BMA Connector Series
BMA RF Coaxial Connectors
BMA RF/Microwave coaxial series is an easy use slide-on connector, has 50 Ohms impedance and is suitable for high performance microwave applications up to 18 GHz.
BMA Series preserve mechanical and electrical performance with interfacial misalignment features. The connector used for wireless infrastructure, satellite equipment and test and measurement.
BMA Connectors, Solder type
Bo Jiang provides a of BMA series RF/Microwave connectors. Bo Jiang's BMA series connectors...
BMA Connectors, Crimp type
Regarding flexible cables and for assembled copper tube in assembly process, Bo Jiang's BMA RF/Microwave...
BMA Connectors, PCB Mount type
Bo Jiang provided PCB mounting type of BMA RF/Microwave coaxial connectors were suitable to solder...
BMA Connector Series | SMA Coaxial Connector (End-Launch type) Manufacturer | Bo-Jiang
Located in Taiwan since 1992, Bo-Jiang has been a RF/microwave coaxial and 5G related connector products manufacturer. Their main products include, BMA Connector Series, SMB connectors, coaxial probes, 2.4mm - 2.92mm cable assemblies, high frequency connectors, plug to jack adaptors, connectors for audio and video systems, high frequency end launches and SMA directional couplers, which are ISO 9001, ISO 14001 and IECQ QC 080000 certified.
Bo-Jiang Tech with more than 26 years of designing, manufacturing and assembling in RF/Microwave Coaxial connectors and Cable Assembly. Bo Jiang provides complete series of 5G related products such as high performance phase matching cables and RF adaptors to support applications from 18GHz to 110GHz, and has been certified by ISO 9001, ISO 14001 and IECQ QC 080000 for many years, we have installed the ISO/IATF16949 systems to upgrade our company to a leading position..
Bo-Jiang has been providing customers with high quality 5G related connector series, NMD cable assemblies, RF adaptors, multi-coax connectors and cable assemblies, both with advanced technology and 26 years of experience, Bo-Jiang ensures each customer's demands are met.