Frequency Range(GHz):3.1-7
Center frequency characteristic impedance (Ω):50
Gain(dBi):5
Main Technical Specifications
Frequency Range(GHz) | 3.1-7 |
Impedance(Ω) | 50 |
Gain(dBi) | 5 |
Product Specifications
Introduction to Omnidirectional Cloverleaf UWB Antenna
The Cloverleaf UWB antenna offers exceptional omnidirectional coverage and wide bandwidth from 3.1 GHz to 7 GHz. With a gain of 0 to 5 dBi, it ensures reliable, high-performance communication across various devices. Its compact design integrates seamlessly into wireless and satellite systems, providing robust connectivity and signal clarity in diverse applications.
Application Areas
Application Areas of Omnidirectional Cloverleaf UWB Antenna
1.IoT Devices: Integrates into Internet of Things (IoT) devices for effective data exchange.
2.Wireless Communication Systems: Enhances signal reception and transmission in wireless networks.
3.Satellite Communication: Provides reliable connectivity for satellite systems.
4.Radar and Sensing: Used in radar systems and various sensing applications for accurate data collection.
5.Short-Range High-Speed Data Transmission: Ideal for applications requiring high-speed data transfer over short distances.
Purchase and Contact Information
Dongguan RenFeng Electronic Technology Co.,Ltd
Email: bellasu@rflink.net.cn
Mobile Phone: +86 1379-4978-989
Address: No.1 Sankeng Qinghutou Tangxia Dongguan Guangdong China
FAQ
Omnidirectional Cloverleaf UWB Antenna FAQs
1.What type of radiation pattern does the Cloverleaf UWB antenna have? The antenna typically features an omnidirectional or near-omnidirectional radiation pattern, allowing it to emit or receive signals from multiple directions.
2.Can the Cloverleaf UWB antenna be used in IoT devices? Yes, its wide frequency range and compact design make it suitable for integration into IoT devices for effective communication.
3.How does the antenna's design impact its performance?The Cloverleaf design ensures uniform signal coverage and robust connectivity, optimizing performance across a wide range of frequencies.