G6K-2F-Y DC12

TELECOM SIGNAL RELAY

Part Aliases: Omron Electric G6K-2F-Y DC12 BY OMR  
The G6K-2F-Y DC12 is a high-performance telecom signal relay designed for surface mount applications. With a contact configuration of DPDT and a contact current rating of 2A, it offers reliable switching capabilities. The contact material, a combination of silver and gold alloy, ensures efficient signal transmission while maintaining durability. Operating in a wide temperature range from -40°C to 85°C, this relay is suitable for various environmental conditions. Its coil resistance of 1315 Ohm, coil current of 9.1 mA, and coil voltage of 12 VDC make it energy-efficient with a power consumption of 100 mW. Sealed for added protection, it guarantees dependable performance. With fast operating and release times of 3 ms, it offers quick response in signal switching applications. RoHS compliant and featuring solder contact termination, it meets international standards for environmental responsibility and quality. Whether used in telecommunications, industrial automation, or consumer electronics, the G6K-2F-Y DC12 is an essential component for ensuring seamless signal relay operations.
AVAILABILITY
Immediate Shipment:NA
Stock Location:In Stock
Factory Stock:Call for Stock
Factory Lead:
Unit Of Measure:
Minimum/Multiple:1/1
Pricing
CALL: 800.400.7041
Details
Product Category:
Manufacturer:Omron Electric
Manufacturer Part Number:Omron Electric G6K-2F-Y DC12
Series:G6K
Mount Type:Surface Mount
Contact Material:Gold Alloy, Silver
Maximum Operating Temperature:85 °C
Minimum Operating Temperature:-40 °C
Coil Resistance:1315 Ohm
Coil Current:9.1 mA
Coil Voltage:12 VDC
Power Consumption:100 mW
Contact Configuration:DPDT
Contact Current Rating:2 A
Sealed:Yes
Switching Voltage:125 VAC
Contact Method:Bifurcated
Contact Termination:Solder
Operating Time:3 ms
Release Time:3 ms
Part Aliases:G6K-2F-Y DC12 BY OMR
SKU:OMRG6K-2F-Y DC12

Environmental Initiative Details

Environmental Initiative:RoHS
Compliant:Unknown
Date of this Information:Unknown
Notes: