Omron G3MC Series Solid State Relay, 2 A Load, PCB Mount, 264 V ac Load, 14.4 V dc Control

Unavailable
RS will no longer stock this product.
RS Stock No.:
807-4658
Mfr. Part No.:
G3MC-202PL DC12
Brand:
Omron

G3MC-202PL DC12 SSR – Solid State Relay.


The G3MC-202PL DC12 SSR – solid state relay is a slim 4.5 mm all in one lead framed, reinforced relay. The SSR – solid state relay can be PCB mounted plus is RoHS compliant.

Solid State Relay (SSR) Features and Benefits.


• Solid state relay – SSR.
• Phototriac isolation.
• No indicator.
• Snubber circuit.
• Rated output load 2 A at 100 to 240 V ac.
• Rated voltage 12 V dc.
• Operating voltage 9.6 to 14.4 V dc.
• Impedance 800 Ω ±20%.
• Must operate voltage 9.6 V dc.
• Must release voltage 1 V dc.
• Rated load voltage 100 to 240 v ac, 50 to 60 Hz.
• Load voltage range 75 to 264 V ac, 50 to 60 Hz.
• Load current 0.1 to 2 A. (the load current varies dependant on the ambient temperature).
• Inrush current 30 A (60Hz, 1 cycle).

The G3MC-202PL DC12 SSR – Solid State Relay Additional Features.


• Operating time 1 ms max.
• Release time of load power source cycle plus 1 ms max.
• Output ON voltage drop 1.6 V (RMS) max.
• Leakage current 1.5 mA max at 200 V ac.
• Vibration resistance 10 to 55 to 10 Hz, 0.375 mm single amplitude (0.75 mm double amplitude).
• Shock resistance 1000 m/s²
• Operating temperature (ambient) - 30° to 80°C with no icing or condensation.
• Relay weight 3.8 g.

Solid State Relay Interface Applications.


Controlling outputs from programmable controllers, positioning controllers plus other devices are transferred to actuators whilst providing isolation. The G3MC is suitable for applications that require frequent switching, noiseless operation and resistance to vibration, shock, dust and gas.

What is a Snubber Circuit in SSR – Solid State Relays?


A snubber circuit is a circuit which consists of a resistor and a capacitor preventing faulty ignition from happening within the SSR – solid state relay triac suppressing any sudden increases in the voltage applied.