Reconfigurable multi-antenna device and intelligent communication terminal
A multi-antenna, omni-directional antenna technology, applied to antenna support/installation devices, devices that enable antennas to work in different bands at the same time, antennas, etc., can solve the problem that intelligent communication terminals cannot determine the application environment, and the application environment is diverse and inconsistent Adaptation, poor compatibility of intelligent communication terminals and other issues, to achieve the effect of achieving compatibility design, improving adaptability, and increasing gain
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Embodiment 1
[0026] Embodiment one, such as figure 1 As shown, the multi-antenna device of this embodiment mainly includes a radiation body, an antenna matching circuit 110 , a shorting device 120 and other parts. Wherein, four radiation branches 130, 140, 150, 160 are arranged in the radiation body of this embodiment, and the four radiation branches 130, 140, 150, 160 are distributed in the same horizontal plane, and any two adjacent The radiating branches all form a 90° angle, that is, the overall formation of a "ten"-shaped structure, combined with figure 2As shown, the horizontal plane can be divided into four regions, which are defined as: Quadrant I, Quadrant II, Quadrant III, and Quadrant IV. Each radiating branch 130 / 140 / 150 / 160 includes a head end 131 / 141 / 151 / 161, an end 132 / 142 / 152 / 162 and a shorting point 133 / 143 / 153 / 163, defining four radiating branches 130 , 140, 150, 160 adjacent to each other are the head end 131, 141, 151, 161, and the outward end is the end 132, 142, 15...
Embodiment 2
[0043] Embodiment two, such as image 3 As shown, the multi-antenna device of this embodiment also includes main parts such as a radiation body, an antenna matching circuit 310 and a shorting device 320 . Wherein, the radiation body is also composed of four radiation branches 330, 340, 350, 360, and its structure, arrangement, and branch length are the same as those of the four radiation branches 130, 140, 150, 160 in Embodiment 1. The embodiment will not be further described here. Each radiation branch 330, 340, 350, 360 is also provided with a short-circuit point 333, 343, 353, 363, and the short-circuit device 320 controls two or three of the short-point points to connect to the reference ground to change the corresponding radiation. The radial form of the branch. For the arrangement manner and arrangement position of the short contacts 333 , 343 , 353 , 363 on the radiation branches 330 , 340 , 350 , 360 , reference may be made to the relevant description in Embodiment 1...
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