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
    • Facsimile apparatus for determining communication failure
    • 用于确定通信故障的传真装置
    • US5321741A
    • 1994-06-14
    • US795449
    • 1991-11-21
    • Shigehiko KanekoYuji Hirai
    • Shigehiko KanekoYuji Hirai
    • G08B7/00H04M11/00H04N1/32H04N1/42
    • H04N1/00485H04N1/00488H04N1/32614H04N1/3263H04N1/32657
    • An automatic dial device transmits a dial signal to a telephone line. A facsimile signal receiver serves to receive a response facsimile signal from the telephone line. An image signal is transmitted from an image data store unit to the telephone line in cases where the facsimile signal receiver receives a response facsimile signal during a predetermined period after the automatic dial device transmits a dial signal. The telephone line is opened in cases where a busy signal is detected by a busy signal detector during the predetermined period after the automatic dial device transmits a dial signal. The telephone line is opened in cases where the busy signal detector continues to not detect a busy signal during the predetermined period after the automatic dial device transmits a dial signal. A communication failure is indicated in cases where the busy signal detector continues to not detect a busy signal during the predetermined period after the automatic dial device transmits a dial signal.
    • 自动拨号设备将拨号信号发送到电话线路。 传真信号接收器用于从电话线路接收响应传真信号。 在传真信号接收机在自动拨号设备发送拨号信号之后的预定时段内接收到响应传真信号的情况下,图像信号从图像数据存储单元发送到电话线。 在自动拨号设备发送拨号信号之后的预定时段期间,忙碌信号检测器检测到忙信号的情况下,电话线被打开。 在自动拨号设备发送拨号信号之后的预定时间段期间,忙信号检测器继续不检测忙信号的情况下,电话线被打开。 在自动拨号设备发送拨号信号之后的预定时间段期间,忙信号检测器继续不检测忙信号的情况下,指示通信故障。
    • 4. 发明授权
    • Seat structure
    • 座椅结构
    • US06921132B2
    • 2005-07-26
    • US10839052
    • 2004-05-05
    • Etsunori FujitaYutaka SakamotoKazuyoshi ChizukaSeiji KawasakiYasuhide TakataYumi OguraShigehiko Kaneko
    • Etsunori FujitaYutaka SakamotoKazuyoshi ChizukaSeiji KawasakiYasuhide TakataYumi OguraShigehiko Kaneko
    • A47C7/40B60N2/427B60N2/90B61D33/00B60N2/42
    • B61D33/0014B60N2/42709B60N2/70B60N2/7011
    • In order to improve vibration absorbency and impact absorbency, the seat structure includes a swing member provided in a manner to be able to swing at least back and forth on a rear frame member positioned around the rear of a seat cushion, a pelvis supporting member connected to the swing member at the vicinity of the lower portion of the pelvis supporting member and disposed behind the pelvis of a seated person, and coil springs as an elastic member to support the pelvis supporting member biasing in the direction pushing forwards in a normal seating state. Accordingly, vibration inputted from the seat back side and as if patting on the back of the human body can be absorbed by the pelvis supporting member supported elastically. Besides, since the pelvis supporting member is connected to the rear frame member via the swing member, since pivoting movement in the back-and-forth direction of the pelvis supporting member is performed with a connecting portion of the swing member and the rear frame member as the center, and the radius of gyration is large, the vicinity of the lower portion of the pelvis supporting member never presses the pelvis.
    • 为了提高振动吸收性和冲击吸收性,座椅结构包括摆动构件,其以能够至少在位于座垫的后部的后框架构件上来回摆动的方式设置,骨架支撑构件连接 到骨盆支撑构件的下部附近的摆动构件,并且设置在就座人的骨盆后面,螺旋弹簧作为弹性构件,以支撑骨盆支撑构件在正常就座状态下向前推动的方向 。 因此,从座椅靠背侧输入的振动和仿佛拍摄在人体背部的振动可以被弹性支撑的骨盆支撑构件吸收。 此外,由于骨盆支撑构件经由摆动构件连接到后框架构件,因此通过摆动构件和后框架构件的连接部分进行骨盆支撑构件的前后方向的枢转运动 作为中心,并且回转半径大,骨盆支撑构件的下部附近从不压迫骨盆。
    • 6. 发明申请
    • Fatigue degree measurement device, fatigue detection device and computer program to be used therein
    • 疲劳度测量装置,疲劳检测装置及其中使用的计算机程序
    • US20070078351A1
    • 2007-04-05
    • US10576173
    • 2004-10-22
    • Etsunori FujitaShigehiko Kaneko
    • Etsunori FujitaShigehiko Kaneko
    • A61B5/02
    • A61B5/18A61B5/021A61B5/02416A61B5/4519A61B5/4561A61B5/6887A61B5/7239A63B71/06A63B2230/08
    • The degree of fatigue is quantified to be able to display. A fatigue degree measurement device 1 includes: a living body signal peak value detecting means 23 to detect the peak values of respective cycles of the original waveform of the living body signal data; a power value calculating means 24 to calculate the difference between a peak value on the upper limit side and a peak value on the lower limit side for every prescribed time period from respective peak values obtained by the living body signal peak value detecting means 23 to set the difference as a power value; and a power value inclination calculating means 25 to determine the inclination of the power value, to calculate an integral value by absolute value treatment of the time series signals of the inclination of the power values to determine the integral value as the degree of fatigue. As a result, it becomes possible to realize quantification of a human fatigue degree.
    • 疲劳程度被量化以能够显示。 疲劳度测量装置1包括:生物体信号峰值检测装置23,用于检测生物体信号数据的原始波形的各周期的峰值; 功率值计算装置24,用于根据由生物体信号峰值检测装置23获得的各个峰值,计算每个规定时间段的上限侧的峰值与下限侧的峰值之间的差,以设定 差值作为幂值; 以及功率值倾斜计算装置25,用于确定功率值的倾斜度,通过对功率值倾斜的时间序列信号的绝对值处理来计算积分值,以将积分值确定为疲劳程度。 结果,能够实现人的疲劳程度的量化。