1. Field of the Invention
The instant disclosure relates to a keyboard device, and more particularly, to a keyboard device with antenna function.
2. Description of Related Art
In a wireless communication system, such as a notebook computer or a mobile phone, an antenna is a component for transmitting and receiving electromagnetic waves. The way that an antenna is designed and the location that it is mounted in the system influences its radiation pattern, and the quality of signal transmission. Furthermore, how the antenna is configured in the system will have a great effect on the cost of manufacturing the whole system.
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However, the above-mentioned structure of the antenna 12a equipped with the RF coaxial cable 13a for transmitting RF signals at least includes some disadvantages, for example, as follows:
1. Insertion loss: for a 100-centimeter-long high quality RF coaxial cable in the market, the insertion loss is 2.9 dB as the RF signal frequency is at 2.4 GHz while the insertion loss is 4.7 dB as the RF signal frequency is at 5 GHz. Generally, the length of a RF coaxial cable used in the notebook computer is about 20 cm to 90 cm. Therefore, the insertion loss is about 0.58 dB to 2.61 dB as the RF coaxial cable transmits a 2.4 GHz signal while the insertion loss goes up to 0.94 dB to 4.23 dB as the RF coaxial cable transmits a 5 GHz signal. Owing to the insertion loss, the antenna radiation pattern has to be concentrated to provide enough antenna gain for transmitting signals to a given distance. As a result, the antenna radiation angles will be reduced and the dead space (or the weak signal space) in communication will be increased, which directly reduces communication quality.
2. Cost increase: according to the general estimation conducted by antenna manufacturing industry, the above-mentioned RF coaxial cable occupies about 50% of the antenna manufacturing cost. Moreover, as the wireless system is fabricated, additional devices, such as hooks for fixing the RF coaxial cable and fixing pieces for fixing the shielding aluminum foil, are required to fix the RF coaxial cable, which further increases the cost. The labor hours for configuring and positioning the RF coaxial cable will largely increase the fabrication cost.
One particular aspect of the instant disclosure is to provide a keyboard device having key function and antenna function at the same time.
To achieve the above-mentioned advantages, one embodiment of the instant disclosure provides a keyboard device with antenna function, including: a keyboard unit, an antenna unit, and a conductive unit. The keyboard unit includes a substrate structure and a plurality of movable key structures disposed on the substrate structure. The antenna unit includes at least one flexible substrate positioned on a bottom surface of one of the movable key structures and at least one antenna track disposed on the flexible substrate. The conductive unit includes at least two conductive structures connected electrically to the antenna track.
To achieve the above-mentioned advantages, one embodiment of the instant disclosure provides a keyboard device with antenna function, including: a keyboard unit, an antenna unit, and a conductive unit. The keyboard unit includes a substrate structure, a plurality of movable key structures disposed on the substrate structure, and at least one fixing key structure disposed on the substrate structure. The antenna unit includes at least one flexible substrate positioned on a bottom surface of the fixing key structure and at least one antenna track disposed on the flexible substrate. The conductive unit includes at least two conductive structures connected electrically to the antenna track.
To achieve the above-mentioned advantages, one embodiment of the instant disclosure provides a keyboard device with antenna function, including: a keyboard unit, an antenna unit, and a conductive unit. The keyboard unit includes a substrate structure, a plurality of movable key structures disposed on the substrate structure, and at least one fixing key structure disposed on the substrate structure. The antenna unit includes at least one flexible substrate positioned on a bottom surface of one of the movable key structures or a bottom surface of the fixing key structure and at least one antenna track disposed on the flexible substrate. The conductive unit includes at least two conductive structures connected electrically to the antenna track.
Therefore, antenna is integrated into key, thus the instant disclosure not only can own both key function and antenna function, but also can be applied to miniaturization electronic product such as notebook.
To further understand the techniques, means and effects the instant disclosure takes 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 that they be used for limiting the instant disclosure.
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The keyboard unit 1 includes a substrate structure 10 and a plurality of movable key structures 11 operably disposed on the substrate structure 10. One of the movable key structures 11 is an antenna key structure 11′, and the antenna key structure 11′ can be any function key such as power on/off key or least used function key. For example, the substrate structure 10 has a plurality of conductive tracks 100 formed on the top surface thereof, and each movable key structure 11 includes a movable key body 110 and an elastic conductive structure 111 disposed on a bottom side of the movable key body 110 to selectively contact electrically every two conductive tracks 100 or separate from every two conductive tracks 100 (as shown in
However, the definition of each key structure 11 is just an example and not to limit the instant disclosure. Any type of key structure used to connect electrically every two conductive tracks 100 is protected in the instant disclosure.
The antenna unit 2 includes at least one antenna track 20 disposed on the antenna key structure 11′, and the antenna track 20 is divided into a first antenna portion 20a disposed on an outer surface of the antenna key structure 11′ and a second antenna portion 20b connected to the first antenna portion 20a and disposed on an inner surface of the antenna key structure 11′. For example, the first antenna portion 20a is disposed on the outer surface (or the top surface and the lateral surface) of the movable key body 110, and the second antenna portion 20b is disposed on the inner surface (or bottom surface).
The shielding unit 3 includes at least one shielding layer 30 (such as atomized layer or any opaque material layer) formed on the first antenna portion 20a for shielding the first antenna portion 20a, and the first antenna portion 20a can be covered by the shielding layer 30 by printing, spraying or any other forming methods. Because the shielding layer 30 is formed on the outer surface of the antenna key structure 11′ to cover the first antenna portion 20a, characters and symbols can be printed on the shielding layer 30 for user to recognize the function of the antenna key structure 11′.
The conductive unit 4 includes at least two conductive structures 40 electrically between the second antenna portion 20b and the substrate structure 10, for example, each conductive structure 40 may be an elastic element such as conductive spring. In addition, the antenna track 20 has a feeding pin 200 and a grounding pin 201 on end thereof, and the two conductive structures 40 are respectively connected electrically to the feeding pin 200 and the grounding pin 201 (as shown in
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The keyboard unit 1 includes a substrate structure 10, a plurality of movable key structures 11 disposed on the substrate structure 10, and at least one fixing key structure 12 disposed on the substrate structure 10. In addition, the substrate structure 10 has a plurality of conductive tracks 100 formed on the top surface thereof. Each movable key structure 11 includes a movable key body 110 and an elastic conductive structure 111 disposed on a bottom side of the movable key body 110 to selectively contact electrically every two conductive tracks 100 or separate from every two conductive tracks 100. The fixing key structure 12 includes a fixing key body 120 fixed on the substrate structure 10.
The antenna unit 2 includes at least one flexible substrate 21 positioned on a bottom surface of one of the movable key structures 11 or on a bottom surface of the fixing key structure 12 and at least one antenna track 20 disposed on the flexible substrate 21. In addition, the flexible substrate 21 is positioned on a bottom surface of the movable key body 110 or on a bottom surface of the fixing key body 120.
For example, in the fourth embodiment, the two flexible substrates 21 are respectively positioned on the bottom surface of one of the movable key structures 11 and the bottom surface of the fixing key structure 12, and the two antenna tracks 20 are respectively disposed on the two flexible substrates 21. Hence, the flexible substrate 21 can be positioned on the bottom surface of one of the movable key structures 11 and/or on the bottom surface of the fixing key structure 12 according to different requirements.
The conductive unit 4 includes at least two conductive structures 40 (such as conductive line or coaxial cable) connected electrically to the antenna track 20. For example, the antenna track 20 has a feeding pin 200 and a grounding pin 201 on end thereof (as shown in
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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.