Abstract:
When an ion beam 4 is to be extracted from an ion source 2 by using a gas containing boron trifluoride as an ion source gas 50 for supplying the gas into a plasma chamber 20 for the ion source 2, a bias voltage VB of a plasma electrode 31 with respect to the plasma chamber 20 for the ion source 2 is set to be positive by a bias circuit 64.
Abstract translation:当通过使用含有三氟化硼的气体作为用于将气体供给到用于离子源2的等离子体室20中的离子源气体50从离子源2中提取离子束4时,偏置电压V B 相对于离子源2的等离子体室20,等离子体电极31的 SUB>被偏置电路64设定为正。
Abstract:
A thermal printer of the type printing an image on a printing paper wound in the form of a roll. Curling of the printing paper wound in the roll form occurs when the thermal printer is placed in its standby mode over more than a predetermined period of time while the printing paper is held between a platen roller and a thermal head. In order to prevent curling of the printing paper, the printing paper is rewound when the standby mode lasts over more than the predetermined period of time.
Abstract:
An image printing method and system. Information of printing paper size, image size to be printed and printing position is inputted by user. On the basis of the information, a control circuit determines the number of data to be printed in the primary scanning direction as well as the number of data for blanks at both sides and additionally determines the number of lines for printing in the secondary scanning direction as well as line numbers for processing and succeeding blanks. In the primary scanning, the data to be printed is supplied to a thermal head together with the data for the blanks. In the secondary scanning, a printing sheet is transported idly for the blank portions. The thermal head is electrically energized in the printing portion for printing the image at a predetermined position on the printing paper.
Abstract:
A mounting structure of an inlet box (20) of a car which includes an outer panel (2) of the car having a hole (2j), an inlet box inserted in the hole (2j), a flange (21f) provided around the opening (22) of the inlet box (20) and an engaging claw (220) provided on the outer peripheral surface of the inlet box (20). The flange (21f) is set around the hole (2j) from the outside onto the edge (2f). The flange (21f) is screwed to the edge (2f) of the hole (2j) of the outer panel (2) from the inside. The engaging claw engages the hole (2j) of the edge (2f) of the outer panel (2) from the inside when the flange (21f) is set on the edge (2f) of the hole (2j). The engaging claw is capable of disengaging from the edge (2f) of the hole (2j) by a disengagement operation occurring inside the outer panel (2).
Abstract:
A transformer includes: a core assembly 1 composed of a pair of E-shaped cores 11, 12 each having two side leg portions 1a, 1b and a central leg portion 1c therebetween, end surfaces of the central leg portions 1c and end surfaces of the side leg portions 1a, 1b of the E-shaped cores 11, 12 oppose each other, respectively, and a gap G is provided between at least the end surfaces of the central leg portions 1c; a primary coil N1 formed by winding round wire around a perimeter of the central leg portion 1c; and a secondary coil N2 formed by winding rectangular wire around a perimeter of the central leg portion 1c by edgewise winding, wherein a space for reducing leakage flux from the gap G that acts on the secondary coil N2 is provided between the secondary coil N2 and the gap G.
Abstract:
A scanner device includes a scanner body formed with a document insertion opening and a document ejection opening and is configured so that a document taken in from the document insertion opening is read and then ejected from the document ejection opening. The scanner device further includes an upper surface cover covering the upper surface of the scanner body and a front surface cover covering the front surface of the scanner body. The front cover is connected at a lower end side thereof to the lower front part of the scanner body and connected at an upper end side thereof to pivotably connected to the front end side of the upper surface cover. By opening the front surface cover from the front surface of the scanner body, the upper surface cover and front surface cover form a document ejection tray.
Abstract:
A magnetic head-positioning servo system is provided to accurately test a magnetic disk with a track written in advance, by providing two fine actuators. The second fine actuator, to which a magnetic head is attached, is mounted on the first fine actuator. The second fine actuator has a larger generating displacement than a generating displacement of the first fine actuator, and lets the magnetic disk to follow the eccentricity of the track. In this way, the positioning accuracy can be increased.
Abstract:
A disk locating actuator of a disk apparatus has a carrier member carrying a head and a curved flexible printed circuit fixed at its one end to the carrier member and at its other end to a base. Angles at which the flexible printed circuit is fixed are suitably determined so as to diminish any dynamic reacting force produced by vibration of the flexible printed circuit, thus ensuring high degree of head locating precision.
Abstract:
A network update interface is presented to a user on a network to display network updates from other users of a mutual social-networking site. The network updates shared by the other users are gathered in a stream and supplied to a facet-filtering system including a network update interface. The user controls the display of certain network update items according to facet-filter characteristics enabled in facet-filter selection panels in the network update interface. The facet-filter characteristics are used by a facet filter to select certain network updates for display to the user in the network update interface. Trending links to further articles with content corresponding to the facet-filter characteristics are displayed to the user according to greatest popularity among the other users. Links to the profiles of the users sharing the articles are also provided in the network update interface.
Abstract:
Techniques for analyzing a social graph of a social network service to identify and then present connection paths connecting various entities are described. With some embodiments, subsequent to a user selecting or otherwise identifying two entities represented as nodes in a social graph, the social graph is analyzed to identify connection paths connecting the nodes representing the two entities. The social graph is implemented with a graph data structure having nodes and edges representing entities and associations between entities, respectively. With some embodiments, the nodes represent people, companies, educational institutions (e.g., schools, universities, etc.), and groups. After identifying the connection paths, the connection path or paths having the highest path scores, as derived by aggregating edge scores assigned to the edges, may be presented.