The stator is the stationary component of an electric motor, typically consisting of windings and a laminated iron core. The windings are coils made of insulated electrical conductors, while the core is assembled from multiple thin iron sheets stacked together to minimize eddy current losses. Collectively, they form the magnetic circuit essential for motor operation. The stator housing encloses and secures these internal components, providing structural support, protection against environmental factors, and facilitating heat dissipation.
The rotor is the rotating assembly within the motor, also comprising a core and windings. Similar to the stator, the rotor housing serves as a protective shell that maintains the integrity of the rotor components while offering mechanical support.
During operation, the electromagnetic interaction between the stator and rotor generates torque, causing the rotor to spin. Both housings play critical roles in shielding the internal parts from physical damage, contamination, and chemical degradation, while also enhancing thermal management to ensure stable temperature conditions.

EXCELLENCE IN INNOVATION
In collaboration with a leading domestic EVTOL (Electric Vertical Take-Off and Landing) manufacturer in the low-altitude mobility sector, Simons' team has developed and tested prototype components including:
Drone stator main housings
Titanium alloy central shafts
Folding propeller outer rotor housings
Rigid propeller outer rotor housings
Controller support brackets
These components have demonstrated excellent performance in both installation compatibility and flight tests, validating their design and functional reliability.
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