Multi-frequency planar microstrip antenna applied to 5G communication and Beidou positioning
A planar microstrip antenna and Beidou positioning technology, which is applied in the direction of antenna, antenna grounding switch structure connection, antenna support/installation device, etc., can solve the problems of increasing system volume, inconvenient users, and large system energy consumption, etc., to achieve Effects of reduced volume, easy integration, and high reliability
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Embodiment 1
[0055] This embodiment mainly introduces the specific design of a multi-frequency planar microstrip antenna applied to 5G communication and Beidou positioning.
[0056] see Figures 1 to 3 As shown, the antenna of the present invention has a square dielectric substrate 10, and the lower surface of the square dielectric substrate 10 is entirely covered with copper to form a square metal ground plate 16 of the antenna of the present invention, and a circular non-metallic area 17 is etched in the square metal ground plate 16, For the test interface required for the welding test, the center of the circular non-metallic area 17 is located in the upper right half area of the square metal grounding plate. At the center of the circular non-metallic area 17, a circular non-metallic via hole 18 with a slightly smaller radius is processed. The height of the circular non-metallic via hole 18 is equal to the thickness of the square dielectric substrate 10. The center of the circle 18 co...
Embodiment 2
[0063] Based on Embodiment 1, this embodiment mainly introduces the specific production process of a multi-frequency planar microstrip antenna applied to 5G communication and Beidou positioning:
[0064] First, a piece of polytetrafluoroethylene FR-4 with a length and a width equal to 90±2% mm and a thickness equal to 1.6±2% mm is selected as the dielectric plate as the dielectric substrate 10 for designing the antenna of the present invention. The lower surface of the square dielectric substrate 10 is entirely covered with metal coating, that is, the square metal grounding plate 16. The length and width of the square metal grounding plate 16 are equal to the length and width of the square dielectric substrate 10, which is 90±2% mm, and the metal coating thickness can be ignored. A circular non-metallic area 17 is processed in the middle of the square metal grounding plate 16 , the radius of the circular non-metallic area 17 is 1.5±1% mm, and the center of the circular non-met...
Embodiment 3
[0069] Based on the foregoing Embodiments 1-2, this embodiment mainly introduces the effect verification of the present application.
[0070] The multi-frequency planar microstrip antenna designed by the present invention is simulated and analyzed by using the three-dimensional electromagnetic simulation software HFSS. Figure 4 As mentioned, the antenna can resonate at four different frequency points, and the four frequency points are respectively 1.60±2% GHz, 3.40±2% GHz, 4.50±2% GHz and 5.10±2% GHz, namely the design of the present invention The antenna is a multi-frequency antenna.
[0071] The multi-frequency planar microstrip antenna designed in this application has four effective operating frequency points, and the center resonance frequency points are 1.60±2% GHz, 3.40±2% GHz, 4.50±2% GHz and 5.10±2% GHz respectively; The first operating frequency point can serve Beidou satellite positioning, the second operating frequency point can serve 5G wireless communication, an...
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