Abstract:
A battery pack including a plurality of battery cells, each including an electrode terminal; and a circuit board assembly including: a first circuit board electrically connecting the electrode terminals of adjacent battery cells of the plurality of battery cells; a second circuit board electrically connected to the first circuit board; and a connection wire electrically connected between the second circuit board and the first circuit board.
Abstract:
A resist underlayer composition, a method of forming patterns, and semiconductor integrated circuit device, the composition including a solvent; and a compound including a moiety represented by the following Chemical Formula 1:
Abstract:
Disclosed herein is a method of manufacturing a metallic bipolar plate for fuel cells, which can maintain good corrosion resistance and contact resistance without any side effect not only initially but also after a predetermined period of time even in an environment of severe vibration as in vehicles while allowing a continuous process to provide high productivity. The method includes (a) preparing a metal plate as a matrix of the metallic bipolar plate; (b) pickling a surface of the metal plate; (c) coating a composition comprising a binder resin, carbon particles, and a solvent on the pickled surface of the metal plate; and (d) drying the surface of the metal plate, on which the composition is coated, at a temperature less than a thermal decomposition temperature of the binder resin and greater than or equal to a boiling point of the solvent to form a coating layer on the surface of the metal plate, the coating layer having the carbon particles dispersed in a matrix of the binder resin, wherein these processes are performed as a continuous process.
Abstract:
Disclosed are a positive photosensitive resin composition that includes (A) a polybenzoxazole precursor including a first polybenzoxazole precursor including a repeating unit represented by the following Chemical Formula 1 and a repeating unit represented by the following Chemical Formula 2, and having a thermally polymerizable functional group at at least one of the terminal end; (B) a dissolution controlling agent including a novolac resin including a repeating unit represented by the following Chemical Formula 4; (C) a photosensitive diazoquinone compound; (D) a silane compound; (E) an acid generator; and (F) a solvent, a photosensitive resin film prepared using the same, and a semiconductor device including the photosensitive resin film.
Abstract:
A multi-panel display device and a method of driving the same, which can simplify a driving circuit for driving multiple flat panel display devices, thereby decreasing the fabrication cost and reducing noise, are disclosed. In the multi-panel display device configured to align the multiple flat panel display devices for representing a single image, the multi-panel display device includes at least one image display unit configured to align the multiple flat panel display devices in an n×m formation (wherein m and n are integers being equal to or different from one another, and wherein m≧1, n≧1), and at least one data converter being configured to correspond to each image display unit, dividing externally inputted video data in accordance with offset information inputted by a user, and converting the size of the divided video data, thereby providing the converted divided video data to each flat panel display device.
Abstract:
A mobile device and method for performing a function using a short-range communication tag are provided. In the method, the mobile device inputs function-related information into a short-range communication tag, and recognizes proximity to or contact with the short-range communication tag. Then the mobile device reads the function-related information from the short-range communication tag, and performs a function correlated with the function-related information. This allows performing various functions of the mobile device, only depending on a user's action to bring the mobile device in proximity to or contact with the Near Field Communication (NFC) tag.
Abstract:
A system of Wi-Fi terminals and a channel operation method for the same are provided. The method includes selecting a user function of a sending terminal including a Wi-Fi module, determining whether the selected user function is a Wi-Fi related function, performing, when the selected user function is the Wi-Fi related function, by the sending terminal, a search for a terminal capable of handling the user function, selecting, by the sending terminal, a found terminal as a receiving terminal, automatically establishing, by the sending terminal, a Wi-Fi channel to the receiving terminal by automatically sending a Probe Request message containing a Personal Identification Number (PIN) code, sending, by the sending terminal, data generated by the user function to the receiving terminal through the Wi-Fi channel, and outputting, by the receiving terminal, the received data.
Abstract:
A semiconductor memory apparatus includes a plurality of banks each having a plurality of cell mats; a plurality of power lines disposed over predetermined portions of each of the plurality of banks; a column control region disposed adjacent to at least one of sides of each bank which are perpendicular to an extending direction of the power lines; and a conductive plate disposed over the column control region and electrically connected to the plurality of power lines.
Abstract:
An electromagnetic interference (EMI) shielding circuit and a semiconductor integrated circuit including the same are provided. The EMI shielding circuit includes a data level comparison unit, a control signal generation unit, and a driver for EMI cancellation. The data level comparison unit generates a data comparison signal by comparing a number of high-level data transmitted through a plurality of data lines and a number of low-level data transmitted through the plurality of data lines. The control signal generation unit generates a driving control signal in response to the data comparison signal. The driver for EMI cancellation outputs an EMI cancellation signal in response to the driving control signal.
Abstract:
An information protection system includes a mobile terminal and an encryption module. The mobile terminal requests a key sequence by transmitting a message including a Personal Identification Number (PIN) number input by a user, and encrypts or decrypts one or more communication signals, including voice signals and data signals, based on the key sequence when the key sequence is received. The encryption module is connected to the mobile terminal. The encryption module encrypts a security key using the identifier and the PIN number of the mobile terminal, decrypts the encrypted security when requested by the mobile terminal, and transmits the key sequence generated based on the decrypted security key to the mobile terminal.