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
    • 32. 发明授权
    • Conveyor apparatus
    • 输送装置
    • US07357240B2
    • 2008-04-15
    • US11474464
    • 2006-06-26
    • Yoshio OgimuraTakayuki KikuchiYasuhiro MatsumotoYoshinobu IshikawaShin Murakami
    • Yoshio OgimuraTakayuki KikuchiYasuhiro MatsumotoYoshinobu IshikawaShin Murakami
    • B65B21/02
    • B66B23/028
    • A conveyor apparatus comprises step chains which couple a plurality of steps such that the steps, and driving units which drive the chains. Each of the driving units comprises a power unit comprising a motor, and a driving machine including pulleys and belts that reduce a rotation speed of the motor so as to meet a required reduction gear ratio and transfer the rotation speed to the chains, and a pair of right and left driving mechanisms that convert a rotary movement transferred from the machine of the power unit via an eccentric shaft into a movement of rocking units, and apply a propelling force to the chains via pin rollers provided at any one of sides of the rocking units and the chains and gears provided at the other side of the rocking units and the chains to engage with the rollers.
    • 传送装置包括步骤链,其连接多个步骤,使得步骤和驱动链的驱动单元。 每个驱动单元包括一个包括马达的动力单元和一个包括滑轮和皮带的驱动机构,它们减小马达的旋转速度以满足所需的减速比并将转速传递给链条,以及一对 左右驱动机构,其将通过偏心轴从动力单元的机器转移的旋转运动转换成摇摆单元的运动,并且通过设置在摇摆的任一侧的销辊将链推动力施加到链条上 设置在摆动单元和链条的另一侧的链和齿轮与滚子啮合。
    • 34. 发明申请
    • Manufacturing method of optical component or molding die therefor
    • 光学元件或模具的制造方法
    • US20070160706A1
    • 2007-07-12
    • US11645420
    • 2006-12-26
    • Yasuhiro Matsumoto
    • Yasuhiro Matsumoto
    • A21C3/02
    • B28D1/22B23C3/16B23C2226/31B24B13/00G05B19/188G05B2219/45157G05B2219/45204G05B2219/49383Y10T29/49996Y10T409/303752Y10T409/303808
    • A method of manufacturing an optical component or a molding die for the optical component, the method comprising the steps of: cutting a surface of a work with a tool by rotating the tool around its axis with a cutting edge facing outward and moving in a circle to cut the work surface at a point of the circle while relatively moving the tool and the work in a line direction crossing to the axis of the tool at a predetermined feed speed; and cutting the work surface in a next line after relatively moving the tool and the work in a pitch direction perpendicular to the line direction by a pick feeding distance in such a condition that: tool rotation speed (S): 10000 to 30000 rpm; feed speed (F): 300 to 2000 mm/min; rotating radius (D) of a cutting edge of a tool: 5 to 15 mm; pick feeding distance (f): 0.01 to 0.04 mm; nose radius (r) of a cutting edge of a tool: 5 to 20 mm. The method allows to form a surface of a work into a free-form surface having a surface roughness of approximately 10 nm or less.
    • 一种制造用于光学部件的光学部件或成型模具的方法,所述方法包括以下步骤:通过使工具围绕其轴线旋转,以切割边朝外并以圆形方式移动来切割工具的表面 以在以与所述工具的轴线相交的方向相对移动所述工具和所述工件以预定的进给速度移动的同时切割所述工作表面; 在工具转动速度(S):10000〜30000rpm的条件下,使工件和垂直于线方向的俯仰方向的作业相对移动拾取进给距离,在下一行切割工作面。 进给速度(F):300〜2000mm / min; 刀具切削刃的旋转半径(D):5〜15mm; 拾取距离(f):0.01〜0.04mm; 刀具刀刃的刀尖半径(r):5〜20mm。 该方法允许将工件的表面形成具有约10nm或更小的表面粗糙度的自由形式表面。
    • 35. 发明申请
    • UWB communication device and UWB communication method
    • UWB通信设备和UWB通信方式
    • US20070014333A1
    • 2007-01-18
    • US11182673
    • 2005-07-15
    • Yasuhiro Matsumoto
    • Yasuhiro Matsumoto
    • H04B1/69H03K7/04H04L7/00
    • H04B1/7176H03K7/04H04B1/7172H04L7/0008H04L7/04
    • The present invention provides a UWB communication device and a UWB communication method with which the communication speed can be improved, and with which accurate sending and receiving of data and a lower power consumption can be achieved. A communication device in accordance with the present invention employs a sending/receiving method of sending four bits of data within four cycles of a system clock, sending the four bits of data by correlating them in a 1-to-1 relationship with seven types of pulse waveforms with only one pulse during the first seven half-cycles and nine different types of pulse waveforms with two pulses during the first seven half-cycles of four cycles of the system clock, and at the receiving side demodulating the modulated input data by correlating the sixteen types of pulse waveforms that have been sent back to the four bits of data. Furthermore, when receiving, the width of the received pulses is set to a length of 1.5 cycles of the quadruple system clock, and phase shifts are detected and adjusted by sampling the received pulses with the rising edges of the quadruple system clock.
    • 本发明提供了可以提高通信速度的UWB通信设备和UWB通信方法,并且可以实现数据的精确发送和接收以及更低的功耗。 根据本发明的通信设备采用在系统时钟的四个周期内发送四位数据的发送/接收方法,通过将它们以1对1关系与七种类型的 在系统时钟的四个周期的前七个半周期期间,在前七个半周期中仅具有一个脉冲的脉冲波形和九个不同类型的具有两个脉冲的脉冲波形,并且在接收侧通过相关来解调调制的输入数据 已发送回四位数据的16种脉冲波形。 此外,当接收时,接收脉冲的宽度被设置为四倍系统时钟的1.5个周期的长度,并且通过用四倍系统时钟的上升沿对接收到的脉冲进行采样来检测和调整相移。