Cloud Care Networks
Panorama SC1-FME-JC10 FME Female Crimp Connector for C23, C29, C32 | RF
Panorama

Panorama SC1-FME-JC10 FME Female Crimp Connector for C23, C29, C32 | RF

MPN: SC1-FME-JC104G LTE
$3.88$4.54Save $0.66

In Stock

1
Secure checkout

Key Features

  • Terminate compatible RF cable using an FME female crimp interface
  • Support clean antenna routing with a low-profile connector design
  • Match C23, C29, and C32 cable types for proper fit
  • Preserve signal integrity with a connector checked to Panorama's specification
  • Simplify field installations with a compact female antenna termination
  • Reduce rework using a connector designed for repeatable crimp terminations
  • Fit professional RF builds where space and cable management matter

Technical Specifications

General

Packaged Quantity1

Support

Warranty TypeNot specified

Compliance

Ul ListedNo
Taa CompliantNo
Rohs CompliantNo

Connectors

Connector PlatingNot specified

Performance

Cable ColorNot specified

Cable Identity

Cable CategoryRF cable connector

Coupler Connector

Coupler TypeConnector
Coupler ShieldedNo
Coupler Idc PunchdownNo
Coupler Connector TypeFME Antenna - Female

About This Device

Keep antenna runs compact and electrically consistent with this Panorama FME jack crimp connector for C23, C29, and C32 cable. The female FME interface is widely used where low-profile routing and reliable mating are important, especially in mobile and installed RF systems. Panorama specifies and checks connectors to a high standard so each termination supports dependable performance in the field. That matters when you are building or maintaining antenna assemblies that need clean signal paths, secure mechanical fit, and predictable results across repeated installs. This connector is a practical choice for technicians and integrators who want a purpose-matched termination rather than a generic adapter. It helps reduce installation friction, supports tidy cable management, and fits into professional RF builds where connector quality directly affects system reliability.