WO2023273884A1 - Eeprom烧录方法、烧录器及通过eeprom烧录板卡方法、系统 - Google Patents

Eeprom烧录方法、烧录器及通过eeprom烧录板卡方法、系统 Download PDF

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Publication number
WO2023273884A1
WO2023273884A1 PCT/CN2022/098887 CN2022098887W WO2023273884A1 WO 2023273884 A1 WO2023273884 A1 WO 2023273884A1 CN 2022098887 W CN2022098887 W CN 2022098887W WO 2023273884 A1 WO2023273884 A1 WO 2023273884A1
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WIPO (PCT)
Prior art keywords
key
eeprom
smart terminal
eeprom chip
board
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PCT/CN2022/098887
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English (en)
French (fr)
Inventor
梁治
朱成伟
Original Assignee
广州视琨电子科技有限公司
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Publication of WO2023273884A1 publication Critical patent/WO2023273884A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/60Software deployment
    • G06F8/61Installation
    • G06F8/63Image based installation; Cloning; Build to order
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/10Protecting distributed programs or content, e.g. vending or licensing of copyrighted material ; Digital rights management [DRM]
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/60Software deployment
    • G06F8/61Installation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/80Generation or processing of content or additional data by content creator independently of the distribution process; Content per se
    • H04N21/83Generation or processing of protective or descriptive data associated with content; Content structuring
    • H04N21/835Generation of protective data, e.g. certificates

Definitions

  • the present application relates to the technical field of programming, such as an EEPROM programming method, a programmer, and a method and system for programming a board through the EEPROM.
  • assembly shipment and bulk shipment There are two forms of shipment of smart terminals: assembly shipment and bulk shipment.
  • the form of assembly and shipment is to assemble the board and burn the key before shipping to the customer;
  • the form of bulk shipment is to ship the components required for the assembly of the board to the customer in pieces, and the The customer assembles and burns the key by himself.
  • customers usually do not have the tools and operation methods to burn keys, and based on the confidentiality of key resources, it is difficult to provide customers with keys that need to be burned into boards.
  • the present application aims to overcome at least one defect (deficiency) of the above-mentioned related technologies, and provides an EEPROM programming method, a programmer, and a method and system for programming board cards through EEPROM, which are used to solve the problems of intelligent terminals when shipping in bulk.
  • the application provides a method for programming EEPROM, including:
  • the acquisition of key resources includes:
  • the EEPROM chip after determining whether the EEPROM chip has successfully burned the key resource, it also includes:
  • the present application provides a method for programming a board through EEPROM, including:
  • determining the key that the smart terminal needs to burn, and obtaining the key that the smart terminal needs to burn from the partition corresponding to the EEPROM chip includes:
  • the corresponding relationship is pre-stored in the smart terminal and/or the EEPROM chip.
  • the method for programming board card by EEPROM also includes:
  • the application also provides an EEPROM burner, including:
  • a key acquisition module configured to acquire a key resource, where the key resource includes multiple keys
  • the chip burning module is used to burn the obtained key resource to the EEPROM chip, and the different keys are stored in different partitions of the EEPROM chip, so that the key stored in the EEPROM chip can be stored in the intelligent Under the control of the terminal, it can be burned into the board of the intelligent terminal.
  • the present application also provides a system for programming board cards through EEPROM, including:
  • the key determination module is used to determine the key that the smart terminal needs to burn, and obtains the key that the smart terminal needs to burn from the partition corresponding to the EEPROM chip, and the EEPROM chip uses the above-mentioned EEPROM burner to burn the key resource ;
  • the board burning module is used to burn the obtained key to the board of the smart terminal.
  • the beneficial effect of this application is: the EEPROM chip with the key resource burned can be sent to the customer together when the intelligent terminal board is shipped to the customer in bulk, and the customer only needs to assemble the EEPROM chip and
  • the smart terminal board can complete the burning of the smart terminal board under the control of the smart terminal. Customers do not need special tools or complicated operation methods, and can complete the burning of the required key at one time, and can also ensure the confidentiality and accuracy of the key.
  • FIG. 1 is a flow chart of an EEPROM programming method according to Embodiment 1 of the present application.
  • FIG. 2 is a flow chart of another EEPROM programming method according to Embodiment 1 of the present application.
  • FIG. 3 is a flow chart of yet another EEPROM programming method according to Embodiment 1 of the present application.
  • FIG. 4 is a flowchart of a method for programming a board through EEPROM according to Embodiment 2 of the present application.
  • FIG. 5 is a flow chart of another method for programming a board through EEPROM according to Embodiment 2 of the present application.
  • FIG. 6 is a composition diagram of an EEPROM programmer according to Embodiment 3 of the present application.
  • FIG. 7 is a composition diagram of the board system for programming the board through EEPROM according to Embodiment 4 of the present application.
  • EEPROM Electrically Erasable Programmable read only memory
  • EEPROM Electrically Erasable Programmable read only memory
  • the provided EEPROM burning method includes the following steps:
  • the EEPROM chip that burns the key resource by step S1 and step S2 can be sent to the customer when the smart terminal board is shipped to the customer in bulk. Customers only need to assemble the EEPROM chip and the board of the smart terminal together, and then install them together on the whole machine of the smart terminal, turn on the whole machine of the smart terminal, and under the control of the smart terminal, automatically obtain the required information from the partition corresponding to the EEPROM chip. key, you can burn the key to the board of the smart terminal.
  • the key resource obtained in step S1 is to pack multiple keys required by the customer, so that the multiple keys required by the customer can be burned into the EEPROM chip at one time.
  • the storage protocol can be packaged together so that the key resource contains the storage protocol.
  • the key resource is burned into the EEPROM chip, the key can be stored in the EEPROM according to the storage protocol in the key resource. chip, thus ensuring that different keys are stored in specific partitions stipulated in the EEPROM chip storage protocol.
  • the customer assembles the EEPROM chip and the board of the smart terminal, and burns the board under the control of the smart terminal, the required key can be found in a specific partition according to the storage protocol.
  • the storage protocol can be burned to the EEPROM chip together with the key.
  • the smart terminal can control and automatically obtain the storage protocol from the EEPROM chip, and find the required key in a specific partition according to the storage protocol.
  • the storage protocol can also not be burned into the EEPROM chip together with the key, but is preset in the smart terminal before the smart terminal is shipped.
  • the smart terminal calls its internal preset storage protocol and finds the required key in a specific partition according to the storage protocol.
  • step S2 burn the key resource into the EEPROM chip, use the EEPROM chip to store the key resource, and cooperate with the security algorithm to ensure the confidentiality of the key, and provide the key to the customer under the condition that the key is kept secret.
  • step S1 may include:
  • the key resource server can store and manage the key in a unified manner. When burning the EEPROM chip, directly request to access the key resource server to obtain the key, which is conducive to ensuring the uniqueness and accuracy of the key. Moreover, the key resource server can provide key resources for multiple programmers performing EEPROM chip programming, realizing one-to-many key resource services, and improving the efficiency of programming.
  • the key resource server pre-packages the keys required by the customer.
  • the keys required by the customer can be imported into the EEPROM chip at one time and stored in specific partitions of the EEPROM chip.
  • step S2 you can continue to test whether the key resource is successfully burned into the EEPROM chip through the following steps:
  • the test board In order to confirm that the key resource has been successfully burned into the EEPROM chip and ensure that the key on each EEPROM chip is valid, you can assemble the EEPROM chip on the test board, trigger the burning function, and burn the key resource on the EEPROM chip to the test board. If the test board can successfully burn the key resource of the tested EEPROM chip, it indicates that the tested EEPROM chip has successfully burned the key resource, otherwise it indicates that the tested EEPROM chip has not successfully burned the key resource.
  • step S3 and step S4 it can prevent the customer from receiving the EEPROM chip without successfully burning the key resource when receiving the goods, which will cause the board card of the smart terminal to fail to burn the required key.
  • the test board can hot-swappable the EEPROM chip.
  • the key resources burned on the EEPROM chip are being burned into the test board, pulling out the EEPROM chip from the test board will not cause a catastrophic system crash, which improves the reliability of the test.
  • step S4 the following steps may also be included:
  • the key resource of the EEPROM chip When the key resource of the EEPROM chip is burned to the test board and is completed or interrupted, it will display whether the test board has successfully burned to the key resource, or directly display whether the EEPROM chip determined according to whether the test board has successfully burned to the key resource is successful.
  • the key resource is burned, so that the tester can intuitively judge whether the EEPROM chip is qualified and meets the shipping requirements.
  • a display screen can be connected to the test board to test whether the board has successfully burned the key resource burned on the EERPOM chip, and/or whether the EEPROM chip has successfully burned the key resource. Confirm the result and show it on the display.
  • the EEPROM chip burned by the method provided in this embodiment is shipped to the customer together with the bulk parts of the smart terminal board card.
  • the customer can burn the required key to the self On the assembled smart terminal board. It not only ensures the confidentiality of the key, but also improves the operability and convenience of key programming of smart terminal boards shipped in bulk.
  • This embodiment provides a method for programming a board through EEPROM, using the EEPROM chip programmed by the EEPROM programming method described in Embodiment 1 to program a board of an intelligent terminal.
  • the provided method of programming the board through EEPROM includes the following steps:
  • the bulk parts of the smart terminal board are shipped to the customer together with the EEPROM chip that has burned the key resources using the EEPROM burning method as in Embodiment 1.
  • the customer only needs to assemble the EEPROM chip and the smart terminal board, and then together Install it on the whole machine of the smart terminal, turn on the whole machine of the smart terminal, and complete the key burning of the smart terminal board through steps S1' and S2', without special tools or complicated operation methods.
  • the EEPROM chip burns key resources packaged by multiple keys, customers can obtain all the keys they need from the EEPROM chip at one time, and burn all the keys to the smart terminal through the EEPROM chip at one time. board.
  • Burning the smart terminal board through the EEPROM chip can also ensure the confidentiality of the key, and provide the key to the customer under the condition that the key is confidential.
  • This embodiment can be applied to smart terminals.
  • step S1' the customer installs the EEPROM chip and the assembled smart terminal board on the whole machine of the smart terminal, turns on the whole machine of the smart terminal, and under the control of the smart terminal (runs built-in running scripts or preset applications) Software and other control methods) can determine the key that needs to be burned.
  • step S2' trigger the board of the smart terminal to burn the key obtained in step S1', monitor the process of burning the key of the board of the smart terminal, and check whether the key is successfully burned to the board of the smart terminal.
  • the entire burning process of the card can be completed under the control of the smart terminal (running the built-in running script or opening the preset application software and other control methods).
  • the key when the key resource is burned into the EEPROM chip, the key can be stored in the EEPROM chip according to the storage protocol in the key resource, so as to ensure that different keys are stored in specific partitions specified in the EEPROM chip storage protocol. Based on the storage protocol, when the customer burns the smart terminal board, it can guide the specific partition to obtain the required key. In one embodiment, based on the storage protocol, a corresponding relationship between the identification information of the key and the partition of the EEPROM chip can be formed. This corresponding relationship can guide the acquisition of the key when the customer burns the smart terminal board.
  • step S1' may include:
  • the identification information of the key may be the name, serial number, etc. of the key. It can be understood that the key identification information has the function of uniquely identifying a key or a type of key. Different key identification information corresponds to different EEPROM chip partitions. After the key identification information is determined, the corresponding partition can be found according to the corresponding relationship between the key identification information and the EEPROM chip partition, and the required key can be obtained from the partition. .
  • the corresponding relationship between the identification information of the key and the partition of the EEPROM chip can be stored in the smart terminal in advance. Correspondence, find the partition where each required key is stored.
  • the corresponding relationship between the identification information of the key and the partition of the EEPROM chip can also be pre-stored in the EEPROM chip. Read its pre-stored correspondence and find the partition where each required key is stored.
  • the corresponding relationship between the identification information of the key and the partition of the EEPROM chip can also be pre-stored on the remote server.
  • the board card of the smart terminal performs key burning through the EEPROM chip under the control of the smart terminal, it can access the remote server to obtain Correspondence, find the partition where each required key is stored.
  • the method for burning the board through the EEPROM provided by this embodiment may also include the following steps:
  • the smart terminal can generate an error prompt to provide guidance for the customer's further processing operations.
  • This embodiment provides an EEPROM programmer 100, which burns the key required by the smart terminal into the EEPROM chip, so as to solve the problem of bulk shipment of smart terminal boards as introduced in the background art.
  • the provided EEPROM burner 100 includes:
  • the key acquisition module 110 is used to acquire a key resource, and the key resource includes a plurality of keys;
  • the chip burning module 120 is used to burn the obtained key resources into the EEPROM chip, and different keys are stored in different partitions of the EEPROM chip, so that the key stored in the EEPROM chip can be burned into the smart terminal under the control of the smart terminal. terminal board.
  • the EEPROM chip that burns the key resources through the key acquisition module 110 and the chip burning module 120 can be sent to the customer when the smart terminal board is shipped to the customer in bulk. Customers only need to assemble the EEPROM chip and the board of the smart terminal together, and then install them together on the whole machine of the smart terminal, turn on the whole machine of the smart terminal, and under the control of the smart terminal, automatically obtain the required information from the partition corresponding to the EEPROM chip. key, you can burn the key to the board of the smart terminal.
  • the key resource obtained by the key acquisition module 110 is to pack multiple keys required by the customer, so that the multiple keys required by the customer can be burned into the EEPROM chip at one time.
  • the storage protocol can be packaged together, so that the key resource contains the storage protocol.
  • the chip burning module 120 burns the key resource to the EEPROM chip, it can be stored according to the storage protocol in the key resource. Store the key in the EEPROM chip, so as to ensure that different keys are stored in the specific partition specified by the EEPROM chip storage protocol.
  • the customer assembles the EEPROM chip and the board of the smart terminal, and burns the board under the control of the smart terminal, the required key can be found in a specific partition according to the storage protocol.
  • the storage protocol can be burned to the EEPROM chip together with the key.
  • the smart terminal can control and automatically obtain the storage protocol from the EEPROM chip, and find the required key in a specific partition according to the storage protocol.
  • the storage protocol can also not be burned into the EEPROM chip together with the key, but is preset in the smart terminal before the smart terminal is shipped.
  • the smart terminal calls its internal preset storage protocol and finds the required key in a specific partition according to the storage protocol.
  • the key resource is burned into the EEPROM chip, and the EEPROM chip is used to store the key resource, which can cooperate with a security algorithm to ensure the confidentiality of the key.
  • the key acquisition module 110 may include:
  • the request sending unit 111 is configured to send a key resource request to a key resource server, so that the key resource server packages multiple keys into a key resource according to the key resource request;
  • the key obtaining unit 112 is configured to obtain packaged key resources from the key resource server.
  • the key resource server can store and manage the key in a unified manner.
  • the request sending unit 111 directly requests to access the key resource server to obtain the key, which is beneficial to ensure the uniqueness and accuracy of the key.
  • the key resource server can provide key resources for multiple programmers 100 performing EEPROM chip programming, so as to realize a one-to-many key resource service and improve the efficiency of programming.
  • the key resource server pre-packages the keys required by the customer.
  • the keys required by the customer can be imported into the EEPROM chip at one time and stored in specific partitions of the EEPROM chip.
  • the EEPROM burner 100 provided by this embodiment can also include:
  • the test burning module 130 is used to burn the key resources burned on the EEPROM chip to the test board, and determine whether the EEPROM chip is successfully burned according to whether the key resources burned on the EEPROM chip are successfully burned to the test board. The key resource is recorded.
  • the EEPROM chip can be assembled on the test board to trigger the burning function of the test burning module 130, and the EEPROM chip Burn the key resources on the board to the test board. If the test board can successfully burn the key resource of the tested EEPROM chip, it indicates that the tested EEPROM chip has successfully burned the key resource, otherwise it indicates that the tested EEPROM chip has not successfully burned the key resource.
  • the test board can hot-swappable the EEPROM chip.
  • the key resources burned on the EEPROM chip are being burned into the test board, pulling out the EEPROM chip from the test board will not cause a catastrophic system crash, which improves the reliability of the test.
  • the EEPROM programmer 100 provided by this embodiment can also include:
  • the display module 140 is used to display whether the test board has successfully programmed the key resource on the EERPOM chip, and/or display the determination result of whether the EEPROM chip has successfully programmed the key resource.
  • the display module 140 displays whether the test board is successfully burned to the key resource, or directly displays the EEPROM determined according to whether the test board is successfully burned to the key resource Whether the chip is successfully burned to the key resource, so that the tester can intuitively judge whether the EEPROM chip is qualified and meets the shipping requirements.
  • the display module 140 is a display screen, the display screen is connected to the test board, and whether the test board has successfully burned the key resources burned on the EERPOM chip, and/or, whether the EEPROM chip has been successfully burned The determination result of the key resource is displayed on the display screen.
  • the EEPROM chip burned by the burner 100 provided in this embodiment is shipped to the customer together with the bulk parts of the smart terminal board card.
  • the customer can burn the required key through the EEPROM chip with a simple operation. recorded on the self-assembled smart terminal board. It not only ensures the confidentiality of the key, but also improves the operability and convenience of key programming of smart terminal boards shipped in bulk.
  • This embodiment provides a system 200 for programming a board through EEPROM, using the EEPROM chip programmed by the EEPROM programmer 100 described in Embodiment 3 to program a board of an intelligent terminal.
  • the provided programming board system 200 through EEPROM includes:
  • the key determination module 210 is used to determine the key that the smart terminal needs to burn, and obtains the key that the smart terminal needs to burn from the partition corresponding to the EEPROM chip, and the EEPROM chip uses the EEPROM burner 100 as described in Embodiment 3 to burn the key resource;
  • the board burning module 220 is used for burning the obtained key into the board of the smart terminal.
  • the bulk parts of the smart terminal board are shipped to the customer together with the EEPROM chip that has burned the key resources using the EEPROM burner as in Embodiment 3.
  • the customer only needs to assemble the EEPROM chip and the board of the smart terminal, and then together Install it on the whole machine of the smart terminal, turn on the whole machine of the smart terminal, and the key burning of the board card of the smart terminal can be completed through the key determination module 210 and the board burning module 220, without special tools or complicated operation methods .
  • the EEPROM chip burns key resources packaged by multiple keys, customers can obtain all the keys they need from the EEPROM chip at one time, and burn all the keys to the smart terminal through the EEPROM chip at one time. board.
  • the confidentiality of the key can also be guaranteed by burning the smart terminal board through the EEPROM chip.
  • This embodiment can be applied to a smart terminal, built-in or external to the smart terminal.
  • the customer installs the EEPROM chip and the assembled smart terminal board on the whole machine of the smart terminal, turns on the whole machine of the smart terminal, and the key determination module 210 can determine the key to be burned according to the specific application of the smart terminal.
  • the whole burning process such as triggering the key acquisition module 110 of the board card burning key of the smart terminal, monitoring the process of burning the key of the board card of the smart terminal, and checking whether the key is successfully burned to the board card of the smart terminal, can be performed in the The board programming module 220 is completed.
  • the key when the chip burning module 120 burns the key resource into the EEPROM chip, the key can be stored in the EEPROM chip according to the storage protocol in the key resource to ensure that different keys are stored in the EEPROM chip storage protocol. specific partition. Based on the storage protocol, when the customer burns the smart terminal board, it can guide the specific partition to obtain the required key. In one embodiment, based on the storage protocol, a corresponding relationship between the identification information of the key and the partition of the EEPROM chip can be formed. This corresponding relationship can guide the acquisition of the key when the customer burns the smart terminal board.
  • the key determination module 210 may include:
  • Identification determination unit 211 used to determine the identification information of the key that the smart terminal needs to burn;
  • the partition determination unit 212 is used to obtain the corresponding relationship between the identification information of the key and the partition of the EEPROM chip, and according to the corresponding relationship, determine the partition of the key that needs to be burned by the storage smart terminal;
  • the key determining unit 213, the board acquires the key that the smart terminal needs to burn from the determined partition.
  • the identification information of the key may be the name, serial number, etc. of the key. It can be understood that the key identification information has the function of uniquely identifying a key or a type of key. Different key identification information corresponds to different EEPROM chip partitions. After the identification determination unit 211 determines the key identification information, the partition determination unit 212 can find the corresponding partition according to the correspondence between the key identification information and the EEPROM chip partitions, and let The key determining unit 213 obtains the required key from the partition.
  • the corresponding relationship between the identification information of the key and the partitions of the EEPROM chip can be pre-stored in the smart terminal.
  • the partition determination unit 212 can call the corresponding relationship stored in advance by the smart terminal. , find the partition where each required key is stored.
  • the corresponding relationship between the identification information of the key and the partitions of the EEPROM chip can also be pre-stored in the EEPROM chip.
  • the partition determination unit 212 can read it from the EEPROM chip. Its pre-stored corresponding relationship finds the partition where each required key is stored.
  • the corresponding relationship between the identification information of the key and the partitions of the EEPROM chip can also be pre-stored on the remote server.
  • the partition determination unit 212 can access the remote server to obtain the corresponding Relationship, find the partition where each required key is stored.
  • the system 200 for burning the board through EEPROM provided by this embodiment may also include:
  • the error prompting module 230 is configured to generate an error prompt when burning the obtained key to the board of the smart terminal fails.
  • the error prompt module 230 can generate an error prompt to provide guidance for the customer's further processing operations.

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Abstract

本申请提供了一种EEPROM烧录方法、烧录器及通过EEPROM烧录板卡方法、系统,其中EEPROM烧录方法包括:获取key资源,所述key资源包括多个key;将所获取的所述key资源烧录到EEPROM芯片,不同的所述key存储在所述EEPROM芯片的不同分区,以使所述EEPROM芯片所存储的所述key在智能终端的控制下可烧录到所述智能终端的板卡。本申请可以解决在散装出货时智能终端的板卡无法烧录key的问题,烧录了key资源的EEPROM芯片,可以在智能终端板卡进行散装出货给客户时,一并发给客户,客户只需将EEPROM芯片与组装好的智能终端板卡,即可在智能终端的控制下,完成智能终端板卡的烧录。

Description

EEPROM烧录方法、烧录器及通过EEPROM烧录板卡方法、系统
本申请要求于2021年06月29日提交国家知识产权局、申请号为202110727598.4、发明名称为“EEPROM烧录方法、烧录器及通过EEPROM烧录板卡方法、系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及烧录技术领域,例如一种EEPROM烧录方法、烧录器及通过EEPROM烧录板卡方法、系统。
背景技术
为了对数字内容的版权进行保护,智能终端在出货时需要工厂在智能终端的板卡上烧录特定的key(激活码,相当于能证明正版的序列号身份证明),若不烧录key,是无法使用智能终端上的应用而获取数字内容。
智能终端的出货形式有组装出货和散装出货两种形式。组装出货的形式是将板卡组装好并将key烧录好再出货到客户;散装出货的形式是将组装板卡所需要的各个元器件,散件式地出货给客户,由客户自己组装并烧录key。在以散装出货的形式进行出货时,客户通常没有烧录key的工具和操作方法,基于key资源的保密也很难将需要烧录到板卡的key提供给客户。
发明内容
本申请旨在克服上述相关技术的至少一种缺陷(不足),提供一种EEPROM烧录方法、烧录器及通过EEPROM烧录板卡方法、系统,用于解决在散装出货时智能终端的板卡无法烧录key的问题。
本申请采取的技术方案是:
第一方面,本申请提供一种EEPROM烧录方法,包括:
获取key资源,所述key资源包括多个key;
将所获取的所述key资源烧录到EEPROM芯片,不同的所述key存储在所述EEPROM芯片的不同分区,以使所述EEPROM芯片所存储的所述key在智能终端的控制下可烧录到所述智能终端的板卡。
在一实施例中,所述获取key资源,包括:
发送key资源请求至key资源服务器,以使所述key资源服务器根据所述key资源请求 将多个key打包成key资源;
从所述key资源服务器获取打包的所述key资源。
在一实施例中,在将所述key资源烧录到EEPROM芯片之后,还包括:
将所述EEPROM芯片上所烧录的key资源烧录到测试板卡;
根据所述EEPROM芯片上所烧录的key资源是否成功烧录到测试板卡,确定所述EEPROM芯片是否成功烧录了所述key资源。
在一实施例中,在确定所述EEPROM芯片是否成功烧录了所述key资源之后,还包括:
显示所述测试板卡是否成功烧录了EERPOM芯片上所烧录的key资源,和/或,显示所述EEPROM芯片是否成功烧录了所述key资源的确定结果。
第二方面,本申请提供一种通过EEPROM烧录板卡方法,包括:
确定智能终端需要烧录的key,从EEPROM芯片对应的分区获取所述智能终端需要烧录的key,所述EEPROM芯片采用如上所述的EEPROM烧录方法烧录了key资源;
将所获取的key烧录到所述智能终端的板卡。
在一实施例中,确定智能终端需要烧录的key,从EEPROM芯片对应的分区获取所述智能终端需要烧录的key,包括:
确定智能终端需要烧录的key的标识信息;
获取所述key的标识信息与EEPROM芯片的分区之间的对应关系,根据所述对应关系,确定存储所述智能终端需要烧录的key的分区;
从所确定的所述分区获取所述智能终端需要烧录的key。
在一实施例中,所述对应关系预先存储于所述智能终端和/或所述EEPROM芯片。
在一实施例中,所述通过EEPROM烧录板卡方法还包括:
在将所获取的key烧录到所述智能终端的板卡失败时,生成错误提示。
第三方面,本申请还提供一种EEPROM烧录器,包括:
key获取模块,用于获取key资源,所述key资源包括多个key;
芯片烧录模块,用于将所获取的所述key资源烧录到EEPROM芯片,不同的所述key存储在所述EEPROM芯片的不同分区,以使所述EEPROM芯片所存储的所述key在智能终端的控制下可烧录到所述智能终端的板卡。
第四方面,本申请还提供一种通过EEPROM烧录板卡系统,包括:
key确定模块,用于确定智能终端需要烧录的key,从EEPROM芯片对应的分区获取所 述智能终端需要烧录的key,所述EEPROM芯片采用如上所述的EEPROM烧录器烧录了key资源;
板卡烧录模块,用于将所获取的key烧录到所述智能终端的板卡。
与相关技术相比,本申请的有益效果为:烧录了key资源的EEPROM芯片,可以在智能终端板卡进行散装出货给客户时,一并发给客户,客户只需将EEPROM芯片与组装好的智能终端板卡,即可在智能终端的控制下,完成智能终端板卡的烧录。客户无需特殊的工具,也无需复杂的操作方法,一次性地完成所需要的key的烧录,还能保证key的保密性和准确性。
附图说明
图1为本申请实施例1的一个EEPROM烧录方法流程图。
图2为本申请实施例1的另一个EEPROM烧录方法流程图。
图3为本申请实施例1的又一个EEPROM烧录方法流程图。
图4为本申请实施例2的一个通过EEPROM烧录板卡方法流程图。
图5为本申请实施例2的另一个通过EEPROM烧录板卡方法流程图。
图6为本申请实施例3的EEPROM烧录器组成图。
图7为本申请实施例4的通过EEPROM烧录板卡系统组成图。
具体实施方式
本申请附图仅用于示例性说明,不能理解为对本申请的限制。为了更好说明以下实施例,附图某些部件会有省略、放大或缩小,并不代表实际产品的尺寸;对于本领域技术人员来说,附图中某些公知结构及其说明可能省略是可以理解的。
实施例1
本实施例提供一种EEPROM烧录方法,将智能终端所需要的key烧录到EEPROM芯片,以解决如背景技术所介绍的智能终端板卡散装出货时的问题。EEPROM(Electrically Erasable Programmable read only memory)芯片是指带电可擦可编程只读存储器,是一种掉电后数据不丢失的存储芯片。
如图1所示,所提供的EEPROM烧录方法包括以下步骤:
S1.获取key资源,key资源包括多个key;
S2.将所获取的key资源烧录到EEPROM芯片,不同的key存储在EEPROM芯片的不同 分区,以使EEPROM芯片所存储的key在智能终端的控制下可烧录到所述智能终端的板卡。
采用步骤S1和步骤S2进行烧录key资源的EEPROM芯片,可以在智能终端板卡进行散装出货给客户时,一并发给客户。客户只需将EEPROM芯片和智能终端的板卡组装在一起,然后一起装到智能终端的整机上,打开智能终端整机,在智能终端的控制下,自动从EEPROM芯片对应的分区获取所需要的key,就可以将key烧录到智能终端的板卡上。
对于客户而言,只需组装EEPROM芯片和智能终端的板卡,打开智能终端整机,启动智能终端对于key烧录的智能控制即能完成板卡的key烧录,无需特殊的工具,也无需复杂的操作方法。
在步骤S1中所获取的key资源,是将客户需要的多个key进行了打包,以便客户需要的多个key可以一次性烧录到EEPROM芯片。
在对多个key打包成key资源时,可以将存储协议一并打包,使得key资源含有存储协议,在将key资源烧录到EEPROM芯片时,可以根据key资源中的存储协议将key存储到EEPROM芯片,从而保证不同的key存储在EEPROM芯片存储协议所规定的特定分区。当客户将EEPROM芯片和智能终端的板卡组装在一起,并在智能终端的控制下进行板卡的烧录时,可以根据存储协议在特定分区找到所需要的key。
存储协议可以与key一起烧录到EEPROM芯片。当客户将EEPROM芯片和智能终端的板卡组装在一起,并进行板卡的烧录时,智能终端可以控制自动从EEPROM芯片获取存储协议,根据存储协议在特定分区找到所需要的key。
存储协议也可以不与key一起烧录到EEPROM芯片,而是在智能终端出货前预设在智能终端。当客户将EEPROM芯片和智能终端的板卡组装在一起,并进行板卡的烧录时,智能终端调取其内部预设的存储协议,根据存储协议在特定分区找到所需要的key。
在步骤S2中,将key资源烧录到EEPROM芯片,利用EEPROM芯片存储key资源,可以配合保密算法保证key的保密性,在key保密的情况下为客户提供key。
如图2所示,为了规范key的唯一性、提高key的准确性,在一实施例中,步骤S1可以包括:
S11.发送key资源请求至key资源服务器,以使key资源服务器根据key资源请求将多个key打包成key资源;
S12.从key资源服务器获取打包的key资源。
key资源服务器可以对key进行统一存储和管理,在烧录EEPROM芯片时,直接请求访 问key资源服务器获取key,有利于保证key的唯一性和准确性。而且,key资源服务器可以为进行EEPROM芯片烧录的多个烧录器提供key资源,实现一对多的key资源服务,提高了烧录的效率。
key资源服务器将客户所需要的key进行前置的打包动作,客户所需要的key可以一次性导入EEPROM芯片,并分别存储在EEPROM芯片的特定分区。
如图3所示,在步骤S2之后,可以继续通过以下步骤测试key资源是否成功烧录到EEPROM芯片:
S3.将EEPROM芯片上所烧录的key资源烧录到测试板卡;
S4.根据EEPROM芯片上所烧录的key资源是否成功烧录到测试板卡,确定EEPROM芯片是否成功烧录了key资源。
为了确认key资源已成功烧录到EEPROM芯片,保证每一块EEPROM芯片上的key都是有效的,可以将EEPROM芯片组装在测试板卡上,触发烧录功能,将EEPROM芯片上的key资源烧录到测试板卡。如果测试板卡可以成功烧录被测试的EEPROM芯片的key资源,则表明被测试的EEPROM芯片已成功烧录了key资源,否则表明被测试的EEPROM芯片没有成功烧录key资源。
通过步骤S3和步骤S4的EERPOM芯片测试,可以防止客户收货时拿到了没有成功烧录key资源的EEPROM芯片,导致智能终端的板卡无法烧录到所需的key。
在一实施例中,测试板卡可以热插拔EEPROM芯片。当EEPROM芯片上所烧录的key资源正在烧录到测试板卡时,EEPROM芯片拔出测试板卡也不会造成灾难性的系统崩溃,提高测试的可靠性。
如图3所示,在步骤S4之后,还可以包括以下步骤:
S5.显示测试板卡是否成功烧录了EERPOM芯片上所烧录的key资源,和/或,显示EEPROM芯片是否成功烧录了key资源的确定结果。
在EEPROM芯片的key资源烧录到测试板卡完成或中断时,显示测试板卡是否成功烧录到key资源,或者直接显示根据测试板卡是否成功烧录到key资源而确定的EEPROM芯片是否成功烧录到key资源,由此可以让测试人员直观地判断EEPROM芯片是否合格,是否满足出货要求。
在一实施例中,可以通过一显示屏,与测试板卡连接,测试板卡是否成功烧录了EERPOM芯片上所烧录的key资源,和/或,EEPROM芯片是否成功烧录了key资源的确定结果,显示 在显示屏上。
通过本实施例,可以解决在智能终端的板卡散装出货时,难以实现烧录key的问题,将智能终端板卡所需要的各种key,事先烧录到EEPROM芯片上,存储在EEPROM芯片上的特定分区,采用本实施例提供的方法所烧录的EEPROM芯片与智能终端板卡散装零件一同出货给客户,客户只需简单操作即可通过EEPROM芯片将所需要的key烧录到自行组装的智能终端板卡上。既保证了key的保密性,又提升了散装出货的智能终端板卡key烧录的可操作性和便捷性。
实施例2
本实施例提供一种通过EEPROM烧录板卡方法,利用如实施例1所述EEPROM烧录方法所烧录的EEPROM芯片,对智能终端的板卡进行烧录。
如图4所示,所提供的通过EEPROM烧录板卡方法包括以下步骤:
S1’.确定智能终端需要烧录的key,从EEPROM芯片对应的分区获取智能终端需要烧录的key,EEPROM芯片采用如实施例1所述的EEPROM烧录方法烧录了key资源;
S2’.将所获取的key烧录到智能终端的板卡。
智能终端板卡的散装零件,与采用如实施例1的EEPROM烧录方法烧录了key资源的EEPROM芯片一起发货给客户,客户只需将EEPROM芯片与智能终端的板卡组装起来,然后一起装到智能终端的整机上,打开智能终端整机,即可通过步骤S1’和步骤S2’完成智能终端板卡的key烧录,无需特殊的工具,也无需复杂的操作方法。
由于EEPROM芯片烧录了由多个key打包的key资源,所以客户可以一次性地从EEPROM芯片上获取到所需要的全部key,并一次性地通过EEPROM芯片将全部key都烧录到智能终端的板卡上。
通过EEPROM芯片烧录智能终端板卡,也可以保证key的保密性,在key保密的情况下为客户提供key。
本实施例可以应用在智能终端。
在步骤S1’中,客户将EEPROM芯片和组装好的智能终端板卡一起装到智能终端的整机上,打开智能终端整机,在智能终端的控制下(运行内置运行脚本或预设的应用软件等控制方式)就可以确定需要烧录的key。
同理,在步骤S2’中,触发智能终端的板卡烧录在步骤S1’中所获取的key、监控智能终端的板卡烧录key的过程、检验key是否成功烧录到智能终端的板卡等整个烧录过程,均可 以在智能终端的控制下(运行内置运行脚本或打开预设的应用软件等控制方式)完成。
如实施例1所述,将key资源烧录到EEPROM芯片时,可以根据key资源中的存储协议将key存储到EEPROM芯片,保证不同的key存储在EEPROM芯片存储协议所规定的特定分区。基于存储协议,可以在客户烧录智能终端板卡时,指引去具体的特定分区去获取所需要的key。在一实施例中,基于存储协议,可以形成key的标识信息与EEPROM芯片的分区之间的对应关系,这个对应关系,可以在客户烧录智能终端板卡时,指引key的获取。
由此,如图5所示,在一实施例中,步骤S1’可以包括:
S11’.确定智能终端需要烧录的key的标识信息;
S12’.获取key的标识信息与EEPROM芯片的分区之间的对应关系,根据对应关系,确定存储智能终端需要烧录的key的分区;
S13’.从所确定的分区获取智能终端需要烧录的key。
key的标识信息可以是key的名称、编号等。可以理解的是,key的标识信息具有唯一标识一个key或者一类key的功能。不同的key标识信息对应不同的EEPROM芯片分区,确定key标识信息后,即可根据key标识信息与EEPROM芯片分区之间的对应关系,查找到对应的分区,并从分区中获取到所需要的key。
key的标识信息与EEPROM芯片的分区之间的对应关系,可以预先存储于智能终端,智能终端的板卡在智能终端的控制下通过EEPROM芯片进行key烧录时,智能终端可以调用其预先存储的对应关系,找到每个所需要的key所存储的分区。
key的标识信息与EEPROM芯片的分区之间的对应关系,也可以预先存储于EEPROM芯片,智能终端的板卡在智能终端的控制下通过EEPROM芯片进行key烧录时,智能终端可以从EEPROM芯片上读取到其预先存储的对应关系,找到每个所需要的key所存储的分区。
key的标识信息与EEPROM芯片的分区之间的对应关系,也可以预先存储于远程服务器上,智能终端的板卡在智能终端的控制下通过EEPROM芯片进行key烧录时,可以访问远程服务器获取到对应关系,找到每个所需要的key所存储的分区。
如图5所示,为了让客户及时了解智能终端板卡的烧录情况,本实施例所提供的通过EEPROM烧录板卡方法还可以包括以下步骤:
S3’.在将所获取的key烧录到智能终端的板卡失败时,生成错误提示。
如果智能终端的板卡在通过EEPROM芯片烧录过程中,存在key错误、缺少key、烧录终端等问题时,智能终端可以生成错误提示,为客户进一步的处理操作提供指引。
实施例3
本实施例提供一种EEPROM烧录器100,将智能终端所需要的key烧录到EEPROM芯片,以解决如背景技术所介绍的智能终端板卡散装出货时的问题。
如图6所示,所提供的的EEPROM烧录器100包括:
key获取模块110,用于获取key资源,key资源包括多个key;
芯片烧录模块120,用于将所获取的key资源烧录到EEPROM芯片,不同的key存储在EEPROM芯片的不同分区,以使EEPROM芯片所存储的key在智能终端的控制下可烧录到智能终端的板卡。
通过key获取模块110和芯片烧录模块120进行烧录key资源的EEPROM芯片,可以在智能终端板卡进行散装出货给客户时,一并发给客户。客户只需将EEPROM芯片和智能终端的板卡组装在一起,然后一起装到智能终端的整机上,打开智能终端整机,在智能终端的控制下,自动从EEPROM芯片对应的分区获取所需要的key,就可以将key烧录到智能终端的板卡上。
对于客户而言,只需组装EEPROM芯片和智能终端的板卡,打开智能终端整机,启动智能终端对于key烧录的智能控制即能完成板卡的key烧录,无需特殊的工具,也无需复杂的操作方法。
key获取模块110所获取的key资源,是将客户需要的多个key进行了打包,以便客户需要的多个key可以一次性烧录到EEPROM芯片。
在对多个key打包成key资源时,可以将存储协议一并打包,使得key资源含有存储协议,在芯片烧录模块120将key资源烧录到EEPROM芯片时,可以根据key资源中的存储协议将key存储到EEPROM芯片,从而保证不同的key存储在EEPROM芯片存储协议所规定的特定分区。当客户将EEPROM芯片和智能终端的板卡组装在一起,并在智能终端的控制下进行板卡的烧录时,可以根据存储协议在特定分区找到所需要的key。
存储协议可以与key一起烧录到EEPROM芯片。当客户将EEPROM芯片和智能终端的板卡组装在一起,并进行板卡的烧录时,智能终端可以控制自动从EEPROM芯片获取存储协议,根据存储协议在特定分区找到所需要的key。
存储协议也可以不与key一起烧录到EEPROM芯片,而是在智能终端出货前预设在智能终端。当客户将EEPROM芯片和智能终端的板卡组装在一起,并进行板卡的烧录时,智能终端调取其内部预设的存储协议,根据存储协议在特定分区找到所需要的key。
芯片烧录模块120中,将key资源烧录到EEPROM芯片,利用EEPROM芯片存储key资源,可以配合保密算法保证key的保密性。
为了规范key的唯一性、提高key的准确性,key获取模块110可以包括:
请求发送单元111,用于发送key资源请求至key资源服务器,以使key资源服务器根据key资源请求将多个key打包成key资源;
key获取单元112,用于从key资源服务器获取打包的key资源。
key资源服务器可以对key进行统一存储和管理,在烧录EEPROM芯片时,请求发送单元111直接请求访问key资源服务器获取key,有利于保证key的唯一性和准确性。而且,key资源服务器可以为进行EEPROM芯片烧录的多个烧录器100提供key资源,实现一对多的key资源服务,提高了烧录的效率。
key资源服务器将客户所需要的key进行前置的打包动作,客户所需要的key可以一次性导入EEPROM芯片,并分别存储在EEPROM芯片的特定分区。
如图6所示,本实施例所提供的EEPROM烧录器100还可以包括:
测试烧录模块130,用于将EEPROM芯片上所烧录的key资源烧录到测试板卡,根据EEPROM芯片上所烧录的key资源是否成功烧录到测试板卡,确定EEPROM芯片是否成功烧录了key资源。
为了确认key资源已成功烧录到EEPROM芯片,保证每一块EEPROM芯片上的key都是有效的,可以将EEPROM芯片组装在测试板卡上,触发测试烧录模块130的烧录功能,将EEPROM芯片上的key资源烧录到测试板卡。如果测试板卡可以成功烧录被测试的EEPROM芯片的key资源,则表明被测试的EEPROM芯片已成功烧录了key资源,否则表明被测试的EEPROM芯片没有成功烧录key资源。
通过测试烧录模块130对EERPOM芯片的测试,可以防止客户收货时拿到了没有成功烧录key资源的EEPROM芯片,导致智能终端的板卡无法烧录到所需的key。
在一实施例中,测试板卡可以热插拔EEPROM芯片。当EEPROM芯片上所烧录的key资源正在烧录到测试板卡时,EEPROM芯片拔出测试板卡也不会造成灾难性的系统崩溃,提高测试的可靠性。
本实施例所提供的EEPROM烧录器100还可以包括:
显示模块140,用于显示测试板卡是否成功烧录了EERPOM芯片上所烧录的key资源,和/或,显示EEPROM芯片是否成功烧录了key资源的确定结果。
在EEPROM芯片的key资源烧录到测试板卡完成或中断时,显示模块140显示测试板卡是否成功烧录到key资源,或者直接显示根据测试板卡是否成功烧录到key资源而确定的EEPROM芯片是否成功烧录到key资源,由此可以让测试人员直观地判断EEPROM芯片是否合格,是否满足出货要求。
在一实施例中,显示模块140为一显示屏,显示屏与测试板卡连接,测试板卡是否成功烧录了EERPOM芯片上所烧录的key资源,和/或,EEPROM芯片是否成功烧录了key资源的确定结果,显示在显示屏上。
通过本实施例,可以解决在智能终端的板卡散装出货时,难以实现烧录key的问题,将智能终端板卡所需要的各种key,事先烧录到EEPROM芯片上,存储在EEPROM芯片上的特定分区,采用本实施例提供的烧录器100所烧录的EEPROM芯片与智能终端板卡散装零件一同出货给客户,客户只需简单操作即可通过EEPROM芯片将所需要的key烧录到自行组装的智能终端板卡上。既保证了key的保密性,又提升了散装出货的智能终端板卡key烧录的可操作性和便捷性。
实施例4
本实施例提供一种通过EEPROM烧录板卡系统200,利用如实施例3所述EEPROM烧录器100所烧录的EEPROM芯片,对智能终端的板卡进行烧录。
如图7所示,所提供的通过EEPROM烧录板卡系统200包括:
key确定模块210,用于确定智能终端需要烧录的key,从EEPROM芯片对应的分区获取智能终端需要烧录的key,EEPROM芯片采用如实施例3所述的EEPROM烧录器100烧录了key资源;
板卡烧录模块220,用于将所获取的key烧录到智能终端的板卡。
智能终端板卡的散装零件,与采用如实施例3的EEPROM烧录器烧录了key资源的EEPROM芯片一起发货给客户,客户只需将EEPROM芯片与智能终端的板卡组装起来,然后一起装到智能终端的整机上,打开智能终端整机,即可通过key确定模块210和板卡烧录模块220完成智能终端板卡的key烧录,无需特殊的工具,也无需复杂的操作方法。
由于EEPROM芯片烧录了由多个key打包的key资源,所以客户可以一次性地从EEPROM芯片上获取到所需要的全部key,并一次性地通过EEPROM芯片将全部key都烧录到智能终端的板卡上。
通过EEPROM芯片烧录智能终端板卡,也可以保证key的保密性。
本实施例可以应用在智能终端,内置或外置于智能终端。
客户将EEPROM芯片和组装好的智能终端板卡一起装到智能终端的整机上,打开智能终端整机,就可以key确定模块210根据智能终端的具体应用情况确定需要烧录的key。
触发智能终端的板卡烧录key获取模块110所获取的key、监控智能终端的板卡烧录key的过程、检验key是否成功烧录到智能终端的板卡等整个烧录过程,均可以在板卡烧录模块220完成。
如实施例3所述,在芯片烧录模块120将key资源烧录到EEPROM芯片时,可以根据key资源中的存储协议将key存储到EEPROM芯片,保证不同的key存储在EEPROM芯片存储协议所规定的特定分区。基于存储协议,可以在客户烧录智能终端板卡时,指引去具体的特定分区去获取所需要的key。在一实施例中,基于存储协议,可以形成key的标识信息与EEPROM芯片的分区之间的对应关系,这个对应关系,可以在客户烧录智能终端板卡时,指引key的获取。
由此,在一实施例中,key确定模块210可以包括:
标识确定单元211,用于确定智能终端需要烧录的key的标识信息;
分区确定单元212,用于获取key的标识信息与EEPROM芯片的分区之间的对应关系,根据对应关系,确定存储智能终端需要烧录的key的分区;
key确定单元213,板卡从所确定的分区获取智能终端需要烧录的key。
key的标识信息可以是key的名称、编号等。可以理解的是,key的标识信息具有唯一标识一个key或者一类key的功能。不同的key标识信息对应不同的EEPROM芯片分区,标识确定单元211确定key标识信息后,分区确定单元212即可根据key标识信息与EEPROM芯片分区之间的对应关系,查找到对应的分区,并让key确定单元213从分区中获取到所需要的key。
key的标识信息与EEPROM芯片的分区之间的对应关系,可以预先存储于智能终端,智能终端的板卡在通过EEPROM芯片进行key烧录时,分区确定单元212可以调用智能终端预先存储的对应关系,找到每个所需要的key所存储的分区。
key的标识信息与EEPROM芯片的分区之间的对应关系,也可以预先存储于EEPROM芯片,智能终端的板卡在通过EEPROM芯片进行key烧录时,分区确定单元212可以从EEPROM芯片上读取到其预先存储的对应关系,找到每个所需要的key所存储的分区。
key的标识信息与EEPROM芯片的分区之间的对应关系,也可以预先存储于远程服务器 上,智能终端的板卡在通过EEPROM芯片进行key烧录时,分区确定单元212可以访问远程服务器获取到对应关系,找到每个所需要的key所存储的分区。
如图7所示,为了让客户及时了解智能终端板卡的烧录情况,本实施例所提供的通过EEPROM烧录板卡系统200还可以包括:
错误提示模块230,用于在将所获取的key烧录到智能终端的板卡失败时,生成错误提示。
如果智能终端的板卡在通过EEPROM芯片烧录过程中,存在key错误、缺少key、烧录终端等问题时,错误提示模块230可以生成错误提示,为客户进一步的处理操作提供指引。
显然,本申请的上述实施例仅仅是为清楚地说明本申请技术方案所作的举例,而并非是对本申请的具体实施方式的限定。凡在本申请权利要求书的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本申请权利要求的保护范围之内。

Claims (10)

  1. 一种EEPROM烧录方法,其中,包括:
    获取key资源,所述key资源包括多个key;
    将所获取的所述key资源烧录到EEPROM芯片,不同的所述key存储在所述EEPROM芯片的不同分区,以使所述EEPROM芯片所存储的所述key在智能终端的控制下可烧录到所述智能终端的板卡。
  2. 根据权利要求1所述的EEPROM烧录方法,其中,所述获取key资源,包括:
    发送key资源请求至key资源服务器,以使所述key资源服务器根据所述key资源请求将多个key打包成key资源;
    从所述key资源服务器获取打包的所述key资源。
  3. 根据权利要求1所述的EEPROM烧录方法,其中,在将所述key资源烧录到EEPROM芯片之后,还包括:
    将所述EEPROM芯片上所烧录的key资源烧录到测试板卡;
    根据所述EEPROM芯片上所烧录的key资源是否成功烧录到测试板卡,确定所述EEPROM芯片是否成功烧录了所述key资源。
  4. 根据权利要求3所述的EEPROM烧录方法,其中,在确定所述EEPROM芯片是否成功烧录了所述key资源之后,还包括:
    显示所述测试板卡是否成功烧录了EERPOM芯片上所烧录的key资源,和/或,显示所述EEPROM芯片是否成功烧录了所述key资源的确定结果。
  5. 一种通过EEPROM烧录板卡方法,其中,包括:
    确定智能终端需要烧录的key,从EEPROM芯片对应的分区获取所述智能终端需要烧录的key,所述EEPROM芯片采用如权利要求1至3任一项所述的EEPROM烧录方法烧录了key资源;
    将所获取的key烧录到所述智能终端的板卡。
  6. 根据权利要求5所述的通过EEPROM烧录板卡方法,其中,确定智能终端需要烧录的key,从EEPROM芯片对应的分区获取所述智能终端需要烧录的key,包括:
    确定智能终端需要烧录的key的标识信息;
    获取所述key的标识信息与EEPROM芯片的分区之间的对应关系,根据所述对应关系,确定存储所述智能终端需要烧录的key的分区;
    从所确定的所述分区获取所述智能终端需要烧录的key。
  7. 根据权利要求6所述的通过EEPROM烧录板卡方法,其中,所述对应关系预先存储于所述智能终端和/或所述EEPROM芯片。
  8. 根据权利要求5所述的通过EEPROM烧录板卡方法,其中,还包括:
    在将所获取的key烧录到所述智能终端的板卡失败时,生成错误提示。
  9. 一种EEPROM烧录器,其中,包括:
    key获取模块,用于获取key资源,所述key资源包括多个key;
    芯片烧录模块,用于将所获取的所述key资源烧录到EEPROM芯片,不同的所述key存储在所述EEPROM芯片的不同分区,以使所述EEPROM芯片所存储的所述key在智能终端的控制下可烧录到所述智能终端的板卡。
  10. 一种通过EEPROM烧录板卡系统,其中,包括:
    key确定模块,用于确定智能终端需要烧录的key,从EEPROM芯片对应的分区获取所述智能终端需要烧录的key,所述EEPROM芯片采用如权利要求9所述的EEPROM烧录器烧录了key资源;
    板卡烧录模块,用于将所获取的key烧录到所述智能终端的板卡。
PCT/CN2022/098887 2021-06-29 2022-06-15 Eeprom烧录方法、烧录器及通过eeprom烧录板卡方法、系统 WO2023273884A1 (zh)

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CN104978251A (zh) * 2015-06-29 2015-10-14 浪潮电子信息产业股份有限公司 一种支持单个EEPROM调节多个Redriver芯片驱动能力的方法
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