HC860E Embedded Dual-Band GNSS + Iridium Helical Antenna
Embedded dual-band GNSS and Iridium helical antenna: GPS/QZSS L1/L2, GLONASS, Galileo and BeiDou, 28 dB gain and 1.7 dB noise figure.
Embedded dual-band GNSS and Iridium helical antenna: GPS/QZSS L1/L2, GLONASS, Galileo and BeiDou, 28 dB gain and 1.7 dB noise figure.
Compact INS/GNSS with the Pulse-80 IMU: 0.008° roll/pitch, 0.02° heading, 1 cm RTK and triple-frequency quad-constellation GNSS with anti-jamming.
5 MP automotive GMSL2 camera with Sony IMX490, 62.5° horizontal field of view, 120 dB HDR and LED flicker mitigation, IP67/IP69K on the lens side.
42 g dual-band GNSS and active Iridium helical antenna: GPS/QZSS L1/L2, GLONASS, Galileo and BeiDou, 28 dB gain and 1.7 dB noise figure.
4-port 100/1000BASE-T1 Automotive Ethernet 802.3bw/bp PCIe card for in-vehicle test, validation and edge computing.
38 g smart helical GNSS antenna with a u-blox F9 engine (L1/L5), XF filtering, 0.3° heading and 7 Hz output, for high-accuracy UAVs.
Dual-antenna INS/GNSS: 0.01° roll/pitch and 0.02° heading at 2 m baseline, 30 µg bias instability, compact and cost-effective for survey and mapping.
Nuvo-9650AWP supplied with the FPnl-4M12 panel: IP66 waterproof fanless computer with Intel 14th-Gen Core and up to 128 GB DDR5.
Smart GNSS antenna with a u-blox F9 engine (L1/L2), 10 mm RTK, L-band PointPerfect corrections and 0.3° heading, for precise positioning and heading.
INS for an external GNSS receiver: 0.01° roll/pitch, 0.02° heading with a dual-antenna receiver, 200 Hz and 3 W, for survey, hydrography and mapping.
Ultra-compact fanless computer with Intel 14th-Gen Core, 4× 2.5GbE with optional PoE+, 6 USB ports and up to 32 GB DDR4, for machine vision and in-vehicle use.
Smart GNSS timing antenna with a 72-channel u-blox M8 engine, GPS, GLONASS, BeiDou and Galileo, RS-422 timepulse, for network synchronisation and tracking.
Dual-antenna RTK INS: 0.02° roll/pitch, 0.03° heading and 1 cm + 0.5 ppm RTK position in a 400 g unit, for survey, mapping and autonomous vehicles.
Intel® Core™ Ultra 200S compact fanless computer with 4x PoE+ 2.5GbE, 4x USB 3.2 and an easy-swappable 2.5" SSD tray.
INS with external GNSS input: 0.02° roll/pitch, 0.03° heading and centimetre position with an RTK receiver, 400 g and 3 W.
Supporting Intel® 14th/13th/12th-Gen Core™ CPU with 4xM12/4xRJ45/8xRJ45 PoE+ Ports
Board-level dual-antenna RTK INS (SMD): 0.05° roll/pitch with RTK, 0.2° heading and 1 cm RTK position, for integration into UAVs and robots.
Supporting Intel® 14th/13th/12th-Gen Core™ CPU with 4xM12/4xRJ45/8xRJ45 PoE+ Ports, Single-Slot PCIe Cassette
Board-level single-antenna RTK INS (SMD): 0.05° roll/pitch with RTK, 0.2° heading with dynamics and 1 cm RTK position, for UAVs and robots.
Supporting NVIDIA® 2000 ADA, Intel® 14th/13th/12th-Gen Core™ CPU with 43-160V DC Input with Isolation
Board-level INS for an external GNSS receiver: 0.1° roll/pitch, 0.2° heading and 0.03 m/s velocity with a built-in barometer, for OEM integration.
19-inch rack-mount fanless GPU computer with NVIDIA RTX 2000 Ada, Intel 14th-Gen Core, up to 128 GB DDR5 and 9 Ethernet ports, for wide-temperature AI.
Sub-miniature MEMS IMU with 7°/h gyro and 14 µg accelerometer bias instability, 0.15°/√h ARW, ±450°/s and ±16 g ranges.
Supporting Intel® Alder Lake with 4xPoE+, 4xUSB 3.2, MezIO® Interface, Flattop Heatsink
AHRS and MRU with 0.01° roll/pitch, 0.02° heading, 5 cm real-time heave and under 7 µg accelerometer bias, for motion compensation and survey.
Neousys PCIe-PoE425bt Frame Grabber Card is a 4-port 2.5GbE PoE++ card designed for high-performance machine vision and surveillance applications.
MEMS AHRS and MRU with 0.02° roll/pitch, 0.03° heading, 5 cm heave and under 10 µg accelerometer bias, for motion compensation and stabilisation.
100 TOPS Intelligent Frame Grabber Card with 4xPoE+ Ports for IVA or AI Inspection
8 g board-level AHRS with 0.1° roll/pitch, 0.8° magnetic heading and 200 Hz output, for integration into UAVs, robots and handheld devices.
4-Port Gigabit PoE+ Card with Rugged M12 x-coded Connectors
Sub-miniature AHRS for dynamic orientation: 0.1° roll/pitch and 0.8° heading, 7°/h gyro bias instability, ±16 g accelerometers, for UAVs and robots.
IP69K waterproof half-19-inch rack computer with Intel 14th-Gen Core, 2× 10GbE, 4 PoE+ ports, isolated CAN and 8–48 V input, for washdown and outdoor sites.
Supporting Intel® Core™ i3-N305/Atom® x7425E CPU with 4xPoE+, USB 3.2, MezIO® Interface
IP69K waterproof GPU computer with NVIDIA L4, Intel 14th-Gen Core, 2× 10GbE and 4 PoE+ ports on 8–48 V, for edge AI in extreme environments.
Supporting Intel® 14th/13th/12th-Gen Core™ CPU with 6x2.5GbE, USB 3.2 Type-C, Patented Cassette, MezIO® Interface
Supporting NVIDIA® RTX™ A6000/A4500 GPU with 2x10G, 4x1G Ethernet, 8-48V DC Input
High-Precision MEMS Gyroscope with Industry-Leading Bias Stability
High-Performance MEMS Gyroscope with Ultra-Low Noise for Precision Sensing
Tactical-Grade Closed-Loop Accelerometer with 2.5 µg Bias Instability
Miniature Single-Axis Gyroscope with 1°/hr Bias Instability
Silicon Sensing CMS390 (Orthogonal) MEMS Combi-Sensor combines a single-axis gyroscope and a dual-axis accelerometer for precise inertial measurements.
Silicon Sensing CMS300 (In-Plane) MEMS Combi-Sensor integrates a high-precision gyroscope and accelerometer into a compact package.
Six-axis MEMS IMU with 0.1°/h gyro bias instability, 0.02°/√h angle random walk and ±490°/s range, for navigation and stabilisation.
High-Precision MEMS Gyroscope Available in Housed and OEM Versions
Low Noise and Excellent Bias Stability for Accurate Measurements
Single-Axis MEMS Gyroscope in Silicon Sensing’s Smallest Package
Silicon Sensing DMU11 IMU Sensor is a high-precision MEMS-based Inertial Measurement Unit designed for applications requiring low drift and high stability.
76–77 GHz 4D imaging radar with 300 m range and a 100° × 20° field of view that separates objects in azimuth and elevation, for ADAS and autonomous vehicles.
240m Range with 4D/PxHD Precision for Advanced Driver Assistance
76–77 GHz 4D/PxHD front radar with 178 m passenger-car range, 100° azimuth field of view and ≤0.45 m range accuracy, for ADAS and autonomous vehicles.