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    • 32. 发明授权
    • Wireless small motor driver having rotation reduction gear
    • 具有旋转减速装置的无线小电机驱动器
    • US09027665B2
    • 2015-05-12
    • US13405789
    • 2012-02-27
    • Sang-Min LeeByoung-Kun Kim
    • Sang-Min LeeByoung-Kun Kim
    • B25B23/18B25B21/00B25G1/08
    • B25B21/00B25B23/18B25G1/085
    • A wireless small motor driver, in which power consumption is decreased by adjusting a gear ratio, the efficiency of an operation is increased due to a high torque, and the safety of a worker at night is ensured using an illumination lamp. The wireless small motor driver includes a driver case inside of which a motor is provided. A driver bit has a predetermined length in a bilateral direction, the driver bit being replaceable, with one or both ends thereof conforming to the shape of a bolt, and has a fixing projection. A socket is coupled to an end portion of the driver case, the driver bit being fastened to the socket. A rotation reduction gear is coupled to the motor, the rotation reduction gear transmitting rotary force to the socket and increasing a torque. A USB and a battery for supplying uniform power to the motor are added.
    • 通过调节传动比来降低功耗的无线小型电动机驱动器,由于高转矩,操作效率提高,并且使用照明灯确保夜间工作人员的安全。 无线小型电动机驱动器包括驱动器壳体,内部设置有电动机。 驾驶员位在双向方向上具有预定长度,驾驶员位可更换,其一端或两端与螺栓的形状一致,并且具有固定突起。 插座耦合到驱动器壳体的端部,驱动器钻头被紧固到插座。 旋转减速齿轮联接到电动机,旋转减速齿轮将旋转力传递到插座并增加转矩。 增加了一个USB和一个用于向电机提供均匀电源的电池。
    • 35. 发明授权
    • Mobile terminal and control method thereof
    • 移动终端及其控制方法
    • US08707175B2
    • 2014-04-22
    • US12729132
    • 2010-03-22
    • Sang-Min Lee
    • Sang-Min Lee
    • G06F3/01
    • G06F3/04817G06F3/0486G06F3/04883
    • A method of controlling a mobile terminal is presented. The method includes detecting a first touch on the mobile terminal for a predetermined time when the mobile terminal is in a locked state, simultaneously displaying a locking icon and an unlocking icon in response to the detected first touch, and detecting a second touch on the locking icon or the unlocking icon, wherein touching the locking icon for a predetermined time will partially unlock the mobile terminal, and wherein touching and dragging the unlocking icon to the locking icon will fully unlock the mobile terminal.
    • 提出了一种控制移动终端的方法。 该方法包括当移动终端处于锁定状态时检测移动终端上的第一次触摸预定时间,同时响应于检测到的第一触摸显示锁定图标和解锁图标,并且检测锁定上的第二触摸 图标或解锁图标,其中在预定时间内触摸锁定图标将部分地解锁移动终端,并且其中将解锁图标触摸并拖动到锁定图标将完全解锁移动终端。
    • 37. 发明申请
    • TRI-STATE CONTROL FOR A LINE DRIVER
    • 线路驱动器的三态控制
    • US20130169316A1
    • 2013-07-04
    • US13340365
    • 2011-12-29
    • Sang-Min LeeMichael Peter Mack
    • Sang-Min LeeMichael Peter Mack
    • H03K3/01
    • H04L25/0278H04L5/16H04L25/028H04L25/0292H04L25/0298
    • A tri-state control mechanism can be implemented for a line driver of a transmitter unit to switch the output impedance of the transmitter unit between a low impedance state in the transmit mode and a high impedance state in the receive mode while minimizing turn-off glitch. It may be determined whether a communication device comprising the transmitter unit is configured in a transmit operating mode or a receive operating mode. If the communication device is configured in the receive operating mode, a first bias voltage can be generated to bias output transistors of the line driver circuit in a sub-threshold state. If the communication device is configured in the transmit operating mode, a second bias voltage can be generated to bias output transistors of the line driver circuit in a saturation state.
    • 可以为发射机单元的线路驱动器实现三态控制机制,以在发射模式中的低阻抗状态和接收模式下的高阻抗状态之间切换发射机单元的输出阻抗,同时最小化关闭故障 。 可以确定包括发射机单元的通信设备是否被配置为发射操作模式或接收操作模式。 如果通信设备被配置为接收操作模式,则可以产生第一偏置电压以将线路驱动器电路的输出晶体管偏置在亚阈值状态。 如果通信设备被配置在发送操作模式中,则可以产生第二偏置电压以将线路驱动器电路的输出晶体管偏置在饱和状态。
    • 39. 发明授权
    • Pneumatic dispenser
    • 气动分配器
    • US08439484B2
    • 2013-05-14
    • US12992622
    • 2009-05-22
    • Joon-Won KimSang-Min Lee
    • Joon-Won KimSang-Min Lee
    • B41J2/04B41J2/135B41J2/05
    • B41J2/14B41J2/04B41J2202/05
    • A pneumatic dispenser (1) according to the present invention includes: a first plate (10) including a liquid supply unit (11), a first chamber (C1) connected to the liquid supply unit (11), and a liquid discharge unit (12) connected to the first chamber (C1), a flexible membrane (20) at least installed on the first chamber (C1) of the first plate (10) and establishing one side of the first chamber (C1), a second plate (30) including a second chamber (C2) at a side opposite to the first chamber (C1) while facing the first plate (10) with the flexible membrane (20) interposed there between and a bump (40) formed by protruding the liquid supply unit (11) toward the flexible membrane (20).
    • 根据本发明的气动分配器(1)包括:第一板(10),包括液体供应单元(11),连接到液体供应单元(11)的第一室(C1)和液体排出单元 12),其连接到第一室(C1),至少安装在第一板(10)的第一室(C1)上并建立第一室(C1)的一侧的柔性膜(20),第二板 30)包括在与第一室(C1)相对的一侧的第二室(C2),同时面对第一板(10),柔性膜(20)介于其间,并且通过突出液体供应而形成的凸块(40) 单元(11)朝向柔性膜(20)。
    • 40. 发明授权
    • Mount for compressor shell
    • 安装压缩机外壳
    • US08388320B2
    • 2013-03-05
    • US12449250
    • 2008-03-21
    • Sang-Min Lee
    • Sang-Min Lee
    • F04B17/00F04B35/00
    • F04B39/0044F04B35/045F04B39/121F16F15/06
    • The present invention discloses a compressor including a compressor main body (20) for compressing refrigerant, a shell (100) for accommodating the refrigerant and the compressor main body (20), and mounts (130) attached to the front and rear of the shell (100) for the installation of the shell (100), and having a natural frequency controlled according to a natural frequency of the shell (100) for the dynamic vibration absorption. In an assembly state where the compressor main body (20) and the shell (100) are completely coupled to each other, the shell (100) is exited by an impact hammer and the natural frequency of the shell (100) is measured. As the natural frequency of the mount (130) is controlled according to the natural frequency of the shell (100) to absorb vibration, Vibration of the shell (100) can be prevented. That is, the mount functions as a dynamic vibration absorber to suppress vibration and noise of the shell (100).
    • 本发明公开了一种压缩机,包括:压缩机主体(20),用于压缩制冷剂;壳体(100),用于容纳制冷剂;以及压缩机主体(20);以及安装件(130),其安装在壳体的前后 (100),用于安装壳体(100),并且具有根据壳体(100)的固有频率控制的用于动态吸振的固有频率。 在压缩机主体(20)和壳体(100)彼此完全连接的组装状态下,壳体(100)由冲击锤退出,并且测量壳体(100)的固有频率。 由于根据壳体(100)的固有频率来控制安装座(130)的固有频率以吸收振动,因此可以防止壳体(100)的振动。 也就是说,安装件用作动态减振器以抑制壳体(100)的振动和噪声。