SRFS Teleinfra

Products

Wi-Fi Antenna

Wi-Fi Antennas are essential RF communication components designed to transmit and receive wireless signals for stable internet connectivity and high-speed data communication. These antennas are widely used in wireless networking systems, routers, access points, IoT devices, telecom infrastructure, industrial communication systems, and 4G/5G wireless applications. 

At SRFS Teleinfra, we manufacture and supply high-performance Wi-Fi Antennas engineered for strong signal coverage, high gain, stable connectivity, and low signal loss across wireless communication networks. Our Wi-Fi antennas are designed using advanced RF technology and precision-engineered materials to ensure reliable performance, improved network efficiency, and long operational life in indoor and outdoor environments. 

Our Wi-Fi antennas support multiple wireless frequency bands and are suitable for broadband networks, wireless LAN systems, smart devices, industrial automation, and modern telecom infrastructure. These antennas are available in omni-directional, directional, panel, magnetic base, and high-gain antenna configurations based on application requirements. 

2.4 GHz 3 dBi Rubber Duck Antenna

2.4 GHz 3 dBi Rubber Duck Antenna

2.4 GHz 2 dBi Rubber Duck Antenna

2.4 GHz 2 dBi Rubber Duck Antenna

2.4 GHz 5 dBi Rubber Duck Antenna RP-SMA Male Connector

2.4 GHz 5 dBi Rubber Duck Antenna RP-SMA Male Connector

2.4 GHz Wi-Fi 5dBi Rubber Duck SMA (M) Movable Body

2.4 GHz Wi-Fi 5dBi Rubber Duck SMA (M) Movable Body

2.4 GHz 9 dBi SMA-Male High Performance Rubber Duck Wireless LAN Antenna

2.4 GHz 9 dBi SMA-Male High Performance Rubber Duck Wireless LAN Antenna

9 dBi RFID Rubber-Duck Antenna with SMA Male Movable

9 dBi RFID Rubber-Duck Antenna with SMA Male Movable

What is a Wi-Fi Antenna?

A Wi-Fi Antenna is a wireless communication antenna used to transmit and receive radio frequency signals for Wi-Fi networks and wireless internet connectivity. These antennas help improve signal strength, increase wireless coverage, and enhance network stability in homes, offices, industrial systems, and telecom applications. 

Wi-Fi antennas operate on standard wireless frequency bands such as 2.4 GHz and 5 GHz and are designed to support high-speed wireless communication with minimal interference.

Types of Wi-Fi Antenna Used in Telecom Networks

Omni Directional Wi-Fi Antenna

Provides 360-degree signal coverage for wireless networking applications.

Directional Wi-Fi Antenna

Designed for focused long-distance wireless communication with higher gain performance.

Panel Wi-Fi Antenna

Used for controlled wireless coverage in indoor and outdoor telecom installations.

Magnetic Base Wi-Fi Antenna

Compact antenna solution for routers, gateways, and portable wireless devices.

High Gain Wi-Fi Antenna

Engineered for extended signal coverage and improved wireless network performance.

Technical Specifications

ParameterSpecification
Frequency Range2.4 GHz / 5 GHz
Impedance50 Ohm
Gain2 dBi to 15 dBi
PolarizationVertical / Horizontal
Connector TypeSMA / N Type
VSWR≤ 1.5
Cable LengthCustomizable
Mounting TypeMagnetic / Wall / Pole Mount
Operating Temperature-40°C to +85°C

Applications of Wi-Fi Antenna

Wi-Fi antennas are widely used across wireless and telecom industries including:

  • Wi-Fi Routers & Access Points
  • Wireless LAN Networks
  • Smart Home Devices
  • IoT Communication Systems
  • Industrial Wireless Networks
  • Telecom Infrastructure
  • Broadband Internet Systems
  • CCTV & Surveillance Systems
  • 4G / 5G Wireless Applications
  • Wireless Communication Equipment

Key Performance Factors

Choosing the right Wi-Fi Antenna depends on several important RF performance parameters:

  • Frequency band compatibility
  • Antenna gain and coverage
  • Signal directionality
  • VSWR performance
  • Connector compatibility
  • Environmental durability
  • Indoor or outdoor installation requirements
  • Cable quality and length

Proper antenna selection ensures stronger wireless coverage, improved signal stability, and reliable high-speed communication performance.

Wi-Fi Antenna Product Specifications

Wi-Fi Antenna Type Frequency Range Gain Application
Omni Directional Wi-Fi Antenna 2.4 GHz 5 dBi Wireless LAN & Router Applications
Directional Wi-Fi Antenna 2.4 / 5 GHz 12 dBi Long Distance Wireless Communication
Panel Wi-Fi Antenna 5 GHz 8 dBi Indoor & Outdoor Wi-Fi Coverage
Magnetic Base Wi-Fi Antenna 2.4 GHz 3 dBi Portable Wireless Devices
High Gain Wi-Fi Antenna 2.4 / 5 GHz 15 dBi Broadband & Telecom Networks

Why Choose us

Strong Wireless Signal Coverage

Our Wi-Fi antennas are engineered for stable connectivity and enhanced wireless coverage across networking applications.

High Gain RF Performance

Designed to deliver efficient signal transmission with minimal interference and improved network stability.

Durable & Weather-Resistant Design

Manufactured using premium materials for reliable indoor and outdoor wireless communication environments.

Wide Frequency Support

Suitable for 2.4 GHz and 5 GHz wireless networking applications including Wi-Fi and broadband systems.

Frequently Asked Questions

A Wi-Fi antenna is used to transmit and receive wireless signals for internet and wireless communication networks.

Most Wi-Fi antennas support 2.4 GHz and 5 GHz wireless frequency bands.

Antenna gain measures signal strength and coverage capability. Higher gain antennas provide stronger and longer wireless coverage.

Most Wi-Fi antennas are designed with standard 50 Ohm impedance for RF communication systems.

Omni antennas provide 360-degree coverage, while directional antennas focus signals in a specific direction for longer range communication.

Yes, outdoor Wi-Fi antennas are manufactured with weather-resistant materials for reliable outdoor installations.

Yes, high-gain Wi-Fi antennas help improve signal strength, coverage area, and wireless network stability.

Common connector types include SMA, RP-SMA, and N Type RF connectors.

They are widely used in routers, access points, industrial wireless systems, IoT devices, CCTV systems, and telecom networks.