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Amphenol 082-63-RFX — RF / Coaxial Connectors

082-63-RFX N Type Jack, 50 Ohm, 11 GHz, RG-8 Cable

MPN082-63-RFX
Active

Amphenol RF 082-63-RFX, N Type jack female socket, 50 Ohm, 11 GHz, solder termination, clamp shield, free-hanging, gold center contact, 500 mating cycles, Bulk.

$9.9900Ref. 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 China distributor & sourcing agent· Listing updated Jul 2026

Specifications

082-63-RFX key specifications
ParameterValue
MountingFree Hanging (In-Line)
Connector typeJack, Female Socket
Fastening typeThreaded
Voltage rating1500 V
Frequency - max11 GHz
Cable groupRG-8, 8A, 9, 9A, 9B, 87, 213, 214, 225, 302, 393
Operating temperature-65°C~165°C
Body materialBrass
Housing colorSilver
Dielectric materialPolytetrafluoroethylene (PTFE)
Center contact materialPhosphor Bronze
PackageBulk

All specifications

082-63-RFX additional specifications
ParameterValue
Impedance50Ohm
Body finishNickel
Mating cycles500
Insertion loss0.15dB
Number of ports1
Shield terminationClamp
Contact terminationSolder
Center contact platingGold

Product details

N Type Jack for RG-8 Class Cable

The Amphenol RF 082-63-RFX is an N Type jack, female socket, designed for free-hanging (in-line) installation on RG-8, 8A, 9, 9A, 9B, 87, 213, 214, 225, 302, and 393 cable groups.

Accepts RG-8, 8A, 9, 9A, 9B, 87, 213, 214, 225, 302, and 393 cable — the clamp-style shield termination grips the braid, and the center contact is soldered.

Frequently asked questions

Is 082-63-RFX compatible with RG-8 cable?

Yes, the 082-63-RFX is listed for RG-8, 8A, 9, 9A, 9B, 87, 213, 214, 225, 302, and 393 cable groups. The clamp shield termination and solder center contact suit these standard coax sizes.

What is the impedance of 082-63-RFX?

The 082-63-RFX is a 50 Ohm N Type jack, rated to 11 GHz maximum frequency with 0.15 dB insertion loss.