WO2009081699A1 - 携帯機器 - Google Patents
携帯機器 Download PDFInfo
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- WO2009081699A1 WO2009081699A1 PCT/JP2008/071892 JP2008071892W WO2009081699A1 WO 2009081699 A1 WO2009081699 A1 WO 2009081699A1 JP 2008071892 W JP2008071892 W JP 2008071892W WO 2009081699 A1 WO2009081699 A1 WO 2009081699A1
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- WIPO (PCT)
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- electric field
- portable device
- transmission medium
- electrode
- field communication
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B13/00—Transmission systems characterised by the medium used for transmission, not provided for in groups H04B3/00 - H04B11/00
- H04B13/005—Transmission systems in which the medium consists of the human body
Definitions
- the present invention relates to a portable device used for electric field communication that transmits and receives an information signal via a transmission medium such as a human body or space.
- Patent Document 1 For a communication system that transmits and receives via a transmission medium (mainly a human body), a method of communicating using an electric field is disclosed in Patent Document 1 and the like.
- a pair of electrodes that is, a human body side (internal) electrode 111 that is closely capacitively coupled to the human body 112 and a coupling to room ground are larger than those of the human body side (internal) electrode.
- Each pair of transmitter and receiver is provided with a pair of outer (external) electrodes 113 that are oriented in the same manner. As can be seen from FIG. 11, this electrode pair has a parallel plate arrangement.
- Patent Document 2 focuses on the problem that unnecessary electromagnetic waves generated from an electronic circuit or a display of a portable terminal for electric field communication are mixed in a transmission medium such as a human body, thereby degrading communication quality.
- a transmission medium such as a human body
- new transmission / reception electrodes for electric field communication at positions away from the circuit elements (display, operation keys, electric field communication transceiver, computer, etc.), it is possible to prevent unnecessary electromagnetic waves generated from the circuit elements from being mixed into the transmission medium. It is disclosed to suppress the communication quality and improve the communication quality.
- the commonly used parallel plate electrode arrangement is effective when the device is worn on a human body with a band like a wristwatch.
- the outer electrode and the transmission medium side electrode are short-circuited with the held hand, or communication is disabled or the outer electrode is transmitted upward.
- the medium side electrode is held facing the palm, a gap is formed between the transmission medium side electrode and the palm, and sufficient capacitive coupling cannot be obtained, resulting in insufficient communication performance.
- an object of the present invention is to provide a portable device that can improve communication quality when the device is held without changing the original design of the portable device.
- an object of the present invention is to realize a portable device that can communicate and is easy to use regardless of whether the device is held and used or in a pocket or the like.
- the portable device of the present invention functions as a transmitter and / or a receiver in electric field communication that converts an information signal into an electric field signal and transmits / receives it via a transmission medium, and has an outer shape with a side and a display surface on which information can be visually recognized.
- the portable device is a hexahedron, wherein an outer electrode for electric field communication is provided on the display surface, and a first transmission medium side electrode for electric field communication is provided on at least one of the side surfaces. To do.
- the outer electrode provided on the display surface is less likely to be shielded by the transmission medium holding the portable device. Coupling with the outer electrode of the communication partner device is ensured, while the transmission medium side electrode is securely in close contact with the transmission medium holding the portable device, and the transmission medium and transmission medium side electrode are reliably capacitively coupled. For this reason, the communication performance at the time of hold
- the second transmission medium side electrode for electric field communication is provided on the facing surface facing the display surface, and when the portable device is not operated for a predetermined time, The provided second transmission medium side electrode is a transmission medium side electrode for electric field communication, and when the portable device is operated, the first transmission medium side electrode provided on the side surface is a transmission medium side electrode for electric field communication. It is preferable to perform switching control as described above.
- the transmission medium side electrode on the side is surely capacitively coupled with the transmission medium, and when the portable device is placed in a pocket or the like, Since the capacitive coupling with the transmission medium is reliably performed by the transmission medium side electrode, it is possible to reliably communicate even when the portable device is held by hand or put in the pocket.
- the portable device of the present invention has a detecting means for detecting that the portable device is held, and a second transmission medium side electrode for electric field communication is provided on a facing surface facing the display surface. And when it is not detected that the portable device is held, the second transmission medium side electrode provided on the facing surface is used as a transmission medium side electrode for electric field communication to detect that the portable device is held. It is preferable to perform switching control so that the first transmission medium side electrode provided on the side surface is a transmission medium side electrode for electric field communication. According to this configuration, since it can be determined that the transmission medium is held more reliably, it is possible to more appropriately use the transmission medium side electrode, and it is possible to reliably obtain the effect of improving the communication performance. .
- the portable device has an input function, and when both input to the portable device and electric field communication are performed, a part of the first transmission medium side electrode provided on the side surface is provided. It is preferable to perform switching control so that the transmission medium side electrode for electric field communication is used, and the remaining first transmission medium side electrode provided on the side surface is an outer electrode for electric field communication. According to this configuration, when electric field communication is required together with an input operation on the display surface, reliable communication is achieved by using the side electrode as the outer electrode instead of the display element also serving as the input function. Is possible.
- the portable device of the present invention functions as a transmitter and / or a receiver in electric field communication that converts an information signal into an electric field signal and transmits / receives it via a transmission medium, and has an outer shape with a side and a display surface on which information can be visually recognized.
- a portable device that is a hexahedron, wherein an outer electrode for electric field communication is provided on the display surface, and a first transmission medium side electrode for electric field communication is provided on at least one of the side surfaces. It is possible to improve the communication quality when the device is held without changing the original design.
- FIG. 1 It is a schematic block diagram which shows the electric field communication system provided with the portable apparatus which concerns on embodiment of this invention. It is a figure which shows schematic structure of the portable apparatus which concerns on embodiment of this invention. It is a block diagram which shows the internal structure of the portable apparatus which concerns on embodiment of this invention.
- (A)-(d) is a figure for demonstrating the portable apparatus which concerns on Embodiment 1 of this invention.
- (A)-(c) is a figure for demonstrating the portable apparatus which concerns on Embodiment 2, 3 of this invention. It is a flowchart for demonstrating operation
- a forward path through which a signal flows through capacitive coupling between a transmitter, a human body, and a receiver, and a receiver—a dielectric such as air or a conductor such as ground—
- a return path is required for the signal to flow through capacitive coupling with the receiver.
- the human body side electrode (transmission electrode, reception electrode) 111 that forms the forward path (path A) increases the capacitive coupling between the human body 112 and the human body 112.
- the outer electrode (transmitter outer electrode, receiver outer electrode) 113 forming the return path (path B) reduces the capacitive coupling with the human body 112.
- the present inventors change the original design of the portable device by specifying the positions of the outer electrode for electric field communication and the electrode on the transmission medium side according to the usage mode of the portable device. Without finding out, the present inventors have found that the communication quality can be improved when holding the device.
- the outline of the present invention functions as a transmitter and / or a receiver in electric field communication in which an information signal is converted into an electric field signal and transmitted / received via a transmission medium, and has an outer shape having a side surface and a display surface on which information can be visually recognized.
- a portable device having a substantially hexahedron, wherein an outer electrode for electric field communication is provided on the display surface, and a first transmission medium side electrode for electric field communication is provided on at least one of the side surfaces. It is to improve the communication quality when the device is held without changing the original design of the device.
- FIG. 1 is a schematic configuration diagram showing an electric field communication system using a portable device according to an embodiment of the present invention.
- the electric field communication system shown in FIG. 1 includes a transmitter 1 that modulates an information signal, converts the signal into an electric field signal, and transmits the electric signal via a transmission electrode 11, and a human body or space that transmits the information signal via the electric field signal.
- It mainly includes a transmission medium 2 and a receiver 3 that detects an electric field signal through the transmission medium 2 and demodulates the electric field signal into an information signal.
- the transmission medium 2 is assumed to be a human body, and the receiver 3 is a portable device.
- the portable device 3 includes a transmission medium side electrode (human body side electrode) 31 that receives an electric field from the transmission medium 2, a signal detection circuit 32 that acquires an information signal from the electric field received by the human body side electrode 31, and a signal detection circuit 32.
- a demodulation circuit 33 that demodulates the detected signal into an information signal and an amplification circuit 34 that amplifies the demodulated information signal are included.
- FIG. 2 is a diagram showing a schematic configuration of the portable device shown in FIG.
- the mobile device 3 shown in FIG. 2 has a substantially hexahedron shape, and has an upper surface 35 and a bottom surface 36 facing each other, and four side surfaces 37a to 37d.
- the upper surface 35 is a display surface on which information can be visually recognized.
- the side surface 37a and the side surface 37b face each other, and the side surface 37c and the side surface 37d face each other.
- the side surface 37a is facing east
- the side surface 37b is facing west
- the side surface 37c is facing south
- the side surface 37d is facing north.
- the outer electrode for electric field communication is provided on the upper surface 35 as a display surface, and the human body side electrode for electric field communication has at least one side surface 37a to 37d (here, all side surfaces). And a ridge line portion between the side surface 37 and the bottom surface 36.
- the outer electrode is arranged with the surface having the display element having the largest amount of information as the display surface.
- FIG. 3 is a block diagram showing an internal configuration of the portable device according to the first embodiment.
- the mobile device 3 mainly includes a control unit 38 that controls the entire apparatus, an input unit 39 that inputs information, a display unit 40 that displays information, and a communication unit 41 that communicates with other communication devices.
- the control unit 38 includes a measuring unit such as a timer for measuring time.
- the human body side electrode and the outer electrode are arranged in a parallel plate.
- the human body side electrode and the outer electrode are held by hand to cause a short circuit, or Even if the outer electrode is arranged on the upper surface, there is a case where there is a gap between the human body side electrode and the palm and sufficient communication cannot be performed.
- the outer electrode for electric field communication is provided on the upper surface 35 as the display surface, and the human body side electrode for electric field communication is provided on the side surfaces 37a to 37d. That is, as shown in FIG. 4A, the outer electrode 42 is disposed on the upper surface of the portable device 3 when the portable device 3 is held on the palm 2 a of the human hand 2, and the human body side electrode is disposed on the side surface of the portable device 3. 43 is arranged.
- the positional relationship between the outer electrode 42 and the human body side electrode 43 in the portable device 3 is such that the capacitive coupling between the human body side electrode 43 and the hand 2 increases and the capacitive coupling between the outer electrode 42 and the hand 2 decreases.
- it may be provided on at least one side surface 37a to 37d
- the upper surface 35 and at least one side surface 37a to 37d are provided.
- a ridge line portion between the bottom surface 36 and the side surfaces 37a to 37d.
- a side surface may be expanded and it may be made into a convex-shaped curved surface, and the human body side electrode 43 may be provided in the side surface. According to the configuration shown in FIG. 4D, the human body side electrode 43 can be brought into close contact with the hand 2.
- the human body side electrode 43 may be provided on at least one of them.
- the human body side electrode 43 since the length in the north-south direction is relatively long, when the user holds the portable device 3, the user usually comes in contact with the east and west side surfaces 37a and 37b. For this reason, it is desirable to provide the human body side electrode 43 on at least one of the east and west side surfaces 37a and 37b.
- an information signal is modulated with a carrier wave having a frequency (several hundred kHz to several tens of MHz) at which the human body exhibits conductivity, to obtain a modulated signal.
- This modulated signal is amplified and converted into a voltage change, thereby becoming an electric field signal corresponding to the modulated signal.
- This electric field signal is applied to the human body that is the transmission medium 2.
- the modulation method in the transmitter There is no particular limitation on the modulation method in the transmitter 1.
- the electric field signal applied to the human body is received by the human body side electrode 31 of the portable device 3.
- the electric field signal applied to the human body side electrode 31 is sent to the signal detection circuit 32.
- the electric field signal is amplified by an internal amplification circuit and sent to the demodulation circuit 33, and the demodulation circuit 33 demodulates using the carrier wave used in the transmitter 1 to obtain an information signal.
- This information signal is amplified by the amplifier circuit 34 and then output.
- the outer electrode for electric field communication is provided on the upper surface 35 which is a display surface
- the human body side electrode for electric field communication is provided on the side surfaces 37a to 37d. Since the user holds the portable device 3 with the hand 2 so that the display element can be seen, the outer electrode 42 provided on the display surface is not easily shielded by the hand 2 holding the portable device 3, and the external room ground or communication partner Coupling with the outer electrode 42 of the device is ensured, while the human body side electrode 43 is securely in close contact with the hand 2 holding the portable device 3, and the hand 2 and the human body side electrode 43 are reliably capacitively coupled. For this reason, the communication performance when the portable device 3 is held by hand is improved.
- a transmission medium side electrode for electric field communication is further provided on a facing surface (bottom surface) 36 that faces the display surface 35, and the bottom surface 36 when no operation is performed on the portable device 3 for a predetermined time.
- the transmission medium side electrode provided on the side 37 is used as a transmission medium side electrode for electric field communication, and when the portable device 3 is operated, the transmission medium side electrode provided on the side surface 37 is used as the transmission medium side electrode for electric field communication.
- FIG. 5A the display surface is the upper surface 35 and the outer electrode 42 for human body communication is provided on the upper surface 35, as in the first embodiment.
- 43 is provided on the side surface 37 and the bottom surface 36, and the human body side electrode 43 and the outer electrode 42 are selected and switched in accordance with the usage mode.
- the portable device 3 when the portable device 3 is operated, it is assumed that the portable device 3 is held by the hand 2, and the side surface is the human body side electrode 43.
- the human body side electrode 43 on the side surface is easily in close contact with the hand 2 as in the first embodiment, so that stable human body communication is possible.
- examples of the operation on the mobile device 3 include operations using various switches, a keyboard, a touch panel, a fingerprint sensor, and the like, and operations using voice input.
- the portable device 3 when the portable device 3 is not operated for a predetermined time or longer, it is assumed that the portable device 3 is put in a pocket or the like, and the bottom surface is placed on the human body side electrode 43 as shown in FIG. And Since the outer electrode 42 and the human body side electrode 43 are essentially communicable if one of them faces the human body and the other faces the outer side, the outer electrode 42 is placed on the top and bottom surfaces when there is no operation on the portable device 3. By disposing 42 and the human body side electrode 43, one of the surfaces faces the human body and the other faces the outside. For this reason, electric field communication is possible.
- the display element is a large component in the portable device 3, and the upper surface of the hexahedron provided with the display element is often the largest surface of the hexahedron, whereby the portable device 3 is put in a pocket or the like. Since the human body 2 and the upper surface or the bottom surface are considered to be parallel to each other, even if the user is not particularly conscious, one of the surfaces faces the human body and the other faces the outside. It becomes possible.
- the display surface is facing the human body or the bottom surface is facing the human body, so that communication can be performed regardless of which surface faces the human body.
- the electrode area, dielectric constant, and thickness of the housing are designed so that the capacitance between the electrode and the human body in a pocket is almost the same regardless of which electrode is facing the human body. By doing so, the communication performance becomes more stable.
- the areas of the display surface side electrode and the bottom surface side electrode are made substantially equal.
- the timer of the control unit 38 having the configuration shown in FIG. 3 is used.
- the procedure shown in FIG. First, in the default state, as shown in FIG. 5B, the electrode connection is such that the outer electrode 42 is disposed on the upper surface and the human body side electrode 43 is disposed on the side surface.
- the non-operation time is measured with a timer. That is, the time when there is no operation on the mobile device 3 is measured (ST11). Then, it is determined whether or not the measurement time has passed a predetermined time (ST12). When the measurement time has passed the predetermined time, as shown in FIG.
- the electrode connection is switched so that the side electrode 43 is disposed (ST13).
- Such control makes it possible to reliably perform electric field communication in the same manner as in the first embodiment even if the usage state (the presence / absence of operation on the portable device) differs.
- the electrodes are provided on the top surface and the bottom surface having a large area in the hexahedron, the electrode area can be increased and the capacitance between the electrode and the human body can be increased, which is advantageous in improving communication sensitivity.
- the parasitic capacitance between the electrodes increases, and it is considered that the loss of signal through the parasitic capacitance cannot be ignored.
- the loss of the signal can be suppressed by inserting an inductance in parallel with the parasitic capacitance and performing LC parallel resonance at the frequency used in electric field communication.
- a detection unit that detects that the portable device 3 is held is provided, and a transmission medium side electrode for electric field communication is further provided on a facing surface (bottom surface) 36 that faces the display surface 35.
- the transmission medium side electrode provided on the bottom surface 36 is used as the transmission medium side electrode for electric field communication when it is not detected that the portable device 3 is held, and it is detected that the portable device 3 is held.
- a case where the switching control is performed so that the transmission medium side electrode provided on the side surface 37 is sometimes used as the transmission medium side electrode for electric field communication will be described. That is, also in the present embodiment, as shown in FIG.
- the display surface is the upper surface 35 and the outer electrode 42 for human body communication is provided on the upper surface 35 as in the first embodiment.
- 43 is provided on the side surface 37 and the bottom surface 36, and the human body side electrode 43 and the outer electrode 42 are selected and switched in accordance with the usage mode.
- the mobile device 3 communicates with a control unit 38 that controls the entire apparatus, an input unit 39 that inputs information, a display unit 40 that displays information, and other communication devices. It is mainly composed of a communication unit 41 and a detection unit 44 that detects whether or not it is held by the hand 2. In addition, since it is in the state which is operating if it is hold
- an infrared sensor is used to detect that a living body is in contact, electrodes are provided on all sides of the hexahedron (east, west, north, and south), and changes in electrical resistance and capacitance between these electrodes (resistance and capacitance decrease) And a method of detecting an electrode touched by a hand.
- reliable communication can be performed by using an electrode with reduced resistance as a human body side electrode.
- the control unit 38 and the detection unit 44 having the configuration shown in FIG.
- the electrode connection is such that the outer electrode 42 and the human body side electrode 43 are arranged on the upper surface and the bottom surface.
- the detection unit 44 detects an operation on the mobile device 3 (ST21). Then, it is determined whether or not an operation is detected (ST22).
- the operation is detected, as shown in FIG. 5B, the outer electrode 42 is arranged on the upper surface and the human body side electrode 43 is arranged on the side surface.
- the electrode connection is switched (ST23).
- Such control makes it possible to reliably perform electric field communication in the same manner as in the first embodiment even if the usage state (the presence / absence of operation on the portable device) differs.
- the longitudinal direction of the mobile device 3 is the north-south direction
- the hand 2 holds it in the east-west direction
- the outer electrode 42 is placed on the side 37 on the north and south sides.
- the human body side electrode 43 is set to be two surfaces west and east of the side surface 37.
- the electrode connection is such that the outer electrode 42 is disposed on the upper surface 35 and the human body side electrode 43 is disposed on the side surface 37.
- an operation is started (ST31), and it is determined whether or not a specific application (an application that performs electric field communication together with an input operation) is activated (ST32).
- a specific application is activated, as shown in FIG.
- a part of the electrodes provided on the side surface 37 is used as a human body side electrode 43 for electric field communication, and the remaining electrodes provided on the side surface 37 are used as an electric field.
- the electrode connection is switched so that the outer electrode 42 for communication is used (ST33).
- the present invention is not limited to Embodiments 1 to 4 above, and can be implemented with various modifications.
- the circuit configuration, the number of parts, numerical values, and the like in the first to fourth embodiments are merely examples, and the present invention is not limited thereto and can be implemented with appropriate modifications. Other modifications can be made without departing from the scope of the present invention.
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Abstract
Description
(実施の形態1)
図1は、本発明の実施の形態に係る携帯機器を用いた電界通信システムを示す概略構成図である。図1に示す電界通信システムは、情報信号を変調し、電界信号に変換して送信電極11を介して送信する送信機1と、その電界信号を介して情報信号を伝送する人体や空間などの伝送媒体2と、伝送媒体2を介して電界信号を検出し、その電界信号を情報信号に復調する受信機3とから主に構成されている。ここで、伝送媒体2は人体を想定しており、受信機3が携帯機器である。
本実施の形態においては、表示面35に対向する対向面(底面)36に電界通信用の伝送媒体側電極がさらに設けられており、所定の時間にわたって携帯機器3に対する操作がないときに底面36に設けた伝送媒体側電極を電界通信用の伝送媒体側電極とし、携帯機器3に対する操作があったときに側面37に設けた伝送媒体側電極を電界通信用の伝送媒体側電極とするように切り替え制御を行う場合について説明する。すなわち、本実施の形態においては、図5(a)に示すように、実施の形態1と同様に、表示面を上面35とし、人体通信用の外側電極42を上面35に設け、人体側電極43を側面37と底面36に設け、使用態様に応じて人体側電極43及び外側電極42を選択して切り替える。
本実施の形態においては、携帯機器3が保持されたことを検出する検出部を有しており、表示面35に対向する対向面(底面)36に電界通信用の伝送媒体側電極がさらに設けられており、携帯機器3が保持されたことを検出されていないときに底面36に設けた伝送媒体側電極を電界通信用の伝送媒体側電極とし、携帯機器3が保持されたことを検出したときに側面37に設けた伝送媒体側電極を電界通信用の伝送媒体側電極とするように切り替え制御を行う場合について説明する。すなわち、本実施の形態においても、図5(a)に示すように、実施の形態1と同様に、表示面を上面35とし、人体通信用の外側電極42を上面35に設け、人体側電極43を側面37と底面36に設け、使用態様に応じて人体側電極43及び外側電極42を選択して切り替える。
本実施の形態においては、携帯機器3が入力機能を備えており、携帯機器3に対する入力と電界通信とが共に行われる場合に、側面37に設けた電極の一部を電界通信用の人体側電極43とし、側面37に設けた残りの電極を電界通信用の外側電極42とするように切り替え制御を行う場合について説明する。携帯機器3の表示素子がタッチパネルなどの入力機能も併せ持つ場合、アプリケーションによって入力操作と共に電界通信を行う必要があることがある。このような場合においては、外側電極が六面体の上面35のみでは、外側電極と人体2とが容量結合して通信感度を低下させることがある。したがって、上面35以外で人体2と容量結合しにくい場所に外側電極を設ける必要がある。
Claims (4)
- 情報信号を電界信号に変換して伝送媒体を介して送受信する電界通信における送信機及び/又は受信機として機能し、側面及び情報を視認できる表示面を持つ外形が略六面体である携帯機器であって、電界通信用の外側電極が前記表示面に設けられており、電界通信用の第1伝送媒体側電極が少なくとも一つの前記側面に設けられていることを特徴とする携帯機器。
- 前記表示面に対向する対向面に電界通信用の第2伝送媒体側電極が設けられており、所定の時間にわたって前記携帯機器に対する操作がないときに前記対向面に設けた第2伝送媒体側電極を電界通信用の伝送媒体側電極とし、前記携帯機器に対する操作があったときに前記側面に設けた第1伝送媒体側電極を電界通信用の伝送媒体側電極とするように切り替え制御を行うことを特徴とする請求項1記載の携帯機器。
- 前記携帯機器が保持されたことを検出する検出手段を有しており、前記表示面に対向する対向面に電界通信用の第2伝送媒体側電極が設けられており、前記携帯機器が保持されたことを検出されていないときに前記対向面に設けた第2伝送媒体側電極を電界通信用の伝送媒体側電極とし、前記携帯機器が保持されたことを検出したときに前記側面に設けた第1伝送媒体側電極を電界通信用の伝送媒体側電極とするように切り替え制御を行うことを特徴とする請求項1記載の携帯機器。
- 前記携帯機器は入力機能を備えており、前記携帯機器に対する入力と電界通信とが共に行われる場合に、前記側面に設けた第1伝送媒体側電極の一部を電界通信用の伝送媒体側電極とし、前記側面に設けた残りの前記第1伝送媒体側電極を電界通信用の外側電極とするように切り替え制御を行うことを特徴とする請求項1記載の携帯機器。
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
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JP2009547006A JP4717141B2 (ja) | 2007-12-26 | 2008-12-02 | 携帯機器 |
CN200880120187.1A CN101897134B (zh) | 2007-12-26 | 2008-12-02 | 便携设备 |
US12/818,479 US8175527B2 (en) | 2007-12-26 | 2010-06-18 | Portable apparatus |
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JP2007334667 | 2007-12-26 | ||
JP2007-334667 | 2007-12-26 |
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US12/818,479 Continuation US8175527B2 (en) | 2007-12-26 | 2010-06-18 | Portable apparatus |
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WO2009081699A1 true WO2009081699A1 (ja) | 2009-07-02 |
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Application Number | Title | Priority Date | Filing Date |
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PCT/JP2008/071892 WO2009081699A1 (ja) | 2007-12-26 | 2008-12-02 | 携帯機器 |
Country Status (4)
Country | Link |
---|---|
US (1) | US8175527B2 (ja) |
JP (1) | JP4717141B2 (ja) |
CN (1) | CN101897134B (ja) |
WO (1) | WO2009081699A1 (ja) |
Cited By (4)
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JP2011199746A (ja) * | 2010-03-23 | 2011-10-06 | Nippon Telegr & Teleph Corp <Ntt> | 浮遊容量センサ付携帯型電界通信装置及び電界通信方法 |
JP2011244082A (ja) * | 2010-05-14 | 2011-12-01 | Ntt Docomo Inc | 通信装置および通信方法 |
US8457692B2 (en) | 2010-10-07 | 2013-06-04 | Research In Motion Limited | Method and system for preventing device operation when driving |
US8611861B2 (en) | 2011-03-24 | 2013-12-17 | Blackberry Limited | Communications system including personal information token to store a personalized list and associated methods |
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JP5224546B2 (ja) * | 2007-02-14 | 2013-07-03 | カバ・アクチェンゲゼルシャフト | 識別信号の送信のためのシステムおよび持ち運び可能な装置 |
WO2009048127A1 (ja) * | 2007-10-11 | 2009-04-16 | Alps Electric Co., Ltd. | 情報端末装置 |
US20100321159A1 (en) * | 2009-06-18 | 2010-12-23 | Authentec, Inc. | Touch based data communication using biometric finger sensor and associated methods |
WO2013127050A1 (zh) * | 2012-02-27 | 2013-09-06 | Tsai Hsiung-Kuang | 数据传输系统 |
US9560473B2 (en) * | 2012-10-29 | 2017-01-31 | Hsiung-Kuang Tsai | Data transmission system |
EP3996290A4 (en) * | 2019-07-01 | 2023-07-26 | Nexty Electronics Corporation | Electric field communication system |
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- 2008-12-02 CN CN200880120187.1A patent/CN101897134B/zh not_active Expired - Fee Related
- 2008-12-02 WO PCT/JP2008/071892 patent/WO2009081699A1/ja active Application Filing
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2010
- 2010-06-18 US US12/818,479 patent/US8175527B2/en not_active Expired - Fee Related
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JP2011199746A (ja) * | 2010-03-23 | 2011-10-06 | Nippon Telegr & Teleph Corp <Ntt> | 浮遊容量センサ付携帯型電界通信装置及び電界通信方法 |
JP2011244082A (ja) * | 2010-05-14 | 2011-12-01 | Ntt Docomo Inc | 通信装置および通信方法 |
US8457692B2 (en) | 2010-10-07 | 2013-06-04 | Research In Motion Limited | Method and system for preventing device operation when driving |
US8611861B2 (en) | 2011-03-24 | 2013-12-17 | Blackberry Limited | Communications system including personal information token to store a personalized list and associated methods |
Also Published As
Publication number | Publication date |
---|---|
JPWO2009081699A1 (ja) | 2011-05-06 |
CN101897134A (zh) | 2010-11-24 |
CN101897134B (zh) | 2013-06-26 |
US20100255786A1 (en) | 2010-10-07 |
JP4717141B2 (ja) | 2011-07-06 |
US8175527B2 (en) | 2012-05-08 |
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