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    • 1. 发明申请
    • METHOD, APPARATUS AND SYSTEM FOR A MOBILE STATION CELL SYSTEM
    • 方法,移动站单元系统的装置和系统
    • US20100208661A1
    • 2010-08-19
    • US12704545
    • 2010-02-12
    • Rong Sun
    • Rong Sun
    • H04W72/04H04W16/00
    • H04W88/10H04W88/04
    • This invention describes a method, apparatus and system for a mobile-station cell system, MSCell for short. An MSCell operates in a wireless network, more specifically in a cell of the wireless network. It interacts with the cell's BS the way a regular MS(s) do. The MSCell consists of an MSCell base and multiple MSCell terminals. The MSCell base simulates the regular MS(s) to set up one or more radio connections with the BS and simultaneously serves its own MSCell terminals. In other words, the MSCell behaves simultaneously as regular MS(s) to the BS and as the base to all its MSCell terminals. The MSCell terminals gain services from the wireless network through the MSCell base. The MSCell can also operate independently of any BS to be a self-contained standalone system where its MSCell terminals can call each other.
    • 本发明描述了用于移动台小区系统的方法,装置和系统,简称为MSCell。 MSCell在无线网络中更具体地在无线网络的小区中操作。 它与正常MS(MS)的方式与小区的BS进行交互。 MSCell由一个MSCell基地和多个MSCell终端组成。 MSCell基站模拟常规MS以与BS建立一个或多个无线电连接,并同时为其自己的MSCell终端提供服务。 换句话说,MSCell同时作为BS的正常MS,作为其所有MSCell终端的基础。 MSCell终端通过MSCell基地从无线网络获得服务。 MSCell还可以独立于任何BS进行操作,使其成为独立的独立系统,其中MSCell终端可以互相呼叫。
    • 2. 发明授权
    • Clean room safety shoe article with removal steel toe housing and method for treating the shoe
    • 洁净室安全鞋制品,具有去除钢趾壳体和处理鞋的方法
    • US07451553B2
    • 2008-11-18
    • US11394598
    • 2006-03-31
    • Jo Wei DunJen Lung LanChi Yin WuZheng Rong Sun
    • Jo Wei DunJen Lung LanChi Yin WuZheng Rong Sun
    • A43B1/02A43C13/14
    • A43B3/00A43B1/009A43B3/0031A43B23/082
    • A clean room shoe article, e.g., shoe, boot, safety shoe, safety boot. The article has a sole region. The article has an upper particle free polymer material having a toe region and an ankle region. The upper particle free polymer material is coupled to the sole region. The upper particle free polymer material is capable of enclosing a foot of a human user. The toe region houses an entirety of toes of the human user. The article has a steel toe housing member enclosing and protecting the entirety of the toes of the human user. The article has an enclosure provided in the toe region of the upper particle free polymer material. The enclosure is adapted to house the steel toe housing member. A sealing region is provided within a vicinity of the enclosure. The sealing region is adapted to maintain the steel toe housing member within the enclosure and is also adapted to open and remove the steel toe housing member from the enclosure provided in the toe region of the upper particle free polymer member.
    • 洁净室鞋制品,例如鞋,靴子,安全鞋,安全靴。 该文章有一个唯一的地区。 该制品具有具有趾部区域和踝部区域的上部无颗粒聚合物材料。 上层无颗粒聚合物材料与鞋底区域相连。 上层无颗粒聚合物材料能够包围人类使用者的脚。 脚趾区域包含人类使用者的脚趾。 该物品具有包围并保护人类使用者的脚趾全部的钢趾壳体构件。 该制品具有设置在上部无颗粒聚合物材料的趾部区域中的外壳。 外壳适于容纳钢趾壳体构件。 密封区域设置在外壳附近。 密封区域适于将钢趾壳体构件保持在外壳内,并且还适于将钢趾壳体构件从设置在上部无颗粒聚合物构件的趾部区域中的外壳打开和移除。
    • 5. 发明申请
    • Tunable Laser
    • 可调谐激光
    • US20120219023A1
    • 2012-08-30
    • US13372549
    • 2012-02-14
    • Michael CahillRong Sun
    • Michael CahillRong Sun
    • H01S3/10
    • H01S5/141H01S3/1062H01S5/02248H01S5/0612
    • A tunable laser includes an optical cavity comprising a first and second mirror. A gain medium is positioned in the optical cavity that generates stimulated emission in the optical cavity when biased. A thermally tunable optical filter is positioned in the optical cavity that is heated to a temperature that selects a desired optical mode of the optical cavity. A thermally tunable optical phase retarder is positioned in the optical cavity that is heated to a temperature which changes an optical path length in the optical cavity by an amount corresponding to a resonant frequency of the tunable optical filter so that a phase-matching condition of the optical cavity is shifted to the desired optical mode of the optical cavity selected by the thermally tunable optical filter.
    • 可调谐激光器包括包括第一和第二反射镜的光学腔。 增益介质被定位在光腔中,当偏置时在光腔中产生受激发射。 热可调光学滤光器被定位在光学腔中,其被加热到选择光学腔的所需光学模式的温度。 热可调谐光学相位延迟器位于光腔中,该光学腔被加热到使光腔中的光路长度改变与可调谐光学滤波器的谐振频率相对应的量的温度,使得可调谐光学相位延迟器的相位匹配条件 光学腔被转移到由热可调光学滤光器选择的光学腔的期望的光学模式。
    • 6. 发明授权
    • Tunable Laser
    • 可调谐激光
    • US08670470B2
    • 2014-03-11
    • US13372549
    • 2012-02-14
    • Michael CahillRong Sun
    • Michael CahillRong Sun
    • H01S3/10
    • H01S5/141H01S3/1062H01S5/02248H01S5/0612
    • A tunable laser includes an optical cavity comprising a first and second mirror. A gain medium is positioned in the optical cavity that generates stimulated emission in the optical cavity when biased. A thermally tunable optical filter is positioned in the optical cavity that is heated to a temperature that selects a desired optical mode of the optical cavity. A thermally tunable optical phase retarder is positioned in the optical cavity that is heated to a temperature which changes an optical path length in the optical cavity by an amount corresponding to a resonant frequency of the tunable optical filter so that a phase-matching condition of the optical cavity is shifted to the desired optical mode of the optical cavity selected by the thermally tunable optical filter.
    • 可调谐激光器包括包括第一和第二反射镜的光学腔。 增益介质被定位在光腔中,当偏置时在光腔中产生受激发射。 热可调光学滤光器被定位在光学腔中,其被加热到选择光学腔的所需光学模式的温度。 热可调谐光学相位延迟器位于光腔中,该光学腔被加热到使光腔中的光路长度改变与可调谐光学滤波器的谐振频率相对应的量的温度,使得可调谐光学相位延迟器的相位匹配条件 光学腔被转移到由热可调光学滤光器选择的光学腔的期望的光学模式。