会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明申请
    • IMAGE INTERACTION SYSTEM, METHOD FOR DETECTING FINGER POSITION, STEREO DISPLAY SYSTEM AND CONTROL METHOD OF STEREO DISPLAY
    • 图像交互系统,检测手指位置的方法,立体显示系统和立体显示控制方法
    • US20140176676A1
    • 2014-06-26
    • US14040735
    • 2013-09-30
    • Industrial Technology Research Institute
    • Shang-Yi LinTien-You LeeChia-Chen Chen
    • H04N13/04
    • H04N13/371H04N13/366
    • The disclosure provides a stereo display system including a stereo display, a depth detector, and a computing processor. The stereo display displays a left eye image and a right eye image, such that a left eye and a right eye of a viewer generate a parallax to view a stereo image. The depth detector captures a depth data of a three-dimensional space. The computing processor controls image display of the stereo display. The computing processor analyzes an eyes position of the viewer according to the depth data, and when the viewer moves horizontally, vertically, or obliquely in the three-dimensional space relative to the stereo display, the computing processor adjusts the left eye image and the right eye image based on variations of the eyes position. Furthermore, an image interaction system, a method for detecting finger position, and a control method of stereo display are also provided.
    • 本公开提供了一种包括立体显示器,深度检测器和计算处理器的立体显示系统。 立体声显示器显示左眼图像和右眼图像,使得观看者的左眼和右眼产生视差以观看立体图像。 深度检测器捕获三维空间的深度数据。 计算处理器控制立体显示器的图像显示。 计算处理器根据深度数据分析观看者的眼睛位置,并且当观看者相对于立体显示器在三维空间中水平,垂直或倾斜地移动时,计算处理器调整左眼图像和右眼图像 基于眼睛位置变化的眼睛图像。 此外,还提供了图像交互系统,用于检测手指位置的方法以及立体显示的控制方法。
    • 5. 发明申请
    • PROCESS FOR PREPARING PLATINUM BASED ELECTRODE CATALYST FOR USE IN DIRECT METHANOL FUEL CELL
    • 制备用于直接甲醇燃料电池的基于铂的电极催化剂的方法
    • US20110036202A1
    • 2011-02-17
    • US12911825
    • 2010-10-26
    • Man-Yin LOI-Hsuan LIAO
    • Man-Yin LOI-Hsuan LIAO
    • B22F9/20
    • H01M4/921B01J23/42B01J35/0013H01M8/1011Y02E60/523
    • A method for preparing platinum (Pt) based nano-size catalyst which is useful as an electrode catalyst of a direct methanol fuel cell (DMFC). This method includes the implementation of a reduction reaction of a platinum precursor and an optional ad-metal precursor with a reducing agent in a solvent and in the presence of a stabilizer to form a suspension containing colloidal particles of platinum or platinum/ad-metal; mixing the suspension with a co-solvent; subjecting the resultant mixture to a centrifugal treatment to form a platinum or platinum/ad-metal colloidal particle portion and a liquid portion, repeating the co-solvent mixing and centrifugal treatment to the platinum or platinum/ad-metal colloidal particle portion until the resultant liquid portion no longer contains the product of the reduction reaction; and drying the resultant platinum or platinum/ad-metal colloidal particle portion to obtain a platinum based nano-size catalyst.
    • 一种可用作直接甲醇燃料电池(DMFC)的电极催化剂的铂(Pt)基纳米尺寸催化剂的制备方法。 该方法包括在溶剂中和在稳定剂存在下,用还原剂将铂前体和任选的ad金属前体还原反应,形成含有铂或铂/金属的胶体颗粒的悬浮液; 将悬浮液与共溶剂混合; 对所得混合物进行离心处理以形成铂或铂/金属 - 金属胶体颗粒部分和液体部分,重复对铂或铂/金属 - 金属胶体颗粒部分的共溶剂混合和离心处理,直到得到 液体部分不再含有还原反应的产物; 并干燥得到的铂或铂/金属 - 金属胶体颗粒部分,得到铂基纳米尺寸催化剂。
    • 6. 发明授权
    • Method for detecting and compensating electrode wear of electric discharge machining
    • 放电加工电极磨损检测和补偿方法
    • US07576295B2
    • 2009-08-18
    • US11747724
    • 2007-05-11
    • Ming-Ji ChenJui-Kuan LinChin-Hui ChenChao-Chuang Mai
    • Ming-Ji ChenJui-Kuan LinChin-Hui ChenChao-Chuang Mai
    • B23H7/20
    • B23H7/20B23H7/02B23H7/265B23H7/30B23H9/14
    • A method for detecting and compensating electrode wear of electric discharge machining (EDM) is disclosed, which comprises the steps of: defining a calibration node; calculating a wear length of a tool electrode by an edge-finding algorithm; using the calculated wear length of the tool electrode as a cut compensation for compensating a machining depth of next new tool electrode replacing the previously machined tool electrode; whereas the machining depth is obtained according to the following formula: the machining depth=designed depth of cut+predicted wear of the tool electrode for machining to desire depth−calculated wear length of the previously machined tool electrode+a through hole offset. With the aforesaid method, the wear of an used tool electrode can be detected automatically for compensating the machining depth of an unused tool electrode without ant additional equipment while achieving accurate machining.
    • 公开了一种用于检测和补偿放电加工(EDM)的电极磨损的方法,其包括以下步骤:定义校准节点; 通过边缘求解算法计算工具电极的磨损长度; 使用计算的刀具电极的磨损长度作为切削补偿来补偿下一个新刀具电极的加工深度,以代替先前加工的刀具电极; 而加工深度根据以下公式获得:加工深度=设计的切削深度+用于加工的刀具电极的预期磨损,以期望先前加工的刀具电极的深度计算磨损长度+通孔偏移。 利用上述方法,可以自动检测使用过的工具电极的磨损,以便在实现精确加工的同时不用蚂蚁附加设备补偿未使用的工具电极的加工深度。