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. 发明申请
    • Diet/exercise monitor
    • 饮食/运动显示器
    • US20040162702A1
    • 2004-08-19
    • US10367033
    • 2003-02-19
    • Radha K. C. PandipatiVenkata Rao Mulpuri
    • G01G007/00
    • G01G19/4146A61B5/22
    • This invention is related to an apparatus, which helps one to maintain one's health. The apparatus comes with unique software, which allows one to enter data about one's regular eating habits, physical activities, weight, age, height, etc by touch of a few buttons. The unique software organizes all the information, keeps track of eating patterns & physical activity, performs detailed analysis and comes up with a recommendation on what one shall eat next and on the desired physical activity for keeping good health. The stored data can be viewed in various formats, namely, tabular statements, pie-charts, etc
    • 本发明涉及一种有助于保持身体健康的装置。 该装置具有独特的软件,可以通过触摸几个按钮来输入有关常规饮食习惯,身体活动,体重,年龄,身高等的数据。 独特的软件组织所有信息,跟踪饮食习惯和身体活动,进行详细分析,并提出关于下一次吃什么以及为保持身体健康所需的身体活动的建议。 可以以各种格式查看存储的数据,即表格语句,饼图等
    • 4. 发明申请
    • Electronic weighing sensor
    • 电子称重传感器
    • US20010052431A1
    • 2001-12-20
    • US09860556
    • 2001-05-21
    • SARTORIUS AG
    • Alfred KlauerJoerg Peter Martens
    • G01G001/38G01G007/00
    • G01G3/1414G01G23/10
    • An electronic weighing sensor (10) having a digital signal processing unit (19), which includes at least one filter (12) with low-pass characteristic. By means of the filter (12), the direct-current component (m) is determined from the output signal of the weighing sensor and the weighing result is derived therefrom. A signal, which is dependent on the amplitude of the vibrations, is determined by the digital signal processing unit (19) and electronic components (18) change the direct-current component (m) as a function of the magnitude of the vibration-dependent signal. This significantly improves the performance of the weighing sensor (10) with respect to shocks and vibrations in the installation site of the weighing sensor (10).
    • 一种具有数字信号处理单元(19)的电子称重传感器(10),其包括具有低通特性的至少一个滤波器(12)。 通过过滤器(12),从称重传感器的输出信号确定直流分量(m),并从中得到称重结果。 取决于振动幅度的信号由数字信号处理单元(19)确定,并且电子部件(18)根据振动依赖的大小来改变直流分量(m) 信号。 这显着地改善了称重传感器(10)相对于称重传感器(10)的安装位置的冲击和振动的性能。
    • 5. 发明申请
    • Continuous flow method and system for placement of balancing fluid on a rotating device requiring dynamic balancing
    • 连续流动方法和系统,用于在需要动态平衡的旋转装置上放置平衡流体
    • US20030101018A1
    • 2003-05-29
    • US10001006
    • 2001-11-15
    • Kevin J. StalsbergGary E. Determan
    • G01G007/00G01G009/00G01G011/00G06F015/00G06F015/02G01G017/00G01G019/00
    • G01G9/00
    • Methods and systems for continuously transferring balancing mass to a rotating system or rotating device in order to dynamically balance the rotating system or rotating device are disclosed. A flow of balancing mass can be continuously provided to the rotating system at a controlled flow rate. A pump integrated with the rotating system can be utilized to provide via pump the flow of the balancing mass to the rotating system at a controlled flow rate. The flow of balancing mass can be thereafter discharged at a shutter device integrated with the rotating system, such that the balancing mass passes through a window of the shutter device if the window is open. The balancing mass is passed through the window so as to be transferred to the rotating device at predetermined locations, thereby contributing to the balancing of the rotating system. The balancing mass is generally automatically recirculated through the rotating system if the window of the shutter device is closed. The window of the shutter device may be configured as a fixed or adjustable window. The shutter device itself may be, for example, a solenoid actuated shutter or a slotted-disk device. The controlled flow rate to the shutter device may be adjusted for varying control need across the range of rotational speeds. This method and system overcomes flow and timing difficulties experienced with solenoid actuated valve mass transfer techniques.
    • 公开了用于将平衡质量块连续转移到旋转系统或旋转装置以便动态平衡旋转系统或旋转装置的方法和系统。 可以以受控流速连续地向旋转系统提供平衡质量流。 与旋转系统集成的泵可以用于以受控的流量向泵提供平衡质量流向旋转系统的流动。 然后平衡块的流动可以在与旋转系统集成的快门装置处排出,使得如果窗户打开,平衡块通过快门装置的窗口。 平衡块通过窗口,以便在预定位置转移到旋转装置,从而有助于平衡旋转系统。 如果快门装置的窗口关闭,平衡质量通常通过旋转系统自动再循环。 快门装置的窗口可以被配置为固定的或可调整的窗口。 快门装置本身可以是例如电磁致动的快门或开槽盘装置。 可以调整到快门装置的受控流速,用于在整个旋转速度范围内改变控制需求。 该方法和系统克服了电磁致动阀传质技术所遇到的流程和时间困难。
    • 6. 发明申请
    • Self-monitoring controller for quartz crystal microbalance sensors
    • 石英晶体微量天平传感器自监控器
    • US20020189868A1
    • 2002-12-19
    • US10227928
    • 2002-08-26
    • Russell P. CainBliss G. CarkhuffO. Manuel Uy
    • G01G007/00
    • G01G3/16G01G23/3728G01G23/3735G01N5/02G01N35/00871
    • A controller for a quartz crystal microbalance (QCM) sensor system and method for detecting mass deposition on a QCM sensor. The controller controls a QCM using temperature-, voltage- and current-regulating circuits, a microcontroller, an oscillator, heating and cooling devices and circuits, high voltage grids, digital-to-analog and analog-to-digital converters, data telemetry and uplink circuits, and a remote user. The remote user may be a person, computer, network or data logger. The remote user allows the controller to be reconfigurable during operation. The controller samples and reports data faster and is more reliable over extended periods of operation. Further, the controller is assembled using innovative techniques making it smaller and thus more transportable, easier to incorporate into existing facilities and less expensive to construct and operate. The apparatus may also be assembled in a modular fashion that allows for customization.
    • 用于石英晶体微量天平(QCM)传感器系统的控制器和用于检测QCM传感器上的质量沉积的方法。 控制器使用温度,电压和电流调节电路,微控制器,振荡器,加热和冷却设备和电路,高压电网,数模转换器和模数转换器,数据遥测和 上行链路电路和远程用户。 远程用户可以是个人,计算机,网络或数据记录器。 远程用户允许控制器在操作期间可重新配置。 控制器采样和报告数据更快,并且在更长的操作期间更可靠。 此外,控制器使用创新技术进行组装,使其更小,因此更易于运输,更易于并入现有设施,并且构建和操作成本较低。 该装置还可以以允许定制的模块化方式组装。
    • 10. 发明申请
    • Method for achieving accurate measurement of true weight
    • 实现真实重量精确测量的方法
    • US20030014214A1
    • 2003-01-16
    • US09901586
    • 2001-07-11
    • Uri Zefira
    • G01G007/00G01G009/00G01G011/00G06F015/00G06F015/02G01G017/00G01G019/00
    • G01G19/083
    • The present invention is a method for achieving accurate measurement of true weight of a load by use of a weight measuring device which has the ability to be tilted by the operator about an axis, such as, but not limited to, a scale which is built into a forklift vehicle. The accurate measurement of true weight is achieved by tilting the load through a range of angles of inclination that includes horizontal, about an axis running transverse to the forklift truck. Load force data from the weight measuring device is sent to a processor as the load is tilted. The processor filters out nullnoisenull and uses the highest load force reading to calculate the true weight of the load. The present invention is further able to use the information obtained from the weight measuring device to determine the angle of inclination of the load at any given time.
    • 本发明是一种通过使用重量测量装置来实现负载的真实重量的精确测量的方法,所述重量测量装置具有由操作者围绕轴倾斜的能力,例如但不限于构建的刻度 进入叉车。 真实重量的精确测量是通过将倾斜的载荷倾斜在包括横向于横向于叉车的轴线的水平方向上的倾斜角度来实现的。 当负载倾斜时,来自重量测量装置的负载力数据被发送到处理器。 处理器滤除“噪音”,并使用最高的负载力读数来计算负载的真实重量。 本发明还能够使用从重量测量装置获得的信息来确定任何给定时间的负载的倾斜角度。