Abstract:
A method of manufacturing a capacitor, including: forming a lower electrode on a substrate; forming a dielectric film of a ferroelectric or a piezoelectric on the lower electrode; forming an upper electrode on the dielectric film; and forming a silicon oxide film so that at least the dielectric film is covered with the silicon oxide film, the silicon oxide film being formed by using trimethoxysilane.
Abstract:
A method of manufacturing a capacitor, including: forming a lower electrode on a substrate; forming a dielectric film of a ferroelectric or a piezoelectric on the lower electrode; forming an upper electrode on the dielectric film; and forming a silicon oxide film so that at least the dielectric film is covered with the silicon oxide film, the silicon oxide film being formed by using trimethoxysilane.
Abstract:
A method for manufacturing a capacitor includes the steps of: forming a lower electrode above a base substrate; forming a dielectric film composed of ferroelectric material or piezoelectric material above the lower electrode; forming an upper electrode above the dielectric film; forming a silicon oxide film that covers at least the dielectric film and the upper electrode; and forming a hydrogen barrier film that covers the silicon oxide film.
Abstract:
According to one embodiment, a video display apparatus includes: a backlight; a motion detector configured to detect motion between frames or fields of an input video signal; a transmission-type display panel configured to control transmission of light coming from the backlight according to the input video signal; and a lighting time controller configured to control a lighting time of the backlight based on a detection result of the motion detector.
Abstract:
A transmission belt is formed by annularly arranging elements including a plate-shaped first element and a plate-shaped second element, and annularly connecting the elements using a ring. The first element includes a first edge surface on which a burr is formed when the first element is formed by a press operation. The second element includes a second edge surface on which a burr is formed when the second element is formed by the press operation. The first and second edge surfaces face in directions opposite to each other in a direction in which the elements are arranged. The first edge surface includes a first rocking edge that contacts the element adjacent to the first element when the elements are arranged in an arc. The second edge surface includes a second rocking edge that contacts the element adjacent to the second element when the elements are arranged in the arc.
Abstract:
A check-frame receiving unit receives a check frame containing bandwidth data of a bandwidth allocated to a communication between a transmitting side and a receiving side. A bandwidth-data extracting unit extracts bandwidth data in the check frame and outputs a received bandwidth with a MAC address in the check frame. A bandwidth comparing unit reads out preset bandwidth set in association with a destination MAC address from a bandwidth storing unit, and compares the received bandwidth with the preset bandwidth. A response-frame generating unit generates a response frame containing a result obtained by comparing the received bandwidth with the preset bandwidth, the received bandwidth, and the preset bandwidth. A response-frame transmitting unit transmits the response frame generated by the response-frame generating unit.
Abstract:
In a power supply circuit, first and second loads are connected in parallel to a power source though first and second power lines, respectively. A power line connector connects the first and second power lines together in such a manner that even when one of the first and second power lines is broken, the first and second loads are supplied with electric power from the power source through the other of the first and second power lines. A rectifier device is connected to each of the first and second power lines between the power source and the power line connector. The rectifier device allows an electric current in a direction from the power source to the first and second loads and blocks the electric current in opposite direction.
Abstract:
A bonding agent sticking inspection apparatus includes a photographing section, a movement section, and a control section. The photographing section photographs an image of a substrate. The image includes a sticking expected range indicating a range in which a bonding agent should be positioned. The control section controls the photographing section and the movement section, sets an inspection region having a width equal to the pitch between electrodes in an entire edge part in a direction in which the electrodes are arranged in a peripheral edge part of the sticking expected range in the image, detects a ratio of a nicked part of the bonding agent to the inspection region, and judges whether or not an abnormality is present in the bonding agent on the basis of a comparison between the ratio of the nicked part and a threshold set in advance.
Abstract:
According to one embodiment, a magnetic disk device includes a receiver, an encrypting-and-decrypting module, a read-and-write controller, a setting module, an order controller, an executing module. The receiver receives a command to write data to or read data from a recording medium segmented into a plurality of storage areas each corresponding to an encryption key. The command causes an access to at least one of the storage areas. The encrypting-and-decrypting module encrypts the data or decrypts the data using the encryption key. The read-and-write controller controls writing the data to the recording medium and reading data therefrom. The setting module sets the encryption key corresponding to the storage area accessed by the command to the encrypting-and-decrypting module. The order controller controls the execution order in which commands are executed and brings up the execution order of the command causing an access to the storage area. The executing module executes the commands in the execution order.
Abstract:
An infrared shielding film-coated glass plate comprising a glass substrate and an infrared shielding film formed thereon, wherein the infrared shielding film comprises fine ITO particles having an average primary particle diameter of at most 100 nm dispersed in a matrix containing silicon oxide as the main component and containing nitrogen in an amount of at least 2 at % based on Si and has a film thickness of from 200 to 3,000 nm.