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Skydroid H12 PRO | Industrial UGV & Marine Control System
SIGNAL PROPAGATION ALERT: GROUND & WATER INTERFACE
For UGV/USV deployments, the Fresnel zone is significantly compressed. To achieve the rated 1.5KM ground-to-ground range, elevate the receiver antennas at least 50cm above the chassis/waterline. When operating in high-vibration environments (e.g., tracked robots), use the R12 PRO’s compact 14g form factor with dampening mounts to ensure the IPEX antenna connectors remain secure under mechanical stress.
SKYDROID T12 Digital Image Transmission Remote Control Camera 4-in-1
$239.46
Sale price
$239.46
Regular price
$307.00
H12 PRO Ecosystem
Integrated Control / Telemetry / HD Video Link for Surface & Ground Robotics
Core Overview
The Skydroid H12 PRO is a professional-grade telemetry and remote control system specifically optimized for Unmanned Ground Vehicles (UGV), Unmanned Surface Vessels (USV), and specialized robotic platforms. Unlike standard RC transmitters, the H12 PRO leverages an OFDM-based Software Defined Radio (SDR) link to maintain robust connectivity in NLOS (Non-Line-of-Sight) environments typical of urban exploration and maritime operations. With an integrated Android GCS and a high-brightness display, it serves as a unified command center for complex multi-role robotic missions.
Surface-Optimized Link Resilience
Features OFDM Frequency Hopping technology designed to mitigate multipath interference and signal reflection issues commonly encountered over water surfaces and metallic industrial structures.
High-Throughput Data Pipeline
Provides a wide-band 6.5-144Mbps transmission rate, supporting simultaneous 2K video streaming and high-refresh-rate telemetry for real-time robotic perception and obstacle avoidance.
Extended Operational Duty Cycle
Equipped with a 10000mAh internal battery, ensuring up to 20 hours of continuous operation for long-range autonomous patrol or persistent surveillance tasks.
Wide-Voltage Power Compatibility
The companion C10 Payload system supports a massive 7.4V - 74V input range, allowing direct integration with 2S to 14S LiPo power systems used in heavy-duty ground robots.
Detailed Specifications Matrix
System Component: H12 PRO Transmitter
| Model | H12 PRO | Channels | 12-Channel Proportional |
|---|---|---|---|
| Working Voltage | 4.2V (Internal Li-ion) | RF Output | 17.5dBm |
| Frequency Band | 2.400-2.483GHz | Hopping Architecture | OFDM Technology |
| Interface | Type-C (Charge/Data) | Weight | 660g (Balanced Grip) |
| Battery Capacity | 10000mAh | Endurance | 6-20 Hours |
| Modulation | CCK, DQPSK, DBPSK | Data Rate | 6.5-144Mbps |
| RF Precision |
2.4G: 16.0±1.5dBm @ 11b; 14.0±1.5dBm @ 11g; 13.0±1.5dBm @ 11n-HT20/HT40-MCS7 |
||
| Operating Range | Urban/Ground: 1.2-1.5KM | Open Air: 6-10KM | Indoor/Obstacle: 30m+ | ||
System Component: R12 PRO Receiver
| Voltage Input | 4.5-5.5V | Current Draw | 400-800mA @ 5V |
|---|---|---|---|
| Dimensions | 51 * 41 * 13mm | Net Weight | 14g |
Payload: C10 Stabilized Gimbal & 2K Camera
| Dimensions | 51 * 43.2 * 61.7mm | Input Voltage | 7.4V - 74V (Wide Range) |
|---|---|---|---|
| Interface | RJ45 Ethernet / Network Port | Sensor Type | 1/2.7" CMOS |
| Mechanical Range | Roll: ±45° | Pitch: -90°/+10° | Yaw: ±90° | ||
| Precision | 0.1° High-Res Encoder | Resolution | 2K HD Video |
Hardcore FAQ
Q: Can the H12 PRO control non-Mavlink robotic platforms?
A: Yes. While optimized for Mavlink, the system supports transparent serial data transmission (TTL/RS232 levels with converters), making it compatible with ROS-based robots and custom PLC controllers.
Q: How does the system handle signal loss in water-based USV operations?
A: The OFDM link includes aggressive error correction. However, for USVs, we recommend using a high-gain omnidirectional antenna on the transmitter to maintain the link during hull rolling and wave interference.
Q: Is the system compatible with Ethernet-based payloads besides the C10?
A: Absolutely. The H12 PRO acts as a transparent network bridge. You can connect LIDAR, thermal cameras, or other IP-based sensors directly to the receiver's network port for real-time data backhaul.









