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    • 23. 发明申请
    • Memory card and semiconductor device
    • 存储卡和半导体器件
    • US20050094463A1
    • 2005-05-05
    • US10960995
    • 2004-10-12
    • Hirotaka NishizawaAkira HiguchiKenji OsawaJunichiro OsakoTamaki WadaMichiaki Sugiyama
    • Hirotaka NishizawaAkira HiguchiKenji OsawaJunichiro OsakoTamaki WadaMichiaki Sugiyama
    • G06K19/00G06K19/077G11C7/00
    • G06K19/07732G06K19/005G06K19/077G06K19/07749
    • An antenna connection function for a noncontact interface is provided by suppressing a modification in a pin arrangement and a pin shape of a memory card that does not correspond to the noncontact interface. Two antenna connecting pins having the memory card are divided into two areas in which a size of one potential supply pin is the largest and used as a split pin arranged at intervals. Because a size of the two antenna connecting pins is at maximum as large as the size of the potential supply pin, the two antenna connecting pins are provided and the memory card that corresponds to the noncontact interface is obtained by devoting a pin area having the size of the one potential supply pin to the memory card that does not correspond to the noncontact interface. Accordingly, the pin area of the memory card that corresponds to the noncontact interface can be formed without departing from the pin area of the memory card that does not correspond to the noncontact interface.
    • 通过抑制不对应于非接触式接口的存储卡的引脚布置和引脚形状的修改来提供用于非接触式接口的天线连接功能。 具有存储卡的两个天线连接引脚被分成两个区域,其中一个电位引脚的尺寸最大并且用作间隔布置的分离引脚。 由于两个天线连接引脚的尺寸与电源引脚的尺寸一样大,所以提供了两个天线连接引脚,并且通过使用具有尺寸的引脚区域来获得与非接触式接口对应的存储卡 一个可能的电源引脚与存储卡不对应的非接触式接口。 因此,可以形成与非接触式接口相对应的存储卡的引脚区域,而不会脱离与非接触式接口对应的存储卡的引脚区域。
    • 26. 发明授权
    • Drug transferring needle and drug transferring method
    • 药物转移针和药物转移方法
    • US09254243B2
    • 2016-02-09
    • US14008808
    • 2012-03-14
    • Akira HiguchiAkinobu OkudaAkihiro OhtaYuki TakenakaTohru Nakamura
    • Akira HiguchiAkinobu OkudaAkihiro OhtaYuki TakenakaTohru Nakamura
    • A61J1/20A61M5/162
    • A61J1/2096A61M5/162
    • A drug transferring needle includes a needle base portion, a first needle portion having therein an air passage, and a second needle portion longer than the first needle portion and arranged parallel to the first needle portion. In the first needle portion, a first air vent being one end of the air passage is provided on a distal end side of the second needle portion from a second air vent being the other end of the air passage. In the second needle portion, one end of a liquid passage is connected to the inside of the needle base portion, and the other end thereof is a liquid pass opening of the second needle portion. The second needle portion has a distal end having the liquid pass opening, a base portion connected to the needle base portion, and an intermediate portion connecting the distal end and the base portion.
    • 药物传送针包括针基部,其中具有空气通道的第一针部分和比第一针部长并且平行于第一针部分布置的第二针部分。 在第一针部中,作为空气通路的另一端的第二排气口在第二针部的前端侧设置有作为空气通路一端的第一排气口。 在第二针部中,液体通路的一端与针基部的内侧连接,另一端为第二针部的液体通过口。 第二针部具有具有液体通过口的远端,与针基部连接的基部,以及连接前端和基部的中间部。
    • 28. 发明申请
    • MICRO-LIQUID TRANSFER APPARATUS AND MICRO-LIQUID TRANSFER METHOD
    • 微液体转移装置和微液体转移方法
    • US20090241699A1
    • 2009-10-01
    • US12403448
    • 2009-03-13
    • Akira HiguchiShirou YamashitaKouji Shimogawa
    • Akira HiguchiShirou YamashitaKouji Shimogawa
    • G01N1/00
    • G01N35/1004G01N2035/1037
    • In a micro-liquid transfer apparatus including two washing tanks (first washing tanks A and B), operations to transfer a sample are carried out using two pin tools (pin tools A and B) alternately. While one pin tool A is being mounted on a pin tool holder and is being used to transfer a liquid, the other pin tool B is waiting in a state where the lower end portions of their associated pins are immersed in the first washing tank B. While one pin tool A is being mounted on a pin tool holder and is being used to transfer a very small amount of liquid, the lower end portions of the respective pins of the other pin tool are washed, whereby the liquid transfer operations can be made in progress with no interruption and thus the generation of the operation waiting time can be prevented.
    • 在包括两个洗涤槽(第一洗涤槽A和B)的微液体传送设备中,传送样品的操作使用两个针工具(针工具A和B)交替进行。 当一个针工具A被安装在销刀架上并用于传送液体时,另一个销工具B在其相关销的下端部浸入第一洗涤槽B的状态下等待。 当一个针工具A被安装在销刀架上并被用于传送非常少量的液体时,另一个针工具的各个销的下端部被洗涤,从而可以进行液体转移操作 正在进行而不中断,从而可以防止产生操作等待时间。
    • 29. 发明授权
    • Micro plate treating device and micro plate carrying method
    • 微板处理装置和微板承载方法
    • US07485465B2
    • 2009-02-03
    • US10549149
    • 2005-04-05
    • Akira HiguchiEiji Watanabe
    • Akira HiguchiEiji Watanabe
    • G01N35/02G01N35/04
    • G01N35/028G01N2035/0405Y10T436/11Y10T436/113332Y10T436/114165Y10T436/114998
    • In a microplate processing apparatus that removes lid (11) of microplate (10) conveyed by microplate conveying mechanism (3) to perform a dispensing process by dispensing head (8), and that attaches lid (11) after the dispensing process is completed, lid (11) removed by lid removing mechanism (6) at first position (P1) is conveyed to third position (P3) located downstream, by microplate conveying mechanism (3), to be held by lid attaching mechanism (9), and then lid (11) is attached to microplate (10) having been conveyed to third position (P3), after the dispensing process is completed, while microplate (10) with this lid (11) having been attached is being lifted to processing position (P4) above microplate conveying mechanism (3), by microplate stage (12).
    • 在微孔板处理装置中,除去由微孔板输送机构(3)输送的微板(10)的盖(11),以通过分配头(8)进行分配处理,并且在分配过程完成之后附着盖(11) 通过盖板拆卸机构(6)在第一位置(P1)移除的盖子(11)通过微孔板输送机构(3)输送到位于下游的第三位置(P3),由盖子安装机构(9)保持,然后 在分配过程完成之后,将具有已经被附接的盖子(11)的微孔板(10)提升到处理位置(P4),将盖子(11)连接到已经被输送到第三位置(P3)的微孔板(10) )微孔板输送机构(3),微板台(12)。