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    • 5. 发明申请
    • Quick release weight lifter belt
    • 快速释放举重带
    • US20060053531A1
    • 2006-03-16
    • US10940909
    • 2004-09-14
    • Richard McBrideJeffrey McBride
    • Richard McBrideJeffrey McBride
    • A41F9/00
    • A41F9/025A63B21/06
    • A support belt, particularly adapted for weight lifting users, includes a strap mounted to the main belt. A ratchet mechanism is mounted to one end of the strap. The other end of the strap is inserted through the ratchet mechanism and folded upon itself and secured to itself to form an anchor location. Another anchor location is a portion of the strap which is permanently secured to the belt. When the ratchet mechanism is operated the first end of the strap becomes wound on a take up reel in the ratchet mechanism to pull the two anchor locations toward each other and tighten the belt. In order to have a quick release of the belt the free end of the strap is detached from its engagement to itself so that its anchor location is thereby disengaged.
    • 特别适用于举重用户的支撑皮带包括安装在主皮带上的皮带。 棘轮机构安装在皮带的一端。 带子的另一端通过棘轮机构插入并折叠在自身上并固定在自身上以形成锚定位置。 另一个锚定位置是永久固定在皮带上的皮带的一部分。 当棘轮机构操作时,带的第一端卷绕在棘轮机构中的卷取卷轴上,以将两个锚定位置朝向彼此拉紧并且收紧带。 为了快速释放带子,带子的自由端从其接合自身脱离,从而使其锚定位置脱离接合。
    • 6. 发明授权
    • Monitoring of a communication link utilizing history-based compression
algorithms
    • 使用基于历史的压缩算法监视通信链路
    • US6151627A
    • 2000-11-21
    • US186656
    • 1998-11-06
    • Richard McBrideStuart J. Boutell
    • Richard McBrideStuart J. Boutell
    • H03M7/30H04L12/26H04L29/06G06F15/173G06F15/16
    • H04L43/00H03M7/30H04L12/2602H04L29/06H04L69/04H04L43/12
    • The invention concerns in-line monitoring of a communication link between two stations in a frame-based communication network wherein the said two stations employ a compression algorithm for the transmission of frames and a corresponding decompression algorithm for the reception and decompression of the frames, the said algorithms requiring the maintenance at a transmitting station of a compression history in terms of the number of frames transmitted since a datum point and the maintenance of a corresponding compression history at a receiving station in terms of the number of frames received, the frames each including an identification of the compression sequence so that the receiving station can detect mismatch between the compression sequence and the receiving sequence. The monitoring method comprises detecting frames transmitted from one of the stations to the other, detecting whether frames are compressed, decompressing compressed frames and maintaining a compression history corresponding to that maintained by the receiving station.
    • 本发明涉及在基于帧的通信网络中的两个站之间的通信链路的在线监测,其中所述两个站采用用于帧的传输的压缩算法和用于帧的接收和解压缩的相应的解压缩算法, 所述算法需要在发送站处对从基准点发送的帧数进行压缩历史的维护,并且根据接收到的帧的数量来维护接收站处的相应压缩历史,每个帧包括 压缩序列的识别,使得接收站可以检测压缩序列与接收序列之间的不匹配。 监视方法包括检测从一个站到另一站发送的帧,检测帧是否被压缩,解压缩压缩帧并维持与由接收站维护的压缩历史相对应的压缩历史。
    • 8. 发明授权
    • Dual-circuit telephony
    • 双路电话
    • US06389119B1
    • 2002-05-14
    • US09276522
    • 1999-03-25
    • Richard McBride
    • Richard McBride
    • H04M1100
    • H04M11/00Y10S379/90
    • A telephone instrument comprises a mechanism for providing signals for transmission, a mechanism for converting signals received by the instrument into output signals, a switching circuit for selectively establishing and terminating a connection between the instrument and a circuit-switched telephone network and for selectively establishing and terminating a connection between the instrument and a packet-switched communication network. When calling, the instrument signals over the circuit-switched network for a network address for the called instrument and the packet-switched network and establishes a dual connection over the packet-switched network if such a network address is received. When receiving a call, the instrument can terminate the call connection over the circuit-switched network and continue the call by way of the packet-switched network.
    • 电话仪器包括用于提供用于传输的信号的机构,用于将由仪器接收的信号转换为输出信号的机制,用于选择性地建立和终止仪器与电路交换电话网络之间的连接的切换电路,并且用于选择性地建立和 终止仪器与分组交换通信网络之间的连接。 当呼叫时,仪器通过电路交换网络通知被叫仪器和分组交换网络的网络地址,并且如果接收到这样的网络地址,则在分组交换网络上建立双重连接。 当接收到呼叫时,仪器可以通过电路交换网络终止呼叫连接,并通过分组交换网络继续呼叫。