WO2007031011A1 - Procede de sauvegarde d'informations de telephone mobile et dispositif dans un chargeur de telephone mobile - Google Patents

Procede de sauvegarde d'informations de telephone mobile et dispositif dans un chargeur de telephone mobile Download PDF

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Publication number
WO2007031011A1
WO2007031011A1 PCT/CN2006/002332 CN2006002332W WO2007031011A1 WO 2007031011 A1 WO2007031011 A1 WO 2007031011A1 CN 2006002332 W CN2006002332 W CN 2006002332W WO 2007031011 A1 WO2007031011 A1 WO 2007031011A1
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Prior art keywords
mobile phone
information
module
semiconductor storage
storage medium
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PCT/CN2006/002332
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English (en)
French (fr)
Inventor
Jianping Wang
Junqiang Li
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Jianping Wang
Junqiang Li
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Publication of WO2007031011A1 publication Critical patent/WO2007031011A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • H04M1/72409User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3827Portable transceivers
    • H04B1/3883Arrangements for mounting batteries or battery chargers

Definitions

  • the present invention relates to electrical digital data processing techniques, and more particularly to a method and apparatus for backing up information in a mobile telephone.
  • Mobile phones commonly known as mobile phones, generally store a lot of important information such as phone numbers and text messages. If the information in the phone is not backed up, once the phone is lost or damaged, the information in the phone will be lost. In turn, it will bring irreparable damage to mobile phone users.
  • the mobile phone data line is to store the mobile phone data into the computer through the mobile phone data line; the other is the SD/MMC interface built into the mobile phone supporting the SD/MMC memory card, with the help of SD
  • the /MMC interface stores the information in the phone in the SD/MMC memory card for backup; the third method is that the phone has a SIM card data backup device.
  • the first method has the following disadvantages: It is necessary to install the software on the computer and requires the user to be very familiar with the computer; the second method has the following disadvantages: Only the mobile phone with the SD/MMC interface has the backup function and the cost is high.
  • the shortcoming of the third method is that: only the information stored in the SIM card can be backed up, and the information stored in the mobile phone itself cannot be backed up.
  • Chinese Patent No. 02134901.0 discloses a technology for "semiconductor storage method and device for mobile phone and computer system", which can realize backup and storage of mobile phone user data, and realize direct data communication with computer system by means of USB or IEEE1394 universal interface. Data exchange. However, it is similar to the first method described above, and relies on a computer program for data processing, which is complicated in operation and high in product cost. Summary of the invention
  • the technical problem to be solved by the present invention is to avoid the above-mentioned deficiencies of the prior art and to propose a method and apparatus for backing up information in a mobile phone with low cost and capable of backing up all the information in the mobile phone.
  • a method for backing up information in a mobile phone charger including the steps of:
  • the mobile phone charger includes a power conversion module and a charging management module, and the charging management module controls charging of the used mobile phone;
  • a control module, a mobile phone interface, a semiconductor storage medium module, and a setting are also provided in the mobile phone charger
  • the mobile phone interface is adapted to the data interface of the mobile phone used
  • control module reads the information stored in the used mobile phone according to the data transmission protocol of the mobile phone and writes it into the semiconductor storage medium module; and/or reads the information in the semiconductor storage medium module, and according to the mobile phone
  • the data transfer protocol writes the information read from the semiconductor storage medium module into the used handset.
  • a mobile phone charger for realizing a backup method for information in the above mobile phone comprising a power conversion module and a charging management module, further comprising a control module, a mobile phone interface adapted to a data interface of the used mobile phone, a semiconductor storage medium module and an input control device
  • the control module is electrically connected to the mobile phone interface, the semiconductor storage medium module, the input control device, the power conversion module, and the charging management module respectively; the control module reads the information stored in the used mobile phone by using the mobile phone interface, and writes Entering into the semiconductor storage medium module; and/or reading information in the semiconductor storage medium module and writing the information into the used mobile phone.
  • the technical solution of the invention integrates the semiconductor storage device and the mobile phone charging device, and can back up all the information in the mobile phone while charging, and the information is not lost after the power is cut off.
  • the technical effect of the present invention is that: all the information in the mobile phone can be backed up, and the existing memory can only be stored for the mobile phone SIM card alone, and the information stored in the mobile phone itself cannot be backed up.
  • the semiconductor storage device and the mobile phone charging device are integrated into one body, and the backup of the information in the mobile phone and the SIM card information of the mobile phone are synchronously realized at the same time of charging, which is convenient to use and convenient to carry.
  • Figure 1 is a schematic block diagram of the apparatus of the present invention
  • FIG. 2 is a flow chart of the data exchange between the device of the present invention and the mobile phone; wherein FIG. 4-1 is a working flow chart of the first mode of data exchange; FIG. 4-2 a flow chart of the second mode of data exchange;
  • FIG. 3 is a circuit schematic diagram of a control module of the present invention.
  • FIG. 4 is a circuit schematic diagram of a semiconductor memory medium module of the present invention.
  • FIG. 5 is a circuit schematic diagram of a semiconductor information prompting module of the present invention.
  • FIG. 6 is a schematic diagram of the charge management module 27 in the apparatus of the present invention.
  • Figure 7 is a circuit schematic of the power conversion module 25 of the apparatus of the present invention.
  • Figure 8 is a block diagram showing the principle of an independent device capable of backing up information in a mobile phone
  • Figure 9 is a flow chart showing the operation of the independent backup device of Figure 8. detailed description
  • the method for backing up information in a mobile phone charger in the mobile phone charger includes the steps:
  • the mobile phone charger includes a power conversion module 25 and a charging management module 27, and the charging management module 27 controls charging of the used mobile phone;
  • control module 21, the mobile phone interface 22, and the semiconductor storage medium module 23 are further disposed in the mobile phone charger, and the mobile phone interface 22 is set to be adapted to the data interface of the used mobile phone;
  • the mobile phone charger for implementing the above method for backing up information in the mobile phone, as shown in FIG. 1, includes a control module 21, a mobile phone interface 22 adapted to the data interface of the used mobile phone, a semiconductor storage medium module 23, and an input control device 24 The power conversion module 25, the information prompting module 26, and the charging management module 27.
  • the control module 21 is electrically connected to the handset interface 22, the semiconductor storage medium module 23, the input control device 24, the power conversion module 25, and the charge management module 27, respectively.
  • the control module 21 is responsible for the scheduling of other modules.
  • the control module 21 and the charging management module 27 are physically integrated or independent.
  • the mobile phone interface 22 can be various types of mobile phone data interfaces such as UART (serial port), RS232, Bluetooth (BLUE TOOTH), USB, and infrared, and serves as a charging interface.
  • the semiconductor storage medium module 23 is used for storing a semiconductor storage medium of mobile phone material information, including but not limited to a flash memory, an electrically erasable memory (E 2 PROM ), a DRAM, an SRAM, an SDRAM, and the like.
  • the information prompting module 26 is used to prompt the state and operation of the device of the present invention, and may be various display devices such as LEDs and LCDs.
  • the information prompting module 26 may also not be provided.
  • the power conversion module 25 converts 220V or 110V AC power into the DC power required by the device of the present invention for charging and data exchange of the used mobile phone.
  • the input control device 24 can be a button or a trigger pin input level to trigger the control module 2 1 to perform related actions.
  • the present invention may also not provide the input control device 24, but automatically back up the information in the mobile phone after the device is powered on.
  • the specific circuit schematics of the charge management module 27 and the power conversion module 25 are shown in FIG. 3, FIG. 4, FIG. 5, FIG. 6, and FIG. 7, respectively.
  • the control module 21 uses an AT89LV52 chip.
  • FIG. 2 is a schematic diagram of the workflow of the embodiment.
  • the workflow of the embodiment has two forms, one is that all information stored in the mobile phone or in the device of the present invention is used for one-way reading and writing, and the other is two-way synchronous reading and writing.
  • the specific working process of the first form of backup is shown in Fig. 2-1 and Fig. 1. After the device is powered on and initialized, it is judged whether the battery capacity of the used mobile phone is full, and if the battery is not full, charging is performed.
  • the control module 21 either reads the information in the used mobile phone and writes the semiconductor storage medium module 23, or reads the semiconductor storage, according to an instruction input by the input control device 24.
  • the information in the media module 23 is written to the used mobile phone.
  • the specific workflow of the second form of backup is shown in Fig. 2-2 and Fig. 1. After the device is powered on and initialized, it is judged whether the battery capacity of the used mobile phone is full, and if the battery is not full, the charging is performed. In the case where the battery is full, it is judged whether there is a record of information change since the last exchange of information in the used mobile phone, and if so, the information change record in the used mobile phone is read and written into the semiconductor storage in the device of the present invention.
  • the independent backup device includes a control module 11, a mobile phone interface 12, a semiconductor storage medium module 13, an input control device 14, a power supply module 15, and an information prompting module 16.
  • the mobile phone interface 12 is adapted to the data interface of the mobile phone used; the control module 11 is electrically connected to the mobile phone interface 12, the semiconductor storage medium module 13, the input control device 14, the power supply module 15, and the information prompting module 16, respectively. .
  • the control module 11 is responsible for scheduling of other modules.
  • the mobile phone interface 12 can be various types of mobile phone data interfaces such as UART (serial port;), RS232, Bluetooth (BLUE TOOTH), USB, and infrared.
  • the semiconductor storage medium module 13 is a semiconductor storage medium for storing mobile phone material information, including but not limited to a flash memory, an electrically erasable memory (E 2 PROM ), a DRAM, an SRAM, an SDRAM, and the like.
  • the information prompting module 16 is configured to prompt the state and operation of the device of the present invention, and may be various display devices such as LEDs and LCDs. The information prompting module 16 may also not be provided.
  • the power module 15 provides power to various components of the device of the present invention.
  • the device of the present invention can be powered by itself, or can obtain power from a mobile phone interface, or obtain power from a related device/accessory.
  • the input control device 14 can be a button or a trigger pin input level to touch
  • the hair control module 11 performs related actions.
  • the input control device 14 may not be provided in the present invention, and the device automatically backs up information in the mobile phone after being powered on.
  • the specific circuit schematic diagrams of the control module 11, the semiconductor storage medium module 13, and the information prompting module 16 of the present embodiment are shown in FIG. 3, FIG. 4 and FIG. 5, respectively.
  • FIG. 3 The specific circuit schematic diagrams of the control module 11, the semiconductor storage medium module 13, and the information prompting module 16 of the present embodiment are shown in FIG. 3, FIG. 4 and FIG. 5, respectively.
  • FIG. 9 is a schematic diagram of the workflow of the independent backup device, and the workflow thereof also has two forms, one is that all information stored in the mobile phone or the device in the device is used for one-way reading and writing, and the other is two-way synchronous reading and writing.
  • the specific workflow of the first form of backup is as shown in FIG. IX and FIG. 8. After the device is powered on and initialized according to the instruction input by the input control device 14, the control module 11 or the used mobile phone is read. The internal information material is written into the semiconductor storage medium module 13, or the information material in the semiconductor storage medium module 13 is read and written into the used mobile phone.
  • the specific workflow of the second form of backup is shown in FIG. 9-2 and FIG. 8. After the device is powered on and initialized, it is determined whether there is a record of information change in the used mobile phone since the last exchange of information, and if so, read Take the information change record in the used mobile phone and write it to this hair
  • the semiconductor storage medium module 13 in the device At the same time, it is judged whether there is an information change record in the semiconductor storage medium module 13 in the device of the present invention since the last exchange of information, and if so, the semiconductor is read The information changes in the storage medium module 13 are recorded and written in the used mobile phone.
  • the main components used in the present invention are as follows:

Description

在手机充电器内备份手机内信息的方法和装¾ 技术领域
本发明涉及电数字数据处理技术, 特别是涉及将移动电话内信息作备份存储的 方法和装置。 背景垓术
移动电话, 俗称手机, 其内一般存储有电话号码和短信等很多重要信息, 如果 没有对手机内信息作备份存储, 一旦手机丟失或者损坏, 手机内信息就会随之丟失。 进而给手机使用者带来不可弥补的损失。 为了避免手机内信息丟失, 现有技术中有三 种方法: 一种是通过手机数据线将手机资料存储到电脑中; 另一种是手机内置支持 SD/MMC存储卡的 SD/MMC接口,借助 SD/MMC接口将手机内信息存储在 SD/MMC 存储卡中备份;第三种方式是手机带有 SIM卡资料备份器。第一种方法存在以下不足: 需要在电脑中安装软件,并且要求使用者对电脑非常熟悉; 第二种方法存在以下不足: 只有设置 SD/MMC接口的手机才具有备份功能, 成本高。 第三种方法的不足之处在 于: 只能备份存储于 SIM卡中的信息, 不能对存储于手机本身的信息备份。 中国专利 02134901.0公开了一种 "适用于手机和电脑系统的半导体存储方法及装置" 的技术, 它可以实现手机用户资料的备份存储, 以及借助 USB或 IEEE1394通用接口实现与电 脑系统进行直接数据通信和数据交换。 但是它类似于上述的第一种方式, 需要依赖电 脑程序进行数据处理, 操作复杂, 且产品成本高。 发明内容
本发明要解决的技术问题在于避免上述现有技术的不足之处而提出一种成本低 廉, 能备份手机内所有信息的对手机内信息进行备份的方法和装置。
本发明解决所述技术问题可以通过采用以下技术方案来实现:
提出一种在手机充电器内备份手机内信息的方法, 包括步骤:
① 设置一种能备份手机内信息的手机充电器, 该手机充电器包括电源转换模块 和充电管理模块, 所述充电管理模块控制对所使用手机充电;
② 在所述手机充电器内还设置了控制模块、 手机接口、 半导体存储介质模块、 设定所述 手机接口与所使用手机的数据接口相适配;
③ 设定电源转换模块将交流电源转换为所使用手机充电所需的直流电源;
④ 所述控制模块根据手机的数据传输协议读取所使用手机中存储的信息并写入到所迷 半导体存储介质模块中; 和 /或读取所述半导体存储介质模块内的信息, 并按照手机的 数据传输协议将所述从半导体存储介质模块内读取的信息写入到所使用手机中。
实现对上述手机内信息进行备份方法的手机充电器, 包括电源转换模块和充电 管理模块, 还包括控制模块、 与所使用手机的数据接口相适配的手机接口、 半导体存 储介质模块和输入控制装置, 所述控制模块分别与手机接口、 半导体存储介质模块、 输入控制装置、 电源转换模块和充电管理模块电连接; 所述控制模块借助所述手机接 口读取所使用手机中所存储的信息并写入到所述半导体存储介质模块中;和 /或读取所 述半导体存储介质模块内的信息并将该信息写入到所使用手机中。
本发明技术方案将半导体存储装置和手机充电装置融为一体, 在充电的同时可 对手机内所有信息进行备份, 断电后, 信息不丟失。 本发明的技术效果在于: 能对手 机内所有信息进行备份,弥补现有的存储器只能单一对手机 SIM卡进行存储而无法对 存储于手机本身的信息备份的不足。 另外, 将半导体存储装置与手机充电装置融为一 体,在充电的同时同步实现了对手机内信息及手机 SIM卡信息的备份,使用十分方便, 并且便于携带。 附图说明
图 1是本发明装置的原理方框图; .
图 2是本发明装置与手机之间进行数据交换的工作流程图; 其中图 4 - 1是数据 交换的第一种方式工作流程图; 图 4 - 2数据交换第二种方式工作流程图;
图 3是本发明控制模块的电路原理图;
图 4是本发明半导体存储介质模块的电路原理图;
图 5是本发明半导体信息提示模块的电路原理图;
图 6是本发明装置中充电管理模块 27原理图;
图 7是本发明装置的电源转换模块 25的电路原理图。
图 8是能实现对手机内信息备份的独立装置原理方框图;
图 9是图 8中所述独立备份装置的工作流程图。 具体实施方式
以下结合附图所示之最佳实施例作进一步详述。
本发明在手机充电器内备份手机内信息的方法, 如图 1和图 2所示, 包括步骤:
① 设置一种能备份手机内信息的手机充电器, 该手机充电器包括电源转换模块 25和 充电管理模块 27 , 所述充电管理模块 27控制对所使用手机充电;
② 在所述手机充电器内还设置了控制模块 21、手机接口 22、半导体存储介质模块 23、 设定所述手机接口 22与所使用手机的数据接口相适配;
③ 设定电源转换模块 25将交流电源转换为所使用手机充电所需的直流电源;
④ 所述控制模块 21根据手机的数据传输协议读取所使用手机中存储的信息并写入到 所述半导体存储介质模块 23中; 和 /或读取所述半导体存储介质模块 23内的信息, 并按照手机的数据传输协议将所述从半导体存储介质模块 23 内读取的信息写入到 所使用手机中。 实现上述对手机内信息进行备份方法的手机充电器, 如图 1所示, 包括控制模 块 21、 与所使用手机的数据接口相适配的手机接口 22、 半导体存储介质模块 23、 输 入控制装置 24、 电源转换模块 25、 信息提示模块 26和充电管理模块 27。 所述控制模 块 21分别与手机接口 22、 半导体存储介质模块 23、 输入控制装置 24、 电源转换模块 25和充电管理模块 27 电连接。
所述控制模块 21负责其它各模块的调度。 所述控制模块 21和充电管理模块 27 在物理上为一体, 或者分别独立。 所述手机接口 22可以是 UART (串口)、 RS232、 蓝牙 (BLUE TOOTH)、 USB以及红外等各类手机数据接口, 同时作为充电接口。 所述 半导体存储介质模块 23用于存储手机资料信息的半导体存储介质, 包括但不限于快 闪存储器(flash memory )、 电可擦除存储器 (E2PROM )、 DRAM, SRAM、 SDRAM 等。 所述信息提示模块 26用以对本发明装置的状态、 操作进行提示, 可以是 LED、 LCD等各类显示器件。也可以不设置该信息提示模块 26。所述电源转换模块 25将 220V 或 110V 的交流电源转换为本发明装置对所使用手机充电和数据交换所需的直流电 源。 所述输入控制装置 24可以是按键, 也可以是触发脚输入电平以触发控制模块 21 进行相关动作。 本发明也可以不设置该输入控制装置 24, 而是在本装置上电后自动对 手机内信息备份。 本实施例的控制模块 21、 半导体存储介质模块 23、 信息提示模块 26、 充电管理模块 27和电源转换模块 25的具体电路原理图分别见图 3、 图 4、 图 5、 图 6和图 7所示。 所述控制模块 21使用 AT89LV52芯片。
图 2是本实施例工作流程示意图, 该实施例的工作流程有两种形式, 其一是单 向读写所使用存储于手机内或者本发明装置内的所有信息, 其二是双向同步读写所使 用手机或者本发明装置中从上次交换信息以来的变化记录。 第一种形式备份的具体工 作流程如图 2 - 1和图 1所示, 本发明装置上电初始化以后, 判断所使用手机的电池 电量是否满, 如果在电量不满的情况下, 进行充电。 在电量满的情况下, 根据所述输 入控制装置 24输入的指令, 所述控制模块 21或者读取所使用手机内信息资料并写入 所述半导体存储介质模块 23 , 或者读取所述半导体存储介质模块 23中的信息资料并 写入所使用手机。 第二种形式备份的具体工作流程如图 2 - 2和图 1所示, 本发明装 置上电初始化以后, 判断所使用手机的电池电量是否满, 如果在电量不满的情况下, 进行充电。 在电量满的情况下, 判断所使用手机内从上次交换信息以来是否有信息变 化记录, 如果有, 则读取所使用手机中的信息变化记录并写入本发明装置内的所述半 导体存储介质模块 23内; 同时, 判断本发明装置内的所述半导体存储介质模块 23内 从上次交换信息以来是否有信息变化记录, 如果有, 则读取所述半导体存储介质模块 23内的信息变化记录并写入所使用手机中。
另外, 还有一种对手机内信息进行备份方法的独立装置, 也能实现在低成本下 对手机内所有信息进行备份。 该独立的备份装置如图 8所示, 包括控制模块 11、 手机 接口 12、 半导体存储介质模块 13、 输入控制装置 14、 电源模块 15和信息提示模块 16。 所述手机接口 12与所使用手机的数据接口相适配; 所述控制模块 11分别与所述 手机接口 12、 半导体存储介质模块 13、 输入控制装置 14、 电源模块 15和信息提示模 块 16电连接。
所述控制模块 11负责其它各模块的调度。 所述手机接口 12可以是 UART (串 口;)、 RS232, 蓝牙 (BLUE TOOTH)、 USB以及红外等各类手机数据接口。 所述半导体 存储介质模块 13用于存储手机资料信息的半导体存储介质, 包括但不限于快闪存储 器 (flash memory )、 电可擦除存储器 (E2PROM )、 DRAM、 SRAM、 SDRAM等。 所 述信息提示模块 16用以对本发明装置的状态、 操作进行提示, 可以是 LED、 LCD等 各类显示器件。 也可以不设置该信息提示模块 16。 所述电源模块 15为本发明装置各 部件提供电源, 本发明装置可以自带电源, 或从手机接口中获取电源, 或从相关装置 /配件中获取电源。 所述输入控制装置 14可以是按键, 也可以是触发脚输入电平以触 发控制模块 11进行相关动作。 本发明也可以不设置该输入控制装置 14, 本装置上电 后自动对手机内信息备份。 本实施例的控制模块 11、 半导体存储介质模块 13和信息 提示模块 16的具体电路原理图分别见图 3、 图 4和图 5所示。 图 9是本独立备份装置的工作流程示意图, 其工作流程同样有两种形式, 其一 是单向读写所使用存储于手机内或者本发明装置内的所有信息, 其二是双向同步读写 所使用手机或者本发明装置中从上次交换信息以来的变化记录。 第一种形式备份的具 体工作流程如图 9 - 1和图 8所示, 本发明装置上电初始化以后, 根据所述输入控制 装置 14输入的指令, 所述控制模块 11或者读取所使用手机内信息资料并写入所述半 导体存储介质模块 13 , 或者读取所述半导体存储介质模块 13中的信息资料并写入所 使用手机。 第二种形式备份的具体工作流程如图 9 - 2和图 8所示, 本发明装置上电 初始化以后, 判断所使用手机内从上次交换信息以来是否有信息变化记录, 如果有, 则读取所使用手机中的信息变化记录并写入本发
明装置内的所述半导体存储介质模块 13 内; 同时, 判断本发明装置内的所述半导体 存储介质模块 13 内从上次交换信息以来是否有信息变化记录, 如果有, 则读取所述 半导体存储介质模块 13内的信息变化记录并写入所使用手机中。 本发明所使用主要元器件清单如下:
序号 元器件名称 数量 代 号 型号 生产商
1 EPR0M存储器 1 U1 AT24C64 ATMEL
2 单片机 1 U2 AT89LV52 ATMEL
ON
3 开关电源芯片 U3 T0P223Y
SEMICONDUCTOR
4 液晶驱动芯片 1 U4 HD44780 HITACHI
5 充电管理芯片 1 U5 NCP1800 POWER CO, LTD
6 光耦合三极管 1 01 PC817
7 变压器 1 T1 TRAN

Claims

杈 利 要 求
1. 一种在手机充电器内备份手机内信息的方法, 其特征在于, 包括步驟: ① 设置一种能备份手机内信息的手机充电器, 该手机充电器包括电源转换模块(25) 和充电管理模块(27), 所述充电管理模块(27)控制对所使用手机充电;
② 在所述手机充电器内还设置了控制模块(21)、 手机接口 (22)、 半导体存储介质 模块(23)、 设定所述手机接口 (22) 与所使用手机的数据接口相适配;
③ 设定电源转换模块(25)将交流电源转换为所使用手机充电所需的直流电源; ④ 所述控制模块(21 )根据手机的数据传输协议读取所使用手机中存储的信息并写 入到所述半导体存储介质模块(23) 中; 和 /或读取所述半导体存储介质模块(23) 内的信息, 并按照手机的数据传输协议将所述从半导体存储介质模块(23)内读取 的信息写入到所使用手机中。 (
2. 如权利要求 1所述的在手机充电器内备份手机内信息的方法, 其特征在于: 所述 步骤④中所述信息是所使用手机中的所有信息或者是所述手机充电器内的半导体存 储介质模块(23) 内的所有信息。
3. 如杈利要求 1所述的在手机充电器内备份手机内信息的方法, 其特征在于: 所述 步骤④中所述信息是从上次交换信息以来, 所使用手机中和所述手机充电器的半导体 存储介质模块(23) 内各自的信息变化记录。
4. 如杈利要求 1所述的在手机充电器内备份手机内信息的方法, 其特征在于: 所述 控制模块(21)控制所述半导体存储介质模块(23) 与所使用手机之间自动地或手动 地交换信息。
5. 如权利要求 1所述的在手机充电器内备份手机内信息的方法, 其特征在于: 还设 置有输入控制装置 (24), 所述控制模块 (21)是根据所述输入控制装置 (24) 输入 的指令来控制所述半导体存储介质模块(23) 与所使用手机之间交换信息。
6. 如权利要求 5所述的在手机充电器内备份手机内信息的方法, 其特征在于: 所 述输入控制装置(24) 的指令是键盘指令, 或者是电平指令。
7. 一种能备份手机内信息的手机充电器, 其特征在于: 包括电源转换模块(25) 和充电管理模块(27), 该充电管理模块(27)控制着电源转换模块(25)流入正在 充电手机内的电流大小;
所述手机充电器还包括控制模块(21)、 与所使用手机的数据接口相适配的手机接 口 (22)和半导体存储介质模块(23), 所述控制模块 (21 )分别与手机接口 (22)、 半导体存储介质模块(23)、 电源转换模块(25)和充电管理模块(27) 电连接; 所述控制模块(21 )经由所述手机接口 (22)读取所使用手机中所存储的信息并 写入到所述半导体存储介质模块(23) 中; 和 /或读取所述半导体存储介质模块(23) 内的信息并将该信息写入到所使用手机中。
8. 如权利要求 7所述的能备份手机内信息的手机充电器, 其特征在于: 所述控制 模块(21 ) 和充电管理模块(27)在物理上为一体, 或者分别独立。
9. 如权利要求 7所述的能备份手机内信息的手机充电器, 其特征在于: 还包括与 所述控制模块(21 ) 电连接的输入控制装置(24)。
10. 如权利要求 7所述的能备份手机内信息的手机充电器, 其特征在于: 所述输入 控制装置(24)是按键或者触发脚。
PCT/CN2006/002332 2005-09-15 2006-09-11 Procede de sauvegarde d'informations de telephone mobile et dispositif dans un chargeur de telephone mobile WO2007031011A1 (fr)

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CN104980564A (zh) * 2014-04-09 2015-10-14 腾讯科技(深圳)有限公司 充电插座以及基于充电插座的移动终端处理方法
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