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    • 1. 发明申请
    • Single window navigation methods and systems
    • 单窗口导航方法和系统
    • US20050010871A1
    • 2005-01-13
    • US10916692
    • 2004-08-12
    • Scott RuthfieldRichard WolfMichael HopcroftPaul EricksonSatoshi Nakajima
    • Scott RuthfieldRichard WolfMichael HopcroftPaul EricksonSatoshi Nakajima
    • G06F15/00G06F3/033G09G5/00
    • G06F3/0481
    • A user interface (UI) in the form of a single navigable window enables a user to navigate to and between multiple different functionalities that are provided by a single application program. Novel use is made of a navigation model that manages the user's navigation activities to and between the different functionalities. Navigation instrumentalities enable the user to navigate among the different functionalities and include links to each of the different functionalities as well as browser-like navigation buttons. Context-sensitive command sets can also be provided along with the single navigable window. The context sensitive command sets include commands that automatically change as the user's computing context changes, e.g. as the user moves from functionality to functionality. The single application can be defined as a software platform that is extensible to receive and incorporate different functionalities. The functionalities can be provided as software modules that can be sent over a network such as the Internet. The extensible software platform provides a basis to offer a subscriber or fee-based service where different subscribers can, for a fee, access different functionalities via a network such as the Internet.
    • 以单一导航窗口形式的用户界面(UI)使用户能够导航到由单个应用程序提供的多个不同功能之间和之间。 新颖的使用是导航模型,管理用户的导航活动到不同的功能之间和之间。 导航工具使用户能够在不同功能之间进行导航,并包括每个不同功能的链接以及类似浏览器的导航按钮。 上下文相关的命令集也可以与单个导航窗口一起提供。 上下文敏感命令集包括随着用户的计算环境变化而自动改变的命令,例如, 随着用户从功能到功能的移动。 单个应用程序可以定义为可扩展以接收和并入不同功能的软件平台。 这些功能可以作为可以通过诸如因特网的网络发送的软件模块来提供。 可扩展软件平台提供了提供订户或费用服务的基础,其中不同的订户可以通过诸如因特网的网络访问不同的功能。
    • 2. 发明授权
    • Mobile device for vehicle
    • 车载移动设备
    • US08232863B2
    • 2012-07-31
    • US12688432
    • 2010-01-15
    • Satoshi NakajimaSatoshi HayasakaMasaki SatoJun Takahashi
    • Satoshi NakajimaSatoshi HayasakaMasaki SatoJun Takahashi
    • H04B1/38
    • G07C9/00309B60R25/245G07C9/00111G07C2009/00793G07C2209/64
    • A mobile device for a vehicle includes a receiving unit that receives transmission signals transmitted from individual transmitting antennas of a vehicle-side device; a control unit that determines distances to the individual transmitting antennas using the signal strengths of the received transmission signals; and a transmitting unit that transmits, to the vehicle-side device using wireless communication, data items indicating the distances. In a time period in which communication is not performed between the mobile device and the vehicle-side device, the signal strength of a received signal is measured, thereby obtaining a measurement value, and the measurement value is stored as a noise element in a memory. When communication between the mobile device and the vehicle-side device is performed, correction for noise is performed on the signal strengths of the transmission signals transmitted from the transmitting antennas, and the distances are determined.
    • 一种用于车辆的移动设备包括:接收单元,其接收从车辆侧设备的各个发送天线发送的发送信号; 控制单元,使用所接收的发送信号的信号强度来确定到各个发送天线的距离; 以及发送单元,其使用无线通信向车辆侧设备发送指示距离的数据项。 在移动设备与车辆侧设备之间不进行通信的时间段中,测量接收信号的信号强度,从而获得测量值,并将测量值作为噪声元素存储在存储器中 。 当执行移动设备与车载设备之间的通信时,对从发送天线发送的发送信号的信号强度进行噪声校正,确定距离。
    • 3. 发明申请
    • THERMAL PRINTER, THERMAL PRINTER CONTROL METHOD, AND PRINTING SYSTEM
    • 热打印机,热打印机控制方法和打印系统
    • US20120007936A9
    • 2012-01-12
    • US12237507
    • 2008-09-25
    • AKIRA KOYABUSatoshi NakajimaYuji Takiguchi
    • AKIRA KOYABUSatoshi NakajimaYuji Takiguchi
    • B41J2/325
    • B41J2/355B41J11/42
    • A thermal printer 1 and control method for controlling print speed to prevent variation in printing pitch due to frequent slight changes in the print speed following a significant change in print speed. The print speed, which is the speed at which the print medium i.e., paper is conveyed when printing, is controlled based on known print speed control factors. The thermal printer comprises a paper feed mechanism for conveying the print medium at a controlled print speed passed a thermal print head, a print speed control unit 9 for controlling the print speed of the paper feed mechanism based on the print speed control factors, a print speed change acquisition unit 3 for determining the change in the print speed over a predetermined time, and a comparison unit 7 for determining if the change in print speed exceeds a predetermined threshold value. The print speed control unit 9 limits change in the print speed based on the print speed control factors for a predetermined time after the comparison unit 7 determines that the change in print speed exceeds the threshold value.
    • 热敏打印机1和控制打印速度的控制方法,以防止由于打印速度的显着变化而导致的打印速度的频繁轻微变化而导致的打印间距变化。 基于已知的打印速度控制因素来控制打印速度,即打印介质即打印时传送纸张的速度。 热敏打印机包括用于以受控打印速度通过热打印头传送打印介质的进纸机构,用于基于打印速度控制因素控制供纸机构的打印速度的打印速度控制单元9,打印 用于确定在预定时间内的打印速度的变化的速度变化获取单元3以及用于确定打印速度的变化是否超过预定阈值的比较单元7。 打印速度控制单元9在比较单元7确定打印速度的改变超过阈值之后,基于打印速度控制因子限制预定时间的打印速度的变化。
    • 5. 发明申请
    • SEPARATE-TYPE DETECTOR
    • 分离式检测器
    • US20090026354A1
    • 2009-01-29
    • US12280536
    • 2006-02-23
    • Satoshi NakajimaMasayuki Itou
    • Satoshi NakajimaMasayuki Itou
    • H01J3/14
    • G08B17/103G01N21/534
    • [Object] An object is to provide a separated sensor capable of synchronizing a light transmitting unit with a light receiving unit, without using a control line.[Solving means] There is provided a separated sensor including a light transmitting unit that transmits detection light to a monitoring area, and a light receiving unit that receives detection light transmitted by the light transmitting unit, the light transmitting unit and the light receiving unit laid out separately from each other. On one of the light transmitting unit and the light receiving unit, there is provided a synchronization-light transmitting unit that transmits, by wireless, synchronization light to synchronize the light transmitting unit with the light receiving unit. On the other of the light transmitting unit and the light receiving unit, there are provided a synchronization-light receiving unit that receives the synchronization light transmitted from the synchronization-light transmitting unit, and a synchronization-establishment processing unit that performs a predetermined process to establish the synchronization based on the synchronization light received by the synchronization-light receiving unit.
    • 目的在于提供一种能够使光传输单元与光接收单元同步的分离的传感器,而不使用控制线。 [解决方案]提供了一种分离的传感器,包括将检测光传输到监视区域的光发送单元和接收由光发送单元,光发送单元和光接收单元传送的检测光的光接收单元 彼此分开。 在光发射单元和光接收单元中的一个上,设置有同步光发送单元,其通过无线方式发送同步光,以使光发送单元与光接收单元同步。 在光传输单元和光接收单元中的另一个中,设置有同步光接收单元,其接收从同步光发送单元发送的同步光,以及同步建立处理单元,其执行预定处理 基于由同步光接收单元接收的同步光来建立同步。
    • 7. 发明申请
    • KEYLESS ENTRY SYSTEM
    • 无钥匙进入系统
    • US20080258868A1
    • 2008-10-23
    • US12104733
    • 2008-04-17
    • Satoshi NakajimaSatoshi Hayasaka
    • Satoshi NakajimaSatoshi Hayasaka
    • G05B19/00
    • G07C9/00309B60R25/24G07C2009/00793G07C2209/63
    • A keyless entry system is provided that includes a vehicle-side device and a portable device. The vehicle-side device includes a vehicle-side transmission unit and a vehicle-side reception unit. The vehicle-side transmission unit is installed in a vehicle and connected to plural transmission antennas. The vehicle-side transmission unit transmits a request signal via signal lines. The vehicle-side reception unit receives an answer signal. The portable device includes a portable device-side reception unit that receives the request signal, and a portable device-side transmission unit that transmits the answer signal. The vehicle-side device includes a vehicle-side control unit that performs a predetermined control when the answer signal from the portable device is authenticated. The portable device includes a portable device-side control unit that detects the intensity of the signals transmitted from the plural transmission antennas. The vehicle-side control unit or the portable device-side control unit calculates distances between the portable device and the respective transmission antennas based on data of the intensity of the signals transmitted from the plural transmission antennas detected by the portable device-side control unit. When an added value of the distances calculated based on two of the intensity data is smaller than a predetermined threshold value, it is determined that the portable device is located inside the vehicle.
    • 提供一种无钥匙进入系统,其包括车辆侧装置和便携式装置。 车辆侧装置包括车辆侧发送单元和车辆侧接收单元。 车辆侧传输单元安装在车辆中并连接到多个发送天线。 车辆侧发送单元通过信号线发送请求信号。 车辆侧接收单元接收应答信号。 便携式设备包括接收请求信号的便携式设备侧接收单元和发送应答信号的便携式设备侧发送单元。 车辆侧设备包括当来自便携式设备的应答信号被认证时执行预定控制的车辆侧控制单元。 便携式设备包括便携式设备侧控制单元,其检测从多个发送天线发送的信号的强度。 车辆侧控制单元或便携式设备侧控制单元基于由便携式设备侧控制单元检测到的从多个发送天线发送的信号的强度的数据,计算便携式设备与各个发送天线之间的距离。 当基于两个强度数据计算的距离的附加值小于预定阈值时,确定便携式设备位于车辆内部。
    • 8. 发明授权
    • Thermal printer, thermal printer control method, and printing system
    • 热敏打印机,热敏打印机控制方法和打印系统
    • US07436418B2
    • 2008-10-14
    • US11492632
    • 2006-07-24
    • Akira KoyabuSatoshi NakajimaYuji Takiguchi
    • Akira KoyabuSatoshi NakajimaYuji Takiguchi
    • B41J2/32
    • B41J2/355B41J11/42
    • A thermal printer 1 and control method for controlling print speed to prevent variation in printing pitch due to frequent slight changes in the print speed following a significant change in print speed. The print speed, which is the speed at which the print medium i.e., paper is conveyed when printing, is controlled based on known print speed control factors. The thermal printer comprises a paper feed mechanism for conveying the print medium at a controlled print speed passed a thermal print head, a print speed control unit 9 for controlling the print speed of the paper feed mechanism based on the print speed control factors, a print speed change acquisition unit 3 for determining the change in the print speed over a predetermined time, and a comparison unit 7 for determining if the change in print speed exceeds a predetermined threshold value. The print speed control unit 9 limits change in the print speed based on the print speed control factors for a predetermined time after the comparison unit 7 determines that the change in print speed exceeds the threshold value.
    • 热敏打印机1和控制打印速度的控制方法,以防止由于打印速度的显着变化而导致的打印速度的频繁轻微变化而导致的打印间距变化。 基于已知的打印速度控制因素来控制打印速度,即打印介质即打印时传送纸张的速度。 热敏打印机包括用于以受控打印速度通过热打印头传送打印介质的进纸机构,用于基于打印速度控制因素控制供纸机构的打印速度的打印速度控制单元9,打印 用于确定在预定时间内的打印速度的变化的速度变化获取单元3以及用于确定打印速度的变化是否超过预定阈值的比较单元7。 打印速度控制单元9在比较单元7确定打印速度的改变超过阈值之后,基于打印速度控制因子限制预定时间的打印速度的变化。
    • 10. 发明授权
    • Photothyristor device, bidirectional photothyristor device and electronic apparatus
    • 光闸晶体管器件,双向光闸晶体管器件和电子设备
    • US07378687B2
    • 2008-05-27
    • US10934013
    • 2004-09-02
    • Satoshi NakajimaSeigo Okada
    • Satoshi NakajimaSeigo Okada
    • H01L21/00H01L29/74
    • H01L31/1113
    • In order to provide a photothyristor having high breakdown voltage and less-varying light sensitivity by improving the sensitivity and the breakdown voltage of the device while maintaining the device small, the device includes a silicon substrate, a transistor portion including an anode region, a gate region and a cathode region and placed on a first main surface of the silicon substrate, a light-receiving portion for receiving light from the outside, and an electrode for establishing an ohmic contact between the anode region and the cathode region. The light receiving portion includes an oxygen-doped polysilicon film overlaid on the silicon substrate through a transparent insulating film and is disposed to surround the transistor portion. The electrode is placed above the transistor portion and has a double-structure consisting of a center portion and an outer portion surrounding the center portion, and the center portion and the outer portion are electrically connected.
    • 为了通过提高器件的灵敏度和击穿电压同时保持器件的小型化,提供具有高击穿电压和较小变化的光敏感度的光闸晶体管,该器件包括硅衬底,包括阳极区域,栅极 区域和阴极区域,并且放置在硅衬底的第一主表面上,用于从外部接收光的光接收部分和用于在阳极区域和阴极区域之间建立欧姆接触的电极。 光接收部分包括通过透明绝缘膜覆盖在硅衬底上的氧掺杂多晶硅膜,并且被设置为围绕晶体管部分。 电极放置在晶体管部分的上方,并具有由中心部分和围绕中心部分的外部组成的双重结构,中心部分和外部部分电连接。