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    • 3. 发明申请
    • BASE STATION APPARATUS PROVIDING RESOURCE BLOCK ALLOCATION AND METHOD THEREFOR
    • 基站提供资源块分配及其方法
    • US20110211545A1
    • 2011-09-01
    • US13104336
    • 2011-05-10
    • Akihiko NISHIOChristian WENGERTERHidetoshi SUZUKIKatsuhiko HIRAMATSU
    • Akihiko NISHIOChristian WENGERTERHidetoshi SUZUKIKatsuhiko HIRAMATSU
    • H04W72/04
    • H04W72/0453H04L5/0007H04L5/001H04L5/0042H04L5/0053H04W72/00H04W72/04H04W72/042H04W72/044
    • It is an object to provide a wireless communication base station device that can prevent the decline of a system throughput due to the degradation of a utilization efficiency of a communication resource of a channel for carrying out a frequency diversity transmission when a frequency scheduling transmission and a frequency diversity transmission are concurrently carried out in multiple carrier communication. In the wireless communication base station device, a modulation unit (12) carries out modulation processing for Dch data after coding to generate a Dch data symbol. A modulation unit (22) carries out modulation processing for Lch data after coding to generate an Lch data symbol. An allocation unit (103) allocates the Dch data symbol and Lch data symbol to each sub-carrier composing an OFDM symbol and outputs the allocated sub-carrier to a multiplex unit (104). In this case, the allocation unit (103) allocates the Dch data symbol to a plurality of resource blocks where one Dch is arranged at an interval equal to integral multiples of the number of resource blocks composing a resource block group.
    • 本发明的目的是提供一种无线通信基站装置,其能够防止由于在频率调度发送时的用于进行频率分集发送的信道的通信资源的利用效率的劣化而导致的系统吞吐量的下降 频率分集传输在多载波通信中同时进行。 在无线通信基站装置中,调制部(12)对编码后的Dch数据进行调制处理,生成Dch数据符号。 调制单元(22)对编码后的Lch数据进行调制处理,生成Lch数据符号。 分配单元(103)将Dch数据符号和Lch数据符号分配给构成OFDM符号的每个子载波,并将所分配的子载波输出到多路复用单元(104)。 在这种情况下,分配单元(103)将Dch数据符号分配给多个资源块,其中一个Dch以等于构成资源块组的资源块的数量的整数倍的间隔排列。
    • 4. 发明申请
    • SEMICONDUCTOR DEVICE AND MANUFACTURING METHOD THEREOF
    • 半导体器件及其制造方法
    • US20080251837A1
    • 2008-10-16
    • US12054800
    • 2008-03-25
    • Yoshiaki KATOYoshiharu ANDAAkihiko NISHIO
    • Yoshiaki KATOYoshiharu ANDAAkihiko NISHIO
    • H01L21/04H01L49/00
    • H01L29/7783H01L21/8252H01L27/0605H01L27/0883
    • A semiconductor device which includes both an E-FET and a D-FET and can facilitate control of the Vth in an E-FET and suppress a decrease in the Vf, and a manufacturing method of the same are provided. A semiconductor device which includes both an E-FET and a D-FET on the same semiconductor substrate includes: a first threshold adjustment layer for adjusting threshold of the E-FET; a first etching stopper layer formed on the first threshold adjustment layer; the second threshold adjustment layer formed on the first etching stopper layer for adjusting threshold of the D-FET; a second etching stopper layer formed on the second threshold adjustment layer; a first gate electrode penetrating through the first etching stopper layer, the second threshold adjustment layer, and the second etching stopper layer, which is in contact with the first threshold adjustment layer; and the second gate electrode penetrating through the second etching stopper layer, which is in contact with the second threshold adjustment layer.
    • 包括E-FET和D-FET两者的半导体器件,并且可以有助于控制E-FET中的Vth,并抑制Vf的降低,并且提供其制造方法。 在同一半导体衬底上包括E-FET和D-FET的半导体器件包括:用于调节E-FET的阈值的第一阈值调整层; 形成在第一阈值调整层上的第一蚀刻停止层; 所述第二阈值调整层形成在所述第一蚀刻停止层上,用于调节所述D-FET的阈值; 形成在所述第二阈值调整层上的第二蚀刻停止层; 穿过与第一阈值调整层接触的第一蚀刻停止层,第二阈值调节层和第二蚀刻阻挡层的第一栅电极; 并且所述第二栅电极贯穿与所述第二阈值调整层接触的所述第二蚀刻停止层。
    • 8. 发明申请
    • WIRELESS COMMUNICATION APPARATUS AND WIRELESS COMMUNICATION METHOD
    • 无线通信设备和无线通信方法
    • US20090258600A1
    • 2009-10-15
    • US12489133
    • 2009-06-22
    • Akihiko NISHIOJun CHENG
    • Akihiko NISHIOJun CHENG
    • H04B17/00
    • H04L1/0026H04L1/1671H04L5/003H04L5/0044H04L5/0046H04L5/0053H04L5/006H04W24/10H04W28/06H04W72/1231H04W72/1284Y02D70/00Y02D70/1244
    • A wireless communication apparatus is capable of increasing data capacity that can be transmitted and reducing power consumption by reducing the amount of control signal to be transmitted, and capable of increasing system capacity by reducing interference with respect to other wireless communication apparatuses.In this apparatus, control information extraction section (105) extracts information indicating the number of CQI's contained in control information.Reception quality measuring sections (113-1 to 113-n) measure reception quality of each sub-carrier within a communication band.CQI generating section (114) generates CQI's for some of the sub-carriers of superior reception quality within the communication band.Multiplexer (122) multiplexes CQI's, sub-carrier number information generating the CQI's, and ACK signals or NACK signals.The SC selecting section (127) then selects the number of sub-carriers from a base station apparatus of superior reception quality allocated using the CQI quantity designation information.
    • 无线通信装置能够通过减少要发送的控制信号的量来增加可发送的数据容量并降低功耗,并且能够通过减少对其他无线通信装置的干扰来提高系统容量。 在该装置中,控制信息提取部(105)提取表示控制信息中包含的CQI的数量的信息。 接收质量测量部分(113-1至113-n)测量通信频带内每个子载波的接收质量。 CQI生成部(114)为通信频带内的优良接收质量的一些子载波生成CQI。 复用器(122)复用CQI,产生CQI的子载波号信息,以及ACK信号或NACK信号。 然后,SC选择部(127)从使用CQI数量指定信息分配的优良接收质量的基站装置中选择副载波的数量。
    • 9. 发明申请
    • GAS LASER OSCILLATING UNIT
    • 气体激光振荡器
    • US20080013585A1
    • 2008-01-17
    • US11771725
    • 2007-06-29
    • Akira EGAWATakafumi MURAKAMIAkihiko NISHIO
    • Akira EGAWATakafumi MURAKAMIAkihiko NISHIO
    • H01S3/03
    • H01S3/036H01S3/073H01S3/2232H01S3/2237
    • A gas laser oscillating unit having a gas junction part where gas flow may be stable, whereby a stable laser beam output and/or a laser beam that does not fluctuate very much may be achieved. The laser gas, flowing through first and second excitation parts, is introduced into the first and second tapered gas flow passages. After that, the two gas flows are mixed at or near the center point of a gas junction part and the mixed gas flows in a next flow passage. Then, one of the gas flows from the first excitation part is biased toward the −X direction by a first biasing member arranged in the first gas flow passage, and the other gas flow from the second excitation part is biased toward the +X direction by a second biasing member arranged in the second gas flow passage.
    • 一种具有气体接合部分的气体激光振荡单元,其中气体流动可以是稳定的,由此可以实现不太大波动的稳定的激光束输出和/或激光束。 流过第一和第二激励部分的激光气体被引入到第一和第二锥形气体流动通道中。 之后,两个气流在气体接合部的中心点处或其附近混合,混合气体在下一个流路中流动。 然后,通过设置在第一气体流路中的第一偏置构件将来自第一激励部的气体中的一个流向-X方向偏置,另外从第二激励部流出的气体向+ X方向偏移 布置在第二气体流动通道中的第二偏压构件。
    • 10. 发明申请
    • BASE STATION AND MOBILE STATION COMMUNICATING WITH OFDM SYSTEM USING A PLURALITY OF SUBCARRIERS AND COMMUNICATION METHOD WITH OFDM SYSTEM USING A PLURALITY OF SUBCARRIERS
    • 基站和移动站与OFDM系统通信使用多个SUBCARRIERS和通信方法与OFDM系统使用大量的SUBCARRIERS
    • US20110305261A1
    • 2011-12-15
    • US13217018
    • 2011-08-24
    • Akihiko NISHIO
    • Akihiko NISHIO
    • H04B1/707H04L27/28
    • H04L5/0048H04L5/0007H04L5/0046H04L5/0094H04W72/08
    • A multicarrier communication apparatus that is capable of suppressing interference of feedback information with other channels and alleviating a reduction in an uplink capacity. In PL signal reception section (260) of this apparatus, PL signal extraction section (261) extracts pilot signals and reception quality measuring section (262) measures reception quality such as an SIR. Here, since pilot signals are included in respective subcarriers, reception quality measuring section (262) measures reception quality of subcarriers. FBSC determining section (270) determines a feedback information subcarrier based on the reception quality of subcarriers. More specifically, FBSC determining section (270) determines a subcarrier having the highest reception quality as a feedback information subcarrier. FBSC determining section (270) outputs information about the feedback information subcarrier (FBSC information) to control CH transmission section (110) and FB information reception section (250).
    • 一种多载波通信装置,其能够抑制反馈信息与其他信道的干扰并减轻上行链路容量的降低。 在PL装置的PL信号接收部(260)中,PL信号提取部(261)提取导频信号,接收品质测定部(262)测定SIR等接收质量。 这里,由于各子载波中包含导频信号,所以接收质量测定部262测量副载波的接收质量。 FBSC确定部分(270)基于子载波的接收质量来确定反馈信息子载波。 更具体地,FBSC确定部(270)将具有最高接收质量的副载波确定为反馈信息副载波。 FBSC确定部分(270)将关于反馈信息副载波(FBSC信息)的信息输出到控制CH发送部分(110)和FB信息接收部分(250)。