WO2016141618A1 - 整机产品防拆装置和方法 - Google Patents

整机产品防拆装置和方法 Download PDF

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Publication number
WO2016141618A1
WO2016141618A1 PCT/CN2015/076164 CN2015076164W WO2016141618A1 WO 2016141618 A1 WO2016141618 A1 WO 2016141618A1 CN 2015076164 W CN2015076164 W CN 2015076164W WO 2016141618 A1 WO2016141618 A1 WO 2016141618A1
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WO
WIPO (PCT)
Prior art keywords
whole product
module
product
damage
signal
Prior art date
Application number
PCT/CN2015/076164
Other languages
English (en)
French (fr)
Inventor
张贯京
陈兴明
葛新科
张少鹏
方静芳
克里斯基捏·普拉纽克
古列莎·艾琳娜
波达别特·伊万
高伟明
梁昊原
梁艳妮
周荣
徐之艳
周亮
Original Assignee
深圳市贝沃德克生物技术研究院有限公司
深圳市易特科信息技术有限公司
深圳市前海安测信息技术有限公司
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.)
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Publication date
Application filed by 深圳市贝沃德克生物技术研究院有限公司, 深圳市易特科信息技术有限公司, 深圳市前海安测信息技术有限公司 filed Critical 深圳市贝沃德克生物技术研究院有限公司
Publication of WO2016141618A1 publication Critical patent/WO2016141618A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/70Protecting specific internal or peripheral components, in which the protection of a component leads to protection of the entire computer
    • G06F21/86Secure or tamper-resistant housings

Definitions

  • the present invention relates to the field of electronic information technology, and in particular, to a device and method for tampering a whole product.
  • the protection device and method of the whole product one is to prevent non-professionals from illegally disassembling the whole product and the product is not available; the second is to prevent competitors from illegally dismantling the whole product for plagiarism, thereby producing similar products through shortcuts. Take the market illegally.
  • the existing tamper-preventing device of the whole machine either prevents the illegal dismantling by others through complicated structural parts, or prohibits others from illegally disassembling by means of a closed manner, although it can protect the whole product from a certain degree, even though When others use very means to disassemble the whole product, there is no feasible and effective means and methods to prevent others from plagiarizing.
  • the main object of the present invention is to provide a tamper-preventing device and method for a complete product, so as to solve the problem that the prior art cannot take care of the tampering of the whole product while preventing plagiarism by others.
  • the present invention provides a whole product product tampering device, wherein the whole product tampering device comprises a detecting module, a monitoring module and a damage module, wherein the whole product comprises a plurality of casings, and the whole product
  • the casings are mechanically connected by connectors,
  • the detecting module is disposed at the connecting component and electrically connected to the monitoring module, configured to detect whether the casing of the whole product is disassembled, and send a detection signal to the monitoring module;
  • the monitoring module is configured to send an open signal to the damaged module according to the detection signal
  • the damage module is electrically connected to the monitoring module, and is configured to damage the whole product when receiving the opening signal.
  • the damage module comprises a low voltage capacitor disposed above a circuit or an electronic component of the whole product, and a high voltage signal is applied across the low voltage capacitor to damage a circuit or an electronic component under the capacitor;
  • the damage module includes a voltage conversion circuit for converting a low voltage into a high voltage, and applying a high voltage to both ends of the protected circuit in the whole product to damage the protected circuit;
  • the damage module includes a damaged power source, and the polarity of the electrode of the damaged power source is opposite to the power polarity of the key electronic components in the whole product, and the power supply ends of the key electronic components in the whole product Apply a power supply of opposite polarity to destroy critical electronic components.
  • the detecting module comprises a pressure sensor, the pressure sensor is disposed at a position where the connecting member is in contact with the casing of the whole product, and is used for detecting the pressure between the connecting member and the casing of the whole product. Signaling, and transmitting the pressure signal as a detection signal to the monitoring module;
  • the detecting module includes a light emitting unit and a light receiving unit
  • the connecting member is disposed between the light emitting unit and the light receiving unit
  • the light receiving unit is configured to receive an optical signal emitted by the light emitting unit, and Transmitting the optical signal as a detection signal to the monitoring module;
  • the detecting module includes a resistor, and the resistor is disposed at a position where the connecting member is in contact with the casing of the whole product, and is used for detecting a resistance value when the connecting member contacts the casing of the whole product, and The resistance value is sent to the monitoring module as a detection signal.
  • the damage module comprises a low voltage capacitor disposed above a circuit or an electronic component of the whole product, and a high voltage signal is applied across the low voltage capacitor to damage a circuit or an electronic component under the capacitor;
  • the damage module includes a voltage conversion circuit for converting a low voltage into a high voltage, and applying a high voltage to both ends of the protected circuit in the whole product to damage the protected circuit;
  • the damage module includes a damaged power source, and the polarity of the electrode of the damaged power source is opposite to the power polarity of the key electronic components in the whole product, and the power supply ends of the key electronic components in the whole product Apply a power supply of opposite polarity to destroy critical electronic components.
  • the whole product product tampering device further includes an alarm module, the alarm module is electrically connected to the monitoring module, and the monitoring module is further configured to send alarm information to the alarm module according to the detection signal, The alarm module is configured to alarm according to the alarm information.
  • the damage module comprises a low voltage capacitor disposed above a circuit or an electronic component of the whole product, and a high voltage signal is applied across the low voltage capacitor to damage a circuit or an electronic component under the capacitor;
  • the damage module includes a voltage conversion circuit for converting a low voltage into a high voltage, and applying a high voltage to both ends of the protected circuit in the whole product to damage the protected circuit;
  • the damage module includes a damaged power source, and the polarity of the electrode of the damaged power source is opposite to the power polarity of the key electronic components in the whole product, and the power supply ends of the key electronic components in the whole product Apply a power supply of opposite polarity to destroy critical electronic components.
  • the whole product product tampering device further includes an alarm release module, wherein the alarm release module is electrically connected to the monitoring module, configured to acquire alarm release information and send stop alarm information to the monitoring module, the monitoring The module stops outputting the alarm information when receiving the alarm stop information.
  • the damage module comprises a low voltage capacitor disposed above a circuit or an electronic component of the whole product, and a high voltage signal is applied across the low voltage capacitor to damage a circuit or an electronic component under the capacitor;
  • the damage module includes a voltage conversion circuit for converting a low voltage into a high voltage, and applying a high voltage to both ends of the protected circuit in the whole product to damage the protected circuit;
  • the damage module includes a damaged power source, and the polarity of the electrode of the damaged power source is opposite to the power polarity of the key electronic components in the whole product, and the power supply ends of the key electronic components in the whole product Apply a power supply of opposite polarity to destroy critical electronic components.
  • the present invention also provides a method for tampering a whole product, and the method for tamping the whole product includes the following steps:
  • the detecting module detects whether the casing of the whole product is disassembled, and sends a detection signal to the monitoring module;
  • the monitoring module sends an open signal to the damage module according to the detection signal
  • S3 The damage module damages the whole product when receiving the open signal.
  • the step S1 is specifically:
  • the detecting module includes a pressure sensor disposed at a position where the connecting member contacts a casing of the whole product, and the pressure sensor detects a pressure signal between the connecting member and a casing of the whole product. And sending the pressure signal as a detection signal to the monitoring module;
  • the detecting module includes a light emitting unit and a light receiving unit
  • the connecting member is disposed between the light emitting unit and the light receiving unit, and the light receiving unit receives the light signal emitted by the light emitting unit, and Transmitting the optical signal as a detection signal to the monitoring module;
  • the detecting module includes a resistor, and the resistor is disposed at a position where the connecting member is in contact with a casing of the whole product, and the resistor detects a resistance value when the connecting member contacts the casing of the whole product, And transmitting the resistance value as a detection signal to the monitoring module.
  • the whole product product tampering method further comprises the following steps:
  • the monitoring module sends an alarm message to the alarm module according to the detection signal
  • S5 The alarm module alarms according to the alarm information.
  • the whole product product tampering method further comprises the following steps:
  • the alarm release module acquires the alarm release information and sends the stop alarm information to the monitoring module;
  • the monitoring module stops outputting the alarm information when receiving the alarm stop information.
  • the damage module receives the open signal, the whole product is damaged by one or a combination of the following:
  • the invention adopts the above technical solution, and brings the technical effect that: the invention detects whether the whole product is disassembled by the detecting module, and while the whole product is tamper-proof, the monitoring module sends an opening signal to the damaged module according to the detection signal, The damage to the whole product is destroyed by the damaged module, thereby preventing others from plagiarizing the whole product.
  • FIG. 1 is a schematic structural view of a first embodiment of a tamper-preventing device for a whole machine according to the present invention
  • FIG. 2 is a schematic structural view of a second embodiment of a tamper-preventing device for a whole machine according to the present invention
  • FIG. 3 is a schematic flow chart of a first embodiment of a method for preventing detachment of a whole product according to the present invention
  • FIG. 4 is a schematic flow chart of a second embodiment of a method for preventing detachment of a whole product according to the present invention.
  • the main object of the present invention is to provide a tamper-preventing device and method for a complete product, so as to solve the problem that the prior art cannot take care of the tampering of the whole product while preventing plagiarism by others.
  • the present invention provides a tamper-preventing device for a complete product.
  • FIG. 1 is a schematic structural view of a first embodiment of a tamper-preventing device for a whole product according to the present invention.
  • the tamper-preventing device of the whole product includes a detecting module 10, a monitoring module 20, and a damage module 30.
  • the product includes a plurality of casings, and the casings of the whole product are mechanically connected by a connecting member.
  • the detecting module 10 is disposed at the connecting member, and is electrically connected to the monitoring module 20 for detecting whether the casing of the whole product is disassembled, and sending a detection signal to the monitoring module 20;
  • the monitoring module 20 is configured to send an open signal to the damage module 30 according to the detection signal;
  • the damage module 30 is electrically connected to the monitoring module 20 for destroying the whole product when receiving the opening signal.
  • the whole product of the present invention comprises a board and a plurality of casings, and the casings of the whole product are also connected by screws.
  • the board includes a circuit for operating the whole product and an electronic component thereof, and the board is fixed to the casing by screws, and the casings of the whole product are connected by screws.
  • the entire machine product In other embodiments, the board and the casing and between the casing and the casing may also be connected by other connecting members, such as studs.
  • the detecting module 10 is preferably disposed at the connecting component, and when the connecting component is disassembled, the detection signal detected by the detecting module changes, when When the detection signal is a preset detection signal, the whole product is disassembled.
  • the detecting module sends a detection signal to the monitoring module 20, and feeds back the change of the detection signal to the monitoring module 20 in real time.
  • the detection signal is a preset detection signal
  • the whole product is illegally disassembled, and the monitoring module 20 sends an opening signal to the damage module 30 to control the damage module 30 to open.
  • the damage module 30 only damages the whole product when receiving the open signal, that is, if the whole product is illegally disassembled without authorization, in order to prevent the whole product from passing through the non- Normal means are copied and the whole machine product is protected by damage.
  • the open signal is not received, it is in the off state.
  • the invention detects whether the whole product is disassembled by the detecting module 10, and while the tampering of the whole product, the monitoring module 20 sends an opening signal to the damage module 30 according to the detection signal, and damages the whole product through the damage module 30, In turn, others are prevented from plagiarizing the whole product.
  • the detecting module 10 is configured to detect whether the whole product is disassembled, and send the detection signal to the monitoring module 20.
  • the possible implementation manners are as follows:
  • the detecting module 10 includes a pressure sensor disposed at a position where the screw contacts the casing of the whole product for detecting the screw and the casing of the whole product.
  • a pressure signal a pressure signal
  • the pressure sensor is disposed between the board and the casing and the screw connected between the casing and the casing, and may be provided at each of the connected screws or at a plurality of screws
  • the device can detect that the card is detached from the casing and the casing is disassembled, and the pressure sensor can be disposed at a position where the screw contacts the casing of the whole product (a position or a screw above the screw contacting the casing) The position in contact with the casing below is used to detect the pressure signal between the screw and the casing of the whole product.
  • the pressure signal is a normal pressure signal, when the detected When the casing of the complete machine product is disassembled, the pressure signal changes, and the pressure signal becomes smaller as the screw is loosened.
  • the detecting module 10 sends the pressure signal as a detection signal to the monitoring module 20, and feeds back the change of the pressure signal to the monitoring module 20 in real time.
  • the detecting module 10 includes a light emitting unit and a light receiving unit, the screw is disposed between the light emitting unit and the light receiving unit, and the light receiving unit is configured to receive the light emitting unit Light signal.
  • the light emitting unit and the light receiving unit are provided as an infrared light emitting unit and an infrared light receiving unit.
  • the infrared light emitting unit emits an infrared light signal within a preset period (for example, 1 s), and the infrared light receiving unit passively receives the infrared light signal.
  • the optical signal emitted by the light emitting unit is blocked by the screw, and the optical signal received by the light receiving unit is the weakest, when the casing of the whole product is detected
  • the optical signal received by the light receiving signal becomes stronger as the screw is released (the optical signal is blocked by the screw, and the optical signal received by the light receiving unit gradually increases and becomes
  • the detection module 10 sends the optical signal as a detection signal to the monitoring module 20, and feeds back the change of the optical signal to the monitoring module 20 in real time.
  • the detecting module 10 includes a resistor disposed at a position where the screw contacts the casing of the whole product, and is used to detect when the screw is in contact with the casing of the whole product.
  • the resistance value; the screw is generally an electric conductor, and the casing is equivalent to ground. Therefore, when the screw is in contact with the electric resistance, it is equivalent to connecting a new resistor in series with the resistor, and the output resistance value of the detecting module is The contact of the screw becomes larger.
  • the output resistance value of the detecting module becomes smaller as the screw is loosened, that is, the detecting module 10 detects that the output resistance value becomes small, indicating that the whole product is The casing is taken apart.
  • the detecting module 10 sends the resistance value as a detection signal to the monitoring module 20, and feeds back the change of the resistance value to the monitoring module 20 in real time.
  • the monitoring module 20 is configured to send an enable signal to the damage module 30 according to the detection signal.
  • the detection signal is a preset detection signal
  • the pressure signal sent by the detection module 10 is less than a preset pressure signal (the pressure signal when the screw is tightened with the casing of the whole product) or
  • the optical signal is greater than the preset optical signal (the optical signal when the screw is tightened with the casing of the whole product) or the resistance value is less than a preset resistance value (the resistance value when the screw is tightened with the casing of the whole product)
  • the whole product is illegally disassembled, and the monitoring module 20 sends an open signal to the damage module 30 to control the damage module 30 to start working.
  • the foregoing damage module 30 is configured to damage the whole product when receiving the open signal, and the possible implementation manners are as follows:
  • the damage module includes a low voltage capacitor disposed above a circuit or an electronic component of the whole product, and a high voltage signal is applied across the low voltage capacitor to damage a circuit or an electron under the capacitor.
  • the components which damage the board of the whole machine product, make it impossible for illegal dismantling personnel to obtain a complete board and copy the whole machine product by illegal means;
  • the damage module includes a voltage conversion circuit for converting a low voltage to a high voltage, by applying a high voltage across the protected circuit in the whole product to destroy the protected
  • the circuit which destroys the key parts of the whole product, causes the illegal dismantled personnel to obtain a complete board and plagiarize the whole product through illegal means;
  • the damage module includes a damaged power source, and an electrode polarity of the damaged power source is opposite to a power polarity of a key electronic component in the whole product, through key electronic products in the whole product A power supply with opposite polarity is applied to both ends of the power supply of the component to damage the key electronic components, thereby damaging the key parts of the whole product, so that the illegal disassembler cannot obtain a complete board and plagiarize the whole product by illegal means.
  • the damage module 30 only destroys the whole product when receiving the open signal, and is in a non-working state when the open signal is not received.
  • the damage module 30 described above may be implemented by one or a combination of the above.
  • FIG. 2 is a schematic structural view of a second embodiment of a tamper-preventing device for a whole machine according to the present invention.
  • the detachment device of the whole product product further includes an alarm module 40, the alarm module 40 is electrically connected to the monitoring module 20, and the monitoring module 20 is further configured according to the first embodiment of the tamper-preventing device of the whole product. And configured to send alarm information to the alarm module 40 according to the detection signal, where the alarm module 40 is configured to alarm according to the alarm information.
  • the detection signal received by the monitoring module 20 is within a preset range (eg, the pressure signal sent by the detection module 10 is less than a preset pressure signal or the optical signal is greater than a preset optical signal or resistance value)
  • a preset range eg, the pressure signal sent by the detection module 10 is less than a preset pressure signal or the optical signal is greater than a preset optical signal or resistance value
  • the value of the resistor is less than the preset value, indicating that the whole product has been disassembled
  • an alarm information may be “Please do not disassemble the machine illegally”, and the alarm module 40 is according to the The alarm information alarms, prompting the illegal disassembler not to try to disassemble.
  • the whole product product tampering device further includes an alarm release module 50, and the alarm release module 50 is electrically connected to the monitoring module 20 for acquiring alarm release information and transmitting stop alarm information to the monitoring module 20, The monitoring module 20 stops outputting the alarm information when receiving the alarm stop information.
  • an alarm release button may be disposed on the whole product, and when the alarm release button is pressed, the alarm release module 50 acquires an alarm release information, and sends a stop alarm information to the monitoring module. 20.
  • the monitoring module 20 stops outputting the alarm information when receiving the alarm stop information.
  • the alarm module 40 is prevented from being in an alarm state all the time.
  • the present invention also provides a method for preventing the whole product from being detached.
  • FIG. 3 is a schematic flow chart of a first embodiment of a method for tamper-proofing a whole product of the present invention.
  • the whole product product tampering method comprises the following steps:
  • the detecting module detects whether the casing of the whole product is disassembled, and sends a detection signal to the monitoring module;
  • the monitoring module sends an open signal to the damage module according to the detection signal
  • S3 The damage module damages the whole product when receiving the open signal.
  • the whole product of the present invention comprises a board and a plurality of casings, and the casings of the whole product are also connected by screws.
  • the board includes a circuit for operating the whole product and an electronic component thereof, and the board is fixed to the casing by screws, and the casings of the whole product are connected by screws.
  • the entire machine product In other embodiments, the board and the casing and between the casing and the casing may also be connected by other connecting members, such as studs.
  • the tamper-preventing method of the whole product of the present invention is preferably realized based on the structural connection relationship of the above-mentioned preferred whole product.
  • the detecting module detects whether the casing of the whole product is disassembled, and sends a detection signal to the monitoring module; specifically, according to the composition and the connection relationship of the whole product, the detecting module is preferably disposed at the connecting component, When the connecting component is disassembled, the detection signal detected by the detecting module changes, and when the detecting signal is a preset detecting signal, the whole product is disassembled.
  • the detecting module sends a detection signal to the monitoring module, and feeds back the change of the detection signal to the monitoring module in real time.
  • the monitoring module sends an open signal to the damage module according to the detection signal; specifically, when the detection signal is a preset detection signal, the whole product is illegally disassembled, and the monitoring module sends Turn on the signal to the damage module to control the damage module to start working.
  • the damage module damages the whole product when receiving the open signal. Specifically, the damage module only damages the whole product when receiving the opening signal, that is, in the case that the whole product is illegally disassembled without authorization, in order to prevent the whole product It is plagiarized by abnormal means to protect the whole machine product by means of damage. When the open signal is not received, it is in the off state.
  • the invention detects whether the whole product is disassembled by the detecting module, and while the tampering of the whole product, the monitoring module sends an opening signal to the damaged module according to the detection signal, and damages the whole product through the damaged module, thereby preventing others from The whole product is plagiarized.
  • the detecting module includes a pressure sensor disposed at a position where the connecting member is in contact with a casing of the whole product, the pressure sensor is disposed between the card and the casing, and a screw connected between the casing and the casing, the pressure sensor detecting a pressure signal between the connecting piece and the casing of the whole product, and one or several of each of the connected screws may be disposed
  • the screw is disposed to detect that the card is detached from the casing and the casing is disassembled
  • the pressure sensor may be disposed at a position where the screw contacts the casing of the whole product (the upper part of the screw is in contact with the casing) Position or the position of the screw in contact with the casing), for detecting the pressure signal between the screw and the casing of the whole product, when the whole product works normally, the pressure signal is a normal pressure signal, when When the casing of the whole product is detected to be disassembled, the pressure signal changes, and the pressure signal becomes smaller as the screw is loosened.
  • the detecting module sends
  • the detecting module includes a light emitting unit and a light receiving unit
  • the connecting member is disposed between the light emitting unit and the light receiving unit
  • the light receiving unit is configured to receive the light emitting unit
  • the light emitting unit and the light receiving unit are provided as an infrared light emitting unit and an infrared light receiving unit.
  • the infrared light emitting unit emits an infrared light signal within a preset period (for example, 1 s), and the infrared light receiving unit passively receives the infrared light signal.
  • the optical signal emitted by the light emitting unit is blocked by the screw, and the optical signal received by the light receiving unit is the weakest, when the casing of the whole product is detected
  • the optical signal received by the light receiving signal becomes stronger as the screw is released (the optical signal is blocked by the screw, and the optical signal received by the light receiving unit gradually increases and becomes Strongly
  • the detecting module sends the optical signal as a detection signal to the monitoring module, and feeds back the change of the optical signal to the monitoring module in real time.
  • the detecting module includes a resistor, the resistor is disposed at a position where the connecting member is in contact with a casing of the whole product, and the detecting module detects the connecting member and the casing of the whole product.
  • the resistance value at the time of contact, the screw is generally an electric conductor, and the casing is equivalent to ground. Therefore, when the screw is in contact with the electric resistance, a new resistor is connected in series with the electric resistance, and the output resistance of the detecting module is The value becomes larger due to contact with the screw.
  • the output resistance value of the detecting module becomes smaller as the screw is loosened, that is, the detecting module detects that the output resistance value becomes small, indicating the machine of the whole product.
  • the shell was taken apart.
  • the detecting module sends the resistance value as a detection signal to the monitoring module, and feedbacks the change of the resistance value to the monitoring module in real time.
  • Step S2 the monitoring module sends an open signal to the damage module according to the detection signal
  • the detection signal is a preset detection signal
  • the pressure signal sent by the detection module is smaller than a preset pressure signal (the pressure signal when the screw is tightened with the casing of the whole product) or light
  • the signal is greater than the preset optical signal (the optical signal when the screw is tightened with the casing of the whole product) or the resistance value is less than the preset resistance value (the resistance value when the screw is tightened with the casing of the whole product)
  • the monitoring module sends an opening signal to the damage module to control the damage module to start working.
  • step S3 the damage module damages the whole product when receiving the open signal. Its possible implementations are as follows:
  • the high voltage signal is applied across the low voltage capacitor disposed above the circuit or electronic component of the complete product to damage the circuit or electronic component under the capacitor; thereby destroying the board of the whole product
  • the card causes the illegal dismantled personnel to obtain a complete board and plagiarize the whole machine product by illegal means;
  • the key electronic components are destroyed, thereby destroying the key parts of the whole product, resulting in illegal disassembling. Personnel cannot obtain a complete board and copy the whole product by illegal means.
  • the damage module only destroys the whole product when receiving the open signal, and is in a non-working state when the open signal is not received.
  • the above-described damage module may be implemented by one or a combination of the above.
  • FIG. 4 is a schematic flow chart of a second embodiment of a method for tamper-proofing a whole product of the present invention.
  • the flow chart of the second embodiment of the whole product product tampering method according to the present invention after the step S3, the whole product product tampering method further comprises the following steps:
  • the monitoring module sends an alarm message to the alarm module according to the detection signal
  • the alarm release module acquires the alarm release information and sends the stop alarm information to the monitoring module;
  • the monitoring module stops outputting the alarm information when receiving the alarm stop information.
  • the detection signal received by the monitoring module is within a preset range (eg, the pressure signal sent by the detection module is less than a preset pressure signal or the optical signal is greater than a preset optical signal or the resistance value is less than a pre-
  • a preset range eg, the pressure signal sent by the detection module is less than a preset pressure signal or the optical signal is greater than a preset optical signal or the resistance value is less than a pre-
  • the resistance value is set to indicate that the whole product has been disassembled
  • an alarm message is sent to the alarm module, and the alarm information may be “Please do not disassemble illegally”, and the alarm module alarms according to the alarm information. Prompt illegal disassemblers should not try to disassemble.
  • an alarm release button may be disposed on the whole product, and when the alarm release button is pressed, the alarm release module acquires an alarm release information, and sends a stop alarm information to the monitoring module.
  • the monitoring module stops outputting the alarm information when receiving the alarm stop information.
  • the alarm module is prevented from being in an alarm state all the time.
  • the flow chart of the second embodiment of the whole product product tampering method according to the present invention after step S3, the whole product product tampering method comprises the above steps S4 and S5; in another embodiment according to the flow chart of the second embodiment of the whole product product tampering method according to the present invention, the whole product product tampering method after step S3 includes the above steps S6 and S7.
  • the invention adopts the above technical solution, and brings the technical effect that: the invention detects whether the whole product is disassembled by the detecting module, and while the whole product is tamper-proof, the monitoring module sends an opening signal to the damaged module according to the detection signal, The damage to the whole product is destroyed by the damaged module, thereby preventing others from plagiarizing the whole product.

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  • Computer Hardware Design (AREA)
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Abstract

一种整机产品防拆装置和方法。所述整机产品防拆装置包括检测模块(10)、监测模块(20)和损毁模块(30),所述整机产品包括多个机壳,整机产品的机壳之间通过连接件机械连接。通过检测模块(10)检测整机产品是否被拆开,在对整机产品防拆的同时,监测模块(20)根据监测信号发送开启信号至损毁模块(30),通过损毁模块(30)对整机产品进行损毁,进而防止他人对整机产品进行抄袭。

Description

整机产品防拆装置和方法
技术领域
本发明涉及电子信息技术领域,尤其涉及一种整机产品防拆装置和方法。
背景技术
随着电子信息技术的发展,整机产品在各个应用领域已经广泛应用,整机产品的设计和生产厂商也越来越多,因此为确保一款创新产品在市场竞争中取得竞争优势,需要设计整机产品的保护装置和方法,一是防止非专业人员对整机产品进行非法拆开导致产品不可用;二是防止竞争对手通过非法拆开整机产品进行抄袭,从而通过捷径生产类似产品,以非法手段占据市场。现有的整机产品防拆装置要么通过复杂的结构件来防止他人非法拆开,要么通过密闭的方式禁止他人非法拆开,虽然能够从一定程度上对整机产品起到保护作用,但即使他人通过非常手段拆开整机产品时,没有可行有效的装置和方法防止他人进行抄袭。
基于此有必要提供一种整机产品防拆装置和方法,以解决现有技术无法兼顾对整机产品防拆的同时,防止他人抄袭的问题。
发明内容
本发明的主要目的在于提供一种整机产品防拆装置和方法,以解决现有技术无法兼顾对整机产品防拆的同时,防止他人抄袭的问题。
为实现上述目的,本发明提供了一种整机产品防拆装置,所述整机产品防拆装置包括检测模块、监测模块和损毁模块,所述整机产品包括多个机壳,整机产品的机壳之间通过连接件机械连接,
所述检测模块,设置于所述连接件处,与所述监测模块电连接,用于检测整机产品的机壳是否被拆开,并将检测信号发送至所述监测模块;
所述监测模块,用于根据所述检测信号发送开启信号至所述损毁模块;
所述损毁模块,与所述监测模块电连接,用于在接收到所述开启信号时,损毁所述整机产品。
优选地,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
或者所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路;
或者所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
优选地,所述检测模块包括压力传感器,所述压力传感器设置于所述连接件与整机产品的机壳接触的位置,用于检测所述连接件与整机产品的机壳之间的压力信号,并将所述压力信号作为检测信号发送至所述监测模块;
或者,所述检测模块包括发光单元和光接收单元,所述连接件设置于所述发光单元和所述光接收单元之间,所述光接收单元用于接收所述发光单元发出的光信号,并将所述光信号作为检测信号发送至所述监测模块;
或者,所述检测模块包括电阻,所述电阻设置于所述连接件与整机产品的机壳接触的位置,用于检测所述连接件与整机产品的机壳接触时的电阻值,并将所述电阻值作为检测信号发送至所述监测模块。
优选地,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
或者所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路;
或者所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
进一步地,所述整机产品防拆装置还包括报警模块,所述报警模块与所述监测模块电连接,所述监测模块还用于根据所述检测信号发送报警信息至所述报警模块,所述报警模块用于根据所述报警信息报警。
优选地,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
或者所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路;
或者所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
进一步地,所述整机产品防拆装置还包括报警解除模块,所述报警解除模块与所述监测模块电连接,用于获取报警解除信息并发送停止报警信息至所述监测模块,所述监测模块在接收到所述报警停止信息时停止输出报警信息。
优选地,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
或者所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路;
或者所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
为实现上述目的,本发明还提供了一种整机产品防拆方法,所述整机产品防拆方法包括如下步骤:
S1:检测模块检测整机产品的机壳是否被拆开,并将检测信号发送至监测模块;
S2:监测模块根据所述检测信号发送开启信号至所述损毁模块;
S3:损毁模块在接收到所述开启信号时,损毁所述整机产品。
优选地,所述步骤S1具体为:
所述检测模块包括压力传感器,所述压力传感器设置于所述连接件与整机产品的机壳接触的位置,所述压力传感器检测所述连接件与整机产品的机壳之间的压力信号,并将所述压力信号作为检测信号发送至所述监测模块;
或者,所述检测模块包括发光单元和光接收单元,所述连接件设置于所述发光单元和所述光接收单元之间,所述光接收单元接收所述发光单元发出的光信号,并将所述光信号作为检测信号发送至所述监测模块;
或者,所述检测模块包括电阻,所述电阻设置于所述连接件与整机产品的机壳接触的位置,所述电阻检测所述连接件与整机产品的机壳接触时的电阻值,并将所述电阻值作为检测信号发送至所述监测模块。
进一步地,所述整机产品防拆方法还包括如下步骤:
S4:监测模块根据所述检测信号发送报警信息至所述报警模块;
S5:报警模块根据所述报警信息报警。
进一步地,所述整机产品防拆方法还包括如下步骤:
S6:报警解除模块获取报警解除信息并发送停止报警信息至所述监测模块;
S7:监测模块在接收到所述报警停止信息时停止输出报警信息。
优选地,所述步骤S3中,
损毁模块接收到所述开启信号时,通过下述中的一种方式或多种方式的组合损毁所述整机产品:
通过在设置于所述整机产品的电路或电子元器件上方的低电压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
或者通过在所述整机产品中被保护电路的两端施加高压信号,以损毁被保护电路;
或者通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
本发明采用上述技术方案,带来的技术效果为:本发明通过检测模块检测整机产品是否被拆开,在对整机产品防拆的同时,监测模块根据检测信号发送开启信号至损毁模块,通过损毁模块对整机产品进行损毁,进而防止他人对整机产品进行抄袭。
附图说明
图1为本发明整机产品防拆装置第一实施例结构示意图;
图2为本发明整机产品防拆装置第二实施例结构示意图;
图3为本发明整机产品防拆方法第一实施例流程示意图;
图4为本发明整机产品防拆方法第二实施例流程示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明的主要目的在于提供一种整机产品防拆装置和方法,以解决现有技术无法兼顾对整机产品防拆的同时,防止他人抄袭的问题。
为实现上述目的,本发明提供了一种整机产品防拆装置。
参照图1,如图1所示为本发明整机产品防拆装置第一实施例结构示意图,所述整机产品防拆装置包括检测模块10、监测模块20和损毁模块30,所述整机产品包括多个机壳,整机产品的机壳之间通过连接件机械连接,
所述检测模块10,设置于所述连接件处,与所述监测模块20电连接,用于检测整机产品的机壳是否被拆开,并将检测信号发送至所述监测模块20;
所述监测模块20,用于根据所述检测信号发送开启信号至所述损毁模块30;
所述损毁模块30,与所述监测模块20电连接,用于在接收到所述开启信号时,损毁所述整机产品。
在一个实施例中,本发明所述整机产品包括板卡和多个机壳,整机产品的机壳之间亦通过螺钉连接。具体地,所述板卡上包括有使所述整机产品正常工作的电路及其电子元器件,所述板卡通过螺钉固定于机壳上,整机产品的机壳之间通过螺钉连接构成整个整机产品。在其他实施例中,所述板卡与机壳之间以及机壳与机壳之间还可以通过其他连接件连接,例如螺柱。另外,还可以在机壳上设置导轨,板卡通过导轨固定于板卡上。板卡和机壳之间以及机壳之间无论采用何种连接件,当板卡被拆离机壳时或者机壳被拆开时,连接件与板卡或者连接件与机壳之间的机械状态都会放生相对变化。
具体地,根据上述整机产品的构成及连接关系,所述检测模块10优选设置于连接件处,当所述连接件被拆开时,所述检测模块检测到的检测信号会发生变化,当所述检测信号为预设的检测信号时,说明所述整机产品被拆开。所述检测模块发送检测信号至所述监测模块20,实时将所述检测信号的变化反馈至所述监测模块20。
具体地,当所述检测信号为预设的检测信号时,说明所述整机产品被非法拆开,所述监测模块20发送开启信号至所述损毁模块30以控制损毁模块30开启工作。
所述损毁模块30只有在接收到所述开启信号时,才损毁所述整机产品,即整机产品在未授权的情况下被非法拆开的情况下,为防止所述整机产品通过非正常手段被抄袭,通过毁损的方式保护整机产品。在没有接收到所述开启信号时,处于关闭状态。
本发明通过检测模块10检测整机产品是否被拆开,在对整机产品防拆的同时,监测模块20根据检测信号发送开启信号至损毁模块30,通过损毁模块30对整机产品进行损毁,进而防止他人对整机产品进行抄袭。
下面以连接件为螺钉为例,介绍本发明实施例中各模块的具体实施方式:
上述检测模块10,用于检测整机产品是否被拆开,并将检测信号发送至监测模块20,其可能的实施方式如下:
在其中一个实施例中,所述检测模块10包括压力传感器,所述压力传感器设置于所述螺钉与整机产品的机壳接触的位置,用于检测所述螺钉与整机产品的机壳之间的压力信号;所述压力传感器设置于板卡与机壳之间以及机壳与机壳之间连接的螺钉处,可在每个连接的螺钉处均设置一个或者在其中几个螺钉处设置,能够检测板卡被拆离机壳以及机壳被拆开即可,所述压力传感器可以设置于所述螺钉与整机产品的机壳接触的位置(螺钉上方与机壳接触的位置或螺钉下方与机壳接触的位置),用于检测所述螺钉与整机产品的机壳之间的压力信号,当整机产品正常工作时,所述压力信号为正常的压力信号,当检测到所述整机产品的机壳被拆开时,所述压力信号发生变化,压力信号会随着螺钉的松开而变小。所述检测模块10将所述压力信号作为检测信号发送至所述监测模块20,实时将所述压力信号的变化反馈至所述监测模块20。
在其中一个实施例中,所述检测模块10包括发光单元和光接收单元,所述螺钉设置于所述发光单元和所述光接收单元之间,所述光接收单元用于接收所述发光单元发出的光信号。优选地,所述发光单元和所述光接收单元设置为红外光发光单元和红外光接收单元。所述红外光发光单元在预设的周期内(例如1s)发射红外光信号,所述红外光接收单元被动接收所述红外光信号。所述整机产品未被拆开时,所述发光单元发出的光信号被所述螺钉挡住,所述光接收单元接收到的光信号最弱,当检测到所述整机产品的机壳被拆开时,所述光接收信号接收到的光信号随着所述螺钉的松开而变强(所述光信号因为没有被螺钉挡住,所述光接收单元接收到的光信号逐渐增多而变强),所述检测模块10将所述光信号作为检测信号发送至所述监测模块20,实时将所述光信号的变化反馈至所述监测模块20。
在其中一个实施例中,所述检测模块10包括电阻,所述电阻设置于所述螺钉与整机产品的机壳接触的位置,用于检测所述螺钉与整机产品的机壳接触时的电阻值;所述螺钉一般为导电体,机壳相当于地,因此,当所述螺钉与所述电阻接触时,相当于为所述电阻串联了一个新电阻,检测模块的输出电阻值因为与螺钉的接触而变大。当所述整机产品被拆开时,所述检测模块的输出电阻值随着所述螺钉的松开而变小,即检测模块10检测到输出电阻值变小时,说明所述整机产品的机壳被拆开。所述检测模块10将所述电阻值作为检测信号发送至所述监测模块20,实时将所述电阻值的变化反馈至所述监测模块20。
上述监测模块20,用于根据所述检测信号发送开启信号至所述损毁模块30。具体地,当所述检测信号为预设的检测信号时,例如所述检测模块10发送的压力信号小于预设的压力信号(所述螺钉与整机产品的机壳拧紧时的压力信号)或光信号大于预设的光信号(所述螺钉与整机产品的机壳拧紧时的光信号)或电阻值小于预设的电阻值(所述螺钉与整机产品的机壳拧紧时的电阻值),说明所述整机产品被非法拆开,所述监测模块20发送开启信号至所述损毁模块30以控制损毁模块30开启工作。
上述损毁模块30,用于当接收到所述开启信号时,损毁所述整机产品,其可能的实施方式如下:
在其中一个实施例中,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件,从而损毁整机产品的板卡,致使非法拆机人员无法获得完整的板卡,通过非法手段抄袭整机产品;
在其中一个实施例中,所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路,从而损毁整机产品的关键部分,致使非法拆机人员无法获得完整的板卡,通过非法手段抄袭整机产品;
在其中一个实施例中,所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件,从而损毁整机产品的关键部分,致使非法拆机人员无法获得完整的板卡,通过非法手段抄袭整机产品。
所述损毁模块30只有在接收到所述开启信号时,才损毁所述整机产品,在没有接收到所述开启信号时,处于非工作状态。在一些实施例中,上述损毁模块30可以通过上述中的一种方式或多种方式的组合实现。
参照图2,如图2所示为本发明整机产品防拆装置第二实施例结构示意图。基于本发明整机产品防拆装置第一实施例结构示意图,所述整机产品防拆装置还包括报警模块40,所述报警模块40与所述监测模块20电连接,所述监测模块20还用于根据所述检测信号发送报警信息至所述报警模块40,所述报警模块40用于根据所述报警信息报警。
具体地,当所述监测模块20接收到的所述检测信号在预设范围内(例如所述检测模块10发送的压力信号小于预设的压力信号或光信号大于预设的光信号或电阻值小于预设的电阻值,说明所述整机产品已经被拆开)时,发送报警信息至所述报警模块40,报警信息可以是“请不要非法拆机”,所述报警模块40根据所述报警信息报警,提示非法拆机者不要再尝试拆机。
所述整机产品防拆装置还包括报警解除模块50,所述报警解除模块50与所述监测模块20电连接,用于获取报警解除信息并发送停止报警信息至所述监测模块20,所述监测模块20在接收到所述报警停止信息时停止输出报警信息。
具体地,可以在所述整机产品上设置一报警解除按钮,当所述报警解除按钮被按下时,所述报警解除模块50获取到报警解除信息,并发送停止报警信息至所述监测模块20,所述监测模块20在接收到所述报警停止信息时停止输出报警信息。防止所述报警模块40一直处于报警状态。
为实现上述目的,本发明还提供了一种整机产品防拆方法。
参照图3,图3为本发明整机产品防拆方法第一实施例流程示意图。
所述整机产品防拆方法包括如下步骤:
S1:检测模块检测整机产品的机壳是否被拆开,并将检测信号发送至监测模块;
S2:监测模块根据所述检测信号发送开启信号至所述损毁模块;
S3:损毁模块在接收到所述开启信号时,损毁所述整机产品。
在一个实施例中,本发明所述整机产品包括板卡和多个机壳,整机产品的机壳之间亦通过螺钉连接。具体地,所述板卡上包括有使所述整机产品正常工作的电路及其电子元器件,所述板卡通过螺钉固定于机壳上,整机产品的机壳之间通过螺钉连接构成整个整机产品。在其他实施例中,所述板卡与机壳之间以及机壳与机壳之间还可以通过其他连接件连接,例如螺柱。另外,还可以在机壳上设置导轨,板卡通过导轨固定于板卡上。板卡和机壳之间以及机壳之间无论采用何种连接件,当板卡被拆离机壳时或者机壳被拆开时,连接件与板卡或者连接件与机壳之间的机械状态都会放生相对变化。
本发明所述整机产品防拆方法优选地基于上述优选的整机产品的结构连接关系实现。
S1:检测模块检测整机产品的机壳是否被拆开,并将检测信号发送至监测模块;具体地,根据上述整机产品的构成及连接关系,所述检测模块优选设置于连接件处,当所述连接件被拆开时,所述检测模块检测到的检测信号会发生变化,当所述检测信号为预设的检测信号时,说明所述整机产品被拆开。所述检测模块发送检测信号至所述监测模块,实时将所述检测信号的变化反馈至所述监测模块。
S2:监测模块根据所述检测信号发送开启信号至所述损毁模块;具体地,当所述检测信号为预设的检测信号时,说明所述整机产品被非法拆开,所述监测模块发送开启信号至所述损毁模块以控制损毁模块开启工作。
S3:损毁模块在接收到所述开启信号时,损毁所述整机产品。具体地,所述损毁模块只有在接收到所述开启信号时,才损毁所述整机产品,即整机产品在未授权的情况下被非法拆开的情况下,为防止所述整机产品通过非正常手段被抄袭,通过毁损的方式保护整机产品。在没有接收到所述开启信号时,处于关闭状态。
本发明通过检测模块检测整机产品是否被拆开,在对整机产品防拆的同时,监测模块根据检测信号发送开启信号至损毁模块,通过损毁模块对整机产品进行损毁,进而防止他人对整机产品进行抄袭。
下面以整机产品的连接件为螺钉为例,介绍本发明整机产品防拆方法实施例中各步骤的具体实施方式:
上述步骤S1:检测模块检测整机产品的机壳是否被拆开,并将检测信号发送至监测模块;
在其中一个实施例中,所述检测模块包括压力传感器,所述压力传感器设置于所述连接件与整机产品的机壳接触的位置,所述压力传感器设置于板卡与机壳之间以及机壳与机壳之间连接的螺钉处,所述压力传感器检测所述连接件与整机产品的机壳之间的压力信号,可在每个连接的螺钉处均设置一个或者在其中几个螺钉处设置,能够检测板卡被拆离机壳以及机壳被拆开即可,所述压力传感器可以设置于所述螺钉与整机产品的机壳接触的位置(螺钉上方与机壳接触的位置或螺钉下方与机壳接触的位置),用于检测所述螺钉与整机产品的机壳之间的压力信号,当整机产品正常工作时,所述压力信号为正常的压力信号,当检测到所述整机产品的机壳被拆开时,所述压力信号发生变化,压力信号会随着螺钉的松开而变小。所述检测模块将所述压力信号作为检测信号发送至所述监测模块,实时将所述压力信号的变化反馈至所述监测模块。
在其中一个实施例中,所述检测模块包括发光单元和光接收单元,所述连接件设置于所述发光单元和所述光接收单元之间,所述光接收单元用于接收所述发光单元发出的光信号,优选地,所述发光单元和所述光接收单元设置为红外光发光单元和红外光接收单元。所述红外光发光单元在预设的周期内(例如1s)发射红外光信号,所述红外光接收单元被动接收所述红外光信号。所述整机产品未被拆开时,所述发光单元发出的光信号被所述螺钉挡住,所述光接收单元接收到的光信号最弱,当检测到所述整机产品的机壳被拆开时,所述光接收信号接收到的光信号随着所述螺钉的松开而变强(所述光信号因为没有被螺钉挡住,所述光接收单元接收到的光信号逐渐增多而变强),所述检测模块将所述光信号作为检测信号发送至所述监测模块,实时将所述光信号的变化反馈至所述监测模块。
在其中一个实施例中,所述检测模块包括电阻,所述电阻设置于所述连接件与整机产品的机壳接触的位置,所述检测模块检测所述连接件与整机产品的机壳接触时的电阻值,所述螺钉一般为导电体,机壳相当于地,因此,当所述螺钉与所述电阻接触时,相当于为所述电阻串联了一个新电阻,检测模块的输出电阻值因为与螺钉的接触而变大。当所述整机产品被拆开时,所述检测模块的输出电阻值随着所述螺钉的松开而变小,即检测模块检测到输出电阻值变小时,说明所述整机产品的机壳被拆开。所述检测模块将所述电阻值作为检测信号发送至所述监测模块,实时将所述电阻值的变化反馈至所述监测模块。
上述步骤S2:监测模块根据所述检测信号发送开启信号至所述损毁模块;
具体地,当所述检测信号为预设的检测信号时,例如所述检测模块发送的压力信号小于预设的压力信号(所述螺钉与整机产品的机壳拧紧时的压力信号)或光信号大于预设的光信号(所述螺钉与整机产品的机壳拧紧时的光信号)或电阻值小于预设的电阻值(所述螺钉与整机产品的机壳拧紧时的电阻值),说明所述整机产品被非法拆开,所述监测模块发送开启信号至所述损毁模块以控制损毁模块开启工作。
上述步骤S3:损毁模块在接收到所述开启信号时,损毁所述整机产品。其可能的实施方式如下:
在其中一个实施例中,通过在设置于所述整机产品的电路或电子元器件上方的低电压电容两端施加高压信号以损毁电容下方的电路或电子元器件;从而损毁整机产品的板卡,致使非法拆机人员无法获得完整的板卡,通过非法手段抄袭整机产品;
在其中一个实施例中,通过在所述整机产品中被保护电路的两端施加高压信号,以损毁被保护电路,从而损毁整机产品的关键部分,致使非法拆机人员无法获得完整的板卡,通过非法手段抄袭整机产品;
在其中一个实施例中,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件,从而损毁整机产品的关键部分,致使非法拆机人员无法获得完整的板卡,通过非法手段抄袭整机产品。
所述损毁模块只有在接收到所述开启信号时,才损毁所述整机产品,在没有接收到所述开启信号时,处于非工作状态。在一些实施例中,上述损毁模块可以通过上述中的一种方式或多种方式的组合实现。
参照图4,图4为本发明整机产品防拆方法第二实施例流程示意图。
基于本发明整机产品防拆方法第二实施例流程示意图,在步骤S3之后所述整机产品防拆方法还包括如下步骤:
S4:监测模块根据所述检测信号发送报警信息至所述报警模块;
S5:报警模块根据所述报警信息报警;
S6:报警解除模块获取报警解除信息并发送停止报警信息至所述监测模块;
S7:监测模块在接收到所述报警停止信息时停止输出报警信息。
具体地,当所述监测模块接收到的所述检测信号在预设范围内(例如所述检测模块发送的压力信号小于预设的压力信号或光信号大于预设的光信号或电阻值小于预设的电阻值,说明所述整机产品已经被拆开)时,发送报警信息至所述报警模块,报警信息可以是“请不要非法拆机”,所述报警模块根据所述报警信息报警,提示非法拆机者不要再尝试拆机。
具体地,可以在所述整机产品上设置一报警解除按钮,当所述报警解除按钮被按下时,所述报警解除模块获取到报警解除信息,并发送停止报警信息至所述监测模块,所述监测模块在接收到所述报警停止信息时停止输出报警信息。防止所述报警模块一直处于报警状态。
在另外一个实施例中,所述基于本发明整机产品防拆方法第二实施例流程示意图,在步骤S3之后所述整机产品防拆方法包括上述步骤S4和步骤S5;在另外一个实施例中,所述基于本发明整机产品防拆方法第二实施例流程示意图,在步骤S3之后所述整机产品防拆方法包括上述步骤S6和步骤S7。
本发明采用上述技术方案,带来的技术效果为:本发明通过检测模块检测整机产品是否被拆开,在对整机产品防拆的同时,监测模块根据检测信号发送开启信号至损毁模块,通过损毁模块对整机产品进行损毁,进而防止他人对整机产品进行抄袭。
以上仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (13)

  1. 一种整机产品防拆装置,其特征在于,所述整机产品防拆装置包括检测模块、监测模块和损毁模块,所述整机产品包括多个机壳,整机产品的机壳之间通过连接件机械连接,
    所述检测模块,设置于所述连接件处,与所述监测模块电连接,用于检测整机产品的机壳是否被拆开,并将检测信号发送至所述监测模块;
    所述监测模块,用于根据所述检测信号发送开启信号至所述损毁模块;
    所述损毁模块,与所述监测模块电连接,用于在接收到所述开启信号时,损毁所述整机产品。
  2. 如权利要求1所述的整机产品防拆装置,其特征在于,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
    或者所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路;
    或者所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
  3. 如权利要求1所述的整机产品防拆装置,其特征在于,
    所述检测模块包括压力传感器,所述压力传感器设置于所述连接件与整机产品的机壳接触的位置,所述压力传感器用于检测所述连接件与整机产品的机壳之间的压力信号,并将所述压力信号作为检测信号发送至所述监测模块;
    或者,所述检测模块包括发光单元和光接收单元,所述连接件设置于所述发光单元和所述光接收单元之间,所述光接收单元用于接收所述发光单元发出的光信号,并将所述光信号作为检测信号发送至所述监测模块;
    或者,所述检测模块包括电阻,所述电阻设置于所述连接件与整机产品的机壳接触的位置,所述电阻用于检测所述连接件与整机产品的机壳接触时的电阻值,并将所述电阻值作为检测信号发送至所述监测模块。
  4. 如权利要求3所述的整机产品防拆装置,其特征在于,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
    或者所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路;
    或者所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
  5. 如权利要求1所述的整机产品防拆装置,其特征在于,所述整机产品防拆装置还包括报警模块,所述报警模块与所述监测模块电连接,所述监测模块还用于根据所述检测信号发送报警信息至所述报警模块,所述报警模块用于根据所述报警信息报警。
  6. 如权利要求5所述的整机产品防拆装置,其特征在于,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
    或者所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路;
    或者所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
  7. 如权利要求5所述的整机产品防拆装置,其特征在于,所述整机产品防拆装置还包括报警解除模块,所述报警解除模块与所述监测模块电连接,用于获取报警解除信息并发送停止报警信息至所述监测模块,所述监测模块在接收到所述报警停止信息时停止输出报警信息。
  8. 如权利要求7所述的整机产品防拆装置,其特征在于,所述损毁模块包括设置于所述整机产品的电路或电子元器件上方的低电压电容,通过在所述低压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
    或者所述损毁模块包括电压转换电路,用于将低电压转换为高电压,通过在所述整机产品中被保护电路的两端施加高电压,以损毁所述被保护电路;
    或者所述损毁模块包括损毁电源,所述损毁电源的电极极性与所述整机产品中关键电子元器件的电源极性相反,通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
  9. 一种整机产品防拆方法,其特征在于,所述整机产品防拆方法包括如下步骤:
    S1:检测模块检测整机产品的机壳是否被拆开,并将检测信号发送至监测模块;
    S2:监测模块根据所述检测信号发送开启信号至所述损毁模块;
    S3:损毁模块在接收到所述开启信号时,损毁所述整机产品。
  10. 如权利要求9所述的整机产品防拆方法,其特征在于,所述步骤S1具体为:
    所述检测模块包括压力传感器,所述压力传感器设置于所述连接件与整机产品的机壳接触的位置,所述压力传感器检测所述连接件与整机产品的机壳之间的压力信号,并将所述压力信号作为检测信号发送至所述监测模块;
    或者,所述检测模块包括发光单元和光接收单元,所述连接件设置于所述发光单元和所述光接收单元之间,所述光接收单元接收所述发光单元发出的光信号,并将所述光信号作为检测信号发送至所述监测模块;
    或者,所述检测模块包括电阻,所述电阻设置于所述连接件与整机产品的机壳接触的位置,所述电阻检测所述连接件与整机产品的机壳接触时的电阻值,并将所述电阻值作为检测信号发送至所述监测模块。
  11. 如权利要求9所述的整机产品防拆方法,其特征在于,所述整机产品防拆方法还包括如下步骤:
    S4:监测模块根据所述检测信号发送报警信息至所述报警模块;
    S5:报警模块根据所述报警信息报警。
  12. 如权利要求11所述的整机产品防拆方法,其特征在于,所述整机产品防拆方法还包括如下步骤:
    S6:报警解除模块获取报警解除信息并发送停止报警信息至所述监测模块;
    S7:监测模块在接收到所述报警停止信息时停止输出报警信息。
  13. 如权利要求10所述的整机产品防拆方法,其特征在于,所述步骤S3中,损毁模块接收到所述开启信号时,通过下述中的一种方式或多种方式的组合损毁所述整机产品:
    通过在设置于所述整机产品的电路或电子元器件上方的低电压电容两端施加高压信号以损毁电容下方的电路或电子元器件;
    或者通过在所述整机产品中被保护电路的两端施加高压信号,以损毁被保护电路;
    或者通过在所述整机产品中关键电子元器件的电源两端施加极性相反的电源,以损毁关键电子元器件。
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