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
    • 1. 发明申请
    • Notebook Mountable Hand Writing Memory System
    • 笔记本安装手写存储系统
    • US20110036648A1
    • 2011-02-17
    • US12694670
    • 2010-01-27
    • Wei-Chou ChenCheng-Lu LiuYun-Hsiang Yeh
    • Wei-Chou ChenCheng-Lu LiuYun-Hsiang Yeh
    • G06F3/041
    • G06F3/046G06F3/03545
    • A notebook mountable hand writing memory system is disclosed, and particular disclosed a notebook mountable tablet. In the notebook mountable hand writing memory system, a top protective layer, a sensing board and a bottom protective layer is assembled to form the writing member of the notebook mountable hand writing memory system for reducing the weight and the thickness of the notebook mountable hand writing memory system. Therefore, the notebook mountable hand writing memory system has the characteristics of low fabricating cost, low weight, and thinner thickness. Furthermore, a plurality of through holes are provided on the writing member for integrating the notebook mountable hand writing memory system with a conventional notebook. Therefore, the information written on the paper of the conventional notebook can be digitized and stored by the notebook mountable hand writing memory system.
    • 公开了一种可笔记本安装的手写存储器系统,并且特别公开了一种可笔记本安装的平板电脑。 在笔记本安装手写存储系统中,组装顶部保护层,感测板和底部保护层以形成笔记本安装手写入存储器系统的书写构件,用于减小笔记本安装手写入的重量和厚度 内存系统 因此,笔记本安装式手写存储系统具有制造成本低,重量轻,厚度薄的特点。 此外,在书写构件上设置有多个通孔,用于将笔记本安装手写入存储器系统与传统笔记本电脑整合。 因此,可以通过笔记本可安装的手写存储器系统将写在传统笔记本的纸上的信息数字化和存储。
    • 2. 发明申请
    • Integrated Substrate and Display with Electromagnetic Sensor Loop
    • 具有电磁传感器回路的集成基板和显示器
    • US20110090171A1
    • 2011-04-21
    • US12767685
    • 2010-04-26
    • Wei-Chou ChenYun-Hsiang YehCheng-Lu Liu
    • Wei-Chou ChenYun-Hsiang YehCheng-Lu Liu
    • G06F3/046G01R31/02
    • G06F3/046G06F3/0412
    • The present invention relates to an integrated substrate and display with electromagnetic sensor loop, and particularly relates to a TFT/CF array substrate and flat display with electromagnetic sensor loop. In the present invention, electromagnetic sensor loop is formed on one substrate of a display panel for getting the integrated substrate with electromagnetic sensor loop. The integrated substrate with antenna loop has both a function of a detecting board and a function of one substrate of the display panel, for example a function of a TFT/CF array substrate. Therefore, a display panel or a display having electromagnetic inputting function can be fabricated by the integrated substrate without additional detecting board and digitizer tablet
    • 本发明涉及具有电磁传感器回路的集成基板和显示器,特别涉及一种TFT / CF阵列基板和具有电磁传感器回路的平面显示器。 在本发明中,在显示面板的一个基板上形成电磁传感器回路,以使集成基板具有电磁传感器回路。 具有天线回路的集成基板具有检测板的功能和显示面板的一个基板的功能,例如TFT / CF阵列基板的功能。 因此,具有电磁输入功能的显示面板或显示器可以由集成基板制造,而无需附加的检测板和数字转换器
    • 4. 发明申请
    • Whiteboard and Method for Orientation Thereof
    • 白板及其方向
    • US20110007024A1
    • 2011-01-13
    • US12617720
    • 2009-11-12
    • Cheng-Lu LiuYun-Hsiang YehSheng-Mao Lin
    • Cheng-Lu LiuYun-Hsiang YehSheng-Mao Lin
    • G06F3/045
    • G06F3/046
    • The present invention relates to a whiteboard and method for orientation thereof, and particularly relates to an electromagnetic-and-interactive whiteboard with a battery-free pointer device and method of the electromagnetic-and-interactive whiteboard for finding the position of the battery-free pointer device. A plurality of signal handling devices are provided in the whiteboard for controlling the antenna boards of the whiteboard to emit electromagnetic power respectively. By this way, the antenna boards do not interfered with each other and the battery-free pointer device can be located precisely without deviation. Furthermore, the electromagnetic power provided by the antenna boards is applied to instead of a battery in battery-free pointer device for providing the power to the battery-free pointer device. The electromagnetic power provided by the antenna boards is used to be the power of the battery-free pointer device for emitting electromagnetic signals. As consequence of this structure of the battery-free pointer device of the whiteboard, the whiteboard of the present invention can meet the demand for environmental protection and more practicability.
    • 白板及其取向方法技术领域本发明涉及一种用于取向的白板及其方法,特别涉及具有无电池指针装置的电磁交互式白板以及用于寻找无电池位置的电磁 - 交互式白板的方法 指针设备 在白板中设置多个信号处理装置,用于控制白板的天线板分别发射电磁功率。 通过这种方式,天线板不会相互干扰,无电池指针装置可以精确定位而没有偏差。 此外,由天线板提供的电磁功率代替在无电池指针装置中的电池,用于向无电池指针装置提供电力。 由天线板提供的电磁功率用于发射电磁信号的无电池指针装置的电力。 由于白板的无电池指针装置的结构,本发明的白板可以满足环保要求和更实用性。
    • 6. 发明授权
    • Method for determining incline angle of electromagnetic pointer
    • 确定电磁指针倾角的方法
    • US08781789B2
    • 2014-07-15
    • US12777873
    • 2010-05-11
    • Cheng-Liang HsiehYun-Hsiang YehChia-Jui Yeh
    • Cheng-Liang HsiehYun-Hsiang YehChia-Jui Yeh
    • G01C9/02G01R27/26
    • G01C9/06G01C2009/064
    • A method for determining an incline angle of electromagnetic pointer is disclosed. The method comprises the following steps. First of all, an electromagnetic input pen/stylus is provided over antennas Xn/Yn along X/Y axes. Then a plurality of antennas at two sides of the antennas Xn/Yn are scanned. Next the signal distributions of the antennas Xn/Yn and the antennas at two side are analyzed. Then the number of antenna sampled of the signal distributions of the antennas at two side is determined. Next the antennas at two side are selected and the signal distributions are sampled and received according to the number of antenna sampled. Finally, an incline angle of the electromagnetic pointer is determined according to the sampled signal distributions.
    • 公开了一种用于确定电磁指针的倾斜角的方法。 该方法包括以下步骤。 首先,沿着X / Y轴在天线Xn / Yn上设置电磁输入笔/触控笔。 然后扫描天线Xn / Yn的两侧的多个天线。 接下来分析天线Xn / Yn和两侧的天线的信号分布。 然后确定在两侧天线的信号分布采样的天线数。 接下来,选择两侧的天线,并根据采样的天线的数量对信号分布进行采样和接收。 最后,根据采样的信号分布确定电磁指针的倾斜角度。
    • 9. 发明申请
    • Apparatus For Processing Signals From Electromagnetic Antenna Board With Multiple Processing Units
    • 用于处理具有多个处理单元的电磁天线板信号的装置
    • US20090188727A1
    • 2009-07-30
    • US12019624
    • 2008-01-24
    • Yun-Hsiang Yeh
    • Yun-Hsiang Yeh
    • G06F3/041G06K11/06G08C21/00
    • G06F3/0416G06F3/0418G06F3/046
    • An apparatus with multiple processing units is provided for processing signals from one or more electromagnetic antenna board in a concurrent and/or cooperative manner. The apparatus of the present invention includes a plurality of signal processing units, each connected to a different or same electromagnetic antenna board, and an integration processing unit connected to each of the signal processing units. The signal processing units process the signal from the connected antenna board independently, if connected to different antenna board, or cooperatively, if connected to the same antenna board. The result of the processed signals are then fed to the integration processing unit, which will perform further processing to obtain the final output signals.
    • 提供具有多个处理单元的装置,用于以并行和/或协作的方式处理来自一个或多个电磁天线板的信号。 本发明的装置包括多个信号处理单元,每个信号处理单元连接到不同或相同的电磁天线板,以及与每个信号处理单元连接的积分处理单元。 信号处理单元如果连接到不同的天线板,或者如果连接到相同的天线板,则可以独立地处理来自连接的天线板的信号。 然后将经处理的信号的结果馈送到积分处理单元,其将执行进一步处理以获得最终的输出信号。
    • 10. 发明授权
    • Method for frequency detection and detecting variation of frequency
    • 频率检测和频率变化检测方法
    • US08653808B2
    • 2014-02-18
    • US13024236
    • 2011-02-09
    • Yun-Hsiang YehChang-Sian Chen
    • Yun-Hsiang YehChang-Sian Chen
    • G01R23/14
    • G01R23/09
    • Method for frequency detection and detecting variation of frequency is disclosed. The method comprises the following steps. First of all, a pointer is provided over an electromagnetic position detection apparatus, wherein the pointer emits an electromagnetic signal with a frequency f1. Next a base integration signal is generated according to the integration of the electromagnetic signal with the frequency f1 for a current integration period x. Then a current integration signal is generated according to the integration of the electromagnetic signal with the frequency f1 for the current integration period x and a predetermined electromagnetic signal with a predetermined frequency f0 for the predetermined integration period y. Finally, a frequency variation value Δf between the frequency f1 and a current frequency fc is calculated and obtained according to the current integration signal and the base integration signal.
    • 公开了频率检测和频率变化检测方法。 该方法包括以下步骤。 首先,在电磁位置检测装置上设置指针,其中指示器发射具有频率f1的电磁信号。 接下来,根据电流信号与当前积分周期x的频率f1的积分来生成基本积分信号。 然后,根据电磁信号与当前积分周期x的频率f1的积分和预定积分周期y的预定频率f0的预定电磁信号,产生电流积分信号。 最后,根据电流积分信号和基积分信号计算频率f1与电流频率fc之间的频率变化值Deltaf。