technical ceramic solutions

High Voltage RF Feedthrough Solution: HN Type Coaxial Connector with Flange Mount

High Voltage RF Feedthrough Solution: HN Type Coaxial Connector with Flange Mount

In high voltage RF systems, the stability of signal transmission and the reliability of panel interfaces are critical to system performance. The HN Type Coaxial Connector – Flange Mount is designed specifically for high voltage RF signal transmission where secure panel or cabinet wall installation is required.

This RF coaxial connector integrates a flange mounting structure with threaded locking, providing strong mechanical stability and vibration resistance during long term operation. Therefore, it is widely applied in high voltage RF through-wall interface scenarios, such as test equipment, communication systems and avionics, etc.

Engineering Design Features

From the perspective of engineering design, the HN connector mainly addresses the stability issues of radio frequency connections under high voltage and complex environments.

Captured Center Contact Structure
The connector uses a captured center contact design to prevent displacement caused by thermal expansion or mechanical shock.

  • High Voltage RF Performance
    The connector supports RF signals from DC to 4 GHz with a 50 Ω characteristic impedance, ensuring stable signal transmission.
  • Robust Mechanical Structure
    The flange mounting and threaded coupling mechanism provide strong mechanical fixation and vibration resistance.
  • Wide Temperature Range
    Operating temperature ranges from -65 °C to +165 °C, Suitable for harsh environmental conditions.
  • High Withstand Voltage Capability
    Typical DC withstand voltage can reach up to 5 kV, making it suitable for high-voltage RF systems.

Typical Applications

Due to its high reliability and voltage capability, HN coaxial RF connector is widely used in demanding RF systems.

  • High voltage RF and electrical testing equipment
  • EMI / EMC test systems
  • Outdoor telecom equipment and antenna interfaces
  • Avionics panel interfaces
  • Radiation monitoring and detection systems
  • Industrial and laboratory high voltage RF systems

Selection and Configuration

HN connectors are available in straight and right angle configurations, with multiple flange and bulkhead mounting structures.

Termination options include:

  • Solder cup termination
  • Clamp termination

Custom configurations are available for specific voltage ratings, cable assemblies, or reinforced structures. Engineers are recommended to select the connector based on operating voltage, frequency and installation conditions.

The HN Type Coaxial Connector – Flange Mount provides a reliable solution for high voltage RF feedthrough and panel interface applications. Its robust mechanical structure, high voltage capability and stable RF performance make it suitable for demanding environments. such as testing systems, telecommunications infrastructure, and aerospace electronics.

For more specifications or customized service, welcome to contact sales@innovacera.com.


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FAQ

HN type coaxial connectors are specifically engineered for high-voltage stability, offering a typical DC withstand voltage of up to 5 kV. Their primary technical advantage lies in the “captured center contact” design, which prevents signal instability caused by thermal expansion or mechanical shock. With a 50 Ω characteristic impedance and a frequency range of DC to 4 GHz, these connectors provide a more robust and higher-voltage alternative to standard RF interfaces, ensuring reliable performance in harsh environments ranging from -65 °C to +165 °C.

The flange mount structure provides a secure mechanical interface for panel or cabinet wall installations, ensuring superior vibration resistance and long-term stability through its threaded locking mechanism. This makes it an ideal “feedthrough” solution for isolating high-voltage RF signals between internal and external systems. Typical applications include avionics panel interfaces, EMI/EMC test systems, outdoor telecommunications, and radiation monitoring equipment. These connectors are essential in any scenario requiring a rugged, through-wall connection that can withstand both electrical stress and physical movement.

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