STREAMLIED DESIGN DEVELOPMENT

TNC Jack (female) Straight Connector 4 Hole Flange, 12.7mm (.500 inch) DC-4 GHz VSWR1.09

Order No:TNC2GFA50-3270E/9X
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Key Specifications

Type Design:
Standard
Body Style:
Straight
Impedance (Ohm):
50
Frequency, Max (GHz):
4.0
VSWR, Max:
1.09
Connector Style:
Panel Connector
Connector Series:
TNC
Connector Gender:
Jack (Female)
Connection Method:
Threaded (Screw-lock)
Center Contact:
Soldered
Mount Method:
4 Hole Flange
Body Material:
Stainless Steel
Body Plating:
Passivated
Captivated Type:
Mechanical Captivation
Bankend Type:
Coaxial End

Description

TNC Jack (female) Panel Connector | Stainless steel Body | Stub Terminal | Mechanical Captivation

The ROSNOL TNC2GFA50-3270E/9X is a high-performance TNC Jack (female) Panel Connector designed for solder attachment with a 4-hole flange mount and 12.7mm (.500 inch) hole spacing. Engineered for RF applications, it offers 50 Ω impedance and supports frequencies from DC to 4 GHz. The connector utilizes a screw-lock coupling mechanism and features a VSWR ≤ 1.09 (≥ 27 dB), ensuring minimal signal reflection and optimal transmission. Mechanical captivation and a soldered center contact provide robust mating cycles ≥ 500.

The ROSNOL TNC2GFA50-3270E/9X is constructed with premium materials to ensure durability and performance. The center contact is made of beryllium copper with 3 µinch gold plating over 80 µinch non-magnetic nickel-phosphorus underplating. The body and coupling nut are crafted from passivated stainless steel, while the insulator is PTFE and the gasket is silicone rubber. These materials are selected to meet stringent RF and environmental standards.

ROSNOL’s precision-engineered RF connectors offer a competitive alternative to products from leading manufacturers in Europe, the USA, and other global markets. All Rosnol RF components are precision-manufactured in ISO 9001-certified facilities, and are fully RoHS and REACH compliant, ensuring environmental safety and global regulatory alignment. Customization services for plating, materials, and mechanical design are available upon request.