≤135g
ssr-wiringssr-wiring

How to choose correctly

STEP 1: Choose a correct type Current of Equipment/Ratio = Current of SSR PS: The Ratio depend on the kind of your loading equipment. Resistive load :70%, Inductive load:20%,Capacitive load:10%.

STEP 2: Choose a suitable heat sink During the useage of SSR, it will give out a lot of heat, so in order to extend the life of your SSR, please install a heat sink , also if the current is over 60A,the cooling fan also required. PS: Our Heat Sink include 2 screws (for install heat sink) and a pack of thermal compound (is applied to the bottom of the SSR)

40DD 40AA 3 pcs Heat Sink 40VA Kit 25AA 25DA
DC-AC 100A AC-AC 40A 3 Pcs Heat Sink DC-DC 80A PID Temperature Controller 3 Phase DC-AC 40A
Rated Current 100A 40A 40A 40A

CG Solid State Relay SSR-100DD DC to DC Input 3-32VDC To Output

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"/>