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    • 82. 发明申请
    • RECORDING APPARATUS
    • 录音设备
    • US20120139993A1
    • 2012-06-07
    • US13305651
    • 2011-11-28
    • Akira YamadaShinichi Kamoshida
    • Akira YamadaShinichi Kamoshida
    • B41J29/393
    • B41J29/393B41J11/002
    • A recording apparatus including a recording head that discharges UV ink onto a recording material and an ultraviolet light irradiation unit that irradiates ultraviolet light to the discharged UV ink so as to harden the UV ink; further includes a failure diagnostic unit that diagnoses a failure condition of the ultraviolet light irradiation unit and a controller that controls operations of the recording head, the ultraviolet light irradiation unit, and the failure diagnostic unit. Further, the controller is so configured as to change the operation mode of the recording apparatus to a failure-state mode when the ultraviolet light irradiation unit has been diagnosed as a failure by the failure diagnostic unit.
    • 一种记录装置,包括:将UV油墨排放到记录材料上的记录头;以及紫外光照射单元,其将紫外光照射到排出的UV油墨上,以使UV油墨硬化; 进一步包括诊断紫外线照射单元的故障状态的故障诊断单元和控制记录头,紫外线照射单元和故障诊断单元的操作的控制器。 此外,控制器被配置为当紫外线照射单元已经被故障诊断单元诊断为故障时,将记录装置的操作模式改变为故障状态模式。
    • 83. 发明授权
    • Wireless communication device and wireless communication method
    • 无线通信设备和无线通信方式
    • US08009599B2
    • 2011-08-30
    • US11687845
    • 2007-03-19
    • Kei IgarashiAkira Yamada
    • Kei IgarashiAkira Yamada
    • H04Q7/20
    • H04B1/0475H04B1/1027H04W16/14H04W56/00H04W72/082
    • A wireless communication device that transmits packets, on the basis of a packet transmission scheme for allocating wireless bands with virtual carrier sensing, has: monitoring module for monitoring packets communicated between other wireless communication devices and base stations for a local cell and another cell; determination module for determining whether a possibility exists that a local station receives other-cell interference resulting from communication between the wireless communication device in the other cell and the base station, on the basis of the monitoring result; occupancy period detection module for detecting an occupancy period occupied due to communication between the wireless communication device in the other cell and the base station, on the basis of the monitoring results, when determination is made that receiving the other-cell interference is possible; and timing recognition module for recognizing a timing for avoiding the other-cell interference in a predetermined period on the basis of the occupancy period.
    • 基于用于分配具有虚拟载波感测的无线频带的分组传输方案来发送分组的无线通信装置具有:监视模块,用于监视在本地小区和另一小区之间在其他无线通信设备和基站之间传送的分组; 确定模块,用于基于监视结果确定本地站是否接收到由另一小区中的无线通信设备与基站之间的通信产生的其他小区干扰的可能性; 占用周期检测模块,用于当确定可能接收到其他小区干扰时,基于监视结果,检测由于另一小区中的无线通信设备与基站之间的通信而占用的占用周期; 以及定时识别模块,用于基于占用周期来识别在预定周期内避免其他小区干扰的定时。
    • 84. 发明授权
    • Coupling apparatus for passage blocks
    • 通道接头装置
    • US07942600B2
    • 2011-05-17
    • US11921759
    • 2005-06-09
    • Akira Yamada
    • Akira Yamada
    • F16C11/06
    • F16K27/003Y10T137/9029Y10T403/25Y10T403/255Y10T403/7015
    • A passage block coupling apparatus including a bolt insertion hole 13 and a pin insertion hole 14 formed in an upper-stage passage block 3, a screw hole 15 and a non-screw hole 16 that are formed in a lower-stage passage block 4, a bolt 11 that is inserted into the bolt insertion hole 13, and threaded with the screw hole 15, and a positioning pin 12 that is inserted to the pin insertion hole 14, with its lower end portion being fitted to the non-screw hole 16. A cut-out section 17 is formed near the lower end portion of the positioning pin 12, and a protruding portion 18 to be fitted to the cut-out section 17 is formed on the opening portion of the non-screw hole 16. A tightening force exerted by the bolt 11 and a force exerted by the lower end portion of the positioning pin 12 to press the protruding portion 18 of the non-screw hole 16 upward are balanced with each other so that an evenly fastened state is achieved so that the passage blocks 3 and 4 are coupled with each other.
    • 一种通道块联接装置,包括形成在下段通道块4中的上段通道块3,螺纹孔15和非螺纹孔16中的螺栓插入孔13和销插入孔14, 插入螺栓插入孔13并与螺纹孔15螺纹连接的螺栓11和插入销插入孔14的定位销12,其下端部嵌合在非螺纹孔16上 在定位销12的下端部附近形成切口部17,在非螺纹孔16的开口部形成有与切出部17嵌合的突出部18。 由螺栓11施加的紧固力和由定位销12的下端部分施加的力向上挤压非螺钉孔16的突出部分18彼此平衡,从而实现均匀的紧固状态,使得 通道块3和4彼此连接。
    • 88. 发明授权
    • Wireless communication device and wireless communication method
    • 无线通信设备和无线通信方式
    • US07738481B2
    • 2010-06-15
    • US11671280
    • 2007-02-05
    • Kei IgarashiAkira YamadaAtsushi FujiwaraTakatoshi Sugiyama
    • Kei IgarashiAkira YamadaAtsushi FujiwaraTakatoshi Sugiyama
    • H04L12/413
    • H04W72/1221H04L1/1887H04L65/80H04W28/18H04W74/085
    • A wireless communication device that performs packet transmission in accordance with a packet transmission system that performs wireless bandwidth allocation by virtual carrier sensing has a time-point management section that manages the time-point and outputs current time-point information, and a parameter management section that manages a parameter relating to packet transmission right acquisition priority. The parameter management section includes: a parameter holding section that holds, in association with a time-point, a parameter relating to packet transmission right acquisition priority that changes with a different distribution between wireless communication devices located in the same wireless LAN area, in a prescribed period; and a parameter alteration section that reads, from the parameter holding section, the parameter associated with current time-point information and dynamically alters a current parameter relating to packet transmission right acquisition priority in accordance with the parameter thus read.
    • 根据通过虚拟载波侦听执行无线带宽分配的分组传输系统执行分组传输的无线通信装置具有管理时间点并输出当前时间点信息的时间点管理部分,以及参数管理部分 管理与分组传输权获取优先级相关的参数。 参数管理部分包括:参数保持部分,其在时间点中保持与位于同一无线LAN区域中的无线通信设备之间以不同分布发生变化的分组发送权获取优先级相关的参数, 规定期限 以及参数修改部,其从参数保持部读取与当前时间点信息相关联的参数,并且根据所读取的参数动态地改变与分组发送权获取优先级有关的当前参数。
    • 90. 发明授权
    • Vapor-lift pump heat transport apparatus
    • 蒸汽提升泵热输送装置
    • US07721793B2
    • 2010-05-25
    • US11562500
    • 2006-11-22
    • Shigetoshi IppoushiNobuaki UeharaAkira YamadaTetsuro OgushiHisaaki Yamakage
    • Shigetoshi IppoushiNobuaki UeharaAkira YamadaTetsuro OgushiHisaaki Yamakage
    • F28D15/00F28F13/06
    • F28D15/0266F24T10/10F24T10/30F28D20/0052F28F2250/08Y02E10/12Y02E10/16Y02E60/142
    • A vapor-lift pump heat transport apparatus having a small heat resistance and a large heat transport capacity. A heat exchange circulating solution container has a first space and a second space communicating with the first space through a communication opening and contains a heat exchange circulating solution, and vapor thereof, in each space. A circulating solution transport passage includes a pipe connected to the solution outlet of the container and provided with a sensible heat releasing heat exchanger, a pipe disposed in the container, and a pipe connected to a vapor-liquid two-phase fluid inlet and provided with a heating heat exchanger. A vapor-liquid two-phase fluid flows into only the first space through the vapor-liquid two-phase fluid inlet. When the entrance of the vapor-liquid two-phase fluid has caused a pressure difference between the first and second spaces, a difference occurs between the positions of the vapor-liquid interfaces in the first and second spaces.
    • 一种具有小的耐热性和大的传热能力的蒸汽提升泵热输送装置。 热交换循环溶液容器具有通过连通口与第一空间连通的第一空间和第二空间,并且在每个空间中包含热交换循环溶液及其蒸汽。 循环溶液输送通道包括连接到容器的溶液出口并配有显热放热换热器的管,设置在容器中的管和连接到气液二相流体入口的管,并配有 一个加热热交换器。 气液两相流体仅通过气液两相流体入口流入第一空间。 当气液两相流体的入口已经引起第一和第二空间之间的压力差时,在第一和第二空间中的气液界面的位置之间出现差异。