ANTENNA AND TERMINAL
The present invention discloses an antenna and a terminal, which can extend antenna bandwidth. The antenna includes a capacitor component and at least one radiator, where one end of each radiator of the at least one radiator is connected to form a first node, the first node is connected to one end of the capacitor component to form a second node, and the second node is grounded; and the other end of the capacitor component receives a feed signal.
1 . An antenna, comprising:
a radiator;
a capacitor component, wherein a first end of the capacitor component is connected to one end of the radiator, a second end of the capacitor component receives a feed signal; and
a ground cable, wherein a length of the ground cable is less than one eighth of a waveguide wavelength.
2 . The antenna according to claim 1 , wherein one end of the ground cable is connected to the first end of the capacitor component.
3 . The antenna according to claim 1 , further comprising a matching circuit, wherein one end of the matching circuit is connected to the second end of the capacitor component, and another end of the matching circuit is connected to the feed signal.
4 . The antenna according to claim 1 , wherein the waveguide wavelength is a signal wavelength of a center frequency of antenna applied bandwidth.
5 . The antenna according to claim 1 , further comprising a tunable circuit, wherein one end of the tunable circuit is connected to the first end of the capacitor component, and another end of the tunable circuit is grounded, wherein the tunable circuit is capacitive or inductive.
6 . The antenna according to claim 5 , wherein a tuning of the tunable circuit changes an impedance property of the antenna.
7 . The antenna according to claim 1 , wherein the antenna is operable in a plurality of high-frequency resonance frequencies and a low-frequency resonance frequency.
8 . The antenna according to claim 1 , wherein the capacitor component comprises a variable capacitor.
9 . A terminal, comprising an antenna;
wherein the antenna includes a capacitor component, a ground cable, and a radiator;
wherein a first end of the capacitor component is connected to one end of the radiator;
wherein a second end of the capacitor component receives a feed signal; and
wherein a length of the ground cable is less than one eighth of a waveguide wavelength.
10 . The terminal according to claim 9 , wherein one end of the ground cable is connected to the first end of the capacitor component.
11 . The terminal according to claim 9 , wherein the antenna further includes a matching circuit; and
wherein one end of the matching circuit is connected to the second end of the capacitor component, and another end of the matching circuit is connected to the feed signal.
12 . The terminal according to claim 9 , wherein the antenna includes a matching circuit, wherein one end of the matching circuit is connected to the second end of the capacitor component, and the other end of the matching circuit is connected to the feed signal.
13 . The terminal according to claim 9 , wherein the waveguide wavelength is a signal wavelength of a center frequency of antenna applied bandwidth.
14 . The terminal according to claim 9 , wherein the antenna further comprises a tunable circuit;
wherein one end of the tunable circuit is connected to the first end of the capacitor component, and another end of the tunable circuit is grounded; and
wherein the tunable circuit is capacitive or inductive.
15 . The terminal according to claim 14 , wherein a tuning of the tunable circuit changes an impedance property of the antenna.
16 . The terminal according to claim 9 , wherein the antenna is operable in a plurality of high-frequency resonance frequencies and a low-frequency resonance frequency.
17 . The terminal according to claim 16 , wherein the radiator comprises a plurality of radiators;
wherein a first radiator of the plurality of radiators operably generates a first high-frequency resonance frequency, a second radiator of the plurality of radiators operably generates a second high-frequency resonance frequency.
18 . The terminal according to claim 17 , wherein the capacitor component and a distributed inductor of the ground cable operably generates the low-frequency resonance frequency.
19 . The terminal according to claim 9 , wherein the capacitor component comprises a variable capacitor.
20 . The terminal according to claim 9 , wherein the capacitor component comprises an interdigital capacitor.