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    • 1. 发明授权
    • Exact cup measuring tea kettle with spiral spring
    • 精确杯子测量茶壶与螺旋弹簧
    • US4189016A
    • 1980-02-19
    • US894356
    • 1978-04-05
    • Jack C. Nicol
    • Jack C. Nicol
    • G01G3/06G01G19/56
    • G01G19/56G01G3/06
    • A contents measuring tea kettle having a pivotally mounted handle which swings relative to a fluid-holding container portion of the kettle for actuating a load indicator assembly in order to permit measurement of the amount of fluid in the container as the container is being filled with the fluid. The load indicator assembly includes a spiral torsion spring connected to a dial member of the assembly and to a stationary portion of the kettle for placing a resistance between the pivotally mounted handle and the container of the kettle and causing a reading on the dial assembly which is a function of the amount of water within the kettle at a particular point in time. Further, the contents may be poured from the container, when the latter is only partially filled, in a controlled manner as though the handle were not pivotally mounted.
    • 一种测量茶壶的内容物,其具有枢转安装的把手,其相对于所述水壶的流体保持容器部分摆动,用于致动负载指示器组件,以便当所述容器被填充时允许测量容器中的流体的量 流体。 负载指示器组件包括连接到组件的拨盘构件和壶的静止部分的螺旋扭力弹簧,用于在枢转安装的手柄和壶的容器之间放置阻力,并且在表盘组件上进行读数, 在特定时间点内水壶内的水量的函数。 此外,当容器仅仅部分地被填充时,内容物可以以受控的方式从容器倾倒,就好像手柄没有枢转地安装。
    • 5. 发明公开
    • SOLAR ELECTRONIC SCALE
    • US20230194328A1
    • 2023-06-22
    • US18074471
    • 2022-12-03
    • Huayun YU
    • Huayun YU
    • G01G3/06H02J7/35G01G21/22G01G21/28G01G19/46
    • G01G3/06H02J7/35G01G21/22G01G21/283G01G19/46
    • The invention discloses a solar electronic scale which comprises a casing without an external interface; a panel is covered with the casing, and together with the casing forms an accommodating cavity; a display assembly is installed in the accommodating cavity, and can display various information to the outside; the sensing component is arranged on the casing and can be in contact with the support platform; wherein the sensing component is used to sense the target weighing object placed on the panel to obtain the target weighing object and transmit the weight information to the display assembly for display; the power supply component includes the battery and the solar charging component, both of which are arranged in the accommodating cavity; the battery is electrically connected to the display assembly, the induction component and the solar charging component, and can balance power consumption for power consumption components in the accommodating cavity through the solar charging assembly. The solar electronic scale can meet the needs of users for weighing anytime and anywhere, and is conducive to ensuring the weighing accuracy of the electronic scale.
    • 7. 发明申请
    • Robot hand with weighting device
    • 机器人手与加重装置
    • US20060196707A1
    • 2006-09-07
    • US11072526
    • 2005-03-07
    • Lobo WangChihyu Chen
    • Lobo WangChihyu Chen
    • G01G23/00G01G19/00
    • G01G19/14G01G3/06
    • The present invention provides a robot hand with weighting device including a holding part, a transmission valve, a carrier plate and a weighting device. The holding part is installed on the transmission valve to receive the power conveyed from the transmission valve. The weighting device is provided between the carrier plate and the transmission valve. The weighting device comprises a sensor base, an elastic part and a touching part. The sensor base is fixed on the carrier plate. A data transmission port is provided outside the sensor base. The data transmission port connects with a display device. The elastic part is mounted inside the sensor base. A resistance extensometer bridge is stuck on the elastic part. The touching part is set on the top of the elastic part. The touching part connects with the transmission valve. The robot hand with weighting device outputs the weight information in the process of carrying product due to the weighting device.
    • 本发明提供一种具有加重装置的机器人手,该加重装置包括保持部,传动阀,承载板和加重装置。 保持部安装在传动阀上,以接收从传动阀输送的动力。 称重装置设置在承载板和传动阀之间。 加重装置包括传感器基座,弹性部件和接触部件。 传感器基座固定在载板上。 传感器基座外部设置数据传输端口。 数据传输端口与显示设备连接。 弹性部分安装在传感器底座内。 电阻引伸计桥卡在弹性部分上。 触摸部分设置在弹性部分的顶部。 接触部分与传动阀连接。 具有加权装置的机器人手从加权装置输出携带产品的过程中的重量信息。