
Professional Manufacturer and Supplier of RF & Microwave Solutions
We provide high-performance Waveguide, RF Coaxial, Antenna and Cable solutions with fast delivery, strict quality control and flexible customization for global customers.

We provide high-performance Waveguide, RF Coaxial, Antenna and Cable solutions with fast delivery, strict quality control and flexible customization for global customers.

Our product range includes Waveguide components, Coaxial components, RF cables, Antennas and customized microwave assemblies.

With experienced engineering teams, strict quality inspection and efficient production processes, we help customers shorten lead time and reduce project risk.
Why Choose Us
Professional and Reliable RF & Microwave Solutions
Professional technical solutions from design to final production.
Strict inspection processes ensure consistent performance.
Efficient scheduling enables short lead time and on-time shipment.
Standard and custom solutions to meet diverse requirements.
By the numbers
We measure the business by useful products, dependable partners, and customers who come back when they need the next everyday piece.

Signal loss in your cable is money lost at the receiver. CG Series low-loss coax preserves signals DC–18 GHz—don't pay for gain you shouldn't need. Five OD options (3.60–8.10 mm) fit a drone wing or a base station, without overpaying for specs you won't use. Rated -55°C to +125°C; optional PUR jacket handles UV and moisture outdoors. 70 dB shielding keeps crosstalk low. RoHS/REACH. Tell us your frequency, length, and environment—we'll match the right cable.

Struggling with stiff cables causing connector damage in mobile radio systems? AO Microwave’s CJ Series multicore low-loss flexible coaxial cables are the solution. Pairing stranded silver-plated copper conductors with PTFE dielectrics, they offer superior flexibility and high velocity of propagation (81-82%) up to 18 GHz. With a 90 dB shielding effectiveness and PUR jackets (OD 5.00mm to 10.00mm), they prevent joint stress and handle harsh environments. Ideal for radio equipment.

Tired of rigid cables straining your solder joints? AO Microwave’s CT Series offers economical, highly flexible internal interconnect cables up to 40 GHz. Designed to replace semi-rigid and semi-flexible lines, these FEP-jacketed cables eliminate spring-back forces and prevent joint shear. With solid PTFE dielectrics, 90 dB shielding, and outer diameters from 1.45mm (CT160) to 7.00mm (CT700), they ensure stable, low-loss routing for compact chassis and radars.

Struggling with signal failure under extreme heat or phase drift during on-board maneuvers? AO Microwave's CTR Series provides high-temperature, phase-stable coaxial cables up to 40 GHz. Featuring stranded silver-plated copper cores and PI+PTFE jackets, they resist up to 400°C for 400s. With 90 dB shielding and outer diameters from 3.60mm (CTR360) to 5.40mm (CTR500), they ensure stable, low-loss RF paths for missile-borne comms and extreme-temperature chambers.

Looking for cost-effective RF routing without sacrificing signal stability? AO Microwave’s CX Series offers economical, amplitude-stable flexible coaxial cables up to 40 GHz. Featuring solid PTFE dielectrics and FEP/PUR jackets, these cables deliver exceptional flex/vibration resistance and low phase drift (±0.3°/GHz for CX400). With 90 dB shielding and outer diameters from 3.95mm to 5.15mm, they ensure low-loss, reliable interconnections for high-volume test systems.

Struggling with outdoor cable degradation and signal loss in harsh environments? AO Microwave’s CY Series outdoor low-loss coaxial cables are built with UV-resistant PUR jackets to prevent weathering. With silver-plated copper shielding and solid PTFE cores, they deliver stable, low-attenuation transmission up to 18 GHz under -40°C to +85°C. Highly durable and flexible, they are optimized for mobile vehicle antennas, phased array radars, and shipboard systems.

Facing tight routing in complex cabins or frequent cable wear in harsh fields? AO Microwave’s CZ Series offers ultra-soft, low-loss flexible coaxial cables up to 40 GHz. Featuring stranded silver-plated copper conductors and rugged PUR jackets, these cables eliminate installation stress on connectors and resist environmental cracking. They deliver 90 dB shielding effectiveness and stable transmit power, making them the ideal choice for compact module interconnects and rugged field tests.

VNA Seriese: Test Cable for Vector Network Analyzer (630mm) is designed for high-accuracy RF and microwave measurement applications. This phase stable VNA test cable provides excellent amplitude stability, low insertion loss and high measurement repeatability for vector network analyzer calibration, antenna testing, RF component measurement and microwave laboratory environments.

VNA Seriese: Test Cable for Vector Network Analyzer (1000mm) provides stable and accurate RF signal transmission for microwave measurement systems. Designed for vector network analyzer testing, RF calibration, antenna measurements and microwave laboratories, this high-performance phase stable coaxial cable ensures reliable measurement accuracy and repeatable test results.

Are waveguide bends causing VSWR spikes and phase distortion in your RF system? Discover the root causes of signal loss in E-bends and H-bends, and learn how precision CNC routing solves it.

Explore the RF engineering challenges behind reliable UAV and drone systems, including communications, navigation, payload integration and signal integrity.

Discover the RF engineering principles behind accurate microwave measurements, including calibration, signal integrity, uncertainty and test repeatability.

Learn the RF engineering principles behind accurate EMC testing, including measurement repeatability, calibration, shielding and signal integrity.

Explore the RF engineering principles behind reliable satellite communication systems, from ground stations and tracking networks to space-based connectivity.

Learn how RF design influences 5G coverage, capacity and signal integrity, and explore the engineering challenges behind reliable telecom networks.

Modern radar systems rely on precise RF architectures to achieve reliable detection and measurement. Explore the engineering factors that influence performance across civilian/industrial applications

Save time on complex RF math. This dBm to Power conversion table (+60 to -20 dBm) offers engineers a fast, reliable reference to ensure precision in every power measurement and link budget.