Maxtena’s M9PLUS-HCT-A-SMA is a high-performance, active GNSS antenna engineered for demanding, precision-focused applications.
Built on the company’s proprietary Helicore® technology, this multi-frequency solution supports L1/L2/L5 GPS, Galileo, Beidou, GLONASS, and L-band correction services, delivering robust performance in challenging RF environments.
Designed with compatibility for u-blox X20 receivers, the M9PLUS-HCT-A-SMA provides consistent accuracy in applications where precision is critical. Its active design and advanced phase center stability allow for the use of phase corrections, making it ideal for integration in high-accuracy positioning systems.
The antenna’s integrated pre-filter offers superior out-of-band rejection, specifically targeting interference from nearby high-power LTE base stations. By blocking LTE signals and their higher-order harmonics, the M9PLUS-HCT-A-SMA ensures reliable GNSS signal quality and minimizes the risk of intermodulation. This feature makes it particularly effective for use in dense urban areas and other environments with high electromagnetic interference.
With a compact form factor and integrated SMA connector, the antenna is available in both embedded and external configurations. The rugged IP67-rated construction and O-ring sealing support long-term reliability in harsh outdoor environments. Its mechanical design simplifies installation into custom enclosures or retrofit projects, minimizing development overhead while maximizing system performance.
Key features:
- Multi-band support: L1/L2/L5 GPS, Galileo, Beidou, GLONASS, and L-band
- Built on Helicore® technology for superior efficiency and polarization purity
- High out-of-band rejection to mitigate LTE interference
- Integrated SMA connector for simplified deployment
- Rugged IP67-rated housing with O-ring for environmental sealing
- Available in embedded and external configurations
The M9PLUS-HCT-A-SMA is purpose-built for applications that demand precise positioning, strong interference immunity, and easy integration, all within a durable, compact design.