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    • 1. 发明授权
    • Multilayer capacitor
    • 多层电容器
    • US07715172B2
    • 2010-05-11
    • US12171442
    • 2008-07-11
    • Kenichi KawasakiNoriyuki InoueAkira SaitoMakito NakanoKenichi Oshiumi
    • Kenichi KawasakiNoriyuki InoueAkira SaitoMakito NakanoKenichi Oshiumi
    • H01G4/005H01G4/06
    • H01G4/232H01G4/2325H01G4/30
    • A multilayer capacitor includes a capacitor body in which internal electrodes in a first internal electrode group are overlapped with internal electrodes in a second internal electrode group with dielectric layers sandwiched therebetween. A first external electrode has a first wraparound portion and a second wraparound portion, and a second external electrode has a third wraparound portion and a fourth wraparound portion. The volume proportions of the effective layers in a first area sandwiched between the first wraparound portion and the second wraparound portion and in a third area sandwiched between the third wraparound portion and the fourth wraparound portion are set to at least about 10%. The volume proportions of the effective layers in a second area toward a lower surface in the first area and in a fourth area toward the lower surface in the third area are set to about 15% or less. The external dimensions of the multilayer capacitor 1 are about 1.6±0.1 mm in length by about 0.8±0.1 mm in width by about 0.8±0.1 mm in thickness.
    • 层叠电容器包括:电容器体,其中第一内部电极组中的内部电极与内部电极重叠在第二内部电极组中,其间夹有电介质层。 第一外部电极具有第一环绕部分和第二环绕部分,第二外部电极具有第三环绕部分和第四环绕部分。 被夹在第一环绕部分和第二环绕部分之间的第一区域和夹在第三环绕部分和第四环绕部分之间的第三区域中的有效层的体积比例设定为至少约10%。 在第二区域中的有效层向第一区域中的下表面和第三区域中朝向下表面的第四区域中的有效层的体积比例设定为约15%以下。 多层电容器1的外形尺寸约为1.6±0.1mm,宽度约为0.8±0.1mm,厚度约为0.8±0.1mm。
    • 2. 发明授权
    • Multilayer ceramic capacitor
    • 多层陶瓷电容器
    • US07715171B2
    • 2010-05-11
    • US12022722
    • 2008-01-30
    • Makito NakanoNoriyuki InoueKenichi Kawasaki
    • Makito NakanoNoriyuki InoueKenichi Kawasaki
    • H01G4/005H01G4/06
    • H01G4/012H01G4/232H01G4/30
    • The “squeal” that occurs when an electric field is applied to a multilayer ceramic capacitor mounted on a substrate is suppressed by providing in an active part contributing to formation of capacitances between internal electrodes facing each other in a capacitor body, low-activity regions positioned near respective end edges of respective external electrodes. A facing area of the internal electrodes in the low-activity regions is less than or equal to one fifth that of the internal electrodes in a normal region having the same volume as that of the low-activity regions. This makes it possible to suppress occurrence of electric-field-induced distortion near the external electrodes bonded to a substrate and reduce the force that causes the substrate to bend.
    • 通过在电容器主体中设置有助于形成彼此面对的内部电极之间的电容的有源部分来抑制电场施加到安装在基板上的多层陶瓷电容器时发生的“尖叫”,位于 靠近相应的外部电极的端部边缘。 在低活性区域内的内部电极的面对面积小于或等于具有与低活性区域相同体积的正常区域内部电极的面积的五分之一。 这使得可以抑制结合到衬底的外部电极附近的电场诱发变形的发生,并且减小引起衬底弯曲的力。
    • 8. 发明授权
    • Techniques for pre-distorting transmitted signals for a transmitter device
    • 用于对发射机设备的发射信号进行预失真的技术
    • US08204455B2
    • 2012-06-19
    • US12340518
    • 2008-12-19
    • Robert HardackerKenichi Kawasaki
    • Robert HardackerKenichi Kawasaki
    • H04B1/04
    • H04B1/0475H03F1/3241H04B2001/0425
    • Techniques for sending and receiving signals include pre-distorting signals before transmission across a communication path. The signals are pre-distorted as a function of a distortion on the communication path. In one embodiments, transmitter a broadcasts to receiver b and there is also a transmitter b broadcasting to receiver a. This return channel enables both transmitters a and b to have a priori information regarding the transmission medium and path the signal takes. In this way, the nature of the distortion or interference is known to the transmitter, therefore, it pre-distorts the transmitted signal to compensate for the receiver exceeding its capabilities in recovering signal.
    • 用于发送和接收信号的技术包括在通过通信路径传输之前的预失真信号。 信号作为通信路径上的失真的函数被预失真。 在一个实施例中,发射机a广播到接收机b,还有一个发射机b广播到接收机a。 这个返回信道使得发射机a和b能够具有关于传输介质和信号所采用的路径的先验信息。 以这种方式,发射机已知失真或干扰的性质,因此,它预先歪曲传输的信号,以补偿接收机超过恢复信号的能力。