Патент США № | 10804606 |
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Автор(ы) | Foo |
Дата выдачи | 13 октября 2020 г. |
Broadband slot-coupled stacked patch antenna elements are capable of continuous broadband operation between 1.71 GHz and 2.69 GHz. The broadband slot-coupled stacked patch antenna element includes a mid-band radiating patch, a high-band radiating patch, and a low-band resonator with coupling slots capable of resonating at low, mid, and high band frequencies. Additionally, a low-profile probe-fed patch element is provided for pattern enhancement of antenna arrays at high-band frequencies. This low-profile patch element features fan-shaped probes that have three degrees of tune-ability, namely a length, a width, and a spreading angle. Further aspects include 3-column and 4-column offset arrays of the broadband patch radiators and an interleaved array of the low-profile high-band patch radiators and the broadband radiating elements. A new type of azimuth beam forming network (ABFN) is also introduced for the beam forming of the 3-column and 4-column dual-beam arrays.
Автор(ы): | Senglee Foo (Ottawa, CA) | ||||||||||
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Заявитель: |
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Патентообладатель: | Huawei Technologies Co., Ltd. (Shenzhen, CN) |
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Идентификатор семейства: | 52448161 | ||||||||||
Номер заявки: | 15/639,808 | ||||||||||
Приоритет: | 30 июня 2017 г. |
Идентификатор патента | Дата публикации | |
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US 20170324163 A1 | Nov 9, 2017 | |
Номер заявки | Дата подачи заявки | Номер патента | Дата публикации | ||
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14041754 | Sep 30, 2013 | 9711853 | |||
61863203 | Aug 7, 2013 | ||||
Действующий класс US: | 1/1 |
Действующий класс СПК: | H01Q3/30; H01Q5/22; H01Q21/24; H01Q9/045; H01Q21/065; H01Q19/10; H01Q9/0414; H01Q1/246; H01Q5/40; H01Q9/0457; H01Q3/28 |
Действующий класс МПК: | H01Q5/22; H01Q21/06; H01Q21/24; H01Q3/28; H01Q9/04; H01Q5/40; H01Q19/10; H01Q3/30; H01Q1/24 |
Область поиска: | ;342/368 |
4933680 | June 1990 | Shapiro et al. |
5321608 | June 1994 | Namba et al. |
7595753 | September 2009 | Ratni |
2003/0146872 | August 2003 | Kellerman et al. |
2004/0145526 | July 2004 | Puente Baliarda et al. |
2009/0128413 | May 2009 | Crouch et al. |
2010/0283707 | November 2010 | Foo |
2011/0279344 | November 2011 | He et al. |
2013/0156368 | June 2013 | Hanjani |
2014/0022123 | January 2014 | Bruder et al. |
2014/0375502 | December 2014 | Foo |
2015/0349425 | December 2015 | Kitchener |
1507673 | Jun 2004 | CN | |||
101895014 | Nov 2010 | CN | |||
102074779 | May 2011 | CN | |||
102299409 | Dec 2011 | CN | |||
102694247 | Sep 2012 | CN | |||
1341259 | Sep 2003 | EP | |||
Bugaj et al., Chapter 2, "Bandwidth Optimization of Aperture-Coupled Stacked Patch Antenna", http://dx.doi.org/10.5772/54661,@2013. cited by applicant . Foo, S., et al., "Adjustable Dual Beam Wireless Base Station Antenna," The Fourth International Conference on Wireless and Mobile Communications, Jul. 27, 2008-Aug. 1, 2008 pp. 315-320. cited by applicant. |