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    • 6. 发明授权
    • Probe inspecting method and curable resin composition
    • 探头检查方法和固化树脂组合物
    • US08723537B2
    • 2014-05-13
    • US12919314
    • 2009-02-20
    • Gosuke NakajimaYoshitsugu GotoKazuhiro OshimaJun Watanabe
    • Gosuke NakajimaYoshitsugu GotoKazuhiro OshimaJun Watanabe
    • G01R31/00
    • G01R3/00Y02P20/582
    • Disclosed are a probe inspecting method for confirming the state of a probe for inspecting electric characteristics of an object to be inspected; and a curable resin composition for use in the method. The method is applied to repeat inspections and comprises the steps of bringing a cured resin of a curable resin composition into contact with a probe for inspecting electric characteristics of an object to be inspected, transferring a probe mark of the probe to the cured resin, confirming the state of the probe based on the transferred probe mark, and, after the transfer of the probe mark of the probe, heating the cured resin to a temperature at or above the glass transition temperature of the cured resin to erase the probe mark of the probe.
    • 公开了一种用于确认用于检查被检查物体的电特性的探针的状态的探针检查方法, 和用于该方法的可固化树脂组合物。 该方法用于重复检查,包括使固化树脂组合物的固化树脂与用于检查被检查物体的电特性的探针接触的步骤,将探针的探针标记转印到固化树脂上,确认 基于所转移的探针标记的探针的状态,并且在传感探针的探针标记之后,将固化树脂加热至等于或高于固化树脂的玻璃化转变温度的温度,以擦除 探测。
    • 9. 发明授权
    • Storage controller and storage control method
    • 存储控制器和存储控制方法
    • US07865656B2
    • 2011-01-04
    • US11907124
    • 2007-10-09
    • Yoshitsugu Goto
    • Yoshitsugu Goto
    • G06F12/00
    • G06F12/0646G06F13/1694
    • A storage controller that can control memory addresses even when a memory module having a different device configuration than an already mounted memory module is added as an expansion module. More specifically, a storage controller for controlling a storage unit that can be constructed using a plurality of memory modules is configured so as to include: a register which stores memory module configuration information for a basic memory module and an expansion memory module independently of each other; and an address conversion unit which, based on the memory module configuration information stored in the register, generates an address that can access the storage unit even when the memory address space of the expansion memory module is different from the memory address space of the basic memory module.
    • 即使添加具有与已经安装的存储器模块不同的设备配置的存储器模块的存储器控​​制器也可以控制存储器地址作为扩展模块。 更具体地,用于控制可以使用多个存储器模块构建的存储单元的存储控制器被配置为包括:独立于彼此独立地存储用于基本存储器模块和扩展存储器模块的存储器模块配置信息的寄存器 ; 以及地址转换单元,其基于存储在寄存器中的存储器模块配置信息,即使在扩展存储器模块的存储器地址空间与基本存储器的存储器地址空间不同的情况下也生成可访问存储单元的地址 模块。
    • 10. 发明申请
    • Ultraviolet-curable antistatic hard coating resin composition
    • 紫外线固化型抗静电硬涂层树脂组合物
    • US20060167126A1
    • 2006-07-27
    • US10534542
    • 2003-11-12
    • Yoshitsugu GotoJunichi Kazami
    • Yoshitsugu GotoJunichi Kazami
    • C08F290/06
    • C09D4/00
    • The invention presents an ultraviolet curable hard coating resin composition which is transparent and excellent in an antistatic property and which is suitable to cover the surface of a plastic film or sheet, and an antistatic hard coating film or sheet provided with an antistatic layer made of such a resin composition. An antistatic hard coating resin composition curable by ultraviolet irradiation, which comprises electroconductive zinc oxide having an average particle size of primary particles of at most 0.05 μm, an ultraviolet curable (meth)acrylate having at least one (meth)acryloyl group per molecule, and a photopolymerization initiator, wherein the content of the electroconductive zinc oxide component is from 50 to 95 mass % based on the total amount of all components. The composition preferably further contains a silane coupling agent or a tertiary amine having two or more hydroxyl groups per molecule, as a dispersing agent.
    • 本发明提供一种透明且抗静电性优异且适用于覆盖塑料薄膜或薄片表面的紫外线固化硬涂层树脂组合物,以及设置有由此制成的抗静电层的抗静电硬涂膜或薄片 树脂组合物。 一种通过紫外线照射固化的抗静电硬涂层树脂组合物,其包含一次粒子的平均粒径为0.05μm以下的导电性氧化锌,每分子具有至少一个(甲基)丙烯酰基的紫外线固化性(甲基)丙烯酸酯,以及 光聚合引发剂,其中导电性氧化锌组分的含量相对于所有组分的总量为50〜95质量%。 组合物优选进一步含有每分子具有两个或更多个羟基的硅烷偶联剂或叔胺作为分散剂。