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    • 4. 发明授权
    • Strip to point optical communication system
    • 点对点光通信系统
    • US07302127B1
    • 2007-11-27
    • US11538338
    • 2006-10-03
    • Rachid M. AlamehMark A. BarabolakManinder S. SehmbeyDavid R. Zeiger
    • Rachid M. AlamehMark A. BarabolakManinder S. SehmbeyDavid R. Zeiger
    • G02B6/36G02B6/12G02B6/26
    • G02B6/4204H04M1/0237
    • A strip to point optical communication system (200) for transmitting light between a first housing (102) and a second housing (104) of a device is provided. The strip to point optical communication system (200) includes a point optical communication element (202) that is capable of receiving the light. The point optical communication element (202) is coupled to either the first housing (102) or the second housing (104). The strip to point optical communication system (200) also includes a strip optical communication element (204) that is coupled to either the first housing (102) or the second housing (104) to which the point optical communication element (202) is not coupled. The length of the strip optical communication element (204) corresponds to the travel distance of the first housing (102) and the second housing (104). The strip optical communication element (204) is located to coincide with a travel path of the point optical communication element (202).
    • 提供了一种用于在设备的第一壳体(102)和第二壳体(104)之间传送光的条形点对点光通信系统(200)。 带对点光通信系统(200)包括能够接收光的点光通信元件(202)。 点光通信元件(202)耦合到第一壳体(102)或第二壳体(104)。 条带对点光通信系统(200)还包括条带光通信元件(204),其耦合到点光通信元件(202)不与其通信的第一壳体(102)或第二壳体(104) 耦合。 带状光通信元件(204)的长度对应于第一壳体(102)和第二壳体(104)的移动距离。 带状光通信元件(204)被定位成与点光通信元件(202)的行进路径重合。
    • 7. 发明授权
    • Optical communication system adapted for receiving an optical signal at a plurality of different positions
    • 适于在多个不同位置接收光信号的光通信系统
    • US07706645B2
    • 2010-04-27
    • US11616497
    • 2006-12-27
    • David R. ZeigerMark A. BarabolakManinder S. Sehmbey
    • David R. ZeigerMark A. BarabolakManinder S. Sehmbey
    • G02B6/26
    • G02B6/43G02B6/3552G02B6/3574G02B6/3598G02B6/3604
    • An optical communication system (200) for transmitting light between a first housing (102) and a second housing (104) of a device (100) is provided. The first housing and the second housing are adapted to move relative to one another between a plurality of usage positions. The optical communication system includes a first optical communication element (202), a second optical communication element (204), and an optical waveguide (206). The first optical communication element is capable of emitting light and can be coupled to one of the first and second housing. The second optical communication element is capable of receiving the light and can be coupled to the housing to which the first optical communication element is not coupled. The optical waveguide is capable of conveying the light emitted by the first to the second optical communication element. The second optical communication element can substantially encompass a locus of the output light.
    • 提供一种用于在设备(100)的第一壳体(102)和第二壳体(104)之间传输光的光通信系统(200)。 第一壳体和第二壳体适于在多个使用位置之间相对于彼此移动。 光通信系统包括第一光通信元件(202),第二光通信元件(204)和光波导(206)。 第一光通信元件能够发光并且可以耦合到第一和第二壳体中的一个。 第二光通信元件能够接收光并且可以耦合到第一光通信元件未耦合到的外壳。 光波导能够将由第一光通信元件发射的光传送到第二光通信元件。 第二光通信元件可以基本上包围输出光的轨迹。
    • 8. 发明授权
    • Method and electronic device connector with band and angle encoding
    • 方法和电子设备连接器带和角度编码
    • US07351065B1
    • 2008-04-01
    • US11690484
    • 2007-03-23
    • Thomas Y. MerrellRachid M. AlamehThomas E. GitzingerMichael J. SladeDavid R. Zeiger
    • Thomas Y. MerrellRachid M. AlamehThomas E. GitzingerMichael J. SladeDavid R. Zeiger
    • H01R39/00
    • H01R35/04H04M1/05
    • Disclosed is a connector including two mating sleeves, at least one of which having a plurality of first conductive contacts, a second mating sleeve configured to be rotatably joined to the first mating sleeve and also configured to support circuitry. The connector may also include at least one shaft configured to join the two mating sleeves to form a hinge. The shaft may further include at least a plurality of second conductive contacts, at least some of which that form portions of rings to make intermittent contact with at least one of the first conductive contacts based on the position of the at least one shaft relative to the position of at least one of the two mating sleeves. Embodiments of the connector may include a jack style hinge configuration, a hinge and pin style configuration, a hinge without a pin style configuration, or a spring loaded bolt configuration.
    • 公开了一种连接器,其包括两个配合套筒,其中至少一个具有多个第一导电触点,第二配合套筒构造成可旋转地连接到第一配合套筒并且还被配置为支撑电路。 所述连接器还可以包括至少一个轴,所述至少一个轴构造成连接所述两个配合套以形成铰链。 轴可以进一步包括至少多个第二导电触点,至少一些第二导电触点形成环的一部分,以便基于至少一个轴相对于第一导电触头的位置与第一导电触点中的至少一个间断地接触 两个配合套筒中的至少一个的位置。 连接器的实施例可以包括千斤顶式铰链构造,铰链和销式构造,没有销式构造的铰链或弹簧加载的螺栓构造。
    • 9. 发明授权
    • Apparatus with two housings including a rotatable optical data communication coupling
    • 具有两个壳体的装置包括可旋转的光学数据通信耦合
    • US08224137B2
    • 2012-07-17
    • US11870452
    • 2007-10-11
    • David R. ZeigerRachid M. AlamehMark W. Oliver
    • David R. ZeigerRachid M. AlamehMark W. Oliver
    • G02B6/42
    • G02B6/3604
    • The present disclosure provides an apparatus (100) that can include a first housing (110) and a second housing (120) rotationally coupled to the first housing where the second housing rotates with respect to the first housing about an axis of rotation (170). The apparatus can also include an optical transmitter (130) coupled to the first housing where the optical transmitter can be configured to transmit light. The apparatus can further include a lightguide (140) including a first lightguide end (144) substantially at the axis of rotation where the lightguide can include a second lightguide end (142) located at a distance from the axis of rotation where the second lightguide end is optically coupled to the optical transmitter. The apparatus can additionally include an optical receiver (135) coupled to the second housing at the axis of rotation where the optical receiver can also be optically coupled to the lightguide at the first lightguide end.
    • 本公开提供了一种装置(100),其可以包括旋转地联接到第一壳体的第一壳体(110)和第二壳体(120),其中第二壳体围绕旋转轴线(170)相对于第一壳体旋转, 。 该装置还可以包括耦合到第一壳体的光发射器(130),其中光发射器可被配置为透射光。 该装置还可以包括基本上在旋转轴线处的第一光导端(144)的光导(140),其中光导可以包括位于与旋转轴线一定距离的第二光导端(142),第二光导端 光耦合到光发射机。 该装置还可以包括在旋转轴处联接到第二壳体的光接收器(135),其中光接收器还可以在第一光导端处光导耦合到光导。
    • 10. 发明申请
    • SYSTEM AND DEVICES FOR INDUCTIVE CHARGING OF A WEARABLE ELECTRONIC DEVICE
    • 用于电感充电的电子装置的系统和装置
    • US20080234009A1
    • 2008-09-25
    • US11690402
    • 2007-03-23
    • David R. ZeigerPatrick J. Cauwels
    • David R. ZeigerPatrick J. Cauwels
    • H04M1/05H02J7/00
    • H02J50/10H02J7/0044H02J7/025H02J50/40H04M1/05
    • Disclosed is a wearable electronic device including an earmount. The earmount includes an inductor configured to convert an alternating magnetic field to alternating current. The device also includes a rectifier circuit coupled to the inductor and configured to convert alternating current to direct current for trickle charging, and a rechargeable power source configured to receive from the rectifier circuit direct current for trickle charging of the power source. Also disclosed is a charger adapted for use with the wearable wireless communication device described above. The charger is configured to receive an earmount of the wearable electronic device and to electromagnetically couple to the wearable electronic device via the inductor included in the earmount. Also disclosed is a system for trickle charging of a wearable electronic device. The system may include a charger and one or more wearable electronic devices, each device including an earmount having an inductor.
    • 公开了一种包括电动工具的可穿戴电子装置。 电子装置包括被配置为将交变磁场转换成交流电的电感器。 该装置还包括耦合到电感器并被配置为将交流电转换成用于涓流充电的直流电流的整流器电路,以及被配置为从整流器电路接收直流电流用于电源的涓流充电的可再充电电源。 还公开了一种适于与上述可穿戴式无线通信装置一起使用的充电器。 充电器被配置为接收可穿戴电子设备的电子装置,并且经由包括在电子装置中的电感器电磁耦合到可穿戴电子设备。 还公开了一种用于可穿戴式电子设备的涓流充电的系统。 该系统可以包括充电器和一个或多个可佩戴的电子设备,每个设备包括具有电感器的电子装置。