As drone applications continue to expand, outdoor fixed drone landing pads have been widely deployed in fields such as security patrols, surveying and mapping, and emergency dispatch. However, low-temperature conditions in northern winters have always been a major challenge for the stable operation of outdoor landing pads. Traditional drive solutions suffer from high failure rates and low operating efficiency in severe cold environments, seriously affecting normal equipment performance.

- In winter, outdoor temperatures drop sharply. The lifting and switching systems of drone landing pads are highly affected by low temperatures, leading to issues such as jerky lifting motion, signal interruption, and slow startup response.
- In addition, traditional worm gear reducers have relatively low transmission efficiency. To achieve sufficient torque output, users are forced to select high-power motors, which not only increases initial procurement costs but also results in higher maintenance costs and poor overall cost-effectiveness in long-term operation.
SENYD Solution
SENYD high and low temperature servo motors
MOLES low-temperature planetary reversing gear reducer
Solution Advantages
Cost reduction through downsizing: Small-power motors can achieve high torque output, eliminating the need for oversized motor selection and reducing procurement costs.
Extreme low-temperature resistance: Stable cold start at -80°C, effectively solving winter issues such as actuator sticking, communication loss, and slow startup response in landing pad systems.
Excellent servo performance: High-response servo control with high precision, ensuring smooth and stable lifting operation.
Higher transmission efficiency: Combined with a low-temperature planetary reversing reducer, efficiency is significantly improved compared to traditional worm gear systems.
SENYD Solution





