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    • 1. 发明授权
    • Nozzle-contacting device of injection molding machine
    • 注塑机喷嘴接触装置
    • US07033164B2
    • 2006-04-25
    • US10353998
    • 2003-01-30
    • Ming-Chang DengChia-Hung LinWen-Hung FengMing-Chi Chen
    • Ming-Chang DengChia-Hung LinWen-Hung FengMing-Chi Chen
    • B29C45/64
    • B29C45/1777
    • A nozzle-contacting device of an injection molding machine includes an injection module and a mold-holding structure both set on a lathe bed. The injection module sets a nozzle at a front end thereof and a nozzle-adjusting device, which is fixed and locked on the lathe bed, at a back end thereof. The mold-holding structure includes a mold-clamping structure and an adjusting plate, wherein the mold-holding structure sets plural tie rods. A mold is fixed and locked on the adjusting plate which is sleeved on plural tie rods, and one or more driver set on a front end of a dead plate penetrates the dead plate to connect to the adjusting plate. Furthermore, the dead plate has a perforation set on a center thereof corresponding to a position of the nozzle of the injection module.
    • 注射成型机的喷嘴接触装置包括设置在车床上的注射模块和模具保持结构。 注射模块在其前端设置喷嘴,在后端固定并锁定在车床上的喷嘴调节装置。 模具保持结构包括模具夹紧结构和调节板,其中模具保持结构设置多个拉杆。 模具被固定并锁定在套在多个拉杆上的调节板上,设置在死板前端的一个或多个驱动器穿过死板以连接到调节板。 此外,死板具有设置在其对应于喷射模块的喷嘴的位置的中心的穿孔。
    • 2. 发明授权
    • Parallelism adjustment device
    • 平行度调节装置
    • US07204686B2
    • 2007-04-17
    • US10663655
    • 2003-09-17
    • Yong-Chen ChungChia-Hung LinChuan-Feng ChenChia-Chun HsuWen-Hung FengMing-Chi Chen
    • Yong-Chen ChungChia-Hung LinChuan-Feng ChenChia-Chun HsuWen-Hung FengMing-Chi Chen
    • B29C59/02
    • B82Y10/00B29C33/303B29C59/022B29C2059/023B82Y40/00G03F7/0002G03F9/00Y10S425/019
    • A parallelism adjustment device applicable to nano-imprint lithography has an imprint unit, a carrier unit, a parallelism adjustment mechanism, and a driving source. The imprint unit has a first molding plate and an imprinting mold mounted on the first molding plate. The carrier unit has a second molding plate and a substrate mounted on the second molding plate. The parallelism adjustment mechanism has an enclosed resilient film and a fluid filled therein, and is coupled to at least one of the first and second molding plates. The driving source drives at least one of the imprint unit and the carrier unit to form contact between the mold and the moldable layer. The parallelism adjustment device is pressed via the contact to adjust parallelism for the imprint mold and the substrate and uniformly distributes the pressure between the mold and the substrate, making the molding quality of nano-imprint lithography significantly improved.
    • 适用于纳米压印光刻的平行度调节装置具有压印单元,载体单元,平行度调节机构和驱动源。 压印单元具有安装在第一模板上的第一模板和压印模。 载体单元具有安装在第二模板上的第二模板和基板。 平行度调节机构具有封闭的弹性膜和填充在其中的流体,并且联接到第一和第二模制板中的至少一个。 驱动源驱动压印单元和载体单元中的至少一个,以在模具和可模制层之间形成接触。 平行度调节装置通过触点按压,调整压印模具和基板的平行度,均匀分布模具与基板之间的压力,使纳米压印光刻的成型质量得到显着提高。
    • 3. 发明授权
    • Electromagnetic coaxial driving injection apparatus
    • 电磁同轴驱动注射装置
    • US07090477B2
    • 2006-08-15
    • US10405319
    • 2003-04-01
    • Chia-Chun HsuYong-Chen ChungChia-Hung LinWen-Hung FengMing-Chi Chen
    • Chia-Chun HsuYong-Chen ChungChia-Hung LinWen-Hung FengMing-Chi Chen
    • B29C45/50
    • B29C45/5008B29C2045/1793B29C2045/5024B29C2045/504
    • An electromagnetic coaxial driving injection apparatus, having a linear motor for driving injection and a rotation motor for metering. The linear motor and the rotation motor of both the injection and metering motors and an injection screw are set on a common axis. A connecting device connects moving parts of the motors with the injection screw. Stationary parts of the motors are fastened on a frame and forward-backward moving unit, not moving during injection and metering. Due to the arrangement of the moving parts and the injection screw on a single axis, moving parts are lessened, and transmission losses are minimized. Since the number of structural parts is low, only the moving parts of the motors move during injection while the stationary parts thereof remain at rest, thus greatly reducing inertia. Furthermore, since the moving axis of the injection screw and the injection screw are linked, without being connected with stators or other structural parts, injection is performed with minimal friction, enhancing effectiveness of the apparatus.The main characteristic of the present invention is that, due to direct driving of injection without mechanical transmission, the effects of hysteresis and backlash are avoided. Furthermore, inertia and friction are reduced. The present invention increases the response and reappearance of the system.
    • 一种具有用于驱动注射的线性电动机和用于计量的旋转电动机的电磁同轴驱动注射装置。 注射和计量电机的线性电动机和旋转电动机和注射螺钉都设置在公共轴上。 连接装置将电动机的运动部件与注射螺杆连接起来。 马达的固定部件固定在框架和前后移动单元上,在注射和计量期间不移动。 由于移动部件和注射螺杆在单个轴上的布置,运动部件减少,传动损失最小化。 由于结构部件的数量少,所以在注射期间只有马达的运动部件在其静止部分保持静止的状态下移动,从而大大降低了惯性。 此外,由于注射螺杆和注射螺杆的移动轴线连接而不与定子或其他结构部件连接,所以以最小的摩擦进行注射,提高了装置的有效性。 本发明的主要特征在于,由于直接驱动没有机械传动的注射,所以避免了滞后和反向间隙的影响。 此外,减少惯性和摩擦。 本发明增加了系统的响应和再现性。
    • 7. 发明申请
    • Solar energy system with spherical lens
    • 带球面透镜的太阳能系统
    • US20080083451A1
    • 2008-04-10
    • US11543199
    • 2006-10-05
    • Li-Hung LaiLi-Wen LaiWen-Sheng HsiehLi-Chieh ShihChia-Hung LinKun-Fang Huang
    • Li-Hung LaiLi-Wen LaiWen-Sheng HsiehLi-Chieh ShihChia-Hung LinKun-Fang Huang
    • H02N6/00
    • H01L31/0543Y02E10/52
    • The invention relates to a solar energy system with spherical lens. The solar energy system comprises: a spherical lens and a solar energy plate. The spherical lens has a first surface and a second surface. The first surface is used for receiving incident light from a light source at any location. The second surface is used for transmitting concentrated light caused by the incident light to a predetermined region. The solar energy plate is mounted on the predetermined region, and is used for receiving the concentrated light and generating electrical energy. According to the invention, the spherical lens can receive the incident light from any location and transmit the concentrated light to the same predetermined region. The solar energy plate on the predetermined region can always receive the concentrated light from the spherical lens. Therefore, the efficiency of the solar energy system of the invention is high.
    • 本发明涉及一种具有球面透镜的太阳能系统。 太阳能系统包括:球面透镜和太阳能板。 球面透镜具有第一表面和第二表面。 第一表面用于在任何位置接收来自光源的入射光。 第二表面用于将由入射光引起的集中光透射到预定区域。 太阳能板安装在预定区域上,用于接收集中的光并产生电能。 根据本发明,球面透镜可以接收来自任何位置的入射光并将集中的光传输到相同的预定区域。 预定区域上的太阳能板可以始终接收来自球面透镜的集中光。 因此,本发明的太阳能系统的效率高。
    • 9. 发明申请
    • DISPLAY DEVICE AND DRIVING METHOD APPLICABLE THERETO
    • 显示装置及适用的驱动方法
    • US20120235978A1
    • 2012-09-20
    • US13420590
    • 2012-03-14
    • Li-Tang LinChia-Hung Lin
    • Li-Tang LinChia-Hung Lin
    • G06F3/038
    • G09G3/20G06F1/3265G06F3/038G09G2310/0275G09G2310/0289G09G2310/06G09G2310/08G09G2330/021
    • A driving method applicable to a display device including multiple display driving circuits, includes: the display driving circuits synchronously receiving a start pulse and generating a synchronous timing signal; a previous display driving circuit sending out a first signal to a rear display driving circuit, so that the rear display driving circuit detects and stores a signal reception delay, the display reception delay denoting a delay between the synchronous timing signal and the first signal received by the rear display driving circuit; after storing the display reception delay, the rear display driving circuit temporarily stopping receiving a system clock signal and temporarily stopping generating the synchronous timing signal; and the previous display driving circuit sending a second X signal to the rear display driving circuit to wake up the rear display driving circuit for preparing to receive a display data.
    • 一种适用于包括多个显示驱动电路的显示装置的驱动方法,包括:显示驱动电路同步接收起始脉冲并产生同步定时信号; 向后显示驱动电路发送第一信号的先前显示驱动电路,使得后显示驱动电路检测并存储信号接收延迟,显示接收延迟表示同步定时信号与由第一信号接收的第一信号之间的延迟 后显示驱动电路; 在存储显示接收延迟之后,后显示驱动电路暂时停止接收系统时钟信号并暂时停止产生同步定时信号; 并且先前的显示驱动电路向后显示驱动电路发送第二X信号,以唤醒后显示驱动电路以准备接收显示数据。
    • 10. 发明授权
    • Voltage detecting circuit and voltage detecting method
    • 电压检测电路和电压检测方法
    • US08228079B2
    • 2012-07-24
    • US12242844
    • 2008-09-30
    • Chia-Hung Lin
    • Chia-Hung Lin
    • G01R27/08
    • G01R19/16552
    • Voltage detecting circuit for detecting a voltage state of a voltage source includes a first route, a second route and a comparator. First route is between a voltage source and a ground voltage, having a first current source and a first MOS resistor, connected in series at a first node with outputting a first voltage. Second route is between the voltage source and the ground voltage, having a second current source and a second MOS resistor, connected in series at a second node with outputting a second voltage. The comparator receives the first voltage and the second voltage and outputs the voltage state. The comparator includes a current offset circuit for producing an offset voltage to the second voltage. A voltage comparing unit compares the first voltage and the second voltage with offset by a voltage difference, and outputs the voltage state according to variance of the voltage difference.
    • 用于检测电压源的电压状态的电压检测电路包括第一路由,第二路由和比较器。 第一路线在电压源和地电压之间,具有在第一节点处串联连接并输出第一电压的第一电流源和第一MOS电阻。 第二路径是在电压源和地电压之间,具有在第二节点串联连接并输出第二电压的第二电流源和第二MOS电阻。 比较器接收第一电压和第二电压并输出电压状态。 比较器包括用于产生到第二电压的偏移电压的电流偏移电路。 电压比较单元将第一电压和第二电压的偏移与电压差进行比较,并根据电压差的变化输出电压状态。