Abstract:
Disclosed are a high-sensitivity transparent gas sensor and a method for manufacturing the same. The transparent gas sensor includes a transparent substrate, a transparent electrode formed on the transparent substrate and a transparent gas-sensing layer formed on the transparent electrode. The transparent gas-sensing layer has a nanocolumnar structure having nanocolumns formed on the transparent electrode and gas diffusion pores formed between the nanocolumns.
Abstract:
Provided are a dielectric thin film and a method for manufacturing the same. The dielectric thin film has a composition represented by the formula of TaxMg1-xO, wherein 0.082≦x≦0.89. The dielectric thin film provides excellent dielectric characteristics. Particularly, the dielectric thin film provides a high relative permittivity as well as low dielectric loss and leakage current, although it is formed (deposited) at a low temperature of 350° C. or lower (between room temperature and 350° C.).
Abstract:
Disclosed is a terminal device for controlling connection between terminals by using low speed network communication. The terminal device includes a first transmission/reception unit for making a request for connection information required for high speed data communication with a connection terminal, to which the terminal device desires to connect, and receiving the connection information from the connection terminal, a network controller for determining a high speed network module to be used for high speed data communication with the connection terminal based on the connection information, and a second transmission/reception unit for performing high speed data communication with the connection terminal by using a high speed network module determined by the network controller.
Abstract:
The present invention relates to a method for preparing oxide thin films with high sensitivity and reliability, which can be advantageously used in the fabrication of articles such as gas sensors. The present invention establishes a high reliability process for preparing large area microsphere templates which may be applicable to silicone semiconductor processes by simple plasma surface treatment and spin coating. The present invention achieves remarkably enhanced sensitivities of thin films of gas sensors by controlling the nanostructure shapes of hollow hemisphere oxide thin films by using simple plasma treatment. In particular, the gas sensor based on the nanostructured TiO2 hollow hemisphere according to the present invention exhibits higher sensitivity, faster response and recovery speed to CO gas over conventional TiO2 gas sensors.
Abstract:
The present invention relates to a piezoelectric energy harvester having a high energy transformation efficiency and a low natural frequency. The piezoelectric energy harvester includes an elastic substrate having a spiral spring structure, a first electrode formed on the elastomeric substrate, a piezoelectric film formed on the first electrode and a second electrode formed on the piezoelectric film.
Abstract:
The invention relates to a low temperature co-firing ceramic (LTCC) composition for microwave frequency represented by the following formula 1: Ca[(Li1/3Nb2/3)1-xTix]O3-δ+y(B2O3.ZnO.SiO2.PbO) (1) wherein x is molar ratio and 0≦x≦0.3; and y is wt % ratio and 0≦y≦15. The present invention relates to dielectric LTCC composition for microwave frequency that has high dielectric constants, high Q values, and stable temperature coefficients of the resonant frequency, and has sintering temperature as low as ≦900° C. so as to be co-fired without reaction with an electrode such as silver (Ag). The compositions have excellent characteristics required to cellular phones and PCS in the range of 800 MHz˜1.9 GHz, which is commonly used, and laminated chip filters and antennas in the range of IMT 2000 of 2 GHz, which will be used.
Abstract:
The present invention relates to a ring-type piezoelectric ultrasonic motor that is different from the electro-magnetically driven conventional motors and that has applications in robots and automation equipments. More specifically, the present invention relates to a ring-type piezoelectric ultrasonic motor that is driven by a frictional force between rotor and stator, and stator is produced a mechanical displacement by a piezoelectric ceramics applying an alternate electric field with an ultrasonic frequency (above 16 kHz).
Abstract:
An electrical or electronic device and a thin-film type battery are vertically integrated and interconnected for reducing the area occupied thereby, enabling a higher degree of device integration and simplifying their fabrication. An insulating layer is formed on the device, with vertical conductors extending respectively from a pair of terminals of the device through the insulating layer. Electrode conductors are formed on the insulating layer in contact with the respective vertical conductors and serve as the cathode and anode electrodes of a thin-film battery fabricated thereon.
Abstract:
Disclosed are a high-sensitivity transparent gas sensor and a method for manufacturing the same. The transparent gas sensor includes a transparent substrate, a transparent electrode formed on the transparent substrate and a transparent gas-sensing layer formed on the transparent electrode. The transparent gas-sensing layer has a nanocolumnar structure having nanocolumns formed on the transparent electrode and gas diffusion pores formed between the nanocolumns.
Abstract:
Provided are an apparatus and method for generating a test driver, capable of reducing errors caused in component development early on by enabling immediate checking as to whether architecture design requirements are satisfied during component development. Specific snapshot information is input to the interface for the individual component of the architecture model to extract a state variable storing the state information of the component. An interface that sets and checks the state variable is then added to enable unit testing for the component to proceed smoothly. Using an interface giving access to the state variable, a test preparation code setting a test environment and a test check code checking whether the state variable after interfacing reaches a proper state are generated, thereby automatically generating a test driver code.