
Mechanc · RF Connectors
| Part Number | 2.4-KFD11 |
|---|---|
| Series | 2.4mm |
| Gender | Female |
| Body Style | Straight |
| Mount Method | 4 Hole Flange |
| Attachment Method | Field Replaceable |
| Termination Type | Field Replaceable |
| Frequency Max | 50 GHz |
| Impedance | 50 Ω |
| Max Operating Temperature | +165°C |
| Connector 1 | 1.0mm 公头 |
| Connector 2 | 1.0mm 公头 |
The 2.4mm female 4-hole flange mount RF connector with a 0.23 mm pin diameter and compact 5.64 mm hole spacing is optimized for high-precision, space-limited test systems. Designed for 50 Ω impedance and frequency ranges up to 50 GHz, this field-replaceable connector guarantees accuracy and repeatability in fine-calibration environments.
Offering VSWR ≤ 1.2 and insertion loss ≤ 0.06 √F(GHz) dB, the 2.4mm female 4-hole flange mount RF connector ensures minimal reflection in ultra-sensitive metrology applications. The 0.23 mm pin diameter provides exceptional alignment accuracy, crucial for micro-scale RF modules and precision signal interfaces.
The 2.4mm female flange connector is manufactured from stainless steel and gold-plated beryllium copper for reliable electrical contact, low resistance, and excellent mechanical wear. Fully REACH and RoHS compliant, it meets global environmental and safety standards while maintaining consistent performance from −55 °C to +165 °C in compact, high-precision assemblies.
The 5.64 mm flange spacing enables integration within ultra-compact instruments and high-frequency micro-analyzers. This mounting geometry aligns with 4-hole flange mount RF connectors used in next-generation modular assemblies and miniaturized calibration platforms.
Mechanc provides bespoke 2.4 mm RF connectors with tailored pin diameters, flange configurations, and surface finishes. Visit the RF Connector Catalog for additional precision components designed for advanced testing environments. Pair with the 2.4mm male 4-hole flange mount RF connector – Model 2.4-JFD11 for fully matched high-frequency performance and optimized return loss control.