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    • 11. 发明申请
    • POWER GENERATION DEVICE
    • 发电装置
    • US20090115189A1
    • 2009-05-07
    • US11933432
    • 2007-11-01
    • HSIEN-MING LIN
    • HSIEN-MING LIN
    • F03B13/00F03B13/06
    • F03B17/005F03B13/06Y02E10/22Y02E60/17
    • A power generation device includes a tower forming top and bottom reservoirs and a plurality of vertically arranged compartments between the top and bottom reservoirs. Each compartment is separated from the next lower compartment by a partition that defines a discharge opening. A rotary mechanism is arranged in each compartment and includes a rotary shaft carrying receptacles having openings set in different orientations. The shaft is coupled to a dynamo. Water is deposited in the top reservoir and is allowed to flow downward into the next lower compartment through the discharge opening for filling into the receptacles to cause rotation of the shaft, which in turn drives the dynamo to generate electrical power. Water flowing downward into the bottom reservoir can be selectively pumped back to the top reservoir for maintaining cyclic operation of the power generation device.
    • 发电装置包括塔形成顶部和底部储存器以及在顶部和底部储存器之间的多个垂直布置的隔室。 每个隔室通过限定出料口的隔板与下一个下隔室分开。 旋转机构设置在每个隔室中,并且包括具有设置在不同取向上的开口的旋转轴。 轴连接到发电机。 水沉积在顶部储存器中,并允许通过排放开口向下流入下一个隔室,以便填充到容器中,从而使轴转动,从而驱动发电机以产生电力。 向下流入底部储存器的水可以选择性地泵送回顶部储存器,以维持发电装置的循环运行。
    • 12. 发明申请
    • Tower-Based Power Generation Method And Device Thereof
    • 塔式发电方法及其装置
    • US20170025924A1
    • 2017-01-26
    • US14804349
    • 2015-07-21
    • Hsien-Ming Lin
    • Hsien-Ming Lin
    • H02K7/18
    • F03B17/005Y10S415/916
    • A tower-based power generation method and device, generally including two buckets that are movable up and down alternately to carry water to an upper location to allow water to rush down to impact and drive power generation units to generate electrical power thereby achieving circulative power generation. The two buckets are mounted to a tower frame and are driven by a drive unit to move. The tower frame has a bottom in which a water storage trough is formed. Rotary mechanisms are arranged above the water storage trough and the rotary mechanisms are coupled to power generation units. Two sides of the tower frame are each provided with a water storage tank. The water storage tank has a bottom from which a pipe extends to a location above the respective rotary mechanism.
    • 一种塔式发电方法和装置,通常包括两个交替上下移动的水桶,以将水运送到上部位置,以允许水冲击并驱动发电单元产生电力从而实现循环发电 。 两个铲斗安装在塔架上,由驱动装置驱动,以移动。 塔架具有形成储水槽的底部。 旋转机构布置在储水槽的上方,并且旋转机构联接到发电单元。 塔架两侧分别设有储水箱。 储水箱具有底部,管从该底部延伸到相应旋转机构上方的位置。
    • 13. 发明申请
    • KINETIC ENERGY GENERATION DEVICE
    • 动能生成装置
    • US20130001949A1
    • 2013-01-03
    • US13583639
    • 2011-02-17
    • Hsien-Ming Lin
    • Hsien-Ming Lin
    • F03B13/08F03B17/04
    • F03B7/003F03B17/005F05B2240/40Y02E10/223Y02E10/28Y02E60/17
    • A kinetic energy generation device includes a rotation mechanism, a speed increaser coupled to the rotation mechanism, and a power generation element coupled to the speed increaser. The rotation mechanism includes a central shaft and an outer circumferential zone surrounding the central shaft. The outer circumferential zone receives therein partition plates set in radial direction and spaced from each other so that the partition plates show upward inclination. The central shaft is rotatably coupled to the speed increaser, and the speed increaser is coupled to the power generation element so as to constitute the kinetic energy generation device. The rotation mechanism is arranged under a water flow in order to allow each of the receiving zones to receive a weight of water, so that the weight of water causes the rotation mechanism to rotate in a given direction and thus drives the speed increaser to generate electrical power.
    • 动能产生装置包括旋转机构,耦合到旋转机构的增速器以及耦合到增速器的发电元件。 旋转机构包括中心轴和围绕中心轴的外周区域。 外周区域容纳有分隔板,隔板相互间隔开,隔板呈向上倾斜。 中心轴可旋转地连接到增速器,并且增速器耦合到发电元件,以构成动能产生装置。 旋转机构布置在水流下,以便允许每个接收区域接收一定重量的水,使得水的重量使得旋转机构沿给定方向旋转,并且因此驱动增速器以产生电 功率。
    • 14. 发明授权
    • Apparatus and method for determining output signals according to pressure and depressing time
    • 根据压力和按压时间确定输出信号的装置和方法
    • US07102542B2
    • 2006-09-05
    • US10428924
    • 2003-05-05
    • Hsien-Ming LinChin-Chen Kuo
    • Hsien-Ming LinChin-Chen Kuo
    • H03K17/94H03M11/00G06F3/00G09G5/00
    • H03M11/10H01H2215/006H01H2300/054
    • An apparatus and a method for determining output signals according to pressure and depressing time mainly includes a timer, a scanner and a keyboard connecting electronically to the timer and the scanner. The keyboard has a plurality of button keys. When in use, the timer is set to zero and stops counting time. Then the scanner scans the keyboard to locate the button key being depressed by an external force. A signal is output depending on the external force. A first signal is output when the external force is small. When the external force is large and the time counted by the timer does not exceed a selected time period, the first signal is output. When the time counted by the timer exceeds the selected time period, a second signal is output. Thus input information may be entered through fewer button keys, and injury that might otherwise occur by using composite keys may be avoided.
    • 用于根据压力和按压时间确定输出信号的装置和方法主要包括定时器,扫描仪和键盘,其与定时器和扫描仪电连接。 键盘具有多个按键。 在使用中,定时器设置为零并停止计数时间。 然后扫描仪扫描键盘以找到被外力压下的按钮键。 根据外力输出信号。 当外力小时,输出第一个信号。 当外力大并且定时器计时的时间不超过选定的时间周期时,输出第一信号。 当由定时器计数的时间超过所选择的时间段时,输出第二信号。 因此,可以通过较少的按键输入输入信息,并且可以避免使用复合键可能发生的伤害。
    • 15. 发明申请
    • KEYSWITCH STRUCTURE
    • KEYSWITCH结构
    • US20060076222A1
    • 2006-04-13
    • US11230459
    • 2005-09-21
    • Hsien-Ming LinHai-Nan ShenKe-Cheng Wang
    • Hsien-Ming LinHai-Nan ShenKe-Cheng Wang
    • H01H13/04H01H9/02
    • H01H3/122H01H2221/016
    • A keyswitch structure has a slender key cap and an integral balance structure for a key with a short press stroke. The keyswitch structure has a casing and at least one key. The casing has at least one pair of hooks arranged on a bottom face thereof, and at least one receiving groove. The key has a key cap, a connection portion parallel extended from a bottom portion of the key cap, and a balance rod integrally arranged on an end side of the connection portion. The balance rod has two sides arranged in the two hooks, respectively. The present invention can simplify the assembly steps, and efficiently prevent the key from swinging and being wedged.
    • 钥匙开关结构具有细长的钥匙盖和用于具有短按压冲程的键的整体平衡结构。 键开关结构具有壳体和至少一个键。 壳体具有布置在其底面上的至少一对钩和至少一个接收槽。 钥匙具有钥匙帽,从钥匙盖的底部平行地延伸的连接部以及一体地配置在连接部的端部侧的平衡杆。 平衡杆分别设置在两个钩中。 本发明可以简化组装步骤,并且有效地防止钥匙摆动和楔入。