Abstract:
A battery module includes a plurality of rechargeable batteries each having a gas exhaust member openable at a threshold pressure; a housing holding the rechargeable batteries and having a gas exhaust hole; and a valve member covering the gas exhaust hole, wherein a pressure for opening the valve member is lower than the threshold pressure.
Abstract:
A battery module for containing a plurality of battery units, the battery module including first and second end plates facing each other; and a side plate, the side plate being for extending across a side of the battery units, and the side plate having a first end coupled to the first end plate and a second end coupled to the second end plate, wherein a work hardening unit is disposed at the second end of the side plate, the work hardening unit being hardened in such a way that the second end of the side plate is bent.
Abstract:
The present invention disclosed is a method for screening metabolites essential for the growth of microorganism using metabolic flux analysis. More specifically, the present invention relates to the method for screening metabolites essential for the growth of microorganism, by selecting a target microorganism, constructing a metabolic network model of the selected microorganism, inactivating the consumption reaction of each of metabolites in the constructed metabolic network model, analyzing the metabolic flux of the metabolites to select metabolites essential for the growth of the microorganism, and confirming the selected metabolites using the utilization of each of the metabolites, defined as flux sum (Φ). According to the present invention, metabolites essential for the growth of microorganism, and genes involved in the essential metabolites, can be screened in a convenient manner, and drug-target genes against pathogenic microorganisms can be predicted by deleting genes associated with the metabolites screened according to the method.
Abstract:
A system which can efficiently control the temperature of the battery module, and also can easily control the temperature in the intense environment by actively adapting the exterior environment. The system for controlling temperature of a secondary battery module includes a housing receiving a plurality of unit batteries. The housing has an inlet and an outlet. A heat transfer member is in contact with the unit batteries. The heat transfer member has a portion exposed to a heat transfer medium duct formed inside the housing, and a temperature controller is mounted in the heat transfer member to control temperature of the unit batteries.
Abstract:
A battery module, battery pack, and electric vehicle, the battery module including a plurality of unit battery cells; a pair of end plates coupled together in a spaced relationship for receiving the unit battery cells therebetween; and a pressure control unit between the unit battery cells and the at least one end plate.
Abstract:
A battery module for accommodating a plurality of batteries connected to each other in a battery unit, the battery module including a pair of end plates facing each other; a restrainer coupled to the pair of end plates, the restrainer being configured to restrain expansion of the battery unit; and a coupling unit for coupling the end plates and the restrainer to each other, wherein a portion of the coupling unit that contacts the end plate and the restrainer is free of any screw surface.
Abstract:
A battery module including: a battery assembly including a plurality of rechargeable batteries; a case receiving the battery assembly; a battery management system (BMS) managing unit batteries of the battery assembly; and a relay installed to the case on an output line of the battery assembly and including a relay body configured to selectively block a current according to a signal of the BMS; a connection bar connected to the relay body; and an output terminal connected to the relay body via the connection bar and fastened to the case at a location spaced apart from the relay body.
Abstract:
A method of controlling a mobile terminal and which includes storing a plurality of haptic vibrations respectively representing different functions performed in a single application to be executed on the mobile terminal, executing a function for the single application is on the mobile terminal, selecting a corresponding haptic vibration that represents the function executing on the terminal, and generating the selected corresponding haptic vibration using a plurality of vibration modules disposed on the mobile terminal in which a first vibration module is activated and at least one second vibration module is activated to represent the function being executed on the mobile terminal.
Abstract:
A battery module according to one aspect of the present invention includes: a plurality of rechargeable batteries; a housing configured to house the plurality of rechargeable batteries and having a first fastening portion; a cover configured to couple to the housing and having a second fastening portion configured to couple to the first fastening portion by a tight fitting; and an elastic member configured to fit between the first and second fastening portions.
Abstract:
A mobile terminal and control method to share content with a device and control the device are provide. The mobile terminal includes a communication unit to communicate with a host and the device; a search unit to receive content information and device information; an input unit to receive a content selection signal and a device selection signal; and a control unit to control the mobile terminal. The mobile terminal receives content information from a host and selects content to be outputted to a device selected from device information from the host. The mobile terminal controls the selected device using control commands transmitted to the selected device based on a control mode. If the control mode is not stored in the mobile terminal, the mobile terminal may receive the control mode from the host.