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
    • 2. 发明授权
    • Cooperative system for measuring electronic media
    • 电子媒体测量合作系统
    • US08181194B2
    • 2012-05-15
    • US10026872
    • 2001-12-21
    • John S. Houston
    • John S. Houston
    • H04N7/173H04N5/445G06F9/44G06F13/00H04N7/16
    • H04H60/31G06Q30/02G06Q30/0204H04H20/38H04H60/33H04H60/45H04H60/66
    • A media measurement system uses media handlers to obtain information from presented media for collection by research data collection agents and dispatch to a controller. The controller registers media for measurement. One or more research data collection agents are assigned to measure each panel member's exposure to and interactions with media. A research data collection agent tracks a panel member and collects transmissions from the cooperative media handlers. The research data collection agent creates log entry objects from transmissions received from the cooperative media handlers, places the log entry objects into an unfiltered media queue, confirms the integrity of the messages, filters out unnecessary log entry objects from the unfiltered media queue to create a filtered media queue, creates dispatch objects using objects from the filtered media queue, places dispatch objects into a dispatch queue, and transmits dispatch objects from the dispatch queue to the controller.
    • 媒体测量系统使用媒体处理程序从所提供的媒体获取信息,以由研究数据收集代理人收集并发送给控制器。 控制器注册用于测量的介质。 分配一个或多个研究数据收集代理以测量每个小组成员对媒体的接触和与媒体的互动。 研究数据收集代理跟踪小组成员并从合作媒体处理程序收集传输。 研究数据收集代理从从协作媒体处理程序接收的传输创建日志条目对象,将日志条目对象放入未过滤的媒体队列中,确认消息的完整性,从未过滤的媒体队列中过滤出不必要的日志条目对象,以创建 过滤的媒体队列,使用来自过滤的媒体队列的对象创建调度对象,将调度对象放入调度队列,并将调度对象从调度队列发送到控制器。
    • 4. 发明授权
    • Interchangeable keyboard with self defining keys
    • 具有自定义键的可互换键盘
    • US06891528B2
    • 2005-05-10
    • US09841673
    • 2001-04-24
    • John S. Houston
    • John S. Houston
    • G06F3/02G06F3/023H01H13/02H01H13/14H01H13/70G09G5/00
    • G06F3/0238H01H2217/014H01H2221/034
    • Each keyboard key is marked with a self-defining indicator. A matrix of key sensing circuits for the keyboard are configured to detect this indicator when the keys are depressed and provide an output to a keyboard controller which in turn provides key signals to the keyboard's connector that is indistinguishable by a computer system from the output of a standard QWERTY keyboard. This enables the disabled user to carry this keyboard from one computer system to another and simply exchange it for the standard keyboard for the computer. There are no changes required to be made to the computer's operating system or any software of the computer in order to allow the disabled user to use the computer. Furthermore, other users are not required to reconfigure the computer system after the standard keyboard has been re-installed.
    • 每个键盘上都标有一个自定义指示器。 用于键盘的按键感测电路的矩阵被配置为当按下键时检测该指示器,并向键盘控制器提供输出,该键盘控制器又向键盘的连接器提供键盘信号,该键盘的连接器与计算机系统不能区分 标准QWERTY键盘。 这使得禁用的用户能够将该键盘从一个计算机系统运送到另一个计算机系统,并简单地将其交换为计算机的标准键盘。 计算机的操作系统或计算机的任何软件都不需要进行任何更改,以便禁用的用户使用计算机。 此外,在重新安装标准键盘之后,不需要其他用户重新配置计算机系统。
    • 5. 发明授权
    • Actuator with repulsive magnetic forces
    • 执行器具有排斥磁力
    • US06307285B1
    • 2001-10-23
    • US09707220
    • 2000-11-06
    • Nathan J. DelsonJohn S Houston
    • Nathan J. DelsonJohn S Houston
    • H02K4100
    • H02K26/00H02K23/00H02K41/0352H02K2201/18
    • A new class of actuators and mechanisms use opposing repulsive magnetic forces. The repulsive forces are typically generated between a stationary magnet and a moving magnet, where the moving magnet is coupled to the mechanism output member. The mechanisms are generally configured such that the repulsive force from one electromagnet is opposed by a repulsive force from another electromagnet, where the opposing forces are simultaneously applied to the mechanism's output member. This configuration is similar in certain aspects to the way biological flexor and extensor muscles are configured in a musculoskeletal system. The opposing configuration allows for open loop control of position and stiffness. The actuator mechanism may have both rotary and linear motion output, and may have either a single degree of freedom or multiple degrees of freedom. Permanent magnets can be used to create a baseline repulsive force without electric power, and electromagnets can modulate the repulsive force magnitude. The actuator can provide high fidelity motion and force output, and is well suited for human interface devices, such as force feedback joysticks. Other applications include adjustable stiffness devices, and high bandwidth mechanisms.
    • 一类新的致动器和机构使用相反的排斥磁力。 排斥力通常在固定磁体和移动磁体之间产生,其中移动的磁体联接到机构输出构件。 这些机构通常构造成使得来自一个电磁体的排斥力由来自另一个电磁体的排斥力相反,其中相反的力同时施加到机构的输出构件。 这种配置在某些方面类似于生物屈肌和伸肌在肌肉骨骼系统中的配置方式。 相对的配置允许对位置和刚度进行开环控制。 致动器机构可以具有旋转和直线运动输出,并且可以具有单个自由度或多个自由度。 可以使用永磁体来产生没有电力的基线排斥力,并且电磁体可以调节排斥力大小。 执行器可以提供高保真运动和力输出,并且非常适合人机界面装置,如力反馈操纵杆。 其他应用包括可调刚度装置和高带宽机制。
    • 6. 发明授权
    • Actuator with opposing repulsive magnetic forces
    • 执行器具有相反的排斥磁力
    • US6147422A
    • 2000-11-14
    • US350782
    • 1999-07-09
    • Nathan J. DelsonJohn S Houston
    • Nathan J. DelsonJohn S Houston
    • H02K23/00H02K26/00H02K41/035H02K41/00G06F17/00
    • H02K26/00H02K23/00H02K41/0352H02K2201/18
    • A new class of actuators and mechanisms use opposing repulsive magnetic forces. The repulsive forces are typically generated between a stationary magnet and a moving magnet, where the moving magnet is coupled to the mechanism output member. The mechanisms are generally configured such that the repulsive force from one electromagnet is opposed by a repulsive force from another electromagnet, where the opposing forces are simultaneously applied to the mechanism's output member. This configuration is similar in certain aspects to the way biological flexor and extensor muscles are configured in a musculoskeletal system. The opposing configuration allows for open loop control of position and stiffness. The actuator mechanism may have both rotary and linear motion output, and may have either a single degree of freedom or multiple degrees of freedom. Permanent magnets can be used to create a baseline repulsive force without electric power, and electromagnets can modulate the repulsive force magnitude. The actuator can provide high fidelity motion and force output, and is well suited for human interface devices, such as force feedback joysticks. Other applications include adjustable stiffness devices, and high bandwidth mechanisms.
    • 一类新的致动器和机构使用相反的排斥磁力。 排斥力通常在固定磁体和移动磁体之间产生,其中移动磁体联接到机构输出构件。 这些机构通常构造成使得来自一个电磁体的排斥力由来自另一个电磁体的排斥力相反,其中相反的力同时施加到机构的输出构件。 这种配置在某些方面类似于生物屈肌和伸肌在肌肉骨骼系统中的配置方式。 相对的配置允许对位置和刚度进行开环控制。 致动器机构可以具有旋转和直线运动输出,并且可以具有单个自由度或多个自由度。 可以使用永磁体来产生没有电力的基线排斥力,并且电磁体可以调节排斥力大小。 执行器可以提供高保真运动和力输出,并且非常适合人机界面装置,如力反馈操纵杆。 其他应用包括可调刚度装置和高带宽机制。
    • 7. 发明授权
    • Magnetic position sensor having spaced toroidal magnets in a state of
equilibrium
    • 具有处于平衡状态的间隔环形磁体的磁性位置传感器
    • US4853630A
    • 1989-08-01
    • US90764
    • 1987-08-28
    • John S. Houston
    • John S. Houston
    • G01B7/00G01B7/004G05G9/047
    • G05G5/05G01B7/003G01B7/004G05G2009/04755Y10T74/20201
    • Two toroidal magnets are spaced apart form each other by a ferrous spherical spacer. The spacer partially engages openings provided in the two magnet surfaces facing each other. The facing magnet surfaces have the same polarity, repelling each other. The configuration creates a stable equilibrium by conduction of the magnetic flux through the spacer and the repulsive forces at the periphery of the magnets. Four "Hall Effect" sensors are mounted to one of the magnets. These sensors detect minute changes in the device's magnetic field caused by relative rotation or other movement of the magnets. A third magnet may be added for tactile sensor applications, allowing evaluation of the pressure exerted on the device.
    • 两个环形磁铁通过铁质球形间隔物彼此间隔开。 间隔件部分地接合设置在彼此面对的两个磁体表面中的开口。 面对的磁体表面具有相同的极性,相互排斥。 该配置通过磁通通过间隔物的传导和磁体周边的排斥力而产生稳定的平衡。 四个“霍尔效应”传感器安装在一个磁铁上。 这些传感器检测由磁体的相对旋转或其他运动引起的设备磁场的微小变化。 可以添加第三个磁体用于触觉传感器应用,从而评估施加在设备上的压力。
    • 9. 发明申请
    • COOPERATIVE SYSTEM FOR MEASURING ELECTRONIC MEDIA
    • 用于测量电子媒体的合作系统
    • US20120331498A1
    • 2012-12-27
    • US13605690
    • 2012-09-06
    • John S. Houston
    • John S. Houston
    • H04N21/24
    • H04H60/31G06Q30/02G06Q30/0204H04H20/38H04H60/33H04H60/45H04H60/66
    • A cooperative electronic media measurement system is disclosed that measures the electronic media usage of one or more individuals by a media research entity. The media research entity defines at least one specialized task useful to the media research entity. The at least one specialized task is performed by a media handler provided by another entity and concerns a handling of electronic media by the media handler. The individual is tracked with at least one software agent of the media research entity. At least one software agent obtains a product of the specialized task performed by the media handler via at least one defined interface that provides interoperability between the media handler and the at least one software agent. Cooperative media handlers automatically obtain information from, or otherwise obtain information about, presented media objects including identification tags, if present, and other information, for collection by the research data collection agents.
    • 公开了一种合作的电子媒体测量系统,其通过媒体研究实体测量一个或多个个人的电子媒体使用。 媒体研究实体定义了至少一个对媒体研究实体有用的专门任务。 所述至少一个专门任务由另一个实体提供的媒体处理器来执行,并涉及由媒体处理程序处理电子媒体。 该个人跟踪至少一个媒体研究实体的软件代理。 至少一个软件代理通过至少一个定义的接口获得由媒体处理程序执行的专门任务的产品,其提供媒体处理程序与至少一个软件代理之间的互操作性。 合作媒体处理程序自动获取信息,或以其他方式获取有关所呈现的媒体对象的信息,包括识别标签(如果存在)和其他信息,以供研究数据收集代理人收集。