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Amphenol 908-NM22106 — RF Cable Assemblies

908-NM22106 MMCX Jack, 50 Ohm, 6 GHz, Non-Magnetic, Gold

MPN908-NM22106
Active

SV Microwave MicroMate™ MMCX jack, female socket, 50 Ohm, 6 GHz, snap-on, through hole, gold-plated beryllium copper, non-magnetic, 500 mating cycles, -65°C to 165°C.

$9.6400Ref. price · indicative, final on quote
Source DocumentedChannel stated on listing & quote
Condition PhotosReal unit photos / video on request
WhatsApp AnswersFast human replies for stock & sourcing questions
Worldwide DispatchDHL/FedEx — transit quoted per order
Independent supplier — new & surplus connector stock· Listing updated Jul 2026

Specifications

908-NM22106 specifications
ParameterValue
MountingThrough Hole
Connector typeJack, Female Socket
Fastening typeSnap-On
Frequency - max6 GHz
Operating temperature-65°C~165°C
Body materialBeryllium Copper
Housing colorGold
Dielectric materialPolytetrafluoroethylene (PTFE)
Center contact materialBeryllium Copper
PackageBulk
FeaturesNon-Magnetic
Impedance50Ohm
Body finishGold
Mating cycles500
Number of ports1
Shield terminationSolder
Contact terminationSolder
Center contact platingGold

Product details

MMCX Jack for RF Signal Paths

The 908-NM22106 is an MMCX jack from the SV Microwave MicroMate™ series, designed for 50 Ohm RF interconnects up to 6 GHz. The snap-on fastening gives a quick, positive mate without threads — handy for dense board layouts where a wrench can't swing. That non-magnetic build is the key differentiator here: it's specified for MRI equipment or any magnetic-sensitive environment where a standard ferrous connector would distort the field.

The 6 GHz max frequency covers Wi-Fi, Bluetooth, and many cellular bands; if your signal runs above that, the insertion loss climbs and you need a higher-frequency connector.

Frequently asked questions

What is the impedance of 908-NM22106?

The impedance is 50 Ohm, matching standard RF system impedance for minimal signal reflection.

Is 908-NM22106 non-magnetic?

Yes, the connector is specified as non-magnetic, making it suitable for MRI and other magnetic-sensitive environments.