SQUARE SHAPED MULTI-SLOTTED 2.45GHZ WEARABLE ANTENNA
20170365927 · 2017-12-21
Inventors
Cpc classification
H01Q9/0407
ELECTRICITY
H01Q1/245
ELECTRICITY
International classification
Abstract
A microstrip antenna including: a substrate; a radiating slotted patch; a square plate; and a coaxial feed, wherein the coaxial feed further comprises an inner central conducting pin; wherein the substrate is sandwiched between the radiating slotted patch and the square plate, and wherein the coaxial feed is connected to the square plate, and the inner central conducting pin of coaxial feed passes through the substrate and is connected to the radiating slotted patch.
Claims
1. A microstrip antenna, comprising: a substrate; a radiating slotted patch; a square plate; and a coaxial feed, wherein the coaxial feed comprises an inner central conducting pin; wherein the substrate is sandwiched between the radiating slotted patch and the square plate, and wherein the coaxial feed is connected to the square plate, and the inner central conducting pin of coaxial feed passes through the substrate and is connected to the radiating slotted patch.
2. The antenna of claim 1, wherein the size of the substrate is 73.80mm×73.80 mm.sup.2.
3. The antenna of claim 1, wherein the substrate comprises pure polyester.
4. The antenna of claim 1, wherein the radiating slotted patch comprises a upper left square slot, a upper right square slot, a lower left square slot, a lower right square slot placed on each corner of the radiating slotted patch, a first rectangular slot, a second rectangular slot and a third rectangular slot, and four radiating edges.
5. The antenna of claim 4, wherein the size of the upper left square slot is 8.20 mm×8.20 mm.
6. The antenna of claim 4, wherein the size of the upper right square slot is 7.38 mm×7.3 8 mm.
7. The antenna of claim 4, wherein the size of the lower left square slot is 7.38 mm×7.38 mm.
8. The antenna of claim 4, wherein the size of the lower right square slot is 8.20 mm×8.20 mm.
9. The antenna of claim 4, wherein the first rectangular slot is located between the upper left square slot and lower left square slot.
10. The antenna of claim 4, wherein the second rectangular slot is located between the upper left square slot and upper right square slot.
11. The antenna of claim 4, wherein the third rectangular slot is located between the upper right square slot and lower right square slot.
12. The antenna of claim 4, wherein the size of each rectangular slot is 6.91 mm×1. 53 mm.
13. The antenna of claim 4, wherein the four radiating edges are L-shaped and located at four vertices of the radiating slotted patch.
14. The antenna of claim 4, wherein each radiating edge has an area of 15.87 mm.sup.2.
15. The antenna of claim 1, wherein the radiating slotted patch comprises copper.
16. The antenna of claim 1, wherein the square plate comprises copper.
17. The antenna of claim 1, wherein the size of the square plate is 73.80 mm×73.80 mm.
18. The antenna of claim 1, which operates at a frequency of 2.4 GHz.
19. The antenna of claim 1, wherein the antenna is configured to be worn.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0023]
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[0025]
DETAILED DESCRIPTION OF THE ILLUSTRATED EMBODIMENTS
[0026]
[0027] A multi slotted 2.45 GHz wearable antenna according to an exemplary embodiment, includes a light weight substrate 10, a radiating patch 8 showing sharp edges, a square shaped copper ground floor 11 having same size as microstrip substrate. The patch contains many radiating slots, which are added for better radiation, to meet ISM band requirements, and to reduce SAR. All slots are on the patch, the Upper Right square slot 2, the upper left square slot 1, and between the two upper square slots a rectangular 6 small slot. There are two lower square slots lower right slot 4 and Lower Left slot 3. A rectangular slot 7 exists between the upper right square slot 2 and lower right square slot 4. Another rectangular 5 slot on the patch between the upper left slot 1 and a lower left slot 3. All the slots are on the same patch. Four L-shape radiating edges (8a, 8b, 8c, and 8d) at the upper left, upper right, lower left, and lower right vertices of the patch respectively as shown in
[0028] The microstrip substrate is made of polyester. According to an exemplary embodiment, the microstrip substrate 10 is a 73.80×73.80 mm.sup.2 square, the thickness of the microstrip substrate is 1 mm. The patch 8 is on the one front side of substrate. The patch 8 is on the one front side of substrate. The substrate has two sides, on one size has a ground plate 11 and on the front side has a patch of area 1361.61 mm.sup.2 8. The dimensions of the square patch 8 are 36.90×36.90 mm.sup.2. The patch 8 contains slots, the upper right square slot 2 is 7.38×7.38 mm.sup.2, the upper left square slot 1 of 8.20×8.20 mm.sup.2, the lower right slot 4 on the patch have the same size as the upper left 1 square slot i.e. 7.38×7.38 mm.sup.2. The lower left square slot 3 is same in length and width as the upper right 2 square slot i.e. 8.20×8.20 mm.sup.2. The rectangular slot 6 of length and width 6.91×1.53 mm.sup.2 exists between the upper right 2 square slot and upper left square slot 1, a same size rectangular slot 7 of length and width 6.91×1.53 mm.sup.2 is present between the upper right slot 2 and lower right slot 4, another rectangular slot 5 between upper left slot 1 and lower left slot 3. On the upper left vertex there is L-shape radiating edge 8a of area 15.87 mm.sup.2. Another L-shape radiating edge of area 15.87 mm.sup.2 8b is present in the upper right vertex. On the lower left vertex of the patch there is another L-shape radiating edge 8c of area 15.87 mm.sup.2. L-shape radiating edge 8d of area 15.87 mm.sup.2 present at the lower right vertex of the radiating patch. The patch is connected with a line 9 of radius 0.5 mm to the coaxial feed. The ground plate 11 at the floor of the substrate is 73.80×73.80 mm.sup.2, the thickness of the ground copper sheet is 0.05 mm.