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    • 1. 发明申请
    • Sound Wave Testing Device and Method for Testing Solar Panel
    • 用于测试太阳能电池板的声波测试装置和方法
    • US20130042689A1
    • 2013-02-21
    • US13283680
    • 2011-10-28
    • Kun Ta Lee
    • Kun Ta Lee
    • G01N29/04
    • G01N29/043G01N2291/048G01N2291/106G01N2291/2697
    • A sound wave testing device is provided. The sound wave testing device comprises at least one sound output unit for providing at least one first sound signal, at least one sound-collecting element disposed above the at least one sound output unit, at least one sound-receiving unit disposed at one end of the at least one sound-collecting element, and an isolating element disposed between the at least one sound output unit and the at least one sound-collecting element, in which the solar panel is disposed on the isolating element. The at least one first sound signal is transformed into at least one second sound signal while passing through the solar panel. The at least one second sound signal is received and transmitted to at least one sound-receiving unit, and the at least one second sound signal is transformed into at least one digital signal for output.
    • 提供了一种声波测试装置。 声波测试装置包括至少一个声音输出单元,用于提供至少一个第一声音信号,至少一个声音收集元件设置在至少一个声音输出单元上方,至少一个声音接收单元设置在至少一个声音接收单元的一端 所述至少一个声音收集元件和设置在所述至少一个声音输出单元和所述至少一个声音收集元件之间的隔离元件,其中所述太阳能电池板设置在所述隔离元件上。 当通过太阳能电池板时,至少一个第一声音信号被转换成至少一个第二声音信号。 所述至少一个第二声音信号被接收并发送到至少一个声音接收单元,并且所述至少一个第二声音信号被变换为至少一个数字信号以供输出。
    • 2. 发明申请
    • BATTERY DEVICE
    • 电池装置
    • US20130026999A1
    • 2013-01-31
    • US13490938
    • 2012-06-07
    • Kun-Ta LEE
    • Kun-Ta LEE
    • H02J7/04
    • H02J7/0011H02J7/32
    • A battery device including a case, an elastic component, a metal coil, a magnetic component, at least one energy storage component and a rectifier voltage regulator circuit is provided. The case includes a first and a second electrode ends, and both the elastic component and the metal coil are disposed in the case. The magnetic component is disposed in a receiving space of the coil and connects to an end of the elastic element, and the energy storage component connects to the first and the second electrode ends in parallel. When the battery device moves back and forth along a direction, the elastic component extends or retracts to drive the magnetic component to move back and forth relative to the metal coil along this direction. Thereby, an electric energy is induced in the metal coil, and is then stored in the energy storage component after being rectified and voltage-regulated.
    • 提供了包括壳体,弹性部件,金属线圈,磁性部件,至少一个能量存储部件和整流器电压调节器电路的电池装置。 壳体包括第一和第二电极端,并且弹性部件和金属线圈均布置在壳体中。 磁性部件设置在线圈的容纳空间中并连接到弹性元件的端部,并且能量存储部件并联连接到第一和第二电极端部。 当电池装置沿着一个方向前后移动时,弹性部件延伸或缩回以驱动磁性部件沿着该方向相对于金属线圈来回移动。 由此,在金属线圈中感应出电能,然后在整流和电压调节之后将其存储在能量存储部件中。
    • 3. 发明申请
    • Environmental Testing Apparatus
    • 环境检测仪器
    • US20130025382A1
    • 2013-01-31
    • US13630016
    • 2012-09-28
    • Kun-Ta Lee
    • Kun-Ta Lee
    • G01N17/00
    • G05D27/02G01N17/002G01R31/2849G01R31/2874G05D22/02G05D23/19
    • An environmental test apparatus is disclosed. The environmental test apparatus is configured to simulate the environmental variation in temperature and humidity. The environmental test apparatus comprises a box, a plurality of openings, a plurality of fans, two guiding elements and a plurality of controllers. The box has a plurality of sidewalls and a plurality of corners each being defined by three of the adjacent sidewalls, wherein the openings are disposed on at least two sidewalls of the box, and each of the fans is correspondingly disposed in each of the openings. The two guiding elements are disposed on two opposite corners for guiding the airflow in the hollow box, wherein the two opposite corners share a single sidewall. The controllers are configured to control the rotational speed of each fan and adapted to uniform the distribution of the temperature and the humidity inside the box.
    • 公开了一种环境试验装置。 环境试验装置被配置为模拟温度和湿度的环境变化。 环境试验装置包括一个盒子,多个开口,多个风扇,两个导向元件和多个控制器。 箱体具有多个侧壁和多个角部,每个角部由三个相邻的侧壁限定,其中开口设置在箱体的至少两个侧壁上,并且每个风扇相应地设置在每个开口中。 两个引导元件设置在两个相对的角部上以引导中空箱中的气流,其中两个相对的角共享单个侧壁。 这些控制器被配置成控制每个风扇的转速,并适合使箱内温度和湿度均匀分布。
    • 4. 发明授权
    • Impact testing device
    • 冲击试验装置
    • US08240214B2
    • 2012-08-14
    • US12580492
    • 2009-10-16
    • Kun-Ta Lee
    • Kun-Ta Lee
    • G01N29/00G01N3/32
    • G01M7/08
    • An impact testing device is provided. The impact testing device comprises a plate and an impact generating module. The plate has a first surface for loading a test object. The impact generating module is fastened to the plate to apply an impact to the plate and actuate the plate along the first direction, the second direction and the third direction independently. Thereby, the impact testing device of this invention is adapted to apply the impact to the test object along any direction under control.
    • 提供冲击测试装置。 冲击试验装置包括板和冲击产生模块。 板具有用于装载测试对象的第一表面。 冲击产生模块固定在板上以对板施加冲击并且独立地沿第一方向,第二方向和第三方向致动板。 因此,本发明的冲击试验装置适用于沿受控制的任何方向对试验物体施加冲击。
    • 5. 发明申请
    • METHOD OF ACTIVATING A BATTERY
    • 电池充电方法
    • US20120187910A1
    • 2012-07-26
    • US13275228
    • 2011-10-17
    • Kun-Ta Lee
    • Kun-Ta Lee
    • H02J7/00
    • H01M10/425H01M10/44H01M10/48H01M2010/4271H01M2220/30
    • A method of activating a battery is applied to an electronic device having a controller that keeps counting system time to acquire a system date. The method includes: (1) acquiring data of the battery, including states, an activation number and a last activation date; (2) performing an activation process and setting the battery in an activation state when determining, based on the data, that the battery is in an inactivation state, the activation number is smaller than a predetermined activation number, and an interval between the last activation date and the system date is greater than a predetermined activation interval; (3) discharging the battery, and charging the battery when determining that a battery power level is less than a predetermined power level; and (4) setting the battery in the inactivation state after the activation process is finished. Therefore, a curing problem of the battery is overcome.
    • 一种启动电池的方法被应用于具有控制器的电子设备,所述控制器保持计数系统时间来获取系统日期。 该方法包括:(1)获取电池的数据,包括状态,激活号和最后激活日期; (2)当基于数据确定电池处于非活动状态时,执行激活处理并将电池设置在激活状态,激活次数小于预定的激活次数,以及最后激活之间的间隔 日期和系统日期大于预定的激活间隔; (3)放电电池,并且当确定电池功率电平小于预定功率电平时对电池充电; 和(4)在激活处理完成之后将电池设置为灭活状态。 因此,克服了电池的固化问题。
    • 8. 发明申请
    • Micro Damper Device
    • 微型阻尼器
    • US20140092548A1
    • 2014-04-03
    • US13762494
    • 2013-02-08
    • Kun-Ta Lee
    • Kun-Ta Lee
    • H05K7/00
    • H05K7/00G11B33/08
    • A micro damper device comprising a main body, a cover, a sensor component and a control component is provided. The main body has a first surface, a second surface, a convex and a coil. A current is introduced to the coil to form a magnetic field with a first and a second magnetic pole. The cover has a first end, a second end and a first magnetic component. The sensor component is disposed on a side opposite the convex to measure a first vibration direction of the second surface. The control component is electrically connected between the sensor component and the coil and controls the current for adjusting the polarity and the strength of the first magnetic pole for producing a force between the first magnetic pole and a third magnetic pole, which makes the main body move along a second vibration direction opposite the first vibration direction.
    • 提供一种包括主体,盖,传感器部件和控制部件的微型阻尼器装置。 主体具有第一表面,第二表面,凸起和线圈。 电流被引入线圈以与第一和第二磁极形成磁场。 盖具有第一端,第二端和第一磁性部件。 传感器部件设置在与凸部相对的一侧,以测量第二表面的第一振动方向。 控制部件电连接在传感器部件和线圈之间,并且控制用于调节第一磁极的极性和强度的电流,以在第一磁极和第三磁极之间产生力,这使得主体移动 沿着与第一振动方向相反的第二振动方向。
    • 9. 发明申请
    • IMPACT ASSEMBLY
    • 冲击装配
    • US20130283885A1
    • 2013-10-31
    • US13530877
    • 2012-06-22
    • Kun Ta LEE
    • Kun Ta LEE
    • G01N3/30
    • G01M7/022G01M7/08G01N3/307
    • An impact assembly including an impact platform and at least two impact generating devices is provided. The at least two impact generating devices are disposed adjacent to each other in pair and detachably mounted to the impact platform. Each of the at least two impact generating devices has a housing and an impact generating unit. The housing is adapted to form a compartment where the impact generating unit is disposed. The impact generating units of the at least two impact generating devices provide at least two impact forces to the impact platform according to the at least two corresponding timings.
    • 提供了包括冲击平台和至少两个冲击产生装置的冲击组件。 所述至少两个冲击产生装置彼此相邻设置并且可拆卸地安装到冲击平台。 所述至少两个冲击产生装置中的每一个具有壳体和冲击产生单元。 壳体适于形成设置有冲击产生单元的隔间。 至少两个冲击产生装置的冲击产生单元根据至少两个对应的定时向冲击平台提供至少两个冲击力。
    • 10. 发明申请
    • IMPACT GENERATOR AND IMPACT TESTING PLATFORM
    • 冲击发生器和冲击测试平台
    • US20110006619A1
    • 2011-01-13
    • US12621987
    • 2009-11-19
    • Kun-Ta LEE
    • Kun-Ta LEE
    • H02K33/02
    • H02K33/16H02K33/02
    • An impact generator and an impact testing platform applying the impact generator are provided. The impact generator comprises a magnetic device, a coil, and an elastic device. The coil has a first receiving space for receiving the magnetic device, and the elastic device biases the magnetic device to an initial position. While a current is directed into the coil, a magnetic field is induced in the first receiving space to actuate the magnetic device to generate an impact to the ambience. While the current is blocked, the magnetic device returns to the initial position via the elastic device.
    • 提供冲击发生器和应用冲击发生器的冲击试验平台。 冲击发生器包括磁性装置,线圈和弹性装置。 线圈具有用于接收磁性装置的第一容纳空间,并且弹性装置将磁性装置偏压到初始位置。 当电流被引导到线圈中时,在第一接收空间中感应出磁场,以驱动磁性装置以产生对环境的影响。 当电流被阻塞时,磁性装置通过弹性装置返回初始位置。