WO2016023444A1 - Câble de raccordement d'interface et module standard - Google Patents

Câble de raccordement d'interface et module standard Download PDF

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Publication number
WO2016023444A1
WO2016023444A1 PCT/CN2015/086383 CN2015086383W WO2016023444A1 WO 2016023444 A1 WO2016023444 A1 WO 2016023444A1 CN 2015086383 W CN2015086383 W CN 2015086383W WO 2016023444 A1 WO2016023444 A1 WO 2016023444A1
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WO
WIPO (PCT)
Prior art keywords
interface
standard module
patch cord
connection
pair
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Application number
PCT/CN2015/086383
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English (en)
Chinese (zh)
Inventor
陈�峰
胡静
Original Assignee
王玮冰
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Filing date
Publication date
Application filed by 王玮冰 filed Critical 王玮冰
Publication of WO2016023444A1 publication Critical patent/WO2016023444A1/fr

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/77Coupling devices for flexible printed circuits, flat or ribbon cables or like structures

Definitions

  • the present invention relates to the field of adapter technologies, and in particular, to an interface patch cord and a standard module.
  • USB interfaces With the development of electronic technology, the data exchange and charging between electronic devices all use the USB interface.
  • interfaces of different USB models such as A-type USB interface and micro USB interface
  • other non-USB types such as the lightning interface of Apple devices
  • Interface patch cords are required to implement signal conversion between different models of interfaces.
  • the object of the present invention is to provide an interface extension cable and a standard module, which can realize signal transmission between different types of interfaces, and simultaneously realize selection or combination application of various functions, and improve integration of the device.
  • the present invention provides an interface patch cord
  • the interface patch cord includes a first interface, a second interface, and a pair of connecting lines, one end of each of the connecting lines is connected to the first interface, and each The other end of the connecting line is connected to the second interface, and the first interface and the second interface realize signal transmission through at least one of the connecting lines, and the pair of connecting lines comprise a plurality of modules for loading and unloading standard modules.
  • the pair of connecting lines further includes a plurality of sets of connecting ends, and each of the limiting structures corresponds to a set of the connecting ends.
  • connection ends between the at least two groups are correspondingly connected.
  • each set of the connection ends includes a power connection end
  • at least one of the connection lines includes a power bus that sequentially connects the power connection ends.
  • each set of the connecting ends includes an analog signal connecting end, and at least one of the connecting lines includes an analog signal bus that sequentially connects the analog signal connecting end.
  • each set of the connection ends includes a digital signal connection end
  • at least one of the connection lines includes a digital signal bus that sequentially connects the digital signal connection ends.
  • each group of the connection ends includes an interface signal connection end, and at least one of the connection lines includes an interface signal bus that sequentially connects the interface signal connection end, and the interface signal bus
  • the first interface and the second interface are also turned on to implement signal transmission between the first interface and the second interface.
  • the connecting end is at least one pin; or the connecting end is at least one jack; or the connecting end is at least one square electrode.
  • the limiting structure is a pair of facing grooves, wherein one of the grooves is located on a side of the connecting line facing the other connecting line
  • the other groove is located on a side of the other connecting line facing the one connecting line
  • the plurality of limiting structures are sequentially arranged in an extending direction of the connecting line.
  • the connecting end is located in the recess.
  • a part of the connecting end is located in the one groove, and another part of the connecting end is located in the other groove.
  • the connecting line further includes at least one strap body, the strap body connecting the two connecting lines, and the strap body is located between the adjacent limiting structures.
  • the recess includes a via hole, and the via hole penetrates the connection line.
  • the interface patch cord further includes at least one pair of magnetic materials facing each other, and in each pair of the magnetic materials, one of the magnetic materials is located on one of the connecting lines On the side of the other connecting line, another magnetic material is located on the side of the other connecting line facing the one connecting line; when no standard module is installed into the limiting structure, two The connecting wires are combined by the magnetic material sucking; when the standard module is installed into the limiting structure, the standard module opens up the two connecting lines.
  • At least one of the first interface and the second interface is a USB interface.
  • a standard module for the interface patch cord of any of the above comprising a standard module connector that mates with the connector.
  • the standard module connecting member is at least one jack; or the standard module connecting member is at least one pin; or the standard module connecting member is at least A square electrode.
  • the standard module is in a plate shape, and the standard module connecting member is located on the side wall of the plate.
  • the standard module further includes a button, and the button is located on the side wall of the plate.
  • the standard module further includes a functional unit having a preset function, and the functional unit is connected to the standard module connecting member.
  • the interface patch cord and the standard module provided by the invention have the following advantages:
  • the interface patch cord includes a first interface, a second interface, and a connection line, and the first interface and the second interface are implemented by at least one of the connection lines.
  • Signal transmission thereby enabling signal transmission between different types of interfaces
  • the connection line includes a plurality of limit structures for mounting standard modules, the standard being loaded when the standard module is loaded into the limit structure Modules are connected to each other to enable selection between multiple functions, thereby increasing the integration of the device.
  • FIG. 1 is a schematic view of an interface adapter cable in a first embodiment of the present invention
  • Figure 2 is an enlarged schematic view of a region of Figure 1;
  • FIG. 3 is a schematic structural diagram of a standard module in a first embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a circuit of an interface extension cable according to a first embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a standard module loading interface adapter cable in a first embodiment of the present invention
  • FIG. 6 is a circuit diagram of a standard module in a first embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a circuit of an interface extension cable according to a second embodiment of the present invention.
  • FIG. 8 is a schematic diagram of the standard module propping up the two connecting lines according to a third embodiment of the present invention.
  • Figure 9 is a schematic view showing the joining of two connecting wires by the magnetic material in the third embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of a circuit of an interface extension cable according to a fourth embodiment of the present invention.
  • the core idea of the present invention is to provide an interface patch cord, the interface patch cord includes a first interface, a second interface, and a connection line, wherein the first interface and the second interface are electrically connected to implement the first interface. And signal transmission between the second interface, so that signal transmission between different types of interfaces can be realized; the connection line includes a plurality of limit structures for installing standard modules, when the standard module is loaded into the limit In the bit structure, the standard modules are connected to each other to implement selection between various functions, thereby improving the integration of the device.
  • the present invention also provides a standard module for the interface patch cord.
  • FIG. 1 is a schematic view of an interface adapter cable in a first embodiment of the present invention
  • FIG. 2 is an enlarged schematic view of a region in FIG. 1
  • FIG. 3 is a schematic diagram of a standard module in a first embodiment of the present invention
  • FIG. 5 is the first in the present invention
  • the interface patch cord 1 includes a first interface 110 , a second interface 120 , and a pair of connecting lines 131 and 132 .
  • One end of the connecting line 131 is connected to the first interface 110 , and the connecting line is connected to the first interface 110 .
  • the other end of the connecting line 132 is connected to the first interface 110, and the other end of the connecting line 132 is connected to the second interface 120.
  • the material of the connecting wire 131 and the connecting wire 132 is preferably a flexible material, so that the connecting wire 131 and the connecting wire 132 can be bent.
  • the first interface 110 and the second interface 120 implement signal transmission through at least one of the connection lines.
  • the first interface 110 and the second interface 120 implement signal transmission through the connection line 131, that is, the interface signal bus is all located in the connection line 131.
  • the first interface 110 and the second interface 120 implement signal transmission through the connection line 132, that is, the interface signal bus is all located in the connection line 132; or the first interface
  • the signal transmission between the 110 and the second interface 120 is achieved by the connection line 131 and the connection line 132, that is, part of the interface signal bus is located in the connection line 131, and the other part of the interface signal bus is located in the connection line 132.
  • the first interface 110 and the second interface 120 are both USB interfaces, and the first interface 110 and the second interface 120 are interfaces of different USB models.
  • one of the first interface 110 and the second interface 120 is a type A USB interface, and the other is a micro USB interface; or one of the first interface 110 and the second interface 120 is a lightning interface of an Apple device.
  • the other is a type A USB interface, and so on.
  • the first interface 110 and the second interface 120 are not limited to being a USB interface, and the first interface 110 and the second interface 120 may also be other types of interfaces, which are not illustrated herein.
  • the pair of connecting lines 131, 132 includes a plurality of limiting structures 140 for mounting standard modules.
  • the limiting structure 140 is disposed on a pair of faces. a groove 141 and a groove 142, wherein the groove 141 is located on a side of the connecting line 131 facing the connecting line 132, and the groove 142 is located at the connecting line 132 facing the connecting line
  • the side of the 131 is used to mount the standard module 2 as shown in FIG. 3 into the stop structure 140.
  • the interface patch cord 1 includes five of the limiting structures 140 , and the limiting structures 140 are sequentially arranged on the connecting lines 131 , 132 .
  • the interface patch cord 1 of the present invention is not limited to including five of the limit structures 140, and the number of the limit structures 140 can be set as needed, for example, two, three, four, 6, 7, or more. The longer the length of the connecting line 130, the more the number of the limiting structures 140 can be set.
  • the connecting lines 131 and 132 further include a plurality of sets of connecting ends, and each of the limiting structures 140 corresponds to a set of the connecting ends, and is illustrated by using FIG. 2 as an example.
  • the limiting structure 140 corresponds to a set of the connecting ends 160, and the set of connecting ends 160 are used for conducting electrical communication with a standard module.
  • the connecting end 160 is located in the groove 141 or the groove 142. A part of the connecting end is located in the groove 141, and another part of the connecting end is located in the groove 142.
  • each set of the connection ends 160 includes four types of connection terminals: an interface signal connection end 161, an analog signal connection end 162, a digital signal connection end 163, and a power supply.
  • the connection end 164 in FIG. 2, the interface signal connection end 161 and the analog signal connection end 162 are located in the recess 141, and the digital signal connection end 163 and the power connection end 164 are located in the recess 142.
  • the arrangement of the connecting ends is not limited, and the number and type of the connecting ends in each set of the connecting ends 160 are not limited, as long as the same kind between the different groups.
  • the type of the connection end corresponds to the connection.
  • each set of the connection ends 160 may include one type of connection end, two types of connection ends, three types of connection ends, five types of connection terminals, or more.
  • the standard module 2 includes a standard mode that matches the connection end 160.
  • the block connecting member 260 since in the present embodiment, each of the connecting ends 160 includes four types of connecting ends, the standard module 2 includes four types of standard module connecting members: power supply guide The piece 261, the analog signal connecting member 262, the digital signal connecting member 263, and the interface signal connecting member 264, the power supply connecting member 261, the analog signal connecting member 262, the digital signal connecting member 263, and the interface signal guide
  • the device 264 is matched with the interface signal connection end 161, the analog signal connection end 162, the digital signal connection end 163, and the power connection end 164, respectively, to achieve electrical contact between the standard module 2 and the connection line 130.
  • the electrical contact manner of the standard module 2 and the connecting line 130 may be a pin-jack way or a square electrode.
  • the interface signal connection end 161, the analog signal connection end 162, the digital signal connection end 163, and the power connection end 164 are all pins, and the power supply connecting member 261 and the analog signal connecting member are respectively connected. 262.
  • the digital signal connecting member 263 and the interface signal connecting member 264 are all jacks.
  • the interface signal connecting end 161, the analog signal connecting end 162, and the digital signal connecting end may also be 163 and the power connection end 164 are both jacks, and the power supply guiding member 261, the analog signal connecting member 262, the digital signal connecting member 263, and the interface signal connecting member 264 are pins; or the interface signal The connection end 161, the analog signal connection end 162, the digital signal connection end 163 and the power supply connection end 164, the power supply link 261, the analog signal link 262, the digital signal link 263, and the interface signal link 264 are both It is a square electrode.
  • part of the connecting member is a pin, and another part of the connecting member is a combination of a jack or the like.
  • the interface patch cord 1 further includes an interface signal bus 181, and the power bus 181 sequentially connects the interface signal connection ends 161 of the groups of the connection ends 160, and is in the plurality of the limit structures 140.
  • the interface signal bus implements data transmission between the standard modules 2.
  • the interface signal bus simultaneously turns on the first interface 110 and the second interface 120 to implement signal transmission between the first interface 110 and the second interface 120.
  • the interface signal bus 181 includes four lines. Corresponding to the four pins of the interface signal connection end 161.
  • the interface signal bus 181 is located in the connection line 131. In other embodiments of the present invention, the interface signal bus 181 may also be located in the connection line 132, or the interface.
  • the signal bus 181 is partially located within the connection line 131 and the other portion is located within the connection line 132.
  • the interface extension cable 1 further includes an analog signal bus 182.
  • the analog signal bus sequentially connects the analog signal connection ends 162 of the respective sets of the connection ends 160, and is installed in the plurality of the limit structures 140 in sequence.
  • the analog signal bus 182 implements analog signal transmission between the standard modules 2.
  • the analog signal bus 182 includes four wires corresponding to the four pins of the analog signal connection terminal 162.
  • the analog signal bus 182 is located in the connection line 131.
  • the analog signal bus 182 may also be located in the connection line 132, or the simulation The signal bus 182 is partially located within the connection line 131 and the other portion is located within the connection line 132.
  • the interface extension cable 1 further includes a digital signal bus 183.
  • the digital signal bus 183 sequentially connects the digital signal connection ends 163 of the groups of the connection ends 160, and is sequentially mounted in the plurality of the limit structures 140.
  • the digital signal bus 183 implements digital signal transmission between the standard modules 2 when the standard module 2 is used.
  • the digital signal bus 183 includes four wires corresponding to the four pins of the digital signal connection terminal 163.
  • the digital signal bus 183 is located in the connection line 132. In other embodiments of the present invention, the digital signal bus 183 may also be located in the connection line 131, or the number
  • the signal bus 183 is partially located within the connection line 131 and the other portion is located within the connection line 132.
  • the interface cable 1 further includes a power bus 184.
  • the power bus 184 sequentially connects the power connection ends 164 of the groups of the connection ends 160.
  • the power bus 184 implements voltage transfer between the standard modules 2.
  • the power bus 184 includes four wires corresponding to the four pins of the power connection terminal 164.
  • the power bus 184 is located at the connection.
  • the power bus 184 may also be located in the connection line 131, or the power bus 184 is partially located in the connection line 131 and the other part is located in the connection. Inside line 132.
  • the connecting line 130 further includes at least one strap 150.
  • the strap 150 connects the connecting line 131 and the connecting line 132.
  • the strap 150 is located adjacent to the limiting structure 140.
  • the strip 150 may isolate the adjacent standard module 2 to further fix the standard module 2.
  • the strap 150 may be integrally formed with the connecting wire 131 and the connecting wire 132.
  • the recess 141 includes a through hole 171, and the through hole 171 penetrates the connecting line 132.
  • the recess 142 also includes a through hole 172.
  • the through hole 172 penetrates the connecting line 132.
  • the standard module 2 is in the shape of a plate, and the standard module connecting member 260 is located on the side wall of the plate.
  • the standard module connecting member 260 is distributed on the two opposite sidewalls of the plate, and the power supply guiding member 261 and the analog signal guiding member 262 are located on a side wall 201.
  • the digital signal link 263 and the interface signal link 264 are located on the other side wall 202 opposite the one side wall 201.
  • the standard module 2 further includes a button, and the button is located on the side wall of the plate.
  • the standard module 2 includes two buttons: a button 271 and a button 272.
  • the button 271 is located on a side wall 201 to match the via hole 171
  • the button 272 is located in the other
  • a side wall 202 is provided to match the via hole 172.
  • the standard module 2 may further include a functional unit having a preset function, and the functional unit is connected to the standard module connecting member 160.
  • the functional unit may be a battery and power management (BAT & PMIC) unit, a central processing and interface conversion (CPU & INTERFACE) unit, a display (OLED) unit, a Bluetooth (BT) unit or a sensor (SENSORS) unit, and the like.
  • the standard module 2 may not include the function list.
  • the standard module 2 is a virtual (DUMMY) standard unit and does not include the preset function.
  • the standard module 2 is loaded into the limit structure 140.
  • the interface patch cord 1 includes five of the limit structures 140, and the standard module 2 having a battery and power management (BAT & PMIC) unit has a central processing unit (CPU) and an interface thereof.
  • the standard module 2 of the conversion (INTERFACE) unit, the standard module 2 having a display (OLED) unit, and the standard module 2 having a sensor (SENSORS) unit are loaded into the limit structure 140, the standard Modules 2 are connected to each other.
  • the standard module 2 having a battery and power management (BAT & PMIC) unit can generate a plurality of internal voltages, such as a first voltage VDD1 and a second voltage VDD2, and pass the internal voltage through the power bus to other of the standards Module 2;
  • BAT & PMIC battery and power management
  • the standard module 2 having a central processing unit (CPU) and an interface conversion (INTERFACE) unit converts signals of the interface signal bus into other signals, such as analog signals of the analog signal bus or the digital signal bus a digital signal, which is then communicated with the further standard module 2 via the analog signal bus or the digital signal bus, for example, controlling display information of the standard module 2 with a display (OLED) unit, or controlling the sensor Data acquisition of the standard module 2 of the (SENSORS) unit, and so on.
  • CPU central processing unit
  • INTERFACE interface conversion
  • FIG. 6 is a schematic circuit diagram of one of the standard modules 2 of the present invention.
  • the functional unit of the standard module 2 includes an interface conversion unit 21, a battery and power management unit 22, an I2C/SPI master-slave transceiver chip 23, an analog signal transceiver chip 24, a CUP unit 25, a sensor unit 26, and a display. Screen (OLED) unit 27 and Bluetooth transceiver unit 28.
  • the interface conversion unit 21 is a USB to I2C/SPI chip, and the interface is rotated.
  • the switching unit 21 is connected to the interface signal bus 181, and its function is to convert the USB interface into an I2C/SPI interface;
  • the battery and power management unit 22 is connected to the power bus 184, and its function is to use the USB power source for the battery. Charging and generating appropriate power supply voltages for other circuits and for supplying other standard modules;
  • the I2C/SPI master-slave transceiver unit 23 is connected to the digital signal bus 183, and its function is master-slave conversion or protocol conversion of the data protocol.
  • the analog signal transceiver unit is connected to the analog signal bus 182, and functions to receive, transmit, and analog-digital convert the analog signal
  • the signal of the bus 182 is used to implement the analog signal exchange between the standard modules
  • the function of the CPU unit 25 is to communicate with each unit in the standard module by using the I2C/SP signal I and process various information to realize the energy control
  • the sensor unit 26 in the embodiment is a temperature sensor unit for detecting the ambient temperature, and transmitting the detected temperature data to the CPU unit 25 for processing, and transmitting OLED unit 27 is displayed, while I2C / SPI temperature data signal transmitted after the Bluetooth transceiver 28, a Bluetooth transceiver unit 28 is wirelessly transmitted to the remote host using the temperature data.
  • the circuit diagram shown in FIG. 6 may also be a circuit diagram in which a plurality of the standard modules are connected, and each standard module may include more or less combinations of different functional units, respectively.
  • Standard modules enable different bus transfers and different functions. Even the standard module does not contain any chips as DUMMY. Therefore, the standard module can be freely matched and replaced to increase or decrease a single function without having to replace the entire device, which greatly saves raw materials and achieves environmental protection.
  • FIG. 7 Please refer to Figure 7 to illustrate a second embodiment of the invention.
  • reference numerals denote the same configurations as those of FIGS. 1 to 6 which are the same as those of the first embodiment.
  • the interface patch cord of the second embodiment is substantially the same as the interface patch cord of the first embodiment, and the difference is that three sets of the analog signal connection terminals 162 of the connection terminals 160 pass through one of the analog signal buses 182.
  • the bus 182' is connected; wherein the digital signal connection terminals 163 of the three groups of the connection terminals 160 are connected by one of the digital signal buses 183, and the two sets of the digital signal connection terminals 163 of the connection terminals 160 pass another of the digital signals.
  • the bus 183' is connected; wherein the power connection terminals 164 of the three sets of the connection terminals 160 are connected by one of the power bus 184, and the power connection terminals 164 of the other two sets of the connection terminals 160 are connected by another power bus 184'. .
  • power transmission signals, digital signals, and analog signals can be transmitted between the three sets of the connection ends 160, and power signals, digital signals, and analog signals can be performed between the two sets of the connection ends 160. transmission.
  • FIGS. 8 and 9 Please refer to Figures 8 and 9 to illustrate a third embodiment of the invention.
  • reference numerals denote the same configurations as those of FIGS. 1 to 6 which are the same as those of the first embodiment.
  • the interface patch cord 3 of the third embodiment is substantially the same as the interface patch cord 1 of the first embodiment, except that the interface patch cord further includes at least one pair of facing magnetic materials, in each pair.
  • One of the magnetic materials is located on a side of one of the connecting lines facing the other connecting line, and the other of the magnetic materials is located on a side of the other connecting line facing the one connecting line
  • the interface patch cord 3 includes five pairs of magnetic materials 190, and in each pair of the magnetic materials 190, one of the magnetic materials 191 is located in one of the connecting lines.
  • the other side of the connecting line 132 faces the other side of the connecting line 132, and the other magnetic material 192 is located on the side of the other connecting line 132 facing the one connecting line 131.
  • the two connecting lines 131, 132 are attracted by the corresponding magnetic materials 191, 192 and merged into a two-wire structure;
  • the standard module 2 supports Two of the connecting lines 131, 132 are opened.
  • interface patch cord is not limited to the above disclosure, for example:
  • the bus configuration of the standard module may also be differently combined. For example, 1) one side of the standard module is connected to the interface signal bus 181, and the other side is connected to the power bus 184, as shown in FIG.
  • the interface 131 includes only the interface signal bus 181.
  • the connection line 132 includes only the power bus 184.
  • the connection terminal 160 includes only two types of connection terminals: an interface signal connection end 161 and a power connection end 164. 2) one side of the standard module is connected to the interface signal bus 181, the other side is connected to the power bus 184 and the digital signal bus 183; 3) one side of the standard module is connected to the interface signal bus 181, The other side is connected to the power bus 184 and the analog signal bus 182; or other combinations, which are not exemplified herein;
  • the connecting line 130 is not limited to include two mutually parallel connecting lines, and the limiting structure 140 is not limited to a pair of facing grooves, and the connecting line 130 may also be a flexible board.
  • the limiting structure 140 can also be a snapping elastic piece, as long as the connecting line 130 can be connected to the first interface and the second interface, the limiting structure can be used to install the standard module, in the present invention. Within the scope of thought.
  • the interface patch cord of the invention can install the standard module with various functions, thereby realizing the selection and combined application of functions such as health monitoring, Bluetooth earphone, radio, speaker, vibrator, simple patch cord, etc., as needed Free choice, material saving, and environmental protection.
  • the interface patch cord can be used as a wearable electronic device, such as a wristband, a watch, a ring, a belt, etc., which is convenient to wear and convenient to use.

Abstract

L'invention concerne un câble de raccordement d'interface (1) et des modules standard (2) utilisés dans le câble de raccordement d'interface. Le câble de raccordement d'interface (1) comprend une première interface (110), une seconde interface (120) et une paire de fils de connexion (131, 132). Une borne de chaque fil de connexion est connectée à la première interface, et l'autre borne de chaque fil de connexion est connectée à la seconde interface. La première interface et la seconde interface obtiennent la transmission de signaux par l'intermédiaire d'au moins un fil de connexion. La paire de fils de connexion comprend une pluralité de structures de limitation (140) pour le montage et le démontage des modules standards. La paire de fils de connexion comprend également de multiples groupes de bornes de connexion (160). Chaque structure de limitation correspondant à un groupe de bornes de connexion. Lorsque les modules standard sont assemblés dans les structures de limitation, les modules standard sont connectés les uns aux autres pour obtenir l'application de sélection entre de multiples fonctions, ce qui permet d'améliorer le niveau d'intégration d'un dispositif.
PCT/CN2015/086383 2014-08-12 2015-08-07 Câble de raccordement d'interface et module standard WO2016023444A1 (fr)

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CN201410395215.8A CN105337128B (zh) 2014-08-12 2014-08-12 接口转接线以及标准模块
CN201410395215.8 2014-08-12

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105975423B (zh) * 2016-04-01 2018-10-26 上海傲意信息科技有限公司 点对点信号级联传输装置及方法、便携电子设备
CN106125585B (zh) * 2016-04-19 2019-02-26 杭州纳雄科技有限公司 一种模块式可穿戴设备、控制方法和复合式电子设备

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5997338A (en) * 1993-12-01 1999-12-07 Oy Iws International Inc. Conductor joint for connecting an intelligent socket to a cable
EP1178571A2 (fr) * 2000-07-31 2002-02-06 FINCANTIERI CANTIERI NAVALI ITALIANI S.p.A. Améliorations de dispositifs et procédés pour la distribution d'électricité et de signaux, en particulier dans le domaine naval
CN1983980A (zh) * 2005-11-18 2007-06-20 泛达公司 用于转接线管理系统的智能电缆配置
CN203166270U (zh) * 2013-01-11 2013-08-28 上海斐讯数据通信技术有限公司 一种fpc转接线
CN203521678U (zh) * 2013-10-17 2014-04-02 中国联合网络通信有限公司北京市分公司 一种智能odn设备盘和管理器的连接插头

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202633619U (zh) * 2011-08-12 2012-12-26 蔡周贤 信号传递装置
CN202888571U (zh) * 2012-09-17 2013-04-17 深圳市哈里通实业有限公司 一种兼具USB接口及Micro USB接口的数据线
CN103730796B (zh) * 2012-10-15 2016-01-06 富士康(昆山)电脑接插件有限公司 复合式转接插头
CN203553557U (zh) * 2013-09-11 2014-04-16 汤学军 一种数据线

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5997338A (en) * 1993-12-01 1999-12-07 Oy Iws International Inc. Conductor joint for connecting an intelligent socket to a cable
EP1178571A2 (fr) * 2000-07-31 2002-02-06 FINCANTIERI CANTIERI NAVALI ITALIANI S.p.A. Améliorations de dispositifs et procédés pour la distribution d'électricité et de signaux, en particulier dans le domaine naval
CN1983980A (zh) * 2005-11-18 2007-06-20 泛达公司 用于转接线管理系统的智能电缆配置
CN203166270U (zh) * 2013-01-11 2013-08-28 上海斐讯数据通信技术有限公司 一种fpc转接线
CN203521678U (zh) * 2013-10-17 2014-04-02 中国联合网络通信有限公司北京市分公司 一种智能odn设备盘和管理器的连接插头

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