WO2020019334A1 - 具有加解密功能的硬盘及其应用系统 - Google Patents

具有加解密功能的硬盘及其应用系统 Download PDF

Info

Publication number
WO2020019334A1
WO2020019334A1 PCT/CN2018/097630 CN2018097630W WO2020019334A1 WO 2020019334 A1 WO2020019334 A1 WO 2020019334A1 CN 2018097630 W CN2018097630 W CN 2018097630W WO 2020019334 A1 WO2020019334 A1 WO 2020019334A1
Authority
WO
WIPO (PCT)
Prior art keywords
encryption
decryption
connector
hard disk
module
Prior art date
Application number
PCT/CN2018/097630
Other languages
English (en)
French (fr)
Inventor
郭益宏
陈文宗
尹永兴
高启豪
Original Assignee
威刚科技股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 威刚科技股份有限公司 filed Critical 威刚科技股份有限公司
Priority to PCT/CN2018/097630 priority Critical patent/WO2020019334A1/zh
Publication of WO2020019334A1 publication Critical patent/WO2020019334A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/60Protecting data

Definitions

  • the invention relates to a hard disk, in particular to a hard disk with encryption and decryption functions and an application system thereof.
  • the technical problem to be solved by the present invention is to provide a hard disk with an encryption and decryption function and an application system thereof in response to the shortcomings of the prior art.
  • a hard disk with encryption and decryption functions which includes a casing, an encryption and decryption module, and a storage module.
  • the casing includes a receiving space.
  • the encryption and decryption module is disposed in the accommodating space.
  • the encryption and decryption module includes a first substrate, a first connector disposed on the first substrate, and a first substrate disposed on the first substrate.
  • the storage module is disposed in the accommodating space, the storage module includes a second substrate and a second connector disposed on the second substrate, wherein the first of the encryption and decryption module is A connector is connected to the second connector of the storage module, so that the first substrate is coupled to the second substrate.
  • the first substrate, the first connector, and the second connector are connected between the transmission port and the second substrate.
  • the casing includes a first casing and a second casing corresponding to the first casing, and the container can be formed between the first casing and the second casing. Home space.
  • the housing includes a slot, and a part of the first connector of the encryption and decryption module and a part of the second connector of the storage module are exposed through the slot. It is described outside the accommodation space.
  • the accommodating space includes a first accommodating area and a second accommodating area.
  • the encryption and decryption module is detachably disposed in the first accommodating area.
  • the storage module is detachable.
  • Ground is disposed in the second accommodation area.
  • the storage module can be detached from the second accommodating area and installed in the first accommodating area.
  • the accommodating space includes a first accommodating area and a second accommodating area.
  • the encryption and decryption module is detachably disposed in the first accommodating area.
  • the storage module is detachable. Ground is disposed in the second accommodating area; wherein the first accommodating area of the casing has a fixing portion, and the encryption and decryption module includes a first positioning portion corresponding to the fixing portion, So that the encryption / decryption module can be installed on the fixing portion through the first positioning portion, the storage module includes a second positioning portion corresponding to the fixing portion, so that the storage module can pass through.
  • the second positioning portion can be mounted on the fixing portion.
  • the transmission port is a connector that conforms to SATA, mSATA, PCI-E, NVMe, M.2, ZIF, IDE, U.2, CF, or CFast specification interface.
  • the second connector of the storage module is a connector that complies with a SATA, mSATA, PCI-E, NVMe, M.2, ZIF, IDE, U.2, CF, or CFast specification interface.
  • the hard disk with encryption and decryption functions is a 2.5-inch hard disk or a 3.5-inch hard disk.
  • the second substrate is a storage unit
  • the storage unit is a solid-state hard disk specification interface or a hard disk drive specification interface.
  • first connector and the second connector are pluggable connectors.
  • another technical solution adopted by the present invention is to provide a system applied to a hard disk having an encryption and decryption function, which includes an encryption and decryption module and a storage module.
  • the encryption and decryption module includes a first substrate, a first connector disposed on the first substrate, and a transmission port disposed on the first substrate.
  • the encryption and decryption module can receive The information is encrypted and the information to be encrypted can be encrypted to form an encrypted information.
  • the encryption and decryption module can receive the information to be decrypted and can decrypt the information to be decrypted to form a decrypted information.
  • the storage module is coupled to the encryption and decryption module, the storage module includes a second substrate and a second connector disposed on the second substrate, and the first connector of the encryption and decryption module
  • the second connector connected to the storage module, wherein the storage module can receive the encrypted information from the encryption and decryption module, and the storage module can transmit the information to be decrypted to the storage module Encryption module.
  • the first substrate, the first connector, and the second connector are connected between the transmission port and the second substrate.
  • the encrypted information encrypted by the encryption / decryption module can be transmitted to the second connector through the first connector, and transmitted to the storage module through the second connector.
  • the information to be decrypted transmitted by the storage module can be transmitted to the first connector through the second connector, and transmitted to the encryption and decryption module through the first connector.
  • system applied to a hard disk with encryption and decryption functions further includes: an electronic device coupled to the transmission port of the encryption and decryption module to transmit the information to be encrypted to The encryption and decryption module, and receiving the decrypted information from the encryption and decryption module.
  • the first substrate includes a control unit and an encryption / decryption unit coupled to the control unit, and the encryption / decryption unit is coupled between the transmission port and the first connector; wherein The encryption and decryption unit can receive the information to be encrypted transmitted by the transmission port and can encrypt the information to be encrypted to form the encrypted information, and the encryption and decryption unit can transmit the encrypted information To the first connector; wherein the encryption and decryption unit can receive the information to be decrypted transmitted by the first connector and can decrypt the information to be decrypted to form the decrypted information, and The encryption and decryption unit can transmit the decrypted information to the transmission port.
  • the transmission port is coupled to the first connector to transmit a command message to the first connector.
  • the hard disk with encryption and decryption functions and the application system thereof provided in the embodiments of the present invention can be connected to the second connector of the storage module by using the "first connector of the encryption and decryption module"
  • the technical solutions of “coupling the first substrate to the second substrate” and “the first substrate, the first connector, and the second connector are connected between the transmission port and the second substrate” can have encryption and decryption functions.
  • FIG. 1 is a schematic three-dimensional combination diagram of a hard disk with encryption and decryption functions provided by a first embodiment of the present invention.
  • FIG. 2 is another schematic three-dimensional combination diagram of a hard disk with encryption and decryption functions provided by the first embodiment of the present invention.
  • FIG. 3 is a schematic exploded perspective view of a hard disk with encryption / decryption function provided by the first embodiment of the present invention.
  • FIG. 4 is another schematic three-dimensional exploded view of the hard disk with encryption and decryption function provided by the first embodiment of the present invention.
  • FIG. 5 is another schematic three-dimensional exploded view of a hard disk with encryption and decryption functions provided by the first embodiment of the present invention.
  • FIG. 6 is another schematic three-dimensional combination diagram of a hard disk with encryption and decryption functions provided by the first embodiment of the present invention.
  • FIG. 7 is an exploded perspective view of a hard disk having only a storage module according to the first embodiment of the present invention.
  • FIG. 8 is a functional block diagram of a system applied to a hard disk having encryption and decryption functions according to an embodiment of the present invention.
  • FIG. 9 is a schematic three-dimensional combination diagram of a hard disk with encryption and decryption functions provided by a second embodiment of the present invention.
  • FIG. 10 is another schematic three-dimensional combination diagram of a hard disk with encryption and decryption functions provided by the second embodiment of the present invention.
  • FIG. 11 is a schematic exploded perspective view of a hard disk with encryption / decryption function provided by the second embodiment of the present invention.
  • FIG. 12 is another perspective exploded view of a hard disk with encryption / decryption function provided by the second embodiment of the present invention.
  • FIG. 13 is another schematic three-dimensional exploded view of a hard disk with encryption and decryption functions provided by the second embodiment of the present invention.
  • FIG. 14 is a schematic exploded perspective view of a hard disk having only a storage module according to a second embodiment of the present invention.
  • FIG. 1 and FIG. 2 are three-dimensional schematic diagrams of a hard disk with encryption and decryption functions provided by the first embodiment of the present invention
  • FIGS. 3 to 5 are the first implementation of the present invention.
  • the example provides a three-dimensional exploded view of a hard disk with encryption and decryption functions.
  • the first embodiment of the present invention provides a hard disk U with encryption and decryption functions, which includes a casing 1, an encryption and decryption module 2, and a storage module 3.
  • the housing 1 may include an accommodating space 10, and the encryption and decryption module 2 and the storage module 3 may be respectively disposed in the accommodating space 10, so that the encryption and decryption module 2 and the storage module 3 are both disposed in the housing 1, and A hard disk U with encryption and decryption functions is formed.
  • the casing 1 may include a first casing 11 and a second casing 12 corresponding to the first casing 11, and An accommodation space 10 can be formed between the first casing 11 and the second casing 12, so that the encryption / decryption module 2 and the storage module 3 are disposed between the first casing 11 and the second casing 12 and fixed to the casing. 1 and protected by the first casing 11 and the second casing 12.
  • the accommodation space 10 may include a first accommodation area 101 and a second accommodation area 102.
  • the encryption / decryption module 2 is detachably disposed in the first accommodation area 101, and the storage module 3 is detachably attached. Set in the second accommodation area 102.
  • the encryption and decryption module 2 may include a first substrate 21, a first connector 22 disposed on the first substrate 21 and coupled to the first substrate 21, and A transmission port 23 is disposed on the first substrate 21 and is coupled to the first substrate 21. According to the embodiment of the present invention, a part of the transmission port 23 may be exposed outside the accommodation space 10.
  • the storage module 3 may include a second substrate 31 and a second connector 32 disposed on the second substrate 31 and coupled to the second substrate 31.
  • the first connector 22 of the encryption and decryption module 2 may be connected to the second The connector 32 makes the first substrate 21 and the second substrate 31 abut against each other, so that the first substrate 21 is coupled to the second substrate 31.
  • the first substrate 21, the first connector 22, and the second connector 32 may be connected between the transmission port 23 and the second substrate 31.
  • the first substrate 21, the first connector 22, the second connector 32, and the second substrate 31 may all be disposed in the accommodating space 10, and only a part of the transmission ports 23 is exposed to utilize the transmission ports 23 and the electronic device. 4 (see FIG. 8, for example, but not limited to, a motherboard of a computer) for data (data) transmission.
  • the first accommodating area 101 of the casing 1 may have a fixing portion 121
  • a substrate 21 may include a first positioning portion 211 corresponding to the fixing portion 121, so that the encryption / decryption module 2 can be mounted on the fixing portion 121 through the first positioning portion 211.
  • the storage module 3 may include a second positioning portion 311 corresponding to the fixing portion 121, so that the storage module 3 can be mounted on the fixing portion 121 through the second positioning portion 311.
  • the hard disk U with encryption and decryption functions may further include a locking device F
  • the first housing 11 is also It may have a first through hole 110
  • the second housing 12 may also have a second through hole 120
  • the second substrate 31 may also have a positioning hole 310
  • the first through hole 110, the second through hole 120, and the positioning hole 310 may be each other Correspond to each other.
  • the locking member F can be disposed on the first through hole 110, the second through hole 120, and the positioning hole 310 to locate the positions of the first casing 11, the second casing 12, and the second substrate 31.
  • the present invention does not This is the limit.
  • first through hole 110 the second through hole 120, and the positioning hole 310
  • a through hole (not shown in the figure) and a locking member (not shown in the figure) provided at other positions may be used.
  • first casing 11 and the second casing 12 are coupled to each other, or the first casing 11 and the second casing 12 are coupled to each other by means of a snap connection.
  • the present invention does not use the first casing 11 and The coupling manner of the second casing 12 is limited.
  • the first substrate 21 of the encryption / decryption module 2 may be an encryption / decryption transfer card, and the first substrate 21 There may be an encryption / decryption unit (or an encryption / decryption engine or an encryption / decryption chip) for encrypting / decrypting data.
  • the transmission port 23 of the encryption / decryption module 2 may be a connector that complies with SATA, mSATA, PCI-E, NVMe, M.2, ZIF, IDE, U.2, CF, or CFast specification interfaces to utilize the transmission port 23 Data transmission is performed with the electronic device 4, but the present invention is not limited thereto.
  • the second substrate 31 of the storage module 3 may be a printed circuit board assembly including a solid-state drive (SSD) specification interface.
  • the second connector 32 of the storage module 3 may be a connector that conforms to the SATA, mSATA, PCI-E, NVMe, M.2, ZIF, IDE, U.2, CF, or CFast specification interface.
  • the second substrate 31 of the storage module 3 may be an existing storage unit for storing digital information (information) from the electronic device 4.
  • the specification interface of the first connector 22 of the encryption and decryption module 2 may also correspond to the storage module 3 Interface of the second connector 32 specifications.
  • the hard disk U with encryption and decryption function may be a 2.5-inch hard disk. Therefore, compared with the prior art, the hard disk U with the encryption and decryption function provided by the embodiment of the present invention further includes a first connector 22 of the encryption and decryption module 2 and a second connector 32 of the storage module 3. Therefore, the housing of the existing 2.5-inch hard disk will interfere with the first connector 22 and the second connector 32. Therefore, as shown in FIG.
  • the first housing 11 of the housing 1 may include a slot 103, a part of the first connector 22 of the encryption / decryption module 2, and the first of the storage module 3.
  • a part of the two connectors 32 may be exposed outside the accommodation space 10 through the slot 103.
  • a slotted label T for example, but not limited to a sticker
  • covering the first casing 11 may be further provided on the first casing 11 to cover the nakedness.
  • the slot 103 may be provided on the second casing 12.
  • FIG. 7 is a schematic three-dimensional exploded view of a hard disk having only a storage module according to the first embodiment of the present invention.
  • the encryption and decryption module 2 can be detachably disposed on the hard disk.
  • the first accommodating area 101 enables the encryption / decryption module 2 to be disposed in or removed from the first accommodating area 101.
  • the storage module 3 can be detached from the second accommodation area 102, and the storage module 3 can be installed in the first accommodation area 101 to form a storage module only Hard drive U '.
  • the encryption / decryption module 2 can be installed on the fixed portion 121 through the first positioning portion 211, and the storage module 3 can be installed on the fixed portion 121 through the second positioning portion 311.
  • the fixing portion 121 can have structural features corresponding to the first positioning portion 211 and the second positioning portion 311, so that both the storage module 3 and the encryption / decryption module 2 can be disposed on the fixing portion 121.
  • the first positioning portion 211 and the fixing portion 121 and the second positioning portion 311 may also be fixed by a locking member (not shown), which is not limited in the present invention.
  • the second connector 32 of the storage module 3 can be a connector that conforms to the SATA, mSATA, PCI-E, NVMe, M.2, ZIF, IDE, U.2, CF, or CFast specification interface, when the storage module 3 When the module 3 is disposed in the first accommodating area 101, the second connector 32 of the storage module 3 can also be exposed, and the second connector 32 can be used to perform data transmission with the electronic device 4. Therefore, according to the embodiment of the present invention, the encryption / decryption module 2 can be selectively provided, so that the hard disk has the encryption / decryption function or does not have the encryption / decryption function.
  • the first connector 22 and the second connector 32 are pluggable connectors, whereby the encryption and decryption module 2 and the storage module 3 can pass through the first connector 22
  • the second connector 32 and the second connector 32 are connected to each other and separated from each other, and the encryption / decryption module 2 can be selectively installed in the hard disk.
  • FIG. 8 is a functional block diagram of a system applied to a hard disk with encryption and decryption functions provided by an embodiment of the present invention.
  • the data transmission method will be further described below.
  • the invention provides a system S, an encryption / decryption module 2 and a storage module 3, which are applied to a hard disk with encryption and decryption functions.
  • the encryption / decryption module 2 may include a first substrate 21, a first connector 22 disposed on the first substrate 21, and a transmission port 23 disposed on the first substrate 21.
  • the storage module 3 may be coupled to the encryption and decryption module 2.
  • the storage module 3 includes a second substrate 31 and a second connector 32 disposed on the second substrate 31.
  • the first connector 22 of the encryption and decryption module 2 may be The second connector 32 is connected to the storage module 3. Thereby, the first substrate 21, the first connector 22, and the second connector 32 can be connected between the transmission port 23 and the second substrate 31. It should be noted that the structure of the encryption / decryption module 2 and the storage module 3 is the same as the foregoing description, and is not repeated here.
  • the first substrate 21 may include a control unit 212 and an encryption / decryption unit 213 coupled to the control unit 212, and the first connector 22 may be coupled to the transmission Port 23.
  • the first connector 22 may be directly coupled to the transmission port 23, and the encryption and decryption unit 213 may be coupled between the transmission port 23 and the first connector 22.
  • the control unit 212 may be coupled between the first connector 22 and the transmission port 23.
  • the second connector 32 may be coupled to the second substrate 31, and the encryption / decryption module 2 and the storage module 3 may be coupled to each other through the first connector 22 and the second connector 32.
  • the encryption and decryption module 2 can receive a message to be encrypted and can encrypt the message to be encrypted to form an encrypted message, and the encryption and decryption module 2 can receive a message to be decrypted and The information to be decrypted can be decrypted to form a decrypted message.
  • the storage module 3 can receive the encrypted information from the encryption and decryption module 2, and the storage module 3 can transmit the information to be decrypted to the encryption and decryption module 2.
  • the system S applied to a hard disk having encryption and decryption functions may further include an electronic device 4, and the electronic device 4 may be coupled to the transmission port 23 of the encryption and decryption module 2. The electronic device 4 can transmit the information to be encrypted to the encryption / decryption module 2, and can receive the decrypted information from the encryption / decryption module 2.
  • the encrypted information encrypted by the encryption / decryption module 2 can be transmitted to the second connector 32 through the first connector 22 and transmitted to the storage module 3 through the second connector 32.
  • the information to be decrypted transmitted by the storage module 3 can be transmitted to the first connector 22 through the second connector 32, and transmitted to the encryption and decryption module 2 through the first connector 22.
  • the first substrate 21 may include a control unit 212 and an encryption / decryption unit 213 coupled to the control unit 212.
  • the encryption / decryption unit 213 may be coupled between the transmission port 23 and the first connector 22.
  • the encryption and decryption unit 213 can receive the information to be encrypted transmitted by the transmission port 23 and can encrypt the information to be encrypted to form encrypted information, and the encryption and decryption unit 213 can transmit the encrypted information to the first connector 22.
  • the encryption and decryption unit 213 can receive the information to be decrypted transmitted by the first connector 22 and can decrypt the information to be decrypted to form the decrypted information, and the encryption and decryption unit 213 can transmit the decrypted information to the transmission port 23.
  • control unit 212 can be coupled between the transmission port 23 and the first connector 22, and the control unit 212 can be coupled to the encryption and decryption unit 213 to control the first connector 22 and the transmission port 23 of the encryption and decryption unit 213, respectively.
  • the transmission port 23 may be directly coupled to the first connector 22 without using the encryption / decryption unit 213 to transmit a command message to the first connector 22.
  • the information that needs to be encrypted or decrypted can be transmitted through the operation of the encryption and decryption unit 213, and the instruction information (such as, but not limited to, Serial ATA (Serial Advanced Technology Attachment, SATA) instructions) need not be encrypted or decrypted.
  • Serial ATA Serial Advanced Technology Attachment, SATA
  • FIG. 9 to FIG. 13 are three-dimensional combined schematic diagrams of a hard disk with encryption and decryption functions provided by the second embodiment of the present invention
  • FIGS. 11 to 13 are second views of the present invention, respectively.
  • the hard disk U with encryption and decryption function provided by the second embodiment The size may be a 3.5-inch hard disk, that is, the size and shape of the casing 1 provided in the second embodiment is different from the size and shape of the casing 1 provided in the first embodiment.
  • the second embodiment provides a hard disk U with encryption and decryption functions, which includes: a casing 1, an encryption and decryption module 2, and a storage module 3.
  • the encryption / decryption module 2 and the storage module 3 can be respectively disposed in the accommodating space 10, so that the encryption / decryption module 2 and the storage module 3 are both disposed in the casing 1, so as to form a hard disk U with encryption / decryption function.
  • the encryption / decryption module 2 may include a first substrate 21, a first connector 22 disposed on the first substrate 21 and coupled to the first substrate 21, and a first connector 21 disposed on the first substrate 21 and coupled to For the transmission port 23 of the first substrate 21, in the embodiment of the present invention, a part of the transmission port 23 may be exposed outside the accommodation space 10.
  • the storage module 3 may include a second substrate 31 and a second connector 32 disposed on the second substrate 31 and coupled to the second substrate 31, and the first connector 22 of the encryption / decryption module 2 may be connected to the first The two connectors 32 make the first substrate 21 and the second substrate 31 abut against each other, so that the first substrate 21 is coupled to the second substrate 31.
  • the first substrate 21, the first connector 22, the second connector 32, and the second substrate 31 can all be disposed in the accommodating space 10, and only a part of the transmission ports 23 is exposed to utilize the transmission ports 23 and
  • the electronic device 4 (see FIG. 8, such as but not limited to a motherboard of a computer) performs data transmission. It should be particularly noted that the structures of the housing 1, the encryption / decryption module 2, and the storage module 3 are similar to the foregoing embodiments, and are not repeated here.
  • FIG. 14 is a three-dimensional exploded view of a hard disk having only a storage module according to a second embodiment of the present invention.
  • the encryption / decryption module 2 can be detachably disposed in the first accommodation area 101 so that the encryption / decryption module 2 can be disposed in the first accommodation area 101 or removed from the first accommodation area 101.
  • the storage module 3 can be disposed in the first accommodating area 101 to form a hard disk U 'having only a storage module.
  • the second connector 32 of the storage module 3 can also be exposed, and the second connector 32 can be used to perform data transmission with the electronic device 4.
  • the encryption / decryption module 2 can be selectively provided, so that the hard disk has the encryption / decryption function or does not have the encryption / decryption function.
  • the second substrate 31 in the embodiment of the present invention is a solid state drive as an example
  • the second substrate 31 may also be a 2.5-inch hard type Hard Disk Drive (HDD), which is not limited in the present invention.
  • HDD Hard Disk Drive
  • a 2.5-inch hard disk drive can be packaged in a casing 1 of a hard disk U with a encryption and decryption function having a size of 3.5 inches.
  • the second substrate 31 may be a storage unit, and the storage unit may be a solid-state drive (SSD) specification interface.
  • the storage unit may also be a Hard Disk Drive (HDD) interface (not shown). The present invention does not use the interface of the second substrate 31 specification. Limited.
  • the hard disk U with an encryption and decryption function and an application system S thereof provided in the embodiments of the present invention can be connected to the storage by using the first connector of the encryption and decryption module.
  • the second connector of the module so that the first substrate is coupled to the second substrate, and the first substrate, the first connector, and the second connector are connected to the first substrate.
  • the technical solution of “between the transmission port and the second substrate” can have an encryption and decryption function.
  • the encryption / decryption module 2 of the present invention can be selectively set, the manufacturer can selectively make the hard disk have the encryption / decryption function or not have the encryption / decryption function. Furthermore, since the specification interface of the first connector 22 of the encryption module 2 can correspond to the specification interface of the second connector 32 of the storage module 3, the hard disk U with encryption and decryption functions provided by the embodiment of the present invention and its Application system S can be applied to hard disks of different specifications.

Landscapes

  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Software Systems (AREA)
  • General Health & Medical Sciences (AREA)
  • Computer Hardware Design (AREA)
  • Computer Security & Cryptography (AREA)
  • Health & Medical Sciences (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Bioethics (AREA)
  • Storage Device Security (AREA)
  • Signal Processing For Digital Recording And Reproducing (AREA)

Abstract

本发明公开一种具有加解密功能的硬盘及其应用系统。具有加解密功能的硬盘包括一壳体、一加解密模块及一储存模块。壳体包括一容置空间。加解密模块及储存模块设置在容置空间中。加解密模块包括一第一基板、一第一连接器及一传输端口。传输端口的其中一部分裸露在容置空间外。储存模块包括一第二基板及一第二连接器。加解密模块的第一连接器连接于储存模块的第二连接器,以使第一基板耦接于第二基板。第一基板、第一连接器及第二连接器连接于传输端口与第二基板之间。借此,本发明的硬盘能具有加解密功能。

Description

具有加解密功能的硬盘及其应用系统 技术领域
本发明涉及一种硬盘,尤其涉及一种具有加解密功能的硬盘及其应用系统。
背景技术
首先,虽然现有的市场上有部分的硬盘具有加解密功能,但是,现有的具有加解密功能的硬盘都是直接将加解密芯片焊接在硬盘的电路板上,而这种直接将加解密芯片焊接在硬盘的电路板上的方式,并无法依据需求而选择性地设置加解密功能。
因此,如何提出一种具有加解密功能的硬盘及其应用系统,以克服上述的缺陷,已然成为本领域技术人员所欲解决的重要课题。
发明内容
本发明所要解决的技术问题在于,针对现有技术的不足提供一种具有加解密功能的硬盘及其应用系统。
为了解决上述的技术问题,本发明所采用的其中一技术方案是,提供一种具有加解密功能的硬盘,其包括一壳体、一加解密模块以及一储存模块。所述壳体包括一容置空间。所述加解密模块设置在所述容置空间中,所述加解密模块包括一第一基板、一设置在所述第一基板上的第一连接器以及一设置在所述第一基板上的传输端口,其中,所述传输端口的其中一部分裸露在所述容置空间外。所述储存模块设置在所述容置空间中,所述储存模块包括一第二基板以及一设置在所述第二基板上的第二连接器,其中,所述加解密模块的所述第一连接器连接于所述储存模块的所述第二连接器,以使所述第一基板耦接于所述第二基板。其中,所述第一基板、所述第一连接器以及所述第二连接器连接于所述传输端口与所述第二基板之间。
更进一步地,所述壳体包括一第一壳体以及一对应于所述第一壳体的第二壳体,所述第一壳体与所述第二壳体之间能形成所述容置空间。
更进一步地,所述壳体包括一开槽,所述加解密模块的所述第一连接器的一部分以及所述储存模块的所述第二连接器的一部分通过所述开槽而裸露在所述容置空间外。
更进一步地,所述容置空间包括一第一容置区域以及一第二容置区域,所述加解密模块可拆装地设置在所述第一容置区域,所述储存模块可拆装地设置在所述第二容置区域。
更进一步地,当所述加解密模块移出所述第一容置区域时,所述储存模块能由所述第二容置区域拆卸且装设在所述第一容置区域中。
更进一步地,所述容置空间包括一第一容置区域以及一第二容置区域,所述加解密模块可拆装地设置在所述第一容置区域,所述储存模块可拆装地设置在所述第二容置区域;其中,所述壳体的所述第一容置区域上具有一固定部,所述加解密模块包括一对应于所述固定部的第一定位部,以使所述加解密模块通过所述第一定位部而能装设在所述固定部上,所述储存模块包括一对应于所述固定部的第二定位部,以使所述储存模块通过所述第二定位部而能装设在所述固定部上。
更进一步地,所述传输端口为符合SATA、mSATA、PCI-E、NVMe、M.2、ZIF、IDE、U.2、CF或CFast规格界面的连接器。
更进一步地,所述储存模块的所述第二连接器为符合SATA、mSATA、PCI-E、NVMe、M.2、ZIF、IDE、U.2、CF或CFast规格界面的连接器。
更进一步地,所述具有加解密功能的硬盘为一2.5英寸硬盘或一3.5英寸硬盘。
更进一步地,所述第二基板为一储存单元,所述储存单元为固态硬盘规格界面或者是为硬式磁碟机规格界面。
更进一步地,所述第一连接器与所述第二连接器为可插拔式的连接器。
为了解决上述的技术问题,本发明所采用的另外一技术方案是,提供一种应用于具有加解密功能的硬盘的系统,其包括一加解密模块以及一储存模块。所述加解密模块包括一第一基板、一设置在所述第一基板上的第一连接器以及一设置在所述第一基板上的传输端口,其中,所述加解密模块能接收一待加密信息且能加密所述待加密信息以形成一已加密信息,所述加解密模块能接收一待解密信息且能解密所述待解密信息以形成一已解密信息。所述储存模块耦接于所述加解密模块,所述储存模块包括一第二基板以及一设置在所述第二基板上的第二连接器,所述加解密模块的所述第一连接器连接于所述储存模块的所述第二连接器,其中,所述储存模块能接收来自所述加解密模块的所述已加密信息,且所述储存模块能传输所述待解密信息至所述加解密模块。其中,所述第一基板、所述第一连接器以及所述第二连接器连接于所述传输端口与所述第二基板之间。其中,所述加解密模块所加密的所述已加密信息能通过所述第一连接器而传输至所述第二连接器,且通过所述 第二连接器而传输至所述储存模块。其中,所述储存模块所传输的所述待解密信息能通过所述第二连接器而传输至所述第一连接器,且通过所述第一连接器而传输至所述加解密模块。
更进一步地,所述应用于具有加解密功能的硬盘的系统还进一步包括:一电子装置,所述电子装置耦接于所述加解密模块的所述传输端口,以传输所述待加密信息至所述加解密模块,且接收来自所述加解密模块的所述已解密信息。
更进一步地,所述第一基板包括一控制单元以及一耦接于所述控制单元的加解密单元,所述加解密单元耦接于所述传输端口与所述第一连接器之间;其中,所述加解密单元能接收由所述传输端口所传输的所述待加密信息且能加密所述待加密信息以形成所述已加密信息,且所述加解密单元能传输所述已加密信息至所述第一连接器;其中,所述加解密单元能接收由所述第一连接器所传输的所述待解密信息且能解密所述待解密信息以形成所述已解密信息,且所述加解密单元能传输所述已解密信息至所述传输端口。
更进一步地,所述传输端口耦接于所述第一连接器,以传输一指令信息至所述第一连接器。
本发明的其中一有益效果在于,本发明实施例所提供的具有加解密功能的硬盘及其应用系统,其能利用“加解密模块的第一连接器连接于储存模块的第二连接器,以使第一基板耦接于第二基板”以及“第一基板、第一连接器以及第二连接器连接于传输端口与第二基板之间”的技术方案,而能具有加解密功能。
为使能更进一步了解本发明的特征及技术内容,请参阅以下有关本发明的详细说明与附图,然而所提供的附图仅用于提供参考与说明,并非用来对本发明加以限制。
附图说明
图1为本发明第一实施例所提供具有加解密功能的硬盘的其中一立体组合示意图。
图2为本发明第一实施例所提供具有加解密功能的硬盘的另外一立体组合示意图。
图3为本发明第一实施例所提供具有加解密功能的硬盘的其中一立体分解示意图。
图4为本发明第一实施例所提供具有加解密功能的硬盘的另外一立体分解示意图。
图5为本发明第一实施例所提供具有加解密功能的硬盘的再一立体分解示意图。
图6为本发明第一实施例所提供具有加解密功能的硬盘的再一立体组合示意图。
图7为本发明第一实施例仅具有储存模块的硬盘的其中一立体分解示意图。
图8为本发明实施例所提供应用于具有加解密功能的硬盘的系统的功能方块图。
图9为本发明第二实施例所提供具有加解密功能的硬盘的其中一立体组合示意图。
图10为本发明第二实施例所提供具有加解密功能的硬盘的另外一立体组合示意图。
图11为本发明第二实施例所提供具有加解密功能的硬盘的其中一立体分解示意图。
图12为本发明第二实施例所提供具有加解密功能的硬盘的另外一立体分解示意图。
图13为本发明第二实施例所提供具有加解密功能的硬盘的再一立体分解示意图。
图14为本发明第二实施例仅具有储存模块的硬盘的其中一立体分解示意图。
具体实施方式
以下是通过特定的具体实施例来说明本发明所公开有关“具有加解密功能的硬盘及其应用系统”的实施方式,本领域技术人员可由本说明书所公开的内容了解本发明的优点与效果。本发明可通过其他不同的具体实施例加以施行或应用,本说明书中的各项细节也可基于不同观点与应用,在不悖离本发明的精神下进行各种修饰与变更。另外,本发明的附图仅为简单示意说明,并非依实际尺寸的描绘,予以声明。以下的实施方式将进一步详细说明本发明的相关技术内容,但所公开的内容并非用以限制本发明的技术范围。
应理解,虽然本文中可能使用术语第一、第二、第三等来描述各种元件或信号等,但这些元件或信号不应受这些术语限制。这些术语乃用以区分一元件与另一元件,或者一信号与另一信号。另外,如本文中所使用,术语“或”视实际情况可能包括相关联的列出项目中的任一个或者多个的所有组合。
第一实施例
首先,请参阅图1至图5所示,图1及图2分别为本发明第一实施例所提供具有加解密功能的硬盘的立体组合示意图,图3至图5分别为本发明第一实施例所提供具有加解密功能的硬盘的立体分解示意图。本发明第一实施例提供一种具有加解密功能的硬盘U,其包括:一壳体1、一加解密模块2以及一储存模块3。壳体1可包括一容置空间10,加解密模块2以及储存模块3可分别设置在容置空间10中,以使得加解密模块2以及储存模块3都是设置在壳体1之中,而形成一具有加解密功能的硬盘U。
承上述,请复参阅图3至图5所示,以本发明实施例而言,壳体1可包括一第一壳体11以及一对应于第一壳体11的第二壳体12,且第一壳体11与第二壳体12之间能形成容置空间10,而使得加解密模块2以及储存模块3设置于第一壳体11以及第二壳体12之 间且固定在壳体1上,并受到第一壳体11以及第二壳体12的保护。进一步来说,容置空间10可包括一第一容置区域101以及一第二容置区域102,加解密模块2可拆装地设置在第一容置区域101,储存模块3可拆装地设置在第二容置区域102。
承上述,请复参阅图3至图5所示,加解密模块2可包括一第一基板21、一设置在第一基板21上的且耦接于第一基板21的第一连接器22以及一设置在第一基板21上且耦接于第一基板21的传输端口23,以本发明实施例而言,传输端口23的其中一部分可裸露在容置空间10外。此外,储存模块3可包括一第二基板31以及一设置在第二基板31上耦接于第二基板31的第二连接器32,加解密模块2的第一连接器22可连接于第二连接器32,以使第一基板21与第二基板31彼此对接,而使得第一基板21耦接于第二基板31。借此,如图1及图2所示,以本发明实施例而言,第一基板21、第一连接器22以及第二连接器32可连接于传输端口23与第二基板31之间,且第一基板21、第一连接器22、第二连接器32以及第二基板31可以都设置容置空间10中,而仅裸露出其中一部分的传输端口23,以利用传输端口23与电子装置4(请参阅图8所示,例如但不限于一电脑的主机板)进行数据(资料)传输。
承上述,请复参阅图1至图5所示,举例来说,以本发明实施例而言,壳体1的第一容置区域101上可具有一固定部121,加解密模块2的第一基板21可包括一对应于固定部121的第一定位部211,以使加解密模块2通过第一定位部211而能装设在固定部121上。另外,储存模块3可包括一对应于固定部121的第二定位部311,以使储存模块3通过第二定位部311而能装设在固定部121上。
承上述,请复参阅图1至图5所示,举例来说,以本发明第一实施例而言,具有加解密功能的硬盘U还可进一步包括一锁固件F,第一壳体11还可具有一第一穿孔110,第二壳体12还可具有一第二穿孔120,第二基板31还可具有一定位孔310,且第一穿孔110、第二穿孔120以及定位孔310可彼此相互对应。借此,可将锁固件F设置在第一穿孔110、第二穿孔120以及定位孔310上,以定位第一壳体11、第二壳体12以及第二基板31的位置,然本发明不以此为限。换句话说,在其他实施方式中,也可以不设置第一穿孔110、第二穿孔120以及定位孔310,而利用设置在其他位置的穿孔(图中未示出)及锁固件(图中未示出)将第一壳体11与第二壳体12彼此结合,或者是利用扣接的方式将第一壳体11与第二壳体12彼此结合,本发明不以第一壳体11及第二壳体12的结合方式为限。
承上述,请复参阅图1至图5所示,举例来说,以本发明第一实施例而言,加解密模 块2的第一基板21可以为一加解密转卡,且第一基板21上可具有一加解密单元(或可称加解密引擎或加解密芯片)以用于加解密数据。进一步地,加解密模块2的传输端口23可为符合SATA、mSATA、PCI-E、NVMe、M.2、ZIF、IDE、U.2、CF或CFast规格界面的连接器,以利用传输端口23与电子装置4进行数据传输,然本发明不以此为限。另外,举例来说,以本发明第一实施例而言,储存模块3的第二基板31可以是一包括固态硬盘(solid-state drive,SSD)规格界面的印刷电路板装配(Printed Circuit Board Assembly,PCBA),且储存模块3的第二连接器32可为符合SATA、mSATA、PCI-E、NVMe、M.2、ZIF、IDE、U.2、CF或CFast规格界面的连接器,然本发明不以此为限。换句话说,储存模块3的第二基板31可以是一现有的储存单元,以用于储存来自电子装置4的数字信息(信息)。进一步地,由于加解密模块2的第一连接器22与储存模块3的第二连接器32彼此相互连接,因此,加解密模块2的第一连接器22的规格界面也可以对应于储存模块3的第二连接器32规格界面。
承上述,请复参阅图1至图5所示,举例来说,以本发明第一实施例而言,具有加解密功能的硬盘U可以为一2.5英寸硬盘,因此,相较于现有技术的硬盘架构,本发明实施例所提供的具有加解密功能的硬盘U中还进一步包括加解密模块2的第一连接器22以及储存模块3的第二连接器32。所以,现有的2.5英寸硬盘的壳体将会与第一连接器22及第二连接器32相互干涉。因此,如图1所示,以本发明实施例来说,壳体1的第一壳体11可包括一开槽103,加解密模块2的第一连接器22的一部分以及储存模块3的第二连接器32的一部分可通过开槽103而裸露在容置空间10外。优选地,请参阅图6所示,在其他实施方式中,可以进一步在第一壳体11上设置一覆盖第一壳体11的开槽的标签T(例如但不限于贴纸),以遮盖裸露在容置空间10外的第一连接器22以及第二连接器32。然而,须说明的是,在其他实施方式中,开槽103也可以设置在第二壳体12上。
接着,请参阅图7所示,图7为本发明第一实施例仅具有储存模块的硬盘的其中一立体分解示意图,在图7的实施方式中,加解密模块2能可拆装地设置在第一容置区域101而使得加解密模块2能设置在第一容置区域101或移出第一容置区域101。当加解密模块2移出第一容置区域101时,储存模块3能由第二容置区域102拆卸,且储存模块3能装设在第一容置区域101中,以形成一仅具有储存模块的硬盘U’。进一步来说,以本发明实施例而言,加解密模块2能通过第一定位部211而装设在固定部121上,储存模块3能通过第二定位部311而装设在固定部121上。借此,固定部121可以具有能够对应于第一 定位部211及第二定位部311的结构特征,而使得储存模块3及加解密模块2都能够设置在固定部121上。另外,值得说明的是,第一定位部211与固定部121之间以及第二定位部311也可以利用锁固件(图中未示出)而将其固定,本发明不以此为限。
另外,由于储存模块3的第二连接器32可为符合SATA、mSATA、PCI-E、NVMe、M.2、ZIF、IDE、U.2、CF或CFast规格界面的连接器,因此,当储存模块3设置在第一容置区域101时,也能裸露出储存模块3的第二连接器32,而利用第二连接器32与电子装置4进行数据传输。借此,以本发明实施例而言,可以选择性地设置加解密模块2,而使得硬盘具有加解密功能或者是不具有加解密功能。换句话说,以本发明实施例而言,第一连接器22与第二连接器32为可插拔式的连接器,借此,加解密模块2及储存模块3可通过第一连接器22及第二连接器32的设置而彼此连接获彼此分离,而可以选择性地在硬盘中设置加解密模块2。
接着,请参阅图8所示,图8为本发明实施例所提供应用于具有加解密功能的硬盘的系统的功能方块图,以下将进一步说明数据的传输方式,在图8的实施方式中,本发明提供一种应用于具有加解密功能的硬盘的系统S,一加解密模块2以及一储存模块3。加解密模块2可包括一第一基板21、一设置在第一基板21上的第一连接器22以及一设置在第一基板21上的传输端口23。另外,储存模块3可耦接于加解密模块2,储存模块3包括一第二基板31以及一设置在第二基板31上的第二连接器32,加解密模块2的第一连接器22可连接于储存模块3的第二连接器32。借此,第一基板21、第一连接器22以及第二连接器32可连接于传输端口23与第二基板31之间。须说明的是,加解密模块2以及储存模块3的构造如同前述说明,在此不再赘述。
承上述,请复参阅图8所示,进一步来说,第一基板21可包括一控制单元212以及一耦接于控制单元212的加解密单元213,且第一连接器22可耦接于传输端口23。须特别说明的是,以本发明实施例而言,第一连接器22可直接耦接于传输端口23,且加解密单元213可耦接在传输端口23与第一连接器22之间,此外,控制单元212可耦接在第一连接器22与传输端口23之间。进一步来说,第二连接器32可耦接于第二基板31,且加解密模块2与储存模块3之间可通过第一连接器22与第二连接器32而彼此耦接。
承上述,请复参阅图8所示,进一步来说,加解密模块2能接收一待加密信息且能加密待加密信息以形成一已加密信息,且加解密模块2能接收一待解密信息且能解密待解密信息以形成一已解密信息。此外,储存模块3能接收来自加解密模块2的已加密信息,且 储存模块3能传输待解密信息至加解密模块2。更进一步来说,优选地,应用于具有加解密功能的硬盘的系统S还可进一步包括一电子装置4,且电子装置4可耦接于加解密模块2的传输端口23。电子装置4能传输待加密信息至所述加解密模块2,且能接收来自加解密模块2的已解密信息。
承上述,请复参阅图8所示,加解密模块2所加密的已加密信息能通过第一连接器22而传输至第二连接器32,且通过第二连接器32而传输至储存模块3。此外,储存模块3所传输的待解密信息能通过第二连接器32而传输至第一连接器22,且通过第一连接器22而传输至加解密模块2。进一步来说,第一基板21可包括一控制单元212以及一耦接于控制单元212的加解密单元213,加解密单元213可耦接于传输端口23与第一连接器22之间。借此,加解密单元213能接收由传输端口23所传输的待加密信息且能加密待加密信息以形成已加密信息,且加解密单元213能传输已加密信息至第一连接器22。加解密单元213能接收由第一连接器22所传输的待解密信息且能解密待解密信息以形成已解密信息,且加解密单元213能传输已解密信息至传输端口23。此外,控制单元212可耦接于传输端口23与第一连接器22之间,且控制单元212能耦接于加解密单元213,以分别控制加解密单元213第一连接器22以及传输端口23。
承上述,请复参阅图8所示,值得说明的是,传输端口23可不通过加解密单元213而直接耦接于第一连接器22,以传输一指令信息至第一连接器22。换句话说,须要加密或解密的信息可通过加解密单元213的运算后再进行传输,而指令信息(例如但不限于串行ATA(Serial Advanced Technology Attachment,SATA)指令)可以不必进行加解密。
第二实施例
首先,请参阅图9至图13所示,图9及图10分别为本发明第二实施例所提供具有加解密功能的硬盘的立体组合示意图,图11至图13分别为为本发明第二实施例所提供具有加解密功能的硬盘的立体分解示意图。由图11与图3的比较可知,在第二实施例中与第一实施例最大的差别在于壳体1的尺寸,举例来说,第二实施例所提供的具有加解密功能的硬盘U的尺寸可以为3.5英寸硬盘,也就是说,第二实施例所提供的壳体1的尺寸及形状与第一实施例所提供的壳体1的尺寸及形状不同。
承上述,请复参阅图9至图13所示,第二实施例提供一种具有加解密功能的硬盘U,其包括:一壳体1、一加解密模块2以及一储存模块3。加解密模块2以及储存模块3可分别设置在容置空间10中,以使得加解密模块2以及储存模块3都是设置在壳体1之中, 而形成一具有加解密功能的硬盘U。另外,加解密模块2可包括一第一基板21、一设置在第一基板21上的且耦接于第一基板21的第一连接器22以及一设置在第一基板21上且耦接于第一基板21的传输端口23,以本发明实施例而言,传输端口23的其中一部分可裸露在容置空间10外。再者,储存模块3可包括一第二基板31以及一设置在第二基板31上耦接于第二基板31的第二连接器32,加解密模块2的第一连接器22可连接于第二连接器32,以使第一基板21与第二基板31彼此对接,而使得第一基板21耦接于第二基板31。借此,第一基板21、第一连接器22、第二连接器32以及第二基板31可以都设置容置空间10中,而仅裸露出其中一部分的传输端口23,以利用传输端口23与电子装置4(请参阅图8所示,例如但不限于一电脑的主机板)进行数据传输。须特别说明的是,壳体1、加解密模块2以及储存模块3的构造与前述实施例相仿,在此不再赘述。
接着,请参阅图14所示,图14为本发明第二实施例仅具有储存模块的硬盘的其中一立体分解示意图。在其他实施方式中,加解密模块2能拆卸式地设置在第一容置区域101而使得加解密模块2能设置在第一容置区域101或移出第一容置区域101。当加解密模块2移出第一容置区域101时,储存模块3能设置在第一容置区域101,以形成一仅具有储存模块的硬盘U’。换句话说,当储存模块3设置在第一容置区域101时,也能裸露出储存模块3的第二连接器32,而利用第二连接器32与电子装置4进行数据传输。借此,可以选择性地设置加解密模块2,而使得硬盘具有加解密功能或者是不具有加解密功能。
再者,值得说明的是,虽然本发明实施例中的第二基板31为固态硬盘作为举例说明,然而,须说明的是,在其他实施方式中,第二基板31也可以是一2.5英寸硬式磁碟机(Hard Disk Drive,HDD),本发明不以此为限。借此,2.5英寸硬式磁碟机可以封装在尺寸为3.5英寸的具有加解密功能的硬盘U的壳体1中。换句话说,第二基板31可为一储存单元,且储存单元可为固态硬盘(solid-state drive,SSD)规格界面。另外,须说明的是,在其他实施方式中,储存单元也可以为硬式磁碟机规格(Hard Disk Drive,HDD)界面(图中未示出),本发明不以第二基板31的规格界面为限。
实施例的有益效果
本发明的其中一有益效果在于,本发明实施例所提供的具有加解密功能的硬盘U及其应用系统S,其能利用“所述加解密模块的所述第一连接器连接于所述储存模块的所述第二连接器,以使所述第一基板耦接于所述第二基板”以及“所述第一基板、所述第一连接器以及所述第二连接器连接于所述传输端口与所述第二基板之间”的技术方案,而能具有 加解密功能。
进一步来说,由于本发明的加解密模块2能选择性地设置,所以,制造商可以选择性地使硬盘具有加解密功能或者是不具有加解密功能。再者,由于加解密模块2的第一连接器22的规格界面可对应于储存模块3的第二连接器32规格界面,所以,本发明实施例所提供的具有加解密功能的硬盘U及其应用系统S可适用于不同规格尺寸的硬盘。
以上所公开的内容仅为本发明的优选可行实施例,并非因此局限本发明的权利要求书的保护范围,所以凡是运用本发明说明书及附图内容所做的等效技术变化,均包含于本发明的权利要求书的保护范围内。

Claims (15)

  1. 一种具有加解密功能的硬盘,其特征在于,所述具有加解密功能的硬盘包括:
    一壳体,所述壳体包括一容置空间;
    一加解密模块,所述加解密模块设置在所述容置空间中,所述加解密模块包括一第一基板、一设置在所述第一基板上的第一连接器以及一设置在所述第一基板上的传输端口,其中,所述传输端口的其中一部分裸露在所述容置空间外;以及
    一储存模块,所述储存模块设置在所述容置空间中,所述储存模块包括一第二基板以及一设置在所述第二基板上的第二连接器,其中,所述加解密模块的所述第一连接器连接于所述储存模块的所述第二连接器,以使所述第一基板耦接于所述第二基板;
    其中,所述第一基板、所述第一连接器以及所述第二连接器连接于所述传输端口与所述第二基板之间。
  2. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述壳体包括一第一壳体以及一对应于所述第一壳体的第二壳体,所述第一壳体与所述第二壳体之间能形成所述容置空间。
  3. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述壳体包括一开槽,所述加解密模块的所述第一连接器的一部分以及所述储存模块的所述第二连接器的一部分通过所述开槽而裸露在所述容置空间外。
  4. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述容置空间包括一第一容置区域以及一第二容置区域,所述加解密模块可拆装地设置在所述第一容置区域,所述储存模块可拆装地设置在所述第二容置区域。
  5. 根据权利要求4所述的具有加解密功能的硬盘,其特征在于,当所述加解密模块移出所述第一容置区域时,所述储存模块能由所述第二容置区域拆卸且装设在所述第一容置区域中。
  6. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述容置空间包括一第一容置区域以及一第二容置区域,所述加解密模块可拆装地设置在所述第一容置区域,所述储存模块可拆装地设置在所述第二容置区域;其中,所述壳体的所述第一容置区域上具有一固定部,所述加解密模块包括一对应于所述固定部的第一定位部,以使所述加解密模块通过所述第一定位部而能装设在所述固定部上,所述储存模块包括一对应于所述固定部的第二定位部,以使所述储存模块通过所述第二定位部而能装设在所述固定部上。
  7. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述传输端口为符合SATA、mSATA、PCI-E、NVMe、M.2、ZIF、IDE、U.2、CF或CFast规格界面的连接器。
  8. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述储存模块的所述第二连接器为符合SATA、mSATA、PCI-E、NVMe、M.2、ZIF、IDE、U.2、CF或CFast规格界面的连接器。
  9. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述具有加解密功能的硬盘为一2.5英寸硬盘或一3.5英寸硬盘。
  10. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述第二基板为一储存单元,所述储存单元为固态硬盘规格界面或者是为硬式磁碟机规格界面。
  11. 根据权利要求1所述的具有加解密功能的硬盘,其特征在于,所述第一连接器与所述第二连接器为可插拔式的连接器。
  12. 一种应用于具有加解密功能的硬盘的系统,其特征在于,所述应用于具有加解密功能的硬盘的系统包括:
    一加解密模块,所述加解密模块包括一第一基板、一设置在所述第一基板上的第一连接器以及一设置在所述第一基板上的传输端口,其中,所述加解密模块能接收一待加密信息且能加密所述待加密信息以形成一已加密信息,所述加解密模块能接收一待解密信息且能解密所述待解密信息以形成一已解密信息;以及
    一储存模块,所述储存模块耦接于所述加解密模块,所述储存模块包括一第二基板以及一设置在所述第二基板上的第二连接器,所述加解密模块的所述第一连接器连接于所述储存模块的所述第二连接器,其中,所述储存模块能接收来自所述加解密模块的所述已加密信息,且所述储存模块能传输所述待解密信息至所述加解密模块;
    其中,所述第一基板、所述第一连接器以及所述第二连接器连接于所述传输端口与所述第二基板之间;
    其中,所述加解密模块所加密的所述已加密信息能通过所述第一连接器而传输至所述第二连接器,且通过所述第二连接器而传输至所述储存模块;
    其中,所述储存模块所传输的所述待解密信息能通过所述第二连接器而传输至所述第一连接器,且通过所述第一连接器而传输至所述加解密模块。
  13. 根据权利要求12所述的应用于具有加解密功能的硬盘的系统,其特征在于,所述应用于具有加解密功能的硬盘的系统还进一步包括:一电子装置,所述电子装置耦接于所 述加解密模块的所述传输端口,以传输所述待加密信息至所述加解密模块,且接收来自所述加解密模块的所述已解密信息。
  14. 根据权利要求12所述的应用于具有加解密功能的硬盘的系统,其特征在于,所述第一基板包括一控制单元以及一耦接于所述控制单元的加解密单元,所述加解密单元耦接于所述传输端口与所述第一连接器之间;其中,所述加解密单元能接收由所述传输端口所传输的所述待加密信息且能加密所述待加密信息以形成所述已加密信息,且所述加解密单元能传输所述已加密信息至所述第一连接器;其中,所述加解密单元能接收由所述第一连接器所传输的所述待解密信息且能解密所述待解密信息以形成所述已解密信息,且所述加解密单元能传输所述已解密信息至所述传输端口。
  15. 根据权利要求12所述的应用于具有加解密功能的硬盘的系统,其特征在于,所述传输端口耦接于所述第一连接器,以传输一指令信息至所述第一连接器。
PCT/CN2018/097630 2018-07-27 2018-07-27 具有加解密功能的硬盘及其应用系统 WO2020019334A1 (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/097630 WO2020019334A1 (zh) 2018-07-27 2018-07-27 具有加解密功能的硬盘及其应用系统

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/097630 WO2020019334A1 (zh) 2018-07-27 2018-07-27 具有加解密功能的硬盘及其应用系统

Publications (1)

Publication Number Publication Date
WO2020019334A1 true WO2020019334A1 (zh) 2020-01-30

Family

ID=69182159

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/097630 WO2020019334A1 (zh) 2018-07-27 2018-07-27 具有加解密功能的硬盘及其应用系统

Country Status (1)

Country Link
WO (1) WO2020019334A1 (zh)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2837924Y (zh) * 2005-04-08 2006-11-15 吴传诚 加密可移除式储存系统
US20120047372A1 (en) * 2010-08-20 2012-02-23 Shinji Fujita Optical disc, optical disc recording method, optical disc reproduction method, optical disc device and storage system
CN105354503A (zh) * 2015-11-02 2016-02-24 上海兆芯集成电路有限公司 储存装置数据加解密方法
CN106330950A (zh) * 2016-09-17 2017-01-11 上海林果实业股份有限公司 加密信息的访问方法、系统及适配器

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2837924Y (zh) * 2005-04-08 2006-11-15 吴传诚 加密可移除式储存系统
US20120047372A1 (en) * 2010-08-20 2012-02-23 Shinji Fujita Optical disc, optical disc recording method, optical disc reproduction method, optical disc device and storage system
CN105354503A (zh) * 2015-11-02 2016-02-24 上海兆芯集成电路有限公司 储存装置数据加解密方法
CN106330950A (zh) * 2016-09-17 2017-01-11 上海林果实业股份有限公司 加密信息的访问方法、系统及适配器

Similar Documents

Publication Publication Date Title
US7546634B2 (en) Encryption removable storage system
US20120011372A1 (en) Encryption flash disk
TWI553443B (zh) 擴充卡
US9734356B2 (en) Encrypting portable media system and method of operation thereof
BRPI1001237A2 (pt) sistema de computação e método para usar um sistema de computação, computador portátil, cartão inteligente portátil e sistema de processamento
US9098254B2 (en) Multi-purpose information handling system device connector
WO2009136161A1 (en) Data encryption device
US20100205454A1 (en) Cipher data box
RU2013100006A (ru) Системы и способы для обеспечения универсальной компьютерной системы
US8166561B2 (en) Security device, secure memory system and method using a security device
CN108628403A (zh) 便携式计算机、计算系统及使用计算系统的方法
CN103415846B (zh) 便携式计算系统和适用于其的便携式计算机
TWI566103B (zh) PCIe橋接器之轉換裝置及其方法
US20140047567A1 (en) Method and system for secure configuration of an electronic device via an rfid ic
WO2020177917A1 (en) Optical transceiver configuration device, system and kit
US20100077229A1 (en) Method for employing usb record carriers and a related module
TWI686724B (zh) 具有加解密功能的硬碟及其應用系統
US20050070157A1 (en) Dual digital data connector
WO2020019334A1 (zh) 具有加解密功能的硬盘及其应用系统
CN208538131U (zh) 具有加解密功能的硬盘
CN113449349A (zh) 平台安全机制
CN110765466A (zh) 具有加解密功能的硬盘及其应用系统
TWM570977U (zh) Hard disk with encryption and decryption function
CN209248574U (zh) 一种可移动存储装置
US20130286596A1 (en) Electronic device with mechanism for securing connector thereof

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18927742

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 18927742

Country of ref document: EP

Kind code of ref document: A1