Wireless terminal
US-9698470-B2 · Jul 4, 2017 · US
US10601116B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10601116-B2 |
| Application number | US-201916376597-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 5, 2019 |
| Priority date | Jul 30, 2013 |
| Publication date | Mar 24, 2020 |
| Grant date | Mar 24, 2020 |
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Official abstract text for this publication.
A wireless terminal is disclosed. The wireless terminal includes a first antenna, a second antenna, a printed circuit board, a bracket, and a resonator. The first antenna is located at one side of the printed circuit board. The second antenna is located at another side of the printed circuit board. The printed circuit board functions as a metal ground of the first antenna and the second antenna. The resonator is located on the bracket. A ground point of the resonator is located on the printed circuit board. A clearance exists between the resonator and the printed circuit board.
Opening claim text (preview).
What is claimed is: 1. A wireless terminal, comprising: a first antenna and a second antenna; a printed circuit board; a bracket; a resonator; and wherein: the first antenna is located at a first side edge of the printed circuit board, the second antenna is located at a second side edge of the printed circuit board, the printed circuit board functions as a metal ground of the first antenna and the second antenna, the resonator is located on the bracket, a ground point of the resonator is located on the printed circuit board, a clearance exists between the resonator and the printed circuit board, and the resonator comprises a structure formed by at least one metal strip that extends from a third side edge of the printed circuit board. 2. The wireless terminal according to claim 1 , wherein the bracket is plastic bracket. 3. The wireless terminal according to claim 1 , wherein the bracket is disposed on a surface of the printed circuit board or is disposed on a side edge of the printed circuit board that is perpendicular to the surface. 4. The wireless terminal according to claim 1 , wherein the wireless terminal further comprises a housing, and the bracket is disposed on the housing of the wireless terminal. 5. The wireless terminal according to claim 1 , wherein the bracket is a housing of the wireless terminal. 6. The wireless terminal according to claim 1 , wherein: the first antenna and the second antenna are separately located at two opposite side edges of the printed circuit board; or the first antenna and the second antenna are separately located at two adjacent side edges of the printed circuit board. 7. The wireless terminal according to claim 1 , wherein the ground point of the resonator is located on the printed circuit board and between the first antenna and the second antenna. 8. The wireless terminal according to claim 1 , wherein the resonator is one of or any combination of the following: a high and low frequency metal open stub, a closed metal stub, a metal stub in a form of a monopole antenna, or a metal stub in a shape of an inverted-F antenna. 9. The wireless terminal according to claim 1 , wherein the resonator is outside the printed circuit board. 10. The wireless terminal according to claim 1 , wherein the resonator is electrically connected to a lump component through a switch assembly, wherein the lump component comprises at least two matching circuits, and the switch assembly is configured to switch between the at least two matching circuits, so as to enable a resonance point of the resonator to switch between different working frequencies. 11. A wireless terminal, comprising: a first antenna and a second antenna; a printed circuit board; a bracket; a resonator; and wherein: the first antenna is located at a first side edge of the printed circuit board, the second antenna is located at a second side edge of the printed circuit board, the printed circuit board functions as a metal ground of the first antenna and the second antenna, the resonator is located on the bracket, a ground point of the resonator is located on the printed circuit board, the resonator is at least used to improve isolation between the first antenna and the second antenna, a clearance exists between the resonator and the printed circuit board, and the resonator comprises a structure formed by at least one metal strip that extends from a third edge of the printed circuit board. 12. The wireless terminal according to claim 11 , wherein the bracket is plastic bracket. 13. The wireless terminal according to claim 11 , wherein the bracket is disposed on a surface of the printed circuit board or is disposed on a side edge of the printed circuit board that is perpendicular to the surface. 14. The wireless terminal according to claim 11 , wherein the wireless terminal further comprises a housing, and the bracket is disposed on the housing of the wireless terminal. 15. The wireless terminal according to claim 11 , wherein the bracket is a housing of the wireless terminal. 16. The wireless terminal according to claim 11 , wherein: the first antenna and the second antenna are separately located at two opposite side edges of the printed circuit board; or the first antenna and the second antenna are separately located at two adjacent side edges of the printed circuit board. 17. The wireless terminal according to claim 11 , wherein the ground point of the resonator is located on the printed circuit board and between the first antenna and the second antenna. 18. The wireless terminal according to claim 11 , wherein the resonator is one of or any combination of the following: a high and low frequency metal open stub, a closed metal stub, a metal stub in a form of a monopole antenna, or a metal stub in a shape of an inverted-F antenna. 19. The wireless terminal according to claim 11 , wherein the resonator is outside the printed circuit board. 20. The wireless terminal according to claim 11 , wherein the resonator is electrically connected to a lump component through a switch assembly, wherein the lump component comprises at least two matching circuits, and the switch assembly is configured to switch between the at least two matching circuits, so as to enable a resonance point of the resonator to switch between different working frequencies.
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