Description
The Hobbywing X9 Plus Motor – CW is a brushless motor designed for heavy-lift multirotor UAV applications. It is suitable for agricultural drones, industrial inspection platforms, aerial mapping systems, cargo drones, and other commercial UAV applications requiring stable thrust and payload capability.
Compatible with 6S–14S LiPo battery systems, the X9 Plus features a 100KV motor design and supports 36190 propellers. With an IPX7 protection rating and imported bearings, it is designed for operation in demanding outdoor environments. The CW (Clockwise) configuration is intended for multirotor platforms requiring balanced propulsion and stable flight performance.
Features:
- Clockwise (CW) motor configuration
- Suitable for heavy-lift UAV platforms
- Compatible with 6S–14S LiPo batteries
- Supports 36190 propellers
- IPX7-rated construction
- Imported bearings
- Suitable for agricultural, industrial, and commercial drone applications
- Designed for integration into multirotor UAV systems
Package Includes:
- 1 × Hobbywing X9 Plus Motor – CW
Overview:
The Hobbywing X9 Plus Motor – CW is a high-torque brushless motor designed for heavy-lift multirotor drones. With a 100KV rating and 96 × 20mm stator, it is suitable for professional aerial photography, industrial inspection, agricultural UAVs, and mapping platforms requiring higher payload capacity.
Key Features:
- CW (Clockwise) rotation configuration
- Maximum thrust of 27kg per axis (53.6V, sea level)
- Recommended lift capacity of 11–13kg per axis
- Compatible with 6–14S LiPo batteries
- Operating temperature range from -20°C to 50°C
- IPX7-rated protection
- Suitable for heavy-lift drone applications
Applications & Use Cases:
- Agricultural spraying drones
- Industrial inspection UAVs
- Heavy-lift aerial photography and cinematography platforms
- Search and rescue drones
- Topographic mapping and surveying UAVs
- Cargo and payload-carrying multirotor platforms
How to Use:
Mount the X9 Plus Motor – CW to the drone arm according to the frame manufacturer’s instructions and ensure the motor orientation matches the flight controller configuration. Connect the motor to a compatible ESC and battery system, verify propeller installation, and perform system checks before flight operations.







































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