Key Specifications
Type Design:
Precision
Connection Type:
In-Series
Connector 1 Series:
2.4mm
Connector 1 Gender:
Jack (Female)
Connector 2 Series:
2.4mm
Connector 2 Gender:
Jack (Female)
Impedance (Ohm):
50
Body Style:
Straight
Panel Mount:
4 Hole Flange
Connector 1 Connection Method:
Threaded (Screw-lock)
Connector 2 Connection Method:
Threaded (Screw-lock)
Frequency, Max (GHz):
50
Connector 1 Body Material:
Stainless Steel
Connector 1 Body Plating:
Passivated
Connector 2 Body Material:
Stainless Steel
Connector 2 Body Plating:
Passivated
VSWR, Max:
1.15
Description
2.4mm Jack (Female) to 2.4mm Jack (Female) | 4-Hole Flange Panel Mount | Screw-Lock | Stainless Steel Body | M2 Threaded Design
The ROSNOL AD-Q2Q25B-PFM2/9X-9X is a precision-engineered 2.4mm adapter designed for RF and microwave systems operating from DC to 50 GHz with a 50 Ω impedance. It delivers VSWR ≤ 1.15, insertion loss ≤ 0.05√F (GHz) dB, and insulation resistance ≥ 5 GΩ, ensuring superior signal integrity. Rated for 500 V RMS test voltage and power handling up to 150 V RMS working voltage, this adapter guarantees reliable performance in high-frequency applications. The screw-lock coupling mechanism provides secure engagement with ≥ 500 mating cycles and recommended torque of 0.80 to 1.10 Nm.Constructed with premium materials, the center contact is beryllium copper with gold plating over nickel-phosphorus underplating for excellent conductivity. The body and coupling nut are stainless steel with passivated finish, complemented by PEI insulators for dielectric stability. Designed to withstand temperatures from -65°C to +155°C, this adapter ensures durability in demanding environments.
ROSNOL’s precision-engineered RF connectors offer a cost-effective alternative to leading global brands. Manufactured in ISO 9001-certified facilities and fully compliant with RoHS and REACH standards, these products guarantee quality and environmental safety. Customization services for plating, materials, and mechanical design are available to meet specialized requirements.