Information processing device
The enhanced security in information processing devices is achieved through a flexible printed circuit board with tamper detection patterns and a detection mechanism that addresses sophisticated fraudulent activities, ensuring the integrity of the control board and processed data.
Patent Information
- Application Number
- JP2022029297
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-02-28
- Publication Date
- 2025-11-12
- Estimated Expiration
- 2042-02-28
AI Technical Summary
Existing information processing devices, such as payment terminal devices, face increasing threats from sophisticated fraudulent activities, necessitating enhanced security measures beyond conventional tamper detection methods.
The device incorporates a control board housed within a housing, covered by a flexible printed circuit board with tamper detection patterns, and a detection mechanism that includes a contact-type detection switch and a rod-shaped member to detect unauthorized removal of the display, along with tamper detection circuits to handle various forms of tampering.
This configuration significantly enhances security by reliably detecting and responding to attempts to remove or tamper with the display, ensuring the integrity of the control board and processed data.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an information processing device for processing data whose security must be ensured, such as a payment terminal device. [Background technology]
[0002] Conventionally, payment terminal devices for cashless payments using credit cards and the like have been known (see, for example, Patent Document 1). The payment terminal device described in Patent Document 1 includes a display (display unit) on which an operation menu and the like are displayed, and a housing to which the display is attached. The display is a touch panel and is located outside the housing. A user of the payment terminal device described in Patent Document 1 performs a predetermined operation by pressing a predetermined display on the screen of the display.
[0003] Furthermore, conventionally, information processing devices such as card readers and electronic transaction devices are known (see, for example, Patent Document 2). The information processing device described in Patent Document 2 includes a housing (security case) composed of a housing case and a housing cover, and a board placed inside the housing. The board is an electronic component for processing security information (i.e., information that requires security assurance). A printed wiring pattern is formed on the inner surface of the housing to detect unauthorized disassembly of the housing or vandalism of the housing. The board placed inside the housing is covered on all sides by the printed wiring pattern. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Publication No. 2020-77082 [Patent Document 2] Japanese Patent Application Laid-Open No. 2009-93401 Summary of the Invention [Problem to be solved by the invention]
[0005] The present inventor has developed an information processing device equipped with a display such as a liquid crystal display, for processing data requiring security, such as the payment terminal device described in Patent Document 1. Because this information processing device processes data requiring security, a high level of safety (security) is required for this information processing device. To ensure high security in this information processing device, the present inventor has considered housing a control board for processing data requiring security in a housing, as in the information processing device described in Patent Document 2, and covering the control board with, for example, a flexible printed circuit board on which a tamper detection pattern for detecting fraudulent activities by criminals is formed. However, fraudulent activities by criminals are becoming more sophisticated every year, and there is a demand in the market for information processing devices with higher security.
[0006] Therefore, an object of the present invention is to provide an information processing device that is equipped with a display such as a liquid crystal display and processes data that requires security to be ensured, and that can further improve security. [Means for solving the problem]
[0007] In order to solve the above problems, the information processing device of the present invention comprises a control board, a housing in which the control board is housed, a display device arranged outside the housing and fixed to the housing, a flexible printed circuit board arranged inside the housing and covering one side of the control board, and a detection mechanism for detecting that the display device has been removed from the housing, wherein the side on which the control board is arranged relative to the flexible printed circuit board is defined as the first direction side and the side opposite the first direction side is defined as the second direction side, the flexible printed circuit board is formed in a box shape with an opening on the first direction side and is arranged on the first direction side of the display, the flexible printed circuit board has a tamper detection pattern formed on it to detect at least a break in its own wiring, and the detection mechanism comprises a contact-type detection switch and a rod-shaped member that presses the detection switch, and the rod-shaped member is pressed against the detection switch by the display device fixed to the housing.
[0008] The information processing device of the present invention includes a flexible printed circuit board that covers one side of the control board inside the housing and has a tamper detection pattern formed thereon, as well as a detection mechanism for detecting when the display device located outside the housing has been removed from the housing. Therefore, even if a criminal removes the display device from the housing in an attempt to commit fraud against the control board housed in the housing, the present invention makes it possible to execute predetermined abnormality processing based on the detection result of the detection mechanism. Therefore, the present invention makes it possible to further improve the security of the information processing device.
[0009] In addition, in the present invention, the detection mechanism includes a contact-type detection switch and a rod-shaped member that presses the detection switch, and the rod-shaped member is pressed against the detection switch by an indicator fixed to the housing. That is, in the present invention, the indicator fixed to the housing presses the contact-type detection switch via the rod-shaped member. Therefore, in the present invention, the detection mechanism can reliably detect that the indicator has been removed from the housing. In addition, in the present invention, because the indicator presses the detection switch via the rod-shaped member, it is possible to press the detection switch using the rod-shaped member even if the indicator and the detection switch are far apart.
[0010] In the present invention, for example, the control board comprises a second tamper detection pattern layer on which a second tamper detection pattern for detecting at least a break in the control board itself is formed, and a data signal pattern layer on which a data signal pattern for transmitting data signals whose security must be ensured is formed, and electronic components for processing data whose security must be ensured are mounted on the second direction side surface of the control board, and the second tamper detection pattern layer is arranged on the first direction side of the data signal pattern layer.
[0011] In the present invention, the control board is preferably equipped with a tamper detection circuit that electrically connects the flexible printed circuit board, the detection switch, and the indicator, and the tamper detection circuit preferably includes at least a first destruction detection circuit for detecting a break in the tamper detection pattern, a second destruction detection circuit for detecting destruction of the indicator, and a removal detection circuit for detecting removal of the indicator from the housing. With this configuration, even if a criminal destroys the indicator in an attempt to commit fraud against the control board housed in the housing, it is possible to execute a predetermined abnormality process based on the detection result of the second destruction detection circuit. This further enhances the security of the information processing device.
[0012] In the present invention, it is preferable that the detection switch is mounted on the second direction side of the control board and is covered by a flexible printed circuit board, and that the flexible printed circuit board and the housing have through holes formed therein through which the rod-shaped member is disposed. This configuration eliminates the need for a separate board for mounting the detection switch, thereby simplifying the configuration of the information processing device.
[0013] In the present invention, for example, the display is a liquid crystal display and a touch panel. Also, in the present invention, the information processing device includes, for example, an aerial imaging mechanism that projects an image displayed on a display surface of the display into space to form an aerial image, and a fingertip detection mechanism that detects the position of a fingertip of a user of the information processing device in an aerial image display area where the aerial image is displayed, and the fingertip detection mechanism may be electrically connected to the control board. [Effects of the Invention]
[0014] As described above, the present invention makes it possible to further improve the security of an information processing device that is equipped with a display such as a liquid crystal display and processes data that requires security to be ensured. [Brief explanation of the drawings]
[0015] [Figure 1] 1 is a perspective view of an information processing apparatus according to an embodiment of the present invention; [Figure 2] FIG. 2 is an exploded perspective view of the information processing device shown in FIG. [Figure 3] 3 is an exploded perspective view showing the information processing device shown in FIG. 2 from a different direction. FIG. [Figure 4] 2 is a diagram showing an example of an image displayed on the display shown in FIG. 1. FIG. [Figure 5] 3(A) is a cross-sectional view of a portion of the flexible printed circuit board shown in FIG. 2, and FIG. 3(B) is a cross-sectional view of a portion of the control board shown in FIG. 2. [Figure 6] 3 is a block diagram for explaining the configuration of a control board shown in FIG. 2. FIG. [Figure 7] FIG. 3 is an enlarged cross-sectional view for explaining the configuration of the detection mechanism shown in FIG. 2. [Figure 8] FIG. 10 is a schematic diagram illustrating a configuration of an information processing device according to another embodiment of the present invention. [Figure 9] 9 is a schematic diagram for explaining the configuration of an aerial image display mechanism used in the information processing device shown in FIG. 8. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0016] Hereinafter, an embodiment of the present invention will be described with reference to the drawings.
[0017] (Configuration of information processing device) FIG. 1 is a perspective view of an information processing device 1 according to an embodiment of the present invention. FIG. 2 is an exploded perspective view of the information processing device 1 shown in FIG. 1. FIG. 3 is an exploded perspective view showing the information processing device 1 shown in FIG. 2 from a different direction. FIG. 4 is a diagram showing an example of an image displayed on the display 4 shown in FIG. 1. FIG. 5(A) is a cross-sectional view of a portion of the flexible printed circuit board 5 shown in FIG. 2, and FIG. 5(B) is a cross-sectional view of a portion of the control board 2 shown in FIG. 2. FIG. 6 is a block diagram for explaining the configuration of the control board 2 shown in FIG. 2. FIG. 7 is an enlarged cross-sectional view for explaining the configuration of the detection mechanism 6 shown in FIG. 2.
[0018] The information processing device 1 of this embodiment is a payment terminal device for cashless payments, and processes data for which safety (security) must be ensured. The information processing device 1 has an information input function for inputting information such as a personal identification number. The information processing device 1 also has a control board 2 for processing data for which safety must be ensured, a housing 3 in which the control board 2 is housed, a display 4 disposed outside the housing 3 and fixed to the housing 3, a flexible printed circuit board 5 (hereinafter referred to as "FPC5") disposed inside the housing 3 and covering one side of the control board 2, and a detection mechanism 6 for detecting that the display 4 has been removed from the housing 3.
[0019] The control board 2 is a rigid board such as a glass epoxy board. The control board 2 is formed in a flat plate shape. Specifically, the control board 2 is formed in a rectangular flat plate shape. To the control board 2, for example, an antenna coil for contactless data communication with a card, a smartphone, or the like, an IC contact spring for contacting an external connection terminal of an IC contact formed on the card to communicate data, or a magnetic head for reading magnetic data recorded on the card is electrically connected.
[0020] In the following description, the thickness direction of the control board 2 is referred to as the front-rear direction, the direction perpendicular to the front-rear direction and parallel to the long sides of the rectangular control board 2 is referred to as the up-down direction, and the direction perpendicular to the front-rear direction and the up-down direction (i.e., the direction parallel to the short sides of the control board 2) is referred to as the left-right direction. Furthermore, the X1 direction side in FIG. 2, etc., which is one side of the front-rear direction, is referred to as the "front" side, the X2 direction side in FIG. 2, etc., which is the opposite side of the front, is referred to as the "rear" side, the Y1 direction side in FIG. 2, etc., which is one side of the left-right direction, is referred to as the "right" side, the Y2 direction side in FIG. 2, etc., which is the opposite side of the right side, is referred to as the "left" side, the Z1 direction side in FIG. 2, etc., which is one side of the up-down direction, is referred to as the "upper" side, and the Z2 direction side in FIG. 2, etc., which is the opposite side of the upper side, is referred to as the "lower" side.
[0021] The housing 3 is composed of a case body 9 formed in a box shape with an opening at the rear, and a cover member 10 that closes the opening of the case body 9. The case body 9 is formed in a flat rectangular box shape with a thin thickness in the front-to-rear direction, and the rear face of the case body 9 is open. When viewed from the front-to-rear direction, the outer shape of the case body 9 is rectangular. When viewed from the front-to-rear direction, the long sides of the case body 9 with a rectangular outer shape are parallel to the up-down direction, and the short sides of the case body 9 are parallel to the left-to-right direction. As shown in FIG. 2, a rectangular recess 9a that is recessed toward the rear is formed on the front face of the case body 9.
[0022] A circular through-hole 9b is formed in the front portion of the case body 9, penetrating the case body 9 in the front-rear direction. The through-holes 9b are formed in two locations, one on the upper right end side and one on the lower left end side of the front portion of the case body 9. The front end of the through-hole 9b is connected to the bottom surface of a recess 9a that recesses toward the rear. As shown in FIG. 3, a cylindrical protrusion 9c that protrudes toward the rear is formed on the rear surface of the front portion of the case body 9. The protrusion 9c is formed in the portion where the through-hole 9b is formed, and the inner periphery of the protrusion 9c forms part of the through-hole 9b.
[0023] The cover member 10 is formed in a flat plate shape. The cover member 10 is arranged so that the thickness direction of the cover member 10 coincides with the front-to-rear direction. Four cylindrical protrusions that protrude toward the front are formed on the front surface of the cover member 10. The control board 2 is fixed to the four protrusions with screws 11. In other words, the control board 2 is fixed to the cover member 10. The control board 2 is also fixed to the cover member 10 at four locations near the four corners of the control board 2. The rear surface of the control board 2 contacts the front end surfaces of the protrusions of the cover member 10. The cover member 10 is fixed to the case body 9 with screws 12. The cover member 10 is fixed to the case body 9 at four locations near the four corners of the case body 9. The front surface of the cover member 10 contacts the rear end surface of the case body 9.
[0024] The display 4 is a liquid crystal display (liquid crystal display). The display 4 is also a touch panel. That is, the display 4 has an input function for inputting information in addition to a display function. The display 4 is formed in the shape of a rectangular flat plate. The display 4 is arranged so that the thickness direction of the display 4 coincides with the front-to-rear direction, and the display 4 and the control board 2 are arranged parallel to each other. The display 4 is also arranged so that the direction of the long side of the display 4 coincides with the up-down direction (i.e., so that the direction of the short side of the display 4 coincides with the left-to-right direction). The display 4 is arranged in a recess 9a of the case body 9. The display 4 is fixed to the case body 9 with screws or double-sided tape (not shown).
[0025] The display 4 is electrically connected to the control board 2. A connector 13 for electrically connecting the display 4 to the control board 2 is mounted on the front surface of the control board 2. The display 4 constitutes the majority of the front surface of the information processing device 1. The front surface of the display 4 is a display surface that displays images. In this embodiment, a user standing in front of the information processing device 1 performs a predetermined operation on the front side of the information processing device 1 to perform cashless payment. For example, as shown in FIG. 4, the display 4 displays a keypad for inputting a personal identification number, and the user inputs the personal identification number using the keypad displayed on the display 4. In other words, the user inputs the personal identification number by sequentially pressing predetermined keys (numbers) on the keypad displayed on the display 4, which is a touch panel.
[0026] The FPC 5 is formed in a box shape that is open at the rear. Specifically, the FPC 5 is formed in a flat rectangular box shape that is thin in the front-to-rear direction, and the rear side of the FPC 5 is open. The FPC 5 is formed by bending and fixing a flexible, flat, film-like flexible printed circuit board into a rectangular box shape. When viewed from the front-to-rear direction, the outer shape of the FPC 5 is rectangular. When viewed from the front-to-rear direction, the long sides of the rectangular FPC 5 are parallel to the up-down direction, and the short sides of the FPC 5 are parallel to the left-to-right direction.
[0027] The FPC 5 is disposed in front of the control board 2 and covers the front surface of the control board 2. The rear end of the FPC 5 is in contact with the front surface of the control board 2. The FPC 5 is electrically connected to the control board 2. A connector 14 for electrically connecting the FPC 5 to the control board 2 is mounted on the front surface of the control board 2. The FPC 5 is housed in the housing 3 and disposed behind the display 4. A circular through-hole 5a is formed in the front portion of the FPC 5, through which the protrusion 9c of the case body 9 is inserted. In this embodiment, the rear side (X2 direction side) is the first direction side, which is the side on which the control board 2 is disposed relative to the FPC 5, and the front side (X1 direction side) is the second direction side, which is opposite the first direction side.
[0028] Tamper detection patterns P1 and P2 are formed on the FPC 5 (see FIG. 6). That is, the FPC 5 has a tamper detection pattern layer 17 (see FIG. 5(A)) on which the tamper detection patterns P1 and P2 are formed. For example, two tamper detection patterns P1 and P2 are formed on the FPC 5. The tamper detection patterns P1 and P2 are provided to detect a break in the tamper detection patterns P1 and P2 themselves and a short circuit between the tamper detection patterns P1 and P2.
[0029] The tamper detection pattern layer 17 is formed over the entire area of the FPC 5. The surface of the tamper detection pattern layer 17 is covered with an insulating coating (not shown). In the tamper detection pattern layer 17, a tamper detection pattern P1 and a tamper detection pattern P2 are arranged in pairs and irregularly routed. The tamper detection patterns P1 and P2 are also routed over the entire area of the tamper detection pattern layer 17. In other words, the tamper detection patterns P1 and P2 are routed over the entire area of the FPC 5.
[0030] The detection mechanisms 6 are arranged in two locations. That is, the information processing device 1 is equipped with two detection mechanisms 6. The detection mechanism 6 includes a contact-type detection switch 19 and a rod-shaped member (pin) 20 that presses the detection switch 19. The detection switch 19 is a push-button switch. That is, the detection switch 19 is a push-type detection switch. The detection switch 19 is mounted on the front surface of the control board 2. The detection switch 19 is mounted in two locations, on the upper right edge side and the lower left edge side, on the front surface of the control board 2. The detection switch 19 is covered by the FPC 5.
[0031] The detection switch 19 includes a cylindrical movable pin 19a that is movable in the front-rear direction. The movable pin 19a is arranged such that the axial direction of the movable pin 19a coincides with the front-rear direction. The movable pin 19a is biased toward the front. The rod-shaped member 20 is formed in a cylindrical shape. The rod-shaped member 20 is arranged such that the axial direction of the rod-shaped member 20 coincides with the front-rear direction. The rod-shaped member 20 is arranged in front of the movable pin 19a of the detection switch 19. The rear end surface of the rod-shaped member 20 contacts the front end surface of the movable pin 19a. A majority of the rod-shaped member 20 is arranged within the through-hole 9b of the case body 9. That is, the rod-shaped member 20 is arranged on the inner periphery of the through-hole 9b of the case body 9 and the through-hole 5a of the FPC 5. As described above, the inner periphery of the protrusion 9c of the case body 9 forms part of the through-hole 9b, and the protrusion 9c functions to hold the rod-shaped member 20.
[0032] The front end surface of the rod-shaped member 20 is in contact with the rear surface of the display device 4. That is, the rod-shaped member 20 is sandwiched between the movable pin 19a and the display device 4. The rod-shaped member 20 is pressed against the movable pin 19a by the display device 4 fixed to the housing 3. That is, the rod-shaped member 20 is pressed against the detection switch 19 by the display device 4 fixed to the housing 3. In this embodiment, when the display device 4 is fixed to the housing 3, as shown in FIG. 7(A), the movable pin 19a is pressed rearward by the rod-shaped member 20, and the detection switch 19 is in an ON state.
[0033] On the other hand, when the display device 4 is removed from the housing 3, as shown in Fig. 7(B), the movable pin 19a moves forward and the detection switch 19 switches to the OFF state. Therefore, it is possible to detect that the display device 4 has been removed from the housing 3 based on the detection result of the detection switch 19. Note that the detection switch 19 may be in the OFF state when the movable pin 19a is pressed backward, and the detection switch 19 may be in the ON state when the movable pin 19a moves forward.
[0034] An electronic component 21 for processing data that requires security is mounted on the front surface of the control board 2. The electronic component 21 is a CPU (Central Processing Unit) or the like. The control board 2 is a multi-layer board. The control board 2 includes a data signal pattern layer 22 on which a data signal pattern for transmitting a signal of data that requires security is formed, and a tamper detection pattern layer 23 on which tamper detection patterns P3 and P4 (see FIG. 6) are formed (see FIG. 5(B)). The data signal patterns are electrically connected to the electronic component 21. The tamper detection pattern layer 23 in this embodiment is a second tamper detection pattern layer.
[0035] The data signal pattern layer 22 and the tamper detection pattern layer 23 overlap in the thickness direction (i.e., the front-to-rear direction) of the control board 2. The tamper detection pattern layer 23 is disposed behind the data signal pattern layer 22. An insulating layer (not shown) is formed between the data signal pattern layer 22 and the tamper detection pattern layer 23. The surfaces of the data signal pattern layer 22 and the tamper detection pattern layer 23 are covered with an insulating coating (not shown).
[0036] The tamper detection pattern layer 23 is formed over the entire area of the control board 2. For example, two tamper detection patterns P3 and P4 are formed on the tamper detection pattern layer 23. The tamper detection patterns P3 and P4 are provided to detect a break in the tamper detection patterns P3 and P4 themselves and a short circuit between the tamper detection patterns P3 and P4. On the tamper detection pattern layer 23, the tamper detection patterns P3 and P4 are arranged in pairs and routed irregularly. Furthermore, the tamper detection patterns P3 and P4 are routed over the entire area of the tamper detection pattern layer 23. In other words, the tamper detection patterns P3 and P4 are routed over the entire area of the control board 2. The tamper detection patterns P3 and P4 in this embodiment are second tamper detection patterns.
[0037] As described above, electronic components 21 for processing data that requires security are mounted on the front surface of control board 2, and data signal pattern layer 22, on which data signal patterns for transmitting signals of data that require security are formed, is disposed in front of tamper detection pattern layer 23. In addition, the rear end of box-shaped FPC 5, on which tamper detection patterns P1 and P2 are formed all over, contacts the front surface of control board 2, and FPC 5 covers the front surface of control board 2. In this embodiment, the entire area of control board 2 that requires security is covered from both the front and rear sides by FPC 5 and tamper detection pattern layer 23, and is disposed within the area defined by FPC 5 and tamper detection pattern layer 23.
[0038] A tamper detection circuit 26 is mounted on the control board 2, which electrically connects the display 4, the FPC 5, and the detection switch 19. The tamper detection circuit 26 is mounted on the control board 2 on the front side of the tamper detection pattern layer 23. The tamper detection circuit 26 includes a destruction detection circuit 27 for detecting a break in the tamper detection patterns P3 and P4 and a short circuit between the tamper detection patterns P3 and P4, a destruction detection circuit 28 for detecting a break in the tamper detection patterns P1 and P2 and a short circuit between the tamper detection patterns P1 and P2, a removal detection circuit 29 for detecting that the display 4 has been removed from the housing 3, and a destruction detection circuit 30 for detecting that the display 4 has been destroyed.
[0039] Tamper detection patterns P3 and P4 are electrically connected to destruction detection circuit 27. Tamper detection patterns P1 and P2 are electrically connected to destruction detection circuit 28. Two detection switches 19 are electrically connected to removal detection circuit 29. An indicator 4 is electrically connected to destruction detection circuit 30. In this embodiment, destruction detection circuit 28 is a first destruction detection circuit, and destruction detection circuit 30 is a second destruction detection circuit.
[0040] In the information processing device 1, if a criminal attempts to commit a fraudulent act to illegally obtain data from the control board 2 and the tamper detection circuit 26 detects at least one of the following: a disconnection of tamper detection patterns P3 and P4, a short circuit between tamper detection pattern P3 and tamper detection pattern P4, a disconnection of tamper detection patterns P1 and P2, a short circuit between tamper detection pattern P1 and tamper detection pattern P2, the removal of the display 4 from the housing 3, or the destruction of the display 4, a predetermined abnormality process is executed, such as erasing the data stored in the control board 2 or rendering the control board 2 unusable.
[0041] (Main effect of this form) As described above, in this embodiment, information processing device 1 is provided with FPC 5 that covers the front surface of control board 2 inside housing 3 and on which tamper detection patterns P1 and P2 are formed, as well as detection mechanism 6 for detecting that display device 4, which is arranged outside housing 3, has been removed from housing 3. Furthermore, in this embodiment, tamper detection circuit 26 mounted on control board 2 is provided with destruction detection circuit 28 for detecting that tamper detection patterns P1 and P2 have been disconnected and that tamper detection pattern P1 has been short-circuited to tamper detection pattern P2, as well as removal detection circuit 29 for detecting that display device 4 has been removed from housing 3.
[0042] Furthermore, in this embodiment, if a criminal attempts to commit fraud on the control board 2 housed in the housing 3 and the tamper detection patterns P1 and P2 are disconnected or the tamper detection patterns P1 and P2 are short-circuited, a predetermined abnormality process is executed based on the detection result of the destruction detection circuit 28. In addition, when a criminal removes the display 4 from the housing 3 in an attempt to commit fraud on the control board 2 housed in the housing 3, a predetermined abnormality process is executed based on the detection result of the removal detection circuit 29. Therefore, in this embodiment, it is possible to further improve the safety of the information processing device 1.
[0043] In particular, in this embodiment, tamper detection circuit 26 includes destruction detection circuit 30 for detecting destruction of display 4, and even when a criminal destroys display 4 in an attempt to commit fraud against control board 2 housed in housing 3, predetermined abnormality processing is executed based on the detection result of destruction detection circuit 30. Therefore, in this embodiment, it is possible to further enhance the safety of information processing device 1.
[0044] In this embodiment, the detection mechanism 6 includes a contact-type detection switch 19 and a rod-shaped member 20 that presses the detection switch 19, and the rod-shaped member 20 is pressed against the detection switch 19 by the display device 4 fixed to the housing 3. That is, in this embodiment, the display device 4 fixed to the housing 3 presses the contact-type detection switch 19 via the rod-shaped member 20. Therefore, in this embodiment, the detection mechanism 6 can reliably detect that the display device 4 has been removed from the housing 3. Also, in this embodiment, because the display device 4 presses the detection switch 19 via the rod-shaped member 20, it is possible to press the detection switch 19 using the rod-shaped member 20 even if the distance between the display device 4 and the detection switch 19 in the front-rear direction is large.
[0045] In this embodiment, the detection switch 19 is mounted on the front surface of the control board 2. Therefore, in this embodiment, there is no need to provide a separate board for mounting the detection switch 19. Therefore, in this embodiment, it is possible to simplify the configuration of the information processing device 1.
[0046] (Example of modification of information processing device) Fig. 8 is a schematic diagram illustrating the configuration of an information processing device 41 according to another embodiment of the present invention. Fig. 9 is a schematic diagram illustrating the configuration of an aerial image display mechanism 43 used in information processing device 41 shown in Fig. 8.
[0047] In the embodiment described above, the display device 4 has an input function for inputting information in addition to a display function, but the display device 4 does not have to have an input function. In other words, the display device 4 does not have to be a touch panel. The following describes the configuration of the information processing device 41 when the display device 4 is not a touch panel.
[0048] Like the information processing device 1, the information processing device 41 is a payment terminal device for performing cashless payment. The information processing device 41 includes an aerial image display mechanism 43 that displays an aerial image in three-dimensional space, a fingertip detection mechanism 44 that detects the position of a fingertip of a user of the information processing device 41 in an aerial image display region R where the aerial image is displayed, and a housing 45 that accommodates the aerial image display mechanism 43 and the fingertip detection mechanism 44. Note that the aerial image display mechanism 43 is not shown in FIG. 8 .
[0049] The aerial image display mechanism 43 includes a display mechanism 51 having a display surface 51a for displaying an image, and an aerial imaging mechanism 52 for forming an aerial image by projecting the image displayed on the display surface 51a into space. The display mechanism 51 is composed of the control board 2, housing 3, display 4, FPC 5, detection mechanism 6, etc., which are configured as described above, and the display surface of the display 4 serves as the display surface 51a. The aerial imaging mechanism 52 includes a beam splitter 53 and a retroreflective material 54.
[0050] As shown in FIG. 9, the beam splitter 53 reflects a portion of the light emitted from the display surface 51a. The light reflected by the beam splitter 53 is incident on the retroreflector 54. The retroreflector 54 reflects the incident light back toward the beam splitter 53 in the same direction as the incident direction. The light reflected by the retroreflector 54 is transmitted through the beam splitter 53. An aerial image is formed in the aerial image display region R by the light transmitted through the beam splitter 53. As shown in FIG. 8, the housing 45 has a frame 57 surrounding the aerial image display region R. The inner periphery of the frame 57 forms an opening 57a that leads to the interior of the housing 45. The aerial image display region R is formed within the opening 57a. The aerial image display region R forms an input unit 58 where the user inputs a personal identification number using their fingertip.
[0051] Fingertip detection mechanism 44 is electrically connected to control board 2. As described above, fingertip detection mechanism 44 detects the position of the user's fingertip in aerial image display region R. That is, input unit 58 is included in the detection range of fingertip detection mechanism 44. Fingertip detection mechanism 44 is composed of first detection mechanism 60 and second detection mechanism 61. First detection mechanism 60 is a transmissive optical sensor having a light-emitting unit 62 and a light-receiving unit 63 arranged to sandwich aerial image display region R. Second detection mechanism 61 is a transmissive optical sensor having a light-emitting unit 64 and a light-receiving unit 65 arranged to sandwich aerial image display region R in a direction perpendicular to the direction in which light-emitting unit 62 and light-receiving unit 63 face each other.
[0052] First detection mechanism 60 and second detection mechanism 61 are, for example, infrared sensors. First detection mechanism 60 and second detection mechanism 61 are also line sensors. Light-emitting units 62 and 64 and light-receiving units 63 and 65 are disposed on the sides of opening 57a. When the user's fingertip is placed in a predetermined area including aerial image display region R (i.e., a predetermined area including input unit 58), infrared light is no longer incident on a specific light-receiving element among the multiple light-receiving elements of light-receiving units 63 and 65. Therefore, fingertip detection mechanism 44 detects the position of the user's fingertip in the predetermined area including aerial image display region R.
[0053] In the information processing device 41, the display mechanism 51 displays a keypad for inputting a PIN number on the display surface 51a. That is, the display device 4 displays a keypad as shown in FIG. 4. The aerial imaging mechanism 52 displays the keypad displayed on the display surface 51a as an aerial image in the aerial image display region R. The user inputs the PIN number using the keypad displayed in the aerial image display region R. Specifically, the user inputs the PIN number by sequentially moving their fingertip to the positions of predetermined keys (numbers) on the keypad displayed in the aerial image display region R. That is, the user inputs the PIN number by sequentially moving their fingertip on the input unit 58.
[0054] The position of the user's fingertip on the input unit 58 is detected by the fingertip detection mechanism 44. The fingertip position data detected by the fingertip detection mechanism 44 is transmitted to the control board 2. The control board 2 recognizes the PIN number input on the input unit 58 based on the detection result of the fingertip detection mechanism 44. In this modified example, the same effects as those of the above-mentioned embodiment can be obtained. Note that the first detection mechanism 60 and the second detection mechanism 61 may be reflective optical sensors that include a light-emitting unit that emits infrared light and a light-receiving unit that receives the infrared light emitted from the light-emitting unit and reflected by the user's fingertip.
[0055] (Other embodiments) The above-described embodiment is one example of a preferred embodiment of the present invention, but the present invention is not limited to this embodiment and various modifications can be made without departing from the spirit of the present invention.
[0056] In the above-described embodiment, the number of tamper detection patterns formed on the FPC 5 may be one, or may be three or more. When the number of tamper detection patterns formed on the FPC 5 is one, the tamper detection pattern is provided only to detect a disconnection of the tamper detection pattern itself. Similarly, in the above-described embodiment, the number of tamper detection patterns formed on the tamper detection pattern layer 23 of the control board 2 may be one, or may be three or more. When the number of tamper detection patterns formed on the tamper detection pattern layer 23 is one, the tamper detection pattern is provided only to detect a disconnection of the tamper detection pattern itself.
[0057] In the above-described embodiment, the tamper detection pattern layer 23 may not be formed on the control board 2. In this case, for example, a flexible printed circuit board on which a tamper detection pattern is formed is disposed between the rear surface of the control board 2 and the front surface of the cover member 10, and this flexible printed circuit board covers the rear surface of the control board 2. Also, in the above-described embodiment, the information input on the display 4, which is a touch panel, may be information other than a personal identification number. For example, the user's signature may be input on the display 4. In this case, an image corresponding to the input information is displayed on the display 4.
[0058] In the above-described embodiment, the display 4 may be a display other than a liquid crystal display. For example, the display 4 may be an organic EL display (organic EL display). In addition, in the above-described embodiment, the detection switch 19 includes the movable pin 19a, but the detection switch 19 may be a membrane switch (sheet switch) that does not include the movable pin 19a. The detection switch 19 may be a lever-type detection switch. Furthermore, in the above-described embodiment, the rod-shaped member 20 may be formed in a shape other than a cylindrical shape. For example, the rod-shaped member 20 may be formed in a rectangular pillar shape. In addition, in the above-described embodiment, the number of detection mechanisms 6 included in the information processing device 1 may be one, or may be three or more.
[0059] In the above-described embodiment, the detection switch 19 does not have to be mounted on the control board 2. In this case, a separate board is provided on which the detection switch 19 is mounted. In addition, in the above-described embodiment, the tamper detection circuit 26 does not have to include the destruction detection circuit 30. In this case, even if the display 4 is destroyed, the control board 2 does not recognize that the display 4 has been destroyed. In addition, in the above-described embodiment, the control board 2 may be formed in the shape of a square flat plate, or in the shape of a flat plate other than a rectangle or square. In addition, in the above-described embodiment, the control board 2 may be a flexible printed circuit board. In addition, the information processing device 1 to which the present invention is applied may be a device other than a payment terminal device. [Explanation of symbols]
[0060] 1, 41 Information processing equipment 2 Control board 3. Housing 4 Display 5 FPC (Flexible Printed Circuit) 5a through hole 6. Detection mechanism 9b Through hole 19 Detection switch 20 Rod-shaped member 21 Electronic Components 22 Data signal pattern layer 23 Tamper detection pattern layer (second tamper detection pattern layer) 26 Tamper detection circuit 28 Breakdown detection circuit (first breakdown detection circuit) 29 Removal detection circuit 30 Breakdown detection circuit (second breakdown detection circuit) 44 Fingertip detection mechanism 51a Display surface 52 Aerial imaging mechanism P1, P2 tamper detection patterns P3, P4 tamper detection pattern (second tamper detection pattern) R Aerial image display area X1 2nd direction side X2 1st direction side
Claims
1. a control board, a housing that houses the control board, a display that is disposed outside the housing and fixed to the housing, a flexible printed circuit board that is disposed inside the housing and covers one surface of the control board, and a detection mechanism that detects that the display has been removed from the housing; When the side of the flexible printed circuit board on which the control board is disposed is defined as a first direction side, and the side opposite to the first direction side is defined as a second direction side, the flexible printed circuit board is formed in a box shape that is open on the first direction side, and is disposed on the first direction side of the display device, The flexible printed circuit board is formed with a tamper detection pattern for detecting at least disconnection of the flexible printed circuit board itself, The detection mechanism includes a contact-type detection switch and a rod-shaped member that presses the detection switch, The information processing apparatus is characterized in that the rod-shaped member is pressed against the detection switch by the display device fixed to the housing.
2. the control board includes a second tamper detection pattern layer on which a second tamper detection pattern for detecting at least a disconnection of the control board itself is formed, and a data signal pattern layer on which a data signal pattern for transmitting a data signal that requires security is formed, an electronic component for processing data that requires security is mounted on the surface of the control board facing the second direction; 2. The information processing device according to claim 1, wherein the second tamper detection pattern layer is disposed closer to the first direction than the data signal pattern layer.
3. a tamper detection circuit is mounted on the control board, and the flexible printed circuit board, the detection switch, and the display are electrically connected to each other; An information processing device as described in claim 1 or 2, characterized in that the tamper detection circuit includes at least a first destruction detection circuit for detecting that the tamper detection pattern has been broken, a second destruction detection circuit for detecting that the display has been destroyed, and a removal detection circuit for detecting that the display has been removed from the housing.
4. the detection switch is mounted on the surface of the control board on the second direction side and is covered by the flexible printed circuit board; 4. The information processing apparatus according to claim 1, wherein the flexible printed circuit board and the housing have through holes formed therein, the through holes being disposed on the inner periphery side of the rod-shaped members.
5. 5. The information processing apparatus according to claim 1, wherein the display is a liquid crystal display and a touch panel.
6. an aerial image formation mechanism that forms an aerial image by projecting an image displayed on a display surface of the display device into space, and a fingertip detection mechanism that detects the position of a fingertip of a user of the information processing device in an aerial image display area where the aerial image is displayed; 5. The information processing apparatus according to claim 1, wherein the fingertip detection mechanism is electrically connected to the control board.
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