CN210924666U - Face recognition payment terminal platform - Google Patents

Face recognition payment terminal platform Download PDF

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Publication number
CN210924666U
CN210924666U CN201922343703.5U CN201922343703U CN210924666U CN 210924666 U CN210924666 U CN 210924666U CN 201922343703 U CN201922343703 U CN 201922343703U CN 210924666 U CN210924666 U CN 210924666U
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China
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face recognition
telescopic rod
module
platform
payment terminal
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CN201922343703.5U
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邱晓慧
杨波
董晶
于鸽
渠韶光
孟飞宇
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Add Subtract Information Technology Shenzhen Co ltd
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Add Subtract Information Technology Shenzhen Co ltd
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Abstract

The application relates to a face recognition payment terminal platform, which comprises a base, a lifting support and a recognition processing part, wherein the lifting support is fixedly arranged on the base, and the recognition processing part is fixedly arranged at one end of the lifting support, which is far away from the base, so that the recognition processing part can adjust the height through the lifting support; the lifting support comprises an adjusting knob, a primary telescopic rod and a secondary telescopic rod; the adjusting knob comprises a rotating seat, a rotating rod and a damping gear, the rotating rod penetrates through the side wall of the secondary telescopic rod, the rotating seat is installed at one end, away from the cavity of the secondary telescopic rod, of the rotating rod, the damping gear is installed at one end, located inside the cavity of the secondary telescopic rod, of the rotating rod, and the rotating seat, the rotating rod and the damping gear rotate coaxially; the first-stage telescopic rod is provided with a rectangular through hole penetrating through the side wall of the first-stage telescopic rod, a rack is arranged on the inner wall of one side of the rectangular through hole along the height direction of the first-stage telescopic rod, and the rack is meshed with the damping gear; the recognition processing unit is used for performing face recognition. The height of the recognition processing part can be adjusted according to different heights of human bodies.

Description

Face recognition payment terminal platform
Technical Field
The utility model relates to a novel payment field especially relates to a face identification payment terminal platform.
Background
In recent years, the rapid development and the derivation of computer technology, the two-dimensional code recognition and reading and face recognition technology are gradually applied to the field of financial payment, the appearance of the face recognition payment terminal changes the original payment system and brings great convenience to the life of people, but the existing face recognition payment terminal has inconvenient conditions.
The height direction of the face recognition payment terminal at the present stage is not adjustable, so that a person with a high height needs to squat or bend down when using the face recognition payment terminal, and a person with a low height needs to be padded, and great inconvenience performance is brought to a payer.
Disclosure of Invention
In view of this, the present disclosure provides a face recognition payment terminal platform, which can adjust a height according to a height of a human body.
According to one aspect of the disclosure, a face recognition payment terminal platform is provided, which includes a base, a lifting bracket and a recognition processing part, wherein the lifting bracket is fixedly installed on the base, and the recognition processing part is fixedly installed at one end of the lifting bracket far away from the base, so that the recognition processing part can adjust the height through the lifting bracket;
the lifting support comprises an adjusting knob, a primary telescopic rod and a secondary telescopic rod;
one side end face of the second-stage telescopic rod is fixedly connected with the base, a cavity is formed in the second-stage telescopic rod, an opening is formed in the top end of the second-stage telescopic rod, the second-stage telescopic rod is placed into the first-stage telescopic rod along the opening of the second-stage telescopic rod, and the first-stage telescopic rod is connected with the second-stage telescopic rod in a sliding mode;
the adjusting knob comprises a rotating seat, a rotating rod and a damping gear, the rotating rod penetrates through the side wall of the secondary telescopic rod, the rotating seat is fixedly installed at one end, away from the cavity of the secondary telescopic rod, of the rotating rod, the damping gear is fixedly installed at one end, located inside the cavity of the secondary telescopic rod, of the rotating rod, and the rotating seat, the rotating rod and the damping gear rotate coaxially;
the first-stage telescopic rod is provided with a rectangular through hole penetrating through the side wall of the first-stage telescopic rod, a rack is arranged on the inner wall of one side of the rectangular through hole along the height direction of the first-stage telescopic rod, and the rack is meshed with the damping gear;
the recognition processing part is used for carrying out face recognition. In one possible implementation form of the method,
in one possible implementation manner, the recognition processing part comprises a security module, a main control module, a password keyboard, a face recognition camera and a code scanning camera;
the security module is used for carrying out encryption protection on payment information;
the main control module comprises a peripheral bus, a system bus, a bus bridge, a processor, a one-time programmable register and a memory;
the one-time programmable register and the memory are electrically connected with the processor through the system bus;
the system bus is in communication connection with the peripheral bus through the bus bridge, a first input end of the peripheral bus is electrically connected with a first MIPI interface module, a second input end of the peripheral bus is electrically connected with a USB interface module, and a third input end of the peripheral bus is electrically connected with an SPI interface module;
the output end of the face recognition camera is electrically connected with the signal input end of the first MIPI interface module, and the face recognition camera is suitable for collecting facial features of the payers;
the output end of the password keyboard is electrically connected with the signal input end of the USB interface module;
the signal output end of the safety module is electrically connected with the signal input end of the SPI module, and the code scanning camera is electrically connected with the input end of the safety module;
the code scanning camera is suitable for collecting and identifying two-dimensional code information of payment personnel, and the safety module is used for carrying out encryption protection on the payment information.
In a possible implementation manner, the security module includes a second MIPI interface module, and the code scanning camera is electrically connected to a signal input terminal of the second MIPI interface module.
In one possible implementation, the first MIPI interface module includes a first MIPI interface, and the second MIPI interface module includes a second MIPI interface;
the first MIPI interface is any one of an MIPI-CSI interface or an MIPI-DST interface;
the second MIPI interface is any one of a MIPI-CSI interface or a MIPI-DST interface.
In one possible implementation manner, the face recognition camera is configured with a brightness sensor, an infrared light supplement lamp and an optical filter;
the brightness sensor is arranged on the face recognition camera and is electrically connected with the face recognition camera for recognizing the current ambient brightness;
the infrared light supplement lamp is configured on the face recognition camera, is electrically connected with the face recognition camera and is used for being turned on when the brightness sensor detects that the current light brightness is lower than the preset brightness when the face recognition is performed;
the optical filter is fixedly connected to the lens of the face recognition camera.
In one possible implementation, the memory includes a read-only memory and a random access memory, and the cryptographic keyboard is provided with an independent security chip.
In a possible implementation manner, the system further comprises a trusted service management platform, and the security module further comprises a communication module;
and the communication module is in communication connection with the trusted service management platform.
In a possible implementation mode, the lifting support further comprises a connecting seat and a damping rotating shaft, and the lifting support further comprises a hinge seat;
the connecting seat is fixedly installed on one side, close to the lifting support, of the recognition processing part, the hinged seat is fixedly installed at the top end of the first-level telescopic rod, and the hinged seat is hinged to the connecting seat through the damping rotating shaft.
In a possible implementation manner, the base is plate-shaped, a password platform is arranged on the base, and the password keyboard is fixedly arranged on the password platform;
the password platform and the identification processing part are arranged on the same side.
In a possible implementation manner, four corners of the base are provided with round corners;
the password platform is square column shape, the top surface of password platform is the inclined plane, and by keeping away from the direction of one-level telescopic link sets up to being close to the direction tilt up of one-level telescopic link, password keyboard fixed mounting be in the top of password platform.
The face recognition payment terminal platform of the embodiment of the disclosure controls the adjustment of the height of the face recognition payment terminal platform by arranging the lifting support. The first-stage telescopic rod is controlled to slide in and slide out in the second-stage telescopic rod through the adjusting knob. The adjusting knob forms a linear motion mechanism of a gear rack through a damping gear arranged at one end extending into the cavity of the secondary telescopic rod and a rack on the rod body of the primary telescopic rod, the motion of the damping gear in the rotation direction is changed into the motion of the rack on a straight line, and therefore the height of the identification processing part is adjusted, and the damping gear is common knowledge of related technicians in the field. And a rotary seat is fixed at the other end of the rotary rod, so that the operation of the lifting support of the face recognition payment terminal platform in the embodiment of the disclosure is more convenient. The base is fixed at the bottom end of the lifting support, so that the lifting support is more stable, and the shaking condition can not occur when the rotating rotary seat is rotated. Therefore, the face recognition payment terminal platform not only enhances the use stability, but also enhances the use performance, and can adjust different heights according to people with different heights.
Other features and aspects of the present disclosure will become apparent from the following detailed description of exemplary embodiments, which proceeds with reference to the accompanying drawings.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate exemplary embodiments, features, and aspects of the disclosure and, together with the description, serve to explain the principles of the disclosure.
Fig. 1 shows a schematic structural diagram of a face recognition payment terminal platform according to an embodiment of the present disclosure;
fig. 2 illustrates a block diagram of an identification processing part of a face recognition payment terminal platform of an embodiment of the present disclosure;
fig. 3 illustrates a left side view of the recognition processing section of the face recognition payment terminal platform of the disclosed embodiment;
fig. 4 shows a background data interaction diagram of a face recognition payment terminal platform according to an embodiment of the present disclosure;
fig. 5 shows a payment flow diagram of a face recognition payment terminal platform according to an embodiment of the present disclosure.
Detailed Description
Various exemplary embodiments, features and aspects of the present disclosure will be described in detail below with reference to the accompanying drawings. In the drawings, like reference numbers can indicate functionally identical or similar elements. While the various aspects of the embodiments are presented in drawings, the drawings are not necessarily drawn to scale unless specifically indicated.
It should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like are used in the orientation or positional relationship indicated in the drawings for convenience in describing the invention or for simplicity in description, and do not indicate or imply that the device or element so indicated must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be considered as limiting the invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
The word "exemplary" is used exclusively herein to mean "serving as an example, embodiment, or illustration. Any embodiment described herein as "exemplary" is not necessarily to be construed as preferred or advantageous over other embodiments.
Furthermore, in the following detailed description, numerous specific details are set forth in order to provide a better understanding of the present disclosure. It will be understood by those skilled in the art that the present disclosure may be practiced without some of these specific details. In some instances, methods, means, elements and circuits that are well known to those skilled in the art have not been described in detail so as not to obscure the present disclosure.
Fig. 1 shows a schematic structural diagram of a face recognition payment terminal platform according to an embodiment of the present disclosure. Fig. 2 shows a block diagram of an identification processing part 600 of a face recognition payment terminal platform according to an embodiment of the present disclosure. Fig. 3 illustrates a left side view of the recognition processing part 600 of the face recognition payment terminal platform of the embodiment of the present disclosure. As shown in fig. 1, 2 or 3, the face recognition payment terminal platform includes a base 700, a lifting bracket 800 and a recognition processing unit 600. The lifting bracket 800 is fixedly installed on the base 700, and the recognition processing part 600 is fixedly installed at one end of the lifting bracket 800 far away from the base 700, so that the recognition processing part 600 can be adjusted in height by the lifting bracket 800. The entire apparatus performs face recognition by the recognition processing unit 600. The face recognition process can be implemented using existing face recognition techniques. Lifting support 800 includes adjust knob 810, one-level telescopic link 830 and secondary telescopic link 820, and a lateral surface of secondary telescopic link 820 and base 700 fixed connection have a cavity in the secondary telescopic link 820, and secondary telescopic link 820 top is equipped with the opening, and secondary telescopic link 820 is put into along the opening part of secondary telescopic link 820 to one-level telescopic link 830, one-level telescopic link 830 and secondary telescopic link 820 sliding connection. Adjust knob 810 includes roating seat, swing arm and damping gear, and the swing arm runs through the lateral wall setting of secondary telescopic link 820, and roating seat fixed mounting is in the one end that secondary telescopic link 820 cavity was kept away from to the swing arm, and damping gear fixed mounting is in the inside one end of secondary telescopic link 820 cavity at the swing arm, and roating seat, swing arm and the coaxial rotation of damping gear. The one-level telescopic link 830 is provided with a rectangular through hole penetrating through the side wall of the one-level telescopic link 830, and the rectangular through hole is provided with a rack along the inner wall of one side of the height direction of the one-level telescopic link 830, and the rack is engaged with the damping gear. The recognition processing unit 600 is used for face recognition.
The face recognition payment terminal platform of the embodiment of the present disclosure controls the adjustment of the height of the face recognition payment terminal platform by setting the lifting bracket 800. The adjusting knob 810 is used to control the sliding in and out of the primary telescopic rod 830 in the secondary telescopic rod 820. The adjusting knob 810 forms a linear motion mechanism of a gear rack by a damping gear provided at one end extending into the cavity of the secondary telescopic rod 820 and a rack on the shaft of the primary telescopic rod 830, changes the motion of the damping gear in the rotation direction into the motion of the rack in a straight line, and thereby adjusts the height of the recognition processing part 600, and the damping gear is common knowledge of those skilled in the art. And a rotary seat is fixed at the other end of the rotary rod, so that the operation of the lifting support 800 of the face recognition payment terminal platform in the embodiment of the disclosure is more convenient. The base 700 is fixed at the bottom end of the lifting support 800, so that the lifting support 800 is more stable, and the shaking condition can not occur when the rotating seat is rotated. Therefore, the face recognition payment terminal platform not only enhances the use stability, but also enhances the use performance, and can adjust different heights according to people with different heights.
In one possible implementation, the recognition processing unit 600 includes a security module 100, a main control module 200, a password keyboard 300, a face recognition camera 400, and a code scanning camera 500. The security module 100 is used for protecting payment information in an encryption manner. The main control module 200 includes a peripheral bus 210, a system bus 220, a bus bridge 230, a processor 240, a otp register 250, and a memory 260. The otp registers 250 and the memory 260 are electrically connected to the processor 240 through the system bus 220. The system bus 220 is communicatively connected to the peripheral bus 210 through the bus bridge 230, and a first input end of the peripheral bus 210 is electrically connected to the first MIPI interface module, a second input end of the peripheral bus 210 is electrically connected to the USB interface module, and a third input end of the peripheral bus 210 is electrically connected to the SPI interface module. The output end of the face recognition camera 400 is electrically connected with the signal input end of the first MIPI interface module, and the face recognition camera 400 is suitable for collecting facial features of the payment personnel. The output end of the password keyboard 300 is electrically connected with the signal input end of the USB interface module, and the password keyboard 300 is used for inputting key information after identifying the facial features of the payer. The signal output part of the security module 100 is electrically connected with the signal input part of the SPI module, and the code scanning camera 500 is electrically connected with the input part of the security module 100. Sweep a yard camera 500 and be applicable to the two-dimensional code information of gathering and discernment payment personnel, security module 100 is used for encrypting protection to payment information.
With face identification camera 400 with sweep a yard camera 500 integrated as an organic whole, constituted and swept a yard and the multi-functional payment terminal platform of face identification, the effectual multifunctionality and the high integration that have improved the payment terminal platform for payment is more practical and convenient. Meanwhile, the security module 100 enables the payment terminal platform to effectively protect the accuracy, integrity, authentication and confidentiality of the face living body detection result, the face recognition image data and the two-dimensional code data. Specifically, the security module 100 can provide a secure cryptographic algorithm service, and the main control module 200 works in cooperation, so that the security of payment is improved. Meanwhile, the safety module 100 can effectively reduce the safety risk introduced to the traditional payment transaction in the processes of face recognition and two-dimension code reading, and can resist malicious attacks to the terminal platform from a software layer and a hardware layer, so that the safety of terminal payment is integrally improved.
Here, it should be noted that the security module 100 and the main control module 200 can be implemented by using the technical means known to those skilled in the art, and the encryption of the security module 100 can also be performed by using the conventional encryption means.
As shown in fig. 1, 4 or 5, here, it should be noted that the embodiment of the present disclosure further includes a payment application module 3000, a payment device and a backend server 2000, where the payment application module 3000 includes a face recognition function sub-module 3010 and a payment function sub-module 3020. The face recognition function sub-module 3010 is provided with a face live detection algorithm. If the payment method is face recognition payment, the face recognition camera 400 captures face feature information (face image) of the payer, and transmits the face feature information of the payer to the face recognition sub-module 3010, and the face living body detection algorithm of the face recognition sub-module 3010 calculates the face feature information to obtain a living body percentage and a face pixel image. The calculated living body percentage and the face pixel image are transmitted to the security module 100 for performing the operation, here, it should be noted that the security module 100 includes a ciphertext calculation sub-module, the ciphertext calculation sub-module calculates the living body percentage and the face pixel image to obtain ciphertext data, transmits the ciphertext data to the payment application module 3000, and the payment application module 3000 transmits the ciphertext data to the background server 2000 for authentication, and transmits the authentication result to the payment application module 3000. If the ciphertext data is authenticated correctly, the calculation result is transmitted to the payment function sub-module 3020 of the payment application module 3000 for the payment process through further calculation by the payment device.
The payment mode is for scanning the code payment, then at first by scanning a yard camera 500 and gather payment personnel's two-dimensional code information to transmit the two-dimensional code information who gathers to security module 100, here, it should be pointed out that security module 100 is equipped with two-dimensional code discernment and interpretation submodule, and two-dimensional code discernment and interpretation submodule is used for discerning and interpreting the two-dimensional code. After the two-dimensional code recognition and interpretation module recognizes and interprets the two-dimensional code, the information after interpretation is transmitted to the payment application module 3000, the payment application module 3000 transmits the two-dimensional code interpretation result to the backend server 2000, and the backend server 2000 transmits the account information corresponding to the interpretation information to the payment function submodule 3020 of the payment application module 3000 for payment according to the interpretation information of the two-dimensional code interpretation result.
The background server 2000 is configured to perform identity verification, account authentication, and payment transaction confirmation according to the two-dimensional code or the face information uploaded by the payment application module 3000, and return transaction related information to the payment application module 3000.
In one possible implementation manner, the security module 100 includes a second MIPI interface module, and the code scanning camera 500 is electrically connected to a signal input terminal of the second MIPI interface module. Further, in a possible implementation manner, the first MIPI interface module includes a first MIPI interface, the second MIPI interface module includes a second MIPI interface, the first MIPI interface is one of a MIPI-CSI interface and a MIPI-DST interface, and the second MIPI interface is one of a MIPI-CSI interface and a MIPI-DST interface. Thus, the complexity and flexibility of design of connecting the code scanning camera 500 to the security module 100 is increased.
In one possible implementation, the face recognition camera 400 is configured with a brightness sensor, an infrared fill light, and a filter. The brightness sensor is arranged on the face recognition camera 400, and the brightness sensor is electrically connected with the face recognition camera 400 and used for recognizing the current ambient brightness of the face. The infrared light supplement lamp is arranged on the face recognition camera 400, is electrically connected with the face recognition camera 400, and is used for being turned on when the brightness sensor detects that the current light brightness is lower than the preset brightness when the face recognition is performed. The optical filter is fixedly connected to the lens of the face recognition camera 400.
In one possible implementation, the face recognition camera 400 is any one of a 3D structured light camera, a TOF camera, or an infrared camera. Here, it should be noted that, in order to reduce the cost, since the code scanning camera 500 collects two-dimensional code information, and the two-dimensional code is usually displayed on a mobile phone, the code scanning camera 500 may be a common camera with a light source.
In one possible implementation, the memory 260 includes a read-only memory 261 and a random access memory 262, and the keypad 300 is provided with a separate security chip. Here, it should be noted that the password keypad 300 is used for a payer to input a payment password to the payment terminal platform. Specifically, the face transaction password is safely input when the face payment is carried out, and the password keyboard 300 is a physical entity keyboard and a non-virtual keyboard. Password keyboard 300 needs to pass through the detection authentication of relevant departments of the financial industry, and during use, the password keyboard is in butt joint with a payment terminal platform, and the encryption protection key and the integrity protection password which are distributed to the password keyboard are directly obtained, after a payer inputs a face transaction password, encryption and integrity protection calculation are directly completed in password keyboard 300, and then the calculation is sent to a payment module, and the user password cannot appear in other environments containing payment APP in the plaintext. And password keypad 300 data interacts with the payment device data.
In a possible implementation manner, the face recognition payment terminal platform in the embodiment of the present disclosure further includes a trusted service management platform 1000, and the security module 100 further includes a communication module, where the communication module is in communication connection with the trusted service management platform 1000.
The trusted service management platform 1000 is configured to perform data interaction with the face recognition payment terminal platform through the secure channel, specifically, issue, register, and update management on ciphertext data and remaining applications generated by the security module 100, and protect data such as a face image and a two-dimensional code in a transaction. More specifically, the trusted service management platform 1000 may be deployed in a payment terminal platform background, or may be independently operated and maintained by an organization, and is mainly used for managing the security module 100 of the terminal platform and requiring data interaction with the payment APP background service. Before the face recognition payment terminal platform leaves the factory, the key is preset on the security module 100, and then a secure channel can be established between the trusted service management platform 1000 and the face recognition payment terminal platform. In the using process of the face recognition payment terminal platform, both the Applet application and the function key operated by the security module 100 can be issued to the security module 100 by the trusted service management platform 1000 through the secure channel, and meanwhile, the update and upgrade of the data are also completed by issuing through the trusted service management platform 1000. The key of the security module 100 managed by the trusted service management platform 1000 includes FaceKey and SKFace, when the face recognition payment terminal security module 100 completes registration at the trusted service management platform 1000, the trusted service management platform 1000 will have IDSE, FaceKey and PKFace corresponding to the security module 100, the trusted service management platform 1000 will transmit these data to the backend server 2000, and the backend server 2000 will use these data when the face recognition payment terminal platform performs face payment or two-dimensional code payment transaction, and thus it is used as the basis for verification.
In one possible implementation, the processor 240 is an ARM family processor 240, and the model number of the processor 240 is above the V7 model number. Further, in one possible implementation, the processor 240 is an ARM Cortex-A53, processor 240 is a MTK8735 model, and the processor 240 is in a quad configuration.
In one possible implementation, the recognition processing unit 600 is any one of a management information system cash register, an automatic vending machine, a POS terminal, or a tablet device.
As shown in fig. 1, 2 or 3, further, in a possible implementation, the identification processing part 600 is a tablet device, and in a possible implementation, the identification processing part 600 further includes a connection seat 900 and a damping rotation shaft, and the lifting bracket 800 further includes a hinge seat 840. Connecting seat 900 fixed mounting is at the back of panel computer body, and articulated seat 840 fixed mounting is on the top of one-level telescopic link 830, and articulated seat 840 and connecting seat 900 pass through damping pivot fixed connection, from this, the angular position of regulation panel computer body that can be free.
In a possible implementation manner, the base 700 is plate-shaped, the password platform 710 is disposed on the base 700, the password keyboard 300 is fixedly mounted on the password platform 710, and the password platform 710 and the recognition processing unit 600 are disposed on the same side.
Further, in one possible implementation, the four corners of the base 700 are provided with round corners. Password platform 710 is the square column body, and password platform 710's top surface is the inclined plane, and by keeping away from the direction that rises one-level telescopic link 830 to the direction tilt up setting that is close to one-level telescopic link 830, code keyboard fixed mounting is on password platform 710's top.
Here, it should be noted that the security module 100 and the main control module 200 are disposed inside the tablet pc body, the face recognition camera 400 and the code scanning camera 500 are disposed on the top of the panel where the display screen of the tablet pc body is located, and the password keyboard 300 is disposed on the top surface of the password platform 710.
Having described embodiments of the present disclosure, the foregoing description is intended to be exemplary, not exhaustive, and not limited to the disclosed embodiments. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen in order to best explain the principles of the embodiments, the practical application, or improvements made to the technology in the marketplace, or to enable others of ordinary skill in the art to understand the embodiments disclosed herein.

Claims (10)

1. The utility model provides a face identification payment terminal platform which characterized in that: the device comprises a base, a lifting support and a recognition processing part, wherein the lifting support is fixedly arranged on the base, and the recognition processing part is fixedly arranged at one end of the lifting support, which is far away from the base, so that the recognition processing part can adjust the height through the lifting support;
the lifting support comprises an adjusting knob, a primary telescopic rod and a secondary telescopic rod;
one side end face of the second-stage telescopic rod is fixedly connected with the base, a cavity is formed in the second-stage telescopic rod, an opening is formed in the top end of the second-stage telescopic rod, the second-stage telescopic rod is placed into the first-stage telescopic rod along the opening of the second-stage telescopic rod, and the first-stage telescopic rod is connected with the second-stage telescopic rod in a sliding mode;
the adjusting knob comprises a rotating seat, a rotating rod and a damping gear, the rotating rod penetrates through the side wall of the secondary telescopic rod, the rotating seat is fixedly installed at one end, away from the cavity of the secondary telescopic rod, of the rotating rod, the damping gear is fixedly installed at one end, located inside the cavity of the secondary telescopic rod, of the rotating rod, and the rotating seat, the rotating rod and the damping gear rotate coaxially;
the first-stage telescopic rod is provided with a rectangular through hole penetrating through the side wall of the first-stage telescopic rod, a rack is arranged on the inner wall of one side of the rectangular through hole along the height direction of the first-stage telescopic rod, and the rack is meshed with the damping gear;
the recognition processing part is used for carrying out face recognition.
2. The face recognition payment terminal platform of claim 1, wherein: the recognition processing part comprises a security module, a main control module, a password keyboard, a face recognition camera and a code scanning camera;
the security module is used for carrying out encryption protection on payment information;
the main control module comprises a peripheral bus, a system bus, a bus bridge, a processor, a one-time programmable register and a memory;
the one-time programmable register and the memory are electrically connected with the processor through the system bus;
the system bus is in communication connection with the peripheral bus through the bus bridge, a first input end of the peripheral bus is electrically connected with a first MIPI interface module, a second input end of the peripheral bus is electrically connected with a USB interface module, and a third input end of the peripheral bus is electrically connected with an SPI interface module;
the output end of the face recognition camera is electrically connected with the signal input end of the first MIPI interface module, and the face recognition camera is suitable for collecting facial features of the payers;
the output end of the password keyboard is electrically connected with the signal input end of the USB interface module;
the signal output end of the safety module is electrically connected with the signal input end of the SPI module, and the code scanning camera is electrically connected with the input end of the safety module;
the code scanning camera is suitable for collecting and identifying two-dimensional code information of payment personnel, and the safety module is used for carrying out encryption protection on the payment information.
3. The face recognition payment terminal platform of claim 2, wherein: the safety module comprises a second MIPI interface module, and the code scanning camera is electrically connected with a signal input end of the second MIPI interface module.
4. The face recognition payment terminal platform of claim 3, wherein: the first MIPI interface module comprises a first MIPI interface, and the second MIPI interface module comprises a second MIPI interface;
the first MIPI interface is any one of an MIPI-CSI interface or an MIPI-DST interface;
the second MIPI interface is any one of a MIPI-CSI interface or a MIPI-DST interface.
5. The face recognition payment terminal platform of claim 1, wherein: the face recognition camera is provided with a brightness sensor, an infrared light supplement lamp and an optical filter;
the brightness sensor is arranged on the face recognition camera and is electrically connected with the face recognition camera for recognizing the current ambient brightness;
the infrared light supplement lamp is configured on the face recognition camera, is electrically connected with the face recognition camera and is used for being turned on when the brightness sensor detects that the current light brightness is lower than the preset brightness when the face recognition is performed;
the optical filter is fixedly connected to the lens of the face recognition camera.
6. The face recognition payment terminal platform of claim 2, wherein: the memory comprises a read-only memory and a random access memory, and the password keyboard is provided with an independent security chip.
7. The face recognition payment terminal platform of claim 2, wherein: the system also comprises a trusted service management platform, and the security module also comprises a communication module;
and the communication module is in communication connection with the trusted service management platform.
8. The face recognition payment terminal platform of claim 1, wherein: the lifting support further comprises a hinge seat;
the connecting seat is fixedly installed on one side, close to the lifting support, of the recognition processing part, the hinged seat is fixedly installed at the top end of the first-level telescopic rod, and the hinged seat is hinged to the connecting seat through the damping rotating shaft.
9. The face recognition payment terminal platform of claim 2, wherein: the base is plate-shaped, a password platform is arranged on the base, and the password keyboard is fixedly arranged on the password platform;
the password platform and the identification processing part are arranged on the same side.
10. The face recognition payment terminal platform of claim 9, wherein: fillets are arranged at the four corners of the base;
the password platform is square column shape, the top surface of password platform is the inclined plane, and by keeping away from the direction of one-level telescopic link sets up to being close to the direction tilt up of one-level telescopic link, password keyboard fixed mounting be in the top of password platform.
CN201922343703.5U 2019-12-23 2019-12-23 Face recognition payment terminal platform Active CN210924666U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112820045A (en) * 2021-01-14 2021-05-18 深圳市易捷通科技股份有限公司 Man-machine interaction commercial payment terminal equipped with automatic lifting seat

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112820045A (en) * 2021-01-14 2021-05-18 深圳市易捷通科技股份有限公司 Man-machine interaction commercial payment terminal equipped with automatic lifting seat
CN112820045B (en) * 2021-01-14 2022-03-11 深圳市易捷通科技股份有限公司 Man-machine interaction commercial payment terminal equipped with automatic lifting seat

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