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    • 2. 发明授权
    • Multi-touch gesture dictionary
    • 多点触控手势字典
    • US07840912B2
    • 2010-11-23
    • US11619553
    • 2007-01-03
    • John Greer EliasWayne Carl WestermanMyra Mary Haggerty
    • John Greer EliasWayne Carl WestermanMyra Mary Haggerty
    • G06F3/033
    • G06F3/04895G06F3/04883G06F2203/04808G06K9/00355
    • A multi-touch gesture dictionary is disclosed herein. The gesture dictionary can include a plurality of entries, each corresponding to a particular chord. The dictionary entries can include a variety of motions associated with the chord and the meanings of gestures formed from the chord and the motions. The gesture dictionary may take the form of a dedicated computer application that may be used to look up the meaning of gestures. The gesture dictionary may also take the form of a computer application that may be easily accessed from other applications. The gesture dictionary may also be used to assign user-selected meanings to gestures. Also disclosed herein are computer systems incorporating multi-touch gesture dictionaries. The computer systems can include, desktop computers, tablet computers, notebook computers, handheld computers, personal digital assistants, media players, mobile telephones, and the like.
    • 本文公开了一种多点触摸手势字典。 手势词典可以包括多个条目,每个条目对应于特定和弦。 字典条目可以包括与和弦相关联的各种运动和由和弦和运动形成的手势的含义。 手势字典可以采用可用于查找手势的意义的专用计算机应用的形式。 手势字典还可以采用可以从其他应用程序容易地访问的计算机应用的形式。 手势字典也可以用于将用户选择的含义分配给手势。 本文还公开了结合多点触摸手势词典的计算机系统。 计算机系统可以包括台式计算机,平板计算机,笔记本电脑,手持式计算机,个人数字助理,媒体播放器,移动电话等。
    • 3. 发明授权
    • Lanyard for handheld electronic device
    • 挂绳用于手持电子设备
    • US07650007B2
    • 2010-01-19
    • US11212514
    • 2005-08-24
    • Daniele De IuliisMatthew Dean RohrbachJohn Greer Elias
    • Daniele De IuliisMatthew Dean RohrbachJohn Greer Elias
    • H04R1/00H04R25/00
    • G06F1/163A45F5/00A45F2005/006A45F2200/0516A45F2200/0525H04R5/04H04R2201/023
    • A lanyard for carrying or wearing portable electronic devices is disclosed. The lanyard includes a neck cord having data carrying capabilities. The lanyard also includes a harness that physically holds and operatively couples the portable electronic device to the neck cord. When a portable electronic device is coupled to the harness, the portable electronic device can be worn around a neck and communicate with an input and/or output (I/O) device (e.g., earphones) operatively coupled to the data carrying cord. That is, the I/O device can send data through the neck cord to the portable electronic device and/or receive data being carried by the neck cord from the portable electronic device. The lanyard facilitates greater ease in wearing portable electronic devices and enables better approaches for managing wires between portable electronic devices and peripheral I/O devices.
    • 公开了携带或佩戴便携式电子设备的挂绳。 挂绳包括具有数据承载能力的颈绳。 挂绳还包括一个将便携式电子设备物理地保持并可操作地连接到颈绳的线束。 当便携式电子设备耦合到线束时,便携式电子设备可以佩戴在颈部周围并与可操作地耦合到数据传输线的输入和/或输出(I / O)设备(例如,耳机)通信。 也就是说,I / O设备可以通过颈绳将数据发送到便携式电子设备和/或从便携式电子设备接收由颈线携带的数据。 挂绳有助于更容易佩戴便携式电子设备,并且实现便携式电子设备和外围I / O设备之间管理电线的更好方法。
    • 4. 发明申请
    • SIMULTANEOUS SENSING ARRANGEMENT
    • 同时感测安装
    • US20080158167A1
    • 2008-07-03
    • US11619433
    • 2007-01-03
    • Steven P. HotellingJohn Greer EliasKapil Vinod Sakariya
    • Steven P. HotellingJohn Greer EliasKapil Vinod Sakariya
    • G06F3/041
    • G06F3/0416G06F1/3262G06F1/3265G06F3/044G06F3/047G06F2203/04101G06F2203/04104
    • Multi-touch touch-sensing devices and methods are described herein. The touch sensing devices can include multiple sense points, each located at a crossing of a drive line and a sense line. In some embodiments, multiple drive lines may be simultaneously or nearly simultaneously stimulated with drive signals having unique characteristics, such as phase or frequency. A sense signal can occur on each sense line that can be related to the drive signals by an amount of touch present at sense points corresponding to the stimulated drive lines and the sense line. By using processing techniques based on the unique drive signals, an amount of touch corresponding to each sense point can be extracted from the sense signal. The touch sensing methods and devices can be incorporated into interfaces for a variety of electronic devices such as a desktop, tablet, notebook, and handheld computers, personal digital assistants, media players, and mobile telephones.
    • 这里描述了多触摸触摸感测装置和方法。 触摸感测装置可以包括多个感测点,每个感测点位于驱动线和感测线的交叉处。 在一些实施例中,多个驱动线可以同时或几乎同时受到具有独特特征的驱动信号(例如相位或频率)的刺激。 感测信号可以在可以与驱动信号相关联的每个感测线上发生存在于对应于被刺激的驱动线和感测线的感测点处的触摸量。 通过使用基于唯一驱动信号的处理技术,可以从感测信号中提取对应于每个感测点的触摸量。 触摸感测方法和装置可以并入用于各种电子设备的接口,例如台式机,平板电脑,笔记本电脑和手持式计算机,个人数字助理,媒体播放器和移动电话。
    • 9. 发明授权
    • Switched capacitor projection scan multi-touch sensor array
    • 开关电容投影扫描多点触摸传感器阵列
    • US08004500B2
    • 2011-08-23
    • US11925679
    • 2007-10-26
    • John Greer Elias
    • John Greer Elias
    • G06F3/045
    • G06F3/044
    • A touch sensor panel can be constructed on a single surface of a substrate as a plurality of distributed RC lines arranged in rows and columns. Each distributed RC line can include alternating connected transistors and metal pads. During operation, the transistors on either side of the metal pads in the rows are alternately gated on and off using non-overlapping gate signals, and pulse travel times for each row in both directions are measured. Similar measurements are taken for the columns. The frequency at which the transistors are gated can be changed to adjust pulse travel times. Equalized travel times are computed as the sum of the pulse travel times in both directions, and indicate which rows and columns have a finger touching it. The un-equalized pulse travel time data can then be used to determine the relative positions of the fingers within the rows and columns.
    • 触摸传感器面板可以在基板的单个表面上构造为以行和列布置的多个分布式RC线。 每个分布式RC线路可以包括交替连接的晶体管和金属焊盘。 在操作期间,行中的金属焊盘的任一侧的晶体管交替地使用不重叠的栅极信号进行开和关,并且测量两个方向上的每行的脉冲行进时间。 对列进行类似的测量。 可以改变晶体管选通的频率以调整脉冲行程时间。 平均旅行时间被计算为两个方向上的脉冲行进时间的总和,并且指示哪个行和列具有触摸它的手指。 然后可以使用不均衡的脉冲行进时间数据来确定手指在行和列内的相对位置。
    • 10. 发明申请
    • SWITCHED CAPACITOR PROJECTION SCAN MULTI-TOUCH SENSOR ARRAY
    • 开关电容器投影扫描多触点传感器阵列
    • US20090109190A1
    • 2009-04-30
    • US11925679
    • 2007-10-26
    • John Greer Elias
    • John Greer Elias
    • G06F3/045
    • G06F3/044
    • A touch sensor panel can be constructed on a single surface of a substrate as a plurality of distributed RC lines arranged in rows and columns. Each distributed RC line can include alternating connected transistors and metal pads. During operation, the transistors on either side of the metal pads in the rows are alternately gated on and off using non-overlapping gate signals, and pulse travel times for each row in both directions are measured. Similar measurements are taken for the columns. The frequency at which the transistors are gated can be changed to adjust pulse travel times. Equalized travel times are computed as the sum of the pulse travel times in both directions, and indicate which rows and columns have a finger touching it. The un-equalized pulse travel time data can then be used to determine the relative positions of the fingers within the rows and columns.
    • 触摸传感器面板可以在基板的单个表面上构造为以行和列布置的多个分布式RC线。 每个分布式RC线路可以包括交替连接的晶体管和金属焊盘。 在操作期间,行中的金属焊盘的任一侧的晶体管交替地使用不重叠的栅极信号进行开和关,并且测量两个方向上的每行的脉冲行进时间。 对列进行类似的测量。 可以改变晶体管选通的频率以调整脉冲行程时间。 平均旅行时间被计算为两个方向上的脉冲行进时间的总和,并且指示哪个行和列具有触摸它的手指。 然后可以使用不均衡的脉冲行进时间数据来确定手指在行和列内的相对位置。