Antenna vibrator and antenna
The embodiment of the disclosure discloses an antenna vibrator and an antenna, wherein the antenna vibrator comprises a radiation board. The radiation board is polygonal, and some areas of the radiation board are bent down to provide multiple supporting portions and multiple leaks. The corners of the radiation board are bent down provided with multiple bending portions, and each bending portion extends to both sides to form two extending portions. Therefore, by providing bending portions and extending portions, it may effectively reduce the size of the antenna vibrator, thereby optimizing the isolation of the antenna vibrator and increasing the working bandwidth of the antenna vibrator. Moreover, after the antenna vibrator is arrayed, the cross-polarization ratio may meet high-performance specifications without adding boundary conditions.
1 . An antenna vibrator, comprises:
a radiation board, wherein the radiation board is polygonal, a part of the radiation board bends downwards to form a plurality of supporting portions and a plurality of leaks; a plurality of corners of the radiation board bend downwards to form a plurality of bending portions, and each of the bending portions extends to both sides to form two extending portions;
wherein each extending portion is hollowed out at a distance from a corresponding bending portion to form a gap with the radiation board;
the extending portion is recessed from one end away from the corresponding bending portion, making the extending portion form an L-shape, and a notch created by a recess of the extending portion is formed as the gap.
2 . The antenna vibrator according to claim 1 , wherein the extending portion extends along the edge of the radiation board, the length of the extending portion is equal to or greater than 0.05 center frequency wavelengths and is equal to or less than 0.09 center frequency wavelengths, and the height of the extending portion is equal to or less than 0.06 center frequency wavelengths.
3 . The antenna vibrator according to claim 2 , wherein the length of the gap is greater than or equal to 0.03 center frequency wavelengths and is less than or equal to 0.07 center frequency wavelengths.
4 . The antenna vibrator according to claim 1 , wherein the radiation board is square, and the side length of the radiation board is greater than or equal to 0.3 center frequency wavelengths and is less than or equal to 0.4 center frequency wavelengths; and
the four leaks are evenly distributed on the diagonal of the antenna vibrator.
5 . The antenna vibrator according to claim 1 , wherein the supporting portion is bent downwards along the inner edge of the leak.
6 . The antenna vibrator according to claim 1 , wherein the lower end of the supporting portion is bent to form a connecting portion.
7 . The antenna vibrator according to claim 6 , wherein the connecting portion is provided with a chamfer.
8 . The antenna vibrator according to claim 1 , wherein the height of the supporting portion is greater than or equal to 0.06 center frequency wavelengths and is less than or equal to 0.12 center frequency wavelengths.
9 . The antenna vibrator according to claim 1 , wherein the leak is rectangular, the length of the leak is greater than or equal to 0.08 center frequency wavelengths and is less than or equal to 0.14 center frequency wavelengths, and the width of the leak is greater than or equal to 0.005 center frequency wavelengths and is less than or equal to 0.045 center frequency wavelengths.
10 . An antenna, comprises:
an antenna vibrator of claim 1 ; and
a feeding piece, wherein the feeding piece is electrically connected to the supporting portion of the antenna vibrator.
11 . The antenna according to claim 10 , wherein the extending portion extends along the edge of the radiation board, the length of the extending portion is equal to or greater than 0.05 center frequency wavelengths and is equal to or less than 0.09 center frequency wavelengths, and the height of the extending portion is equal to or less than 0.06 center frequency wavelengths.
12 . The antenna according to claim 11 , wherein the length of the gap is greater than or equal to 0.03 center frequency wavelengths and is less than or equal to 0.07 center frequency wavelengths.
13 . The antenna according to claim 10 , wherein the radiation board is square, and the side length of the radiation board is greater than or equal to 0.3 center frequency wavelengths and is less than or equal to 0.4 center frequency wavelengths; and
the four leaks are evenly distributed on the diagonal of the antenna vibrator.
14 . The antenna according to claim 10 , wherein the supporting portion is bent downwards along the inner edge of the leak.
15 . The antenna according to claim 10 , wherein the lower end of the supporting portion is bent to form a connecting portion.
16 . The antenna according to claim 15 , wherein the connecting portion is provided with a chamfer.
17 . The antenna according to claim 10 , wherein the height of the supporting portion is greater than or equal to 0.06 center frequency wavelengths and is less than or equal to 0.12 center frequency wavelengths.
18 . The antenna according to claim 10 , wherein the leak is rectangular, the length of the leak is greater than or equal to 0.08 center frequency wavelengths and is less than or equal to 0.14 center frequency wavelengths, and the width of the leak is greater than or equal to 0.005 center frequency wavelengths and is less than or equal to 0.045 center frequency wavelengths.