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.