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    • 1. 发明授权
    • Cryptation system for packet switching networks based on digital chaotic models
    • 基于数字混沌模型的分组交换网络的加密系统
    • US06792111B1
    • 2004-09-14
    • US09416321
    • 1999-10-12
    • Francesco ItaliaLuigi FortunaFrancesco BeritelliEusebio Di Cola
    • Francesco ItaliaLuigi FortunaFrancesco BeritelliEusebio Di Cola
    • H04L900
    • H04L9/001H04L9/0891H04L9/12H04L2209/04H04L2209/125
    • A cryptation system for information transmitted through packet switching networks masks the digital information data by combining it at the transmitting station with digital data of a certain cryptation code before transmitting the so-encrypted data through the network. The system also performs an inverse decrypting processing at the receiving station using the same code. The system generates at a transmitting station and at a receiving station, starting from a given pair of password codes or user key, a certain discrete chaotic model or map of the pair of codes or key, producing dynamically updated pairs of values of codes or keys every certain number of processing steps of the chaotic map. The data to be transmitted is masked by way of a logic combination with the current dynamically updated keys at the transmitting station. The data is demasked at the receiving station by way of a logic decomposition of the digital data from the current dynamically updated key thereby returning the digital data to a normal non-encrypted condition.
    • 用于通过分组交换网络传输的信息的密码系统通过在发送站处与某个密码的数字数据组合来掩蔽数字信息数据,然后通过网络发送如此加密的数据。 该系统还使用相同的代码在接收站处执行反向解密处理。 该系统在发送站和接收站处产生,从给定的一对密码代码或用户密钥,一对离散混沌模型或一对码或密钥对映射,产生代码或密钥值的动态更新对 每一定数量的处理步骤的混沌映射。 要发送的数据通过与发送站处的当前动态更新密钥的逻辑组合来屏蔽。 数据通过数字数据从当前动态更新密钥的逻辑分解在接收站被解掩,从而将数字数据返回到正常的非加密状态。
    • 4. 发明申请
    • COMBINING TOUCH SCREEN AND OTHER SENSING DETECTIONS FOR USER INTERFACE CONTROL
    • 组合触摸屏和用户界面控制的其他感应检测
    • US20140009430A1
    • 2014-01-09
    • US13544713
    • 2012-07-09
    • Francesco ItaliaGiuseppe NovielloChee Yu NgBenedetto Vigna
    • Francesco ItaliaGiuseppe NovielloChee Yu NgBenedetto Vigna
    • G06F3/044
    • G06F3/044G06F3/0416
    • A touch sensitive display includes a capacitive touch sensor configured to output capacitance values. A motion sensor makes a motion detection and generates a motion signal including a motion value indicative of sensed motion detection. A touch detection circuit is coupled to receive the capacitance values and motion values. The touch detection circuit processes the capacitance values to make a hovering detection and a touching detection with respect to the display. The touch detection circuit further generates an output signal including the motion value correlated in time with each of the hovering detection and touching detection. The output signal may be processed as a user interface control signal. The output signal may also be processed to determine an impulsive strength of the touching detection as a function of an elapsed time between hover and touch and the measured motion values.
    • 触敏显示器包括被配置为输出电容值的电容式触摸传感器。 运动传感器进行运动检测并产生运动信号,该运动信号包括指示检测到的运动检测的运动值。 耦合触摸检测电路以接收电容值和运动值。 触摸检测电路处理电容值以对显示进行悬停检测和触摸检测。 触摸检测电路进一步生成包括与悬停检测和触摸检测中的每一个相关的运动值的输出信号。 可以将输出信号作为用户界面控制信号进行处理。 还可以处理输出信号以确定触摸检测的脉冲强度作为在悬停和触摸之间经过的时间以及所测量的运动值的函数。
    • 6. 发明授权
    • Combining touch screen and other sensing detections for user interface control
    • 结合触摸屏和其他感应检测功能,实现用户界面控制
    • US08928609B2
    • 2015-01-06
    • US13544713
    • 2012-07-09
    • Francesco ItaliaGiuseppe NovielloChee Yu NgBenedetto Vigna
    • Francesco ItaliaGiuseppe NovielloChee Yu NgBenedetto Vigna
    • G06F3/041
    • G06F3/044G06F3/0416
    • A touch sensitive display includes a capacitive touch sensor configured to output capacitance values. A motion sensor makes a motion detection and generates a motion signal including a motion value indicative of sensed motion detection. A touch detection circuit is coupled to receive the capacitance values and motion values. The touch detection circuit processes the capacitance values to make a hovering detection and a touching detection with respect to the display. The touch detection circuit further generates an output signal including the motion value correlated in time with each of the hovering detection and touching detection. The output signal may be processed as a user interface control signal. The output signal may also be processed to determine an impulsive strength of the touching detection as a function of an elapsed time between hover and touch and the measured motion values.
    • 触敏显示器包括被配置为输出电容值的电容式触摸传感器。 运动传感器进行运动检测并产生运动信号,该运动信号包括指示检测到的运动检测的运动值。 耦合触摸检测电路以接收电容值和运动值。 触摸检测电路处理电容值以对显示进行悬停检测和触摸检测。 触摸检测电路进一步生成包括与悬停检测和触摸检测中的每一个相关的运动值的输出信号。 可以将输出信号作为用户界面控制信号进行处理。 还可以处理输出信号以确定触摸检测的脉冲强度作为在悬停和触摸之间经过的时间以及所测量的运动值的函数。
    • 7. 发明申请
    • CAPACITIVE-INDUCTIVE TOUCH SCREEN
    • 电容感应触屏
    • US20100328249A1
    • 2010-12-30
    • US12491990
    • 2009-06-25
    • Kusuma Adi NingratGiuseppe NovielloFrancesco Italia
    • Kusuma Adi NingratGiuseppe NovielloFrancesco Italia
    • G06F3/044
    • G06F3/044G06F3/046
    • A touch screen uses a combination of capacitive sensing and inductive sensing applied to the same sensor pattern. A capacitive sensor uses the electric field formed by the columns and rows of the sensor matrix. An inductive sensor uses the magnetic field formed by current flowing in column and row lines to induce an inductive pen. Using the same sensor lines, the magnetic field created by the oscillating inductive pen is detected. Both methods require no moving elements in the sensor and it is possible to combine both method of detections in the same sensor pattern. Using switch matrices, the sensor lines are operated in an open loop fashion for the capacitive detection mode, and are operated in a closed loop fashion for the inductive detection mode.
    • 触摸屏使用电容感测和感应感应组合应用于相同的传感器图案。 电容传感器使用由传感器矩阵的列和行形成的电场。 感应传感器使用由在列和行线中流动的电流形成的磁场来诱导感应笔。 使用相同的传感器线,检测由振荡感应笔产生的磁场。 这两种方法都不需要传感器中的移动元件,并且可以将两种检测方法结合在相同的传感器图案中。 使用开关矩阵,传感器线路以电容检测模式的开环方式操作,并且以感应检测模式的闭环方式操作。