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    • 2. 发明申请
    • 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
    • US20120293595A1
    • 2012-11-22
    • US13562688
    • 2012-07-31
    • Akira KOYABUSatoshi NAKAJIMAYuji TAKIGUCHI
    • Akira KOYABUSatoshi NAKAJIMAYuji TAKIGUCHI
    • B41J2/325
    • B41J2/355B41J11/42
    • A thermal printer and control method for a thermal printer is provided. The thermal printer includes a print head and a paper feed mechanism for conveying a print medium past the print head at a controlled print speed based on predetermined print speed control factors. Operations include determining the print speed of the print medium based on the print speed control factors; determining a change, if any, in the print speed; determining if the change in print speed exceeds a predetermined threshold value; and controlling the paper feed mechanism to limit the change in the print speed if the change in the print speed is determined to have exceeded the threshold value. The change of the print speed is decreased for at least one predetermined time when the change in the print speed is determined to have exceeded the threshold value.
    • 提供一种用于热敏打印机的热敏打印机和控制方法。 热敏打印机包括打印头和进纸机构,用于基于预定的打印速度控制因素以受控的打印速度传送打印介质经过打印头。 操作包括基于打印速度控制因素确定打印介质的打印速度; 确定打印速度的变化(如果有的话); 确定打印速度的变化是否超过预定的阈值; 以及如果确定所述打印速度的变化已经超过所述阈值,则控制所述供纸机构来限制所述打印速度的变化。 当确定打印速度的变化已经超过阈值时,打印速度的改变减少至少一个预定时间。
    • 4. 发明授权
    • Keyless entry apparatus
    • 无钥匙进入装置
    • US08044770B2
    • 2011-10-25
    • US11936301
    • 2007-11-07
    • Satoshi NakajimaSatoshi Hayasaka
    • Satoshi NakajimaSatoshi Hayasaka
    • G08B21/00
    • B60R25/245
    • A keyless entry apparatus determines whether a portable apparatus is positioned inside/outside an interface of a vehicle. When an in-vehicle control unit detects that a portable apparatus is positioned in a region which is affected by crosstalk and/or in which saturation occurs, in the vicinities of some of a plurality of transmitting antennas, based on intensity data from some of the plurality of transmitting antennas, the in-vehicle control unit determines whether intensity data from the transmitting antenna is included in a data group composed of a plurality of intensity data that are transmitted from the transmitting antennas and then received by the portable apparatus when the portable apparatus is positioned along the inside of an interface. When it is determined that the intensity data is included/not included in the data group, the in-vehicle control unit determines that the portable apparatus is positioned inside/outside the vehicle.
    • 无钥匙进入装置确定便携式装置是否位于车辆的接口的内部/外部。 当车载控制单元检测到便携式设备位于受串扰影响的区域和/或发生饱和的区域中时,在多个发射天线中的一些发射天线的附近,基于来自一些 多个发送天线,车载控制单元确定来自发送天线的强度数据是否包括在由发送天线发送的多个强度数据组成的数据组中,然后在便携式设备 沿着界面的内侧定位。 当确定强度数据被包括/不包括在数据组中时,车载控制单元确定便携式设备位于车辆内部/外部。
    • 5. 发明授权
    • Separate-type detector with redundant synchronization feature
    • 具有冗余同步功能的独立型检测器
    • US07968837B2
    • 2011-06-28
    • US12280536
    • 2006-02-23
    • Satoshi NakajimaMasayuki Itou
    • Satoshi NakajimaMasayuki Itou
    • G06M7/00
    • G08B17/103G01N21/534
    • 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.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.
    • 目的是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。 提供了一种分离的传感器,其包括将检测光传输到监视区域的光发射单元,以及光接收单元,其接收由光发射单元,光发射单元和光接收单元传输的检测光, 其他。 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
    • ETHERNET LINK AGGREGATION
    • 以太网链路聚合
    • US20100215042A1
    • 2010-08-26
    • US12393727
    • 2009-02-26
    • Masakazu SatoSatoshi NakajimaKazunari Suzuki
    • Masakazu SatoSatoshi NakajimaKazunari Suzuki
    • H04L12/56
    • H04L45/245H04L12/413H04L45/745H04L49/351H04L61/2092H04L69/22H04W84/18Y02D50/30
    • A system and method of transmitting data across a link aggregation group, the method comprises: receiving a packet sourced from a client having a MAC header and an IP header at an input port of a first upstream switch for transmission from the first upstream switch along a link aggregation and at least two down stream switches to a server, said MAC header having a Destination MAC address and a Source MAC address, and the IP header having a Source IP address and a Destination IP address; changing the destination MAC address from a down stream destination to another down stream destination; sending the packet through a first link aggregation to a first down stream switch; using a hash calculation for changing the Source MAC address of the packet in the first down stream switch to a new address; sending the packet through a second link aggregation to a second down stream switch having an address; and sending the packet from the second down stream switch to a server having a server address.
    • 一种通过链路聚合组发送数据的系统和方法,所述方法包括:从第一上游交换机的输入端口接收来自具有MAC报头和IP报头的客户端的分组,以从第一上游交换机沿着 链路聚合和至少两个下行切换到服务器,所述MAC报头具有目的地MAC地址和源MAC地址,所述IP报头具有源IP地址和目的地IP地址; 将目的MAC地址从下行目的地改变到另一下行目的地; 通过第一链路聚合将分组发送到第一下行链路交换机; 使用哈希计算来将第一下行切换中的分组的源MAC地址改变为新的地址; 通过第二链路聚合将分组发送到具有地址的第二下行交换机; 并将分组从第二下行交换机发送到具有服务器地址的服务器。
    • 8. 发明申请
    • GRAVITY DRIVEN USER INTERFACE
    • GRAVITY驱动用户界面
    • US20100138766A1
    • 2010-06-03
    • US12327750
    • 2008-12-03
    • Satoshi Nakajima
    • Satoshi Nakajima
    • G06F3/033G06F3/048
    • G06F1/1694G06F1/1626G06F2200/1637
    • Methods, systems, and techniques for presenting user interface elements on display screens are provided, in particular smaller display screens such as those available with mobile telecommunications devices. Example embodiments provide a gravity-based user interface mechanism which causes a menus to be displayed or to disappear when the mechanism determines that the device has been tilted up or down. In some embodiments, the mechanism causes an undo or a redo operation to occur when a tilt of the side or the opposite side of the device downward is detected. In one embodiment, a tilt downward of the left side cause an undo, whereas a tilt downward of the right side causes a redo. This abstract is provided to comply with rules requiring an abstract, and it is submitted with the intention that it will not be used to interpret or limit the scope or meaning of the claims.
    • 提供了用于在显示屏幕上呈现用户界面元素的方法,系统和技术,特别是诸如具有移动电信设备的更小的显示屏幕。 示例性实施例提供了一种基于重力的用户界面机制,当机构确定设备已经向上或向下倾斜时,导致菜单显示或消失。 在一些实施例中,当检测到装置的侧面或相对侧的倾斜时,该机构导致发生撤消或重做操作。 在一个实施例中,左侧的向下倾斜导致撤消,而右侧的向下倾斜导致重做。 提供本摘要以符合要求摘要的规则,并提交其意图是不会用于解释或限制权利要求书的范围或含义。
    • 9. 发明申请
    • Thermal head and printer
    • 热敏头和打印机
    • US20090225149A1
    • 2009-09-10
    • US12283967
    • 2008-09-17
    • Kohei OsawaSatoshi NakajimaAkira Koyabu
    • Kohei OsawaSatoshi NakajimaAkira Koyabu
    • B41J2/335
    • B41J2/33515B41J2/33565B41J2/3357
    • A thermal head avoids a drop in print quality caused by adhesion of printing chaff. A thermal head 39 that presses against thermal paper that moves from one side to the other side and prints by melting dye contained in the thermal paper has a glazed layer 150 that is formed in an area on one part of a ceramic substrate 43 and stores in-flowing heat, and a heating resistor 140 that is located offset to one side from the center of the glazed layer 150, selectively heats the thermal paper S pressed in contact therewith, and melts a dye material contained in the thermal paper. A smooth surface P against which the thermal paper S heated by the heating resistor 140 slides is formed to the other side of the glazed layer 150 from the heating resistor 140.
    • 热敏头可以避免打印质量下降,这是由于印刷机的粘附而引起的。 按压热敏纸的热敏头39,其从一侧移动到另一侧,并通过熔化包含在热敏纸中的染料进行打印,具有形成在陶瓷基板43的一部分上的区域中的玻璃层150, 以及从玻璃层150的中心偏移到一侧的加热电阻器140,选择性地加热与其接触的按压的热敏纸S,并且熔化包含在热敏纸中的染料材料。 由加热电阻140加热的热敏纸S滑动的平滑表面P从加热电阻器140形成到玻璃层150的另一侧。
    • 10. 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
    • US20090066778A1
    • 2009-03-12
    • US12237507
    • 2008-11-18
    • 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。