WO2016065821A1 - 一种多功能便携数据卡和数据传输方法 - Google Patents

一种多功能便携数据卡和数据传输方法 Download PDF

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Publication number
WO2016065821A1
WO2016065821A1 PCT/CN2015/074972 CN2015074972W WO2016065821A1 WO 2016065821 A1 WO2016065821 A1 WO 2016065821A1 CN 2015074972 W CN2015074972 W CN 2015074972W WO 2016065821 A1 WO2016065821 A1 WO 2016065821A1
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WO
WIPO (PCT)
Prior art keywords
module
data transmission
data
card
mode
Prior art date
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PCT/CN2015/074972
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English (en)
French (fr)
Inventor
罗柏林
Original Assignee
北京元隆雅图文化传播股份有限公司
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Publication date
Priority claimed from CN201410585041.1A external-priority patent/CN104317756B/zh
Priority claimed from CN201420628003.5U external-priority patent/CN204178362U/zh
Application filed by 北京元隆雅图文化传播股份有限公司 filed Critical 北京元隆雅图文化传播股份有限公司
Priority to US15/522,328 priority Critical patent/US10282335B2/en
Publication of WO2016065821A1 publication Critical patent/WO2016065821A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F13/00Interconnection of, or transfer of information or other signals between, memories, input/output devices or central processing units
    • G06F13/38Information transfer, e.g. on bus
    • G06F13/382Information transfer, e.g. on bus using universal interface adapter
    • G06F13/385Information transfer, e.g. on bus using universal interface adapter for adaptation of a particular data processing system to different peripheral devices
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F13/00Interconnection of, or transfer of information or other signals between, memories, input/output devices or central processing units
    • G06F13/38Information transfer, e.g. on bus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F13/00Interconnection of, or transfer of information or other signals between, memories, input/output devices or central processing units
    • G06F13/38Information transfer, e.g. on bus
    • G06F13/42Bus transfer protocol, e.g. handshake; Synchronisation
    • G06F13/4282Bus transfer protocol, e.g. handshake; Synchronisation on a serial bus, e.g. I2C bus, SPI bus
    • G06F13/4295Bus transfer protocol, e.g. handshake; Synchronisation on a serial bus, e.g. I2C bus, SPI bus using an embedded synchronisation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/067Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components
    • G06K19/07Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips
    • G06K19/077Constructional details, e.g. mounting of circuits in the carrier
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/0008General problems related to the reading of electronic memory record carriers, independent of its reading method, e.g. power transfer
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/10Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
    • G06K7/10009Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation sensing by radiation using wavelengths larger than 0.1 mm, e.g. radio-waves or microwaves
    • G06K7/10237Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation sensing by radiation using wavelengths larger than 0.1 mm, e.g. radio-waves or microwaves the reader and the record carrier being capable of selectively switching between reader and record carrier appearance, e.g. in near field communication [NFC] devices where the NFC device may function as an RFID reader or as an RFID tag
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B5/00Near-field transmission systems, e.g. inductive or capacitive transmission systems
    • H04B5/70Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes
    • H04B5/72Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes for local intradevice communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W56/00Synchronisation arrangements
    • H04W56/001Synchronization between nodes
    • H04W56/002Mutual synchronization
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L69/00Network arrangements, protocols or services independent of the application payload and not provided for in the other groups of this subclass
    • H04L69/08Protocols for interworking; Protocol conversion
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/14Direct-mode setup

Definitions

  • the present invention relates to the field of data card technology and data transmission technology, and in particular, to a multifunctional portable data card and a data transmission method.
  • the present invention provides a multifunctional portable data card and data transmission method, which can connect multiple smart mobile terminals and support two data transmission modes, and can simultaneously support connection of USB and card reader interfaces.
  • a multifunctional portable data card and data transmission method which can connect multiple smart mobile terminals and support two data transmission modes, and can simultaneously support connection of USB and card reader interfaces.
  • a multifunctional portable data card comprises a main control module, a gear selection module, a data transmission module, an interface module and a storage module, wherein:
  • the gear selection module is configured to: select a data transmission mode under the control of the main control module or connect an OTG data processing mode, and issue a gear position corresponding to the selected mode to the main control module. Selection signal
  • the main control module is configured to: detect a gear position selection signal of the gear position selection module, and send an operation command corresponding to the gear position selection signal to the data transmission module;
  • the data transmission module is configured to: after receiving the operation command issued by the main control module, perform data transmission in the data transmission mode or the OTG data processing mode;
  • the interface module is configured to: connect one or more external devices as a port for the data card to interact with the external device;
  • the storage module is configured to: store data to be saved in the data card.
  • the gear selection module includes two gear selection switches, which are a data transmission mode gear switch and an OTG data mode gear switch;
  • the data transmission mode gear position switch is connected to the first I/O port; and the OTG data mode gear position switch is connected to the second I/O port, the data transmission mode gear position switch and the The OTG data mode gear switch cannot be in the closed state at the same time;
  • the data transmission mode gear position switch is configured to: support the data transmission mode after closing;
  • the OTG data mode gear position switch is configured to: support the OTG data processing mode after closing.
  • the main control module includes a first input/output I/O port, a second I/O port, and a first communication port;
  • the first I/O port and the second I/O port are respectively connected to the data transmission mode gear position switch and the OTG data mode gear position switch;
  • the first communication port is connected to the data transmission module.
  • the data transmission module includes a first path and a second path that are separated from each other, and a control unit that is simultaneously connected to the first path and the second path, where
  • the first path is configured to: execute the data transmission mode
  • the second path is configured to: execute the OTG data processing mode
  • the control unit is configured to control conduction and deactivation of the first path and the second path.
  • the first communication port of the main control module and the data transmission module are The control unit is connected.
  • the interface module includes one or more portable connectors, a USB-A male connector, a card reader module, and a hub;
  • the one or more portable connectors are configured to: connect the smart mobile terminal;
  • the USB-A male head is set to: connect to a PC;
  • the card reader module is configured to: connect a smart card
  • One end of the one or more portable connectors is connected to one or more female bases of the smart mobile terminal;
  • the card reader module and the other end of the one or more portable connectors are connected to the data transmission module through the hub;
  • USB-A male connector is connected to the USB-B female socket of the PC; the other end is directly connected to the data transmission module.
  • one end of the first path of the data transmission module is connected to the card reader module, the one or more portable connectors and/or the storage module, and the other end is connected to the PC. ;
  • Both ends of the second path of the data transmission module are respectively connected to the card reader module and the one or more portable connectors.
  • the portable connector comprises: a universal serial bus type USB Type b, a mini universal serial bus Mini USB b, a micro universal serial bus Micro USB-A, a Micro USB-b, a Micro USB 3.0 b.
  • the storage module comprises a data storage card.
  • the data card further includes a smart card card removing tool, wherein
  • the smart card squeezing tool is configured to: take out the SIM card of the smart identification terminal of the smart mobile terminal from the card cradle;
  • the smart card retrieval tool is mounted in a recess of a protective casing of the multi-function portable data card.
  • the data card further includes an indication module, where the indication module is connected to the display output port of the main control module, and configured to: perform a data transmission mode or an OTG number in the data transmission module. During the processing mode, it indicates whether the working mode being executed is operating normally.
  • a data processing method based on any of the above multifunctional portable data cards comprising:
  • the interface module is connected to one or more external devices;
  • the gear selection module selects to execute the data transmission mode or the OTG data processing mode through two gear selection switches, and issues a gear selection signal corresponding to the selected mode to the main control module;
  • the main control module detects a gear position selection signal of the gear position selection module, and sends an operation command corresponding to the gear position selection signal to the data transmission module;
  • the data transmission module performs data transmission in the data transmission mode or the OTG data processing mode after receiving the operation command.
  • the step of the gear selection module to select to perform a data transmission mode or an OTG data processing mode by using two gear selection switches includes:
  • the gear selection module selects the data transmission mode by closing a data transmission mode gear switch
  • the gear selection module selects the OTG data processing mode by closing the OTG data mode gear switch.
  • a computer program comprising program instructions which, when executed by a computer, cause the computer to perform any of the above described data processing methods.
  • a carrier carrying the computer program A carrier carrying the computer program.
  • the embodiment of the present invention includes: a multifunctional portable data card and a data transmission method, the data card includes a main control module, a gear selection module, a data transmission module, an interface module, a storage module; and a main control module.
  • gear position selection signal for detecting the gear position selection module, and after the gear position is selected, issuing a corresponding operation command to the data transmission module according to an operation mode corresponding to the gear position selection signal;
  • Gear selection module for selection by opening and / or closing operations Selecting an execution data transmission mode or connecting an OTG data processing mode; and a data transmission module, configured to perform the data transmission mode or the OTG data processing mode after receiving the operation command issued by the main control module Data transmission;
  • an interface module configured to connect one or more smart mobile terminals, a smart card, the storage module, and/or a personal computer PC, as a port for the multifunctional portable data card to interact with an external device;
  • a storage module For storing data to be saved in the multi-function portable data card.
  • the storage module is added to the data card,
  • the data card can also be used as a memory card while having a transmission function, which further improves the practicability of the data card.
  • the data card of the embodiment of the invention has multiple functions, is small and portable, reduces the burden on the user, and increases the user's Experience.
  • FIG. 1 is a structural block diagram of a multifunctional portable data card according to an embodiment of the present invention.
  • FIG. 2 is a flow chart of a data processing method based on a multifunctional portable data card according to an embodiment of the present invention.
  • the embodiment of the present invention provides a multifunctional portable data card 01, which includes a main control module 02, a gear selection module 03, a data transmission module 04, an interface module 05, and a storage module 06.
  • the main control module 02 is configured to: detect a gear position selection signal of the gear position selection module 03, and control the gear position selection module to select an operation mode corresponding to the gear position selection signal, and after the gear position is selected, to the data transmission module 04 An operation command corresponding to the selected work mode is issued.
  • the main control module 02 includes a first input/output I/O port 021, a second I/O port 022, and a first communication port 023.
  • the main control module 02 is the first communication port 023 to issue an operation command corresponding to the selected working mode to the data transmission module 04.
  • the first I/O port 021 and the second I/O port 022 are connected to the gear selection module 03; the first communication port 023 is connected to the data transmission module 04.
  • the gear selection module 03 is configured to select a data transmission mode or an OTG data processing mode.
  • the gear selection module 03 selects a data transmission mode or an OTG data processing mode by an opening and/or closing operation.
  • the gear selection module 03 includes two gear selection switches, a data transmission mode gear switch 031 and an OTG data mode gear switch 032.
  • the data transmission mode gear position switch 031 is connected to the first I/O port 021; the OTG data mode gear position switch 032 is connected to the second I/O port 022, the data transmission mode gear position switch 031 and the OTG data mode gear position switch 032 cannot be closed at the same time.
  • the data transmission mode gear position switch 031 is set to: support the data transmission mode after closing.
  • the OTG data mode gear position switch 032 is set to: support the OTG data processing mode after closing.
  • the data transmission module 04 is configured to perform data transmission in the data transmission mode or the OTG data processing mode after receiving the operation command issued by the main control module 02.
  • the data transmission module 04 includes a first path 041 and a second path 042 separated from each other and a control unit 043 connected to the first path 041 and the second path 042, respectively.
  • the first path 041 is configured to perform a data transmission mode.
  • the second path 042 is configured to execute an OTG data processing mode.
  • the control unit 043 is configured to control the on and off of the first path 041 and the second path 042.
  • the first communication port 023 of the main control module 02 is connected to the control unit 043 of the data transmission module 04.
  • the interface module 05 is configured to: connect one or more external devices as a port for the multifunctional portable data card 01 to interact with the external device.
  • the external device may be a smart mobile terminal, a smart card, a storage module, and/or a personal computer PC.
  • the interface module 05 includes one or more portable connectors 051, a universal serial bus USB-A male 052, a card reader module 053, and/or a hub 054.
  • one or more portable connectors 051 are configured to: connect the smart mobile terminal;
  • the USB-A male 052 is set to: connect to a PC.
  • One end of the card reader module 053 is connected to the smart card.
  • One end of one or more portable connectors 051 is coupled to the female socket of one or more smart mobile terminals.
  • the card reader module 053 and the other end of the one or more portable connectors 051 are coupled to the data transmission module 04 via a hub 054.
  • USB-A male 052 is connected to the USB-B female of the PC, and the other end is directly connected to the data transmission module 04.
  • One end of the first path 041 of the data transmission module 04 is connected to the hub 054 and/or the memory module 06; the other end of the first path 041 is connected to the PC. Both ends of the second path 041 of the data transmission module 04 are connected to the card reader module 053 and/or one or more portable connectors 051, respectively.
  • the portable connector includes but is not limited to: universal serial bus type USB Type b, mini universal serial bus Mini USB b, micro universal serial bus Micro USB-A, Micro USB-b, Micro USB 3.0 b.
  • the storage module 06 is configured to: store data to be saved.
  • the storage module includes but is not limited to a data storage card.
  • the multifunctional portable data card 01 further includes a smart card retrieval tool 07 configured to: take out the user identification module SIM smart card of the smart mobile terminal from the card compartment.
  • a smart card retrieval tool 07 configured to: take out the user identification module SIM smart card of the smart mobile terminal from the card compartment.
  • the smart card accessing tool 07 is installed in the recess of the protective casing of the multifunctional portable data card and is opened or stowed by rotation.
  • the multi-function portable data card 01 further includes an indication module 08 connected to the display output port 024 of the main control module 02, and configured to indicate that the data transmission module performs the data transmission mode or the OTG data processing mode.
  • the working mode is working normally.
  • the embodiment of the invention further provides a data processing method based on the multifunctional portable data card, the method comprising the following steps:
  • the interface module 05 is connected to one or more external devices, such as a smart mobile terminal, a smart card, a storage module 06 in the multi-function portable data card 01, and/or a personal computer PC.
  • external devices such as a smart mobile terminal, a smart card, a storage module 06 in the multi-function portable data card 01, and/or a personal computer PC.
  • the gear selection module 03 selects a data transmission mode or an OTG data processing mode through two gear selection switches.
  • the gear selection module 03 selects to perform a data transmission mode or an OTG data processing mode by opening or closing the two gear selection switches.
  • the two gear positions switches cannot be in the closed state at the same time; the two gear position selection switches include the data transmission mode gear position switch 031 and the OTG data mode gear position switch 032.
  • the steps of the gear selection module 03 selecting the data transmission mode or the OTG data processing mode through the two gear selection switches include:
  • the data transfer mode is selected by closing the data transfer mode gear switch 031.
  • the OTG data processing mode is selected by closing the OTG data mode gear switch 032.
  • the main control module 02 detects the gear position selection signal of the gear position selection module 03, and issues an operation command corresponding to the gear position selection signal to the data transmission module 04.
  • step S103 the gear selection module 03 sends a gear selection signal corresponding to the selected mode to the main control module 02.
  • the step of the main control module 02 issuing an operation command corresponding to the gear selection signal to the data transmission module 04 includes:
  • the main control module 02 commands the control unit 043 of the data transmission module 04 to control the first path conduction 041 to execute the data transmission mode;
  • the main control module 02 commands the control unit 043 of the data transmission module 04 to control the second path conduction 041 to execute the OTG data processing mode.
  • the data transmission module 04 After receiving the operation command, the data transmission module 04 performs data transmission in the data transmission mode or the OTG data processing mode.
  • the data transmission mode refers to: the storage module 06 of the smart mobile terminal, the smart card and/or the multifunctional portable data card can perform data transmission with the personal computer PC; the PC recognizes and controls the intelligent mobile terminal and the smart card. And/or store the data information in module 06.
  • the PC when one or more of the portable connector 051 and the card reader module 053 are all connected to the smart mobile terminal or the smart card, the PC simultaneously identifies and controls the data information in all the smart mobile terminals, the smart card and/or the storage module 06; When any one of the portable connector 051 and the card reader module 053 is not connected to any smart mobile terminal or smart card, the PC only identifies and controls the connected smart mobile terminal, smart card and/or storage module 06 Data information.
  • the OTG data processing mode refers to: data processing between the smart mobile terminal and the smart card, between multiple smart mobile terminals, or between multiple smart mobile terminals and/or smart cards and the storage module 06 in the OTG mode. .
  • the method further comprises: before the data processing, using the smart card retrieval tool 07 installed in the recess of the protective casing of the multifunctional portable data card 01 to remove the smart identification card of the smart mobile terminal from the card holder Take out.
  • the smart card card removing tool 07 is opened or closed by rotating.
  • the method further includes: during the data transmission module 04 performing the data transmission mode or the OTG data processing mode, using the indication module 08 to indicate whether the working mode being executed is operating normally.
  • the embodiment of the invention also discloses a computer program, comprising program instructions, which when executed by a computer, enable the computer to execute any of the above data processing methods.
  • the embodiment of the invention also discloses a carrier carrying the computer program.
  • the multifunctional portable data card 01 of the embodiment of the present invention carries the design concept of “extremely simple, ultra-thin and portable”, and integrates a charging line, a data synchronization line, and supports MicroSD(TF)/SD (MMC) in a credit card-sized space.
  • MMC MicroSD(TF)/SD
  • a variety of standard data storage cards, mobile phone SIM card access tools and through OTG technology can easily provide extended storage space and backup documents for smart mobile terminal devices, and can store documents of traditional digital devices such as digital cameras to smart mobile terminal devices for sharing anytime, anywhere.
  • the slim design allows it to be easily placed in a card holder or wallet, greatly reducing the burden on the surrounding accessories of various smart mobile terminal devices, and facilitating travel and adding fun.
  • the multifunctional portable data card and the data transmission method of the embodiment of the invention can connect multiple smart mobile terminals and support two data transmission modes, and can simultaneously support the connection of the USB and the card reader interface, and have various functions, Small and portable, it reduces the burden on the user and increases the user's experience. Therefore, the present invention has strong industrial applicability.

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Abstract

一种多功能便携数据卡和数据传输方法,该数据卡包括主控模块、档位选择模块、数据传输模块、接口模块、存储模块;主控模块检测档位选择模块产生的档位选择信号,依据该信号所对应的工作模式,向数据传输模块发出相应的操作命令;数据传输模块接收到该操作命令后,执行数据传输模式或在连接OTG数据处理模式下的数据传输;接口模块提供本发明数据卡与外部设备交互的端口;该数据卡还包括存储模块。通过本发明的方案,能够接驳多个智能移动终端并支持两种数据传输方式,而且可以同时支持通用串行总线USB和读卡器接口的接驳,具备多种功能、小巧便携,减小了用户的行囊负担,增加用户的体验感。

Description

一种多功能便携数据卡和数据传输方法 技术领域
本发明涉及数据卡技术和数据传输技术领域,尤其涉及一种多功能便携数据卡和数据传输方法。
背景技术
移动互联时代的到来,让智能移动终端设备已日渐成为人们生活工作、出行途中随身必备的沟通娱乐工具。而且随着在连接OTG(On-The-Go)技术的迅速发展,实现智能移动终端之间的OTG模式下的数据处理设备也应运而生,但目前的设备可接驳的智能移动终端比较单一,并且不能同时支持智能移动终端与个人计算机PC机之间的数据传输,而且相关的便携设备仅支持通用串行总线USB或仅支持读卡器接口的接驳,人们为了满足不同的需求,通常不得不在行囊中携带繁杂多样的数据传输、存储配件,给人们带来了很多负担及不便,因此,亟需研发一种支持多种数据传输方式、可以接驳多个智能移动终端,而且可以同时支持USB和读卡器接口的多功能便携式设备,减小用户的行囊负担,增加用户的体验感。
发明内容
为了解决上述问题,本发明提出了一种多功能便携数据卡和数据传输方法,能够接驳多个智能移动终端并支持两种数据传输方式,而且可以同时支持USB和读卡器接口的接驳,具备多种功能、小巧便携,减小了用户的行囊负担,增加用户的体验感。
为了达到上述目的,采用如下技术方案:
一种多功能便携数据卡,包括主控模块、档位选择模块、数据传输模块、接口模块和存储模块,其中:
所述档位选择模块设置成:在所述主控模块的控制下选择数据传输模式或在连接OTG数据处理模式,并向主控模块发出与所选择的模式相应的档位 选择信号;
所述主控模块设置成:检测所述档位选择模块的档位选择信号,向所述数据传输模块发出与所述档位选择信号相应的操作命令;
所述数据传输模块设置成:在接收到所述主控模块发出的所述操作命令之后,执行所述数据传输模式或所述OTG数据处理模式下的数据传输;
所述接口模块设置成:接驳一个或多个外部设备,作为该数据卡与所述外部设备交互的端口;
所述存储模块,设置成:存储将要保存在所述数据卡中的数据。
可选地,所述档位选择模块包括两个档位选择开关,分别为数据传输模式档位开关和OTG数据模式档位开关;
其中所述数据传输模式档位开关与所述第一I/O端口相连;以及所述OTG数据模式档位开关与所述第二I/O端口相连,所述数据传输模式档位开关和所述OTG数据模式档位开关不能同时处于闭合状态;
所述数据传输模式档位开关,设置成:闭合后支持所述数据传输模式;
所述OTG数据模式档位开关,设置成:闭合后支持所述OTG数据处理模式。
可选地,所述主控模块包括第一输入/输出I/O端口、第二I/O端口以及第一通讯端口;
其中,所述第一I/O端口和所述第二I/O端口分别与所述数据传输模式档位开关和所述OTG数据模式档位开关相连;
所述第一通讯端口与所述数据传输模块相连。
可选地,所述数据传输模块包括相互分离的第一通路和第二通路、以及同时与所述第一通路和所述第二通路相连的控制单元,其中,
所述第一通路设置成:执行所述数据传输模式;
所述第二通路设置成:执行所述OTG数据处理模式;
所述控制单元设置成:控制所述第一通路和所述第二通路的导通与关断。
可选地,所述主控模块的所述第一通讯端口与所述数据传输模块的所述 控制单元相连。
可选地,所述接口模块,包括一个或多个便携接头、USB-A公头、读卡器模块和集线器;
其中,所述一个或多个便携接头设置成:连接智能移动终端;
所述USB-A公头设置成:连接PC机;
所述读卡器模块设置成:连接智能卡;
所述一个或多个便携接头的一端与一个或多个所述智能移动终端的母座接驳;
所述读卡器模块和所述一个或多个便携接头的另一端通过所述集线器与所述数据传输模块相连;
所述USB-A公头的一端与所述PC机的USB-B母座接驳;另一端直接与所述数据传输模块相连。
可选地,所述数据传输模块的所述第一通路的一端与所述读卡器模块、所述一个或多个便携接头和/或所述存储模块相连,另一端与所述PC机相连;
所述数据传输模块的所述第二通路的两端分别与所述读卡器模块和所述一个或多个便携接头相连。
可选地,所述便携接头包括:通用串行总线类型USB Type b、迷你通用串行总线Mini USB b、微型通用串行总线Micro USB-A,Micro USB-b,Micro USB 3.0 b。
可选地,所述存储模块包括数据存储卡。
可选地,该数据卡还包括智能卡取卡工具,其中,
所述设智能卡取卡工具置成:将所述智能移动终端的用户识别模块SIM智能卡从卡仓中取出;
所述智能卡取卡工具安装在所述多功能便携数据卡的保护外壳的凹槽中。
可选地,该数据卡还包括指示模块,所述指示模块与所述主控模块的显示输出端口连接,设置成:在所述数据传输模块执行数据传输模式或OTG数 据处理模式期间,指示正在执行的工作模式是否正常运行。
一种基于上述任意的多功能便携数据卡的数据处理方法,包括:
接口模块接驳一个或多个外部设备;
档位选择模块通过两个档位选择开关来选择执行数据传输模式或OTG数据处理模式,并向主控模块发出与所选择的模式相应的档位选择信号;
主控模块检测所述档位选择模块的档位选择信号,向数据传输模块发出与所述档位选择信号相应的操作命令;
所述数据传输模块在接收到所述操作命令之后,执行所述数据传输模式或所述OTG数据处理模式下的数据传输。
可选地,所述档位选择模块通过两个档位选择开关来选择执行数据传输模式或OTG数据处理模式的步骤包括:
所述档位选择模块通过数据传输模式档位开关的闭合选择所述数据传输模式;
所述档位选择模块通过所述OTG数据模式档位开关的闭合选择所述OTG数据处理模式。
一种计算机程序,包括程序指令,当该程序指令被计算机执行时,使得该计算机可执行上述任意的数据处理方法。
一种载有所述计算机程序的载体。
与相关技术相比,本发明实施例包括:一种多功能便携数据卡和数据传输方法,该数据卡包括主控模块、档位选择模块、数据传输模块、接口模块、存储模块;主控模块,用于检测所述档位选择模块的档位选择信号,在所述档位选定之后,依据所述档位选择信号所对应的工作模式,向所述数据传输模块发出相应的操作命令;档位选择模块,用于通过打开和/或闭合操作来选 择执行数据传输模式或在连接OTG数据处理模式;数据传输模块,用于在接收到所述主控模块发出的所述操作命令之后,执行所述数据传输模式或所述OTG数据处理模式下的数据传输;接口模块,用于接驳一个或多个智能移动终端、智能卡、所述存储模块和/或个人计算机PC机,作为所述多功能便携数据卡与外部设备交互的端口;存储模块,用于存储将要保存在所述多功能便携数据卡中的数据。通过本发明的方案,能够接驳多个智能移动终端并支持两种数据传输方式,而且可以同时支持USB和读卡器接口的接驳,另外,由于在数据卡中加入了存储模块,使该数据卡在具备传输功能的同时还可以作为存储卡使用,进一步提高了数据卡的实用性,本发明实施例的数据卡具备多种功能、小巧便携,减小了用户的行囊负担,增加用户的体验感。
附图概述
下面对本发明实施例中的附图进行说明,实施例中的附图是用于对本发明的进一步理解,与说明书一起用于解释本发明,并不构成对本发明保护范围的限制。
图1为本发明实施例的多功能便携数据卡结构框图;
图2为本发明实施例的基于多功能便携数据卡的数据处理方法流程图。
本发明的较佳实施方式
为了便于本领域技术人员的理解,下面结合附图对本发明作进一步的描述,并不能用来限制本发明的保护范围。
本发明实施例提出了一种多功能便携数据卡01,该数据卡包括主控模块02、档位选择模块03、数据传输模块04、接口模块05和存储模块06。
主控模块02,设置成:检测档位选择模块03的档位选择信号,控制所述档位选择模块选择与档位选择信号相应的工作模式,在档位选定之后,向数据传输模块04发出与所选择的工作模式相应的操作命令。
可选地,主控模块02包括第一输入/输出I/O端口021、第二I/O端口022以及第一通讯端口023。
可选地,通过主控模块02是第一通讯端口023向数据传输模块04发出与所选择的工作模式相应的操作命令的。
其中,第一I/O端口021和第二I/O端口022与档位选择模块03相连;第一通讯端口023与数据传输模块04相连。
档位选择模块03,设置成:选择数据传输模式或OTG数据处理模式。
可选地,档位选择模块03通过打开和/或闭合操作来选择数据传输模式或OTG数据处理模式。
可选地,档位选择模块03包括两个档位选择开关,分别为数据传输模式档位开关031和OTG数据模式档位开关032。
其中,数据传输模式档位开关031与第一I/O端口021相连;OTG数据模式档位开关032与第二I/O端口022相连,数据传输模式档位开关031和OTG数据模式档位开关032不能同时处于闭合状态。
数据传输模式档位开关031,设置成:闭合后支持数据传输模式。
OTG数据模式档位开关032,设置成:闭合后支持OTG数据处理模式。
数据传输模块04,设置成:在接收到主控模块02发出的操作命令之后,执行数据传输模式或OTG数据处理模式下的数据传输。
可选地,数据传输模块04包括相互分离的第一通路041和第二通路042、以及分别与第一通路041和第二通路042相连的控制单元043。
第一通路041,设置成:执行数据传输模式。
第二通路042,设置成:执行OTG数据处理模式。
控制单元043,设置成:控制第一通路041和第二通路042的导通与关断。
可选地,主控模块02的第一通讯端口023与数据传输模块04的控制单元043相连。
接口模块05,设置成:接驳一个或多个外部设备,作为多功能便携数据卡01与外部设备交互的端口。可选地,外部设备可以为智能移动终端、智能卡、存储模块和/或个人计算机PC机。
可选地,接口模块05,包括一个或多个便携接头051、通用串行总线USB-A公头052、读卡器模块053和/或集线器054。
其中,一个或多个便携接头051设置成:连接智能移动终端;
USB-A公头052设置成:连接PC机。
读卡器模块053的一端与智能卡接驳。
一个或多个便携接头051的一端与一个或多个智能移动终端的母座接驳。
读卡器模块053与一个或多个便携接头051的另一端通过集线器054与数据传输模块04相连。
USB-A公头052的一端与PC机的USB-B母座接驳,另一端直接与数据传输模块04相连。
可选地,
数据传输模块04的第一通路041的一端与集线器054和/或存储模块06相连;第一通路041的另一端与PC机相连。数据传输模块04的第二通路041的两端分别与读卡器模块053和/或一个或多个便携接头051相连。
其中,便携接头包括但不限于:通用串行总线类型USB Type b、迷你通用串行总线Mini USB b、微型通用串行总线Micro USB-A,Micro USB-b,Micro USB 3.0 b。
存储模块06,设置成:存储将要保存的数据。
可选地,该存储模块包括但不限于数据存储卡。
可选地,多功能便携数据卡01还包括智能卡取卡工具07,设置成:将智能移动终端的用户识别模块SIM智能卡从卡仓中取出。
智能卡取卡工具07安装在多功能便携数据卡的保护外壳的凹槽中,通过旋转方式打开或收起。
可选地,多功能便携数据卡01还包括指示模块08,与主控模块02的显示输出端口024连接,设置成:在数据传输模块执行数据传输模式或OTG数据处理模式期间,指示正在执行的工作模式是否正常运行。
本发明实施例还提出一种基于该多功能便携数据卡的数据处理方法,该方法包括以下步骤:
S101,接口模块05接驳一个或多个外部设备,例如智能移动终端、智能卡、多功能便携数据卡01内的存储模块06和/或个人计算机PC机。
S102,档位选择模块03通过两个档位选择开关来选择数据传输模式或OTG数据处理模式。
可选地,档位选择模块03通过打开或闭合两个档位选择开关来选择执行数据传输模式或OTG数据处理模式。
可选地,两个档位开关不能同时处于闭合状态;两个档位选择开关包括数据传输模式档位开关031和OTG数据模式档位开关032。
档位选择模块03通过两个档位选择开关来选择数据传输模式或OTG数据处理模式的步骤包括:
通过闭合数据传输模式档位开关031选择数据传输模式。
通过闭合OTG数据模式档位开关032选择OTG数据处理模式。
S103,主控模块02检测档位选择模块03的档位选择信号,向数据传输模块04发出与所述档位选择信号相应的操作命令。
步骤S103之前还包括,档位选择模块03向主控模块02发出与所选择的模式相应的档位选择信号。
可选地,主控模块02向数据传输模块04发出与所述档位选择信号相应的操作命令的步骤包括:
档位选择模块03的数据传输模式档位开关031闭合时,主控模块02命令数据传输模块04的控制单元043控制第一通路导通041,执行数据传输模式;
档位选择模块03的OTG数据模式档位开关032闭合时,主控模块02命令数据传输模块04的控制单元043控制第二通路导通041,执行OTG数据处理模式。
S104,数据传输模块04在接收到操作命令之后,执行数据传输模式或OTG数据处理模式下的数据传输。
可选地,数据传输模式是指:智能移动终端、智能卡和/或多功能便携数据卡的存储模块06分别与个人计算机PC机之间可以进行数据传输;PC机识别并控制智能移动终端、智能卡和/或存储模块06中的数据信息。
其中,当一个或多个便携接头051和读卡器模块053分别全部接驳智能移动终端或智能卡时,PC机同时识别和控制全部智能移动终端、智能卡和/或存储模块06中的数据信息;当一个或多个便携接头051和读卡器模块053中任意一个未接驳任何智能移动终端或智能卡时,PC机仅识别和控制已接驳的智能移动终端、智能卡和/或存储模块06中的数据信息。
可选地,OTG数据处理模式是指:智能移动终端与智能卡之间、多个智能移动终端之间,或者多个智能移动终端和/或智能卡与存储模块06之间在OTG模式下的数据处理。
可选地,该方法还包括:在进行数据处理之前,使用安装在多功能便携数据卡01的保护外壳的凹槽中的智能卡取卡工具07将智能移动终端的用户识别模块SIM智能卡从卡仓中取出。
其中,智能卡取卡工具07通过旋转方式打开或收起。
可选地,该方法还包括:在数据传输模块04执行数据传输模式或OTG数据处理模式期间,使用指示模块08指示正在执行的工作模式是否正常运行。
本发明实施例还公开了一种计算机程序,包括程序指令,当该程序指令被计算机执行时,使得该计算机可执行上述任意的数据处理方法。
本发明实施例还公开了一种载有所述计算机程序的载体。
本发明实施例的多功能便携数据卡01携领“极致简约、超薄便携”的设计理念,在仅仅信用卡大小的空间内,集成充电线、数据同步线、支持MicroSD(TF)/SD(MMC)多种标准的数据存储卡、手机SIM卡取卡工具以及通过 OTG技术,可以轻松为智能移动终端设备提供扩展存储空间、备份文档,更可以将传统数码设备比如数码相机等的文档存储至智能移动终端设备,随时随地分享。轻薄的外观设计,可将其轻松放入卡包或钱包,极大程度减轻各种智能移动终端设备周边配件给人们带来的负担,为出行提供便利,增添乐趣。
需要说明的是,以上所述的实施例仅是为了便于本领域的技术人员理解而已,并不用于限制本发明的保护范围,在不脱离本发明的发明构思的前提下,本领域技术人员对本发明所做出的任何显而易见的替换和改进等均在本发明的保护范围之内。
工业实用性
本发明实施例的多功能便携数据卡和数据传输方法,能够接驳多个智能移动终端并支持两种数据传输方式,而且可以同时支持USB和读卡器接口的接驳,具备多种功能、小巧便携,减小了用户的行囊负担,增加用户的体验感。因此本发明具有很强的工业实用性。

Claims (15)

  1. 一种多功能便携数据卡,包括主控模块、档位选择模块、数据传输模块、接口模块和存储模块,其中:
    所述档位选择模块设置成:在所述主控模块的控制下选择数据传输模式或在连接OTG数据处理模式,并向主控模块发出与所选择的模式相应的档位选择信号;
    所述主控模块设置成:检测所述档位选择模块的档位选择信号,向所述数据传输模块发出与所述档位选择信号相应的操作命令;
    所述数据传输模块设置成:在接收到所述主控模块发出的所述操作命令之后,执行所述数据传输模式或所述OTG数据处理模式下的数据传输;
    所述接口模块设置成:接驳一个或多个外部设备,作为该数据卡与所述外部设备交互的端口;
    所述存储模块,设置成:存储将要保存在所述数据卡中的数据。
  2. 如权利要求1所述的多功能便携数据卡,其中,所述档位选择模块包括两个档位选择开关,分别为数据传输模式档位开关和OTG数据模式档位开关;
    其中所述数据传输模式档位开关与所述第一I/O端口相连;以及所述OTG数据模式档位开关与所述第二I/O端口相连,所述数据传输模式档位开关和所述OTG数据模式档位开关不能同时处于闭合状态;
    所述数据传输模式档位开关,设置成:闭合后支持所述数据传输模式;
    所述OTG数据模式档位开关,设置成:闭合后支持所述OTG数据处理模式。
  3. 如权利要求2所述的多功能便携数据卡,其中,所述主控模块包括第一输入/输出I/O端口、第二I/O端口以及第一通讯端口;
    其中,所述第一I/O端口和所述第二I/O端口分别与所述数据传输模式档位开关和所述OTG数据模式档位开关相连;
    所述第一通讯端口与所述数据传输模块相连。
  4. 如权利要求3所述的多功能便携数据卡,其中,所述数据传输模块包括相互分离的第一通路和第二通路、以及同时与所述第一通路和所述第二通路相连的控制单元,其中,
    所述第一通路设置成:执行所述数据传输模式;
    所述第二通路设置成:执行所述OTG数据处理模式;
    所述控制单元设置成:控制所述第一通路和所述第二通路的导通与关断。
  5. 如权利要求4所述的多功能便携数据卡,其中,所述主控模块的所述第一通讯端口与所述数据传输模块的所述控制单元相连。
  6. 如权利要求5所述的多功能便携数据卡,其中,所述接口模块,包括一个或多个便携接头、USB-A公头、读卡器模块和集线器;
    其中,所述一个或多个便携接头设置成:连接智能移动终端;
    所述USB-A公头设置成:连接PC机;
    所述读卡器模块设置成:连接智能卡;
    所述一个或多个便携接头的一端与一个或多个所述智能移动终端的母座接驳;
    所述读卡器模块和所述一个或多个便携接头的另一端通过所述集线器与所述数据传输模块相连;
    所述USB-A公头的一端与所述PC机的USB-B母座接驳;另一端直接与所述数据传输模块相连。
  7. 如权利要求6所述的多功能便携数据卡,其中,
    所述数据传输模块的所述第一通路的一端与所述读卡器模块、所述一个或多个便携接头和/或所述存储模块相连,另一端与所述PC机相连;
    所述数据传输模块的所述第二通路的两端分别与所述读卡器模块和所述一个或多个便携接头相连。
  8. 如权利要求6所述的多功能便携数据卡,其中,所述便携接头包括:通用串行总线类型USB Type b、迷你通用串行总线Mini USB–b、微型通用串行总线Micro USB-A,Micro USB-b,Micro USB 3.0–b。
  9. 如权利要求1所述的多功能便携数据卡,其中,所述存储模块包括数据存储卡。
  10. 如权利要求1所述的多功能便携数据卡,该数据卡还包括智能卡取卡工具,其中,
    所述设智能卡取卡工具置成:将所述智能移动终端的用户识别模块SIM智能卡从卡仓中取出;
    所述智能卡取卡工具安装在所述多功能便携数据卡的保护外壳的凹槽中。
  11. 如权利要求1所述的多功能便携数据卡,该数据卡还包括指示模块,所述指示模块与所述主控模块的显示输出端口连接,设置成:在所述数据传输模块执行数据传输模式或OTG数据处理模式期间,指示正在执行的工作模式是否正常运行。
  12. 一种基于权利要求1-11中任意一项所述的多功能便携数据卡的数据处理方法,包括:
    接口模块接驳一个或多个外部设备;
    档位选择模块通过两个档位选择开关来选择执行数据传输模式或OTG数据处理模式,并向主控模块发出与所选择的模式相应的档位选择信号;
    主控模块检测所述档位选择模块的档位选择信号,向数据传输模块发出与所述档位选择信号相应的操作命令;
    所述数据传输模块在接收到所述操作命令之后,执行所述数据传输模式或所述OTG数据处理模式下的数据传输。
  13. 如权利要求12所述的数据处理方法,其中,所述档位选择模块通过两个档位选择开关来选择执行数据传输模式或OTG数据处理模式的步骤包括:
    所述档位选择模块通过数据传输模式档位开关的闭合选择所述数据传输模式;
    所述档位选择模块通过所述OTG数据模式档位开关的闭合选择所述 OTG数据处理模式。
  14. 一种计算机程序,包括程序指令,当该程序指令被计算机执行时,使得该计算机可执行权利要求12-13中任一项所述的数据处理方法。
  15. 一种载有权利要求14所述计算机程序的载体。
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