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    • 92. 发明授权
    • Pusher, pusher unit and semiconductor testing apparatus
    • 推动器,推动器单元和半导体测试装置
    • US07804316B2
    • 2010-09-28
    • US12016211
    • 2008-01-18
    • Akihiko ItoTsuyoshi YamashitaTomoyuki Kanaumi
    • Akihiko ItoTsuyoshi YamashitaTomoyuki Kanaumi
    • G01R31/02
    • G01R31/2887
    • A pusher 200 that pushes a semiconductor device under test 300 against a test socket 500 in a semiconductor test apparatus 20 is provided that includes a main body section 210 that is thermally coupled with the thermal source 400 and a plurality of device pushing sections 220, each of which is physically and thermally coupled to the thermal source 400, is displaced toward the test socket 500 by the pushing force of the main body section 210 to contact a surface to be pushed of a semiconductor device under test 300, pushes the semiconductor device under test 300, and transmits heat from the thermal source 400 to the semiconductor device under test 300. Thermal conductivity between the pusher and the semiconductor device under test is enhanced to provide a pusher that can quickly and accurately test a semiconductor device.
    • 提供了一种将半导体器件300与半导体测试装置20相对的测试插座500推送的推动器200,其包括与热源400热耦合的主体部分210和多个装置推动部分220 物理和热耦合到热源400通过主体部分210的推动力朝向测试插座500移动,以接触待测试的半导体器件被推动的表面,将半导体器件按下 测试300,并且将热量从热源400传递到被测试的300的半导体器件。推进器和被测半导体器件之间的热传导性得到增强,以提供可以快速且准确地测试半导体器件的推动器。
    • 93. 发明申请
    • APPARATUS AND METHOD FOR DRIVING ELECTRO-OPTICAL DEVICE, THE ELECTRO-OPTICAL DEVICE, AND AN ELECTRONIC APPARATUS
    • 用于驱动电光器件的装置和方法,电光器件和电子设备
    • US20100128011A1
    • 2010-05-27
    • US12612783
    • 2009-11-05
    • Akihiko ITO
    • Akihiko ITO
    • G09G5/00G09G3/20
    • G09G3/3688G09G3/3614G09G2310/0218G09G2310/0248G09G2310/0297G09G2320/0219G09G2320/0233
    • An apparatus for driving an electro-optical device is disclosed. The apparatus includes a plurality of scanning lines, a plurality of data lines that intersect the plurality of scanning lines, and are divided so that the neighboring data lines form another group of data lines, a plurality of pixels provided to correspond to the intersection of the plurality of scanning lines and the plurality of data lines, a data line driving circuit that supplies a correction voltage being simultaneously supplied to the group of data lines and having a fixed polarity with respect to a predetermined potential, and a driving voltage being time-serially supplied to the group of data lines in response to an image signal and having a polarity that is inverted for each frame with respect to the predetermined potential, and a scanning line driving circuit that supplies a scanning signal through the plurality of scanning lines.
    • 公开了一种用于驱动电光装置的装置。 该装置包括多条扫描线,与多条扫描线相交的多条数据线,并被分割,使得相邻数据线形成另一组数据线,多个像素被提供以对应于 多条扫描线和多条数据线;数据线驱动电路,其将同时提供给该组数据线并且相对于预定电位具有固定极性的校正电压以及时间上串行的驱动电压 响应于图像信号提供给数据线组,并且具有相对于预定电位为每帧反转的极性,以及扫描线驱动电路,其通过多条扫描线提供扫描信号。
    • 95. 发明申请
    • ELECTRONIC DEVICE CONVEYING METHOD AND ELECTRONIC DEVICE HANDLING APPARATUS
    • 电子设备传输方法和电子设备处理设备
    • US20090314607A1
    • 2009-12-24
    • US12309678
    • 2006-07-27
    • Koya KarinoAkihiko Ito
    • Koya KarinoAkihiko Ito
    • B65G43/00G01R19/00
    • G01R31/2893G01R1/04
    • In a handler comprising a movable head (suction pads) capable of holding and conveying a plurality of pre-test IC devices at a time: when conveying a plurality of pre-test IC devices from a supply customer tray KST to a test tray TST, a first step of leaving on the customer tray KST pre-test IC devices loaded on positions corresponding to turned-off sockets, holding by the suction pads only pre-test IC devices on the customer tray KST loaded on positions corresponding to other sockets than the turned-off ones and conveying them from the customer tray KST to the test tray TST without changing the arrangement; and a second step of conveying pre-test IC devices left on the customer tray KST for the reason of being at positions corresponding to the turned-off sockets from the customer tray KST to positions on the test tray TST corresponding to other sockets than the turned-off sockets are performed.
    • 在包括能够一次保持和传送多个预测IC器件的可移动头(吸盘)的处理器中:当将多个预测IC器件从供应顾客托盘KST传送到测试托盘TST时, 离开客户托盘的第一步KST预先测试加载在与关闭插座相对应的位置上的IC设备,由吸盘保持仅对在与其他插座相对应的位置上的客户托盘KST上的IC器件进行预测试 将其从客户托盘KST传送到测试托盘TST而不改变安排; 并且第二步是将客户托盘KST上剩下的预测IC器件输送到与从客户托盘KST截止的插座相对应的位置到对应于其它插座的测试托架TST上的位置 执行插座。
    • 96. 发明申请
    • MAGNETRON SPUTTERING MAGNET ASSEMBLY, MAGNETRON SPUTTERING DEVICE, AND MAGNETRON SPUTTERING METHOD
    • MAGNETRON喷溅磁铁组件,MAGNETRON喷射装置和MAGNETRON SPUTTERING方法
    • US20090194409A1
    • 2009-08-06
    • US12303441
    • 2007-06-06
    • Nobuaki UtsunomiyaAkihiko Ito
    • Nobuaki UtsunomiyaAkihiko Ito
    • C23C14/35
    • H01J37/3408C23C14/35H01J37/3455
    • A magnetron sputtering magnet assembly of the invention is a magnetron sputtering magnet assembly movable in a direction generally parallel to a sputtered surface of a target while facing the target, the magnetron sputtering magnet assembly comprises an inner magnet extending in a direction generally perpendicular to the direction of the movement, the N pole or S pole of the inner magnet being opposed to the target; an outer magnet surrounding the inner magnet with a spacing from the inner magnet, the magnetic pole of the outer magnet opposed to the target being opposite to that of the inner magnet; and a nonmagnetic member provided between the inner magnet and the outer magnet and holding the inner magnet and the outer magnet. The magnetic pole opposed to the target in each of the inner magnet and the outer magnet is invertible. The nonuniformity of electron density at the end of the target can be reduced, and the plasma density therein can be made uniform. Thus, the sputtering rate at the target end can be made uniform, and the nonuniformity of film formation distribution on the object under film formation can be reduced. Furthermore, the nonuniformity of target erosion can also be decreased to improve target utilization efficiency.
    • 本发明的磁控管溅射磁体组件是一种磁控溅射磁体组件,其可以在大致平行于靶的溅射表面的方向上移动,同时面向靶,磁控溅射磁体组件包括沿大致垂直于方向 的内磁体的N极或S极与靶相对; 围绕内磁体的外磁体具有与内磁体间隔的外磁体,与磁体相对的外磁体的磁极相对; 以及设置在内磁体和外磁体之间并保持内磁体和外磁体的非磁性部件。 与每个内磁体和外磁体中的目标相对的磁极是可逆的。 可以降低目标末端的电子密度的不均匀性,并且可以使其中的等离子体密度均匀。 因此,能够使目标端的溅射速度均匀,能够降低膜成膜时的成膜分布的不均匀性。 此外,还可以降低目标侵蚀的不均匀性,以提高目标利用效率。
    • 97. 发明申请
    • DRIVING METHOD AND DEVICE OF ELECTRO-OPTIC ELEMENT, AND ELECTRONIC EQUIPMENT
    • 电光元件的驱动方法和装置以及电子设备
    • US20090153458A1
    • 2009-06-18
    • US12388796
    • 2009-02-19
    • Daisuke KOJIMAAkihiko ITO
    • Daisuke KOJIMAAkihiko ITO
    • G09G3/36
    • G09G3/20G09G3/2025G09G3/2029G09G3/2033G09G3/2077G09G3/3648G09G2300/0809G09G2310/0275
    • With the conventional technique, pixels can display different levels of grayscale resulting from irregularity of a relation in terms of position among selected sub-fields, when the same level of grayscale is displayed. The invention provides a pixel driving method that can include a selecting step of sequentially selecting, according to grayscale data, a plurality of first sub-field periods continuous with respect to one another and a plurality of second sub-field periods continuous with respect to one another and following consecutively the plurality of first sub-field periods in a direction moving away from a boundary of the plurality of first sub-field periods and the plurality of second sub-field periods, which is given as the origin, and a driving step of switching ON pixels during the selected sub-field periods.
    • 利用传统技术,当显示相同灰度等级时,像素可以显示由选择的子场之间的位置关系的不规则性引起的不同灰度等级。 本发明提供了一种像素驱动方法,其可以包括选择步骤,该选择步骤根据灰阶数据依次选择相对于彼此连续的多个第一子场周期和相对于一个连续的多个第二子场周期 在从多个第一子场周期的边界方向移动的方向和作为原点给出的多个第二子场周期中的多个第一子场周期中,连续地进行另一次并且接下来的驱动步骤 在所选择的子场周期内切换ON像素。
    • 98. 发明申请
    • Printer and issuing apparatus
    • 打印机和发行设备
    • US20090090774A1
    • 2009-04-09
    • US12286867
    • 2008-10-02
    • Akihiko Ito
    • Akihiko Ito
    • B65H29/20G06K15/02
    • B41J11/0045
    • In order to provide a printer and an issuing apparatus for effectively preventing a user from mistakenly inserting a card into a discharge port of tickets or the like without increasing the number of components, in the printer or the issuing apparatus having the printer built-in, an outlet of a discharge port (14a) for discharging a printed sheet is formed into a shape other than a linear shape, such as a corrugated shape or a “dogleg” shape when seen from a front thereof. Further, it is desirable that the discharge port be formed to be gradually reduced in opening area from an inlet side thereof to an outlet side thereof.
    • 为了提供一种打印机和发行装置,用于在不增加组件数量的情况下有效地防止用户错误地将卡插入票据等的排出口,在具有内置打印机的打印机或发行装置中, 用于排出印刷片的排出口(14a)的出口被形成为从其前方观察时的诸如波纹状或“弯曲”形的线状以外的形状。 此外,排气口的入口侧到出口侧的开口面积最好形成为逐渐减小。
    • 99. 发明申请
    • Thermal printer
    • 热敏打印机
    • US20090086005A1
    • 2009-04-02
    • US12229807
    • 2008-08-27
    • Akihiko Ito
    • Akihiko Ito
    • B41J2/32
    • B41J11/485B41J11/0025B41J15/042B41J15/046
    • In order to simultaneously deal with a plurality of roll sheets each having a different width, achieve increases in functionality and performance, and achieve reduction in cost so as to alleviate a burden on a user, provided is a thermal printer 1 including: a support member 13 for supporting a plurality of roll sheets P each having a different width; conveyor mechanisms 14 each including a conveyor roller 14a for drawing out or drawing back a recording sheet P1 from each of the roll sheets; a guide member for guiding the recording sheet drawn out thereof so as to be converged on a carry-out port; a thermal head including heating elements; a platen roller; a cutting member for cutting the recording sheet; a sensor for detecting whether or not the recording sheet has reached the platen roller; and a control portion 17 for controlling, based on a detection result from the sensor, rotational directions of the conveyor roller and the platen roller so that only a desired recording sheet is sent out from the guide member to a side of the platen roller, and controlling so that printing is performed while activating the heating elements of a number corresponding to a width of the sent-out recording sheet.
    • 为了同时处理各自具有不同宽度的多个卷片,实现功能和性能的提高,并且降低成本以减轻用户的负担,提供一种热敏打印机1,其包括:支撑构件 13,用于支撑各自具有不同宽度的多个卷纸P; 每个传送机构14包括用于从每个卷片拉出或拉出记录纸张P1的输送辊14a; 引导构件,用于引导其拉出的记录纸,以便会聚在进出口上; 包括加热元件的热​​敏头; 压辊; 用于切割记录纸的切割构件; 用于检测记录纸是否到达压纸辊的传感器; 以及控制部分17,用于基于传感器的检测结果控制输送辊和压纸辊的旋转方向,使得只有期望的记录纸从引导构件传送到压纸辊的一侧,以及 控制使得在激活与发送的记录纸的宽度对应的数量的加热元件的同时进行打印。
    • 100. 发明申请
    • Sheet holding structure and printer for an electronic voting apparatus
    • 用于电子投票设备的纸张保持结构和打印机
    • US20080279607A1
    • 2008-11-13
    • US11705671
    • 2007-02-13
    • Akihiko ItoTakumi Seino
    • Akihiko ItoTakumi Seino
    • B41J11/00G07C13/00
    • B41J3/445B41J15/044B41J29/13G07C13/00
    • Provided is a printer for an electronic voting apparatus with which it becomes possible to smoothly convey a recording sheet, whose leading end is a free end, and achieve miniaturization and simplification. Fanfold paper (16) is placed on a bottom surface (7b) in a concave shape of a container (7) fitted to a casing (6a) of a printer (6) in a state where the fanfold paper (16) is curved along the bottom surface (7b) in the concave shape (7b). On the fanfold paper (16) supplied from the container (7) into the casing (6a), the contents of a vote inputted by a voter using a touch panel are printed by a recording head (9). Then, the fanfold paper (16) is conveyed by a platen roller (10) and enters into a gap (12c) of a window portion (12) through a guide (13). The voter in a voting booth confirms the printed contents (vote contents) through the window portion (12) and performs approval processing for the vote contents by operating the touch panel. In response to the processing, the recording head (9) prints a letter expressing that the vote contents have been approved and the fanfold paper (16) is cut off by a cutter portion (11). A portion cut off from the fanfold paper (16) is discharged by a discharge roller (14) through a discharge opening (15).
    • 提供了一种电子投票装置的打印机,能够平滑地传送其前端是自由端的记录纸,并实现小型化和简化。 在折叠纸(16)为(6)的状态下,将卷边纸(16)放置在装在打印机(6)的壳体(6a)上的容器(7)的凹形形状的底面(7b) 沿着底面(7b)弯曲成凹形(7b)。 在从容器(7)供给到壳体(6a)中的折叠纸(16)上,由记录头(9)打印由使用触摸面板的选民输入的投票内容。 然后,折叠纸(16)由压纸辊(10)输送,并通过导向件(13)进入窗口部分(12)的间隙(12c)。 投票站的选民通过窗口部分(12)确认打印内容(投票内容),并通过操作触摸面板执行投票内容的审批处理。 响应于该处理,记录头(9)打印表示投票内容已经被批准并且折叠纸(16)被切割器部分(11)切断的字母。 从折叠纸(16)切出的部分通过排出辊(14)通过排出口(15)排出。