1. Field of Invention
The present invention relates to a case structure. More particularly, the present invention relates to a case structure of an electronic device.
2. Related Art
With the development of wireless communication technology, recently, the wireless communication technology has been widely applied in various fields, such as video program, wireless communication, and satellite positioning. In order to cater to the requirement of the electronic device, the signal transceiver circuit is increasingly reduced, and is integrated in the electronic device, so as to improve the using convenience.
However, with the requirement that the wireless communication functions (e.g. mobile communication function, global satellite positioning function, wireless network function, or digital broadcasting function etc) of the electronic device become increasingly diversified, after each signal transceiver circuit is integrated into the electronic device, it is necessary for the manufacturers of the electronic device to dispose the respective antenna in the residual space of the electronic device. The antenna is one of the important elements affecting the quality of the wireless communication, so when the volume of the electronic device increasingly develops a design trend of being short, small, light, and thin, for the manufacturers of the electronic device, it is a problem to be solved by researcher how to integrate the antenna of various signal transceiver circuits in the electronic device.
Referring to Taiwan Patent Publication No. 200610228, an antenna module in an electronic device is disclosed, which is capable of minimizing the occupied space, thereby improving the freedom of the electronic device disposition structure without changing the property, increasing the space utilization rate of the electronic device, and realizing the miniaturization and the versatility of the electronic device. The patent application also provides an electronic device having the antenna module. The antenna module includes a printed circuit board made of a flexible nonconductive material; an antenna element disposed on an assigned position of an upper surface of the printed circuit board, and a ground line formed on the printed circuit board, connected to a ground end of the antenna element, and having a junction portion formed on an end of the ground line; a feeder formed on the printed circuit board, connected to connect to a signal end of the antenna element, and having a junction potion formed on an end of the feeder; and a passive line formed on the printed circuit board, parallelly connected with the feeder, and having an assigned length. The junction portion of the ground line and the feeder is joined at an assigned position of the wireless electronic device, and a part of the antenna module having the antenna element disposed on the printed circuit board is formed outside of the apparatus.
Although in the patent application, the space utilization rate of the electronic device has been increased, a part of the antenna module is disposed outside of the electronic device, the original whole volume of the electronic device is increased, and the hidden antenna design requirement is not satisfied, so it still has a room to be improved.
In view of the above problems, the present invention provides a case structure of an electronic device, which directly integrates an antenna of a signal transceiver circuit and a case, so as to fully use the space of the electronic device, thereby improving the space utilization rate of the electronic device.
In the case structure of the electronic device according to the present invention, at least one trench pattern is formed on a specific region of a metal case used for holding the internal circuit of the electronic device. When the metal case is electrically coupled to the signal transceiver circuit of the electronic device, the metal case and the trench pattern constitute at least one antenna of the electronic device.
In the case structure of the electronic device, the combination of the case and the metal layer forms a structure and an operating principle similar to the slot antenna. In appearance, the antenna of the electronic device is adhered on the case and is partially exposed. The internal space of the electronic device is not occupied too much, in addition, because of the structural property of the partial exposed antenna, the gain of the antenna formed according to the present invention is better than the gain of the conventional built-in antenna.
Further scope of applicability of the present invention will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The present invention will become more fully understood from the detailed description given herein below for illustration only, and thus are not limitative of the present invention, and wherein:
A case structure of an electronic device according to the present invention is used for accommodating an internal circuit of the electronic device. Herein, the electronic device can be, but not limited to, personal digital assistant (PDA), mobile phone, smart phone, PDA phone, notebook computer or the like. The accompanying drawings are used for providing reference and illustration, but not for limiting the present invention.
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The dielectric layer 10 has a first surface 101 and a second surface 102, and the dielectric layer 10 can be, for example, ceramic material.
The metal case 11 is used for holding the internal circuit (not shown) and is disposed on the first surface 101 of the dielectric layer 10 to serve as an antenna ground portion of the electronic device. In each embodiment of the present invention, the antenna includes a signal radiation portion for radiating a signal output by a signal transceiver circuit of the internal circuit (not shown) in the electronic device to an exterior of the electronic device, or for receiving a wireless signal from the exterior; a signal feeding portion electrically coupled to the signal transceiver circuit, for receiving the signal output by the signal transceiver circuit and transmitting the signal to the signal radiation portion, or transmitting the wireless signal received by the signal radiation portion to the signal transceiver circuit; a signal ground portion disposed around the signal radiation portion to serve as a ground loop of the antenna. The metal case 11 can be, for example, made of a single metal or an alloy material of titanium, aluminum, silver, copper, nickel, iron, cobalt, magnesium, or platinum.
In addition, in each embodiment of the present invention, each antenna is electrically coupled to respective corresponding signal transceiver circuit, so as to perform the transferring and processing operations of the wireless signal.
The metal layer 12 is disposed on the second surface 102 of the dielectric layer 10 to serve as the antenna signal feeding portion and the antenna radiation portion of the electronic device, and the antenna signal feeding portion is a 50 ohm microstrip line. The metal layer 12 can be, for example, made of a single metal or an alloy material of titanium, aluminum, silver, copper, nickel, iron, cobalt, magnesium, or platinum.
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The non-metallic case 20 has a first surface 201 and a second surface 202, in which the non-metallic case 20 can be, for example, plastic steel, acrylonltrile-butadiene-styreneresin (ABS), plastic (e.g. polyethylene (PE), high density polyethylene (HDPE), ultra-high molecular weight polyethylene (UHMPE), polypropylene (PP), polystyrene (PS), ABS, ethylene-vinyl acetate copolymer (EVA), polyamide (PA), poly(ethylene terephthalate) (PET), and polyvinyl chloride (PVC) etc.).
The first metal layer 13 is disposed on the first surface 201 of the non-metallic case 20 to serve as the antenna ground portion of the electronic device. The first metal layer 13 can be, for example, made of a single metal, such as titanium, aluminum, silver, copper, nickel, iron, cobalt, magnesium, or platinum, or an alloy material of titanium, aluminum, silver, copper, nickel, iron, cobalt, magnesium, or platinum.
The second metal layer 14 is disposed on the second surface 202 of the non-metallic case 20 to serve as the antenna signal feeding portion and the antenna radiation portion of the electronic device, and the antenna signal feeding portion is a 50 ohm microstrip line. The second metal layer 14 can be, for example, made of the single metal or the alloy material of titanium, aluminum, silver, copper, nickel, iron, cobalt, magnesium, or platinum.
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Next, the site of the near field test of the present invention is an anechoic chamber with a wall surface made of metal for isolating the external signal interference. In the chamber, an electromagnetic wave absorbing material is adhered on the wall to reduce the reflecting energy in the chamber. During the measurement, the distribution of parameters (e.g., amplitude and phase) of the electromagnetic wave radiated by an antenna under test (AUT) in the near field space is detected by a receiving scanning probe (in the embodiment of the present invention, during the measurement, the distance between the AUT and the receiving scanning probe is 4 m), and the scanning manner can be plane, cylinder, or sphere. The radio frequency (or microwave) signals are transmitted to a vector network analyzer (VNA) though a coaxial cable in an electrical manner, so as to obtain the related data. After processes such as a probe radiation field pattern calibration and a Flourier numerical value transform are performed on the data, the desired AUT radiating (far field) field pattern is obtained.
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To sum up, in the case structure of the electronic device of the present invention, the combination of the case and the metal layer forms the structure and an operating principle similar to the slot antenna. In appearance, the antenna of the electronic device is adhered on the case and is partially exposed. The internal space of the electronic device is not occupied too much, in addition, because of the structural property of the partial exposed antenna, the gain of the antenna of the present invention is better than the gain of the conventional built-in antenna.
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.