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    • 2. 发明申请
    • OPTICAL IMAGING LENS AND ELECTRONIC DEVICE COMPRISING THE SAME
    • 光学成像镜头和包含该镜片的电子设备
    • US20160316116A1
    • 2016-10-27
    • US14749643
    • 2015-06-25
    • Chung-Chih ChangJia-Sin JhangYi-Ta Chiang
    • Chung-Chih ChangJia-Sin JhangYi-Ta Chiang
    • H04N5/225G02B13/00
    • G02B13/004G02B9/34
    • An optical imaging lens set has a first lens with an object-side with a convex portion near the optical axis, an image-side with a convex portion near its periphery, a second lens with an object-side with a convex portion near the optical axis and a concave portion near its periphery, a third lens with an object-side with a concave portion near its periphery and an image-side with a convex portion near the optical axis and a convex portion near its periphery, a fourth lens with an object-side with a convex portion near the optical axis and an image-side with a concave portion near the optical axis and a convex portion near its periphery. A total thickness ALT, the third lens thickness T3, the first lens Abbe number υ1 and the third lens Abbe number υ3 satisfy 20≦|υ1−υ3| and 3.3≦ALT/T3.
    • 光学成像透镜组具有第一透镜,物镜侧具有靠近光轴的凸部,具有靠近其周边的凸部的图像侧,具有物体侧的第二透镜,具有靠近光学的凸部 具有靠近其周边的凹部,具有在其周边附近具有凹部的物体侧的第三透镜和在光轴附近具有凸部的图像侧和其周边附近的凸部,具有第二透镜的第四透镜, 具有靠近光轴的凸部的物体侧和在光轴附近具有凹部的图像侧和其周边附近的凸部。 总厚度ALT,第三透镜​​厚度T3,第一透镜阿贝数υ1和第三透镜阿贝数υ3满足20≤|υ1-υ3| 和3.3≤ALT/ T3。
    • 7. 发明授权
    • Reconfigurable neural network
    • 可重构神经网络
    • US5742741A
    • 1998-04-21
    • US683254
    • 1996-07-18
    • Tzi-Dar ChiuehHwai-Tsu ChangYeh-Rong HsuHuang-Lin YangChung-Chih Chang
    • Tzi-Dar ChiuehHwai-Tsu ChangYeh-Rong HsuHuang-Lin YangChung-Chih Chang
    • G06N3/063G06N3/08G06F15/18
    • G06N3/082G06N3/063
    • A reconfigurable neural network is disclosed. The neural network includes a plurality of switches each having at least two conductive leads, wherein data flow direction of the conductive leads of the switches is programmed to select one of the conductive leads as input switch lead and select another one of the conductive leads as an output switch lead. A plurality of processing elements each having a plurality of leads connected to the switches, wherein the processing elements and the switches are interconnected in one-dimension manner. Each of the processing elements comprising: (a) a serial-in-parallel-out accumulator having a first input coupled to one of the interconnected switches and generating a first output; (b) an activation function for transforming the first output of the serial-in-parallel-out accumulator and generating a second output; and (c) a parallel-in-serial-out shift register for shifting out the second output of the activation function serially to one of the interconnected switches.
    • 公开了一种可重构神经网络。 神经网络包括多个开关,每个开关具有至少两个导电引线,其中开关的导电引线的数据流动方向被编程为选择一个导电引线作为输入开关引线,并选择另一个导电引线作为 输出开关引线。 多个处理元件各自具有连接到开关的多个引线,其中处理元件和开关以一维方式互连。 每个处理元件包括:(a)串并行输出累加器,其具有耦合到互连开关中的一个并产生第一输出的第一输入; (b)激活功能,用于变换串并行输出累加器的第一输出并产生第二输出; 和(c)串并联移位寄存器,用于将激活功能的第二输出串联移动到互连开关之一。
    • 9. 发明申请
    • METHOD FOR RESPONDING A READING COMMAND IN AN AUTOMATICALLY ADAPTIVE MEMORY CARD AND MEMORY CARD CONTROLLER
    • 在自动自适应存储卡和存储卡控制器中响应读命令的方法
    • US20050199732A1
    • 2005-09-15
    • US10711541
    • 2004-09-24
    • Bar-Chung HwangChung-Chih Chang
    • Bar-Chung HwangChung-Chih Chang
    • G06K19/06G11C7/00
    • G06K7/0008
    • A method for reading an automatically adaptive memory card and a memory card controller are provided. First, whether a present reading address of a reading command is the same as a previous reading address is determined. Next, when the present reading address is determined to be the same as the previous reading address, a response is output and a data is output in a data-lag mode to output the data after the response is outputted. On the other hand, when the present reading address is not the same as the previous reading address, the previous reading address is updated to be the present reading address, the response is output and the data is output in a data-parallel mode to output the data regardless of whether or not the response is outputted. Hence, the memory card with the invention is compatible with several card readers on the market.
    • 提供一种读取自适应存储卡和存储卡控制器的方法。 首先,确定读取命令的当前读取地址是否与先前的读取地址相同。 接下来,当将当前读取地址确定为与先前读取地址相同时,输出响应并且以数据延迟模式输出数据,以在输出响应之后输出数据。 另一方面,当当前读取地址与先前的读取地址不同时,先前的读取地址被更新为当前的读取地址,输出响应并且以数据并行模式输出数据以输出 该数据不管该响应是否被输出。 因此,具有本发明的存储卡与市场上的几个读卡器兼容。