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    • 2. 发明申请
    • DEFECT INSPECTING DEVICE AND DEFECT INSPECTING METHOD USING SAME
    • 缺陷检查设备和使用相同的缺陷检查方法
    • WO2012020932A3
    • 2012-05-31
    • PCT/KR2011005427
    • 2011-07-22
    • 3B SYSTEM INCLEE JE SUNKIM GYEONG DEOKKIM JONG WOOCHANG KI SOOLEE JONG SIK
    • LEE JE SUNKIM GYEONG DEOKKIM JONG WOOCHANG KI SOOLEE JONG SIK
    • G01N21/88G01B11/30G02B5/12
    • G01N21/8806G01B11/303G02B21/22
    • The present invention pertains to a defect inspecting device, which comprises: a first optical unit for collimating each pair of rays so as to irradiate the same to an inspection position of an object to be inspected, wherein the pair of rays overlap each other at the edges thereof so that the overlapped areas is irradiated to the inspection position, a second optical unit for collimating each pair of rays so as to irradiate the same to the inspection position, wherein the pair of rays overlap each other at the edges thereof so that the overlapped area is irradiated to the inspection position; a control section for controlling the first optical unit and the second optical unit to be lighted alternately; and a camera for photographing the image of the inspection position using the incident light which is irradiated from the first optical unit or the second optical unit and then reflected from the inspection position.
    • 本发明涉及一种缺陷检查装置,其包括:第一光学单元,用于准直每对光线,以将其照射到被检查物体的检查位置,其中所述一对光线在 边缘,使得重叠区域照射到检查位置,第二光学单元,用于准直每对光线,以便将其照射到检查位置,其中该对光线在其边缘处彼此重叠,使得 重叠区域照射到检查位置; 控制部分,用于交替地控制所述第一光学单元和所述第二光学单元被点亮; 以及用于使用从第一光学单元或第二光学单元照射并然后从检查位置反射的入射光来拍摄检查位置的图像的照相机。
    • 3. 发明申请
    • LOAD MEASURING DEVICE AND METHOD OF WEIGHING VEHICLE HAVING SUSPENSION WITH TWO-STAGE SPRINGS
    • 负载测量装置和具有两级弹簧悬挂的车辆称重方法
    • WO2012053869A2
    • 2012-04-26
    • PCT/KR2011007910
    • 2011-10-21
    • BAYTECH KOREA INCKIM JONG WOOJHO YOUN BEOM
    • KIM JONG WOOJHO YOUN BEOM
    • G01G19/12B60P5/00G01G19/08
    • G01G19/12G01G3/08
    • The present invention provides a load measuring device and method capable of measuring, in real time, the load of a vehicle having a suspension with two-stage springs. The invention allows: sensors to be installed in both main springs and auxiliary springs of the suspension which has two-stages; and the weight, which is applied to the vehicle, to be measured by using measurement values of the sensors installed in the main springs and measurement values of the sensors installed in the auxiliary springs, wherein the measurement values are changed as the load is applied to the vehicle. Particularly, the invention adopts; a load measuring method using sensor values of the main springs or sensor values of the auxiliary springs in each load section of the vehicle; or a method for measuring the load that is applied to the vehicle by adding up the sensor measurement values of the main springs and the sensor measurement values of the auxiliary springs such that a mathematical formula capable of changing the added measurement values into the load is modeled, thereby calculating the applied load in real time by using the measurement values of the sensors, which are changed in real time according to the load that is applied to the vehicle, and outputting the calculated load to a user. Thus, even for conventional vehicles having a suspension with two-stage springs, to which the method for measuring the load of the vehicle in real time is difficult to apply, the invention can measure the exact load of the vehicle in real time, thereby effectively preventing an overload.
    • 本发明提供一种能够实时地测量具有两级弹簧的悬架的车辆的载荷的载荷测量装置和方法。 本发明允许传感器安装在具有两级的悬架的主弹簧和辅助弹簧中; 以及通过使用安装在主弹簧中的传感器的测量值和安装在辅助弹簧中的传感器的测量值来测量应用于车辆的重量,其中测量值随着负载被施加到 机动车。 特别是本发明采用; 使用车辆的每个负载部分中的主弹簧的传感器值或辅助弹簧的传感器值的负载测量方法; 或者通过将主弹簧的传感器测量值和辅助弹簧的传感器测量值相加来测量施加到车辆的负载的方法,使得能够将附加的测量值改变为负载的数学公式被建模 从而通过使用根据施加到车辆的负载实时改变的传感器的测量值并将计算出的负载输出给用户来实时计算施加的负载。 因此,即使对于具有两级弹簧的悬架的传统车辆,实际上难以实现车辆负荷测量的方法,本发明可以实时测量车辆的精确负载,从而有效地 防止过载。
    • 4. 发明申请
    • FRONT RETAINER
    • 前保留
    • WO2011053001A2
    • 2011-05-05
    • PCT/KR2010007454
    • 2010-10-28
    • PARK JONG IKSHIN EUN JOOKIM JONG WOOWOO JAE CHANG
    • PARK JONG IKSHIN EUN JOOKIM JONG WOOWOO JAE CHANG
    • H01L21/673B65D77/26B65D81/05B65D85/48
    • H01L21/67369
    • The present invention relates to a front retainer which is fitted to the door of a carrier for receiving substrates. The disclosed invention comprises: a frame which is joined to the door; an extending part which is formed so as to constitute a plurality of rows on the inside of the frame; a first substrate holding part which is formed on the extending part; and a second substrate holding part which is formed between the frame and the first substrate holding part on the extending part. Formed on the first substrate holding part there is a U-shaped first recess, and provided on the second substrate holding part there is a V-shaped second substrate holding part. The front retainer of the present invention has the advantage that it prevents scratching and abrasion of substrates and therefore minimises the occurrence of particles due to shocks to the front retainer and substrates, while holding the substrates stable during the process of shutting the door or transporting the carrier.
    • 本发明涉及一种安装在用于接收基板的载体的门上的前保持器。 所公开的发明包括:框架,其连接到门; 延伸部,其形成为在框架的内侧构成多列; 第一基板保持部,形成在所述延伸部上; 以及第二基板保持部,其形成在所述框架和所述延伸部分上的所述第一基板保持部之间。 在第一基板保持部上形成有U形的第一凹部,在第二基板保持部上设置有V形的第二基板保持部。 本发明的前保持器具有防止基板的划伤和磨损的优点,因此,在关闭门的过程中保持基板的稳定性或运送 载体。