会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Multi-band RF combiner
    • 多频RF组合器
    • US07630696B2
    • 2009-12-08
    • US11424639
    • 2006-06-16
    • Lowell Lee Loyet
    • Lowell Lee Loyet
    • H04B17/02
    • H01P5/12H01Q5/321H01Q5/42H01Q9/285H01Q21/08
    • An RF (radio frequency) combiner utilizes RF filtering cavities and transmission paths incorporated into an RF impervious material. This allows traditional stand-alone multiplexers to be integrated into a single device without using signal loss-inducing cables and connections between the multiplexers. The simplicity of the RF combiner allows for RF filters to be milled out of the same RF impervious material without requiring an external RF connection and avoids a cascading of multiple RF filters. In one instance, the RF combiner is employed with two BTS (base transceiver stations) to allow the sharing of antennas without the power losses associated with traditional cascading duplexers.
    • RF(射频)组合器使用RF滤波腔和并入RF不透水材料的传输路径。 这允许将传统的独立复用器集成到单个设备中,而不使用信号丢失诱导电缆和多路复用器之间的连接。 RF组合器的简单性允许将RF滤波器从相同的RF不透水材料中铣削出来,而不需要外部RF连接,并避免多个RF滤波器的级联。 在一种情况下,RF组合器与两个BTS(基站收发器站)一起使用,以允许天线的共享而没有与传统级联双工器相关联的功率损耗。
    • 3. 发明授权
    • Multi-resonant microstrip dipole antenna
    • 多谐振微带偶极天线
    • US07884775B1
    • 2011-02-08
    • US12163823
    • 2008-06-27
    • Lowell Lee Loyet
    • Lowell Lee Loyet
    • H01Q9/16
    • H01Q9/28H01Q1/38H01Q5/357
    • A multi-band antenna for use, for example, in a wireless communications network, employs multi-resonant microstrip dipoles that resonate at multiple frequencies due to microstrip “islands.” Gaps in the microstrips create an open RF circuit except for desired frequencies. At a desired frequency, RF energy sees a gap as a short circuit between an island and the rest of a dipole antenna, thus, resonating at the desired frequency. In one instance, the multi-band antenna includes a first, second, third, and fourth dipole elements. Gaps between the first and third dipole elements and the second and fourth dipole elements are sufficiently small that the first, second, third, and fourth dipole elements form a second dipole having a corresponding dipole wavelength longer than that of the first dipole.
    • 例如,在无线通信网络中使用的多频带天线使用由于微带“岛”而在多个频率处共振的多谐振微带偶极子。微带中的间隙产生除期望频率之外的开放RF电路。 在期望的频率下,RF能量将间隙视为岛和偶极天线的其余部分之间的短路,从而以期望的频率谐振。 在一种情况下,多频带天线包括第一,第二,第三和第四偶极元件。 第一和第三偶极元件与第二和第四偶极元件之间的间隙足够小,使得第一,第二,第三和第四偶极子元件形成具有比第一偶极子相应的偶极波长长的第二偶极子。
    • 4. 发明授权
    • Multi-resonant microstrip dipole antenna
    • 多谐振微带偶极天线
    • US07394437B1
    • 2008-07-01
    • US11843673
    • 2007-08-23
    • Lowell Lee Loyet
    • Lowell Lee Loyet
    • H01Q9/28H01Q21/00
    • H01Q9/28H01Q1/38H01Q5/357
    • A multi-band antenna for use, for example, in a wireless communications network, employs multi-resonant microstrip dipoles that resonate at multiple frequencies due to microstrip “islands.” Gaps in the microstrips create an open RF circuit except for desired frequencies. At a desired frequency, RF energy sees a gap as a short circuit between an island and the rest of a dipole antenna, thus, resonating at the desired frequency. In one instance, the multi-band antenna includes a first, second, third, and fourth dipole elements. Gaps between the first and third dipole elements and the second and fourth dipole elements are sufficiently small that the first, second, third, and fourth dipole elements form a second dipole having a corresponding dipole wavelength longer than that of the first dipole.
    • 例如在无线通信网络中使用的多频带天线使用由于微带“岛”而以多个频率谐振的多谐振微带偶极子。 微带间隙产生除了所需频率外的开路RF电路。 在期望的频率下,RF能量将间隙视为岛和偶极天线的其余部分之间的短路,从而以期望的频率谐振。 在一种情况下,多频带天线包括第一,第二,第三和第四偶极元件。 第一和第三偶极元件与第二和第四偶极元件之间的间隙足够小,使得第一,第二,第三和第四偶极子元件形成具有比第一偶极子相应的偶极波长长的第二偶极子。
    • 5. 发明申请
    • MULTI-BAND RF COMBINER
    • 多波段RF组合器
    • US20100054163A1
    • 2010-03-04
    • US12613734
    • 2009-11-06
    • Lowell Lee Loyet
    • Lowell Lee Loyet
    • H04B1/44
    • H01P5/12H01Q5/321H01Q5/42H01Q9/285H01Q21/08
    • An RF (radio frequency) combiner utilizes RF filtering cavities and transmission paths incorporated into an RF impervious material. This allows traditional stand-alone multiplexers to be integrated into a single device without using signal loss-inducing cables and connections between the multiplexers. The simplicity of the RF combiner allows for RF filters to be milled out of the same RF impervious material without requiring an external RF connection and avoids a cascading of multiple RF filters. In one instance, the RF combiner is employed with two BTS (base transceiver stations) to allow the sharing of antennas without the power losses associated with traditional cascading duplexers.
    • RF(射频)组合器使用RF滤波腔和并入RF不透水材料的传输路径。 这允许将传统的独立复用器集成到单个设备中,而不使用信号丢失诱导电缆和多路复用器之间的连接。 RF组合器的简单性允许将RF滤波器从相同的RF不透水材料中铣削出来,而不需要外部RF连接,并避免多个RF滤波器的级联。 在一种情况下,RF组合器与两个BTS(基站收发器站)一起使用,以允许天线的共享而没有与传统级联双工器相关联的功率损耗。
    • 6. 发明申请
    • MULTI-BAND ANTENNA
    • 多条天线
    • US20070290938A1
    • 2007-12-20
    • US11424614
    • 2006-06-16
    • Lowell Lee Loyet
    • Lowell Lee Loyet
    • H01Q9/28
    • H01Q1/246H01Q5/42H01Q9/065H01Q9/28H01Q21/08H01Q21/30
    • A multi-band antenna for use in a wireless communications network provides frequency support for different wireless technologies in a single structure. This substantially reduces installation costs and can be the only solution in limited space installation sites. In one instance, the multi-band antenna has two serial feedlines carrying respective anode and cathode components of RF signals. Each, comprising serial feedline is coupled to two or more different length dipole elements. Each dipole element of a given length attached to the first serial feedline has a corresponding dipole element of approximately equal length attached to the second serial feedline and oriented, with respect to the first dipole element so as to form a dipole. Thus, at least two dipoles of differing lengths are formed, enabling performance in two different bands by the antenna. The gain of the antenna for any particular band is determined by the number of dipoles corresponding to that band contained within the antenna.
    • 用于无线通信网络的多频带天线为单个结构中的不同无线技术提供频率支持。 这大大降低了安装成本,可以成为有限空间安装场所的唯一解决方案。 在一种情况下,多频带天线具有携带RF信号的相应阳极和阴极分量的两个串行馈线。 包括串联馈线的每一个耦合到两个或更多个不同长度的偶极子元件。 连接到第一串联馈线的给定长度的每个偶极子元件具有大致相等长度的对应偶极元件,其连接到第二串联馈线并且相对于第一偶极元件被定向以形成偶极子。 因此,形成不同长度的至少两个偶极子,使得能够通过天线在两个不同的频带中表现。 用于任何特定频带的天线的增益由对应于包含在天线内的频带的偶极子的数量决定。
    • 7. 发明授权
    • Multi-band antenna
    • 多频天线
    • US07764245B2
    • 2010-07-27
    • US11424614
    • 2006-06-16
    • Lowell Lee Loyet
    • Lowell Lee Loyet
    • H01Q9/28H01Q1/38
    • H01Q1/246H01Q5/42H01Q9/065H01Q9/28H01Q21/08H01Q21/30
    • A multi-band antenna for use in a wireless communications network provides frequency support for different wireless technologies in a single structure. This substantially reduces installation costs and can be the only solution in limited space installation sites. In one instance, the multi-band antenna has two serial feedlines carrying respective anode and cathode components of RF signals. Each, comprising serial feedline is coupled to two or more different length dipole elements. Each dipole element of a given length attached to the first serial feedline has a corresponding dipole element of approximately equal length attached to the second serial feedline and oriented, with respect to the first dipole element so as to form a dipole. Thus, at least two dipoles of differing lengths are formed, enabling performance in two different bands by the antenna. The gain of the antenna for any particular band is determined by the number of dipoles corresponding to that band contained within the antenna.
    • 用于无线通信网络的多频带天线为单个结构中的不同无线技术提供频率支持。 这大大降低了安装成本,可以成为有限空间安装场所的唯一解决方案。 在一种情况下,多频带天线具有携带RF信号的相应阳极和阴极分量的两个串行馈线。 包括串联馈线的每一个耦合到两个或更多个不同长度的偶极子元件。 连接到第一串联馈线的给定长度的每个偶极子元件具有大致相等长度的对应偶极元件,其连接到第二串联馈线并且相对于第一偶极元件被定向以形成偶极子。 因此,形成不同长度的至少两个偶极子,使得能够通过天线在两个不同的频带中表现。 用于任何特定频带的天线的增益由对应于包含在天线内的频带的偶极子的数量决定。
    • 8. 发明申请
    • MULTI-BAND RF COMBINER
    • 多波段RF组合器
    • US20070297398A1
    • 2007-12-27
    • US11424639
    • 2006-06-16
    • Lowell Lee Loyet
    • Lowell Lee Loyet
    • H04L12/50
    • H01P5/12H01Q5/321H01Q5/42H01Q9/285H01Q21/08
    • An RF (radio frequency) combiner utilizes RF filtering cavities and transmission paths incorporated into an RF impervious material. This allows traditional stand-alone multiplexers to be integrated into a single device without using signal loss-inducing cables and connections between the multiplexers. The simplicity of the RF combiner allows for RF filters to be milled out of the same RF impervious material without requiring an external RF connection and avoids a cascading of multiple RF filters. In one instance, the RF combiner is employed with two BTS (base transceiver stations) to allow the sharing of antennas without the power losses associated with traditional cascading duplexers.
    • RF(射频)组合器使用RF滤波腔和并入RF不透水材料的传输路径。 这允许将传统的独立复用器集成到单个设备中,而不使用信号丢失诱导电缆和多路复用器之间的连接。 RF组合器的简单性允许将RF滤波器从相同的RF不透水材料中铣削出来,而不需要外部RF连接,并避免多个RF滤波器的级联。 在一种情况下,RF组合器与两个BTS(基站收发器站)一起使用,以允许天线的共享而没有与传统级联双工器相关联的功率损耗。
    • 9. 发明授权
    • Multi-resonant microstrip dipole antenna
    • 多谐振微带偶极天线
    • US07277062B1
    • 2007-10-02
    • US11424664
    • 2006-06-16
    • Lowell Lee Loyet
    • Lowell Lee Loyet
    • H01Q9/28
    • H01Q9/28H01Q1/38H01Q5/357
    • A multi-band antenna for use, for example, in a wireless communications network, employs multi-resonant microstrip dipoles that resonate at multiple frequencies due to microstrip “islands.” Gaps in the microstrips create an open RF circuit except for desired frequencies. At a desired frequency, RF energy sees a gap as a short circuit between an island and the rest of a dipole antenna, thus, resonating at the desired frequency. In one instance, the multi-band antenna includes a first, second, third, and fourth dipole elements. Gaps between the first and third dipole elements and the second and fourth dipole elements are sufficiently small that the first, second, third, and fourth dipole elements form a second dipole having a corresponding dipole wavelength longer than that of the first dipole.
    • 例如在无线通信网络中使用的多频带天线使用由于微带“岛”而以多个频率谐振的多谐振微带偶极子。 微带间隙产生除了所需频率外的开路RF电路。 在期望的频率下,RF能量将间隙视为岛和偶极天线的其余部分之间的短路,从而以期望的频率谐振。 在一种情况下,多频带天线包括第一,第二,第三和第四偶极元件。 第一和第三偶极元件与第二和第四偶极元件之间的间隙足够小,使得第一,第二,第三和第四偶极子元件形成具有比第一偶极子相应的偶极波长长的第二偶极子。