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    • 61. 发明授权
    • Nonvolatile storage module, access module, musical sound data file generation module and musical sound generation system
    • 非易失存储模块,访问模块,音乐声音数据文件生成模块和音乐声音生成系统
    • US08450589B2
    • 2013-05-28
    • US12936239
    • 2009-03-16
    • Masahiro Nakanishi
    • Masahiro Nakanishi
    • G10H7/00
    • G10H7/02G10H1/0066G10H2240/145
    • Musical sound data groups are recorded in nonvolatile memory banks by multiplexing the data without being compressed. A data reader reads the musical sound data in parallel from the plurality of nonvolatile memory banks according to reading instructions from an access module. In a musical sound generation system that cannot expect which pitch of the musical sound data is instructed to be read, since a plurality of pieces of data can be read in parallel from the plurality of nonvolatile memory banks, a sound production delay time can fall within an allowable time. Thus, by using a currently dominant large-capacity multi level NAND flash memory as a memory for the musical sound data, a high sound quality and compact musical sound generation system can be realized.
    • 音乐数据组通过在不压缩的情况下复用数据而被记录在非易失性存储体中。 数据读取器根据来自访问模块的读取指令从多个非易失性存储体中并行读取音乐声音数据。 在不能指示音乐声音数据的音高被指示被读取的音乐声音生成系统中,由于可以从多个非易失性存储体并行地读取多条数据,所以声音产生延迟时间可以落在 允许的时间。 因此,通过使用当前主导的大容量多电平NAND闪速存储器作为音乐声音数据的存储器,可以实现高音质和紧凑的音乐声音产生系统。
    • 64. 发明申请
    • NONVOLATILE STORAGE MODULE, ACCESS MODULE, MUSICAL SOUND DATA FILE GENERATION MODULE AND MUSICAL SOUND GENERATION SYSTEM
    • 非易失存储模块,访问模块,音乐声音数据文件生成模块和音乐声音发生系统
    • US20110029583A1
    • 2011-02-03
    • US12936239
    • 2009-03-16
    • Masahiro Nakanishi
    • Masahiro Nakanishi
    • G06F17/30G06F12/00
    • G10H7/02G10H1/0066G10H2240/145
    • Musical sound data groups are recorded in nonvolatile memory banks by multiplexing the data without being compressed. A data reader reads the musical sound data in parallel from the plurality of nonvolatile memory banks according to reading instructions from an access module. In a musical sound generation system that cannot expect which pitch of the musical sound data is instructed to be read, since a plurality of pieces of data can be read in parallel from the plurality of nonvolatile memory banks, a sound production delay time can fall within an allowable time. Thus, by using a currently dominant large-capacity multi level NAND flash memory as a memory for the musical sound data, a high sound quality and compact musical sound generation system can be realized.
    • 音乐数据组通过在不压缩的情况下复用数据而被记录在非易失性存储体中。 数据读取器根据来自访问模块的读取指令从多个非易失性存储体中并行读取音乐声音数据。 在不能指示音乐声音数据的音高被指示被读取的音乐声音生成系统中,由于可以从多个非易失性存储体并行地读取多条数据,所以声音产生延迟时间可以落在 允许的时间。 因此,通过使用当前主导的大容量多电平NAND闪速存储器作为音乐声音数据的存储器,可以实现高音质和紧凑的音乐声音产生系统。
    • 65. 发明申请
    • FASTENING BODY STRUCTURE
    • 紧身身体结构
    • US20100272538A1
    • 2010-10-28
    • US12745989
    • 2008-11-28
    • Kazunari YoshidaMasahiro Nakanishi
    • Kazunari YoshidaMasahiro Nakanishi
    • F16B33/00
    • F16B1/0014F16B35/06F16B43/00
    • A fastening body structure having a screw member which uses a module screw having a countersunk head and also uses, together with the module screw, a washer made of a shape memory alloy. With this structure, the washer does not expand even if subjected to large fastening force in fastening of a part to be fastened and in which the washer can be easily removed when the screw fastening is released. The fastening body structure fastens and fixes a desired part to the installation section by using the screw member having the module screw and the washer made of a shape memory alloy. The module screw has a male screw used as a pair with a female screw thread section formed in the installation section, and also has the countersunk head. The washer made of a shape memory alloy has an inner diameter corresponding to the module screw. An irregular surface section is formed on a slope surface at the lower part of the head of the module screw or on that surface of the washer makes contact with the screw.
    • 一种紧固体结构,其具有使用具有埋头头的模块螺钉的螺钉构件,并且与模块螺钉一起使用由形状记忆合金制成的垫圈。 利用这种结构,即使在紧固待固定部件时受到较大的紧固力的情况下,垫圈也不会膨胀,并且当螺钉紧固被释放时垫圈可以容易地移除。 紧固体结构通过使用具有模块螺钉的螺钉构件和由形状记忆合金制成的垫圈来将所需的部件紧固并固定到安装部分。 模块螺钉具有与安装部形成的内螺纹部分成一对的阳螺纹,并且还具有沉头。 由形状记忆合金制成的垫圈具有对应于模块螺钉的内径。 在模块螺钉的头部的下部的斜面上形成不规则的表面部分,或者垫圈的表面与螺钉接触。
    • 66. 发明申请
    • ACCESS MODULE, STORAGE MODULE, MUSICAL SOUND GENERATING SYSTEM AND DATA WRITING MODULE
    • 访问模块,存储模块,音乐声音发生系统和数据写入模块
    • US20100217922A1
    • 2010-08-26
    • US12671258
    • 2009-03-17
    • Masahiro Nakanishi
    • Masahiro Nakanishi
    • G06F12/02G06F12/00G06F3/00G06F17/30
    • G10H7/02G10H1/183
    • An access module is connected to a storage module which stores multiplexed musical sound data in a non-compressed form. Based on a read request status of each sounding channel and access status of the nonvolatile storage module as a read target, a read instructing part transfers a read instruction to the storage module and reads musical sound data in parallel from the storage modules. In this musical sound generating system, since a plurality of pieces of musical sound data can be read from a plurality of nonvolatile storage modules in parallel, a sounding delay time can be made smaller than an acceptable time. For this reason, a prevailing mass NAND flash memory can be used as a memory for the musical sound data, thereby realizing a high sound quality and compact musical sound generating system.
    • 访问模块连接到以非压缩形式存储多路复用音乐数据的存储模块。 基于每个探测通道的读取请求状态和作为读取目标的非易失性存储模块的访问状态,读取指令部分将读取指令传送到存储模块,并从存储模块并行读取音乐声音数据。 在该音乐声音产生系统中,由于可以从多个非易失性存储模块并行读取多个音乐声音数据,所以可以使探测延迟时间小于可接受的时间。 因此,可以使用盛行的大容量NAND闪速存储器作为音乐声音数据的存储器,从而实现高音质和紧凑的音乐声音产生系统。
    • 68. 发明申请
    • NONVOLATILE MEMORY DEVICE, ACCESS DEVICE, AND NONVOLATILE MEMORY SYSTEM
    • 非易失性存储器件,访问器件和非易失性存储器系统
    • US20100005226A1
    • 2010-01-07
    • US12374672
    • 2007-07-26
    • Takuji MaedaToshiyuki HondaMasahiro NakanishiTadashi OnoTatsuya AdachiIsao Kato
    • Takuji MaedaToshiyuki HondaMasahiro NakanishiTadashi OnoTatsuya AdachiIsao Kato
    • G06F12/00G06F12/02
    • G06F3/0664G06F3/0605G06F3/061G06F3/0679G06F12/0246
    • An access device 100 includes an access speed information part 112 for informing an access speed required for data recording by the access device 100 to a nonvolatile memory device 200. The nonvolatile memory device includes an access condition determination part 212 for determining an access condition required for meeting the informed access speed and an access area determination unit 213 for determining an access area according to the determined access condition. The access device 100 informs the required access speed to the nonvolatile memory device 200 in advance so that the access condition determination part 212 and the access area determination part 213 in the nonvolatile memory device 200 realize data recording which meets the access speed informed in advance upon the data recording. Thus, it is possible to access all the nonvolatile memory devices at a desired speed regardless of difference in characteristics of the recording speed of each of the nonvolatile memory devices.
    • 访问装置100包括访问速度信息部分112,用于将访问装置100的数据记录所需的访问速度通知给非易失性存储装置200.非易失性存储装置包括访问条件确定部分212,用于确定访问条件 满足通知访问速度的访问区域确定单元213,用于根据确定的访问条件确定访问区域。 访问装置100预先向非易失性存储装置200通知所需的访问速度,使得非易失性存储装置200中的访问条件确定部212和访问区域确定部213实现满足预先通知的访问速度的数据记录 数据记录。 因此,无论每个非易失性存储器件的记录速度的特性差如何,都可以以所需的速度访问所有非易失性存储器件。
    • 70. 发明申请
    • ORGANIC EL LIGHT-EMITTING DEVICE AND PRODUCTION METHOD THEREOF
    • 有机EL发光装置及其生产方法
    • US20090253331A1
    • 2009-10-08
    • US12398278
    • 2009-03-05
    • Morimi HashimotoMasahiro NakanishiToshihiko Mimura
    • Morimi HashimotoMasahiro NakanishiToshihiko Mimura
    • H01J9/24
    • H01L27/3246H01L27/3211H01L27/3283
    • There is provided a method of producing an organic EL light-emitting device which enables prevention of crosstalk between adjacent pixels of the same color. Provided is a method of producing an organic EL light-emitting device which has banks provided in a row direction and in a column direction, and a plurality of organic EL light-emitting portions isolated from each other by the banks. The method includes the steps of forming banks such that a height of a bank portion of a row direction and a height of a bank portion of a column direction are different from each other; and applying an organic EL material in a continuous manner along the bank portion which is higher of the bank portion of the row direction and the bank portion of the column direction, between the banks of the higher bank portion.
    • 提供一种能够防止相同颜色的相邻像素之间的串扰的有机EL发光装置的制造方法。 提供一种制造有机EL发光器件的方法,该有机EL发光器件具有沿行方向和列方向设置的堤,以及由堤彼此隔离的多个有机EL发光部。 该方法包括以下步骤:形成堤,使得行方向的堤部分的高度和列方向的堤部分的高度彼此不同; 以及沿着行方向的堤岸部分和列方向的堤岸部分之间的堤岸部分连续地施加有机EL材料,位于较高堤岸部分的堤岸之间。