TWI736387B - Mobile device - Google Patents

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TWI736387B
TWI736387B TW109126662A TW109126662A TWI736387B TW I736387 B TWI736387 B TW I736387B TW 109126662 A TW109126662 A TW 109126662A TW 109126662 A TW109126662 A TW 109126662A TW I736387 B TWI736387 B TW I736387B
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Taiwan
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radiating portion
radiating
mobile device
frequency band
coupled
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TW109126662A
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TW202207520A (en
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張琨盛
林敬基
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宏碁股份有限公司
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Abstract

A mobile device includes a ground element, a first radiation element, a second radiation element, a third radiation element, a fourth radiation element, and a dielectric substrate. The first radiation element is coupled to the ground element. The second radiation element has a feeding point, and is coupled to the ground element. The third radiation element is coupled to the second radiation element. The first radiation element is adjacent to the second radiation element and the third radiation element. The fourth radiation element is coupled to the second radiation element. A non-metal closed region is surrounded by the second radiation element and the fourth radiation element. The ground element, the first radiation element, the second radiation element, the third radiation element, and the fourth radiation element are disposed on the dielectric substrate. An antenna structure is formed by the ground element, the first radiation element, the second radiation element, the third radiation element, the fourth radiation element, and the dielectric substrate.

Description

行動裝置Mobile device

本發明係關於一種行動裝置,特別係關於一種行動裝置及其天線結構。The present invention relates to a mobile device, in particular to a mobile device and its 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、850 MHz、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 technology, mobile devices have become more and more common 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 wireless communication functions. Some cover long-distance wireless communication ranges, for example: mobile phones use 2G, 3G, LTE (Long Term Evolution) systems and their use of 700MHz, 850 MHz, 900MHz, 1800MHz, 1900MHz, 2100MHz, 2300MHz, and 2500MHz frequency bands for communication. Some cover short-distance wireless communication ranges, for example: Wi-Fi, Bluetooth systems use 2.4GHz, 5.2GHz and 5.8GHz frequency bands for communication.

天線為無線通訊領域中不可缺少之元件。倘若用於接收或發射信號之天線其頻寬(Bandwidth)不足,則很容易造成行動裝置之通訊品質下降。因此,如何設計出小尺寸、寬頻帶之天線元件,對天線設計者而言是一項重要課題。The antenna is an indispensable component in the field of wireless communication. If the bandwidth of the antenna used for receiving or transmitting signals is insufficient, it is easy to cause the communication quality of the mobile device to deteriorate. Therefore, how to design a small-sized, wide-band antenna element is an important issue for antenna designers.

在較佳實施例中,本發明提出一種行動裝置,包括:一接地元件;一第一輻射部,耦接至該接地元件;一第二輻射部,具有一饋入點,並耦接至該接地元件;一第三輻射部,耦接至該第二輻射部,其中該第一輻射部係鄰近於該第二輻射部和該第三輻射部;一第四輻射部,耦接至該第二輻射部,其中該第二輻射部和該第四輻射部包圍住一非金屬封閉區域;以及一介質基板,其中該接地元件、該第一輻射部、該第二輻射部、該第三輻射部,以及該第四輻射部皆設置於該介質基板上;其中該接地元件、該第一輻射部、該第二輻射部、該第三輻射部、該第四輻射部,以及該介質基板共同形成一天線結構。In a preferred embodiment, the present invention provides a mobile device including: a ground element; a first radiating part coupled to the ground element; a second radiating part having a feeding point and coupled to the ground element; Grounding element; a third radiating portion, coupled to the second radiating portion, wherein the first radiating portion is adjacent to the second radiating portion and the third radiating portion; a fourth radiating portion, coupled to the first radiating portion Two radiating parts, wherein the second radiating part and the fourth radiating part surround a non-metal enclosed area; and a dielectric substrate, wherein the grounding element, the first radiating part, the second radiating part, and the third radiating part Part, and the fourth radiating part are all disposed on the dielectric substrate; wherein the ground element, the first radiating part, the second radiating part, the third radiating part, the fourth radiating part, and the dielectric substrate are common Form an antenna structure.

在一些實施例中,該第一輻射部係呈現一蜿蜒形狀。In some embodiments, the first radiating portion exhibits a serpentine shape.

在一些實施例中,該非金屬封閉區域係呈現一矩形。In some embodiments, the non-metallic enclosed area is rectangular.

在一些實施例中,該第三輻射部和該第四輻射部各自呈現一直條形,並大致朝相反方向作延伸。In some embodiments, the third radiating portion and the fourth radiating portion each present a straight strip shape, and extend substantially in opposite directions.

在一些實施例中,該行動裝置更包括:一第五輻射部,耦接至該第一輻射部,其中該第三輻射部和該第五輻射部大致朝互相靠近之方向作延伸。In some embodiments, the mobile device further includes: a fifth radiating part coupled to the first radiating part, wherein the third radiating part and the fifth radiating part generally extend toward each other.

在一些實施例中,該天線結構之總高度係小於或等於4mm。In some embodiments, the total height of the antenna structure is less than or equal to 4 mm.

在一些實施例中,該天線結構涵蓋一第一頻帶、一第二頻帶,以及一第三頻帶,該第一頻帶係介於2400MHz至2500MHz之間,該第二頻帶係介於5150MHz至5850MHz之間,而該第三頻帶係介於5925MHz至7125MHz之間。In some embodiments, the antenna structure covers a first frequency band, a second frequency band, and a third frequency band. The first frequency band is between 2400MHz and 2500MHz, and the second frequency band is between 5150MHz and 5850MHz. The third frequency band is between 5925MHz and 7125MHz.

在一些實施例中,該第一輻射部之長度係大致等於該第一頻帶之0.25倍波長。In some embodiments, the length of the first radiating portion is approximately equal to 0.25 times the wavelength of the first frequency band.

在一些實施例中,該第二輻射部之長度係大致等於該第二頻帶之0.5倍波長。In some embodiments, the length of the second radiating portion is approximately equal to 0.5 times the wavelength of the second frequency band.

在一些實施例中,該第三輻射部之長度係大致等於該第三頻帶之0.25倍波長。In some embodiments, the length of the third radiating portion is substantially equal to 0.25 times the wavelength of the third frequency band.

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 purpose, features and advantages of the present invention more comprehensible, specific embodiments of the present invention are listed below, with the accompanying drawings, and detailed descriptions are as follows.

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 vocabulary is used to refer to specific elements in the specification and the scope of the patent application. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. This specification and the scope of the patent application do not use differences in names as a way to distinguish elements, but use differences in functions of elements as a criterion for distinguishing. The terms "including" and "including" mentioned in the entire specification and the scope of the patent application are open-ended terms and should be interpreted as "including but not limited to". The term "approximately" means that within an acceptable error range, those skilled in the art can solve the technical problem within a certain error range and achieve the basic technical effect. In addition, the term "coupling" includes any direct and indirect electrical connection means in this specification. Therefore, if it is described in the text that a first device is coupled to a second device, it means that the first device can be directly electrically connected to the second device, or indirectly electrically connected to the second device through 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行動裝置100之示意圖。行動裝置100可以是一智慧型手機、一平板電腦,或是一筆記型電腦。如第1圖所示,行動裝置100包括:一接地元件(Ground Element)110、一第一輻射部(Radiation Element)120、一第二輻射部130、一第三輻射部140、一第四輻射部150,以及一介質基板(Dielectric Substrate)170,其中接地元件110、第一輻射部120、第二輻射部130、第三輻射部140,以及第四輻射部150皆可用金屬材質製成,例如:銅、銀、鋁、鐵,或是其合金。必須理解的是,雖然未顯示於第1圖中,但行動裝置100更可包括其他元件,例如:一處理器、一觸控面板、一揚聲器、一電池模組,以及一外殼。FIG. 1 is a schematic diagram of a mobile device 100 according to an embodiment of the invention. The mobile device 100 can be a smart phone, a tablet computer, or a notebook computer. As shown in Figure 1, the mobile device 100 includes a ground element 110, a first radiation element 120, a second radiation part 130, a third radiation part 140, and a fourth radiation element. Portion 150, and a dielectric substrate 170, wherein the ground element 110, the first radiating portion 120, the second radiating portion 130, the third radiating portion 140, and the fourth radiating portion 150 can all be made of metal materials, for example : Copper, silver, aluminum, iron, or their alloys. It must be understood that although not shown in Figure 1, the mobile device 100 may further include other components, such as a processor, a touch panel, a speaker, a battery module, and a housing.

接地元件110可用於提供一接地電位。例如,接地元件110可由一接地銅箔(Ground Copper Foil)來實施,其更可耦接至行動裝置100之一系統接地面(System Ground Plane)(未顯示)。The ground element 110 can be used to provide a ground potential. For example, the grounding element 110 may be implemented by a ground copper foil (Ground Copper Foil), and it may be coupled to a system ground plane (not shown) of the mobile device 100.

第一輻射部120可大致呈現一蜿蜒形狀(Meandering Shape),例如:一倒U字形或是一倒J字形。詳細而言,第一輻射部120具有一第一端121和一第二端122,其中第一輻射部120之第一端121係耦接至接地元件110,而第一輻射部120之第二端122為一開路端(Open End)。The first radiating portion 120 may substantially exhibit a meandering shape, such as an inverted U-shape or an inverted J-shape. In detail, the first radiating portion 120 has a first end 121 and a second end 122, wherein the first end 121 of the first radiating portion 120 is coupled to the ground element 110, and the second radiating portion 120 is The end 122 is an open end (Open End).

第二輻射部130可大致呈現具有一缺口(Notch)135之一迴圈形狀(Loop Shape)。詳細而言,第二輻射部130具有一第一端131和一第二端132,其中一饋入點(Feeding Point)FP係位於第二輻射部130之第一端131處,而第二輻射部130之第二端132係耦接至接地元件110。饋入點FP更可耦接至一信號源(Signal Source)190。例如,信號源190可為一射頻(Radio Frequency,RF)模組。第二輻射部130之第一端131和第二端132係彼此互相鄰近,而缺口135係介於此二端之間。必須注意的是,本說明書中所謂「鄰近」或「相鄰」一詞可指對應之二元件間距小於一既定距離(例如:5mm或更短),但通常不包括對應之二元件彼此直接接觸之情況(亦即,前述間距縮短至0)。The second radiating part 130 may substantially exhibit a loop shape with a notch 135. In detail, the second radiating part 130 has a first end 131 and a second end 132, and a feeding point FP is located at the first end 131 of the second radiating part 130, and the second radiating part 130 The second end 132 of the portion 130 is coupled to the ground element 110. The feeding point FP can be further coupled to a signal source (Signal Source) 190. For example, the signal source 190 may be a radio frequency (RF) module. The first end 131 and the second end 132 of the second radiating portion 130 are adjacent to each other, and the notch 135 is between the two ends. It should be noted that the term "adjacent" or "adjacent" in this specification can mean that the distance between the corresponding two elements is less than a predetermined distance (for example: 5mm or less), but it usually does not include the direct contact between the two corresponding elements. (That is, the aforementioned spacing is shortened to 0).

第三輻射部140可大致呈現一較短直條形,其可與第二輻射部130至少部份垂直。詳細而言,第三輻射部140具有一第一端141和一第二端142,其中第三輻射部140之第一端141係耦接至第二輻射部130上之一第一連接點(Connection Point)CP1,而第三輻射部140之第二端142為一開路端。第一連接點CP1可鄰近於饋入點FP。另外,第一輻射部120之第二端122係同時鄰近於第二輻射部130和第三輻射部140,其中第一輻射部120和第二輻射部130之間可形成一第一耦合間隙(Coupling Gap)GC1,而第一輻射部120和第三輻射部140之間可形成一第二耦合間隙GC2。The third radiating portion 140 may substantially exhibit a shorter straight bar shape, which may be at least partially perpendicular to the second radiating portion 130. In detail, the third radiating portion 140 has a first end 141 and a second end 142, wherein the first end 141 of the third radiating portion 140 is coupled to a first connection point on the second radiating portion 130 ( Connection Point) CP1, and the second end 142 of the third radiating portion 140 is an open end. The first connection point CP1 may be adjacent to the feed point FP. In addition, the second end 122 of the first radiating portion 120 is adjacent to the second radiating portion 130 and the third radiating portion 140 at the same time, wherein a first coupling gap can be formed between the first radiating portion 120 and the second radiating portion 130 ( Coupling Gap) GC1, and a second coupling gap GC2 can be formed between the first radiating portion 120 and the third radiating portion 140.

第四輻射部150可大致呈現一較長直條形,其可與第二輻射部130至少部份平行。詳細而言,第四輻射部150具有一第一端151和一第二端152,其中第四輻射部150之第一端151係耦接至第二輻射部130上之一第二連接點CP2,而第四輻射部150之第二端152與第三輻射部140之第二端142可大致朝相反且互相遠離之方向作延伸。第二連接點CP2可與第一連接點CP1相對,並且鄰近於饋入點FP。第四輻射部150之第二端152更耦接至第二輻射部130上之一第三連接點CP3,使得第二輻射部130和第四輻射部150共同包圍住一非金屬封閉區域(Non-metal Closed Region)160。例如,非金屬封閉區域160可大致呈現一矩形或一正方形,但亦不僅限於此。另一方面,相較於第二輻射部130之第一端131,第三連接點CP3會更靠近第二輻射部130之第二端132。The fourth radiating portion 150 may substantially exhibit a long straight strip shape, which may be at least partially parallel to the second radiating portion 130. In detail, the fourth radiating portion 150 has a first end 151 and a second end 152, wherein the first end 151 of the fourth radiating portion 150 is coupled to a second connection point CP2 on the second radiating portion 130 , And the second end 152 of the fourth radiating portion 150 and the second end 142 of the third radiating portion 140 may extend substantially in opposite directions and away from each other. The second connection point CP2 may be opposite to the first connection point CP1 and adjacent to the feed point FP. The second end 152 of the fourth radiating portion 150 is further coupled to a third connection point CP3 on the second radiating portion 130, so that the second radiating portion 130 and the fourth radiating portion 150 jointly surround a non-metallic enclosed area (Non -metal Closed Region) 160. For example, the non-metallic enclosed area 160 may be substantially rectangular or square, but it is not limited to this. On the other hand, compared to the first end 131 of the second radiating portion 130, the third connection point CP3 is closer to the second end 132 of the second radiating portion 130.

介質基板170可為一FR4(Flame Retardant 4)基板、一印刷電路板(Printed Circuit Board,PCB),或是一軟性電路板(Flexible Circuit Board,FCB)。接地元件110、第一輻射部120、第二輻射部130、第三輻射部140,以及第四輻射部150皆可設置於介質基板170之同一表面上。在較佳實施例中,接地元件110、第一輻射部120、第二輻射部130、第三輻射部140、第四輻射部150,以及介質基板170共同形成平面式之一天線結構(Antenna Structure)。The dielectric substrate 170 may be an FR4 (Flame Retardant 4) substrate, a printed circuit board (PCB), or a flexible circuit board (FCB). The ground element 110, the first radiating part 120, the second radiating part 130, the third radiating part 140, and the fourth radiating part 150 can all be disposed on the same surface of the dielectric substrate 170. In a preferred embodiment, the ground element 110, the first radiating portion 120, the second radiating portion 130, the third radiating portion 140, the fourth radiating portion 150, and the dielectric substrate 170 together form a planar antenna structure (Antenna Structure ).

第2圖係顯示根據本發明一實施例所述之行動裝置100之天線結構之返回損失(Return Loss)圖,其中橫軸代表操作頻率(MHz),而縱軸代表返回損失(dB)。根據第2圖之量測結果,當由信號源190所激發時,行動裝置100之天線結構可涵蓋一第一頻帶FB1、一第二頻帶FB2,以及一第三頻帶FB3。例如,第一頻帶FB1可介於2400MHz至2500MHz之間,第二頻帶FB2可介於5150MHz至5850MHz之間,而第三頻帶FB3可介於5925MHz至7125MHz之間。因此,行動裝置100之天線結構將至少可支援傳統WLAN(Wireless Wide Area Network) 2.4GHz/5GHz以及新世代Wi-Fi 6e之寬頻操作。Figure 2 is a diagram showing the return loss (Return Loss) of the antenna structure of the mobile device 100 according to an embodiment of the present invention, where the horizontal axis represents the operating frequency (MHz) and the vertical axis represents the return loss (dB). According to the measurement result in Figure 2, when excited by the signal source 190, the antenna structure of the mobile device 100 can cover a first frequency band FB1, a second frequency band FB2, and a third frequency band FB3. For example, the first frequency band FB1 may be between 2400 MHz and 2500 MHz, the second frequency band FB2 may be between 5150 MHz and 5850 MHz, and the third frequency band FB3 may be between 5925 MHz and 7125 MHz. Therefore, the antenna structure of the mobile device 100 will at least support the wideband operation of the traditional WLAN (Wireless Wide Area Network) 2.4GHz/5GHz and the new generation Wi-Fi 6e.

在天線原理方面,第一輻射部120可由第二輻射部130所耦合激發,以產生前述之第一頻帶FB1。第二輻射部130可單獨激發產生前述之第二頻帶FB2。第三輻射部140更可單獨激發產生前述之第三頻帶FB3。另外,根據實際量測結果,第四輻射部150和非金屬封閉區域160之設計有助於微調第二頻帶FB2和第三頻帶FB3之阻抗匹配(Impedance Matching),並可同時增加第二頻帶FB2和第三頻帶FB3之輻射效率(Radiation Efficiency)。In terms of antenna principle, the first radiating part 120 can be coupled and excited by the second radiating part 130 to generate the aforementioned first frequency band FB1. The second radiating part 130 can independently excite the aforementioned second frequency band FB2. The third radiating part 140 can also independently excite the aforementioned third frequency band FB3. In addition, according to the actual measurement results, the design of the fourth radiating part 150 and the non-metal enclosed area 160 is helpful for fine-tuning the impedance matching of the second frequency band FB2 and the third frequency band FB3, and the second frequency band FB2 can be increased at the same time. And the radiation efficiency of the third band FB3 (Radiation Efficiency).

第3圖係顯示根據本發明一實施例所述之行動裝置100之天線結構之輻射效率圖,其中橫軸代表操作頻率(MHz),而縱軸代表輻射效率(dB)。根據第3圖之量測結果,行動裝置100之天線結構於前述第一頻帶FB1、第二頻帶FB2,以及第三頻帶FB3中之輻射效率皆可達-5dB或更高,此已可滿足傳統WLAN和新世代Wi-Fi 6e通訊之實際應用需求。Fig. 3 shows the radiation efficiency diagram of the antenna structure of the mobile device 100 according to an embodiment of the present invention, where the horizontal axis represents the operating frequency (MHz), and the vertical axis represents the radiation efficiency (dB). According to the measurement results in Fig. 3, the radiation efficiency of the antenna structure of the mobile device 100 in the first frequency band FB1, the second frequency band FB2, and the third frequency band FB3 can reach -5dB or higher, which can meet the traditional requirements. The practical application requirements of WLAN and new generation Wi-Fi 6e communication.

在一些實施例中,行動裝置100之元件尺寸可如下列所述。第一輻射部120之長度L1(亦即,由第一端121至第二端122之長度L1)可以大致等於行動裝置100之天線結構之第一頻帶FB1之0.25倍波長(λ/4)。第二輻射部130之長度L2(亦即,由第一端131至第二端132之長度L2)可以大致等於行動裝置100之天線結構之第二頻帶FB2之0.5倍波長(λ/2)。第三輻射部140之長度L3(亦即,由第一端141至第二端142之長度L3)可以大致等於行動裝置100之天線結構之第三頻帶FB3之0.25倍波長(λ/4)。第二輻射部130之缺口135之寬度(亦即,第一端131和第二端132之間距)可介於0.5mm至1mm之間。第一輻射部120和第二輻射部130之間之第一耦合間隙GC1之寬度可介於0.5mm至1mm之間。第一輻射部120和第三輻射部140之間之第二耦合間隙GC2之寬度可介於0.5mm至1mm之間。行動裝置100之天線結構之總高度H1可小於或等於4mm。以上元件尺寸之範圍係根據多次實驗結果而得出,其有助於最佳化行動裝置100之天線結構之操作頻寬和阻抗匹配。In some embodiments, the component sizes of the mobile device 100 can be as follows. The length L1 of the first radiating portion 120 (that is, the length L1 from the first end 121 to the second end 122) may be approximately equal to 0.25 times the wavelength (λ/4) of the first frequency band FB1 of the antenna structure of the mobile device 100. The length L2 of the second radiating portion 130 (that is, the length L2 from the first end 131 to the second end 132) may be approximately equal to 0.5 times the wavelength (λ/2) of the second frequency band FB2 of the antenna structure of the mobile device 100. The length L3 of the third radiating portion 140 (that is, the length L3 from the first end 141 to the second end 142) may be approximately equal to 0.25 times the wavelength (λ/4) of the third frequency band FB3 of the antenna structure of the mobile device 100. The width of the notch 135 of the second radiating portion 130 (that is, the distance between the first end 131 and the second end 132) may be between 0.5 mm and 1 mm. The width of the first coupling gap GC1 between the first radiating portion 120 and the second radiating portion 130 may be between 0.5 mm and 1 mm. The width of the second coupling gap GC2 between the first radiating portion 120 and the third radiating portion 140 may be between 0.5 mm and 1 mm. The total height H1 of the antenna structure of the mobile device 100 may be less than or equal to 4 mm. The range of the above element size is based on the results of many experiments, which helps to optimize the operating bandwidth and impedance matching of the antenna structure of the mobile device 100.

第4圖係顯示根據本發明另一實施例所述之行動裝置400之示意圖。第4圖和第1圖相似。在第4圖之實施例中,行動裝置400之一天線結構更包括一第五輻射部480,其可由金屬材質所製成並設置於介質基板170上。第五輻射部480可大致呈現一較短直條形。詳細而言,第五輻射部480具有一第一端481和一第二端482,其中第五輻射部480之第一端481係耦接至第一輻射部120上之一第四連接點CP4,而第五輻射部480之第二端482為一開路端。第三輻射部140之第二端142與第五輻射部480之第二端482可大致朝相反且互相靠近之方向作延伸。第五輻射部480之長度L4(亦即,由第一端481至第二端482之長度L4)可以大致等於第三輻射部140之長度L3。根據實際量測結果,第五輻射部480之加入可增加行動裝置400之天線結構於前述之第二頻帶FB2和第三頻帶FB3內之操作頻寬。第4圖之行動裝置400之其餘特徵皆與第1圖之行動裝置100類似,故此二實施例均可達成相似之操作效果。FIG. 4 is a schematic diagram of a mobile device 400 according to another embodiment of the present invention. Figure 4 is similar to Figure 1. In the embodiment of FIG. 4, an antenna structure of the mobile device 400 further includes a fifth radiating portion 480, which may be made of a metal material and disposed on the dielectric substrate 170. The fifth radiating portion 480 may substantially exhibit a shorter straight bar shape. In detail, the fifth radiating portion 480 has a first end 481 and a second end 482, wherein the first end 481 of the fifth radiating portion 480 is coupled to a fourth connection point CP4 on the first radiating portion 120 , And the second end 482 of the fifth radiating portion 480 is an open end. The second end 142 of the third radiating portion 140 and the second end 482 of the fifth radiating portion 480 may extend substantially in opposite directions and close to each other. The length L4 of the fifth radiating portion 480 (that is, the length L4 from the first end 481 to the second end 482) may be substantially equal to the length L3 of the third radiating portion 140. According to actual measurement results, the addition of the fifth radiating part 480 can increase the operating bandwidth of the antenna structure of the mobile device 400 in the aforementioned second frequency band FB2 and third frequency band FB3. The remaining features of the mobile device 400 in FIG. 4 are similar to those of the mobile device 100 in FIG. 1. Therefore, the two embodiments can achieve similar operating effects.

第5圖係顯示根據本發明一實施例所述之筆記型電腦500之示意圖。在第5圖之實施例中,前述之天線結構可應用於筆記型電腦500當中,其中筆記型電腦500包括一上蓋外殼510、一顯示器邊框520、一鍵盤邊框530,以及一底座外殼540。必須理解的是,上蓋外殼510、顯示器邊框520、鍵盤邊框530,以及底座外殼540即分別等同於筆記型電腦領域中俗稱之「A件」、「B件」、「C件」,以及「D件」。前述之天線結構可設置於筆記型電腦500之一第一位置551或(且)一第二位置552處,並可由非導體之顯示器邊框520所覆蓋。根據實際量測結果,由於本發明之總天線高度極小(較傳統約8mm之天線高度可微縮達約50%),故所提之設計可應用於各種窄邊框(Narrow Border)之行動裝置當中,同時維持良好之通訊品質與操作頻寬。FIG. 5 is a schematic diagram of a notebook computer 500 according to an embodiment of the invention. In the embodiment of FIG. 5, the aforementioned antenna structure can be applied to a notebook computer 500, where the notebook computer 500 includes an upper cover shell 510, a display frame 520, a keyboard frame 530, and a base shell 540. It must be understood that the upper cover shell 510, the display frame 520, the keyboard frame 530, and the base shell 540 are respectively equivalent to the "A part", "B part", "C part" and "D part" commonly known in the field of notebook computers. Pieces". The aforementioned antenna structure can be arranged at a first position 551 or (and) a second position 552 of the notebook computer 500, and can be covered by a non-conductor display frame 520. According to actual measurement results, since the total antenna height of the present invention is extremely small (it can be reduced by about 50% compared to the traditional antenna height of about 8mm), the proposed design can be applied to various narrow border mobile devices. At the same time maintain good communication quality and operating bandwidth.

本發明提出一種新穎之行動裝置和天線結構,相較於傳統設計,本發明至少具有小尺寸、寬頻帶、低製造成本,以及美化行動裝置外觀等優勢,故其很適合應用於各種各式之行動通訊裝置當中。The present invention proposes a novel mobile device and antenna structure. Compared with the traditional design, the present invention at least has the advantages of small size, wide frequency band, low manufacturing cost, and beautification of the appearance of mobile devices, so it is very suitable for various types of applications. Among 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。本發明之行動裝置及天線結構並不僅限於第1-5圖所圖示之狀態。本發明可以僅包括第1-5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行動裝置及天線結構當中。It should be noted that the above-mentioned component size, component shape, and frequency range are not the limiting conditions of the present invention. The antenna designer can adjust these settings according to different needs. The mobile device and antenna structure of the present invention are not limited to the state shown in FIGS. 1-5. The present invention may only include any one or more of the features of any one or more of the embodiments in FIGS. 1-5. In other words, not all the features of the figures need to be implemented in the mobile device and the antenna structure of the present invention at the same time.

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., do not have a sequential relationship between each other, and they are only used to distinguish two having the same 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。Although the present invention is disclosed as above in the preferred embodiment, it is not intended to limit the scope of the present invention. Anyone who is familiar with the art can make some changes and modifications without departing from the spirit and scope of the present invention. Therefore, The scope of protection of the present invention shall be subject to those defined by the attached patent scope.

100,400:行動裝置 110:接地元件 120:第一輻射部 121:第一輻射部之第一端 122:第一輻射部之第二端 130:第二輻射部 131:第二輻射部之第一端 132:第二輻射部之第二端 135:第二輻射部之缺口 140:第三輻射部 141:第三輻射部之第一端 142:第三輻射部之第二端 150:第四輻射部 151:第四輻射部之第一端 152:第四輻射部之第二端 160:非金屬封閉區域 170:介質基板 190:信號源 480:第五輻射部 481:第五輻射部之第一端 482:第五輻射部之第二端 500:筆記型電腦 510:上蓋外殼 520:顯示器邊框 530:鍵盤邊框 540:底座外殼 551:第一位置 552:第二位置 CP1:第一連接點 CP2:第二連接點 CP3:第三連接點 CP4:第四連接點 FB1:第一頻帶 FB2:第二頻帶 FB3:第三頻帶 FP:饋入點 GC1:第一耦合間隙 GC2:第二耦合間隙 H1:總高度 L1,L2,L3,L4:長度 100,400: mobile devices 110: Grounding element 120: First Radiation Department 121: The first end of the first radiating part 122: The second end of the first radiating part 130: The second radiation department 131: The first end of the second radiating part 132: The second end of the second radiating part 135: The Gap of the Second Radiation Department 140: Third Radiation Department 141: The first end of the third radiating part 142: The second end of the third radiating part 150: Fourth Radiation Department 151: The first end of the fourth radiating part 152: The second end of the fourth radiating part 160: Non-metallic enclosed area 170: Dielectric substrate 190: signal source 480: Fifth Radiation Department 481: The first end of the fifth radiating part 482: The second end of the fifth radiating part 500: laptop 510: Upper cover shell 520: display frame 530: keyboard frame 540: Base shell 551: first position 552: second position CP1: the first connection point CP2: second connection point CP3: third connection point CP4: Fourth connection point FB1: First frequency band FB2: Second frequency band FB3: Third frequency band FP: feed point GC1: first coupling gap GC2: second coupling gap H1: total height L1, L2, L3, L4: length

第1圖係顯示根據本發明一實施例所述之行動裝置之示意圖。 第2圖係顯示根據本發明一實施例所述之行動裝置之天線結構之返回損失圖。 第3圖係顯示根據本發明一實施例所述之行動裝置之天線結構之輻射效率圖。 第4圖係顯示根據本發明另一實施例所述之行動裝置之示意圖。 第5圖係顯示根據本發明一實施例所述之筆記型電腦之示意圖。 Figure 1 is a schematic diagram of a mobile device according to an embodiment of the invention. FIG. 2 is a diagram showing the return loss of the antenna structure of the mobile device according to an embodiment of the present invention. FIG. 3 is a diagram showing the radiation efficiency of the antenna structure of the mobile device according to an embodiment of the invention. Fig. 4 is a schematic diagram of a mobile device according to another embodiment of the present invention. FIG. 5 is a schematic diagram of a notebook computer according to an embodiment of the invention.

100:行動裝置 100: mobile device

110:接地元件 110: Grounding element

120:第一輻射部 120: First Radiation Department

121:第一輻射部之第一端 121: The first end of the first radiating part

122:第一輻射部之第二端 122: The second end of the first radiating part

130:第二輻射部 130: The second radiation department

131:第二輻射部之第一端 131: The first end of the second radiating part

132:第二輻射部之第二端 132: The second end of the second radiating part

135:第二輻射部之缺口 135: The Gap of the Second Radiation Department

140:第三輻射部 140: Third Radiation Department

141:第三輻射部之第一端 141: The first end of the third radiating part

142:第三輻射部之第二端 142: The second end of the third radiating part

150:第四輻射部 150: Fourth Radiation Department

151:第四輻射部之第一端 151: The first end of the fourth radiating part

152:第四輻射部之第二端 152: The second end of the fourth radiating part

160:非金屬封閉區域 160: Non-metallic enclosed area

170:介質基板 170: Dielectric substrate

190:信號源 190: signal source

CP1:第一連接點 CP1: the first connection point

CP2:第二連接點 CP2: second connection point

CP3:第三連接點 CP3: third connection point

FP:饋入點 FP: feed point

GC1:第一耦合間隙 GC1: first coupling gap

GC2:第二耦合間隙 GC2: second coupling gap

H1:總高度 H1: total height

L1,L2,L3:長度 L1, L2, L3: length

Claims (9)

一種行動裝置,包括:一接地元件;一第一輻射部,耦接至該接地元件;一第二輻射部,具有一饋入點,並耦接至該接地元件;一第三輻射部,耦接至該第二輻射部,其中該第一輻射部係鄰近於該第二輻射部和該第三輻射部;一第四輻射部,耦接至該第二輻射部,其中該第二輻射部和該第四輻射部包圍住一非金屬封閉區域;以及一介質基板,其中該接地元件、該第一輻射部、該第二輻射部、該第三輻射部,以及該第四輻射部皆設置於該介質基板上;其中該接地元件、該第一輻射部、該第二輻射部、該第三輻射部、該第四輻射部,以及該介質基板共同形成一天線結構;其中該天線結構之總高度係小於或等於4mm。 A mobile device includes: a ground element; a first radiating part coupled to the ground element; a second radiating part having a feeding point and coupled to the ground element; a third radiating part coupled to the ground element Connected to the second radiating portion, wherein the first radiating portion is adjacent to the second radiating portion and the third radiating portion; a fourth radiating portion is coupled to the second radiating portion, wherein the second radiating portion And the fourth radiating portion surround a non-metallic enclosed area; and a dielectric substrate, wherein the grounding element, the first radiating portion, the second radiating portion, the third radiating portion, and the fourth radiating portion are all provided On the dielectric substrate; wherein the ground element, the first radiating portion, the second radiating portion, the third radiating portion, the fourth radiating portion, and the dielectric substrate together form an antenna structure; wherein the antenna structure The total height is less than or equal to 4mm. 如請求項1所述之行動裝置,其中該第一輻射部係呈現一蜿蜒形狀。 The mobile device according to claim 1, wherein the first radiating portion presents a serpentine shape. 如請求項1所述之行動裝置,其中該非金屬封閉區域係呈現一矩形。 The mobile device according to claim 1, wherein the non-metallic enclosed area presents a rectangle. 如請求項1所述之行動裝置,其中該第三輻射部和該第四輻射部各自呈現一直條形,並大致朝相反方向作延伸。 The mobile device according to claim 1, wherein the third radiating portion and the fourth radiating portion each present a straight strip shape, and extend substantially in opposite directions. 如請求項1所述之行動裝置,更包括: 一第五輻射部,耦接至該第一輻射部,其中該第三輻射部和該第五輻射部大致朝互相靠近之方向作延伸。 The mobile device as described in claim 1, further including: A fifth radiating part is coupled to the first radiating part, wherein the third radiating part and the fifth radiating part generally extend in a direction approaching each other. 如請求項1所述之行動裝置,其中該天線結構涵蓋一第一頻帶、一第二頻帶,以及一第三頻帶,該第一頻帶係介於2400MHz至2500MHz之間,該第二頻帶係介於5150MHz至5850MHz之間,而該第三頻帶係介於5925MHz至7125MHz之間。 The mobile device according to claim 1, wherein the antenna structure covers a first frequency band, a second frequency band, and a third frequency band, the first frequency band is between 2400MHz and 2500MHz, and the second frequency band is between Between 5150MHz and 5850MHz, and the third frequency band is between 5925MHz and 7125MHz. 如請求項6所述之行動裝置,其中該第一輻射部之長度係大致等於該第一頻帶之0.25倍波長。 The mobile device according to claim 6, wherein the length of the first radiating portion is substantially equal to 0.25 times the wavelength of the first frequency band. 如請求項6所述之行動裝置,其中該第二輻射部之長度係大致等於該第二頻帶之0.5倍波長。 The mobile device according to claim 6, wherein the length of the second radiating portion is approximately equal to 0.5 times the wavelength of the second frequency band. 如請求項6所述之行動裝置,其中該第三輻射部之長度係大致等於該第三頻帶之0.25倍波長。 The mobile device according to claim 6, wherein the length of the third radiating portion is substantially equal to 0.25 times the wavelength of the third frequency band.
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TWM379865U (en) * 2009-12-18 2010-05-01 Inpaq Technology Co Ltd Broadband antenna applicable to multiple band
TWM439910U (en) * 2012-04-16 2012-10-21 Wistron Neweb Corp Broadband antenna
TWI591893B (en) * 2015-06-01 2017-07-11 啟碁科技股份有限公司 Antenna and radio frequency signal transceiving device
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TWM379865U (en) * 2009-12-18 2010-05-01 Inpaq Technology Co Ltd Broadband antenna applicable to multiple band
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TWI591893B (en) * 2015-06-01 2017-07-11 啟碁科技股份有限公司 Antenna and radio frequency signal transceiving device
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