Key Specifications
Type Design:
Precision
Body Style:
Straight
Impedance (Ohm):
50
Frequency, Max (GHz):
50
VSWR, Max:
1.15
Connector Style:
Panel Connector
Connector Series:
2.4mm
Connector Gender:
Jack (Female)
Connection Method:
Threaded (Screw-lock)
Center Contact:
Soldered
Mount Method:
2 Hole Flange
Body Material:
Stainless Steel
Body Plating:
Passivated
Captivated Type:
Mechanical Captivation
Bankend Type:
Coaxial End
Description
2.4mm Jack (Female) | Solder attachment | 2-Hole Flange Mount | stainless steel Body
The Q2GTA50-1370A/9X 2.4mm jack (female) RF connector features a 2-hole flange mount configuration with a stub terminal, precisely engineered with a hole spacing of 12.2mm (.480 inch) for versatile mounting options. Its secure screw-lock coupling mechanism provides a dependable and consistent interface, crucial for high-reliability RF and microwave applications.Optimized for demanding high-frequency scenarios, this connector operates efficiently from DC to 50 GHz. It boasts an excellent Voltage Standing Wave Ratio (VSWR) of ≤1.15, corresponding to a return loss of ≥23 dB, which significantly reduces signal reflections and ensures maximum power transmission across its operational spectrum.
The Q2GTA50-1370A/9X is fabricated using premium materials to ensure exceptional performance and longevity. The center contact is crafted from Beryllium Copper with a 3 pinch gold plating over an 80 pinch non-magnetic nickel-phosphorus underplating. The body is made from passivated Stainless Steel, while the insulator consists of PEI/PTFE, collectively providing superior electrical characteristics and mechanical robustness.
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.