WO2020015003A1 - 基于本地的数据传输芯片及含有该芯片的电子设备 - Google Patents

基于本地的数据传输芯片及含有该芯片的电子设备 Download PDF

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WO2020015003A1
WO2020015003A1 PCT/CN2018/097855 CN2018097855W WO2020015003A1 WO 2020015003 A1 WO2020015003 A1 WO 2020015003A1 CN 2018097855 W CN2018097855 W CN 2018097855W WO 2020015003 A1 WO2020015003 A1 WO 2020015003A1
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data
local
processing unit
demodulation module
networked
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French (fr)
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杨俊佳
杨俊诚
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杨俊佳
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/20Network architectures or network communication protocols for network security for managing network security; network security policies in general
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/04Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks
    • H04L63/0428Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks wherein the data content is protected, e.g. by encrypting or encapsulating the payload
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/56Provisioning of proxy services
    • H04L67/565Conversion or adaptation of application format or content
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L9/00Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
    • H04L9/06Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols the encryption apparatus using shift registers or memories for block-wise or stream coding, e.g. DES systems or RC4; Hash functions; Pseudorandom sequence generators
    • H04L9/0618Block ciphers, i.e. encrypting groups of characters of a plain text message using fixed encryption transformation
    • H04L9/0625Block ciphers, i.e. encrypting groups of characters of a plain text message using fixed encryption transformation with splitting of the data block into left and right halves, e.g. Feistel based algorithms, DES, FEAL, IDEA or KASUMI
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L9/00Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
    • H04L9/06Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols the encryption apparatus using shift registers or memories for block-wise or stream coding, e.g. DES systems or RC4; Hash functions; Pseudorandom sequence generators
    • H04L9/0618Block ciphers, i.e. encrypting groups of characters of a plain text message using fixed encryption transformation
    • H04L9/0631Substitution permutation network [SPN], i.e. cipher composed of a number of stages or rounds each involving linear and nonlinear transformations, e.g. AES algorithms
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L2209/00Additional information or applications relating to cryptographic mechanisms or cryptographic arrangements for secret or secure communication H04L9/00
    • H04L2209/12Details relating to cryptographic hardware or logic circuitry

Definitions

  • the present application relates to the field of chips, and in particular, to a local-based data transmission chip and an electronic device containing the chip.
  • the main purpose of the present application is to provide a local-based data transmission chip to solve the technical problems that are easily stolen and leaked during the data transmission process in the related technology.
  • a local-based data transmission chip is provided.
  • the local-based data transmission chip includes a networked data processing unit and an offline data processing unit.
  • the networked data processing unit includes a signal modulation module and a signal demodulation module for processing the networked data.
  • the offline data The processing unit includes a data modulation module and a data demodulation module for processing offline data.
  • the signal modulation module performs data format conversion on the received networked data and sends it to the data demodulation module.
  • the data format conversion includes, but is not limited to, audio signals, near field communication signals, and far field communication signals. And light signal.
  • the signal modulation module performs local encryption processing on the received networked data and sends it to the data demodulation module.
  • the data demodulation module performs data format restoration on the received networked data.
  • the data demodulation module performs decryption processing on the received networked data.
  • the data modulation module performs data format conversion on the received offline data and sends it to the signal demodulation module.
  • the data format conversion includes, but is not limited to, audio signals, near field communication signals, and far field communication signals. And light signal.
  • the data modulation module performs local encryption processing on the received offline data and sends it to the signal demodulation module.
  • the signal demodulation module performs data format restoration on the received offline data.
  • the signal demodulation module performs decryption processing on the received offline data.
  • an electronic device is provided.
  • the electronic device includes the above-mentioned local-based data transmission chip.
  • a network data processing unit and an offline data processing unit are provided.
  • the purpose of being unable to steal and crack is achieved, thereby improving data transmission.
  • the technical effect of security further solves the technical problems that are easy to be stolen and leaked during the data transmission process in the related technology.
  • FIG. 1 is a schematic structural diagram of a chip according to the present application.
  • install should be interpreted broadly.
  • it can be a fixed connection, a detachable connection, or a monolithic structure; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, or it can be two devices, components, or components. Internal connectivity.
  • install can be a fixed connection, a detachable connection, or a monolithic structure; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, or it can be two devices, components, or components. Internal connectivity.
  • the present application relates to a local-based data transmission chip including a networked data processing unit and an offline data processing unit.
  • the networked data processing unit includes a signal modulation module and a signal solution for processing networked data.
  • a tuning module, the offline data processing unit includes a data modulation module and a data demodulation module for processing offline data.
  • the networked data processing unit performs data interaction with an external network
  • the external network includes, but is not limited to, the Internet, Ethernet, and a local area network.
  • the offline data processing unit is only responsible for processing local data, and does not perform any data interaction with the outside world, ensuring absolute security of data processing.
  • the signal modulation module in the networked data processing unit performs data format conversion on the received networked data and sends it to the data demodulation module in the offline data processing unit.
  • the data format conversion includes, but is not limited to, audio signals, near-field communication signals, far-field communication signals, and optical signals.
  • the near-field communication includes, but is not limited to, Bluetooth communication, NFC communication, WIFI communication, etc.
  • the far-field communication includes, but is not limited to, 433M wireless communication, GPRS communication, etc.
  • the optical signal communication includes, but is not limited to : Infrared communication, fiber optic communication, etc.
  • the signal modulation module performs local encryption processing on the received networked data and sends it to the data demodulation module.
  • the encryption algorithm used for the encryption processing includes, but is not limited to: DES, 3DES, and AES.
  • the encryption process may also be encrypted using other encryption algorithms.
  • the DES algorithm changes a 64-bit plaintext input block into a 64-bit ciphertext output block, where 8 bits are parity bits and the other 56 bits are the length of the password.
  • DES reassembles the input 64-bit data blocks bit by bit, and divides the output into two parts, L0 and R0, each with a length of 32 bits, and performs front-to-back replacement. Finally, L0 outputs the left 32 bits and R0 outputs the right 32.
  • L16 and R16 are obtained, and this is used as an input to perform the inverse permutation opposite to the initial permutation to obtain the ciphertext output.
  • the DES algorithm has extremely high security.
  • the 3DES is also called Triple DES, which is a mode of the DES encryption algorithm. It uses 3 56-bit keys to encrypt 3DES data three times.
  • the Data Encryption Standard (DES) is a long-standing encryption standard in the United States. It uses a symmetric key encryption method and was standardized by the ANSI organization as ANSI X.3.92 in 1981.
  • DES uses a 56-bit key and cipher block method. In the cipher block method, the text is divided into 64-bit text blocks and then encrypted. 3DES is more secure than the original DES.
  • the AES Advanced Encryption Standard (English: Advanced Encryption Standard, Acronym: AES), also called Rijndael encryption method in cryptography, is a block encryption standard adopted by the US federal government. This standard is used to replace the original DES, which has been analyzed by many parties and widely used throughout the world. After a five-year selection process, the Advanced Encryption Standard was released by the National Institute of Standards and Technology (NIST) on FIPS PUB197 on November 26, 2001, and became a valid standard on May 26, 2002. In 2006, the Advanced Encryption Standard has become one of the most popular algorithms in symmetric key encryption; unlike its predecessor, DES, Rijndael uses a substitution-permutation network instead of the Feistel architecture. AES can be encrypted and decrypted quickly in both software and hardware. It is relatively easy to implement and requires very little memory. As a new encryption standard, it is currently being deployed and applied to a wider range.
  • the data demodulation module performs data format restoration on the received networked data.
  • the data demodulation module of the offline unit performs various operations on the networked unit.
  • the signal is first restored in the data format to obtain a data format capable of subsequent processing.
  • the data demodulation module performs decryption processing on the received networked data.
  • the data demodulation module decrypts the encrypted data after the data format is restored, according to the corresponding decryption.
  • the rules are decrypted to obtain the decrypted data and used for the use of other modules in the offline data processing unit.
  • the data modulation module performs data format conversion on the received offline data and sends it to the signal demodulation module.
  • the data format conversion includes, but is not limited to, audio signals and near field communication. Signal, far-field communication signal and light signal.
  • the near-field communication includes, but is not limited to, Bluetooth communication, NFC communication, WIFI communication, etc.
  • the far-field communication includes, but is not limited to, 433M wireless communication, GPRS communication, etc.
  • the optical signal communication includes, but is not limited to : Infrared communication, fiber optic communication, etc.
  • the data modulation module performs local encryption processing on the received offline data and sends it to the signal demodulation module.
  • the encryption algorithm used for the encryption processing includes, but is not limited to: DES, 3DES, and AES.
  • the encryption process may also be encrypted using other encryption algorithms.
  • the signal demodulation module performs data format restoration on the received offline data.
  • the signal demodulation module of the network unit performs various operations on the offline unit.
  • the signal is first restored in the data format to obtain a data format capable of subsequent processing.
  • the signal demodulation module performs decryption processing on the received offline data.
  • the signal demodulation module decrypts the encrypted data after the data format is restored, according to the corresponding decryption.
  • the rules are decrypted to obtain the decrypted data and used for the use of other modules in the networked data processing unit.
  • an electronic device is provided.
  • the electronic device includes the above-mentioned local-based data transmission chip.
  • the electronic device includes, but is not limited to, a smart phone, a tablet computer, a computer, a wearable device, and the like.
  • the electronic device can also be other intelligent hardware capable of data interaction.
  • the device works as follows:
  • the implementation process of the invention is that the network unit receives digital signals, converts the digital signals into near-field, far-type signals, and sends them to the offline unit; the offline unit converts near-field, far-type data into digital signal processing, and processes the processed signals.
  • the digital signal is converted to the corresponding data type and sent to the networking unit.
  • a network data processing unit and an offline data processing unit are provided.
  • the purpose of being unable to steal and crack is achieved, thereby improving data transmission.
  • the technical effect of security further solves the technical problems that are easy to be stolen and leaked during the data transmission process in the related technology.
  • This application adopts a method provided with a networked data processing unit and an offline data processing unit.
  • a networked data processing unit By converting data into various forms of signals for transmission, the purpose of being unable to steal and crack can be achieved, thereby achieving the technical effect of improving data transmission security. , Thereby solving the technical problems in the related technology that are easy to be stolen and leaked during the data transmission process.

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  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Computer Hardware Design (AREA)
  • Computing Systems (AREA)
  • General Engineering & Computer Science (AREA)
  • Storage Device Security (AREA)
  • Communication Control (AREA)

Abstract

本申请公开了一种基于本地的数据传输芯片及含有该芯片的电子设备。所述芯片包括:联网数据处理单元和离线数据处理单元,所述联网数据处理单元包括用于对联网数据进行处理的信号调制模块和信号解调模块,所述离线数据处理单元包括用于对离线数据进行处理的数据调制模块和数据解调模块;采用设置有联网数据处理单元和离线数据处理单元的方式,通过将数据转换为各种形式的信号进行传输,达到了无法窃取和破解的目的,从而实现了提高数据传输安全性的技术效果,进而解决了相关技术中在数据传输过程中容易被窃取泄露的技术问题。

Description

基于本地的数据传输芯片及含有该芯片的电子设备 技术领域
本申请涉及芯片领域,具体而言,涉及一种基于本地的数据传输芯片及含有该芯片的电子设备。
背景技术
近年来,随着通信、测控、嵌入式等新技术的发展,为了满足各种不同的需求,设计人员需要设计不同的终端,不管这些终端设计如何变化,其核心部分如处理器、存储器是不变的;相关技术中在设计和制造基于区块链的电子设备时,由于设计上的缺陷,在数据传输过程中导致用户数据容易被窃取泄露,不能达到绝对的安全性。
因此,急需一种基于本地的数据传输芯片及含有该芯片的电子设备,以解决相关技术中在数据传输过程中容易被窃取泄露的技术问题。
发明内容
本申请的主要目的在于提供一种基于本地的数据传输芯片,以解决相关技术中在数据传输过程中容易被窃取泄露的技术问题。
为了实现上述目的,根据本申请的一个方面,提供了一种基于本地的数据传输芯片。
根据本申请的基于本地的数据传输芯片包括:联网数据处理单元和离线数据处理单元,所述联网数据处理单元包括用于对联网数据进行处理的信号调制模块和信号解调模块,所述离线数据处理单元包括用于对离线数据进行处理的数据调制模块和数据解调模块。
进一步的,所述信号调制模块对接收到的联网数据进行数据格式转换并发送至所述数据解调模块,所述数据格式转换包括但不限于:音频信号、近场 通讯信号、远场通讯信号和光信号。
进一步的,所述信号调制模块对接收到的联网数据进行本地加密处理并发送至所述数据解调模块。
进一步的,所述数据解调模块对接收到的所述联网数据进行数据格式还原。
进一步的,所述数据解调模块对接收到的所述联网数据进行解密处理。
进一步的,所述数据调制模块对接收到的离线数据进行数据格式转换并发送至所述信号解调模块,所述数据格式转换包括但不限于:音频信号、近场通讯信号、远场通讯信号和光信号。
进一步的,所述数据调制模块对接收到的离线数据进行本地加密处理并发送至所述信号解调模块。
进一步的,所述信号解调模块对接收到的所述离线数据进行数据格式还原。
进一步的,所述信号解调模块对接收到的所述离线数据进行解密处理。
为了实现上述目的,根据本申请的另一方面,提供了一种电子设备。
根据本申请的电子设备,包括上述基于本地的数据传输芯片。
在本申请实施例中,采用设置有联网数据处理单元和离线数据处理单元的方式,通过将数据转换为各种形式的信号进行传输,达到了无法窃取和破解的目的,从而实现了提高数据传输安全性的技术效果,进而解决了相关技术中在数据传输过程中容易被窃取泄露的技术问题。
附图说明
构成本申请的一部分的附图用来提供对本申请的进一步理解,使得本申请的其它特征、目的和优点变得更明显。本申请的示意性实施例附图及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1是根据本申请所述芯片的结构示意图。
具体实施方式
为了使本技术领域的人员更好地理解本申请方案,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分的实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都应当属于本申请保护的范围。
需要说明的是,本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本申请的实施例。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、***、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
在本申请中,术语“上”、“下”、“左”、“右”、“前”、“后”、“顶”、“底”、“内”、“外”、“中”、“竖直”、“水平”、“横向”、“纵向”等指示的方位或位置关系为基于附图所示的方位或位置关系。这些术语主要是为了更好地描述本发明及其实施例,并非用于限定所指示的装置、元件或组成部分必须具有特定方位,或以特定方位进行构造和操作。
并且,上述部分术语除了可以用于表示方位或位置关系以外,还可能用于表示其他含义,例如术语“上”在某些情况下也可能用于表示某种依附关系或连接关系。对于本领域普通技术人员而言,可以根据具体情况理解这些术语在本发明中的具体含义。
此外,术语“安装”、“设置”、“设有”、“连接”、“相连”、“套接”应做广义理解。例如,可以是固定连接,可拆卸连接,或整体式构造;可以是机械连接,或电连接;可以是直接相连,或者是通过中间媒介间接相连,又或者是两 个装置、元件或组成部分之间内部的连通。对于本领域普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。下面将参考附图并结合实施例来详细说明本申请。
如图1所示,本申请涉及一种基于本地的数据传输芯片包括:联网数据处理单元和离线数据处理单元,所述联网数据处理单元包括用于对联网数据进行处理的信号调制模块和信号解调模块,所述离线数据处理单元包括用于对离线数据进行处理的数据调制模块和数据解调模块。
优选的,所述联网数据处理单元与外界网络进行数据交互,所述外界网络包括但不限于:因特网、以太网和局域网。
优选的,所述离线数据处理单元只负责处理本地数据,不与外界进行任何数据交互,确保数据处理的绝对安全性。
在本申请的一些实施例中,所述联网数据处理单元中的信号调制模块对接收到的联网数据进行数据格式转换并发送至所述离线数据处理单元中的数据解调模块,优选的,所述数据格式转换包括但不限于:音频信号、近场通讯信号、远场通讯信号和光信号。
具体的,所述近场通讯包括但不限于:蓝牙通讯、NFC通讯、WIFI通讯等,所述远场通讯包括但不限于:433M无线通讯、GPRS通讯等,所述光信号通讯包括但不限于:红外通讯、光纤通讯等。
在本申请的一些实施例中,所述信号调制模块对接收到的联网数据进行本地加密处理并发送至所述数据解调模块,优选的,所述加密处理采用的加密算法包括但不限于:DES、3DES和AES,在本申请的其他实施例中,所述加密处理也可以采用其他加密算法进行加密。
优选的,所述DES算法把64位的明文输入块变为数据长度为64位的密文输出块,其中8位为奇偶校验位,另外56位作为密码的长度。首先,DES把输入的64位数据块按位重新组合,并把输出分为L0、R0两部分,每部分 各长32位,并进行前后置换,最终由L0输出左32位,R0输出右32位,根据这个法则经过16次迭代运算后,得到L16、R16,将此作为输入,进行与初始置换相反的逆置换,即得到密文输出;DES算法具有极高的安全性,到目前为止,除了用穷举搜索法对DES算法进行攻击外,还没有发现更有效的办法,而56位长密钥的穷举空间为2^56,这意味着如果一台计算机的速度是每秒种检测100万个密钥,那么它搜索完全部密钥就需要将近2285年的时间,因此DES算法是一种很可靠的加密方法。
优选的,所述3DES又称Triple DES,是DES加密算法的一种模式,它使用3条56位的密钥对3DES数据进行三次加密。数据加密标准(DES)是美国的一种由来已久的加密标准,它使用对称密钥加密法,并于1981年被ANSI组织规范为ANSI X.3.92。DES使用56位密钥和密码块的方法,而在密码块的方法中,文本被分成64位大小的文本块然后再进行加密。比起最初的DES,3DES更为安全。
优选的,所述AES高级加密标准(英语:Advanced Encryption Standard,缩写:AES),在密码学中又称Rijndael加密法,是美国联邦政府采用的一种区块加密标准。这个标准用来替代原先的DES,已经被多方分析且广为全世界所使用。经过五年的甄选流程,高级加密标准由美国国家标准与技术研究院(NIST)于2001年11月26日发布于FIPS PUB 197,并在2002年5月26日成为有效的标准。2006年,高级加密标准已然成为对称密钥加密中最流行的算法之一;不同于它的前任标准DES,Rijndael使用的是代换-置换网络,而非Feistel架构。AES在软件及硬件上都能快速地加解密,相对来说较易于实作,且只需要很少的存储器。作为一个新的加密标准,目前正被部署应用到更广大的范围。
在本申请的一些实施例中,所述数据解调模块对接收到的所述联网数据进行数据格式还原,优选的,所述离线单元的数据解调模块对所述联网单元传输过来的各种信号先进行数据格式还原,得到能够进行后续处理的数据格式。
在本申请的一些实施例中,所述数据解调模块对接收到的所述联网数据进行解密处理,优选的,所述数据解调模块将经过数据格式还原后的加密数据, 依据对应的解密规则进行解密,得到解密后的数据并用于所述离线数据处理单元中的其他模块的使用。
在本申请的一些实施例中,所述数据调制模块对接收到的离线数据进行数据格式转换并发送至所述信号解调模块,所述数据格式转换包括但不限于:音频信号、近场通讯信号、远场通讯信号和光信号。
具体的,所述近场通讯包括但不限于:蓝牙通讯、NFC通讯、WIFI通讯等,所述远场通讯包括但不限于:433M无线通讯、GPRS通讯等,所述光信号通讯包括但不限于:红外通讯、光纤通讯等。
在本申请的一些实施例中,所述数据调制模块对接收到的离线数据进行本地加密处理并发送至所述信号解调模块,优选的,所述加密处理采用的加密算法包括但不限于:DES、3DES和AES,在本申请的其他实施例中,所述加密处理也可以采用其他加密算法进行加密。
在本申请的一些实施例中,所述信号解调模块对接收到的所述离线数据进行数据格式还原,优选的,所述联网单元的信号解调模块对所述离线单元传输过来的各种信号先进行数据格式还原,得到能够进行后续处理的数据格式。
在本申请的一些实施例中,所述信号解调模块对接收到的所述离线数据进行解密处理,优选的,所述信号解调模块将经过数据格式还原后的加密数据,依据对应的解密规则进行解密,得到解密后的数据并用于所述联网数据处理单元中的其他模块的使用。
为了实现上述目的,根据本申请的另一方面,提供了一种电子设备。
根据本申请的电子设备,包括上述基于本地的数据传输芯片,所述电子设备包括但不限于:智能手机、平板电脑、电脑、可穿戴设备等,在本申请的其他实施例中,所述电子设备也可以是其他能够实现数据交互的智能硬件。
该装置工作原理如下所述:
本发明的实现流程为联网单元接收数字信号,将数字信号转换为近场、远 等类型信号并发送至离线单元;离线单元将近场、远等类型数据转换为数字信号处理,并将处理后的数字信号转换为对应数据类型发送至联网单元,通过在芯片内部完成的四次格式转换保证了数据安全,进而解决了相关技术中芯片处理过程中数据易被窃取和拦截的问题。
从以上的描述中,可以看出,本申请实现了如下技术效果:
在本申请实施例中,采用设置有联网数据处理单元和离线数据处理单元的方式,通过将数据转换为各种形式的信号进行传输,达到了无法窃取和破解的目的,从而实现了提高数据传输安全性的技术效果,进而解决了相关技术中在数据传输过程中容易被窃取泄露的技术问题。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。
工业实用性
本申请采用设置有联网数据处理单元和离线数据处理单元的方式,通过将数据转换为各种形式的信号进行传输,达到了无法窃取和破解的目的,从而实现了提高数据传输安全性的技术效果,进而解决了相关技术中在数据传输过程中容易被窃取泄露的技术问题。

Claims (10)

  1. 一种基于本地的数据传输芯片,其特征在于,包括:联网数据处理单元和离线数据处理单元,所述联网数据处理单元包括用于对联网数据进行处理的信号调制模块和信号解调模块,所述离线数据处理单元包括用于对离线数据进行处理的数据调制模块和数据解调模块。
  2. 根据权利要求1所述的基于本地的数据传输芯片,其特征在于,所述信号调制模块对接收到的联网数据进行数据格式转换并发送至所述数据解调模块,所述数据格式转换包括但不限于:音频信号、近场通讯信号、远场通讯信号和光信号。
  3. 根据权利要求1所述的基于本地的数据传输芯片,其特征在于,所述信号调制模块对接收到的联网数据进行本地加密处理并发送至所述数据解调模块。
  4. 根据权利要求2所述的基于本地的数据传输芯片,其特征在于,所述数据解调模块对接收到的所述联网数据进行数据格式还原。
  5. 根据权利要求3所述的基于本地的数据传输芯片,其特征在于,所述数据解调模块对接收到的所述联网数据进行解密处理。
  6. 根据权利要求1所述的基于本地的数据传输芯片,其特征在于,所述数据调制模块对接收到的离线数据进行数据格式转换并发送至所述信号解调模块,所述数据格式转换包括但不限于:音频信号、近场通讯信号、远场通讯信号和光信号。
  7. 根据权利要求1所述的基于本地的数据传输芯片,其特征在于,所述数据调制模块对接收到的离线数据进行本地加密处理并发送至所述信号解调模块。
  8. 根据权利要求6所述的基于本地的数据传输芯片,其特征在于,所述信号解调模块对接收到的所述离线数据进行数据格式还原。
  9. 根据权利要求7所述的基于本地的数据传输芯片,其特征在于,所述 信号解调模块对接收到的所述离线数据进行解密处理。
  10. 一种电子设备,其特征在于,包括上述权利要求1至权利要求9所述的基于本地的数据传输芯片。
PCT/CN2018/097855 2018-07-16 2018-08-01 基于本地的数据传输芯片及含有该芯片的电子设备 WO2020015003A1 (zh)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101727557A (zh) * 2009-12-07 2010-06-09 兴唐通信科技有限公司 保密隔离硬盘及其保密方法
CN103761468A (zh) * 2014-01-13 2014-04-30 金硕澳门离岸商业服务有限公司 具有双cpu的微型控制芯片
CN104393890A (zh) * 2014-12-05 2015-03-04 芜湖中艺企业管理咨询有限公司 一种安全的nfc芯片
US20160301671A1 (en) * 2015-04-09 2016-10-13 Web Sensing, Llc System-on-chip data security appliance and methods of operating the same
CN106534109A (zh) * 2016-10-28 2017-03-22 深圳市鑫宇鹏电子科技有限公司 一种集成安全加密功能的安全WiFi芯片

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5758177A (en) * 1995-09-11 1998-05-26 Advanced Microsystems, Inc. Computer system having separate digital and analog system chips for improved performance
CN102740449B (zh) * 2011-04-13 2015-06-03 北京锦鸿希电信息技术股份有限公司 利用gsm-r网络的ctcs-3级列控***车载无线传输***
CN103905452A (zh) * 2014-04-03 2014-07-02 国家电网公司 一种可信的网络攻击过滤装置及网络攻击过滤方法
CN203775245U (zh) * 2014-04-03 2014-08-13 国家电网公司 一种能够避免自身配置被篡改的网络攻击过滤装置
CN204759345U (zh) * 2015-08-10 2015-11-11 宁海县华军网络科技有限公司 带网络变压器的电脑主机延长装置
CN105141599A (zh) * 2015-08-17 2015-12-09 山东超越数控电子有限公司 一种基于物理隔离的多芯片网络加密***
US20180041900A1 (en) * 2016-08-02 2018-02-08 Regina D. Anderson Anti-theft smart device system
CN207424840U (zh) * 2017-11-30 2018-05-29 北京集创北方科技股份有限公司 电子设备、显示***及其安全芯片

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101727557A (zh) * 2009-12-07 2010-06-09 兴唐通信科技有限公司 保密隔离硬盘及其保密方法
CN103761468A (zh) * 2014-01-13 2014-04-30 金硕澳门离岸商业服务有限公司 具有双cpu的微型控制芯片
CN104393890A (zh) * 2014-12-05 2015-03-04 芜湖中艺企业管理咨询有限公司 一种安全的nfc芯片
US20160301671A1 (en) * 2015-04-09 2016-10-13 Web Sensing, Llc System-on-chip data security appliance and methods of operating the same
CN106534109A (zh) * 2016-10-28 2017-03-22 深圳市鑫宇鹏电子科技有限公司 一种集成安全加密功能的安全WiFi芯片

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