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    • 43. 发明申请
    • MAGNETIC RECORDING MEDIUM
    • 磁记录介质
    • US20080187783A1
    • 2008-08-07
    • US12026128
    • 2008-02-05
    • Kuniyuki DOITetsuo KAWAKUSUHiroyuki TANAKAKazunori TAMAZAKI
    • Kuniyuki DOITetsuo KAWAKUSUHiroyuki TANAKAKazunori TAMAZAKI
    • G11B5/62
    • G11B5/73G11B5/7021
    • The invention provides a magnetic recording medium having a structure in which a magnetic layer containing magnetic particles and a binder is formed on a nonmagnetic layer containing nonmagnetic particles and a binder, wherein the binder contained in the nonmagnetic layer contains a polyurethane resin which has a metal sulfonate group and unsaturated hydrocarbon groups in its molecule and is obtained by reacting a polyester polyol (A) containing an aliphatic dicarboxylic acid as an acid component, an aromatic polyisocyanate compound (B), a compound (C) having unsaturated hydrocarbon groups and a functional group which reacts with an isocyanate group and a molecular weight of 500 or less with a branched compound (D) represented by the following formula (1), and the nonmagnetic layer has good dispersibility even by using fine nonmagnetic particles and can ensure satisfactory coating film strength even at a radiation dose of 3 Mrad or less.
    • 本发明提供一种磁记录介质,其结构是在包含非磁性颗粒和粘合剂的非磁性层上形成含有磁性颗粒和粘合剂的磁性层,其中包含在非磁性层中的粘合剂含有具有金属的聚氨酯树脂 磺酸酯基和不饱和烃基,通过使含有脂肪族二羧酸的酸性成分的聚酯多元醇(A),芳香族多异氰酸酯化合物(B),具有不饱和烃基的化合物(C)和官能团 与异氰酸酯基反应,分子量为500以下的基团,由下式(1)表示的支链化合物(D),即使使用微细的非磁性粒子,非磁性层也具有良好的分散性,可以确保满意的涂膜 即使在3Mrad或更低的辐射剂量下也是如此。
    • 45. 发明申请
    • ELECTRONIC DEVICE, USE RESTRICTION METHOD FOR ELECTRONIC DEVICE, AND COMPUTER-READABLE RECORDING MEDIUM
    • 电子设备,电子设备的使用限制方法和计算机可读记录介质
    • US20140016159A1
    • 2014-01-16
    • US14028630
    • 2013-09-17
    • Hiroyuki TANAKA
    • Hiroyuki TANAKA
    • H04N1/44
    • H04N1/4413G06F21/608G06F2221/2141G06F2221/2153H04N1/00413H04N1/00474H04N1/0048H04N1/00482H04N1/4433
    • A method for restricting use of an electronic device including a display part includes the steps of a) designating an application identification data (ID) of a display target to be displayed by the display part, b) switching the display target to another display target by designating another application ID, c) instructing the display part to display an operation screen based on screen data corresponding to the application ID designated in step a), d) receiving a request for the switching of step b) from a use restriction application, e) determining whether the switching of step b) is possible, and f) instructing the display part to display another operation screen based on another screen data corresponding to the another application ID in a case where the switching of step b) is determined to be possible in step e).
    • 一种限制使用包括显示部件的电子设备的方法包括以下步骤:a)指定由显示部件显示的显示目标的应用识别数据(ID),b)通过以下步骤将显示目标切换到另一个显示目标: 指定另一个应用ID,c)指示显示部分基于与步骤a)中指定的应用ID相对应的屏幕数据来显示操作屏幕,d)从使用限制应用接收步骤b)的切换请求,e )确定步骤b)的切换是否可行,以及f)在确定步骤b)的切换被确定为可能的情况下,指示显示部分基于与另一应用ID相对应的另一屏幕数据来显示另一个操作屏幕 在步骤e)中。
    • 47. 发明申请
    • FOCUSING IMAGE DISPLAY DEVICE AND METHOD FOR DISPLAYING SAME
    • 聚焦图像显示装置及其显示方法
    • US20120057065A1
    • 2012-03-08
    • US13226729
    • 2011-09-07
    • Hiroyuki TANAKA
    • Hiroyuki TANAKA
    • H04N5/225
    • H04N5/23212G02B7/365G03B13/36G03B17/20H04N5/23293
    • A focusing image display device is equipped with an autofocus processor, a spatial frequency detector, a magnification determiner and a focusing image display processor. The autofocus processor performs an autofocus operation using an image within a partial area of an effective pixel area. The spatial frequency detector calculates a spatial frequency of a focusing image within the partial area after the autofocus operation is completed. The magnification determiner determines the magnification of the focusing image in accordance to the spatial frequency. The focusing image display processor modifies the resolution of the focusing image with respect to the magnification.
    • 聚焦图像显示装置配备有自动对焦处理器,空间频率检测器,放大率确定器和聚焦图像显示处理器。 自动对焦处理器使用有效像素区域的部分区域内的图像来执行自动对焦操作。 空间频率检测器在完成自动对焦操作之后计算部分区域内的聚焦图像的空间频率。 放大率确定器根据空间频率确定聚焦图像的放大率。 聚焦图像显示处理器相对于放大率修改聚焦图像的分辨率。
    • 48. 发明申请
    • EMBEDDED DEVICE AND STATE DISPLAY CONTROL
    • 嵌入式设备和状态显示控制
    • US20100332920A1
    • 2010-12-30
    • US12788234
    • 2010-05-26
    • Takashi ASHIDAKenichi SATOHHiroyuki TANAKA
    • Takashi ASHIDAKenichi SATOHHiroyuki TANAKA
    • G06F3/048G06F11/07
    • G06F11/327G06F3/0481G06F9/451
    • Various embodiments for displaying a state of an embedded device using a browser are provided. In one embodiment, the browser is requested to display a text file having a description of a screen structure. The state information on a current state of the embedded device is acquired. An access request for requesting the browser to update, with the acquired state information, a value of at least one node in a document object model (DOM) tree generated from the text file by the browser, is submitted by a state display control program. The at least one node is recorded in an access history list. At a subsequent time, it is determined whether to permit a subsequent access request. If the source of the subsequent access request is not the state display control program, and the at least one node is recorded in the access history list, the subsequent access request is denied.
    • 提供了使用浏览器显示嵌入式设备的状态的各种实施例。 在一个实施例中,请求浏览器显示具有屏幕结构描述的文本文件。 获取关于嵌入式设备的当前状态的状态信息。 通过状态显示控制程序提交使用所获取的状态信息来更新由浏览器从文本文件生成的文档对象模型(DOM)树中的至少一个节点的值的访问请求。 至少一个节点被记录在访问历史列表中。 在随后的时间,确定是否允许后续的访问请求。 如果后续访问请求的源不是状态显示控制程序,并且至少一个节点被记录在访问历史列表中,则后续访问请求被拒绝。
    • 50. 发明申请
    • LIQUID CRYSTAL COMPOSITION AND LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶组合物和液晶显示装置
    • US20090237610A1
    • 2009-09-24
    • US12403867
    • 2009-03-13
    • Masayuki SAITOShigeru KIBENorikatsu HATTORIHiroyuki TANAKA
    • Masayuki SAITOShigeru KIBENorikatsu HATTORIHiroyuki TANAKA
    • C09K19/34G02F1/13
    • C09K19/42C09K19/3402C09K2019/0466C09K2019/123C09K2019/3004C09K2019/301C09K2019/3016C09K2019/3021C09K2019/3025C09K2019/3422G02F2001/13706Y10T428/10
    • A liquid crystal composition having a nematic phase that includes two components, wherein the first component is at least one compound selected from the group of compounds represented by formulas (1-1) to (1-3), and the second component is at least one compound selected from the group of compounds represented by formula (2): wherein R1 is alkyl having 1 to 12 carbons, alkoxy having 1 to 12 carbons or alkenyl having 2 to 12 carbons; R2 and R3 are each independently alkyl having 1 to 12 carbons, alkoxy having 1 to 12 carbons, alkenyl having 2 to 12 carbons or alkenyl having 2 to 12 carbons in which arbitrary hydrogen is replaced by fluorine; ring A, ring B and ring C are each independently 1,4-cyclohexylene, 1,4-phenylene or 2-fluoro-1,4-phenylene, 2,5-difluoro-1,4-phenylene; Z1 and Z2 are each independently a single bond, ethylene, carbonyloxy or difluoromethyleneoxy, provided that at least one of Z1 and Z2 is difluoromethyleneoxy; Z3 and Z4 are each independently a single bond, ethylene or carbonyloxy; X1, X2, X3, X4, X5, X6, X7 and X8 are each independently hydrogen or fluorine; Y1 is fluorine, chlorine or trifluoromethoxy; and m is 0, 1 or 2.
    • 一种具有向列相的液晶组合物,其具有两个成分,其中,所述第一成分为选自式(1-1)〜(1-3)所示的化合物的族群中的至少一种化合物,第二成分为至少 一种选自式(2)表示的化合物的化合物:其中R 1是具有1至12个碳的烷基,具有1至12个碳的烷氧基或具有2至12个碳的烯基; R2和R3各自独立地为具有1至12个碳的烷基,具有1至12个碳的烷氧基,具有2至12个碳的烯基或具有2至12个碳的烯基,其中任意的氢被氟取代; 环A,环B和环C各自独立地为1,4-亚环己基,1,4-亚苯基或2-氟-1,4-亚苯基,2,5-二氟-1,4-亚苯基; Z1和Z2各自独立地为单键,乙烯,羰氧基或二氟亚甲基氧基,条件是Z1和Z2中的至少一个是二氟亚甲基氧基; Z 3和Z 4各自独立地为单键,乙烯或羰氧基; X1,X2,X3,X4,X5,X6,X7和X8各自独立地为氢或氟; Y1是氟,氯或三氟甲氧基; m为0,1或2。