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    • 53. 发明申请
    • NONVOLATILE SEMICONDUCTOR MEMORY DEVICE AND METHOD FOR MANUFACTURING THE SAME
    • 非易失性半导体存储器件及其制造方法
    • US20080111178A1
    • 2008-05-15
    • US11835694
    • 2007-08-08
    • Atsuhiro KINOSHITAHiroshi WatanabeFumitaka Arai
    • Atsuhiro KINOSHITAHiroshi WatanabeFumitaka Arai
    • H01L29/788H01L21/336
    • H01L27/1203H01L21/84H01L27/115H01L27/11521H01L27/11524
    • It is made possible to provide a memory device that can be made very small in size and have a high capacity while being able to effectively suppress short-channel effects. A nonvolatile semiconductor memory device includes: a first insulating film formed on a semiconductor substrate; a semiconductor layer formed above the semiconductor substrate so that the first insulating film is interposed between the semiconductor layer and the semiconductor substrate; a NAND cell having a plurality of memory cell transistors connected in series, each of the memory cell transistors having a gate insulating film formed on the semiconductor layer, a floating gate formed on the gate insulating film, a second insulating film formed on the floating gate, and a control gate formed on the second insulating film; a source region having an impurity diffusion layer formed in one side of the NAND cell; and a drain region having a metal electrode formed in the other side of the NAND cell.
    • 可以提供一种可以制造尺寸非常小并且具有高容量的存储器件,同时能够有效地抑制短沟道效应。 非易失性半导体存储器件包括:形成在半导体衬底上的第一绝缘膜; 半导体层,其形成在所述半导体衬底上方,使得所述第一绝缘膜插入在所述半导体层和所述半导体衬底之间; 具有串联连接的多个存储单元晶体管的NAND单元,每个存储单元晶体管具有形成在所述半导体层上的栅极绝缘膜,形成在所述栅极绝缘膜上的浮置栅极,形成在所述浮动栅极上的第二绝缘膜 以及形成在所述第二绝缘膜上的控制栅极; 源区,其具有形成在NAND单元的一侧的杂质扩散层; 以及在NAND单元的另一侧形成有金属电极的漏极区域。
    • 54. 发明申请
    • Information Management System, Information Management Server, Portable Terminal, and Portable Terminal Control Program
    • 信息管理系统,信息管理服务器,便携式终端和便携式终端控制程序
    • US20080097846A1
    • 2008-04-24
    • US11792683
    • 2005-03-23
    • Ayumu OikawaHiroshi Watanabe
    • Ayumu OikawaHiroshi Watanabe
    • G06Q99/00H04M11/00
    • G07F17/32G06Q20/327G06Q30/02G06Q30/0207G06Q30/04H04M1/72544
    • An information management system 200 including a portable telephone 100 having a settlement unit 107 which performs electronic settlement and an information management server 50 which gathers and manages settlement information, wherein the portable telephone 100 includes a settlement information transmission unit 117 which transmits the settlement information to the information management 50, a receiving unit 140 which receives prize data from the information management server 50, a content storage unit 130 and an incentive hold unit 135 which store therein the prize data received, and the information management server 50 includes a settlement information receiving unit 203 which receives the settlement information and stores the received settlement information in a settlement breakdown database 52 and a transmission unit 207 which transmits the prize data stored in the content storage unit 60 to the portable telephone 100 if having received the settlement information from the portable telephone 100.
    • 包括具有执行电子结算的结算单元107的便携式电话100和收集和管理结算信息的信息管理服务器50的信息管理系统200,其中便携式电话100包括结算信息发送单元117,其将结算信息发送到 信息管理部50,从信息管理服务器50接收奖励数据的接收部140,存储收到的奖品数据的内容存储部130和激励保持部135,信息管理服务器50包括接收到的结算信息 单元203,其接收结算信息并将接收到的结算信息存储在结算分析数据库52和发送单元207中,发送单元207将存储在内容存储单元60中的奖品数据发送到便携式电话100,如果已经从portab接收到结算信息 电话100。
    • 57. 发明申请
    • Core operation setting device for injection molding machine
    • 注塑机的核心操作设定装置
    • US20080031992A1
    • 2008-02-07
    • US11878237
    • 2007-07-23
    • Akimasa MatsuoHiroshi Watanabe
    • Akimasa MatsuoHiroshi Watanabe
    • B29C45/80
    • B29C45/762
    • A “mold opening completion position,” a “halfway position,” and a “mold closing completion position” are set on a core operation setting screen associated with mold opening and closing operation. On the other hand, core insertion operation is divided into a plurality of elements (operation elements) including “core insertion output start,” “core insertion check,” and “core insertion output end.” Likewise, core removal operation is divided into a plurality of elements (operation elements) including “core removal output start,” “core removable check,” and “core removable output end.” One or more set items constituted by combination of the system of a core and the operation elements of the core are set with respect to each position.
    • 在与模具打开和关闭操作相关联的核心操作设置屏幕上设置“模具打开完成位置”,“中途位置”和“模具关闭完成位置”。 另一方面,核心插入操作被分为包括“核心插入输出开始”,“核心插入检查”和“核心插入输出端”的多个元件(操作元件)。 同样地,将芯拆除操作分为多个元件(操作元件),其中包括“芯移除输出开始”,“芯拆卸检查”和“芯可拆卸输出端”。 相对于每个位置设置由芯的系统和芯的操作元件的组合构成的一个或多个集合项。
    • 60. 发明申请
    • Amplifier
    • 放大器
    • US20070273441A1
    • 2007-11-29
    • US11290709
    • 2005-11-30
    • Hiroshi Watanabe
    • Hiroshi Watanabe
    • H03F3/45
    • H03F3/45475H03F1/38H03F3/45179H03F2203/45116H03F2203/45136H03F2203/45138H03F2203/45248H03F2203/45511H03F2203/45536
    • The objective of the invention is to automatically and dynamically change the slew rate corresponding to the change rate and amplitude of the input signal. In this operational amplifier, when voltage (Vin) of the input signal is high, or when it changes drastically, at the time the voltage difference between the input signal and the output signal (Vout−Vin) exceeds prescribed value (VF), in constant current circuit (12), switch controller (22) turns ON switch (20). As a result, operation current amplifier (16) operates, and current (IE) of constant current source (14) is amplified with a positive feedback loop. By means of positive feedback amplification of the current (IE), slew rate (SR) rises drastically from the reference value that has been adopted, and output voltage (Vout) immediately follows input voltage (Vin). Then, when the voltage difference between the input signal and the output signal (Vout−Vin) falls to within prescribed value (VF), switch controller (22) turns OFF switch (20), and the amplification function of operation current amplifier (16) stops.
    • 本发明的目的是自动和动态地改变与输入信号的变化率和振幅相对应的转换速率。 在该运算放大器中,当输入信号的电压(V IN)在高电平时,或者当输入信号和输出信号之间的电压差(V < 在恒流电路(12)中,开关控制器(22)接通开关(20),在中的 -V 超出规定值(V SUB) 。 结果,工作电流放大器(16)工作,恒流源(14)的电流(I SUB)被正反馈回路放大。 通过电流(I SUB)的正反馈放大,压摆率(SR)从已经采用的参考值急剧上升,并且输出电压(V OUT) )紧随着输入电压(中的V )。 然后,当输入信号和输出信号之间的电压差(V SUB)在中的电压差落在规定值(V> ),开关控制器(22)关闭开关(20),并且操作电流放大器(16)的放大功能停止。