CUAV NEO 4 Nano Mini GNSS Module
NEO 4 NANO MINI GNSS MODULE Brief:
CUAV NEO 4 Nano Mini GNSS Module is a micro satellite navigation receiver module. It features a highly integrated miniaturized design, integrating the u-blox M10 satellite receiver system and supporting concurrent reception of signals from four major positioning systems. It is equipped with a high-performance STM32H5 processor and an ST IIS2MDC electronic compass. It has precise positioning and excellent anti-interference and environmental adaptability. It supports RGB full-color status indicators, adopts CAN bus protocol, and is widely applicable to various unmanned system devices.
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NEO 4 NANO MINI GNSS MODULE Feature:
- Compact Size, High Integration
- u-blox M10 Satellite Receiver System
- High-Performance STM32H5 Processor
- Runs on M4C Architecture Software
- Built-in ST IIS2MDC Electronic Compass
- CAN Bus Communication, Compatible with
- ArduPilot and PX4
NEO 4 NANO MINI GNSS MODULE Specification:
Basic Parameters |
|
| Receiver Type | u-blOx MIA-M10Q |
| Processor | STM32H5 Arm Cortex-M33 250 MHz |
| Compass | IIS2MDC |
| Frequency Band | GPS: L1 C/A GLONASS: L1OF BDS: B11/B1C Galileo: E1B/C |
| Augmentation Systems | SBAS: EGNOS, GAGAN, MSAS, WAAS, BDSBAS, KASS, and SouthPAN QZSS: L1S (SLAS) |
| Number of Concurrent GNSS | 4(BDS, Galileo, GLONASS, GPS) |
| Oscillators | TCXO |
| Acquisition | Cold Start: 27 s I Hot Start: 1 s I Aided Start: 1 s |
| Nav. Update Rate | Up to 10 Hz(4 concurrent GNSS) Up to 25 Hz (single GNSS) |
| Horizontal Position Accuracy | 1.5 m CEP |
| Signal Integrity | RF interference and jamming detection and reportingdetection and reporting |
| Wave Filtering | SAW+LNA+SAW+LNA |
| Anti Electromagnetic/ Radio Frequency Interference | EMI+RFI |
| Protocol | DroneCAN |
| Upgrade Firmware | Support |
| Firmware | CUAV M4C GNSS |
Port Type |
|
| Data Interface | GHR-04V-S |
Hardware Parameters |
|
| Size | 34 * 20 * 14.5 mm |
| Weight | 10.6g |
| Input Voltage | 4.5~5.4V |
| Operating Temperature | -10 ℃ ~ +80 ℃ |
Compact & Lightweight Highly Integrated, Miniaturized Design
NEO 4 NANO innovatively adopts a highly integrated, miniaturized design with a precise internal structure and a compact overall appearance. Compared with conventional GPS positioning modules, its size is significantly reduced, with a weight of only 10.6 g. The compact body integrates complete positioning functions, easily meeting the strict space requirements of micro unmanned system devices, expanding application possibilities, and ushering in a new era of high-precision positioning.
u-blox M10 SystemFour GNSS Concurrent Reception
NEO 4 NANO supports simultaneous reception of signals from four major satellite navigation systems: BeiDou, Galileo, GLONASS, and GPS/QZSS. By intelligently selecting optimal satellite signals, NEO 4 NANO can significantly enhance positioning availability and stability in complex environments such as urban canyons.
Powerful Processor Self-Developed M4C Architecture Support
High Anti-Interference Compass Wide Dynamic Magnetic Field Detection
NEO 4 NANO features a built-in ST LIS2MDC compass, with a magnetic field dynamic detection range of up to 50 Gs and temperature offset compensation. It delivers outstanding performance in high dynamic range and strong magnetic interference resistance among similar products.
Accurate and Reliable | Dual SAW+LNA
NEO 4 NANO integrates TCXO and dual-channel LNA architecture, combined with RF filtering technology to build a high-performance active receiving antenna, which provides excellent receiving sensitivity and acquisition time, effectively improves signal quality, and ensures accurate and reliable positioning performance.
RGB Full-Color Status Indicator Light Controller Unlock Switch
Equipped with an 8-channel bus-controlled RGB light group, NEO 4 NANO is integrated with a built-in buzzer, delivering multi-level status indication effects. Through intelligent scene recognition, it can clearly indicate various working statuses of the controller, including unlock status, battery level, positioning status, and fault information.






















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