
Holybro DroneCAN M8N GPS Module - M8N with Compass, DroneCAN Protocol for PX4 ArduPilot FPV Drones
Description
Specification: DroneCAN M8N GNSS Receiver Ublox NEO M8N Number of Concurrent GNSS Up to 3 GNSS (GPS, Galileo, GLONASS, BeiDou) Processor STM32G4 (170MHz, 512K FLASH) Compass BMM150 or IST8310 Frequency Band GPS: L1C/A GLONASS: L10F Beidou: B1I Galileo: E1B/C GNSS Augmentation System SBAS: WAAS, EGNOS, MSAS, QZSS Navigation Update 5Hz Default(10Hz MAX) Accuracy 2.5m Speed Accuracy 0.05 m/s Max # of Satellites 22+ Communication Protocol DroneCAN @ 1 Mbit/s Supports Flight Controller FW PX4, Ardupilot Port Type GHR-04V-S Antenna 25 x 25 x 4 mm ceramic patch antenna Power consumption Less than 200mA @ 5V Voltage 4.7-5.2V Operating Temperature -40~80℃ Size Diameter: 54mm Thickness: 14.5mm Weight 36g Cable Length 26cm Other Notes - LNA MAX2659ELT+ RF Amplifier - Rechargeable Farah capacitance - Low noise 3.3V regulator DroneCAN DroneCAN is the primary CAN protocol used by the ArduPilot and PX4 projects for communication with CAN peripherals. It is an open protocol with open communication, specification and multiple open implementations.
Specification:
DroneCAN M8N GNSS Receiver Ublox NEO M8N Number of Concurrent GNSS Up to 3 GNSS (GPS, Galileo, GLONASS, BeiDou) Processor STM32G4 (170MHz, 512K FLASH) Compass BMM150 or IST8310 Frequency Band GPS: L1C/A GLONASS: L10F Beidou: B1I Galileo: E1B/C GNSS Augmentation System SBAS: WAAS, EGNOS, MSAS, QZSS Navigation Update 5Hz Default(10Hz MAX) Accuracy 2.5m Speed Accuracy 0.05 m/s Max # of Satellites 22+ Communication Protocol DroneCAN @ 1 Mbit/s Supports Flight Controller FW PX4, Ardupilot Port Type GHR-04V-S Antenna 25 x 25 x 4 mm ceramic patch antenna Power consumption Less than 200mA @ 5V Voltage 4.7-5.2V Operating Temperature -40~80℃ Size Diameter: 54mm Thickness: 14.5mm Weight 36g Cable Length 26cm Other Notes - LNA MAX2659ELT+ RF Amplifier - Rechargeable Farah capacitance - Low noise 3.3V regulator
DroneCAN M8N
GNSS Receiver
Ublox NEO M8N
Number of Concurrent GNSS
Up to 3 GNSS (GPS, Galileo, GLONASS, BeiDou)
Processor
STM32G4 (170MHz, 512K FLASH)
Compass
BMM150 or IST8310
Frequency Band
GPS: L1C/A GLONASS: L10F Beidou: B1I Galileo: E1B/C
GNSS Augmentation System
SBAS: WAAS, EGNOS, MSAS, QZSS
Navigation Update
5Hz Default(10Hz MAX)
Accuracy
2.5m
Speed Accuracy
0.05 m/s
Max # of Satellites
22+
Communication Protocol
DroneCAN @ 1 Mbit/s
Supports Flight Controller FW
PX4, Ardupilot
Port Type
GHR-04V-S
Antenna
25 x 25 x 4 mm ceramic patch antenna
Power consumption
Less than 200mA @ 5V
Voltage
4.7-5.2V
Operating Temperature
-40~80℃
Size
Diameter: 54mm Thickness: 14.5mm
Weight
36g
Cable Length
26cm
Other Notes
- LNA MAX2659ELT+ RF Amplifier - Rechargeable Farah capacitance - Low noise 3.3V regulator
DroneCAN
DroneCAN is the primary CAN protocol used by the ArduPilot and PX4 projects for communication with CAN peripherals. It is an open protocol with open communication, specification and multiple open implementations.
Specifications
| Option | Values |
|---|---|
| Type |
|
Product Details
Specification:
| DroneCAN M8N | |
| GNSS Receiver | Ublox NEO M8N |
| Number of Concurrent GNSS | Up to 3 GNSS (GPS, Galileo, GLONASS, BeiDou) |
| Processor | STM32G4 (170MHz, 512K FLASH) |
| Compass | BMM150 or IST8310 |
| Frequency Band | GPS: L1C/A GLONASS: L10F Beidou: B1I Galileo: E1B/C |
| GNSS Augmentation System | SBAS: WAAS, EGNOS, MSAS, QZSS |
| Navigation Update | 5Hz Default(10Hz MAX) |
| Accuracy | 2.5m |
| Speed Accuracy | 0.05 m/s |
| Max # of Satellites | 22+ |
| Communication Protocol | DroneCAN @ 1 Mbit/s |
| Supports Flight Controller FW | PX4, Ardupilot |
| Port Type | GHR-04V-S |
| Antenna | 25 x 25 x 4 mm ceramic patch antenna |
| Power consumption | Less than 200mA @ 5V |
| Voltage | 4.7-5.2V |
| Operating Temperature | -40~80℃ |
| Size | Diameter: 54mm Thickness: 14.5mm |
| Weight | 36g |
| Cable Length | 26cm |
| Other Notes | - LNA MAX2659ELT+ RF Amplifier - Rechargeable Farah capacitance - Low noise 3.3V regulator |
DroneCAN
DroneCAN is the primary CAN protocol used by the ArduPilot and PX4 projects for communication with CAN peripherals. It is an open protocol with open communication, specification and multiple open implementations.



