T Motor Antigravity MN6007 KV320 drone
- Product Code: EPI26393
- Availability: Out Of Stock
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Rs.12151.00
- (Excluding 18% GST)
OR
The T Motor Antigravity MN6007 KV320 drone is a high-performance UAV motor engineered for professional drone applications. It delivers up to 50 minutes of flight time and a maximum thrust of 5.5kg, making it ideal for multi-rotor, VTOL, and heavy-duty drones. Designed with ultra-lightweight materials,T Motor Antigravity MN6007 KV320 drone provides high efficiency while reducing cogging torque, ensuring smooth and stable flight even in demanding conditions. With its 6mm shaft diameter and enameled wire lead (60mm), the motor is easily integrated into your drone setup.
Its robust design makes it perfect for use in aerial photography, surveying, mapping, and emergency rescue missions. The high slot space factor on winding provides a longer, clearer, and more stable flight experience. This motor is built using high-quality imported materials, ensuring long-lasting reliability and top-tier performance. The package includes the motor and a hardware pack for easy installation and setup.
Features:
- High Thrust: Delivers up to 5.5kg of maximum thrust, ideal for heavy-duty drones.
- Extended Flight Time: Provides up to 50 minutes of flight time for efficient operations.
- Low Cogging Torque: Ensures smooth and stable flight with reduced torque interference.
- Ultra-Lightweight Design: Lightweight for improved efficiency and longer flight durations.
- High Efficiency: Maximizes power-to-weight ratio for better overall performance.
- Durable Construction: Made with high-quality imported materials for reliability and longevity
Package Includes:
1 x T Motor Antigravity MN6007 KV320
Brand/Manufacturer | Generic |
Country Of Origin | China |
Packer / Importer Address | Constflick Technologies Limited, Building No 13 and 14, 3rd Floor, 2nd Main, Siddaiah Road, Bangalore, Karnataka - 560027 India. |
MRP | Rs. 0 (Inclusive of all Taxes) |
* Product Images are shown for illustrative purposes only and may differ from actual product.