IP Library › Granted Patent US 9,136,604
Granted Patent B2
US 9,136,604 · App. 13/521,444 · Granted Sep 15, 2015

Antenna and wireless communication apparatus

Inventors: Ruopeng Liu (Guangdong, CN); Guanxiong Xu (Guangdong, CN); Nenghui Fang (Guangdong, CN)
Assignee: KUANG-CHI INTELLIGENT PHOTONIC TECHNOLOGY LTD.
H01Q9/42
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,136,604
App. No.
13/521,444
Granted
Sep 15, 2015
Kind
B2
Abstract

An antenna comprises a medium substrate and grounding units attached on the medium substrate. The antenna further comprises a metal structure attached on the medium substrate. The metal structure comprises an electromagnetic response unit, a metal open ring enclosing the electromagnetic response unit and a feeding point connected to an end of the metal open ring. The electromagnetic response unit comprises an electric-field coupling structure. This design increases the physical length of the antenna equivalently, so an RF antenna operating at an extremely low frequency can be designed within a very small space. This can eliminate the physical limitation imposed by the spatial area when the conventional antenna operates at a low frequency, and satisfy the requirements of miniaturization, a low operating frequency and broadband multi-mode services for the mobile phone antenna. Meanwhile, a solution of a lower cost is provided for design of the antenna of wireless communication apparatuses.

Claims (22)

1. An antenna, comprising a medium substrate and grounding units attached on the medium substrate, wherein the antenna further comprises a metal structure attached on the medium substrate, the metal structure comprises an electromagnetic response unit, a metal open ring enclosing the electromagnetic response unit and a feeding point connected to an extended end of the metal open ring, and the electromagnetic response unit comprises an electric-field coupling structure;

wherein the electromagnetic response unit is axially symmetrical with respect to a line passing through the extended end of the metal open ring.

2. The antenna of claim 1 , wherein the electromagnetic response unit further comprises at least one metal substructure, which is disposed in the electric-field coupling structure and integrally coupled or connected with the electric-field coupling structure.

3. The antenna of claim 2 , wherein the electromagnetic response unit comprises four said metal substructures.

4. The antenna of claim 2 , wherein each of the metal substructures is either of a pair of complementary split ring resonator metal substructures.

5. The antenna of claim 4 , wherein the split ring resonator metal substructure is formed into any of a split curved metal substructure, a split triangular metal substructure and a split polygonal metal substructure through geometry derivation.

6. The antenna of claim 5 , wherein the split ring resonator metal substructure is a complementary derivative structure.

7. The antenna of claim 2 , wherein each of the metal substructures is either of a pair of complementary spiral line metal substructures.

8. The antenna of claim 2 , wherein each of the metal substructures is either of a pair of complementary meander line metal substructures.

9. The antenna of claim 2 , wherein each of the metal substructures is either of a pair of complementary split spiral ring metal substructures.

10. The antenna of claim 1 , wherein the medium substrate is provided with the grounding units on two opposite surfaces thereof respectively, with at least one metallization via being formed in each of the grounding units.

11. The antenna of claim 10 , wherein the two opposite surfaces of the medium substrate are each attached with the metal structure.

12. The antenna of claim 11 , wherein the metal structures attached on the two opposite surfaces of the medium substrate are of the same form.

13. The antenna of claim 11 , wherein the metal structures attached on the two opposite surfaces of the medium substrate are of different forms.

14. The antenna of claim 10 , wherein the medium substrate is made of any of a ceramic material, a polymer material, a ferroelectric material, a ferrite material and a ferromagnetic material.

15. The antenna of claim 1 , wherein the electric-field coupling structure is a metal-line structure consisted of a plurality of metal lines which are connected with each other.

16. A wireless communication apparatus, comprising a printed circuit board (PCB) and an antenna connected to the PCB, wherein the antenna comprises a medium substrate, grounding units attached on the medium substrate and a metal structure attached on the medium substrate, the metal structure comprises an electromagnetic response unit, a metal open ring enclosing the electromagnetic response unit and a feeding point connected to an extended end of the metal open ring, and the electromagnetic response unit comprises an electric-field coupling structure;

wherein the electromagnetic response unit is axially symmetrical with respect to a line passing through the extended end of the metal open ring.

17. The wireless communication apparatus of claim 16 , wherein the electromagnetic response unit further comprises at least one metal substructure, which is disposed in the electric-field coupling structure and integrally coupled or connected with the electric-field coupling structure.

18. The wireless communication apparatus of claim 17 , wherein the electromagnetic response unit comprises four said metal substructures.

19. The wireless communication apparatus of claim 16 , wherein each of the metal substructures is either of a pair of complementary split ring resonator metal substructures, either of a pair of complementary spiral line metal substructures, either of a pair of complementary meander line metal substructures, or either of a pair of complementary split spiral ring metal substructures.

20. The wireless communication apparatus of claim 19 , wherein the split ring resonator metal substructure is formed into any of a split curved metal substructure, a split triangular metal substructure and a split polygonal metal substructure through geometry derivation.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2021
From: KUANG-CHI INTELLIGENT PHOTONIC TECHNOLOGY LTD.
To: KUANG-CHI INSTITUTE OF ADVANCED TECHNOLOGY
Reel/Frame 055156/0961 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2015
From: KUANG-CHI INNOVATIVE TECHNOLOGY LTD.; KUANG-CHI INSTITUTE OF ADVANCED TECHNOLOGY
To: KUANG-CHI INTELLIGENT PHOTONIC TECHNOLOGY LTD.
Reel/Frame 035967/0781 →
EXCHANGE THE ORDER OF THE ASSIGNEES Recorded Jul 5, 2013
From: KUANG-CHI INSTITUTE OF ADVANCED TECHNOLOGY; KUANG-CHI INNOVATIVE TECHNOLOGY LTD.
To: KUANG-CHI INNOVATIVE TECHNOLOGY LTD.; KUANG-CHI INSTITUTE OF ADVANCED TECHNOLOGY
Reel/Frame 030748/0044 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2012
From: LIU, RUOPENG; XU, GUANXIONG; FANG, NENGHUI
To: KUANG-CHI INSTITUTE OF ADVANCED TECHNOLOGY; KUANG-CHI INNOVATIVE TECHNOLOGY LTD.
Reel/Frame 028525/0635 →
Priority Claims (2)
CN 2011 1 0178651 · Jun 29, 2011 · national
CN 2011 1 0178654 · Jun 29, 2011 · national
Continuity (1)
Related Publication 20130002490A1 · Jan 3, 2013