· The magnetic materials exhibit a high demagnetization temperature, ensuring superior environmental adaptability and high stability across varying conditions.
· Utilizes a monostable operating mechanism that requires minimal energy for both excitation and demagnetization, significantly reducing the size requirement for the drive energy storage.
· The mechanism allows for the convenient addition of a trip lever, resulting in a simple and efficient manual tripping design.
· Facilitates the design of a portable, battery-powered drive, capable of performing over 200 operations on a single full charge.
· The mechanism's simplicity and high repeatability contribute to superior control precision and an extended switch service life.
· Features fewer moving parts (only the moving iron core, connecting rod, and moving contact), resulting in low mass and extremely fast operational speeds;
· Eliminates the need for contact cushioning, simplifying the mechanism and making it easy to adjust parameters like over-travel and contact pressure.