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
    • 47. 发明授权
    • Speaker device
    • 扬声器装置
    • US08111869B2
    • 2012-02-07
    • US12515112
    • 2006-11-17
    • Minoru HorigomeHiroshi SatoTakuei NagasawaHiroya Oizumi
    • Minoru HorigomeHiroshi SatoTakuei NagasawaHiroya Oizumi
    • H04R1/00H04R9/06H04R11/02
    • H04R9/043H04R2307/207H04R2499/13
    • A speaker device includes a damper allowing high linearity. The speaker device includes a vibration body including a damper and a voice coil bobbin (bobbin), and a magnetic circuit having a plate. The damper has a first member arranged opposite the plate, and a second member projecting on a side of the plate from the first member. The first member has a movable part elastically supporting the bobbin. The movable part is a flat plate, and behaves with respect to a bent part provided between the movable part and the second member with movement of the bobbin in an acoustic radiation direction and reverse. Therefore, when a constant force is given to the damper via the voice coil, a displacement of the damper with respect to a rest position can be substantially similar in such a case that the damper behaves in the acoustic radiation direction and the reverse.
    • 扬声器装置包括允许高线性度的阻尼器。 扬声器装置包括具有阻尼器和音圈管架(绕线管)的振动体和具有板的磁路。 阻尼器具有与板相对设置的第一构件和从第一构件突出于板的一侧的第二构件。 第一构件具有弹性地支撑线轴的可动部。 可移动部分是平板,并且相对于设置在可移动部分和第二部件之间的弯曲部分,在线轴在声辐射方向和相反方向上运动。 因此,当通过音圈向阻尼器施加恒定的力时,阻尼器相对于静止位置的位移在阻尼器在声辐射方向和相反方向上的行为的情况下可以基本相似。
    • 49. 发明授权
    • Speaker device
    • 扬声器装置
    • US08073184B2
    • 2011-12-06
    • US12514872
    • 2006-11-17
    • Minoru HorigomeMichiro MatsudaHiroshi Sato
    • Minoru HorigomeMichiro MatsudaHiroshi Sato
    • H04R1/02
    • H04R9/02H04R1/06
    • In a speaker device, cutting wiring electrically connected to a conductive wire of an electronic component and a voice coil, and the conductive wire and the wiring are electrically connected without a speaker terminal lug. The speaker device includes wiring electrically connected to the voice coil, an electronic component having a component wire, and a frame. The frame has a conductive wire fixing part for fixing the conductive wire, and the conductive wire is fixed to the conductive wire fixing part to be directly connected to the wiring. Thereby, even if a vibration is transmitted to the frame at the time of driving the speaker device, the conductive wire never vibrates, and the conductive wire does not pull the wiring. Therefore, the conductive wire and wiring are not cut. Also, since the conductive wire is the speaker terminal lug, cost of the speaker device can be reduced.
    • 在扬声器装置中,电连接到电子部件和音圈的导线的切割布线和导线和布线电连接而没有扬声器端子凸耳。 扬声器装置包括电连接到音圈的布线,具有部件导线的电子部件和框架。 框架具有用于固定导线的导电线固定部分,并且导线固定到导电线固定部分以直接连接到布线。 因此,即使在驱动扬声器装置时振动传递到框架,导线也不会振动,并且导线不拉动布线。 因此,导线和布线不被切割。 此外,由于导线是扬声器端子凸耳,所以可以降低扬声器装置的成本。
    • 50. 发明申请
    • VEHICULAR CONTROL OBJECT DETERMINATION SYSTEM AND VEHICULAR TRAVEL LOCUS ESTIMATION SYSTEM
    • 车辆控制对象确定系统和车辆行驶位置估计系统
    • US20110224862A1
    • 2011-09-15
    • US13114663
    • 2011-05-24
    • Kiichiro SawamotoShigeru InoueHiroshi Sato
    • Kiichiro SawamotoShigeru InoueHiroshi Sato
    • G06F7/00
    • B60W40/02B60W10/06B60W30/16B60W2550/20G08G1/16
    • In a vehicular control object determination system, locus correlation degree calculator calculates a degree of correlation between a future travel locus of a vehicle estimated by first travel locus estimator based on a vehicle speed and a yaw rate and a future travel locus of the vehicle estimated by second travel locus estimator based on a past travel locus of the vehicle calculated by travel locus calculator. When control object determiner determines a control object based on the travel locus estimated by the first travel locus estimator and predetermined control object determination conditions, the control object determination conditions are modified according to the degree of correlation, that is, the degree of reliability of the travel locus estimated by the first travel locus estimator, thereby achieving both accuracy with which the control object is determined and determination of the control object at a distance.
    • 在车辆控制对象确定系统中,轨迹相关度计算器基于车速和横摆率来计算由第一行驶轨迹估计器估计出的车辆的未来行驶轨迹与由 基于由行驶轨迹计算器计算的车辆的过去行驶轨迹的第二行驶轨迹估计器。 当控制对象确定器基于由第一行进轨迹估计器估计的行驶轨迹和预定控制对象确定条件来确定控制对象时,根据相关程度,即相关度的可靠度来修改控制对象确定条件 由第一行进轨迹估计器估计的行驶轨迹,从而获得确定控制对象的精度和距离上的控制对象的确定。