



EFT E6P Power Distribution Board
The EFT E6P Power Distribution Board is a robust and efficient solution for 6-axis agricultural spraying drones. Designed to handle high currents, it cleanly distributes power to six ESCs while minimizing electromagnetic interference. Its integrated design simplifies wiring, ensuring reliable and stable power for demanding farming and industrial UAV operations.
Features :
Robust power distribution for 6 motors.
Designed for large agricultural drones.
High current carrying capacity.
Minimizes electromagnetic interference.
Simplifies drone wiring harness.
Durable PCB construction.
Integrated for heavy-duty applications.
Enhances system reliability.
Efficient power transfer.
Optimized for stability.
Technical Specifications:
Model: EFT E6P Power Distribution Board
Number of Motor Outputs: 6 (for Hexacopters)
Max Continuous Current: EFT PDBs for agricultural drones often handle very high currents, e.g., 200A or more. This is crucial and must be verified from the official EFT E6P datasheet. - Assuming 200A Continuous for a large agricultural drone PDB.
Max Burst Current: Typically higher, e.g., 300A for short bursts.
Input Voltage Range: Commonly supports high voltage, e.g., 6S-14S LiPo, aligning with agricultural drone batteries. To be verified. - Assuming 6S-14S LiPo.
Integrated Functions: Many advanced PDBs for agricultural drones include integrated BECs, current sensing, or even flight controller mounting. Assuming it primarily focuses on power distribution, but acknowledging potential for more. Specific features like BEC voltage/current or current sensor range need to be verified from specs.
Dimensions: Specific to the E6P frame, often larger to accommodate high current traces and mounting.
Weight: Relatively robust, but optimized for weight savings.
Material: Multi-layer PCB with thick copper traces for high current.
Additional Details:
Manufacturer: EFT (Efficiently Flying Technology)
Brand: EFT
Generic Name: Power Distribution Board || PDB || Drone PDB || Hexacopter PDB || Agricultural Drone PDB || High Current PDB || UAV Power Board || Power Hub || Multi-Rotor PDB || ESC Distribution Board
Sold By: UAV Marketplace (an authorized seller of drone gear and accessories)
Ideal For: 6-Axis Agricultural Spraying Drones || Heavy-Lift Hexacopters || Industrial Inspection UAVs || Large Delivery Drones || Professional Cinematography Hexacopters || Custom Heavy-Duty Drone Builds || High-Power Robotics Platforms || Large Fixed-Wing UAVs (if adapted for multi-motor) || Critical Mission Drones || Drone Repair & Replacement
Package Details:
Includes:
1x EFT E6P Power Distribution Board
Frequently Asked Questions:
Q1. What makes the EFT E6P Power Distribution Board specifically suitable for agricultural drones?
Ans. The EFT E6P PDB is specifically suitable for agricultural drones due to its robust design and high current carrying capacity, which is essential for powering six large motors common on spraying hexacopters. Its ability to handle high voltage (e.g., 6S-14S LiPo) and minimize EMI ensures reliable and stable power distribution in demanding, often wet and dusty, agricultural environments.
Q2. Does the EFT E6P PDB include integrated BECs for powering the flight controller or other accessories?
Ans. While many advanced PDBs for agricultural drones do integrate BECs, the specific features of the EFT E6P would need to be verified from its detailed technical specifications. Some versions may include built-in 5V/12V BECs and/or a current sensor output to simplify wiring. However, if not explicitly stated, it's safer to assume it's primarily a power distribution board, and separate BECs would be required for regulated voltages.
Q3. How does the design of the EFT E6P PDB minimize electromagnetic interference (EMI)?
Ans. The EFT E6P PDB minimizes electromagnetic interference (EMI) through thoughtful PCB layout and thick copper traces. By optimizing the routing of high-current paths, it reduces inductance and prevents unwanted current loops, which can generate EMI. A cleaner power signal helps ensure the stable operation of sensitive flight controller and telemetry electronics, crucial for reliable drone performance in the field.