CN105989381B - Truth cards manager - Google Patents

Truth cards manager Download PDF

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Publication number
CN105989381B
CN105989381B CN201510055608.9A CN201510055608A CN105989381B CN 105989381 B CN105989381 B CN 105989381B CN 201510055608 A CN201510055608 A CN 201510055608A CN 105989381 B CN105989381 B CN 105989381B
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interface
read
write
data
real card
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CN105989381A (en
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李东声
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Tendyron Technology Co Ltd
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Tendyron Technology Co Ltd
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Abstract

The present invention provides a kind of Truth cards managers, comprising: wireless interface, the first Data Concurrent for receiving simulator transmission give safety chip, receive the second Data Concurrent that safety chip is sent and give simulator;At least one read-write interface, the third Data Concurrent for receiving Truth cards transmission give safety chip, receive the 4th Data Concurrent that safety chip is sent and give Truth cards;Input unit, for carrying out the input of the 5th data;Suggestion device, for carrying out the 6th Notes of Key Data;Safety chip sends the second data to wireless interface for receiving the first data of wireless interface transmission, receive the third data that read-write interface is sent, the 4th data are sent to read-write interface, receive the 5th data of input unit input, send the 6th data to suggestion device.Based on the present invention, the management to Truth cards may be implemented.

Description

Real card manager
Technical Field
The invention relates to the technical field of electronic information security, in particular to a real card manager.
Background
In the existing transaction flow, for example: when a user withdraws money or swipes a card for shopping, the user usually needs to carry a bank card transacted from a bank, certain safety risk exists when the user carries the bank card, and once the bank card is lost, the property of the user is easily lost. In addition, because the bank cards are various in types, a user may have a plurality of bank cards of different banks at the same time, and if the user needs to carry a plurality of bank cards of different banks, the user is not convenient enough to carry out transactions.
Therefore, there is a need in the art to provide a transaction solution that is convenient for the user to perform transaction and has high security.
Disclosure of Invention
The present invention is directed to solving the above problems.
The invention mainly aims to provide a real card manager.
In order to achieve the purpose, the technical scheme of the invention is realized as follows:
one aspect of the present invention provides a real card manager, including: the wireless interface is used for receiving first data sent by an analog device and sending the first data to a security chip, and receiving second data sent by the security chip and sending the second data to the analog device; the at least one read-write interface is used for receiving third data sent by a real card and sending the third data to the security chip, and receiving fourth data sent by the security chip and sending the fourth data to the real card; input means for performing a fifth data input; the prompting device is used for prompting the sixth data; the security chip is configured to receive the first data sent by the wireless interface, send the second data to the wireless interface, receive the third data sent by the read-write interface, send the fourth data to the read-write interface, receive the fifth data input by the input device, and send the sixth data to the prompt device.
Further, the real card manager further includes: and the memory is connected with the security chip and used for storing data.
Further, the real card manager further includes: a cut-off plate; the at least one read-write interface is at least two read-write interfaces, wherein each read-write interface comprises: the device comprises a first IO interface, a second IO interface, a read-write control unit and a storage unit; a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the security chip; from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface; the second IO interface of the last read-write interface is connected with the cut-off board stored with cut-off information; in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit; the read-write control unit of each read-write interface of the at least two read-write interfaces is used for reading the third data from the real card and writing the fourth data into the real card; and the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface.
In addition, the at least one read-write interface is at least two read-write interfaces, wherein the last read-write interface comprises a first IO interface, a read-write control unit and a storage unit; each of the at least two read-write interfaces except for the last read-write interface includes: the device comprises a first IO interface, a second IO interface, a read-write control unit and a storage unit; a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the security chip; from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface; in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit; the read-write control unit of each read-write interface of the at least two read-write interfaces is used for reading the third data from the real card and writing the fourth data into the real card; the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface; and the storage unit of the last read-write interface in the at least two read-write interfaces is also used for storing the cut-off information.
Another aspect of the present invention provides a real card manager, including: the wireless interface is used for receiving first data sent by an analog device and sending the first data to the control chip, and receiving second data sent by the control chip and sending the second data to the analog device; the read-write interface is used for receiving third data sent by a real card and sending the third data to the control chip, and receiving fourth data sent by the control chip and sending the fourth data to the real card; the safety chip is used for receiving fifth data sent by the control chip and sending sixth data to the control chip; input means for performing a seventh data input; the prompting device is used for prompting the eighth data; the control chip is configured to receive the first data sent by the wireless interface, send the second data to the wireless interface, receive the third data sent by the read-write interface, send the fourth data to the read-write interface, receive the sixth data sent by the security chip, send the fifth data to the security chip, receive the seventh data input by the input device, and send the eighth data to the prompt device.
In addition, the real card manager further includes: and the memory is connected with the control chip and used for storing data.
Further, the real card manager further includes: a cut-off plate; the at least one read-write interface is at least two read-write interfaces, wherein each read-write interface comprises: the device comprises a first IO interface, a second IO interface, a read-write control unit and a storage unit; a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the control chip; from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface; the second IO interface of the last read-write interface is connected with the cut-off board stored with cut-off information; in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit; the read-write control unit of each read-write interface of the at least two read-write interfaces is used for reading the third data from the real card and writing the fourth data into the real card; and the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface.
In addition, the at least one read-write interface is at least two read-write interfaces, wherein the last read-write interface comprises a first IO interface, a read-write control unit and a storage unit; each of the at least two read-write interfaces except for the last read-write interface includes: the device comprises a first IO interface, a second IO interface, a read-write control unit and a storage unit; a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the control chip; from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface; in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit; the read-write control unit of each read-write interface of the at least two read-write interfaces is used for reading the third data from the real card and writing the fourth data into the real card; the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface; and the storage unit of the last read-write interface in the at least two read-write interfaces is also used for storing the cut-off information.
In addition, the wireless interface is a bluetooth interface, an infrared interface, a 2.4G interface, a 900M interface, a zigbee interface, a 2G network interface, a 3G network interface, a 4G network interface, or a WIFI interface.
Further, the input device includes: a voice acquisition device, a keyboard and/or a scanning device; the prompting device comprises: a voice playing device and/or a display device.
In addition, the security chip is one.
In addition, the simulation device is a simulation card, a mobile device or an electronic signature device.
In addition, the simulation device comprises a mobile device and an electronic signature device.
According to the technical scheme provided by the invention, the real card manager based on the invention can realize the management of the real card, and further can be matched with a simulation device so as to realize the purposes of facilitating the transaction of users and having higher safety.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on the drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a real card manager provided in embodiment 1 of the present invention;
fig. 2 is a schematic structural diagram of a read/write interface in a real card manager according to embodiment 1 of the present invention;
fig. 3 is another schematic structural diagram of a read/write interface in a real card manager according to embodiment 1 of the present invention;
fig. 4 is a schematic structural diagram of a real card manager provided in embodiment 2 of the present invention;
fig. 5 is a schematic structural diagram of a read/write interface in a real card manager according to embodiment 2 of the present invention;
fig. 6 is another schematic structural diagram of a read/write interface in a real card manager according to embodiment 2 of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention are clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments of the present invention without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention. Furthermore, the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or quantity or location.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.
The invention provides a data interaction architecture, which is used for providing a transaction solution which is convenient for user transaction and has higher safety. The data interaction architecture comprises: a simulation device and a real card manager.
Wherein:
the simulation device, which may include one or more simulation devices, each simulation device can only belong to and be managed by one real card manager. The simulation device can be a simulation card, namely, the simulation card is independently manufactured into a card-shaped device, and also can be a real card with the function of the simulation device reserved, the simulation card can be the same as the size of the existing bank card, and in the data interaction architecture, the simulation card can replace the real card to complete transaction. Of course, the simulation apparatus of the present invention may also be a mobile device having the simulation apparatus function, including: smart phones, tablet computers (PADs), PDAs (e.g., palm top computers, learning machines), laptop computers, e-book reading devices, wearable devices (e.g., smart wristwatches, smart glasses, etc.), and the like. Alternatively, the simulation apparatus of the present invention may also be an electronic signature device (key device, such as U shield of a working department, K treasure of a farming department, etc.). Of course, the simulation apparatus of the present invention may also be a combination of a mobile device and an electronic signature device. The simulation device can be matched with an existing terminal (the terminal can comprise a payment terminal, a functional terminal and the like, for example, the payment terminal comprises a transaction type terminal related to financial transactions, for example, payment initiating terminals such as a smart phone, a tablet computer, a notebook computer, an intelligent wearable device, an ATM (automatic teller machine), a POS (point of sale) machine, a bus recharging machine, a pull card payment terminal and the like, the functional terminal comprises a business type terminal, for example, business initiating terminals such as an entrance guard, a score card management terminal and the like) to perform data interaction, and the simulation device can also perform data interaction with a real card manager. Specifically, when the simulation device is a card-shaped device, the simulation device can be connected to a terminal for use in a contact and/or NFC manner, and when the simulation device is in the form of a smart phone or the like, the simulation device can be connected to the terminal for use in an NFC manner. In order to facilitate the cooperation with the analog device of the present invention, the terminal of the present invention may be a card-reading terminal, or may be a card-reading terminal, so as to read or read/write data from or to the analog device.
The real card manager can manage one or more simulation devices, and is provided with at least one read-write interface which can be a contact type (such as contact in a card slot form and the like) interface and/or a non-contact type (such as NFC and the like) interface so as to facilitate the real card manager to connect different types of real cards in different ways; the real card manager can also perform data interaction with the simulation device. The real card manager can be placed at a fixed position (such as a user home), and can also be made into a small device to be carried with a person (such as a wallet form).
In the data interaction architecture, the real card is a smart chip card, which may be a function card (e.g., a bus card, a meal card, a shopping card, a membership card, a score card, an identification card, etc.) or a bank card issued by a bank, and when the simulation apparatus is a card-shaped device, the simulation apparatus may also be a smart chip card.
Based on the data architecture, the invention provides a real card manager which is used for managing the real card.
Example 1
Fig. 1 is a schematic structural diagram showing an actual card manager according to embodiment 1 of the present invention, and referring to fig. 1, the actual card manager according to embodiment 1 of the present invention includes:
a wireless interface 101, at least one read-write interface 102, an input device 103, a security chip 104 and a prompting device 105; wherein:
the wireless interface 101 is configured to receive first data sent by an analog device and send the first data to the security chip 104, and receive second data sent by the security chip 104 and send the second data to the analog device;
at least one read-write interface 102, configured to receive third data sent by a real card and send the third data to the secure chip 104, and receive fourth data sent by the secure chip 104 and send the fourth data to the real card;
an input device 103 for performing a fifth data input;
a presentation device 105 for presenting sixth data;
the security chip 104 is configured to receive the first data sent by the wireless interface 101, send the second data to the wireless interface 101, receive the third data sent by the read/write interface 102, send the fourth data to the read/write interface 102, receive the fifth data input by the input device 103, and send the sixth data to the prompt device 105.
Wherein: the wireless interface 101 may be any one of a bluetooth interface, an infrared interface, a 2.4G interface, a 900M interface, a zigbee interface, a 2G network interface, a 3G network interface, a 4G network interface, or a WIFI interface, so as to perform data interaction with the analog device in a wireless communication manner. Specifically, the wireless interface 101 may be a SIM6320, a U7500 of longshang corporation, or the like.
The read/write interface 102 may be at least one contact interface, or at least one non-contact interface, or at least one contact interface and at least one non-contact interface, so as to perform data interaction with different types of real cards through the read/write interface 102, and one read/write interface 102 performs reading and writing with one real card. Referring to FIG. 1, the read/write interface 102(1) … … is the read/write interface 102(n), where n ≧ 2 and n are natural numbers. Specifically, the contact interface may be a contact or the like, and the non-contact interface may be an NFC interface or the like. The model of the contact interface can be 8035 of NXP company, 8025 of NCN company and the like; the model of the non-contact interface can be PN512, RC663 of NXP company and the like.
In addition, the invention also provides two structures of the read-write interface, but the invention is not limited to the structures:
the first method is as follows:
the real card manager of the present invention further comprises: a cut-off plate; at least one read-write interface is at least two read-write interfaces, wherein, each read-write interface comprises: a first IO interface, a second IO interface, a read-write control unit, and a storage unit (not shown in the figure); see fig. 2 in particular, wherein:
a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the security chip;
from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface;
the second IO interface of the last read-write interface is connected with the cut-off board stored with cut-off information;
in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit;
the read-write control unit of each read-write interface in the at least two read-write interfaces is used for reading third data from the real card and writing fourth data into the real card;
and the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface.
Because the data transmission is carried out in the mode of serial connection of the IO interfaces, the number of the IO interfaces of the safety chip is saved. Due to the fact that the cut-off board is arranged, when the safety chip detects cut-off information, the last read-write interface can be obtained, and interface detection efficiency is improved.
The read-write control unit can be integrated together, or can be set as two units, i.e. a read-write unit and a control unit.
The second method comprises the following steps:
the at least one read-write interface is at least two read-write interfaces, wherein the last read-write interface comprises a first IO interface, a read-write control unit and a storage unit; each read-write interface except the last read-write interface in the at least two read-write interfaces comprises: a first IO interface, a second IO interface, a read-write control unit, and a storage unit (not shown in the figure); see in particular fig. 3, wherein:
a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the security chip;
from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface;
in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit;
the read-write control unit of each read-write interface in the at least two read-write interfaces is used for reading third data from the real card and writing fourth data into the real card;
the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface;
and the storage unit of the last read-write interface in the at least two read-write interfaces is also used for storing the cut-off information.
Because the data transmission is carried out in the mode of serial connection of the IO interfaces, the number of the IO interfaces of the safety chip is saved. Since the last read-write interface stores the cut-off information, when the security chip detects the cut-off information, the last read-write interface can be obtained, and the interface detection efficiency is improved.
The read-write control unit can be integrated together, or can be set as two units, i.e. a read-write unit and a control unit.
In addition, coupling connection is adopted among the IO interfaces.
The input device 103 may be one or any combination of a voice capture device, a keyboard, and a scanning device. The voice acquisition device can be a microphone and the like, the keyboard can be a physical keyboard or a virtual keyboard and the like, and the scanning device can be a camera and the like.
And a presentation device 105 for presenting the sixth data. The prompting device 106 may include: a voice playing device and/or a display device; the voice playing device can be a loudspeaker, an earphone and the like, and the display device can be a display screen and the like.
The security chip 104 has data processing functions of encryption, decryption, verification, certificate verification, signature verification, data format conversion and the like. In addition, the number of the security chips in the embodiment is one, so that the cost is saved. In embodiment 1 of the present invention, the security chip 104 controls data transmission of the wireless interface 101 and the read/write interface 102, so that security can be improved. Specifically, the security chip 104 may be national Z8D256U, or english-flying corporation STSEL 78. In addition, the secure chip 104 may have a storage unit for data storage.
The real card manager based on the embodiment 1 of the invention can realize the management of real cards, and further can be matched with a simulation device to realize the purposes of facilitating the transaction of users and having higher safety.
Further, in order to facilitate the user to use, the real card manager according to embodiment 1 of the present invention further includes: the power supply can be a direct-insert power supply or a battery, and if the power supply is the battery, the real card manager also has matching parts such as a charger and the like.
Further, in order to facilitate data storage, the real card manager according to embodiment 1 of the present invention further includes: a memory; the memory is connected with the security chip and used for storing data.
Of course, the first to fifth data in embodiment 1 of the present invention may be different data, and in addition, the first data may be the same as the fourth data, the third data may be the same as the second data, the fifth data may be the same as the fourth data, the sixth data may be the same as the first data, the sixth data may be the same as the third data, and the sixth data may be the same as the fifth data.
The data described in the present invention may include instructions and the like.
Example 2
The difference between this embodiment 2 and embodiment 1 is that in this embodiment 2, the wireless interface, the read/write interface, the input device, the prompting device, and the like are called through the control chip, and the specific implementation is as follows:
fig. 4 is a schematic structural diagram showing an actual card manager according to embodiment 2 of the present invention, and referring to fig. 4, the actual card manager according to embodiment 2 of the present invention includes:
a wireless interface 201, at least one read-write interface 202, a security chip 203, an input device 204, a prompting device 205 and a control chip 206; wherein:
the wireless interface 201 is configured to receive first data sent by the analog device and send the first data to the control chip 206, and receive second data sent by the control chip 206 and send the second data to the analog device;
the at least one read-write interface 202 is configured to receive third data sent by the real card and send the third data to the control chip 206, and receive fourth data sent by the control chip 206 and send the fourth data to the real card;
the secure chip 203 is configured to receive fifth data sent by the control chip 206 and send sixth data to the control chip 206;
an input device 204 for inputting seventh data;
a presentation device 205 for presenting the eighth data;
the control chip 206 is configured to receive the first data sent by the wireless interface 201, send the second data to the wireless interface 201, receive the third data sent by the read/write interface 202, send the fourth data to the read/write interface 202, receive the sixth data sent by the security chip 203, send the fifth data to the security chip 203, receive the seventh data input by the input device 204, and send the eighth data to the prompt device 205.
Wherein: the wireless interface 201 may be any one of a bluetooth interface, an infrared interface, a 2.4G interface, a 900M interface, a zigbee interface, a 2G network interface, a 3G network interface, a 4G network interface, or a WIFI interface, so as to perform data interaction with the analog device in a wireless communication manner. Specifically, the wireless interface 201 may be a SIM6320, a U7500 of longshang corporation, or the like.
The read/write interface 202 may be at least one contact interface, or at least one non-contact interface, or at least one contact interface and at least one non-contact interface, so as to perform data interaction with different types of real cards through the read/write interface 202, and one read/write interface 202 performs reading and writing with one real card. Referring to FIG. 2, the read/write interface 202(1) … … is the read/write interface 202(n), where n ≧ 2 and n are natural numbers. Specifically, the contact interface may be a contact or the like, and the non-contact interface may be an NFC interface or the like. The model of the contact interface can be 8035 of NXP company, 8025 of NCN company and the like; the model of the non-contact interface can be PN512, RC663 of NXP company and the like.
In addition, the invention also provides two structures of the read-write interface, but the invention is not limited to the structures:
the first method is as follows:
the real card manager further includes: a cut-off plate; at least one read-write interface is at least two read-write interfaces, wherein, each read-write interface comprises: a first IO interface, a second IO interface, a read-write control unit, and a storage unit (not shown in the figure); see fig. 5 in particular, wherein:
a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the control chip;
from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface;
the second IO interface of the last read-write interface is connected with the cut-off board stored with cut-off information;
in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit;
the read-write control unit of each read-write interface in the at least two read-write interfaces is used for reading third data from the real card and writing fourth data into the real card;
and the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface.
Because the data transmission is carried out in the mode of serial connection of the IO interfaces, the number of the IO interfaces of the control chip is saved. Due to the fact that the cut-off board is arranged, when the control chip detects cut-off information, the last read-write interface can be obtained, and interface detection efficiency is improved.
The read-write control unit can be integrated together, or can be set as two units, i.e. a read-write unit and a control unit.
The second method comprises the following steps:
the at least one read-write interface is at least two read-write interfaces, wherein the last read-write interface comprises a first IO interface, a read-write control unit and a storage unit; each read-write interface except the last read-write interface in the at least two read-write interfaces comprises: a first IO interface, a second IO interface, a read-write control unit, and a storage unit (not shown in the figure); see fig. 6 in particular, wherein:
a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the control chip;
from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface;
in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit;
the read-write control unit of each read-write interface in the at least two read-write interfaces is used for reading third data from the real card and writing fourth data into the real card;
the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface;
and the storage unit of the last read-write interface in the at least two read-write interfaces is also used for storing the cut-off information.
Because the data transmission is carried out in the mode of serial connection of the IO interfaces, the number of the IO interfaces of the control chip is saved. Since the last read-write interface stores the cut-off information, when the control chip detects the cut-off information, the last read-write interface can be obtained, and the interface detection efficiency is improved.
The read-write control unit can be integrated together, or can be set as two units, i.e. a read-write unit and a control unit.
In addition, coupling connection is adopted among the IO interfaces.
The input device 204 may be one or any combination of a voice capture device, a keyboard, and a scanning device. The voice acquisition device can be a microphone and the like, the keyboard can be a physical keyboard or a virtual keyboard and the like, and the scanning device can be a camera and the like.
The prompting device 205 is connected to the secure chip 203 and configured to prompt the eighth data. Wherein, the prompting device 205 may include: a voice playing device and/or a display device; the voice playing device can be a loudspeaker, an earphone and the like, and the display device can be a display screen and the like.
The security chip 203 has data processing functions of encryption, decryption, verification, certificate verification, signature verification, data format conversion and the like. In addition, the number of the security chips in the embodiment is one, so that the cost is saved. Specifically, the security chip 203 may be national Z8D256U, or english-flying corporation STSEL 78. In addition, the secure chip 203 may have a storage unit for data storage.
The control chip 206 controls data interaction among the wireless interface 201, the read-write interface 202, the input device 203, the prompting device 204 and the security chip 203. Specifically, the control chip 206 may be STM32 of ST corporation, Z32 of national technology, or the like. In addition, the control chip 206 may have a storage unit for data storage. The control chip may process the data, including but not limited to one or any combination of the following: data format conversion, information extraction and forwarding operations, and the like.
The real card manager based on the embodiment 2 of the invention can realize the management of the real card, and further can be matched with a simulation device to realize the purposes of facilitating the transaction of users and having higher safety.
Further, in order to facilitate the use of the user, the real card manager according to embodiment 2 of the present invention may further include: a power source. The power supply can be a direct-plug power supply or a battery, and if the power supply is the battery, the real card manager also has matching parts such as a charger and the like.
Further, in order to facilitate data storage, the real card manager according to embodiment 2 of the present invention further includes: a memory; the memory is connected with the control chip and used for storing data.
Of course, the first to eighth data in embodiment 2 of the present invention may be different data, and in addition, the first data may be the same as the fourth data, the third data may be the same as the second data, the fifth data may be the same as the first data, the fifth data may be the same as the third data, the sixth data may be the same as the second data, the sixth data may be the same as the fourth data, the seventh data may be the same as the second data, the seventh data may be the same as the fourth data, the eighth data may be the same as the first data, the eighth data may be the same as the third data, the eighth data may be the same as the fifth data, the eighth data may be the same as the sixth data, and the eighth data may be the same as the seventh data.
The data described in the present invention may include instructions and the like.
The terms "connected" and "connected" in the present invention may be directly or indirectly connected.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention, and that variations, modifications, substitutions and alterations can be made in the above embodiments by those of ordinary skill in the art without departing from the principle and spirit of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (14)

1. A real card manager, comprising:
the wireless interface is used for receiving first data sent by a simulation device for replacing a real card to complete transaction through a network and sending the first data to the security chip, and receiving second data sent by the security chip and sending the second data to the simulation device through the network;
the at least one read-write interface is used for receiving third data sent by a real card and sending the third data to the security chip, and receiving fourth data sent by the security chip and sending the fourth data to the real card;
input means for performing a fifth data input;
the prompting device is used for prompting the sixth data;
the security chip is configured to receive the first data sent by the wireless interface, send the second data to the wireless interface, receive the third data sent by the read-write interface, send the fourth data to the read-write interface, receive the fifth data input by the input device, and send the sixth data to the prompt device;
the at least one read-write interface comprises at least two read-write interfaces, wherein the last read-write interface comprises a first IO interface, a read-write control unit and a storage unit; each of the at least two read-write interfaces except for the last read-write interface includes: the device comprises a first IO interface, a second IO interface, a read-write control unit and a storage unit; a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the security chip; from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface; in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit; the read-write control unit of each read-write interface of the at least two read-write interfaces is used for reading the third data from the real card and writing the fourth data into the real card; the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface; the storage unit of the last read-write interface in the at least two read-write interfaces is also used for storing cut-off information; or,
the real card manager further includes: a cut-off plate; the at least one read-write interface is at least two read-write interfaces, wherein each read-write interface comprises: the device comprises a first IO interface, a second IO interface, a read-write control unit and a storage unit; a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the security chip; from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface; the second IO interface of the last read-write interface is connected with the cut-off board stored with cut-off information; in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit; the read-write control unit of each read-write interface of the at least two read-write interfaces is used for reading the third data from the real card and writing the fourth data into the real card; and the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface.
2. The real card manager according to claim 1, further comprising:
and the memory is connected with the security chip and used for storing data.
3. The real card manager according to claim 1 or 2, wherein the wireless interface is a bluetooth interface, an infrared interface, a 2.4G interface, a 900M interface, a zigbee interface, a 2G network interface, a 3G network interface, a 4G network interface, or a WIFI interface.
4. The real card manager according to claim 1 or 2, wherein the input means includes: a voice acquisition device, a keyboard and/or a scanning device; the prompting device comprises: a voice playing device and/or a display device.
5. The real card manager according to claim 1 or 2, wherein the security chip is one.
6. The real card manager according to claim 1 or 2, wherein the simulation means is a simulation card, a mobile device, or an electronic signature device.
7. The real card manager according to claim 1 or 2, wherein the simulation means includes a mobile device and an electronic signature device.
8. A real card manager, comprising:
the wireless interface is used for receiving first data sent by a simulation device for replacing a real card to complete transaction through a network and sending the first data to the control chip, and receiving second data sent by the control chip and sending the second data to the simulation device through the network;
the read-write interface is used for receiving third data sent by a real card and sending the third data to the control chip, and receiving fourth data sent by the control chip and sending the fourth data to the real card;
the safety chip is used for receiving fifth data sent by the control chip and sending sixth data to the control chip;
input means for performing a seventh data input;
the prompting device is used for prompting the eighth data;
the control chip is configured to receive the first data sent by the wireless interface, send the second data to the wireless interface, receive the third data sent by the read-write interface, send the fourth data to the read-write interface, receive the sixth data sent by the security chip, send the fifth data to the security chip, receive the seventh data input by the input device, and send the eighth data to the prompt device;
the at least one read-write interface comprises at least two read-write interfaces, wherein the last read-write interface comprises a first IO interface, a read-write control unit and a storage unit; each of the at least two read-write interfaces except for the last read-write interface includes: the device comprises a first IO interface, a second IO interface, a read-write control unit and a storage unit; a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the control chip; from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface; in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit; the read-write control unit of each read-write interface of the at least two read-write interfaces is used for reading the third data from the real card and writing the fourth data into the real card; the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface; the storage unit of the last read-write interface in the at least two read-write interfaces is also used for storing cut-off information; or,
the real card manager further includes: a cut-off plate; the at least one read-write interface is at least two read-write interfaces, wherein each read-write interface comprises: the device comprises a first IO interface, a second IO interface, a read-write control unit and a storage unit; a first IO interface of a first read-write interface of the at least two read-write interfaces is connected with the control chip; from the second read-write interface, the first IO interface of each read-write interface is respectively connected with the second IO interface of the previous read-write interface; the second IO interface of the last read-write interface is connected with the cut-off board stored with cut-off information; in each read-write interface, a first IO interface and a second IO interface are respectively connected with a read-write control unit; the read-write control unit of each read-write interface of the at least two read-write interfaces is used for reading the third data from the real card and writing the fourth data into the real card; and the storage unit of each read-write interface in the at least two read-write interfaces is used for storing the respective address of the read-write interface.
9. The real card manager according to claim 8, further comprising:
and the memory is connected with the control chip and used for storing data.
10. The real card manager according to claim 8 or 9, wherein the wireless interface is a bluetooth interface, an infrared interface, a 2.4G interface, a 900M interface, a zigbee interface, a 2G network interface, a 3G network interface, a 4G network interface, or a WIFI interface.
11. The real card manager according to claim 8 or 9, wherein the input means includes: a voice acquisition device, a keyboard and/or a scanning device; the prompting device comprises: a voice playing device and/or a display device.
12. The real card manager according to claim 8 or 9, wherein the security chip is one.
13. The real card manager according to claim 8 or 9, wherein the simulation means is a simulation card, a mobile device, or an electronic signature device.
14. The real card manager according to claim 8 or 9, wherein the simulation means includes a mobile device and an electronic signature device.
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