TW201832411A - Antenna structure - Google Patents
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- TW201832411A TW201832411A TW106106374A TW106106374A TW201832411A TW 201832411 A TW201832411 A TW 201832411A TW 106106374 A TW106106374 A TW 106106374A TW 106106374 A TW106106374 A TW 106106374A TW 201832411 A TW201832411 A TW 201832411A
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- 239000000919 ceramic Substances 0.000 claims abstract description 25
- 230000005855 radiation Effects 0.000 claims abstract description 15
- 229910052755 nonmetal Inorganic materials 0.000 claims description 8
- 239000003990 capacitor Substances 0.000 claims description 7
- 239000002184 metal Substances 0.000 claims description 6
- 238000004891 communication Methods 0.000 description 6
- 238000010586 diagram Methods 0.000 description 6
- 230000007774 longterm Effects 0.000 description 3
- 230000005540 biological transmission Effects 0.000 description 2
- 239000004020 conductor Substances 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- 238000005259 measurement Methods 0.000 description 2
- 238000010295 mobile communication Methods 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 230000005404 monopole Effects 0.000 description 1
- 150000002843 nonmetals Chemical group 0.000 description 1
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Abstract
Description
本發明係關於一種天線結構,特別係關於一種多頻帶(Multiband)天線結構。 The present invention relates to an antenna structure, and more particularly to a multiband antenna structure.
隨著行動通訊技術的發達,行動裝置在近年日益普遍,常見的例如:手提式電腦、行動電話、多媒體播放器以及其他混合功能的攜帶型電子裝置。為了滿足人們的需求,行動裝置通常具有無線通訊的功能。有些涵蓋長距離的無線通訊範圍,例如:行動電話使用2G、3G、LTE(Long Term Evolution)系統及其所使用700MHz、850MHz、900MHz、1800MHz、1900MHz、2100MHz、2300MHz以及2500MHz的頻帶進行通訊,而有些則涵蓋短距離的無線通訊範圍,例如:Wi-Fi、Bluetooth系統使用2.4GHz、5.2GHz和5.8GHz的頻帶進行通訊。 With the development of mobile communication technologies, mobile devices have become more and more popular in recent years, such as portable computers, mobile phones, multimedia players, and other portable electronic devices with mixed functions. In order to meet people's needs, mobile devices usually have the function of wireless communication. Some cover long-range wireless communication range, for example, mobile phones use 2G, 3G, LTE (Long Term Evolution) systems and the 700MHz, 850MHz, 900MHz, 1800MHz, 1900MHz, 2100MHz, 2300MHz and 2500MHz bands used for communication, and Some cover short-range wireless communication ranges, such as Wi-Fi, Bluetooth systems using 2.4GHz, 5.2GHz and 5.8GHz bands for communication.
天線為支援無線通訊之行動裝置中不可或缺之元件。然而,由於行動裝置之內部空間十分侷限,往往沒有足夠面積來配置所需之天線元件。因此,如何設計一種小尺寸、寬頻帶之全新天線,已成為現今設計者之一大挑戰。 The antenna is an indispensable component in mobile devices that support wireless communication. However, due to the limited internal space of the mobile device, there is often not enough area to configure the required antenna elements. Therefore, how to design a new antenna with a small size and a wide frequency band has become a major challenge for today's designers.
在較佳實施例中,本發明提供一種天線結構,包括:一信號源;一第一輻射部,包括一陶瓷天線元件和至少一 被動元件;一電路佈局,其中該第一輻射部係經由該電路佈局耦接至該信號源;以及一第二輻射部,耦接至該電路佈局;其中該第一輻射部係激發產生一第一頻帶,而該第二輻射部係激發產生一第二頻帶。 In a preferred embodiment, the present invention provides an antenna structure including: a signal source; a first radiating portion including a ceramic antenna element and at least one passive component; a circuit layout, wherein the first radiating portion is a circuit arrangement coupled to the signal source; and a second radiating portion coupled to the circuit layout; wherein the first radiating portion is excited to generate a first frequency band, and the second radiating portion is excited to generate a second frequency band .
在一些實施例中,該第一頻帶為位於1575MHz之一GPS(Global Positioning System)頻帶,而該第二頻帶為介於2400MHz至2484MHz之間之一WLAN(Wireless Local Area Network)2.4GHz頻帶。 In some embodiments, the first frequency band is a GPS (Global Positioning System) band located at 1575 MHz, and the second frequency band is a WLAN (Wireless Local Area Network) 2.4 GHz band between 2400 MHz and 2484 MHz.
在一些實施例中,該天線結構更包括:一饋入匹配電路,內嵌於該電路佈局中,其中該信號源係經由該饋入匹配電路和該電路佈局分別耦接至該第一輻射部和該第二輻射部。 In some embodiments, the antenna structure further includes: a feed matching circuit embedded in the circuit layout, wherein the signal source is coupled to the first radiating portion via the feed matching circuit and the circuit layout, respectively And the second radiating portion.
在一些實施例中,該被動元件包括一或複數個電容器或(且)一或複數個電感器。 In some embodiments, the passive component includes one or more capacitors or (and) one or more inductors.
在一些實施例中,該第二輻射部大致為一C字形金屬部或一L字形金屬部。 In some embodiments, the second radiating portion is substantially a C-shaped metal portion or an L-shaped metal portion.
在一些實施例中,該天線結構更包括:一系統電路板,包括一接地面區域和一非金屬區域,其中該接地面區域係至少部份地圍繞該非金屬區域,而該第一輻射部和該第二輻射部係設置於該非金屬區域上。 In some embodiments, the antenna structure further includes: a system circuit board including a ground plane area and a non-metal area, wherein the ground plane area at least partially surrounds the non-metal area, and the first radiating portion and The second radiating portion is disposed on the non-metallic region.
在一些實施例中,該非金屬區域係位於該系統電路板之一邊緣中間處。 In some embodiments, the non-metallic region is located intermediate one of the edges of the system board.
在一些實施例中,該陶瓷天線元件為迴圈式,而該電路佈局係耦接至該陶瓷天線元件、該被動元件、該第二輻 射部,以及該接地面區域。 In some embodiments, the ceramic antenna element is of a loop type, and the circuit layout is coupled to the ceramic antenna element, the passive element, the second radiating portion, and the ground plane region.
在一些實施例中,該非金屬區域係位於該系統電路板之一角落處。 In some embodiments, the non-metallic region is located at a corner of the system board.
在一些實施例中,該陶瓷天線元件為單極式,而該電路佈局係耦接至該陶瓷天線元件、該被動元件,以及該第二輻射部。 In some embodiments, the ceramic antenna element is monopolar, and the circuit layout is coupled to the ceramic antenna element, the passive element, and the second radiating portion.
100、300‧‧‧天線結構 100, 300‧‧‧ antenna structure
110、310‧‧‧信號源 110, 310‧‧‧ Signal source
120、320‧‧‧第一輻射部 120, 320‧‧‧ First Radiation Department
130、330‧‧‧陶瓷天線元件 130, 330‧‧‧Ceramic antenna elements
142、144、342‧‧‧被動元件 142, 144, 342‧‧‧ Passive components
150、350‧‧‧電路佈局 150, 350‧‧‧ circuit layout
160、360‧‧‧第二輻射部 160, 360‧‧‧Second Radiation Department
161、361‧‧‧第二輻射部之第一端 161, 361‧‧‧ the first end of the second radiation department
162、362‧‧‧第二輻射部之第二端 162, 362‧‧‧ second end of the second radiation department
170、370‧‧‧饋入匹配電路 170, 370‧‧‧ feed matching circuit
180、380‧‧‧系統電路板 180, 380‧‧‧ system board
182、382‧‧‧接地面區域 182, 382‧‧‧ ground plane area
184、384‧‧‧非金屬區域 184, 384‧‧‧ non-metallic areas
FB1‧‧‧第一頻帶 FB1‧‧‧ first frequency band
FB2‧‧‧第二頻帶 FB2‧‧‧second frequency band
第1圖係顯示根據本發明一實施例所述之天線結構之示意圖;第2圖係顯示根據本發明一實施例所述之天線結構之返回損失圖;以及第3圖係顯示根據本發明另一實施例所述之天線結構之示意圖。 1 is a schematic view showing an antenna structure according to an embodiment of the present invention; FIG. 2 is a diagram showing a return loss of an antenna structure according to an embodiment of the present invention; and FIG. 3 is a view showing another according to the present invention. A schematic diagram of an antenna structure as described in an embodiment.
為讓本發明之目的、特徵和優點能更明顯易懂,下文特舉出本發明之具體實施例,並配合所附圖式,作詳細說明如下。 In order to make the objects, features and advantages of the present invention more comprehensible, the specific embodiments of the invention are set forth in the accompanying drawings.
在說明書及申請專利範圍當中使用了某些詞彙來指稱特定的元件。本領域技術人員應可理解,硬體製造商可能會用不同的名詞來稱呼同一個元件。本說明書及申請專利範圍並不以名稱的差異來作為區分元件的方式,而是以元件在功能上的差異來作為區分的準則。在通篇說明書及申請專利範圍當中所提及的「包含」及「包括」一詞為開放式的用語,故應解 釋成「包含但不僅限定於」。「大致」一詞則是指在可接受的誤差範圍內,本領域技術人員能夠在一定誤差範圍內解決所述技術問題,達到所述基本之技術效果。此外,「耦接」一詞在本說明書中包含任何直接及間接的電性連接手段。因此,若文中描述一第一裝置耦接至一第二裝置,則代表該第一裝置可直接電性連接至該第二裝置,或經由其它裝置或連接手段而間接地電性連接至該第二裝置。 Certain terms are used throughout the description and claims to refer to particular elements. Those skilled in the art will appreciate that a hardware manufacturer may refer to the same component by a different noun. The scope of the present specification and the patent application do not use the difference in the name as the means for distinguishing the elements, but the difference in function of the elements as the criterion for distinguishing. The words "including" and "including" as used throughout the specification and the scope of the patent application are open-ended terms and should be interpreted as "including but not limited to". The term "substantially" means that within the acceptable error range, those skilled in the art will be able to solve the technical problems within a certain error range to achieve the basic technical effects. In addition, the term "coupled" is used in this specification to include any direct and indirect electrical connection means. Therefore, if a first device is coupled to a second device, the first device can be directly electrically connected to the second device, or indirectly connected to the second device via other devices or connection means. Two devices.
第1圖係顯示根據本發明一實施例所述之天線結構100之示意圖。天線結構100可應用於一行動裝置,例如:一智慧型手機(Smart Phone)、一平板電腦(Tablet Computer),或是一筆記型電腦(Notebook Computer)。在第1圖之實施例中,天線結構100至少包括:一信號源(Signal Source)110、一第一輻射部120、一電路佈局(Layout)150,以及一第二輻射部160。信號源110可以是一射頻(Radio Frequency,RF)模組,用於激發天線結構100。信號源110可視為天線結構100之一輸入端或一輸出端。第一輻射部120包括一陶瓷天線元件(Ceramic Antenna Element)130、一第一被動元件(Passive Component)142,以及一第二被動元件144。第一被動元件142和第二被動元件144係用於微調陶瓷天線元件130之阻抗(Impedance)。在一些實施例中,第一被動元件142和第二被動元件144之每一者包括一或複數個電容器(Capacitor)或(且)一或複數個電感器(Inductor),例如:晶片電容器或(且)晶片電感器。電路佈局150可以是一傳輸線(Transmission Line)或是一導體連接線,其阻抗值可約為50歐姆。第一輻射部120之陶瓷天線元件130、第一被動元件142, 以及第二被動元件144皆可經由電路佈局150耦接至信號源110。第二輻射部160可為一C字形金屬部。第二輻射部160具有一第一端161和一第二端162,其中第二輻射部160之第一端161係耦接至電路佈局150,而第二輻射部160之第二端162為一開路端(Open End)。 1 is a schematic diagram showing an antenna structure 100 in accordance with an embodiment of the present invention. The antenna structure 100 can be applied to a mobile device, such as a smart phone, a tablet computer, or a notebook computer. In the embodiment of FIG. 1 , the antenna structure 100 includes at least a signal source 110 , a first radiating portion 120 , a circuit layout 150 , and a second radiating portion 160 . The signal source 110 can be a radio frequency (RF) module for exciting the antenna structure 100. Signal source 110 can be considered as one of the inputs or an output of antenna structure 100. The first radiating portion 120 includes a ceramic antenna element 130, a first passive component 142, and a second passive component 144. The first passive component 142 and the second passive component 144 are used to fine tune the impedance of the ceramic antenna component 130. In some embodiments, each of the first passive component 142 and the second passive component 144 includes one or more capacitors or (and) one or more inductors (Inductors), such as: wafer capacitors or ( And) the chip inductor. The circuit layout 150 can be a transmission line or a conductor connection having an impedance value of about 50 ohms. The ceramic antenna element 130, the first passive component 142, and the second passive component 144 of the first radiating portion 120 can be coupled to the signal source 110 via the circuit layout 150. The second radiating portion 160 may be a C-shaped metal portion. The second radiating portion 160 has a first end 161 and a second end 162. The first end 161 of the second radiating portion 160 is coupled to the circuit layout 150, and the second end 162 of the second radiating portion 160 is a Open End.
在一些實施例中,天線結構100更包括一饋入匹配電路(Feeding Matching Circuit)170。饋入匹配電路170可以內嵌於電路佈局150中,其中信號源110係經由饋入匹配電路170和電路佈局150分別耦接至第一輻射部120和第二輻射部160。饋入匹配電路170亦可包括一或複數個電容器或(且)一或複數個電感器,從而可同時調整第一輻射部120和第二輻射部160之阻抗匹配(Impedance Matching)。 In some embodiments, the antenna structure 100 further includes a feeding matching circuit (Feeding Matching Circuit) 170. The feed matching circuit 170 can be embedded in the circuit layout 150, wherein the signal source 110 is coupled to the first radiating portion 120 and the second radiating portion 160 via the feed matching circuit 170 and the circuit layout 150, respectively. The feed matching circuit 170 may also include one or a plurality of capacitors or (and) one or more inductors, so that Impedance Matching of the first radiating portion 120 and the second radiating portion 160 may be simultaneously adjusted.
在一些實施例中,天線結構100更包括一系統電路板(System Circuit Board)180。系統電路板180包括一接地面區域(Ground Plane Region)182和一非金屬區域(Non-metal Region)184,其中接地面區域182係至少部份地圍繞非金屬區域184。舉例而言,非金屬區域184可呈現一矩形,並可位於系統電路板180之一短邊緣中間處。第一輻射部120和第二輻射部160皆可設置於非金屬區域184上,其中第二輻射部160係以印刷方式形成,並直接印製於非金屬區域184上。 In some embodiments, the antenna structure 100 further includes a system circuit board 180. The system board 180 includes a Ground Plane Region 182 and a Non-metal Region 184, wherein the ground plane region 182 at least partially surrounds the non-metallic region 184. For example, the non-metallic region 184 can assume a rectangular shape and can be located intermediate the short edge of one of the system circuit boards 180. Both the first radiating portion 120 and the second radiating portion 160 may be disposed on the non-metallic region 184, wherein the second radiating portion 160 is formed in a printed manner and printed directly on the non-metallic region 184.
如第1圖所示,第一輻射部120之之陶瓷天線元件130為迴圈式(Loop-Type)。在迴圈式之設計下,電路佈局150係耦接至陶瓷天線元件130、第一被動元件142、第二被動元件144、第二輻射部160,以及接地面區域182。另外,電路佈局 150之一部份、第一被動元件142,以及陶瓷天線元件130三者更可形成一封閉迴圈結構(Closed Loop Structure),以增加天線結構100之低頻頻寬。 As shown in Fig. 1, the ceramic antenna element 130 of the first radiating portion 120 is of a loop type. In a loop-type design, circuit layout 150 is coupled to ceramic antenna element 130, first passive component 142, second passive component 144, second radiating portion 160, and ground plane region 182. In addition, one of the circuit layout 150, the first passive component 142, and the ceramic antenna component 130 can form a closed loop structure to increase the low frequency bandwidth of the antenna structure 100.
第2圖係顯示根據本發明一實施例所述之天線結構100之返回損失(Return Loss)圖,其中橫軸代表操作頻率(MHz),縱軸代表返回損失(dB)。根據第2圖之量測結果,天線結構100可涵蓋一第一頻帶FB1和一第二頻帶FB2,其中第一輻射部120可激發產生前述第一頻帶FB1,而第二輻射部160可激發產生前述第二頻帶FB2。詳細而言,前述第一頻帶FB1可為位於1575MHz之一GPS(Global Positioning System)頻帶,而前述第二頻帶FB2可為介於2400MHz至2484MHz之間之一WLAN(Wireless Local Area Network)2.4GHz頻帶。因此,天線結構100將可同時支援GPS和WLAN 2.4GHz之多頻帶寬頻操作。 2 is a diagram showing a Return Loss diagram of an antenna structure 100 in accordance with an embodiment of the present invention, wherein the horizontal axis represents the operating frequency (MHz) and the vertical axis represents the return loss (dB). According to the measurement result of FIG. 2, the antenna structure 100 can cover a first frequency band FB1 and a second frequency band FB2, wherein the first radiation portion 120 can excite the first frequency band FB1, and the second radiation portion 160 can be excited to generate The aforementioned second frequency band FB2. In detail, the first frequency band FB1 may be a GPS (Global Positioning System) band located at 1575 MHz, and the second frequency band FB2 may be a WLAN (Wireless Local Area Network) 2.4 GHz band between 2400 MHz and 2484 MHz. . Therefore, the antenna structure 100 will simultaneously support multi-frequency bandwidth operation of GPS and WLAN 2.4 GHz.
在第1、2圖之實施例之天線原理和元件尺寸方面,第二輻射部160之總長度可以大致等於第二頻帶FB2之0.25倍波長(λ/4)。另外,第一被動元件142和第二被動元件144可與陶瓷天線元件130發生共振,使得第一輻射部120之等效共振長度可以大致等於第一頻帶FB1之0.5倍波長(λ/2)。若適當地調整天線結構100之元件尺寸,其更可涵蓋其他頻帶,例如:LTE(Long Term Evolution)頻帶。 In terms of the antenna principle and component size of the embodiments of Figures 1 and 2, the total length of the second radiating portion 160 may be substantially equal to 0.25 times the wavelength (λ/4) of the second frequency band FB2. Additionally, the first passive component 142 and the second passive component 144 may resonate with the ceramic antenna component 130 such that the equivalent resonant length of the first radiating portion 120 may be substantially equal to 0.5 times the wavelength (λ/2) of the first frequency band FB1. If the component size of the antenna structure 100 is appropriately adjusted, it may cover other frequency bands, for example, the LTE (Long Term Evolution) band.
第3圖係顯示根據本發明另一實施例所述之天線結構300之示意圖。第3圖和第1圖相似。在第3圖之實施例中,天線結構300至少包括:一信號源310、一第一輻射部320、一 電路佈局350、以及一第二輻射部360。第一輻射部320包括一陶瓷天線元件330和一被動元件342。被動元件342可包括一或複數個電容器或(且)一或複數個電感器。電路佈局350可以是一傳輸線或是一導體連接線。第一輻射部320之陶瓷天線元件330和被動元件342皆可經由電路佈局350耦接至信號源310。第二輻射部360可為一L字形金屬部。第二輻射部360具有一第一端361和一第二端362,其中第二輻射部360之第一端361係耦接至電路佈局350,而第二輻射部360之第二端362為一開路端。 Figure 3 is a schematic diagram showing an antenna structure 300 in accordance with another embodiment of the present invention. Figure 3 is similar to Figure 1. In the embodiment of FIG. 3, the antenna structure 300 includes at least a signal source 310, a first radiating portion 320, a circuit layout 350, and a second radiating portion 360. The first radiating portion 320 includes a ceramic antenna element 330 and a passive element 342. Passive component 342 can include one or more capacitors or (and) one or more inductors. Circuit layout 350 can be a transmission line or a conductor connection. Both the ceramic antenna element 330 and the passive element 342 of the first radiating portion 320 can be coupled to the signal source 310 via the circuit layout 350. The second radiating portion 360 may be an L-shaped metal portion. The second radiating portion 360 has a first end 361 and a second end 362, wherein the first end 361 of the second radiating portion 360 is coupled to the circuit layout 350, and the second end 362 of the second radiating portion 360 is a Open the road.
在一些實施例中,天線結構300更包括一饋入匹配電路370。饋入匹配電路370可以內嵌於電路佈局350中,其中信號源310係經由饋入匹配電路370和電路佈局350分別耦接至第一輻射部320和第二輻射部360。饋入匹配電路370亦可包括一或複數個電容器或(且)一或複數個電感器。 In some embodiments, antenna structure 300 further includes a feed matching circuit 370. The feed matching circuit 370 can be embedded in the circuit layout 350, wherein the signal source 310 is coupled to the first radiating portion 320 and the second radiating portion 360 via the feed matching circuit 370 and the circuit layout 350, respectively. Feed matching circuit 370 can also include one or more capacitors or (and) one or more inductors.
在一些實施例中,天線結構300更包括一系統電路板380。系統電路板380包括一接地面區域382和一非金屬區域384,其中接地面區域382係至少部份地圍繞非金屬區域384。舉例而言,非金屬區域384可呈現一矩形,並可位於系統電路板380之一角落處。第一輻射部320和第二輻射部360皆可設置於非金屬區域384上。 In some embodiments, antenna structure 300 further includes a system circuit board 380. The system board 380 includes a ground plane region 382 and a non-metal region 384, wherein the ground plane region 382 at least partially surrounds the non-metal region 384. For example, the non-metallic region 384 can assume a rectangle and can be located at a corner of the system board 380. Both the first radiating portion 320 and the second radiating portion 360 may be disposed on the non-metallic region 384.
如第3圖所示,第一輻射部320之陶瓷天線元件330為單極式(Monopole-Type)。在單極式之設計下,電路佈局350係耦接至陶瓷天線元件330、被動元件342,以及第二輻射部360(但電路佈局350卻不連接至接地面區域382,此與迴圈式之設計不同)。另外,電路佈局350之一部份、被動元件342,以 及陶瓷天線元件330三者更可形成一直條形結構,以增加天線結構300之低頻頻寬。 As shown in FIG. 3, the ceramic antenna element 330 of the first radiating portion 320 is of a monopole type. In a unipolar design, the circuit layout 350 is coupled to the ceramic antenna element 330, the passive element 342, and the second radiating portion 360 (but the circuit layout 350 is not connected to the ground plane region 382, which is similar to the loop type Different design). In addition, one of the circuit layout 350, the passive component 342, and the ceramic antenna component 330 can form a straight strip structure to increase the low frequency bandwidth of the antenna structure 300.
相似地,根據實際量測結果,天線結構300亦可涵蓋前述第一頻帶FB1和前述第二頻帶FB2(亦即:GPS頻帶和WLAN 2.4GHz頻帶)。在第3圖之實施例之天線原理和元件尺寸方面,第二輻射部360之長度可以大致等於第二頻帶FB2之0.25倍波長(λ/4)。另外,被動元件342可與陶瓷天線元件330發生共振,使得第一輻射部320之等效共振長度可以大致等於第一頻帶FB1之0.25倍波長(λ/4)。若適當地調整天線結構300之元件尺寸,其更可涵蓋其他頻帶,例如:LTE(Long Term Evolution)頻帶。第3圖之天線結構300之其餘特徵皆與第1圖之天線結構100相似,故此二實施例均可達成相似之操作效果。 Similarly, the antenna structure 300 may also cover the first frequency band FB1 and the second frequency band FB2 (ie, the GPS band and the WLAN 2.4 GHz band) according to actual measurement results. In terms of the antenna principle and component size of the embodiment of Fig. 3, the length of the second radiating portion 360 may be substantially equal to 0.25 times the wavelength (λ/4) of the second frequency band FB2. Additionally, the passive component 342 can resonate with the ceramic antenna component 330 such that the equivalent resonant length of the first radiating portion 320 can be substantially equal to 0.25 times the wavelength (λ/4) of the first frequency band FB1. If the component size of the antenna structure 300 is appropriately adjusted, it may cover other frequency bands, for example, the LTE (Long Term Evolution) band. The remaining features of the antenna structure 300 of FIG. 3 are similar to those of the antenna structure 100 of FIG. 1, so that the second embodiment can achieve similar operational effects.
簡言之,本發明提出一種新穎之天線結構,其至少具有下列優勢;(1)小型化設計;(2)可同時涵蓋GPS和WLAN頻帶;(3)具有較大之頻寬;(4)易於大量生產製造;以及(5)製造成本較低。因此,本發明很適合應用於現今各種小型化之行動通訊裝置當中。 Briefly stated, the present invention provides a novel antenna structure that has at least the following advantages: (1) miniaturized design; (2) can cover both GPS and WLAN bands; (3) has a larger bandwidth; (4) Easy to mass produce; and (5) lower manufacturing costs. Therefore, the present invention is well suited for use in various miniaturized mobile communication devices.
值得注意的是,以上所述之元件尺寸、元件形狀,以及頻率範圍皆非為本發明之限制條件。天線設計者可以根據不同需要調整這些設定值。本發明之天線結構並不僅限於第1-3圖所圖示之狀態。本發明可以僅包括第1-3圖之任何一或複數個實施例之任何一或複數項特徵。換言之,並非所有圖示之特徵均須同時實施於本發明之天線結構當中。 It is to be noted that the above-described component sizes, component shapes, and frequency ranges are not limitations of the present invention. The antenna designer can adjust these settings according to different needs. The antenna structure of the present invention is not limited to the state illustrated in Figures 1-3. The present invention may include only any one or more of the features of any one or a plurality of embodiments of Figures 1-3. In other words, not all illustrated features must be simultaneously implemented in the antenna structure of the present invention.
在本說明書以及申請專利範圍中的序數,例如「第 一」、「第二」、「第三」等等,彼此之間並沒有順序上的先後關係,其僅用於標示區分兩個具有相同名字之不同元件。 The ordinal numbers in this specification and the scope of the patent application, such as "first", "second", "third", etc., have no sequential relationship with each other, and are only used to indicate that two are identical. Different components of the name.
本發明雖以較佳實施例揭露如上,然其並非用以限定本發明的範圍,任何熟習此項技藝者,在不脫離本發明之精神和範圍內,當可做些許的更動與潤飾,因此本發明之保護範圍當視後附之申請專利範圍所界定者為準。 The present invention has been described above with reference to the preferred embodiments thereof, and is not intended to limit the scope of the present invention, and the invention may be modified and modified without departing from the spirit and scope of the invention. The scope of the invention is defined by the scope of the appended claims.
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