AllBand GNSS Cross Dipole Active GNSS Antenna description: This active multi-band GNSS antenna that has been carefully designed to work well on the full GNSS spectrum. This allows the user to achieve higher location accuracy, as well as stability of position tracking in urban environments. The AllBand antenna has excellent performance across the full bandwidth of the antenna and its design has an even gain across the hemisphere giving almost excellent, broad axial ratio which in turn makes it resilient to multipath rejection and excellent phase centre stability. The LNA used in the AllBand antenna ensures excellent out of band rejection and provides excellent positioning stability and reliability of GNSS signals. Signal Received: GPS L1/L2/L5 GLONASS G1/G2/G3 GALILEO E1/E5a/E5b/E6 BDS B1I/B2I/B3I/B1C/B2a/B2b SBAS L1/L5 QZSS L1/L2/L5/L6 IRNSS I5 Amplifiers characteristics: Typ. LNA Gain: 25 dB LNA Noise Figure: Max. 3.4 dB Axial Ratio: 1 - 1.5 dB Max. Output VSWR: 1.5 Polarization: RHCP Voltage range: 1.8 - 5 V Typ. current: 20 mA Typical Applications Include: Autonomous Driving Precision Positioning for Robotics Precision Agriculture Inventory Management & Container tracking Telematics & Asset Tracking Timing Accuracy Synchronization Certifications & Compliance: Anti-jamming CE Certified RoHS & REACH Compliant Mechanical data: Weight: 106 gr. with cable Dimensions: Ø92 x 65mm Cable: 1500mm RG-174 Connector: SMA(M) Straight Housing color: black Housing material: ASA, FDM printed Mounting: 1/4" photographic tripod, 5/8" threaded survey pin, 3M adhesive tape mount Protection: IP65 This MultiBand antenna is the latest addition to an ongoing product road map of high precision antennas. For RTK applications when used on the base and/or the rover, the MultiBand antenna can achieve genuine cm-level accuracy. This is a custom-designed product with an enclosure 3D printed from ASA using FDM technology. Customization of the enclosure, cable lengths, and connector types is available upon request. Minimum order quantities apply.