会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Semiconductor device and method of manufacturing the same
    • 半导体装置及其制造方法
    • US06600210B1
    • 2003-07-29
    • US09679583
    • 2000-10-04
    • Osamu KatoMorihisa HirataYasuyuki Morishita
    • Osamu KatoMorihisa HirataYasuyuki Morishita
    • H01L2900
    • H01L27/0288H01L27/0266
    • A semiconductor device is provided, which is provided with a high resistance to surge currents. The semiconductor device comprises three N+ diffusion layers 4a, 4b, and 4c in a region surrounded by an element-separating insulating film 3a. The N+ diffusion layer 4a forms a source diffusion layer of an N-channel MOS transistor 11a, the N+ diffusion layer 4c forms a source diffusion layer of another N-channel MOS transistor 11b, and the N+ diffusion layer 4b forms drain diffusion layers for two N-channel MOS transistors 11a and 11b. That is, respective drain diffusion layers of two N-channel MOS transistors are shared. Furthermore, a ring-shaped mask insulating film 18 is formed on the N+ diffusion layer 4b. A silicide layer 6b is formed on the N+ diffusion layer 4b except the area covered by the ring-shaped mask insulating film 18.
    • 提供了一种半导体器件,其具有高的浪涌电流电阻。 半导体器件在由元件分离绝缘膜3a包围的区域中包括三个N +扩散层4a,4b和4c。 N +扩散层4a形成N沟道MOS晶体管11a的源极扩散层,N +扩散层4c形成另一N沟道MOS晶体管11b的源极扩散层,N +扩散层4b形成漏极扩散层2 N沟道MOS晶体管11a和11b。 也就是说,两个N沟道MOS晶体管的各个漏极扩散层被共享。 此外,在N +扩散层4b上形成环状掩模绝缘膜18。 除了由环形掩模绝缘膜18覆盖的区域之外,在N +扩散层4b上形成硅化物层6b。
    • 5. 发明申请
    • Resin-coated aluminum alloy sheet material for aluminum electrolytic capacitor case, case for aluminum electrolytic capacitor, and aluminum electrolytic capacitor
    • 铝电解电容器外壳,铝电解电容器和铝电解电容器用树脂涂层铝合金板材
    • US20090237864A1
    • 2009-09-24
    • US12309003
    • 2008-01-11
    • Osamu KatoToshiki MaezonoMasatsugu Saito
    • Osamu KatoToshiki MaezonoMasatsugu Saito
    • H01G9/08B32B5/16H05K5/00
    • C09D167/00C08G59/4021C08L23/04C08L91/06C09D163/00C09D175/06H01G9/08Y10T428/254
    • A resin-coated aluminum alloy sheet material for an aluminum electrolytic capacitor case has a superior formability even when being formed into an aluminum electrolytic capacitor case having a large height/diameter ratio, using a volatile press oil.A resin layer contains wax composed of at least one of polyethylene wax and carnauba wax, and has a thickness falling within a range from at least 2 μm to at most 22 μm. A total of lengths of wax particles, defined when the wax particles are cut along a straight line of 100 μm optionally drawn on the surface of the resin layer, is at least 10 μm. A number of the wax particles, featured by a cross-sectional shape having a size of at most 80% of the thickness of the resin layer and of at least 0.1 μm, is from at least 3 to at most 50. A number of the wax particles, featured by a cross-sectional shape featured by a major axis extent having a size of more than 80% of the thickness of the resin layer is less than 10. Although the resin-coated aluminum alloy sheet material is formed into an aluminum electrolytic capacitor case having a large height/diameter ratio, cracks and peelings do not occur in the resin layer.
    • 一种用于铝电解电容器壳体的树脂涂覆的铝合金板材即使在使用挥发性压榨油形成具有大的高/直径比的铝电解电容器壳体时也具有优异的成形性。 树脂层含有由聚乙烯蜡和巴西棕榈蜡中的至少一种构成的蜡,其厚度在2μm以上至22μm以下的范围内。 当蜡颗粒沿着树脂层的表面上任意拉伸的100米直线上切割时,蜡颗粒的总长度至少为10微米。 许多具有至少为树脂层厚度80%的至少为0.1μm的截面形状的蜡颗粒为至少3至至多50个。 具有由具有大于树脂层厚度的80%的尺寸的长轴范围的横截面形状的蜡颗粒小于10.尽管树脂涂覆的铝合金板材形成为铝 在高度/直径比较大的电解电容器壳体中,在树脂层中不会发生裂纹和剥离。
    • 7. 发明授权
    • Mobile communication system
    • 移动通信系统
    • US07573838B2
    • 2009-08-11
    • US11049728
    • 2005-02-04
    • Kenichi MiyoshiKatsuhiko HiramatsuTakahisa AoyamaAtsushi SumasuOsamu Kato
    • Kenichi MiyoshiKatsuhiko HiramatsuTakahisa AoyamaAtsushi SumasuOsamu Kato
    • H04B7/005G08C17/00
    • H04W28/22H04W24/00H04W52/0229H04W52/0245H04W52/0258H04W52/24H04W52/26H04W72/12H04W72/1284Y02D70/00
    • A mobile communication system which is capable of, when carrying out mobile communication using a shared channel, increasing in efficiency of transmission timing of the data transmission rate request value to prevent wasteful power consumption and hence reduce power consumption. The mobile station apparatus of the mobile communication system measures CIR of the received signal from the base station apparatus at the CIR measuring section, and decides the data transmission rate request value corresponding to the measured CIR value at the rate request value deciding section. Also, it detects an error of the received signal at the CRC section, and, when no error is found, calculates a difference between the average data transmission rate from the base station apparatus and the data transmission request value at the rate request value transmission controlling section. Then, it transmits the data transmission rate request value to the base station apparatus only when the obtained difference is larger than a threshold value.
    • 能够在使用共享信道进行移动通信时能够提高数据传输速率请求值的发送定时的效率的移动通信系统,以防止浪费的功率消耗并因此降低功耗。 移动通信系统的移动站装置在CIR测量部分测量来自基站装置的接收信号的CIR,并且确定与速率请求值确定部分所测量的CIR值对应的数据传输速率请求值。 此外,它检测在CRC部分的接收信号的错误,并且当没有发现错误时,计算来自基站装置的平均数据传输速率与速率请求值传输控制的数据传输请求值之间的差异 部分。 然后,只有当获得的差值大于阈值时,才向基站装置发送数据传输速率请求值。
    • 10. 发明申请
    • Communication terminal apparatus and base station apparatus
    • 通信终端装置和基站装置
    • US20060121930A1
    • 2006-06-08
    • US11341430
    • 2006-01-30
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Sumasu
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Sumasu
    • H04B7/00
    • H04W52/265H04W52/24H04W52/241H04W52/246H04W52/262H04W52/267H04W52/367
    • An allocation section 101 in a base station apparatus of the present invention sets the transmission rate of a transmit signal for a communication terminal apparatus based on a DRC signal transmitted from that communication terminal apparatus. A power margin information detector 117 detects power margin information from a demodulated signal generated by a demodulator 115, and, using that power margin information, a power setting section 118 makes a setting so as to give the minimum transmission power value at which received signal characteristics in each communication terminal apparatus meet the desired quality. Using the set transmission power value, the base station apparatus transmits a transmit signal of the set transmission rate to a communication terminal apparatus. By this means it is possible to suppress interference to a communication terminal apparatus that performs adaptive modulation communication with another base station apparatus and a communication terminal apparatus that performs adaptive modulation communication with the local base station apparatus at the same time.
    • 本发明的基站装置中的分配部101基于从该通信终端装置发送的DRC信号来设定通信终端装置的发送信号的发送速度。 功率余量信息检测器117从解调器115产生的解调信号中检测功率余量信息,并且使用该功率余量信息,功率设定部118进行设定,以便给出接收信号特性 在每个通信终端设备中满足期望的质量。 使用设定的发送功率值,基站装置向通信终端装置发送所设定的发送速率的发送信号。 通过这种方式,可以抑制对与本地基站装置同时执行自适应调制通信的另一基站装置和通信终端装置进行自适应调制通信的通信终端装置的干扰。