Chalcogenide nanoionic-based radio frequency switch
    1.
    发明授权
    Chalcogenide nanoionic-based radio frequency switch 有权
    基于硫族化物纳米离子型射频开关

    公开(公告)号:US07923715B2

    公开(公告)日:2011-04-12

    申请号:US12336503

    申请日:2008-12-16

    IPC分类号: H31L29/00

    摘要: A nonvolatile nanoionic switch is disclosed. A thin layer of chalcogenide glass engages a substrate and a metal selected from the group of silver and copper photo-dissolved in the chalcogenide glass. A first oxidizable electrode and a second inert electrode engage the chalcogenide glass and are spaced apart from each other forming a gap therebetween. A direct current voltage source is applied with positive polarity applied to the oxidizable electrode and negative polarity applied to the inert electrode which electrodeposits silver or copper across the gap closing the switch. Reversing the polarity of the switch dissolves the electrodeposited metal and returns it to the oxidizable electrode. A capacitor arrangement may be formed with the same structure and process.

    摘要翻译: 公开了非易失性纳米离子开关。 硫族化物玻璃的薄层与基底和选自在硫族化物玻璃中光溶解的银和铜的金属接合。 第一可氧化电极和第二惰性电极与硫族化物玻璃接合并且彼此间隔开,在它们之间形成间隙。 施加直流电压源,其正极施加到可氧化电极,负极性施加到惰性电极上,该惰性电极在闭合开关的间隙上电镀银或铜。 反转开关的极性会溶解电沉积金属并将其返回到可氧化电极。 可以以相同的结构和工艺形成电容器布置。

    Chalcogenide Nanoionic-Based Radio Frequency Switch
    2.
    发明申请
    Chalcogenide Nanoionic-Based Radio Frequency Switch 有权
    基于硫族元素的纳米级无线电频率开关

    公开(公告)号:US20110162950A1

    公开(公告)日:2011-07-07

    申请号:US13050229

    申请日:2011-03-17

    IPC分类号: H03K17/51

    摘要: A nonvolatile nanoionic switch is disclosed. A thin layer of chalcogenide glass engages a substrate and a metal selected from the group of silver and copper photo-dissolved in the chalcogenide glass. A first oxidizable electrode and a second inert electrode engage the chalcogenide glass and are spaced apart from each other forming a gap therebetween. A direct current voltage source is applied with positive polarity applied to the oxidizable electrode and negative polarity applied to the inert electrode which electrodeposits silver or copper across the gap closing the switch. Reversing the polarity of the switch dissolves the electrodeposited metal and returns it to the oxidizable electrode. A capacitor arrangement may be formed with the same structure and process.

    摘要翻译: 公开了非易失性纳米离子开关。 硫族化物玻璃的薄层与基底和选自在硫族化物玻璃中光溶解的银和铜的金属接合。 第一可氧化电极和第二惰性电极与硫族化物玻璃接合并且彼此间隔开,在它们之间形成间隙。 施加直流电压源,其正极施加到可氧化电极,负极性施加到惰性电极上,该惰性电极在闭合开关的间隙上电镀银或铜。 反转开关的极性会溶解电沉积金属并将其返回到可氧化电极。 可以以相同的结构和工艺形成电容器布置。

    Chalcogenide nanoionic-based radio frequency switch
    3.
    发明授权
    Chalcogenide nanoionic-based radio frequency switch 有权
    基于硫族元素的纳米离子型射频开关

    公开(公告)号:US08410469B2

    公开(公告)日:2013-04-02

    申请号:US13050229

    申请日:2011-03-17

    IPC分类号: H01L45/00

    摘要: A nonvolatile nanoionic switch is disclosed. A thin layer of chalcogenide glass engages a substrate and a metal selected from the group of silver and copper photo-dissolved in the chalcogenide glass. A first oxidizable electrode and a second inert electrode engage the chalcogenide glass and are spaced apart from each other forming a gap therebetween. A direct current voltage source is applied with positive polarity applied to the oxidizable electrode and negative polarity applied to the inert electrode which electrodeposits silver or copper across the gap closing the switch. Reversing the polarity of the switch dissolves the electrodeposited metal and returns it to the oxidizable electrode. A capacitor arrangement may be formed with the same structure and process.

    摘要翻译: 公开了非易失性纳米离子开关。 硫族化物玻璃的薄层与基底和选自在硫族化物玻璃中光溶解的银和铜的金属接合。 第一可氧化电极和第二惰性电极与硫族化物玻璃接合并且彼此间隔开,在它们之间形成间隙。 施加直流电压源,其正极施加到可氧化电极,负极性施加到惰性电极上,该惰性电极在闭合开关的间隙上电镀银或铜。 反转开关的极性会溶解电沉积金属并将其返回到可氧化电极。 可以以相同的结构和工艺形成电容器布置。

    CHALCOGENIDE NANOIONIC-BASED RADIO FREQUENCY SWITCH
    4.
    发明申请
    CHALCOGENIDE NANOIONIC-BASED RADIO FREQUENCY SWITCH 有权
    基于纳米技术的无线电频率开关

    公开(公告)号:US20100140582A1

    公开(公告)日:2010-06-10

    申请号:US12336503

    申请日:2008-12-16

    IPC分类号: H01L47/00

    摘要: A nonvolatile nanoionic switch is disclosed. A thin layer of chalcogenide glass engages a substrate and a metal selected from the group of silver and copper photo-dissolved in the chalcogenide glass. A first oxidizable electrode and a second inert electrode engage the chalcogenide glass and are spaced apart from each other forming a gap therebetween. A direct current voltage source is applied with positive polarity applied to the oxidizable electrode and negative polarity applied to the inert electrode which electrodeposits silver or copper across the gap closing the switch. Reversing the polarity of the switch dissolves the electrodeposited metal and returns it to the oxidizable electrode. A capacitor arrangement may be formed with the same structure and process.

    摘要翻译: 公开了非易失性纳米离子开关。 硫族化物玻璃的薄层与基底和选自在硫族化物玻璃中光溶解的银和铜的金属接合。 第一可氧化电极和第二惰性电极与硫族化物玻璃接合并且彼此间隔开,在它们之间形成间隙。 施加直流电压源,其正极施加到可氧化电极,负极性施加到惰性电极上,该惰性电极在闭合开关的间隙上电镀银或铜。 反转开关的极性会溶解电沉积金属并将其返回到可氧化电极。 可以以相同的结构和工艺形成电容器布置。

    Temporary electrical panel
    5.
    发明授权

    公开(公告)号:US11201455B1

    公开(公告)日:2021-12-14

    申请号:US16897840

    申请日:2020-06-10

    申请人: Richard Lee

    发明人: Richard Lee

    摘要: Disclosed herein is an apparatus for providing and monitoring a temporary electrical supply, which comprises a portable electrical panel with an array of circuit breakers, an array of electrical plugs for supplying a temporary source of electricity, and an array of amp and voltage meters that detect information needed for each corresponding phase. The Temporary Electrical Panel is supplied by a 50-amp cord and has a 40-amp main breaker. Each electrical plug is rated at 20 amps, tamper resistant, and GFCI protected, with a dedicated 20-amp breaker. The electrical plugs may also be color coded to differentiate which phase they are on. Additionally, the Temporary Electrical Panel comprises a plastic backing board with handle cut outs or a handle, which allow the Temporary Electrical Panel to be carried.

    System and method of virtual interaction
    7.
    发明授权
    System and method of virtual interaction 有权
    虚拟交互的系统和方法

    公开(公告)号:US09122391B2

    公开(公告)日:2015-09-01

    申请号:US12979636

    申请日:2010-12-28

    摘要: A system for virtual interaction, comprising two or more portable electronic devices, is provided. Each device comprises, in turn, coordinate referencing means operable to define a coordinate system common to the portable electronic devices with respect to a physically defined reference position, position estimation means operable to detect a the physical position of its respective portable electronic device with respect to the reference position, virtual environment generation means operable to generate a virtual environment, and communication means operable to transmit positional data using the common coordinate system from that portable electronic device to another portable electronic device. The virtual environment is shared in common between the portable electronic devices. The virtual environment uses the common co-ordinate system within which each portable electronic device defines a position for itself responsive to its physical position with respect to the reference position.

    摘要翻译: 提供了一种用于虚拟交互的系统,包括两个或更多个便携式电子设备。 每个设备依次包括坐标参考装置,其可操作以相对于物理定义的参考位置定义便携式电子设备公用的坐标系,位置估计装置,可操作以检测其相应的便携式电子设备的物理位置相对于 参考位置,可操作以产生虚拟环境的虚拟环境生成装置,以及可操作以使用所述公共坐标系从所述便携式电子设备向另一便携式电子设备发送位置数据的通信装置。 虚拟环境在便携式电子设备之间共享。 虚拟环境使用公共坐标系统,在该系统中,每个便携式电子设备根据其相对于参考位置的物理位置来定义自身的位置。

    SYSTEM AND METHOD OF VIRTUAL INTERACTION
    9.
    发明申请
    SYSTEM AND METHOD OF VIRTUAL INTERACTION 有权
    虚拟交互的系统与方法

    公开(公告)号:US20110298824A1

    公开(公告)日:2011-12-08

    申请号:US12979636

    申请日:2010-12-28

    IPC分类号: G09G5/377

    摘要: A system for virtual interaction, comprising two or more portable electronic devices, is provided. Each device comprises, in turn, coordinate referencing means operable to define a coordinate system common to the portable electronic devices with respect to a physically defined reference position, position estimation means operable to detect a the physical position of its respective portable electronic device with respect to the reference position, virtual environment generation means operable to generate a virtual environment, and communication means operable to transmit positional data using the common coordinate system from that portable electronic device to another portable electronic device. The virtual environment is shared in common between the portable electronic devices. The virtual environment uses the common co-ordinate system within which each portable electronic device defines a position for itself responsive to its physical position with respect to the reference position.

    摘要翻译: 提供了一种用于虚拟交互的系统,包括两个或更多个便携式电子设备。 每个设备依次包括坐标参考装置,其可操作以相对于物理定义的参考位置定义便携式电子设备公用的坐标系,位置估计装置,可操作以检测其相应的便携式电子设备的物理位置相对于 参考位置,可操作以产生虚拟环境的虚拟环境生成装置,以及可操作以使用所述公共坐标系从所述便携式电子设备向另一便携式电子设备发送位置数据的通信装置。 虚拟环境在便携式电子设备之间共享。 虚拟环境使用公共坐标系统,在该系统中,每个便携式电子设备根据其相对于参考位置的物理位置来定义自身的位置。

    METHODS AND TECHNIQUES FOR ADAPTIVE SEARCH
    10.
    发明申请
    METHODS AND TECHNIQUES FOR ADAPTIVE SEARCH 审中-公开
    自适应搜索的方法和技术

    公开(公告)号:US20100198822A1

    公开(公告)日:2010-08-05

    申请号:US12650534

    申请日:2009-12-30

    IPC分类号: G06F17/30 H04N5/91

    摘要: A method and apparatus for an adaptive search user interface is provided. An interface is provided that returns search results upon receiving each alphanumeric character of a search query term. Correlations of prefixes of alphanumeric characters and search results selected from previous searches are stored in a correlation matrix. Based upon the correlations in the correlation matrix, relevance rankings for search results with respect to the prefixes of alphanumeric characters are updated. Search results may be grouped based upon one or more common traits. Relevance rankings are also updated based upon the rate of change of selections recorded for a search result.

    摘要翻译: 提供了一种用于自适应搜索用户界面的方法和装置。 提供了一种接口,用于在接收到搜索查询项的每个字母数字字符时返回搜索结果。 字母数字字符的前缀与先前搜索中选择的搜索结果的相关性存储在相关矩阵中。 基于相关矩阵中的相关性,更新关于字母数字字符的前缀的搜索结果的相关性排名。 搜索结果可以基于一个或多个共同特征分组。 相关性排名也根据搜索结果记录的选择的变化率更新。