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Here are solid GPS options depending on what you’re building:
Easy GPS modules (great starting point)
- Ultimate GPS Module - 66 channel w/10 Hz updates [MTK3339 chipset] (66-channel, up to 10 Hz updates) — $51.75
- GPS Module with Enclosure (rugged/enclosed receiver for general projects) — $28.90
- USB/TTL Raspberry Pi GPS Tracker (USB/TTL GPS for Raspberry Pi setups) — $59.35
Raspberry Pi add-on (HAT)
- Adafruit Ultimate GPS HAT for Raspberry Pi [Mini Kit] (GPS/GLONASS for Pi with built-in RTC) — $64.45
GPS + cellular tracking
- Adafruit FONA 808 - Mini Cellular GSM + GPS Breakout (integrated 2G GSM + GPS for tracking/telemetry) — $100.35
Antennas (if your module needs one or you want better reception)
- Antenna GPS Embedded SMA (GPS antenna with built-in LNA, SMA) — $40.40
- Passive GPS Antenna uFL - 15mm x 15mm 1 dBi gain (uFL, compact 15×15mm) — $8.55
- Passive GPS Antenna uFL - 9mm x 9mm -2dBi gain (uFL, ultra-compact 9×9mm) — $10.35
PCB-mount GPS antennas (for custom embedded designs)
- Molex Ceramic Chip GPS PCB Mount Antenna (PCB-mount ceramic antenna) — $1.45
- Molex Cube PCB Mount GPS Antenna (PCB-mount cube antenna) — $5.60
- Molex Molded PCB Mount Helix GPS Antenna (tiny PCB-mount helix, 3×5×4mm) — $3.85
- TE Puck PCB Mount GPS Antenna (PCB-mount puck, 16mm diameter) — $4.95
What kind of GPS product are you looking for?
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Showing 61-80 of 100 products
GNSS Magnetic Antenna Mount - 5/8" 11-TPI
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This magnetic mount is a handy way to temporarily secure a survey-grade GNSS or GPS antenna to a suitable metal surface. It is sturdy, compact, and designed for quick placement on metal roofs, parapets, and other ferrous materials.The mounting rod uses the 5/8" 11-TPI thread commonly found on hig...
GNSS Timing Breakout - ZED-F9T-20B (Qwiic)
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Built around the u-blox ZED-F9T-20B receiver, this breakout is made for projects where precise time matters as much as location. Under clear skies it can provide five nanoseconds of timing accuracy without requiring external GNSS correction data, making it suitable for 5G IoT networks, distribute...
SAM-M8Q GNSS Receiver (Qwiic)
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Built around the u-blox SAM-M8Q module, this compact GNSS receiver is a straightforward way to add location tracking to a project. Plug in USB-C for power and configuration, or use the Qwiic connectors for solder-free I2C integration with compatible boards.The board includes an integrated smart a...
Quadband GNSS RTK Heading Breakout - LG580P (Qwiic)
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This high-precision positioning breakout is built around the Quectel LG580P GNSS module, giving projects centimetre-level RTK positioning plus instantaneous heading when used with two GNSS antennas. Unlike systems that need to move before they can infer direction, the dual-antenna setup can deter...
GPS-RTK Dead Reckoning Kit (ZED-F9R, SMA)
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Get started with high-precision RTK GNSS and dead reckoning using u-blox's ZED-F9R module. This kit combines a sensor-fusion GPS breakout, a multiband SMA antenna and a USB cable so you have the core hardware needed for a rover setup.The ZED-F9R fuses GNSS measurements with a 3D IMU sensor, wheel...
LG290P Quadband GNSS RTK Breakout (Qwiic)
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Built around the Quectel LG290P, this compact RTK GNSS breakout is designed for high-precision positioning projects that need quad-band, multi-constellation reception. It follows the same board dimensions, pin layout and connectors as SparkFun’s GPS-RTK-SMA Breakout - ZED-F9P (Qwiic), making it a...
NEO-F9P GNSS-RTK L1/L5 Breakout with Qwiic
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Bring high-precision GNSS positioning to your project with the u-blox NEO-F9P engine and dual-band L1/L5 reception. L5 signals sit in the protected ARNS band, helping reduce RF interference and improve reliability in challenging environments such as dense city streets.The breakout provides five s...
RTK Postcard GNSS RTK Development Board
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This compact high-precision positioning board combines a Quectel LG290P GNSS RTK receiver with an Espressif ESP32-PICO-MINI-02 MCU module. It runs SparkFun’s RTK Everywhere firmware, letting it operate as a base station or rover for precision navigation projects.The ESP32 adds WiFi, Bluetooth® an...
RTK Express GNSS Surveying Kit
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This field-ready kit is made for centimetre-level global positioning measurements using GNSS RTK. It centres on the RTK Express, a Bluetooth® enabled multi-band GNSS receiver based on the Espressif ESP32 and u-blox ZED-F9P.The kit is supplied in a carrying case and includes the RTK Express GNSS R...
Allband GNSS RTK Breakout - mosaic-G5 P3
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Built around Septentrio’s mosaic-G5 P3, this compact GNSS RTK breakout is designed for projects that need survey-grade positioning without giving up space or power budget. It offers the same leading performance as the mosaic-X5 in a package that is 60% smaller and consumes 40% less power.The rece...
GNSS Flex pHAT with mosaic-G5 P3
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Add survey-grade GNSS positioning to a Raspberry Pi while keeping size, weight and power demands low. This kit combines the GNSS Flex pHAT with the SparkPNT mosaic-G5 P3 module, built around Septentrio’s compact mosaic-G5 receiver.The pHAT connects to a Raspberry Pi through the standard 40-pin GP...
GNSS Flex pHAT with mosaic-X5 RTK & IM19 IMU
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Add survey-grade positioning to a Raspberry Pi with this GNSS Flex pHAT bundle, combining a Flex pHAT carrier, Septentrio mosaic-X5 RTK GNSS receiver and Feyman IM19 IMU. It is designed for high-precision positioning, tilt-aware surveying, industrial robotics and autonomous navigation projects.Th...
GNSS Flex pHAT with u-blox ZED-X20P
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Bring high-precision GNSS to a Raspberry Pi with this GNSS Flex pHAT and u-blox ZED-X20P receiver module. It is built for centimetre-level positioning in demanding navigation and control projects such as UAVs, guidance systems, auto-steering and high-speed robotics.The pHAT connects to a Raspberr...
GNSS Flex pHAT with DAN-F10N Dual-Band GNSS Module
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Add dual-band GNSS positioning to a Raspberry Pi or similar single-board computer with this SparkPNT GNSS Flex pHAT and DAN-F10N module combination. It pairs a GNSS Flex pHAT carrier with a u-blox DAN-F10N GNSS Flex Module for metre-level L1/L5 positioning in a compact, swappable format.The pHAT ...
DAN-F10N Dual-Band L1/L5 GNSS Breakout
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Built around the u-blox F10 engine, this GNSS breakout receives L1 and L5 frequency bands simultaneously for reliable metre-level positioning, even in challenging environments such as dense urban canyons. u-blox multipath mitigation helps isolate the strongest signals, while the SAW-LNA-SAW RF fr...
u-blox ZED-X20P Allband GNSS RTK Breakout (Qwiic)
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This GNSS RTK breakout brings the u-blox X20 engine to a maker-friendly board for high-precision positioning projects. It is designed around the ZED-X20P all-band receiver and can process signals from GPS, Galileo, BeiDou, QZSS and NavIC across all GNSS frequency bands, including L-band.The board...
GNSS-RTK Positioning Kit with LoRa 868MHz (EU)
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This GNSS-RTK kit is a complete base-and-rover positioning setup for projects that need centimetre-level location data. It uses Real-Time Kinematic correction, with a stationary base station sending RTCM correction data over an integrated LoRa 868MHz link to the mobile RTK unit.The system is buil...
GNSS-RTK Positioning Kit with LoRa (915MHz)
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This dual-module GNSS-RTK kit brings a base station and mobile rover together for high-precision positioning projects. It uses Real-Time Kinematics, where the stationary base station sends correction data to the moving rover to reduce common GNSS errors and deliver centimetre-level positioning.Th...
4G GNSS-RTK Positioning Kit (EMEA & Thailand)
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Designed for high-accuracy navigation projects, this kit uses Network RTK to deliver 5 cm + 1 ppm centimetre-level positioning across a typical 15-20km operational range. Its onboard 4G module receives RTCM correction data from a CORS network via the Ntrip protocol, removing the need for a local ...
MicroMod GNSS RTK Carrier Board - ZED-F9P
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Built around the u-blox ZED-F9P, this MicroMod carrier gives your project high-precision GNSS and RTK positioning in a swappable, solderless MicroMod format. It supports rover and base station operation, with RTK accuracy down to millimetre-level positioning when used with suitable correction dat...