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    • 6. 发明授权
    • Porous resin stamp
    • 多孔树脂邮票
    • US06862987B2
    • 2005-03-08
    • US10647735
    • 2003-08-20
    • Shigeru KitaharaYasuo NagasawaYuji TanakaYoshitomo Tanaka
    • Shigeru KitaharaYasuo NagasawaYuji TanakaYoshitomo Tanaka
    • B41K1/50B41K1/00
    • B41K1/50
    • The present invention relates to a porous resin stamp which can repeatedly seal without supplying ink for a long period of time by beforehand soaking ink therein. The present invention also relates to a cartridge comprising the porous resin stamp and a stamp comprising the cartridge. Colors of the stamp can be intentionally adjusted by adjusting the amount of heating materials combined or the mixing rate of heating materials. Thus, it is possible to precisely check the desired letters, designs, patterns and so on. Furthermore, it is possible to intentionally adjust efficiency rate of heat generation of the heating materials by suitably changing the amount of heating materials. This makes it possible to express any small letters, minute designs and patterns with high reproducibility.
    • 本发明涉及一种多孔树脂印模,其可以通过预先在其中浸渍油墨而在不长时间供墨的情况下反复密封。 本发明还涉及一种包括多孔树脂印模的盒和包括该盒的印模。 可以通过调整加热材料的组合量或加热材料的混合速率来有意调整印模的颜色。 因此,可以精确地检查所需的字母,设计,图案等。 此外,可以通过适当地改变加热材料的量来有意地调节加热材料的发热效率。 这使得可以以高重现性表达任何小写字母,分钟设计和图案。
    • 7. 发明授权
    • Method of producing a porous resin stamp
    • 多孔树脂印章的制造方法
    • US06645418B2
    • 2003-11-11
    • US09764980
    • 2001-01-16
    • Shigeru KitaharaYasuo NagasawaYuji TanakaYoshitomo Tanaka
    • Shigeru KitaharaYasuo NagasawaYuji TanakaYoshitomo Tanaka
    • B29C6720
    • B41K1/50B29C44/56
    • The present invention aims to provide a porous resin stamp, which can repeatedly seal without supplying ink for a long period of time by beforehand soaking ink therein, and a producing method thereof. The present invention is characterized in the producing method of porous resin stamp, wherein an original that can selectively pass light through is put together with a porous resin body combined with at least phathalocyanine pigments as heating material which generate heat by light irradiated from a light source; the light is irradiated from the original side toward the surface of porous resin body; and an ink inexuding portion is formed by melting a surface layer of the porous resin body with heat of the heating material generated by the light passed through the original.
    • 本发明的目的在于提供一种多孔树脂印模及其制造方法,该多孔树脂印版可以反复密封,而不用长时间地供给油墨。 本发明的特征在于多孔树脂印模的制造方法,其中可以选择性地通过光的原件与多孔树脂体合并在一起,多孔树脂体与至少与酞菁颜料组合,作为通过从光源照射的光产生热的加热材料 ; 光从原始侧向多孔树脂体的表面照射; 并且通过由通过原稿的光产生的加热材料的热量来熔化多孔树脂体的表面层而形成油墨渗出部分。
    • 8. 发明申请
    • VIDEO DATA GENERATION APPARATUS, VIDEO DATA GENERATION SYSTEM, VIDEO DATA GENERATION METHOD, AND COMPUTER PROGRAM PRODUCT
    • 视频数据生成设备,视频数据生成系统,视频数据生成方法和计算机程序产品
    • US20100321567A1
    • 2010-12-23
    • US12817774
    • 2010-06-17
    • Yoshitomo Tanaka
    • Yoshitomo Tanaka
    • H04N7/01H04N9/475
    • H04N5/04H04N21/242
    • A video data generation apparatus generates video data based on audio data and frame image data, which are generated independently of each other. The video data generation apparatus sequentially inputs the audio data at fixed intervals, while sequentially inputting the frame image data in time series at irregular intervals. Simultaneously with input of one frame of frame image data, the video data generation apparatus starts a data acquisition process to obtain next one frame of frame image data. The video data generation apparatus stores audio data, which have been input in a period between a start of the data acquisition process by the data acquirer and input of one frame of frame image data by the data acquisition process, in combination with the frame image data of one frame obtained by the data acquisition process, as one audio image complex data, and generates the video data based on multiple stored audio image complex data.
    • 视频数据生成装置基于彼此独立地生成的音频数据和帧图像数据生成视频数据。 视频数据产生装置以固定间隔顺序地输入音频数据,同时以不规则的间隔顺序输入帧图像数据。 在输入一帧帧图像数据的同时,视频数据生成装置开始数据获取处理,以获得下一帧帧图像数据。 视频数据生成装置将通过数据获取器开始的数据获取处理之间的时段中输入的音频数据和通过数据获取处理的一帧帧图像数据的输入结合帧图像数据 通过数据获取处理获得的一帧作为一个音频图像复数据,并且基于多个存储的音频图像复合数据生成视频数据。