Company Profile
Established in 2014, Shenzhen Hanyang Antenna Design Co., Ltd. is a national-level “Little Giant” enterprise recognized for being “Specialized, Refined, Unique, and Innovative” (SRUI). Specializing in the R&D, manufacturing, sales, and service of wireless communication terminal antennas, the company is headquartered in Shenzhen, with R&D centers and branches in Beijing, Qingdao, Chengdu, and Seoul, South Korea. Our state-of-the-art manufacturing base is located in Dongguan, Guangdong.
We boast a premier R&D team of over 20 professionals, with more than 50% holding master’s or doctoral degrees. Backed by over 20 authorized invention patents and comprehensive reliability testing platforms, we provide one-stop antenna solutions and technical services. Our Dongguan facility features six 20-meter assembly lines and two fully automated production lines, staffed by over 60 skilled workers. Equipped with IoT devices, 5G small cells, and advanced antenna testing systems, the factory ensures rigorous end-to-end quality control.
Driven by a technology-first philosophy, Hanyang has pioneered a new generation of air-dielectric antennas. This breakthrough resolves the traditional limitations of ceramic-dielectric antennas regarding weight, cost, and complex manufacturing. Delivering high performance, miniaturization, and lightweight design, these antennas are now widely deployed in IoT and communication terminals, including drones, new energy vehicles, and e-bikes.
Our core product portfolio encompasses high-precision satellite positioning antennas, satellite communication antennas, high-speed MIMO antennas, and magnetic induction antennas. Through our high-quality offerings, including ultra-light air-dielectric antennas, GNSS antennas, G-mouse, GPS modules, and IoT antennas, Hanyang continues to achieve steady growth, remaining steadfast in our mission to become a leading global enterprise in IoT, communication, and navigation/positioning antenna solutions.
Main Business
1. Full-Cycle Services for Wireless Communication Terminal Antennas
We specialize in the R&D, manufacturing, sales, and service of antennas for wireless communication terminals, providing customers with one-stop antenna solutions and professional technical support.
2. R&D and Manufacturing of Core Antenna Products
We are dedicated to the development and production of premium antenna products. Our core product portfolio includes:
High-precision satellite positioning antennas (GNSS antennas)
Satellite communication antennas
High-speed MIMO antennas
Magnetic induction antennas
G-mouse, GPS modules, and various IoT antennas
3. Innovative Application of Next-Gen Air-Dielectric Antennas
As a technology-driven enterprise, we have independently developed the next-generation air-dielectric antenna. This breakthrough resolves the issues of traditional ceramic-dielectric antennas (such as heavy weight, high cost, and complex manufacturing), achieving high performance, miniaturization, and lightweight design. These antennas are now widely deployed in IoT and communication terminals, including drones, new energy vehicles (NEVs), and e-bikes.
4. Smart Manufacturing and End-to-End Quality Control
Backed by our Dongguan manufacturing base, we utilize automated assembly lines equipped with IoT devices, 5G small cells, and advanced antenna testing systems to guarantee rigorous end-to-end quality control for all our products.
Summary:
In short, Hanyang Antenna’s core business is providing one-stop wireless communication antenna solutions—from R&D and testing to manufacturing—for drones, NEVs, and IoT applications, driven by our proprietary air-dielectric technology and a comprehensive lineup of GNSS/MIMO antennas.
Main Products
Description:
Single Radiator Dual Feed WiFi MIMO Antenna
The proposed antenna achieves miniaturized size with high radiation efficiency for Wi‑Fi module applications. This method is based on exciting the current distribution of a single radiator into three resonant modes. Two of them are electric current sources that couple the radiation elements on the ground plane; the third is a dipole resonant mode, which eliminates mutual coupling between the two electric current sources. Consequently, mutual coupling between two WiFi antennas is reduced, which significantly improves data‑transmission throughput.
Application areas:It can be widely applied for 4K/8K high‑definition video devices such as smart TVs, smart screens and projectors
Description:
Cavity with Multi Resonant Mode for RTK Navigation Applications
This product addresses the technical issues of miniaturizing RTK antennas. By using the mutual coupling between electric and magnetic resonance structures, it broadens the impedance bandwidth of the cavity resonant mode and enhances the radiation gain of the monopole resonant mode. The product measures 70×70×10 mm (length × width × height). It achieves a bandwidth of 60 MHz at the low‑frequency band of 1.2 GHz and 70 MHz at the high‑frequency band of 1.575 GHz, with radiation gain exceeding 3.5dBi and 4.5dBi, respectively.
Application areas:It is widely applied in IoT fields including vehicle‑mounted navigation, lawn‑mowing robots, smart agriculture and industrial surveying‑mapping.
Description:
Four-antenna Array RTK Navigation Antenna
The proposed is an anti‑jamming antenna integrating miniaturization, light weight, and high-performance. Compared to the conventional ceramic‑dielectric antennas, this product adopts innovative cavity electric coupling technology which achieves a weight reduction of over 50 %. Furthermore, anti‑phase resonant modes are excited to reduce the mutual coupling currents on the ground plane, which significantly improves isolation among array elements. It addresses the issue of reconciling low‑elevation axial ratio and low‑elevation gain that enables the navigation system to deliver dual security capabilities of anti‑jamming and high‑precision positioning, and that meets the requirements under complex electromagnetic environments.
Application areas:This product is particularly suitable for UAVs, autonomous driving, power time‑synchronization, maritime navigation and other IoT‑related fields.





