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    • 71. 发明授权
    • Adjustment means for a die push-up assembly
    • 用于模具上推组件的调整装置
    • US5788141A
    • 1998-08-04
    • US673686
    • 1996-06-25
    • Osamu Nakamura
    • Osamu Nakamura
    • H01L21/67H01L21/00H01L21/301H01L21/52B23K1/00
    • H01L21/67144
    • A die push-up assembly used in a bonding machine, such as a die bonding or a tape bonding device, is provided on a die-push-up assembly adjustment device including an X-direction adjustment plate which has a pivot shaft, a Y-direction adjustment plate which is mounted on the X-direction adjustment plate so as to be movable in the Y-direction, an X-direction adjustment screw which allows the X-direction adjustment plate to pivot in the X direction about the pivot shaft, an eccentric shaft which allows the Y-direction adjustment plate to move in the Y direction, a first fastening screw which fastens the X-direction adjustment plate to the bonding apparatus, and a second fastening screw which fastens the Y-direction adjustment plate to the X-direction adjustment plate. The die push-up assembly is mounted on the Y direction adjustment plate so as to be adjusted in the horizontal direction.
    • 在用于粘合机中的模具上推组件,例如芯片粘接或胶带粘接装置,设置在模具上推组件调整装置上,该组装调整装置包括:X方向调节板,其具有枢轴,Y 方向调整板,其安装在X方向调整板上以能够在Y方向上移动; X方向调节螺钉,其允许X方向调节板在X方向上围绕枢转轴枢转; 允许Y方向调节板沿Y方向移动的偏心轴,将X方向调整板固定到接合装置的第一紧固螺钉和将Y方向调整板固定到接合装置的第二紧固螺钉 X方向调整板。 模具上推组件安装在Y方向调节板上,以便在水平方向上进行调节。
    • 73. 发明授权
    • Video storage type communication device
    • 视频存储型通信设备
    • US5742729A
    • 1998-04-21
    • US614306
    • 1996-03-12
    • Nobuyuki EmaKeiichi HibiJiro NakabayashiTsuneaki IwanoOsamu NakamuraYouji KanadaTsuneko KuraTakashi Oshima
    • Nobuyuki EmaKeiichi HibiJiro NakabayashiTsuneaki IwanoOsamu NakamuraYouji KanadaTsuneko KuraTakashi Oshima
    • H04N5/765H04N7/14H04N7/173H04N7/46H04N19/46H04N19/50H04N19/65H04N19/70H04N21/231H04N21/2387H04N21/24H04N5/91H04N5/917
    • H04N19/40H04N19/577
    • A video storage type communication device stores video data received from a terminal and reproduces required video information by rapid forwarding or reversing at any desired frame rate at the terminal independent of the terminal specification. A video storage type communication device includes a transmitting portion for transmitting video data and a receiving portion for receiving video data over a communication line. A video storage portion stores received video data. A communication control portion carries out video communication by controlling the above-mentioned portions. A refresh image detecting portion judges, from the received video data, whether the received video data is a refresh image. A storage control portion adds inter-frame or intra-frame prediction coded information to the received video data in accordance with the determination by the refresh image detecting portion and stores the received video data in the video storage portion. A terminal control portion sends at a desired interval a request for updating a display image through the communication control portion to a terminal during storing of video information.
    • 视频存储型通信装置存储从终端接收的视频数据,并且以与端子规格无关的终端的任意期望的帧速率进行快速转发或反转再现所需要的视频信息。 视频存储型通信设备包括用于发送视频数据的发送部分和用于通过通信线路接收视频数据的接收部分。 视频存储部分存储接收的视频数据。 通信控制部分通过控制上述部分来执行视频通信。 刷新图像检测部分从接收到的视频数据中判断所接收的视频数据是否是刷新图像。 存储控制部分根据刷新图像检测部分的确定将帧间或帧内预测编码信息添加到接收的视频数据,并将接收的视频数据存储在视频存储部分中。 终端控制部分在存储视频信息期间以期望的间隔发送通过通信控制部分更新显示图像的请求到终端。
    • 74. 发明授权
    • Method of producing aperture grill
    • 生产孔格栅的方法
    • US5585224A
    • 1996-12-17
    • US277641
    • 1994-07-20
    • Akira MakitaOsamu NakamuraTakeshi IkegamiYasuhiko Ishii
    • Akira MakitaOsamu NakamuraTakeshi IkegamiYasuhiko Ishii
    • C23F1/00G03F7/00H01J9/14G03C5/00
    • H01J9/142G03F7/0015
    • A method of producing an aperture grill of a CRT display device is disclosed. The aperture grill is of a small thickness of the order of 20 to 100 .mu.m. To a metal plate with front and rear surface resin layers are applied front slit pattern mask with a single broad slit pattern and a rear slit pattern mask with two adjacent, narrow slit patterns. With these two masks disposed in opposition, the slit patterns are printed and developed on the resist layers. Thereafter, etching is carried out on the rear surface of the metal plate via the rear resist layer, and rear cavities are formed in the metal plate. Then, a reinforcing, etchant-proof film is attached to the rear resist layer to cover the rear cavities, and thereafter etching is carried out on the front surface of the metal plate via the front resist layer, to thereby form a front cavity. As the front etching proceeds, the front cavity is caused to communicate with the rear cavities with the etchant flowing into the rear cavities, and the front and rear cavities are made into a single through slit. Thereafter the reinforcing film is removed. The method makes it possible to easily produce slits of dimensional accuracy.
    • 公开了一种制造CRT显示装置的孔格栅的方法。 孔格栅的厚度小于20〜100μm。 对具有前表面和后表面树脂层的金属板施加具有单个宽狭缝图案的前狭缝图案掩模和具有两个相邻的窄狭缝图案的后狭缝图案掩模。 通过将这两个掩模相对设置,将狭缝图案印刷并显影在抗蚀剂层上。 此后,经由后抗蚀剂层在金属板的后表面上进行蚀刻,并且在金属板中形成后腔。 然后,将加强的耐蚀刻膜附着到后抗蚀剂层以覆盖后腔,然后经由前抗蚀剂层在金属板的前表面上进行蚀刻,从而形成前腔。 当前蚀刻进行时,使前腔与后空腔连通,蚀刻剂流入后空腔,并使前腔和后空腔制成单个通孔。 之后,除去增强膜。 该方法可以容易地产生尺寸精度的狭缝。