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    • 33. 发明授权
    • Enabling incoming VoIP calls behind a network firewall
    • 启用网络防火墙后面的传入VoIP呼叫
    • US08391453B2
    • 2013-03-05
    • US12884595
    • 2010-09-17
    • Attila J HunyadyChunsheng XieXiaodong ZhuFeng Zhou
    • Attila J HunyadyChunsheng XieXiaodong ZhuFeng Zhou
    • H04M11/00
    • H04L63/029H04L29/12462H04L29/125H04L29/12556H04L61/255H04L61/2564H04L61/2585
    • A network device is configured to receive a registration message from a private user device including a private internet protocol (IP) address associated with the private user device. A public IP address and discrete port number are assigned to the private user device and private IP address and stored in an incoming call table. The registration message is translated to include the public IP address and discrete port number. The registration message is forwarded to a proxy server for registration. An incoming call invitation message is received from a public user device, where the call invitation message is directed to the public IP address and discrete port number associated with the private user device. The call invitation message is translated to include the private IP address associated with the private user device based on the received public IP address and discrete port number and the incoming call table. The call invitation message is forwarded to the private user device.
    • 网络设备被配置为从私有用户设备接收注册消息,包括与私有用户设备相关联的专用互联网协议(IP)地址。 公共IP地址和离散端口号被分配给专用用户设备和专用IP地址,并存储在来电表中。 注册消息被转换为包括公共IP地址和离散端口号。 注册消息被转发到代理服务器进行注册。 从公共用户设备接收到来电呼叫消息,其中呼叫邀请消息被引导到与私有用户设备相关联的公共IP地址和离散端口号。 基于所接收的公共IP地址和离散端口号和来电表,转移呼叫请求消息以包括与私有用户设备相关联的专用IP地址。 呼叫邀请消息被转发到私有用户设备。
    • 35. 发明授权
    • Solid-state lasers employing incoherent monochromatic pump
    • 采用非相干单色泵的固态激光器
    • US07522651B2
    • 2009-04-21
    • US11052725
    • 2005-02-07
    • Ningyi LuoSheng-Bai ZhuShaoping LuFeng Zhou
    • Ningyi LuoSheng-Bai ZhuShaoping LuFeng Zhou
    • H01S3/093H01S3/091
    • H01S3/0933H01S3/025H01S3/0407H01S3/042
    • Solid-state laser(s) pumped by incoherent, monochromatic light from sources such as LED arrays and integrating technologies such as high power LED arrays and solid-state laser materials in conjunction with efficient and uniform absorption of pumping energies through a diffusing pump chamber. The resulting laser(s) are compact, robust, low-cost, and able to produce high power output for practical applications. It may efficiently operate over wide temperature and performance ranges, at CW or pulse modes, even with ultra short pulse width and/or extremely high repetition rates. Our inventive structure(s) is/are highly flexible and applicable to a large group of lasing media including those with very short upper state life times. Advantageously, they may be applied to a plethora of laser systems at wavelengths that have important applications and unavailable to other direct pumping technologies.
    • 通过来自诸如LED阵列的源的非相干单色光以及诸如大功率LED阵列和固态激光材料的集成技术泵浦的固体激光器结合通过扩散泵室的泵浦能量的有效和均匀的吸收。 所产生的激光器是紧凑的,坚固的,低成本的,并且能够为实际应用产生高功率输出。 即使在超短脉冲宽度和/或极高的重复率下,它也可以在CW或脉冲模式下在宽温度和性能范围内有效地工作。 我们的创新结构非常灵活,适用于大量的激光介质,包括具有非常短的上限寿命的激光介质。 有利的是,它们可以应用于具有重要应用的波长的多个激光系统,并且对于其它直接泵浦技术不可用。
    • 40. 发明申请
    • Solid-state lasers employing incoherent monochromatic pump
    • 采用非相干单色泵的固态激光器
    • US20050201442A1
    • 2005-09-15
    • US11052725
    • 2005-02-07
    • Ningyi LuoSheng-Hai ZhuShaoping LuFeng Zhou
    • Ningyi LuoSheng-Hai ZhuShaoping LuFeng Zhou
    • H01S3/04H01S3/042H01S3/0933H01S3/16
    • H01S3/0933H01S3/025H01S3/0407H01S3/042
    • Solid-state laser(s) pumped by incoherent, monochromatic light from sources such as LED arrays and integrating technologies such as high power LED arrays and solid-state laser materials in conjunction with efficient and uniform absorption of pumping energies through a diffusing pump chamber. The resulting laser(s) are compact, robust, low-cost, and able to produce high power output for practical applications. It may efficiently operate over wide temperature and performance ranges, at CW or pulse modes, even with ultra short pulse width and/or extremely high repetition rates. Our inventive structure(s) is/are highly flexible and applicable to a large group of lasing media including those with very short upper state life times. Advantageously, they may be applied to a plethora of laser systems at wavelengths that have important applications and unavailable to other direct pumping technologies.
    • 通过来自诸如LED阵列的源的非相干单色光以及诸如大功率LED阵列和固态激光材料的集成技术泵浦的固体激光器结合通过扩散泵室的泵浦能量的有效和均匀的吸收。 所产生的激光器是紧凑的,坚固的,低成本的,并且能够为实际应用产生高功率输出。 即使在超短脉冲宽度和/或极高的重复率下,它也可以在CW或脉冲模式下在宽温度和性能范围内高效运行。 我们的创新结构非常灵活,适用于大量的激光介质,包括具有非常短的上限寿命的激光介质。 有利的是,它们可以应用于具有重要应用的波长的多个激光系统,并且对于其它直接泵浦技术不可用。