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. 发明授权
    • Wireless communication enabled electronic device
    • 无线通信启用电子设备
    • US08334811B2
    • 2012-12-18
    • US12482588
    • 2009-06-11
    • Jagdeep S. ToorDavid W. Russo
    • Jagdeep S. ToorDavid W. Russo
    • H01Q1/24
    • H01Q9/42H01Q1/2258
    • A wireless communication enabled electronic device. The wireless communication enabled electronic device includes a wireless antenna having an antenna element, and a conductive enclosure configured to inhibit electrical interference. The conductive enclosure is coupled to the wireless antenna such that a void is formed on at least one side of the antenna element. The void is bound by a sidewall of the conductive enclosure having a bottom edge, and at least one taper portion of the conductive enclosure positioned vertically intermediate a top surface of the conductive enclosure and the bottom edge of the sidewall.
    • 一种启用无线通信的电子设备。 启用无线通信的电子设备包括具有天线元件的无线天线和被配置为抑制电气干扰的导电外壳。 导电外壳耦合到无线天线,使得在天线元件的至少一侧上形成空隙。 空隙由具有底部边缘的导电外壳的侧壁约束,并且导电外壳的至少一个锥形部分垂直定位在导电外壳的顶表面和侧壁的底部边缘之间。
    • 4. 发明申请
    • Interface Protocol and API for a Wireless Transceiver
    • 用于无线收发器的接口协议和API
    • US20090137318A1
    • 2009-05-28
    • US12163026
    • 2008-06-27
    • David W. RussoGregory Ray SmithUwe PakendorfDenny Gumlich
    • David W. RussoGregory Ray SmithUwe PakendorfDenny Gumlich
    • A63F9/24
    • G07F17/3223A63F2300/1031A63F2300/209G06F13/4291G07F17/32
    • A wireless protocol may be implemented in a smart transceiver device that contains the physical (PHY) and media access control (MAC) layers of the wireless protocol stack. In various embodiments, a serial peripheral interface (SPI) based design may be used. Disclosed is an embodiment of a protocol which may be used to provide control and data transfer to and from the smart transceiver. In particular, an exemplary format of the protocol, the commands, and responses is disclosed. In a further embodiment, an application programming interface (API) is disclosed. The API may provide hardware independent services that can be used to establish, maintain, and transport data to and from the system and the smart transceiver device. In particular, an exemplary and non-limiting set of services, function calls, configuration methods, events, and parameters is disclosed.
    • 无线协议可以在包含无线协议栈的物理(PHY)和媒体访问控制(MAC)层的智能收发器设备中实现。 在各种实施例中,可以使用基于串行外设接口(SPI)的设计。 公开了可用于向智能收发器提供控制和数据传输的协议的实施例。 特别地,公开了协议,命令和响应的示例性格式。 在另一实施例中,公开了一种应用编程接口(API)。 API可以提供可以用于建立,维护和传输数据到和从系统和智能收发器设备的数据的独立于硬件的服务。 具体地,公开了一组示例性和非限制性的服务,功能调用,配置方法,事件和参数。
    • 5. 发明授权
    • WiFi collaboration method to reduce RF interference with wireless adapter
    • WiFi协作方式,减少与无线适配器的射频干扰
    • US07430400B2
    • 2008-09-30
    • US11091557
    • 2005-03-28
    • David W. RussoWui Guo
    • David W. RussoWui Guo
    • H04B7/00H04B1/00H04B15/00H04M1/00
    • H04W16/14A63F2300/1025A63F2300/1031
    • A system and method for preventing a wireless controller system and WiFi radio system within a console from interfering with each other. The WiFi system is prevented from activating its transmitter during the controller receive times by detecting a signal sent to the WiFi module indicating where the controller receive times occur. Based upon the state of the signal, the WiFi transmission algorithm can determine the appropriate times to turn on and off the WiFi transmitter in concert with the defined 802.11 media access protocol. Furthermore, the WiFi module provides its operating channel information to the controller radio system to avoid using the WiFi channel for any communications.
    • 用于防止控制台内的无线控制器系统和WiFi无线电系统彼此干扰的系统和方法。 通过检测发送到WiFi模块的信号,指示控制器接收时间发生在哪里,防止WiFi系统在控制器接收时间期间激活其发射机。 基于信号的状态,WiFi传输算法可以根据定义的802.11媒体访问协议来确定适当的时间来打开和关闭WiFi发射机。 此外,WiFi模块向控制器无线电系统提供其操作信道信息,以避免使用WiFi信道进行任何通信。
    • 6. 发明授权
    • Interface protocol and API for a wireless transceiver
    • 无线收发器的接口协议和API
    • US08060681B2
    • 2011-11-15
    • US12163026
    • 2008-06-27
    • David W. RussoGregory Ray SmithUwe PakendorfDenny Gumlich
    • David W. RussoGregory Ray SmithUwe PakendorfDenny Gumlich
    • G06F13/36A63F9/24
    • G07F17/3223A63F2300/1031A63F2300/209G06F13/4291G07F17/32
    • A wireless protocol may be implemented in a smart transceiver device that contains the physical (PHY) and media access control (MAC) layers of the wireless protocol stack. In various embodiments, a serial peripheral interface (SPI) based design may be used. Disclosed is an embodiment of a protocol which may be used to provide control and data transfer to and from the smart transceiver. In particular, an exemplary format of the protocol, the commands, and responses is disclosed. In a further embodiment, an application programming interface (API) is disclosed. The API may provide hardware independent services that can be used to establish, maintain, and transport data to and from the system and the smart transceiver device. In particular, an exemplary and non-limiting set of services, function calls, configuration methods, events, and parameters is disclosed.
    • 无线协议可以在包含无线协议栈的物理(PHY)和媒体访问控制(MAC)层的智能收发器设备中实现。 在各种实施例中,可以使用基于串行外设接口(SPI)的设计。 公开了可用于向智能收发器提供控制和数据传输的协议的实施例。 特别地,公开了协议,命令和响应的示例性格式。 在另一实施例中,公开了一种应用编程接口(API)。 API可以提供可以用于建立,维护和传输数据到和从系统和智能收发器设备的数据的独立于硬件的服务。 具体地,公开了一组示例性和非限制性的服务,功能调用,配置方法,事件和参数。
    • 8. 发明授权
    • Conservation of power in serial modem
    • 在串行调制解调器中保护电源
    • US06301297B1
    • 2001-10-09
    • US09609743
    • 2000-07-03
    • David W. Russo
    • David W. Russo
    • H04B138
    • H04L5/16H04B1/38
    • A serial modem (14) having a phase-locked loop (22), a central processing unit (20), a serial buffer (26) and a universal asynchronous receiver transmitter (UART) (28), wherein the serial buffer (26) and the UART (28) are connected to a host device (10) via an asynchronous serial interface (32). The central processing unit (20) enters a sleep mode when data is not being received. A start bit is received at a predetermined baud rate via the asynchronous serial interface (32). An interrupt is activated to start a wake-up transition at the central processing unit (20) upon receipt of the start bit. A series of bits following the start bit is sampled and stored in the serial buffer (26) until the central processing unit (20) is enabled. After the central processing unit (20) is enabled, a remainder of the series of bits are sampled and stored at the UART (28).
    • 一种具有锁相环(22),中央处理单元(20),串行缓冲器(26)和通用异步接收器发送器(UART)(28)的串行调制解调器(14),其中串行缓冲器(26) 并且UART(28)经由异步串行接口(32)连接到主机设备(10)。 当未接收到数据时,中央处理单元(20)进入睡眠模式。 经由异步串行接口(32)以预定的波特率接收起始位。 激活中断,以在接收到起始位时在中央处理单元(20)处开始唤醒转换。 起始位之后的一系列位被采样并存储在串行缓冲器(26)中,直到中央处理单元(20)被使能。 在中央处理单元(20)使能之后,该比特序列的其余部分被采样并存储在UART(28)中。
    • 9. 发明授权
    • Method and apparatus for constructing a digital phase differentiator
incorporating a dynamic decrement counter
    • 用于构建包含动态递减计数器的数字相位微分器的方法和装置
    • US6072848A
    • 2000-06-06
    • US980936
    • 1997-12-01
    • David W. RussoGus Vos
    • David W. RussoGus Vos
    • H04L27/14H03D3/24
    • H04L27/14
    • A method and apparatus for constructing a digital phase differentiator incorporating a dynamic decrement counter (30). A limited signal is sampled at a fixed sampling rate. A fixed rate for an intermediate frequency is obtained. The fixed sampling rate is divided by a divisor to obtain a frequency of a clock. The frequency of the clock is divided by the intermediate frequency to obtain an desired average divider. A set of integer load values (34, 36 and 38) is selected that on average yields a non-integer value that is close to the desired average divider. A load of the dynamic decrement counter (30) changes cyclically using the set of integer load values (34, 36 and 38) to obtain a phase of the limited signal.
    • 一种构成包含动态减量计数器(30)的数字相位微分器的方法和装置。 有限信号以固定采样率采样。 获得中频的固定速率。 固定采样率由除数除以获得时钟频率。 时钟的频率除以中频,以获得所需的平均分频。 选择一组整数负载值(34,36和38),平均产生接近期望的平均分频器的非整数值。 动态减量计数器(30)的负载使用整数负载值(34,36和38)的周期性变化,以获得受限信号的相位。