20240039419. POWER SOURCE DEVICE simplified abstract (Mitsubishi Electric Corporation)
Contents
POWER SOURCE DEVICE
Organization Name
Mitsubishi Electric Corporation
Inventor(s)
Daisuke Takauchi of Tokyo (JP)
POWER SOURCE DEVICE - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240039419 titled 'POWER SOURCE DEVICE
Simplified Explanation
The abstract describes a power source device that includes a capacitive load and an AC power source. The AC power source applies AC voltage to the capacitive load. A series circuit consisting of an inductor and a capacitor is connected to the AC power source. Another series circuit, composed of a load inductor and the capacitive load, is connected in parallel to either the inductor or the capacitor. The expressions defined in the abstract are satisfied.
- The power source device includes a capacitive load and an AC power source.
- The AC power source applies AC voltage to the capacitive load.
- A series circuit of an inductor and a capacitor is connected to the AC power source.
- Another series circuit, consisting of a load inductor and the capacitive load, is connected in parallel to either the inductor or the capacitor.
- The expressions defined in the abstract are satisfied.
Potential Applications:
- Power supply systems
- Electrical circuits
- Energy storage systems
Problems Solved:
- Efficient power transfer
- Voltage regulation
- Power factor correction
Benefits:
- Improved power efficiency
- Enhanced voltage stability
- Reduced power losses
Original Abstract Submitted
a power source device includes a capacitive load; and an ac power source, as a voltage source, which applies ac voltage to the capacitive load. a series circuit composed of an inductor and a capacitor is connected to the ac power source. a series circuit composed of a load inductor and the capacitive load is connected in parallel to one of the inductor or the capacitor. if an inductance of the inductor is defined as lp, a capacitance of the capacitor is defined as cp, an inductance of the load inductor is defined as ls, an equivalent capacitance of the capacitive load is defined as cs, and a frequency of the ac power source is defined as fv, the following expressions are satisfied,