IP Library Granted Patent US 12,700,671
Granted Patent B2
US 12,700,671 · App. 18/817,088 · Granted Aug 4, 2026

Antenna assembly, dual-frequency wideband antenna, and electronic device

Inventor: Zhengdong Yong (Dongguan, CN)
Assignee: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP., LTD.
H01Q5/25H01Q1/48H01Q5/50H01Q9/0414H01Q9/26H01Q9/42
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 12,700,671
App. No.
18/817,088
Filed
Aug 27, 2024
Granted
Aug 4, 2026
Kind
B2
Examiner
LEE, SEUNG H
Art Unit
2876
USPC
343/724
Abstract

An antenna assembly, a dual-frequency wideband antenna, and an electronic device are provided. The antenna assembly includes an antenna radiator, a grounding point, and a feeding point. The grounding point is arranged on a middle portion of the antenna radiator. The feeding point is arranged on the antenna radiator and spaced from the grounding point. The feeding point is fed by a feeding source, such that the antenna radiator supports a first frequency band and a second frequency band. The first frequency band is different from the second frequency band.

Claims (46)

1 . An antenna assembly, comprising:

an antenna radiator;

a grounding point, arranged on a middle portion of the antenna radiator; and

a feeding point, arranged on the antenna radiator and spaced from the grounding point;

wherein the feeding point is fed by a feeding source, such that the antenna radiator supports a first frequency band and a second frequency band, wherein the first frequency band is different from the second frequency band;

wherein the antenna assembly further comprises an impedance matching circuit electrically connected between the feeding point and the feeding source, and the impedance matching circuit comprises an inductor L 1 , a capacitor C 1 , an inductor L 2 , and an inductor L 3 ;

the inductor L 1 and the capacitor C 1 are connected in series between the feeding point and the feeding source;

one end of the inductor L 2 is electrically connected to a connection point between the inductor L 1 and the capacitor C 1 , and the other end of the inductor L 2 is grounded;

one end of the inductor L 3 is electrically connected between the capacitor C 1 and the feeding source, and the other end of the inductor L 3 is grounded.

2 . The antenna assembly as claimed in claim 1 , wherein a monopole antenna mode and a dipole antenna mode are excited on the antenna radiator under excitation of the feeding source;

the monopole antenna mode is configured to support the first frequency band, and the dipole antenna mode is configured to support the second frequency band.

3 . The antenna assembly as claimed in claim 1 , further comprising:

an antenna bracket; wherein the antenna radiator is arranged on the antenna bracket.

4 . The antenna assembly as claimed in claim 3 , wherein the antenna radiator is arranged on the antenna bracket through laser-direct-structuring (LDS) or laser reconstructed print (LRP) technology.

5 . The antenna assembly as claimed in claim 3 , wherein the antenna radiator is a metal radiation patch and the metal radiation patch is in a shape of a line, a “U”, a zigzag, or an arc.

6 . The antenna assembly as claimed in claim 5 , wherein in response the metal radiation patch of the antenna radiator being in the shape of the line and the shape of the line being a rectangle, the middle portion is a center point of a long side of the rectangle.

7 . The antenna assembly as claimed in claim 5 , wherein in response the metal radiation patch of the antenna radiator being in the shape of the “U”, the shape of the “U” comprises a first portion, a second portion, and a third portion, the first portion and the third portion are connected to the second portion, the middle portion is a center point of a long side of the second portion, and the feeding point is located at the long side of the second portion and spaced from the grounding point.

8 . The antenna assembly as claimed in claim 7 , wherein the third portion has a length greater than or equal to that of the first portion.

9 . The antenna assembly as claimed in claim 8 , wherein in response to the third portion having a length greater than that of the first portion, the third portion defines the slot.

10 . The antenna assembly as claimed in claim 1 , wherein the antenna radiator is arranged on a printed circuit board (PCB) of an electronic device where the antenna assembly is located, and the antenna radiator is a metal radiation patch.

11 . The antenna assembly as claimed in claim 1 , wherein the feeding point is electrically connected to the feeding source through an elastic sheet, and the grounding point is grounded through another elastic sheet.

12 . A dual-frequency wideband antenna, comprising:

an antenna assembly, comprising:

an antenna radiator;

a grounding point, arranged on a middle portion of the antenna radiator; and

a feeding point, arranged on the antenna radiator and spaced from the grounding point;

wherein the feeding point is fed by a feeding source, such that the antenna radiator supports a first frequency band and a second frequency band, wherein the first frequency band is different from the second frequency band;

wherein the antenna assembly further comprises an impedance matching circuit electrically connected between the feeding point and the feeding source, and the impedance matching circuit comprises an inductor L 1 , a capacitor C 1 , an inductor L 2 , and an inductor L 3 ;

the inductor L 1 and the capacitor C 1 are connected in series between the feeding point and the feeding source;

one end of the inductor L 2 is electrically connected to a connection point between the inductor L 1 and the capacitor C 1 , and the other end of the inductor L 2 is grounded;

one end of the inductor L 3 is electrically connected between the capacitor C 1 and the feeding source, and the other end of the inductor L 3 is grounded.

13 . The dual-frequency wideband antenna as claimed in claim 12 , wherein a monopole antenna mode and a dipole antenna mode are excited on the antenna radiator under excitation of the feeding source;

the monopole antenna mode is configured to support the first frequency band, and the dipole antenna mode is configured to support the second frequency band.

14 . The dual-frequency wideband antenna as claimed in claim 13 , wherein a length of the antenna radiator is 8 mm, a width of the antenna radiator is 2 mm, a distance between the feeding point and the grounding point is 2 mm.

15 . An electronic device, comprising a dual-frequency wideband antenna; wherein the dual-frequency wideband antenna comprises:

an antenna assembly, comprising:

an antenna radiator;

a grounding point, arranged on a middle portion of the antenna radiator; and

a feeding point, arranged on the antenna radiator and spaced from the grounding point;

wherein the feeding point is fed by a feeding source, such that the antenna radiator supports a first frequency band and a second frequency band, wherein the first frequency band is different from the second frequency band;

wherein the antenna assembly further comprises an impedance matching circuit electrically connected between the feeding point and the feeding source, and the impedance matching circuit comprises an inductor L 1 , a capacitor C 1 , an inductor L 2 , and an inductor L 3 ;

the inductor L 1 and the capacitor C 1 are connected in series between the feeding point and the feeding source;

one end of the inductor L 2 is electrically connected to a connection point between the inductor L 1 and the capacitor C 1 , and the other end of the inductor L 2 is grounded;

one end of the inductor L 3 is electrically connected between the capacitor C 1 and the feeding source, and the other end of the inductor L 3 is grounded.

16 . The electronic device as claimed in claim 15 , wherein a monopole antenna mode and a dipole antenna mode are excited on the antenna radiator under excitation of the feeding source;

the monopole antenna mode is configured to support the first frequency band, and the dipole antenna mode is configured to support the second frequency band.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2024
From: YONG, ZHENGDONG
To: GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP., LTD.
Reel/Frame 068418/0128 →
Priority Claims (1)
CN 202210234322.7 · Mar 10, 2022 · national
Continuity (2)
Continuation PCTCN2022140156 · Dec 19, 2022
Related Publication 20240429603A1 · Dec 26, 2024
References Cited (20)
US 10084241B1 · Jenwatanavet et al. · 2018 [cited by applicant]
US 11626662B2 · Xue · 2023 [cited by examiner]
US 11870413B2 · Li · 2024 [cited by examiner]
US 20060281423A1 · Caimi et al. · 2006 [cited by applicant]
US 20110084883A1 · Wong et al. · 2011 [cited by applicant]
US 20200380327A1 · Ueki · 2020 [cited by applicant]
US 20200411986A1 · Cooper et al. · 2020 [cited by applicant]
US 20230335922A1 · Wang · 2023 [cited by examiner]
CN 101102008A · 2008 [cited by applicant]
CN 101496222A · 2009 [cited by applicant]
CN 203367469U · 2013 [cited by applicant]
CN 105337040A · 2016 [cited by applicant]
CN 112151962A · 2020 [cited by applicant]
CN 113948857A · 2022 [cited by applicant]
CN 114122685A · 2022 [cited by applicant]
WO 2023169040A1 · 2023 [cited by applicant]
International Search Report of International Patent Application No. PCT/CN2022/140156, mailed Mar. 2, 2023, with English translation from WIPO. [cited by applicant]
Written Opinion of the International Searching Authority in International Patent Application No. PCT/CN2022/140156, mailed Mar. 2, 2023, with partial English translation from applicant's foreign counsel and machine tran… [cited by applicant]
Extended European Search Report from EP patent application No. 22930660.0, mailed May 9, 2025. [cited by applicant]
Chinese First Office Action, corresponding Chinese patent Application No. 202210234322.7, mailed Apr. 22, 2026, with search report (24 pages). [cited by applicant]