H02S40/38

MOVABLE SOLAR MODULE DISASSEMBLING APPARATUS AND MOVABLE SOLAR MODULE DISASSEMBLING SYSTEM COMPRISING THEREOF

A movable solar module disassembling apparatus according to an embodiment of the present disclosure includes a movable container unit that is hollow, can be moved by itself or by external power, and has at least one door being able to expose the inside by opening and closing, a frame separation unit that is disposed in the movable container unit, includes a frame separation blade pressing and separating the frame from the module body, is supplied with the solar module, and discharges the module body after separating the frame, and a disassembling unit that is disposed continuously with the frame separation unit in the movable container unit, includes a scrapper scraping and separating the stacked film from the glass plate, is supplied with the module body, and disassembles and discharges the module body into the stacked film and the glass plate.

MOVABLE SOLAR MODULE DISASSEMBLING APPARATUS AND MOVABLE SOLAR MODULE DISASSEMBLING SYSTEM COMPRISING THEREOF

A movable solar module disassembling apparatus according to an embodiment of the present disclosure includes a movable container unit that is hollow, can be moved by itself or by external power, and has at least one door being able to expose the inside by opening and closing, a frame separation unit that is disposed in the movable container unit, includes a frame separation blade pressing and separating the frame from the module body, is supplied with the solar module, and discharges the module body after separating the frame, and a disassembling unit that is disposed continuously with the frame separation unit in the movable container unit, includes a scrapper scraping and separating the stacked film from the glass plate, is supplied with the module body, and disassembles and discharges the module body into the stacked film and the glass plate.

System, method and apparatus for providing a solar pump system for use within a mechanized irrigation system
11576313 · 2023-02-14 · ·

The present invention provides a solar power system for use with a mechanized irrigation system. According to a first preferred embodiment, the solar power system of the present includes solar panels which produce DC current which is used to power the irrigation system and to store water in an elevated storage tank. The systems of the present invention selectively use the water stored in the elevated storage tank to provide water pressure to the irrigation system. According to a further preferred embodiment, the system of the present invention preferably converts the power from the solar panels to AC current and uses AC current to power the movement of the irrigation system and other sub-systems.

System, method and apparatus for providing a solar pump system for use within a mechanized irrigation system
11576313 · 2023-02-14 · ·

The present invention provides a solar power system for use with a mechanized irrigation system. According to a first preferred embodiment, the solar power system of the present includes solar panels which produce DC current which is used to power the irrigation system and to store water in an elevated storage tank. The systems of the present invention selectively use the water stored in the elevated storage tank to provide water pressure to the irrigation system. According to a further preferred embodiment, the system of the present invention preferably converts the power from the solar panels to AC current and uses AC current to power the movement of the irrigation system and other sub-systems.

Method of diagnosing malfunctioning of bypass diode in solar photovoltaic battery

A method of diagnosing malfunctioning of a bypass diode in a solar photovoltaic battery system is provided. The method may include: collecting solar photovoltaic battery operation information indicating a solar photovoltaic battery operation state, from a signal of a solar photovoltaic battery detection unit, while maximum power point tracking control is performed with the solar photovoltaic battery system in operation; and determining whether or not the bypass diodes based on the collected solar photovoltaic battery operation information.

Method of diagnosing malfunctioning of bypass diode in solar photovoltaic battery

A method of diagnosing malfunctioning of a bypass diode in a solar photovoltaic battery system is provided. The method may include: collecting solar photovoltaic battery operation information indicating a solar photovoltaic battery operation state, from a signal of a solar photovoltaic battery detection unit, while maximum power point tracking control is performed with the solar photovoltaic battery system in operation; and determining whether or not the bypass diodes based on the collected solar photovoltaic battery operation information.

System and method of controlling solar roof of vehicle

A system and a method of controlling a solar roof of a vehicle are provided. The system includes a solar cell panel and a controller that controls charging of a main battery and an auxiliary battery using power generated from the solar cell panel. A light amount sensor senses the amount of light collected in the solar cell panel and a temperature sensor measures a surface temperature of the solar cell panel.

VEHICLE ELECTRICAL SYSTEM

A vehicle electrical system includes a battery, a customer connection point, a switch electrically connected in series between the battery and the customer connection point, a solar panel electrically connected to a node between the battery and the switch, and a computer communicatively coupled to the switch. The computer is programmed to instruct the switch to close upon determining that a voltage of the solar panel is greater than a voltage of the battery.

VEHICLE ELECTRICAL SYSTEM

A vehicle electrical system includes a battery, a customer connection point, a switch electrically connected in series between the battery and the customer connection point, a solar panel electrically connected to a node between the battery and the switch, and a computer communicatively coupled to the switch. The computer is programmed to instruct the switch to close upon determining that a voltage of the solar panel is greater than a voltage of the battery.

Self Charging Solar Phone (SCSP)
20230037769 · 2023-02-09 ·

SCSP is a basic mobile phone with added feature . . . SOLAR CHARGING MODE. For when needing or wanting to charge device during daylight hours. Eliminates having to use “already existing” built-in charging port when no source of electrical power is available or nearby. Example use: When enjoying out-door activities such as fishing, hiking, exercising or just normal everyday device use. Also convenient when out with family and/or friends at an Amusement Park, Zoo, Baseball game or at the Beach; things of that nature. Device will have same normal functions, power ON/OFF button, volume UP/DOWN buttons, “Bixby button” (optional). Headphone port, charging port “for night-time use”. Reset port, and S-Pen “stylus pen” (optional). Camera(s), light, fingerprint sensor and speakerphone. Added feature will be the solar screen/glass/film built-in on the front and back of device. Included is Safety Automatic “shut-off” built-in so device will not over charge, and is Water Proof. How to operate Solar Charge/Charging is either by touch screen “just like turning on/off flashlight on phone” and a ON/OFF solar charge button located directly underneath device ON/OFF button that can be pressed and Solar Charge option will be displayed on device “front” screen. I Ramon Flores Jr. claim to be the inventor of the SCSP (Self Charging Solar Phone).