3.5mm Male 2-Hole Flange Mount RF Connector – Field Replaceable, 12.22mm Hole Spacing, 0.9mm Pin Diameter

Product ID: 3.5-JFD24
Deal
Quantity Price
1 - 99 22,00 $
100 - 199 21,56 $
200 - 499 21,34 $

* All Prices are in US Dollars and do not include duties

Key Specifications

Frequency Max

Connector Series

Connector Gender

Body Style

VSWR Max

Termination Type

Interface Type

Attachment Method

Mount Method

Description

3.5mm Male 2-Hole Flange Mount RF Connector – Field Replaceable, 12.22mm Hole Spacing, 0.9mm Pin Diameter

3.5mm Male 2-Hole Flange Mount Field-Replaceable RF Connector – Model 3.5-JFD24

The 3.5 mm male 2-hole flange mount RF connector with a 0.9 mm pin and 12.22 mm hole spacing provides an optimal solution for calibration instruments, frequency analyzers, and broadband RF test setups. Its field-replaceable configuration ensures fast maintenance and repeatable connection quality.

High-Frequency Behavior and Return Loss Control

Designed for 50 Ω impedance, VSWR ≤ 1.1, and insertion loss ≤ 0.06 √F(GHz) dB, the 3.5-JFD24 connector provides stable, low-loss transmission from DC up to 26.5 GHz. The precision design minimizes intermodulation and reflection. Discover more in the 3.5 mm connector series.

Material Strength and Compliance Assurance

Constructed from stainless steel with gold-plated beryllium copper contacts, this connector guarantees durability under frequent re-mating. Each model is REACH and RoHS compliant, meeting international safety and quality standards. View additional variants in the flange-mount connector range.

Mechanical Stability and Alignment Precision

The 2-hole flange mount format (12.22 mm spacing) offers precise alignment and secure fastening in compact module designs. Its rugged structure supports repeatable calibration and long-term stability. See the RF connector catalog for more field-replaceable designs.

Female Connector Pairing

Use alongside the 3.5 mm female 2-hole flange mount RF connector – Model 3.5-KFD24 for complementary gender connections and optimized broadband signal flow.