Abstract:
A system and method for balancing a battery pack is disclosed. The method includes the step of monitoring voltages for all batteries in the battery pack and if the voltages of any two batteries are out of balance, then, issuing a balancing command to charge the battery that is relatively lower in voltage between the two until the voltage of the battery attaining a preset voltage. The battery-pack balancing system includes a battery-monitoring unit and a battery-balancing unit. The battery-monitoring unit monitors the voltage of all the batteries in the battery pack and, when the voltages of any of the two batteries in the battery pack is out of balance, issues a balancing command to charge the battery that is relatively lower voltage in the battery pack.
Abstract:
A signal shielding box with a plurality of shielding covers is provided. The shielding covers are pivotally connected with a shielding case and cover one another so as to respectively conceal or expose the opening. A connector is positioned at the shielding case and is electrically connected with the wireless communication device within the shielding case. The connector is electrically connected with a measurement and analysis device out of the shielding case. The shielding covers are respectively opened and closed so as to expose and conceal the opening. Thus, a plurality of shielding effects are formed so as to shield and measure signals of the wireless communication device.
Abstract:
A signal shielding box with a plurality of shielding covers is provided. The shielding covers are pivotally connected with a shielding case and cover one another so as to respectively conceal or expose the opening. A connector is positioned at the shielding case and is electrically connected with the wireless communication device within the shielding case. The connector is electrically connected with a measurement and analysis device out of the shielding case. The shielding covers are respectively opened and closed so as to expose and conceal the opening. Thus, a plurality of shielding effects are formed so as to shield and measure signals of the wireless communication device.
Abstract:
A latent heat thermal energy storage (LHTES) device for an electric vehicle (EV) comprises a chamber, a plurality of thermal conductivity enhancement units disposed in the chamber, and phase change material (PCM) filled in the chamber, allowing storage of coolness or thermal energy produced when the EV is being charged and retrieval of the coolness or thermal energy when the EV is driven to regulate the temperature of a passenger compartment of the EV. In addition, systems comprising LHTES devices and methods for controlling the same are also introduced.