1. Field of the Invention
The instant disclosure relates to an antenna module, and more particularly, to an antenna module capable of respectively maintaining the VSWR value and the antenna efficiency within a first and a second predetermined ranges when the antenna usage volume been reduced within a predetermined reduction range.
2. Description of Related Art
With the development of wireless communication technologies, wireless transmission technologies are widely used in mobile information media or personal data management tools. For example, electronic products, such as notebook computers and so on, usually need to transmit/receive data to/from other data devices. Based on wireless transmission technologies, many structures can be simplifies and many connecting wires can be avoided. To achieve the above-mentioned wireless transmission, conventional electronic products must have antennae, and most of the electronic products have inbuilt antenna devices for wireless communication.
One aspect of the instant disclosure relates to an antenna module capable of respectively maintaining the VSWR value and the antenna efficiency within a first and a second predetermined ranges when the antenna usage volume been reduced within a predetermined reduction range.
One of the embodiments of the instant disclosure provides an antenna module capable, comprising: a substrate unit and an antenna unit. The substrate unit includes at least one carrier substrate, wherein the at least one carrier substrate has a dielectric constant substantially between 7 and 13 according to the VSWR value and the antenna efficiency within the first and the second predetermined ranges, the at least one carrier substrate includes a dielectric body and a plurality of nano-scale microparticle structures distributed inside the dielectric body, and each nano-scale microparticle structure includes at least one nano-scale carbon particle and a nano-scale insulating encapsulation layer for totally encapsulating the at least one nano-scale carbon particle. The antenna unit includes at least one antenna track disposed on the at least one carrier substrate, wherein the at least one antenna track has an antenna usage volume that is adjustable within a predetermined volume range according to the VSWR value and the antenna efficiency maintained within the first and the second predetermined ranges, and the antenna track has at least one feeding portion and at least one grounding portion.
Another one of the embodiments of the instant disclosure provides an antenna module capable, comprising: a substrate unit and an antenna unit. The substrate unit includes at least one carrier substrate, wherein the at least one carrier substrate has a dielectric constant substantially between 7 and 13 according to the VSWR value and the antenna efficiency within the first and the second predetermined ranges, the at least one carrier substrate includes a dielectric body, a plurality of first nano-scale microparticle structures distributed inside the dielectric body, and a plurality of second nano-scale microparticle structures distributed inside the dielectric body, wherein each first nano-scale microparticle structure includes at least one first nano-scale carbon particle and a first nano-scale insulating encapsulation layer for totally encapsulating the at least one first nano-scale carbon particle, and each second nano-scale microparticle structure includes at least one second nano-scale carbon particle and a second nano-scale insulating encapsulation layer for totally encapsulating the at least one second nano-scale carbon particle. The antenna unit includes at least one antenna track disposed on the at least one carrier substrate, wherein the at least one antenna track has an antenna usage volume that is adjustable within a predetermined volume range according to the VSWR value and the antenna efficiency maintained within the first and the second predetermined ranges, and the antenna track has at least one feeding portion and at least one grounding portion.
Therefore, the nano-scale microparticle structures are distributed inside the dielectric body or the first and the second nano-scale microparticle structures distributed inside the dielectric body, thus when the antenna usage volume of the instant disclosure is reduced within the predetermined reduction range, the antenna module can be used to respectively maintain the VSWR value and the antenna efficiency within the first and the second predetermined ranges.
To further understand the techniques, means and effects of the instant disclosure applied for achieving the prescribed objectives, the following detailed descriptions and appended drawings are hereby referred, such that, through which, the purposes, features and aspects of the instant disclosure can be thoroughly and concretely appreciated. However, the appended drawings are provided solely for reference and illustration, without any intention to limit the instant disclosure.
Referring to
Referring to
Referring to
For example, before the antenna usage volume of the antenna track 20 is reduced (as shown in
Hence, although the original antenna usage volume of the antenna track 20 is reduced within a predetermined reduced percentage (such as 1% to 25%), the antenna module M is capable of respectively maintaining the VSWR value and the antenna efficiency within a first predetermined good range and a second predetermined good range due to the design of the carrier substrate 10 having the dielectric constant substantially between 7 and 13.
Referring to
However, the nano-scale microparticle structure 101 used in the second embodiment is merely an example and is not meant to limit the instant disclosure. For example, with regard to the arrangement of the nano-scale microparticle structures 101, some of the nano-scale microparticle structures 101 can be separated from each other and averagely distributed inside the dielectric body 100, and the other nano-scale microparticle structures 101 can be abutted against each other and averagely distributed inside the dielectric body 100.
Referring to
For example, the first nano-scale microparticle structures 101A can be separated from each other and averagely distributed inside the dielectric body 100, and the second nano-scale microparticle structures 101B can be separated from each other and averagely distributed inside the dielectric body 100. Of course, the first nano-scale microparticle structures 101A and the second nano-scale microparticle structures 101B also can be unaveragely or unequally distributed inside the dielectric body 100. However, the first nano-scale microparticle structure 101A or the second nano-scale microparticle structure 101B used in the third embodiment is merely an example and is not meant to limit the instant disclosure.
Referring to
However, the first nano-scale microparticle structure 101A or the second nano-scale microparticle structure 101B used in the fourth embodiment is merely an example and is not meant to limit the instant disclosure. For example, with regard to the arrangement of the first nano-scale microparticle structures 101A, some of the first nano-scale microparticle structures 101A are separated from each other and averagely distributed inside the dielectric body 100, and the other first nano-scale microparticle structures 101A are abutted against each other and averagely distributed inside the dielectric body 100. With regard to the arrangement of the second nano-scale microparticle structures 101B, some of the second nano-scale microparticle structures 101B are separated from each other and averagely distributed inside the dielectric body 100, and the other second nano-scale microparticle structures 101B are abutted against each other and averagely distributed inside the dielectric body 100.
In conclusion, the nano-scale microparticle structures are distributed inside the dielectric body or the first and the second nano-scale microparticle structures distributed inside the dielectric body, thus when the antenna usage volume of the instant disclosure is reduced within the predetermined reduction range, the antenna module can be used to respectively maintain the VSWR value and the antenna efficiency within the first and the second predetermined ranges.
The above-mentioned descriptions merely represent the preferred embodiments of the instant disclosure, without any intention or ability to limit the scope of the instant disclosure which is fully described only within the following claims Various equivalent changes, alterations or modifications based on the claims of instant disclosure are all, consequently, viewed as being embraced by the scope of the instant disclosure.