1. Field of the Invention
This invention relates to a wide band IC tag difficult to be influenced by an object having a dielectric constant of a metal, water, etc. in a RFID tag operated by a radio wave of a UHF band.
2. Background Art
As the above tag, a RFID tag 10 of a first related-art example using a dipole antenna 11 as shown in
Further, in a RFID tag 20 of a second related-art example (see JP-A-2002-259934) having plural resonance frequencies as shown in
In other fields, many similar antenna structures exist, but their purposes are set to widen only the frequency band. Therefore, no influence of the tag rear face is reduced.
In consideration of the above problems, an object of this invention is to provide a wide band IC tag having a wide frequency band and difficult to be influenced by the object substance.
A wide band IC tag according to an aspect of the invention is a wide band IC tag formed by connecting an IC portion arranged in a tag main body and left and right antenna portions, wherein the left and right antenna portions are constructed by plural antenna elements of different element lengths.
In accordance with this invention, resonance frequencies are different in accordance with the element lengths of the antenna elements. Therefore, if the left and right antenna portions are constructed by the plural antenna elements of different element lengths, the plural resonance frequencies are provided. Accordingly, even when a movement is made to a band not functioning with respect to the resonance frequency of one antenna element by the influence of an object having a dielectric constant, the resonance frequency of another antenna element is moved to a band functioning at a predetermined frequency (UHF band). Therefore, a communication function having a wide frequency band and high reliability as the IC tag is stably obtained.
A wide band IC tag according to another aspect of the invention has a structure in which the respective antenna elements are arranged in the order of the length from the antenna elements of a short element length to the antenna elements of a long element length in addition to the construction described above. In accordance with this invention, if the antenna element of a short element length arranged in the central portion is set to a reference and the respective antenna elements of different element lengths are arranged in the order of the length, the plural resonance frequencies can be provided. Further, if the plural resonance frequencies can be provided, the antenna element of a long element length arranged in the central portion is set to a reference, and the respective antenna elements of different element lengths may be also arranged in a shortening order.
A wide band IC tag according to another aspect of the invention has a construction in which the adjacent respective antenna elements are spaced at intervals for making these antenna elements not come in contact with each other, and are arranged in addition to the construction described above. In accordance with this invention, no antenna element as a conductor is formed on the entire tag face. Therefore, for example, even when the object having the dielectric constant of a metal, water, etc. exists on the tag rear face or around the antenna, it is difficult to have an influence.
A wide band IC tag according to another aspect, of the invention has a construction in which the respective antenna elements are arranged in a comb shape or a fan shape in addition to the construction described above. This invention has an intermittent structure in which a space or a clearance exists between the respective antenna elements. Therefore, it is difficult to have the influence of the object.
A wide band IC tag according to another aspect of the invention has a construction in which one end of each of the antenna elements is connected to the IC portion, and the other ends of the respective antenna elements are connected to each other in addition to the construction described above. In accordance with this invention, it is possible to have the plural resonance frequencies corresponding to the element lengths of the respective antenna elements.
A wide band IC tag according to another aspect of the invention has a construction in which the number of antenna elements is set to an arbitrary number in addition to the construction described above. In accordance with this invention, when an arbitrary number of antennal elements of different element lengths are arranged, the plural resonance frequencies are provided. Accordingly, the width of the frequency band functioning as the IC tag can be arbitrarily set, and the frequency band is widened in comparison with that of a dipole antenna. In an embodiment, the numbers of left and right antenna elements are respectively set to eleven, but may be also set to an arbitrary number such as two to ten, or eleven or more, etc.
A wide band IC tag according to another aspect of the invention has a construction in which one portion or the entire length of the antenna element is formed in a curve structure in addition to the construction described above. In accordance with this invention, while the respective antenna elements are set to different element lengths, it is possible to have the plural resonance frequencies corresponding to the element lengths of the respective antenna elements.
In accordance with this invention, since the plural antenna elements of different element lengths exist, the plural resonance frequencies are provided so that the frequency band is widened. Further, since no antenna element as a conductor is formed on the entire tag face, it is difficult to have an influence even when the object having the dielectric constant exists on the tag rear face or around the antenna. Thus, a communication function of high reliability as the IC tag is stably obtained.
In this invention, the purpose of being widely setting the frequency band and being difficult to be influenced by the object having the dielectric constant is attained by constructing the left and right antenna portions connected to the IC portion of the wide band IC tag using the plural antenna elements of different element lengths.
One embodiment of this invention will next be described in detail on the basis of the drawings.
Terminal portions of the antenna portions 4, 4 are connected to the IC portion 3 arranged in the central portion of the above tag main body 2. The terminal portions of the antenna portions 4, 4 are connected to each other, and are arranged so as to match the impedances of the IC portion 3 and the antenna portions 4, 4.
Further, the antenna element 5 of a straight line structure of a short element length connected to left and right central portions of the IC portion 3 is set to a reference, and the respective antenna elements 5—of a curve structure of different element lengths connected to its upper and lower portions are arranged in an order lengthened toward the vertical direction.
Further, the respective antenna elements 5—of an arc shape of different curvature radii are arranged in an order increased toward the vertical direction, and the entire length of each antenna element 5—is formed in a smooth curve. In this embodiment, each antenna element 5—is set to the same element width, but may be also set to a different element width.
Further, the respective vertical adjacent antenna elements 5—are spaced at intervals for making these antenna elements not come in contact with each other and are arranged in a comb shape. These antenna elements 5—are also arranged in a radial direction so that the distance between the antenna elements 5 is gradually increased toward a direction farther from the IC portion 3, and are constructed by an inside removing structure in which a space or a clearance exists between the respective antenna elements 5. Otherwise, the respective vertical adjacent antenna elements 5—may be arranged at intervals for making no mutual interference or influence.
In accordance with this invention, resonance frequencies are different in accordance with the element lengths of the respective antenna elements 5—constituting the antenna portions 4, 4 connected to the IC portion 3. Therefore, if the left and right antenna portions 4, 4 are constructed by the respective plural antenna elements 5—of different element lengths, the plural resonance frequencies are provided corresponding to the element lengths of the respective antenna elements 5—. Therefore, even when a movement is made to a band not functioning with respect to the resonance frequency of one antenna element 5—by the influence of an object having a dielectric constant, the resonance frequency of another antenna element 5—is moved to a band functioning at a predetermined frequency (UHF band) . Therefore, the frequency band is widened.
Further, no antenna element 5 as a conductor is formed on the entire face of the tag main body 2. Therefore, even when the object having the dielectric constant exists on the rear face of the wide band IC tag 1 or around the antenna portion 4, it is difficult to have an influence. Thus, a communication function of high reliability as the wide band IC tag 1 is stably obtained. Further, for example, if an arbitrary number of antenna elements 5 such as two to ten, or eleven or more antenna elements 5, etc. are arranged, the width of the frequency band functioning as the wide band IC tag 1 can be arbitrarily set.
Further, as shown in
In accordance with this invention, since the element lengths of the respective antenna elements 5—of the straight line structure and the curve structure constituting the left and right antenna portions 4, 4 are different, the plural resonance frequencies corresponding to the element lengths of the respective antenna elements 5—are provided. Accordingly, an operation and an effect approximately equal to those of the above first embodiment mode can be obtained. Further, the respective antenna elements 5—of the straight line structure and the curve structure may be also alternately arranged. Further, as shown in
Further, as shown in
In accordance with this invention, since the element lengths of the respective antenna elements 5—constituting the left and right antenna portions 4, 4 are different, plural resonance frequencies corresponding to the element lengths of the respective antenna elements 5—are provided. Accordingly, an operation and an effect approximately equal to those of the above first embodiment mode can be obtained. Further, as shown in
This invention is not limited to only the constructions of the above embodiments, but can be applied on the basis of technical ideas shown in claims, and many embodiment modes can be obtained.
Number | Date | Country | Kind |
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2005-47265 | Feb 2005 | JP | national |