SMA Female 2-Hole Flange Mount RF Connector – Field Replaceable, 10.2mm Hole Spacing, 0.9mm Pin Diameter

Product ID: SMA-KFD30
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

SMA Female 2-Hole Flange Mount RF Connector – Field Replaceable, 10.2mm Hole Spacing, 0.9mm Pin Diameter

SMA Female 2-Hole Flange Mount Field-Replaceable RF Connector – Model SMA-KFD30

The SMA female 2-hole flange mount RF connector with a 0.9 mm pin and 10.2 mm hole spacing offers a precision-grade solution for calibration networks, communication analyzers, and modular broadband systems. Its field-replaceable design supports quick maintenance and long-term performance consistency.

Electrical Response and Broadband Capabilities

Featuring 50 Ω impedance, VSWR < 1.08, and insertion loss < 0.06√F(GHz) dB, the SMA-KFD30 connector ensures low reflection and high signal integrity across the DC–18 GHz range. It provides repeatable phase accuracy for measurement-grade RF systems. See the full SMA connector catalog for comparable models.

Material Engineering and Compliance

Manufactured from corrosion-resistant stainless steel and gold-plated beryllium copper contacts, this connector provides excellent conductivity and durability. Each part is REACH and RoHS compliant, supporting global quality standards. Learn more under our flange-mount connector section.

Mechanical Assembly and Mount Geometry

The 2-hole flange mount configuration (10.2 mm spacing) provides reliable mounting and precise alignment within compact test environments. Its design ensures secure mechanical retention and electrical stability. Browse the RF connector catalog for compatible high-frequency SMA solutions.

Matching Male Version

Pair the SMA-KFD30 with the SMA male 2-hole flange mount RF connector – Model SMA-JFD30 for repeatable broadband connectivity and consistent measurement precision.