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    • 33. 发明申请
    • COMMUNICATION APPARATUS AND COMMUNICATION CONTROL METHOD
    • 通信设备和通信控制方法
    • US20110080834A1
    • 2011-04-07
    • US12896567
    • 2010-10-01
    • Masaki HirotaJun Tanaka
    • Masaki HirotaJun Tanaka
    • H04L12/26
    • H04L47/20H04L47/10H04L47/266H04L47/30
    • A communication apparatus that sends and receives signals, the communication apparatus includes a pause signal transmitter that transmits a pause signal to a plurality of linked apparatus that send data to the communication apparatus, wherein the pause signal requests that the transmission of data to the communication apparatus be temporarily paused, and a transmission controller that uses guaranteed rates prescribed for respective linked apparatus as a basis for separately controlling how the pause signal is transmitted to respective linked apparatus receiving the signal, wherein the transmission controller controls how the pause signal is transmitted such that the data transfer rates from respective linked apparatus to the communication apparatus become rates equal to or greater than the guaranteed rates corresponding to the respective linked apparatus.
    • 一种发送和接收信号的通信装置,所述通信装置包括暂停信号发送机,其将暂停信号发送到向所述通信装置发送数据的多个链接装置,其中所述暂停信号请求向所述通信装置发送数据 临时暂停,以及使用为各个链接装置规定的保证率的传输控制器作为分别控制如何将暂停信号发送到接收信号的各个链接装置的基础的基础,其中,传输控制器控制如何传送暂停信号,使得 从各个链接装置到通信装置的数据传输速率变为等于或大于对应于相应链接装置的保证速率的速率。
    • 34. 发明申请
    • PACKET PROCESSING APPARATUS AND COMMUNICATION DEVICE
    • 分组处理设备和通信设备
    • US20100208592A1
    • 2010-08-19
    • US12707251
    • 2010-02-17
    • Naoki MATSUOKAJun Tanaka
    • Naoki MATSUOKAJun Tanaka
    • H04L12/56H04L12/26
    • H04L49/40H04L43/0882H04L49/506
    • A packet processing apparatus for receiving incoming packets transmitted from any of the other apparatuses, processing the incoming packets and transmitting the processed packets to any of the other apparatuses, includes a buffer for temporarily storing the incoming packets; a processing unit for processing the incoming packets stored in the buffer and transmitting the processed packets to any of the other apparatuses; and a mode controller for controlling an operation mode of the processing unit, wherein when the mode controller is to change the operation mode of the processing unit, the mode controller generates a request for suspension of transmitting incoming packets to the any of the other apparatuses, confirms that the processing unit has completed processing of all the incoming packets stored in the buffer, changes the operation mode of the processing unit, and generates a request for resume of transmitting incoming packets to the any other apparatuses.
    • 一种分组处理设备,用于接收从任何其他设备发送的进入分组,处理所述传入分组并将所处理的分组发送到任何其他设备,包括用于临时存储所述传入分组的缓冲器; 处理单元,用于处理存储在缓冲器中的输入分组,并将处理的分组发送到任何其他设备; 以及模式控制器,用于控制处理单元的操作模式,其中当模式控制器要改变处理单元的操作模式时,模式控制器产生暂停将输入分组发送到任何其他设备的请求, 确认处理单元已经完成对存储在缓冲器中的所有进入分组的处理,改变处理单元的操作模式,并且产生用于恢复向其他设备发送传入分组的请求。
    • 35. 发明申请
    • Liquid Crystal Display Device and Method of Manufacturing the Same
    • 液晶显示装置及其制造方法
    • US20090153781A1
    • 2009-06-18
    • US12336570
    • 2008-12-17
    • Miharu OtaniJun TanakaKazuhito MasudaMasaya AdachiTakato Hiratsuka
    • Miharu OtaniJun TanakaKazuhito MasudaMasaya AdachiTakato Hiratsuka
    • G02F1/1347G02F1/13
    • G02B5/3016G02F1/133528G02F1/133555
    • In a transflective liquid crystal display device including a transmission display portion and a reflection display portion, a dichroic ratio of a polarizing layer contained in a reflection region is increased to enhance display performance. The liquid crystal display device includes: the transmission display portion and the reflection display portion which are formed for each pixel; a reflective layer formed in the reflection display portion; a first substrate having a principal surface opposed to a liquid crystal layer; a second substrate opposed to the first substrate via the liquid crystal layer; and a polarizing layer formed above the reflective layer via an underlying layer thereof on the principal surface of the first substrate. The polarizing layer is made of chromonic liquid crystalline molecules, and an interface between the polarizing layer and the underlying layer has one of a siloxane structure and a silazane structure.
    • 在包括透射显示部分和反射显示部分的半透射型液晶显示装置中,增加包含在反射区域中的偏振层的二色性比,以提高显示性能。 液晶显示装置包括:为每个像素形成的透射显示部分和反射显示部分; 形成在所述反射显示部中的反射层; 具有与液晶层相对的主表面的第一基板; 经由所述液晶层与所述第一基板相对的第二基板; 以及在第一基板的主表面上经由其下层形成在反射层上方的偏振层。 偏振层由发色液晶分子构成,偏振层与下层之间的界面具有硅氧烷结构和硅氮烷结构之一。
    • 38. 发明申请
    • Layer-stacked wiring and method for manufacturing same and semiconductor device using same and method for manufacturing semiconductor device
    • 层叠布线及其制造方法以及使用该半导体装置的半导体装置以及半导体装置的制造方法
    • US20070221922A1
    • 2007-09-27
    • US11723600
    • 2007-03-21
    • Jun TanakaHiroshi Kanoh
    • Jun TanakaHiroshi Kanoh
    • H01L31/00
    • H01L29/4908H01L29/66757
    • A layer-stacked wiring made up of a microcrystalline silicon thin film and a metal thin film is provided which is capable of suppressing an excessive silicide formation reaction between the microcrystalline silicon thin film and metal thin film, thereby preventing peeling of the thin film. In a polycrystalline silicon TFT (Thin Film Transistor) using the layer-stacked wiring, the microcrystalline silicon thin film is so configured that its crystal grains each having a length of the microcrystalline silicon thin film in a direction of a film thickness being 60% or more of a film thickness of the microcrystalline silicon thin film amount to 15% or less of total number of crystal grains or that its crystal grains each having a length of the microcrystalline silicon thin film in a direction of a film thickness being 50% or less of a film thickness of the microcrystalline silicon thin film amount to 85% or more of the total number of crystal grains making up the microcrystalline silicon thin film.
    • 提供了由微晶硅薄膜和金属薄膜构成的层叠布线,其能够抑制微晶硅薄膜和金属薄膜之间的过度的硅化物形成反应,从而防止薄膜的剥离。 在使用层叠布线的多晶硅TFT(Thin Film Transistor,多晶硅TFT)中,微晶硅薄膜的结构使得其晶粒各自具有薄膜厚度为60%的微晶硅薄膜的长度, 微晶硅薄膜的膜厚更多为15个以下的晶粒总数,或者其晶粒尺寸为50%以下,每个微晶硅薄膜的长度均为50%以下 的微晶硅薄膜的膜厚的总和为构成微晶硅薄膜的晶粒总数的85%以上。