EP1672732A1 - Antenne du type en méandres à profil mince - Google Patents
Antenne du type en méandres à profil mince Download PDFInfo
- Publication number
- EP1672732A1 EP1672732A1 EP04257844A EP04257844A EP1672732A1 EP 1672732 A1 EP1672732 A1 EP 1672732A1 EP 04257844 A EP04257844 A EP 04257844A EP 04257844 A EP04257844 A EP 04257844A EP 1672732 A1 EP1672732 A1 EP 1672732A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- antenna
- portions
- loop
- open
- closed
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
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Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q1/00—Details of, or arrangements associated with, antennas
- H01Q1/12—Supports; Mounting means
- H01Q1/22—Supports; Mounting means by structural association with other equipment or articles
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q1/00—Details of, or arrangements associated with, antennas
- H01Q1/36—Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith
- H01Q1/38—Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith formed by a conductive layer on an insulating support
Definitions
- the present invention relates to a low-profile antenna for use in mobile computing devices, and more particularly, to an antenna having a meandering configuration.
- Fig. 1 shows a portion of a Personal Computer Memory Card International Association (PCMCIA) card having a wireless modem.
- PCMCIA Personal Computer Memory Card International Association
- U.S. Patent No. 5,373,149 assigned to AT&T Bell Laboratories, shows circuit card 76 having located thereon battery 80, antenna 82, infra-red transceiver 84, transmit/receive electronics 86 and electrical contacts 92.
- Antenna 82 depends on circuit card 76 to radiate. Since the personal computer used with the wireless modem also naturally radiates energy, the personal computer and the wireless modem interfere with each other.
- Fig. 2 shows an end of a PCMCIA wireless modem package opposite the end inserted into a PCMCIA slot of a computing device.
- U.S. Patent No. 5,583,521, assigned to GEC Plessey Semiconductors, Inc. shows PCMCIA package 3 with transparent containment 5 (suggested in phantom) that contains a low profile, paired L-shape antenna system including vertical legs 6a', 6b' and horizontal legs 6a", 6b" made of copper wire and separated in a diversity pattern. Horizontal legs 6a", 6b” meander in a horizontal plane within transparent containment 5.
- the antenna system avoids use of a conventional monopole whip antenna that cannot readily fit into a low profile enclosure.
- Shielded package 3 acts as a ground plane system for the antenna system.
- Fig. 3 shows an extendable whip antenna for use in a mobile telephone having a radiating element with a meandering and cylindrical configuration.
- U.S. Patent No. 6,351,241, assigned to Allgon AB shows elongated dielectric portion 30 having a length essentially equal to the length of cylindrically configured meander element 35.
- Impedance matching means 32 connects to a feed point of meander element 35, is integrated on dielectric carrier 33, and includes contacts at its base for connection to signal and ground connectors of the telephone.
- the meander antenna provides a greater bandwidth, improved production tolerances leading to less rejections, a lower degree of coupling to any adjacent radiators greatly improving multi-band operability and integration of a matching network using at least partly the same manufacturing technique.
- the whip antenna cannot fit into a low-profile package.
- the wireless modem as well as the personal computer used with the wireless modem, naturally radiates energy, the personal computer and the wireless modem interfere with each other. Accordingly, it is desirable to provide a wireless modem in a low-profile package that is more immune to interference from the computing device with which the wireless modem is used.
- an antenna comprising a first portion having a meandering path and two ends, and second and third portions, each having a straight path and connected to respective ends of the first portion.
- the meander length is based on the full electrical wavelength of a signal being transmitted or received.
- the antenna may have an open-loop configuration, or a closed-loop configuration and a matching network coupled to the second and third portions.
- the antenna typically has a low-profile configuration, the first portion being horizontal, and the second and third portions being vertical.
- the antenna has an average gain of -2.5 dBi or better, and a peak gain of 0.1 dBi or better.
- the antenna also has fourth and fifth portions each having a meandering path, the fourth portion connected to the second portion, the fifth portion connected to the third portion, so that the first, second, third, fourth and fifth portions are in series.
- an open-loop antenna comprising first, second, third, fourth and fifth portions connected serially.
- the first, third and fifth portions have meandering paths, and the fifth portion is coupled to a current source or transceiver.
- a closed-loop antenna comprising a matching network that is coupled to a current source or transceiver, and first, second, third, fourth and fifth portions connected serially.
- the first, third and fifth portions have meandering paths, and the first and fifth portions are connected to the matching network.
- a low profile antenna has a meander length based on the full electrical wavelength of the signal being transmitted or received.
- the antenna can have either an open-loop structure or a closed-loop structure with a matching network.
- low profile means having a height that is generally less than the height of the device, such as a personal computer, to which the antenna including the circuit board for the antenna is coupled, and without an extendable whip antenna.
- the low profile enables the antenna to be used in a card for a device such as a personal computer, personal digital assistant, wireless telephone and so on with minimal risk of the antenna breaking off, as compared with a prior art antenna having a higher height and thus more likelihood of being broken from its card.
- the low profile antenna is carefully designed so that it avoids using its card as a radiator, that is, its radiation pattern is based on the low profile antenna and not associated structures such as the card or the device that the card is used with.
- Fig. 4A shows open-loop antenna 100 on PCMCIA card 150 having side portions 105, 115, top portion 110, bottom left portion 120 and bottom right portion 130. Side portions 105, 115 have straight paths. Top and bottom portions 110, 120, 130 have meandering paths. Bottom left portion 120 has a floating end. Bottom right portion 130 is coupled to a current source or transceiver.
- side portions 105, 115 have meandering paths.
- Open-loop antenna 100 generally has a width that is determined by the width of PCMCIA card 150, and a height that is about one-half of its width. Increasing the height of open-loop antenna 100 reduces the length of the meander portions needed to obtain a full wavelength, thereby allowing more current to flow in the vertical direction and increasing the antenna's efficiency.
- Fig. 4B shows measurements of open-loop antenna 100 in mm. Its overall width is seen to be about 64 mm and its height is about 32 mm.
- Figs. 5A-5C show different meander configurations: a Roman key-type meander, a sinusoidal meander and a sawtooth meander.
- the meander sections are electrical delay lines and could be any shape such as those shown in Figs. 5A-5C, an inverted ⁇ shape, and so on.
- Fig. 6A shows closed-loop antenna 200 on PCMCIA card 250 having side portions 205, 215, top portion 210, bottom left portion 220 and bottom right portion 230. All of portions 205, 215, 210, 220, 230 have meandering paths. Bottom left portion 220 and bottom right portion 230 are coupled to matching network 240, which is coupled to a current source or transceiver.
- side portions 205, 215 have straight, non-meandering paths.
- Matching network 240 is designed to match antenna 200 to a typical 50 ohm load presented by the source or transceiver that antenna 200 is coupled to.
- a typical matching network is a T-type or Pi-type, known to those of ordinary skill in the art of antenna design.
- FIG. 6B shows measurements of closed-loop antenna 200 in mm. Its overall width is seen to be about 42 mm and its height is about 30 mm.
- Figs. 7A-7C are antenna gain patterns for open-loop antenna 100 in the XY, XZ and YZ planes, respectively, for a signal at 915 MHz.
- the peak antenna gain is 0.59 dBi.
- the average gain is -2.11 dBi.
- the X-plane corresponds to the long dimension of card 150.
- the Y-plane corresponds to the short dimension of card 150.
- the Z-plane corresponds to the height of card 150.
- Theta and phi refer to (r, ⁇ , ⁇ ) spherical coordinates, instead of (x, y, z) Cartesian coordinates. It will be recalled that a gain of -3 dBi corresponds to half of the signal energy being dissipated, whereas a gain of -2 dBi means less than half of the signal energy is dissipated.
- Figs. 8A-8C are antenna gain patterns for closed-loop antenna 200 in the XY, XZ and YZ planes, respectively, for a signal at 915 MHz.
- Theantenna gain is 0.19 dBi.
- the average gain is -2.42 dBi.
- Fig. 9 shows return loss for open-loop antenna 100.
- Fig. 10 shows return loss for closed-loop antenna 200.
- Fig. 11 shows impedance for open-loop antenna 100.
- Fig. 12 shows impedance for closed-loop antenna 200.
Landscapes
- Details Of Aerials (AREA)
- Support Of Aerials (AREA)
- Transceivers (AREA)
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP04257844A EP1672732B1 (fr) | 2004-12-16 | 2004-12-16 | Antenne du type en méandres à profil mince |
DE602004007023T DE602004007023T2 (de) | 2004-12-16 | 2004-12-16 | Mäanderförmige Antenne mit niedrigem Profil |
AT04257844T ATE364910T1 (de) | 2004-12-16 | 2004-12-16 | Mäanderförmige antenne mit niedrigem profil |
HK06113370A HK1091598A1 (en) | 2004-12-16 | 2006-12-05 | Low profile full wavelength meander type antenna |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP04257844A EP1672732B1 (fr) | 2004-12-16 | 2004-12-16 | Antenne du type en méandres à profil mince |
Publications (2)
Publication Number | Publication Date |
---|---|
EP1672732A1 true EP1672732A1 (fr) | 2006-06-21 |
EP1672732B1 EP1672732B1 (fr) | 2007-06-13 |
Family
ID=34930926
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP04257844A Active EP1672732B1 (fr) | 2004-12-16 | 2004-12-16 | Antenne du type en méandres à profil mince |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP1672732B1 (fr) |
AT (1) | ATE364910T1 (fr) |
DE (1) | DE602004007023T2 (fr) |
HK (1) | HK1091598A1 (fr) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2011015511A1 (fr) * | 2009-08-07 | 2011-02-10 | Siemens Aktiengesellschaft | Antenne pour systèmes d'identification radiofréquence, procédés de configuration de celle-ci et lecteur d'identification radiofréquence |
CN102299406A (zh) * | 2011-06-16 | 2011-12-28 | 上海安费诺永亿通讯电子有限公司 | 一种用于移动终端的多频天线 |
WO2014147097A1 (fr) * | 2013-03-19 | 2014-09-25 | Université Lyon 1 Claude Bernard | Antenne radioelectrique et dispositif radioelectrique |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6147655A (en) * | 1998-11-05 | 2000-11-14 | Single Chip Systems Corporation | Flat loop antenna in a single plane for use in radio frequency identification tags |
EP1189304A2 (fr) * | 2000-09-19 | 2002-03-20 | Sony Corporation | Dispositif d'antenne et module de carte de communication radio avec une telle antenne |
US20020080088A1 (en) * | 2000-12-16 | 2002-06-27 | Koninklijke Philips Electronics N.V. | Antenna arrangement |
-
2004
- 2004-12-16 DE DE602004007023T patent/DE602004007023T2/de active Active
- 2004-12-16 AT AT04257844T patent/ATE364910T1/de not_active IP Right Cessation
- 2004-12-16 EP EP04257844A patent/EP1672732B1/fr active Active
-
2006
- 2006-12-05 HK HK06113370A patent/HK1091598A1/xx not_active IP Right Cessation
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6147655A (en) * | 1998-11-05 | 2000-11-14 | Single Chip Systems Corporation | Flat loop antenna in a single plane for use in radio frequency identification tags |
EP1189304A2 (fr) * | 2000-09-19 | 2002-03-20 | Sony Corporation | Dispositif d'antenne et module de carte de communication radio avec une telle antenne |
US20020080088A1 (en) * | 2000-12-16 | 2002-06-27 | Koninklijke Philips Electronics N.V. | Antenna arrangement |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2011015511A1 (fr) * | 2009-08-07 | 2011-02-10 | Siemens Aktiengesellschaft | Antenne pour systèmes d'identification radiofréquence, procédés de configuration de celle-ci et lecteur d'identification radiofréquence |
CN102299406A (zh) * | 2011-06-16 | 2011-12-28 | 上海安费诺永亿通讯电子有限公司 | 一种用于移动终端的多频天线 |
WO2012171482A1 (fr) * | 2011-06-16 | 2012-12-20 | 上海安费诺永亿通讯电子有限公司 | Antenne multi-bande pour terminal mobile |
CN102299406B (zh) * | 2011-06-16 | 2014-09-24 | 上海安费诺永亿通讯电子有限公司 | 一种用于移动终端的多频天线 |
WO2014147097A1 (fr) * | 2013-03-19 | 2014-09-25 | Université Lyon 1 Claude Bernard | Antenne radioelectrique et dispositif radioelectrique |
FR3003696A1 (fr) * | 2013-03-19 | 2014-09-26 | Univ Lyon 1 Claude Bernard | Antenne radioelectrique et dispositif radioelectrique |
Also Published As
Publication number | Publication date |
---|---|
HK1091598A1 (en) | 2007-01-19 |
ATE364910T1 (de) | 2007-07-15 |
EP1672732B1 (fr) | 2007-06-13 |
DE602004007023D1 (de) | 2007-07-26 |
DE602004007023T2 (de) | 2008-02-14 |
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