High Frequency (RF) Relays

Image Part Number Description / PDF Quantity Rfq
ARS11Y24Z

ARS11Y24Z

Panasonic

RELAY RF 3GHZ SPDT 500MA 24V

0

ARS34A24Z

ARS34A24Z

Panasonic

RELAY RF 3GHZ SPDT 500MA 24V

0

ARN12A24X

ARN12A24X

Panasonic

RELAY RF SPDT 24V

0

ARJ22A4H

ARJ22A4H

Panasonic

RELAY RF DPDT 300MA 4.5V

0

ARS31Y09Z

ARS31Y09Z

Panasonic

RELAY RF 3GHZ SPDT 500MA 9V

0

ARN10A12X

ARN10A12X

Panasonic

RELAY RF SPDT 12V

0

ARS14A4H

ARS14A4H

Panasonic

RELAY RF SPDT 500MA 4.5V

2839

ARS15A4HX

ARS15A4HX

Panasonic

RELAY RF 3GHZ SPDT 500MA 4.5V

0

ARS10A24X

ARS10A24X

Panasonic

RELAY RF 3GHZ SPDT 500MA 24V

0

ARS35Y4HZ

ARS35Y4HZ

Panasonic

RELAY RF 3GHZ SPDT 500MA 4.5V

0

ARS36A03X

ARS36A03X

Panasonic

RELAY RF 3GHZ SPDT 500MA 3V

0

ARS14Y03

ARS14Y03

Panasonic

RELAY RF SPDT 500MA 3V

103

ARJ20A24

ARJ20A24

Panasonic

RELAY RF DPDT 300MA 24V

0

ARJ20A03

ARJ20A03

Panasonic

RELAY RF DPDT 300MA 3V

0

ARS35A03

ARS35A03

Panasonic

RELAY RF 3GHZ SPDT 500MA 3V

0

ARJ2024

ARJ2024

Panasonic

RELAY RF DPDT 300MA 24V

0

ARS1212

ARS1212

Panasonic

RELAY RF SPDT 500MA 12V

4

ARS34Y03Z

ARS34Y03Z

Panasonic

RELAY RF 3GHZ SPDT 500MA 3V

0

ARS1003

ARS1003

Panasonic

3GHZ MICROWAVE RELAY

1

ARS32A09X

ARS32A09X

Panasonic

RELAY RF 3GHZ SPDT 500MA 9V

0

High Frequency (RF) Relays

1. Overview

High Frequency (RF) Relays are electromechanical or solid-state devices designed to switch high-frequency electrical signals (typically above 1 MHz) in radio frequency (RF) circuits. They enable reliable signal routing in communication systems, test equipment, and industrial applications. With the advancement of 5G, IoT, and wireless technologies, RF relays have become critical components for maintaining signal integrity in high-speed data transmission systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Electromechanical RF RelaysMetal contacts with electromagnetic actuation, suitable for high power handling (up to 1 kW)Telecom infrastructure, broadcast equipment
Solid-State RF RelaysSemiconductor-based switching with nanosecond response timeAutomated test equipment (ATE), medical imaging
Coaxial RelaysDesigned for coaxial cable systems with impedance matching (50/75 )Satellite communication systems
PCB Mount RF RelaysSurface-mount design for compact RF circuit integrationPortable test instruments, aerospace electronics

3. Structure and Components

Typical RF relay construction includes: - Enclosure: Hermetically sealed metal housing (aluminum/steel) for EMI shielding - Contact Materials: Beryllium copper alloy with gold plating for low contact resistance - Actuation Mechanism: Electromagnetic coil or MOSFET driver circuit - RF Path: Precision-machined transmission lines with ceramic insulation - Termination: SMA/N-type connectors or SMD pads for PCB integration

4. Key Technical Specifications

ParameterTypical RangeImportance
Frequency RangeDC-40 GHz (waveguide up to 110 GHz)Determines application bandwidth
Power Handling1W-2kW (CW/Peak)Prevents signal distortion/overheating
Insertion Loss0.1-2.5 dBMinimizes signal attenuation
VSWR1.1:1-1.8:1Measures impedance matching quality
Switching Life10^6-10^8 operationsDictates long-term reliability
Switching Speed5ms-100nsCritical for test automation systems

5. Application Fields

Major application sectors include: - Telecommunications: 5G base stations, microwave backhaul systems - Test & Measurement: RF spectrum analyzers, network analyzers - Medical: MRI systems, radiation therapy equipment - Industrial: Semiconductor manufacturing equipment - Aerospace: Radar systems, satellite payload switches

Case Study: In 5G massive MIMO systems, coaxial RF relays enable dynamic antenna array configuration with <0.5dB insertion loss at 3.5GHz.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TE ConnectivityKILOVAC EV200AA40kV isolation, space-grade reliability
OMRONG5RL-U1-E-DC5Compact 5V PCB relay for IoT devices
CrydomRF1A240D25240VAC switching with 25A capacity
Pickering60-700 SeriesLXI-controlled relay matrices for ATE

7. Selection Guidelines

Key selection criteria: - Match frequency requirements with relay's -3dB bandwidth - Verify voltage standing wave ratio (VSWR) for system impedance - Calculate power dissipation using P=I R formula - Consider mechanical/environmental factors (vibration, temperature) - Balance switching speed vs. contact wear in electromechanical types - Prioritize hermetic sealing for aerospace applications

8. Industry Trends

Current development trends include: - Miniaturization: Chip-scale RF relays approaching 0.5mm - Frequency extension: 110GHz+ waveguide integrated designs - Smart integration: Relays with built-in position sensors - Material innovation: Graphene-coated contacts for reduced insertion loss - Increased focus on RoHS-compliant, lead-free manufacturing processes

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