Mitsubishi electric corporation (20240347294). VACUUM CIRCUIT BREAKER simplified abstract
Contents
VACUUM CIRCUIT BREAKER
Organization Name
mitsubishi electric corporation
Inventor(s)
Yasunori Nakamura of Tokyo (JP)
VACUUM CIRCUIT BREAKER - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240347294 titled 'VACUUM CIRCUIT BREAKER
Simplified Explanation:
This patent application describes a vacuum circuit breaker that includes a tank with a tubular shape, a vacuum valve with movable and stationary contacts, and a contact driver that opens and closes the contacts using a driving force from a manipulator.
Key Features and Innovation:
- Tank with tubular shape
- Vacuum valve with movable and stationary contacts
- Contact driver controlled by a manipulator
- Torsion bar spring generating contact pressure
Potential Applications: The vacuum circuit breaker can be used in various electrical systems, including power distribution networks, industrial facilities, and renewable energy installations.
Problems Solved: This technology addresses the need for reliable and efficient circuit breaking in high-voltage applications, where traditional methods may not be suitable.
Benefits:
- Enhanced reliability in circuit breaking
- Improved efficiency in power distribution
- Reduced maintenance requirements
Commercial Applications: Potential commercial applications include selling the vacuum circuit breakers to utility companies, industrial manufacturers, and renewable energy developers.
Prior Art: Readers interested in prior art related to vacuum circuit breakers can explore existing patents in the field of electrical engineering and power distribution systems.
Frequently Updated Research: Researchers in the field of electrical engineering may conduct studies on the performance and efficiency of vacuum circuit breakers in different operating conditions.
Questions about Vacuum Circuit Breakers: 1. What are the key advantages of using vacuum circuit breakers over traditional circuit breakers? 2. How do vacuum circuit breakers contribute to the overall reliability of electrical systems?
Original Abstract Submitted
a vacuum circuit breaker includes: a tank having a tubular shape; a vacuum valve including a movable contact, a stationary contact, a movable lead electrically connected to the movable contact, and a stationary lead electrically connected to the stationary contact, and accommodated in the tank; and a contact driver that opens and closes the movable contact and the stationary contact by moving the movable contact by a driving force transmitted from a manipulator. the contact driver includes a torsion bar spring that generates contact pressure that presses the movable contact against the stationary contact by being twisted by the driving force in a state where the movable contact and the stationary contact are in contact with each other.