WO2018018368A1 - Terminal mobile et son système de communication - Google Patents
Terminal mobile et son système de communication Download PDFInfo
- Publication number
- WO2018018368A1 WO2018018368A1 PCT/CN2016/091585 CN2016091585W WO2018018368A1 WO 2018018368 A1 WO2018018368 A1 WO 2018018368A1 CN 2016091585 W CN2016091585 W CN 2016091585W WO 2018018368 A1 WO2018018368 A1 WO 2018018368A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- mobile terminal
- contact
- communication
- pole
- external access
- Prior art date
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Classifications
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
- G06F3/0488—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
Definitions
- the present invention relates to the technical field of communication connection of a mobile terminal, and in particular to a mobile terminal and a communication system thereof.
- USB interface At present, most existing methods for realizing data connection between mobile terminals and other devices adopt USB interface, including early Mini. USB interface and current general purpose Micro USB3.0 interface.
- the disadvantage is that a hole must be opened at the bottom or side of the mobile terminal (such as a mobile phone), and a USB interface is installed in the hole. After the hole is opened, external dust, liquid, etc. easily enter the inside of the mobile terminal, affecting the internal circuit of the mobile terminal. Normal operation; and the joints and interfaces are frequently inserted and removed, which is easy to damage.
- the embodiment of the invention provides a mobile terminal and a communication system thereof to solve the technical problem that the communication interface of the mobile terminal is easily damaged and the pollutants such as dust inside the mobile terminal are introduced in the prior art.
- an embodiment of the present invention provides a mobile terminal, where the mobile terminal includes at least one communication component embedded on a side of a casing thereof, the communication component includes a connection unit and a plurality of contact contacts, a connecting unit is disposed in the immediate vicinity of the plurality of contact contacts, and the connecting unit is configured to align the mobile terminal with the external access terminal, so that the plurality of contact contacts and the external access end correspond to the touch Conductive communication between points.
- the connecting unit is a magnet block embedded in a side of the casing of the mobile terminal.
- the connecting unit comprises two magnet blocks, and the two magnet blocks are respectively disposed with the N pole and the S pole facing outward.
- the mobile terminal is respectively provided with communication components on opposite sides, and the magnet blocks of the oppositely disposed communication components are opposite to each other.
- the mobile terminal is provided with communication components on four sides, and the magnet blocks of the communication components disposed on opposite sides are opposite to each other.
- the N pole and the S pole of the two magnet blocks are respectively aligned with the S pole and the N pole of the external access end to make the contact contact on the mobile terminal and the external access terminal
- the upper contacts are in contact with the contacts, thereby enabling data communication transmission.
- the contact contact is disposed to protrude from the side of the mobile terminal casing to ensure that the mobile terminal can contact the contact on the external access terminal when performing the alignment cooperation with the external access terminal.
- the present invention further provides a communication system based on a mobile terminal, the communication system comprising the mobile terminal according to any one of the above two embodiments, wherein the mobile terminal utilizes an optical communication component Connect and communicate with each other.
- the data processing mode of the parallel processing is adopted between the mobile terminals.
- the mobile terminal adopts touch screen control.
- data on a certain mobile terminal needs to be transmitted to another mobile terminal connected thereto, data on the mobile terminal that is first touched is used as data of the transmitting end.
- the mobile terminal that is touch-clicked is used as the data receiving end; the data is transmitted between the mobile terminals by two touch-and-click processes.
- the mobile terminal and the communication system provided by the present invention realize the alignment connection of the contact contacts by providing a magnet with a smart structure as the suction connection unit and relying on the magnetic engagement of the magnet. Furthermore, the data communication transmission of the mobile terminal is realized, and the structure is simple and easy to operate.
- the mobile terminal of the structure can connect a plurality of mobile terminals to form a matrix, and adopt a parallel processing data processing manner between the mobile terminals, and when the data needs to be transmitted between the mobile terminals, the transmission speed is supported.
- the data transmission can be completed by only two touch and click operations, which greatly improves the convenience of the user to transfer data between the mobile terminals.
- FIG. 1 is a front elevational view showing the structure of a first embodiment of a mobile terminal of the present invention
- FIG. 2 is a schematic structural diagram of an optical communication component of a mobile terminal in the embodiment of FIG. 1;
- Figure 3 is a front elevational view showing the structure of a second embodiment of the mobile terminal of the present invention.
- Figure 4 is a front elevational view showing the structure of a third embodiment of the mobile terminal of the present invention.
- Figure 5 is a front elevational view showing the structure of a fourth embodiment of the mobile terminal of the present invention.
- FIG. 6 is a schematic structural diagram of a communication component of a mobile terminal in the embodiment of FIG. 5;
- FIG. 7 is a schematic structural diagram of a preferred embodiment of a communication system based on a mobile terminal according to the present invention.
- FIG. 1 is a front view showing a structure of a mobile terminal according to a first embodiment of the present invention
- FIG. 2 is a schematic structural view of an optical communication component of the mobile terminal in the embodiment of FIG. 1.
- the mobile terminal 100 in this embodiment includes an optical communication component 110 that is mounted on the side of its housing.
- the mobile terminal in all embodiments of the present invention may be a mobile communication device such as a mobile phone, a tablet computer (PAD), or a notebook computer.
- the optical communication component 110 includes a connection unit 111 and an optical communication sensor 112, wherein the connection unit 111 is disposed in close proximity to the optical communication sensor 112, and the connection unit 111 is configured to align the mobile terminal 100 with an external access terminal to enable light.
- Communication sensor 112 is in optical communication with an external access terminal.
- the connecting unit 111 is a magnet block embedded in a side of the mobile terminal casing.
- the connecting unit 111 includes two magnet blocks, and the two magnet blocks are respectively disposed with the N pole and the S pole facing outward.
- the shape of the magnet block may be square, circular, or the like, and is not specifically limited herein.
- the magnet block can be a permanent magnet. It should be noted that, in FIG. 2, the structure of the magnet is indicated in the figure, wherein the magnet may also be disposed inside the outer casing of the mobile terminal 100, so that only the optical communication sensor 112 should be indicated in FIG. structure.
- the optical communication sensor 112 is preferably an infrared sensor, and the infrared sensor includes a signal transmitter 1121 and a signal receiver 1122.
- the infrared communication has a wavelength range of 0.70 ⁇ m to 1 mm.
- the two magnet blocks and the signal transmitter 1121 and the signal receiver 1122 are arranged in a straight line.
- other arrangements may be used, which are understood by those skilled in the art. Therefore, it will not be described here.
- Infrared communication uses infrared rays in the 950 nm near-infrared band as a medium for transmitting information, that is, a communication channel.
- the signal transmitter 1121 modulates the baseband binary signal into a series of burst signals, and transmits an infrared signal through the infrared transmitting tube.
- the signal receiver 1122 converts the received optical pulse into an electrical signal, and then performs processing such as amplification, filtering, etc., and then sends it to the demodulation circuit for demodulation, and restores it to a binary digital signal and outputs it.
- PWM pulse width modulation
- PPM pulse time modulation
- infrared communication interfaces are modems for infrared channels.
- Infrared communication is currently widely used for auxiliary communication between coastal islands, indoor communication, close-range remote control, in-air broadcasting, and communication between astronauts in space shuttles.
- Infrared has large capacity, strong confidentiality, good anti-electromagnetic interference performance, simple structure, small size, light weight and low price; but it is susceptible to climate impact when transmitted in the atmospheric channel.
- the infrared wavelength range is 0.70 ⁇ m to 1 mm, and the wave in the region of 300 ⁇ m to 1 mm is also called submillimeter wave.
- the effect of the atmosphere on the transmission of infrared radiation is mainly absorption and scattering.
- the present invention utilizes the N pole and the S pole of the two magnet blocks to respectively align with the S pole and the N pole of the external access terminal, so that the signal transmitter 1121 and the signal of the infrared sensor 112 of the mobile terminal 100 are respectively.
- the receiver 1122 is respectively aligned with the signal receiver and the signal transmitter of the external access terminal, that is, when the mobile terminal 100 cooperates with the external access terminal, the signal transmitter 1121 and the signal receiver 1122 of the infrared sensor 112 respectively and the external
- the signal receiver and the signal transmitter of the access terminal are closely aligned (accurately), thereby greatly improving the transmission efficiency of the infrared sensor 112.
- FIG. 3 is a front view showing a structure of a mobile terminal according to a second embodiment of the present invention.
- the mobile terminal 100 of the embodiment is provided with optical communication components on opposite sides of the mobile terminal 100. 110.
- the magnet blocks of the optical communication components 110 disposed opposite each other are opposite to each other. That is, in the figure, the upper magnet block N of the left optical communication component 110 is facing outward, and the lower magnet block S is facing outward; and the magnet block S located above the right optical communication component 110 is facing outward. The magnet block located below is N pole facing outward.
- the structure of other parts of the optical communication component 110 (including the optical communication sensor 112 and the like) is the same as that of the previous embodiment and will not be repeated here.
- the optical communication component 110 in this embodiment is disposed on the left and right sides of the mobile terminal 100. In other embodiments, the optical communication component 110 may also be disposed on the upper and lower sides of the mobile terminal.
- FIG. 4 is a front elevational view showing the structure of a third embodiment of the mobile terminal of the present invention.
- the mobile terminal 100 is provided with optical communication components 110 on four sides, and the magnet blocks of the optical communication components 110 disposed on opposite sides are opposite to each other.
- the upper magnet block N of the left optical communication component 110 is outwardly facing outward, and the lower magnet block S is facing outward; the magnet block S located above the right optical communication component 110 is oppositely disposed.
- the magnet block N located at the lower side faces outward; the magnet block N on the left side of the top side-side optical communication component 110 faces outward, and the magnet block S on the right side faces the outer side; opposite to the bottom side optical communication component 110
- the magnet block S on the left side is facing outward, and the magnet block N on the right side is facing outward.
- the structure of other parts of the optical communication component 110 (including the optical communication sensor 112 and the like) is the same as that of the previous embodiment and will not be repeated here.
- two or more optical communication components 110 may also be disposed on each side of the mobile terminal 100.
- the mobile terminal provided in this embodiment realizes the alignment connection of the optical communication sensor by providing a magnet with a smart structure as the suction connection unit and relying on the magnetic cooperation of the magnet.
- the structure is simple and easy to operate. Since the data transmission speed of optical communication can reach 3.7 GB/s, the present invention utilizes an infrared sensor as a signal transmission medium to realize data transmission of the mobile terminal.
- FIG. 5 is a front view showing the structure of a fourth embodiment of the mobile terminal of the present invention.
- the mobile terminal 200 in this embodiment includes a communication component 210 that is mounted on the side of its housing.
- FIG. 6 is a schematic structural diagram of a communication component of the mobile terminal in the embodiment of FIG. 5.
- the communication component 210 includes a connection unit 211 and a plurality of contact contacts 212.
- the connection unit 211 is disposed in close proximity to the plurality of contact contacts 212, and the connection unit 211 is configured to align the mobile terminal 200 with the external access terminal. Conductive communication is made between the plurality of contact contacts 212 and the corresponding contacts of the external access terminals.
- the connecting unit 211 is a magnet block embedded in a side of the casing of the mobile terminal.
- the connecting unit 211 includes two magnet blocks, and the shape of the magnet block may be square, circular, or the like, which is not specifically limited herein. And the two magnet blocks are respectively disposed with the N pole and the S pole facing outward.
- the magnet block can be a permanent magnet. It should be noted that, in FIG. 6 , the structure of the magnet is shown in the figure, wherein the magnet can also be disposed inside the outer casing of the mobile terminal 200 , then only the contact contact 212 should be indicated in FIG. 6 . Structure.
- the contact contact 212 is disposed to protrude from the side of the mobile terminal housing to ensure that the mobile terminal 200 can be in contact with the contact on the external access terminal when it is in an alignment fit with the external access terminal.
- the two magnet blocks and the plurality of contact contacts 212 are arranged in a straight line.
- other arrangements may be used, which are within the understanding of those skilled in the art. I won't go into details here.
- the N pole and the S pole of the two magnet blocks are respectively aligned with the S pole and the N pole of the external access terminal, so that the contact contact 212 on the mobile terminal 200 is in contact with the contact on the external access terminal. , in turn, to achieve data communication transmission.
- the mobile terminal 200 may further be provided with a communication component 210 on opposite sides and a communication component 210 on all four sides.
- the magnet blocks of the communication assembly 210 disposed on opposite sides are opposite to the outer pole.
- the magnet block N on the upper side of the left communication component 210 in FIG. 3 is facing outward, and the magnet block S on the lower side is facing outward; the magnet block S located above the opposite side of the right communication component 210 is located outward.
- the lower magnet block N is facing outward.
- the magnet block N on the left side of the top side-side communication component 210 is outwardly facing outward, and the magnet block S on the right side is facing outward; the magnet block S on the left side opposite to the bottom side communication component 210 is disposed outwardly, and The magnet block on the right side is facing out.
- two or more communication components 210 can also be provided on each side of the mobile terminal 200.
- the mobile terminal provided by this embodiment realizes the alignment connection of the contact contacts by providing a magnet with a smart structure as the suction connection unit and relying on the magnetic engagement of the magnet. Furthermore, the data communication transmission of the mobile terminal is realized, and the structure is simple and easy to operate.
- FIG. 7 is a schematic structural diagram of a mobile terminal-based communication system according to a preferred embodiment of the present invention.
- the communication system in this embodiment includes four mobiles.
- the terminal 100 (200) and the mobile terminal 100 (200) are connected and communicated with each other by using a communication component.
- the specific structure of the mobile terminal is as follows.
- FIG. 1 is a front view showing a structure of a mobile terminal according to a first embodiment of the present invention
- FIG. 2 is a schematic structural view of an optical communication component of the mobile terminal in the embodiment of FIG. 1.
- the mobile terminal 100 in this embodiment includes an optical communication component 110 that is mounted on the side of its housing.
- the optical communication component 110 includes a connection unit 111 and an optical communication sensor 112, wherein the connection unit 111 is disposed in close proximity to the optical communication sensor 112, and the connection unit 111 is configured to align the mobile terminal 100 with an external access terminal to enable light.
- Communication sensor 112 is in optical communication with an external access terminal.
- the connecting unit 111 is a magnet block embedded in a side of the mobile terminal casing.
- the connecting unit 111 includes two magnet blocks, and the two magnet blocks are respectively disposed with the N pole and the S pole facing outward.
- the shape of the magnet block may be square, circular, or the like, and is not specifically limited herein.
- the magnet block can be a permanent magnet. It should be noted that, in FIG. 2, the structure of the magnet is indicated in the figure, wherein the magnet may also be disposed inside the outer casing of the mobile terminal 100, so that only the optical communication sensor 112 should be indicated in FIG. structure.
- the optical communication sensor 112 is preferably an infrared sensor, and the infrared sensor includes a signal transmitter 1121 and a signal receiver 1122.
- the infrared communication has a wavelength range of 0.70 ⁇ m to 1 mm.
- the two magnet blocks and the signal transmitter 1121 and the signal receiver 1122 are arranged in a straight line.
- other arrangements may be used, which are understood by those skilled in the art. Therefore, it will not be described here.
- Infrared communication uses infrared rays in the 950 nm near-infrared band as a medium for transmitting information, that is, a communication channel.
- the signal transmitter 1121 modulates the baseband binary signal into a series of burst signals, and transmits an infrared signal through the infrared transmitting tube.
- the signal receiver 1122 converts the received optical pulse into an electrical signal, and then performs processing such as amplification, filtering, etc., and then sends it to the demodulation circuit for demodulation, and restores it to a binary digital signal and outputs it.
- PWM pulse width modulation
- PPM pulse time modulation
- infrared communication interfaces are modems for infrared channels.
- Infrared communication is currently widely used for auxiliary communication between coastal islands, indoor communication, close-range remote control, in-air broadcasting, and communication between astronauts in space shuttles.
- Infrared has large capacity, strong confidentiality, good anti-electromagnetic interference performance, simple structure, small size, light weight and low price; but it is susceptible to climate impact when transmitted in the atmospheric channel.
- the infrared wavelength range is 0.70 ⁇ m to 1 mm, and the wave in the region of 300 ⁇ m to 1 mm is also called submillimeter wave.
- the effect of the atmosphere on the transmission of infrared radiation is mainly absorption and scattering.
- the present invention utilizes the N pole and the S pole of the two magnet blocks to respectively align with the S pole and the N pole of the external access terminal, so that the signal transmitter 1121 and the signal of the infrared sensor 112 of the mobile terminal 100 are respectively.
- the receiver 1122 is respectively aligned with the signal receiver and the signal transmitter of the external access terminal, that is, when the mobile terminal 100 cooperates with the external access terminal, the signal transmitter 1121 and the signal receiver 1122 of the infrared sensor 112 respectively and the external
- the signal receiver and the signal transmitter of the access terminal are closely aligned (accurately), thereby greatly improving the transmission efficiency of the infrared sensor 112.
- FIG. 3 is a front view showing a structure of a mobile terminal according to a second embodiment of the present invention.
- the mobile terminal 100 of the embodiment is provided with optical communication components on opposite sides of the mobile terminal 100. 110.
- the magnet blocks of the optical communication components 110 disposed opposite each other are opposite to each other. That is, in the figure, the upper magnet block N of the left optical communication component 110 is facing outward, and the lower magnet block S is facing outward; and the magnet block S located above the right optical communication component 110 is facing outward. The magnet block located below is N pole facing outward.
- the structure of other parts of the optical communication component 110 (including the optical communication sensor 112 and the like) is the same as that of the previous embodiment and will not be repeated here.
- the optical communication component 110 in this embodiment is disposed on the left and right sides of the mobile terminal 100. In other embodiments, the optical communication component 110 may also be disposed on the upper and lower sides of the mobile terminal.
- FIG. 4 is a front elevational view showing the structure of a third embodiment of the mobile terminal of the present invention.
- the mobile terminal 100 is provided with optical communication components 110 on four sides, and the magnet blocks of the optical communication components 110 disposed on opposite sides are opposite to each other.
- the upper magnet block N of the left optical communication component 110 is outwardly facing outward, and the lower magnet block S is facing outward; the magnet block S located above the right optical communication component 110 is oppositely disposed.
- the magnet block N located at the lower side faces outward; the magnet block N on the left side of the top side-side optical communication component 110 faces outward, and the magnet block S on the right side faces the outer side; opposite to the bottom side optical communication component 110
- the magnet block S on the left side is facing outward, and the magnet block N on the right side is facing outward.
- the structure of other parts of the optical communication component 110 (including the optical communication sensor 112 and the like) is the same as that of the previous embodiment and will not be repeated here.
- two or more optical communication components 110 may also be disposed on each side of the mobile terminal 100.
- the mobile terminal provided in this embodiment realizes the alignment connection of the optical communication sensor by providing a magnet with a smart structure as the suction connection unit and relying on the magnetic cooperation of the magnet.
- the structure is simple and easy to operate. Since the data transmission speed of optical communication can reach 3.7 GB/s, the present invention utilizes an infrared sensor as a signal transmission medium to realize data transmission of the mobile terminal.
- FIG. 5 is a front view showing the structure of a fourth embodiment of the mobile terminal of the present invention.
- the mobile terminal 200 in this embodiment includes a communication component 210 that is mounted on the side of its housing.
- FIG. 6 is a schematic structural diagram of a communication component of the mobile terminal in the embodiment of FIG. 5.
- the communication component 210 includes a connection unit 211 and a plurality of contact contacts 212.
- the connection unit 211 is disposed in close proximity to the plurality of contact contacts 212, and the connection unit 211 is configured to align the mobile terminal 200 with the external access terminal. Conductive communication is made between the plurality of contact contacts 212 and the corresponding contacts of the external access terminals.
- the connecting unit 211 is a magnet block embedded in a side of the casing of the mobile terminal.
- the connecting unit 211 includes two magnet blocks, and the shape of the magnet block may be square, circular, or the like, which is not specifically limited herein. And the two magnet blocks are respectively disposed with the N pole and the S pole facing outward.
- the magnet block can be a permanent magnet. It should be noted that, in FIG. 6 , the structure of the magnet is shown in the figure, wherein the magnet can also be disposed inside the outer casing of the mobile terminal 200 , then only the contact contact 212 should be indicated in FIG. 6 . Structure.
- the contact contact 212 is disposed to protrude from the side of the mobile terminal housing to ensure that the mobile terminal 200 can be in contact with the contact on the external access terminal when it is in an alignment fit with the external access terminal.
- the two magnet blocks and the plurality of contact contacts 212 are arranged in a straight line.
- other arrangements may be used, which are within the understanding of those skilled in the art. I won't go into details here.
- the N pole and the S pole of the two magnet blocks are respectively aligned with the S pole and the N pole of the external access terminal, so that the contact contact 212 on the mobile terminal 200 is in contact with the contact on the external access terminal. , in turn, to achieve data communication transmission.
- the mobile terminal 200 may further be provided with a communication component 210 on opposite sides and a communication component 210 on all four sides.
- the magnet blocks of the communication assembly 210 disposed on opposite sides are opposite to the outer pole.
- the magnet block N on the upper side of the left communication component 210 in FIG. 3 is facing outward, and the magnet block S on the lower side is facing outward; the magnet block S located above the opposite side of the right communication component 210 is located outward.
- the lower magnet block N is facing outward.
- the magnet block N on the left side of the top side-side communication component 210 is outwardly facing outward, and the magnet block S on the right side is facing outward; the magnet block S on the left side opposite to the bottom side communication component 210 is disposed outwardly, and The magnet block on the right side is facing out.
- two or more communication components 210 can also be provided on each side of the mobile terminal 200.
- the mobile terminal provided by this embodiment realizes the alignment connection of the contact contacts by providing a magnet with a smart structure as the suction connection unit and relying on the magnetic engagement of the magnet. Furthermore, the data communication transmission of the mobile terminal is realized, and the structure is simple and easy to operate.
- the data processing mode of the parallel processing is adopted between the mobile terminals.
- the mobile terminal 100 (200) adopts touch screen control.
- the data on the mobile terminal that is first touched is used as the data of the transmitting end, and then The mobile terminal that is touched and clicked as the data receiving end; the data is transmitted between the mobile terminals by two touch and click processes.
- the data transmission process is as follows: first click on the data icon 55 on the touch screen of a certain mobile terminal, and then slide to (or click) on the touch screen of another mobile terminal connected thereto, so that the data is transmitted from one mobile terminal to another. terminal.
- first click on the data icon 55 on the touch screen of a certain mobile terminal and then slide to (or click) on the touch screen of another mobile terminal connected thereto, so that the data is transmitted from one mobile terminal to another. terminal.
- data transmission between adjacent mobile terminals is set in the embodiment illustration, in theory, as long as the mobile terminals that are connected to each other (including indirect communication) can perform data transmission, such as diagonally located in the figure. It can be between two mobile terminals.
- the communication system provided by the embodiment provides a signal transmission connector (photosensor or contact contact) by bit connection by providing a smart magnet as a suction connection unit and magnetic attraction of the magnet.
- the structure is simple and easy to operate.
- the connection form of the mobile terminal can connect a plurality of mobile terminals to form a matrix, and adopt a parallel processing data processing manner between the mobile terminals, and when the data needs to be transmitted between the mobile terminals, the transmission speed is supported (
- the data transmission speed of optical communication can reach 3.7GB/s, and the contact transmission speed can be higher.
- the data transmission can be completed with only two touch and click operations, which greatly improves the convenience of users transmitting data between mobile terminals. .
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- Telephone Set Structure (AREA)
Abstract
Un terminal mobile et son système de communication. Le terminal mobile (200) comprend : au moins un ensemble de communication (210) disposé de manière intégrée sur un côté d'un boîtier du terminal mobile ; l'ensemble de communication (210) comprend : une unité de connexion (211) et une pluralité de contacts (212); l'unité de connexion (211) est disposée de manière adjacente à la pluralité de contacts (212); l'unité de connexion (211) est utilisée pour aligner et connecter le terminal mobile (200) à une borne d'accès externe, de manière à permettre à la pluralité de contacts (212) de communiquer de manière conductrice avec les contacts correspondants du terminal d'accès externe. Par rapport à l'état de la technique, en utilisant des aimants agencés et structurés de manière intelligente en tant qu'unité de connexion magnétique, le terminal mobile (200) est capable d'assurer l'alignement et la connexion des contacts grâce aux effets magnétiques des aimants. Le terminal mobile est donc capable de réaliser une communication et une transmission de données, tout en ayant une structure simple et des fonctionnements faciles.
Priority Applications (1)
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PCT/CN2016/091585 WO2018018368A1 (fr) | 2016-07-25 | 2016-07-25 | Terminal mobile et son système de communication |
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PCT/CN2016/091585 WO2018018368A1 (fr) | 2016-07-25 | 2016-07-25 | Terminal mobile et son système de communication |
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Citations (4)
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CN201528369U (zh) * | 2009-02-18 | 2010-07-14 | 三星电子株式会社 | 具有可装卸的副显示部的便携式终端 |
US20110070837A1 (en) * | 2009-09-24 | 2011-03-24 | Research In Motion Limited | Communications device using electromagnet and activated communications circuit |
CN102469380A (zh) * | 2010-11-17 | 2012-05-23 | 宏达国际电子股份有限公司 | 可携式电子装置 |
CN103986809A (zh) * | 2014-05-30 | 2014-08-13 | 青岛天方爱九九商务有限公司 | 一种分屏手机组件及分屏显示的方法 |
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2016
- 2016-07-25 WO PCT/CN2016/091585 patent/WO2018018368A1/fr active Application Filing
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN201528369U (zh) * | 2009-02-18 | 2010-07-14 | 三星电子株式会社 | 具有可装卸的副显示部的便携式终端 |
US20110070837A1 (en) * | 2009-09-24 | 2011-03-24 | Research In Motion Limited | Communications device using electromagnet and activated communications circuit |
CN102469380A (zh) * | 2010-11-17 | 2012-05-23 | 宏达国际电子股份有限公司 | 可携式电子装置 |
CN103986809A (zh) * | 2014-05-30 | 2014-08-13 | 青岛天方爱九九商务有限公司 | 一种分屏手机组件及分屏显示的方法 |
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