A remote-controlled e-commerce information interaction device and method
By designing a remotely controllable e-commerce information interaction device, combined with a transmission and cleaning mechanism, the problems of the inability to remotely control the device and camera contamination were solved, realizing remote control and automatic cleaning functions.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUANGZHOU RANTION TECH CO LTD
- Filing Date
- 2021-04-22
- Publication Date
- 2026-04-17
AI Technical Summary
Existing e-commerce information interaction devices cannot be remotely controlled, and the surface of cameras is prone to accumulating impurities after prolonged use, resulting in unclear images.
A remotely controlled e-commerce information interaction device was designed, comprising a display screen, camera, controller, processor, signal receiver, and signal transmitter. It has a built-in vertically movable transmission mechanism and an automatic cleaning mechanism, which automatically cleans the camera by pressing a switch.
It enables remote control of e-commerce information interaction devices and uses an automatic cleaning mechanism to prevent impurities from adhering to the camera surface, thus ensuring camera clarity.
Smart Images

Figure CN113253839B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of e-commerce information, specifically to a remotely controlled e-commerce information interaction device and method. Background Technology
[0002] With the continuous development of the Internet, online shopping has become an important way of shopping in people's lives. When shopping through e-commerce platforms, e-commerce sellers need to use e-commerce information interaction devices to interact with the purchasing behavior of different users, thereby providing users with a high-quality shopping experience. However, e-commerce information interaction devices can only be controlled by the seller and cannot be remotely controlled.
[0003] Regarding the technical problems of e-commerce information interaction mentioned above, a search revealed a patent with the number CN201910605450.6: a remote-controlled e-commerce information interaction system. This remote-controlled e-commerce information interaction system can register the basic information and credit rating of shops and customers, and match them according to the information. It can also cater to customers' preferences based on their interests, thus satisfying the needs of both shops and customers and increasing the customer's purchase rate.
[0004] E-commerce information interaction devices need to capture the user's image through a camera. However, after prolonged use, impurities easily accumulate on the camera's surface. This type of e-commerce signal interaction system cannot automatically clean the camera's surface using the pressure of pressing the switch when the interaction device is turned on. Summary of the Invention
[0005] The purpose of this invention is to provide a remotely controlled e-commerce information interaction device and method.
[0006] To achieve the above objectives, the present invention provides the following technical solution:
[0007] A remotely controlled e-commerce information interaction device includes an interaction device. The inner side of the interaction device includes a display screen, a switch, a camera, a controller, a processor, a signal receiver, and a signal transmitter. The interaction device is equipped with a vertically movable transmission mechanism and an automatic cleaning mechanism inside.
[0008] As a further embodiment of the present invention: the controller, processor, signal receiver, and signal transmitter are all arranged inside the interactive device, the switch and the camera are arranged vertically opposite each other, the display screen is embedded in the inner side of the interactive device, and the display screen, switch, camera, controller, processor, signal receiver, and signal transmitter are all electrically connected to the power supply through power lines, and the signal receiver and signal transmitter are both wirelessly connected to the remote control terminal.
[0009] As a further aspect of the present invention: the transmission mechanism includes a connecting rod, an inclined plate, a sliding groove, a protruding strip, a top rod, a bracket, a sliding rod, a toothed groove, and a gear.
[0010] As a further embodiment of the present invention: the connecting rod and the inclined plate are arranged sequentially on the side of the switch, the inclined plate is set at an inclination of 45-90° at the upper end of the connecting rod, the sliding groove is embedded in the upper end of the inclined plate, the protrusion is slidably embedded in the interior of the sliding groove, and the protrusion, the top rod and the sliding rod are arranged vertically in sequence, and the bracket is arranged inside the interactive device.
[0011] As a further aspect of the present invention: the sliding rod passes through the inner side of the bracket. When the switch is pressed horizontally, the connecting rod slides horizontally, while the protrusion slides obliquely inside the sliding groove, and the sliding rod slides vertically. The gear rotates at an angle, and the tooth grooves are arranged sequentially on both sides of the sliding rod, and the gear and the tooth grooves rotate and engage.
[0012] As a further aspect of the present invention: the cleaning mechanism includes a rotating disk, a shaft, a toothed plate, a locking block, a push rod, and a rotating ball.
[0013] As a further embodiment of the present invention: the rotating disk is triangular in shape, and the side is semi-circular in shape. The toothed plates are arranged on one side of the semi-circular surface of the rotating disk, and the locking blocks are respectively arranged on the side of the toothed plates. The push rod is set at the upper end of the rotating disk and extends to both sides of the upper end of the camera. The shaft is installed on both sides of the bracket.
[0014] As a further aspect of the present invention: slide rails are embedded on both sides of the camera, a slider slides inside the slide rails, a folding plate is folded on the side of the slider near the display screen, and a scraper is embedded at the upper end of the folding plate.
[0015] As a further embodiment of the present invention: the upper ends of the slider and the push rod are fixed, the slide rails are all set in a semi-circular arc shape, the folding plate is folded in a wave shape, the lower end of the folding plate is spaced 1-2cm from the lower end of the slide rail, when the push rod moves vertically inclined, the slider slides inside the slide rail, and at the same time the folding plate moves vertically and folds, and the scraper cleans and scrapes the surface of the camera.
[0016] As a further aspect of the present invention: a remotely controlled e-commerce information interaction device, the method comprising the following steps:
[0017] S1: The signal receiver receives the signal from the remote control terminal. The signal receiver transmits the signal to the processor, which then transmits the signal to the signal transmitter. The signal transmitter then transmits the signal to the remote control terminal. Simultaneously, the processor transmits the signal command to the controller. The controller can then control the camera and the display screen in sequence.
[0018] S2: When the switch is pressed manually, the switch is pressed against the side of the connecting rod, and the connecting rod drives the inclined plate to move horizontally. Since the inclined plate is set at an angle, the inclined plate can drive the protrusion to slide vertically at an angle inside the slide groove.
[0019] S3: The protrusion can be pressed to the upper end of the push rod, the push rod drives the sliding rod to slide vertically, the tooth grooves on both sides of the sliding rod are vertically rotated and engaged with the gear, and then the gear rotates at an angle;
[0020] S4: When the gear rotates, the gear teeth rotate and engage with each other, and then the rotating disk rotates around the axis as the fulcrum. The direction of rotation of the rotating disk is opposite to the direction of rotation of the gear teeth. When the rotating disk rotates, it drives the push rod to rotate and move at an angle.
[0021] S5: By tilting the push rod, the push rod pushes the slider to slide inside the slide rail. The slider causes the upper end of the folding plate to be squeezed, and the folding plate is squeezed and folded downwards. In turn, the folding plate can drive the scraper to clean and scrape the surface of the camera.
[0022] Beneficial effects
[0023] 1. When the switch is manually pressed, the switch is pressed against the side of the connecting rod, and the connecting rod drives the inclined plate to move horizontally. Since the inclined plate is inclined, the inclined plate can drive the protrusion to slide vertically inside the sliding groove. Then the protrusion can press against the upper end of the top rod, and the top rod drives the sliding rod to slide vertically. The tooth grooves on both sides of the sliding rod are vertically rotated and engaged with the gear, and then the gear rotates at an angle.
[0024] 2. When the gear of the present invention rotates, the gear teeth rotate and engage with each other, and then the rotating disk rotates around the axis as the fulcrum, and the rotation direction of the rotating disk is opposite to the rotation direction of the gear teeth. When the rotating disk rotates, it drives the push rod to rotate at an angle. Through the angled movement of the push rod, the push rod pushes the slider to slide inside the slide rail. The slider drives the upper end of the folding plate to be squeezed, and the folding plate is squeezed and folded downward as a whole. Then the folding plate can drive the scraper to clean and scrape the surface of the camera, so that the interactive device can automatically clean the camera by using the pressure when the switch is pressed, avoiding the adhesion of impurities on the camera surface and causing unclear images.
[0025] 3. The signal receiver of the present invention receives the signal from the remote control terminal, transmits the signal to the processor, the processor transmits the signal to the signal transmitter, and transmits the signal to the remote control terminal through the signal transmitter. The processor simultaneously transmits the signal command to the controller, and the controller can control the camera and the display screen in sequence, so that the interactive device can achieve the effect of remote control. Attached Figure Description
[0026] Figure 1 This is a cross-sectional view of the overall structure of the present invention.
[0027] Figure 2 For the present invention Figure 1 An enlarged schematic diagram of the structure at point A.
[0028] Figure 3 This is a cross-sectional view of the interactive device structure of the present invention.
[0029] Figure 4 This is a schematic diagram of the switch side assembly of the present invention.
[0030] Figure 5 This is a schematic diagram of the locking structure of the present invention.
[0031] Figure 6 This is a schematic diagram of the rubber ring structure of the present invention.
[0032] Figure 7 This is a system diagram of the interactive device of the present invention.
[0033] Figure 1-7 In the middle: 1-Interactive device, 101-Display screen, 102-Switch, 103-Camera, 104-Controller, 105-Processor, 106-Signal receiver, 107-Signal transmitter, 2-Folding plate, 201-Scraper, 202-Slide rail, 203-Slider, 3-Linking rod, 301-Sloping plate, 302-Slide groove, 303-Protrusion, 304-Top rod, 4-Bracket, 401-Sliding rod, 402-Groove, 403-Gear, 5-Rotating disk, 501-Shaft, 502-Gear plate, 503-Card block, 504-Push rod, 505-Rotating sphere. Detailed Implementation
[0034] Please see Figure 1-7 In this embodiment of the invention,
[0035] Example 1: A remotely controlled e-commerce information interaction device and method, including an interaction device 1. The inner side of the interaction device 1 includes a display screen 101, a switch 102, a camera 103, a controller 104, a processor 105, a signal receiver 106, and a signal transmitter 107. The interaction device 1 is equipped with a vertically movable transmission mechanism and an automatic cleaning mechanism.
[0036] The controller 104, processor 105, signal receiver 106, and signal transmitter 107 are all arranged inside the interactive device 1. The switch 102 and the camera 103 are arranged vertically opposite each other. The display screen 101 is embedded in the inside of the interactive device 1. The display screen 101, switch 102, camera 103, controller 104, processor 105, signal receiver 106, and signal transmitter 107 are all electrically connected to the power supply through power cords. The signal receiver 106 and signal transmitter 107 are both wirelessly connected to the remote control terminal.
[0037] Wherein: the signal receiver 106 receives the signal from the remote control terminal, the signal receiver 106 transmits the signal to the inside of the processor 105, the processor 105 transmits the signal to the inside of the signal transmitter 107, and transmits the signal to the inside of the remote control terminal through the signal transmitter 107, while the processor 105 simultaneously transmits the signal command to the inside of the controller 104, and the controller 104 can control the camera 103 and the display screen 101 in sequence, so that the interactive device 1 can achieve the effect of remote control;
[0038] The transmission mechanism includes a connecting rod 3, an inclined plate 301, a sliding groove 302, a protruding strip 303, a push rod 304, a bracket 4, a sliding rod 401, a toothed groove 402, and a gear 403;
[0039] Link 3 and inclined plate 301 are arranged sequentially on the side of switch 102. Inclined plate 301 is set at the upper end of link 3 at an angle of 45-90°. Slide groove 302 is embedded in the upper end of inclined plate 301. Protrusion 303 is slidably embedded in the interior of slide groove 302. Protrusion 303, top rod 304 and sliding rod 401 are arranged vertically in sequence. Bracket 4 is arranged inside interactive device 1. Sliding rod 401 passes through the inner side of bracket 4. When switch 102 is pressed horizontally, link 3 slides horizontally. At the same time, protrusion 303 slides at an angle inside slide groove 302. Sliding rod 401 slides vertically. Gear 403 rotates at an angle. Gear groove 402 is arranged sequentially on both sides of sliding rod 401. Gear 403 and gear groove 402 rotate and engage.
[0040] When the switch 102 is manually pressed, the switch 102 is pressed against the side of the connecting rod 3, and the connecting rod 3 drives the inclined plate 301 to move horizontally. Since the inclined plate 301 is inclined, the inclined plate 301 can drive the protrusion 303 to slide vertically inside the slide groove 302. Then the protrusion 303 can be pressed against the upper end of the top rod 304. The top rod 304 drives the sliding rod 401 to slide vertically. The toothed grooves 402 on both sides of the sliding rod 401 are vertically rotated and engaged with the gear 403, and then the gear 403 rotates at an angle.
[0041] When the switch 102 is manually pressed, the switch 102 is pushed horizontally. While turning on the power, it is pressed against the side of the connecting rod 3, and the connecting rod 3 slides horizontally. Since the inclined plate 301 on one side of the connecting rod 3 is inclined, when the inclined plate 301 slides horizontally, the protrusion 303 slides vertically inside the slide groove 302. At the same time, the top rod 304 can slide vertically. The top rod 304 moves upward as a whole. The top rod 304 drives the sliding rod 401 to slide upward. When the sliding rod 401 slides, the tooth groove 402 and the gear 403 rotate and engage. Then, the gear drive tooth groove 402 drives the gear 403 to rotate at an angle.
[0042] Wherein: the inclined plate 301 is set at an inclination of 45-90°. By setting the inclined plate 301 at an inclination, when the inclined plate 301 slides horizontally, the inclined plate 301 drives the convex strip 303 to move vertically upward as a whole.
[0043] The bracket 4 is concave, and the gear 403 is installed on both sides of the upper end of the bracket 4. When the sliding rod 401 slides, the sliding rod 401 slides through the inner side of the bracket 4, which facilitates the rotational engagement of the gear 403 and the tooth groove 402.
[0044] The cleaning mechanism includes a rotating disk 5, a shaft 501, a toothed plate 502, a locking block 503, a push rod 504, and a rotating ball 505;
[0045] The rotating disk 5 is triangular in shape and semi-circular in shape on the side. The toothed plates 502 are arranged on one side of the semi-circular surface of the rotating disk 5, and the locking blocks 503 are arranged on the side of the toothed plates 502 respectively. The push rod 504 is located at the upper end of the rotating disk 5 and extends to both sides of the upper end of the camera 103. The shaft 501 is installed on both sides of the bracket 4.
[0046] When gear 403 rotates, toothed plate 403 and toothed plate 402 rotate and engage, and then rotating disk 5 rotates around axis 501 as fulcrum, and the rotation direction of rotating disk 5 is opposite to the rotation direction of toothed plate 403. When rotating disk 5 rotates, it drives push rod 504 to move in an inclined rotation.
[0047] When gear 403 rotates, gear 403 and toothed plate 402 rotate and engage. The rotation of toothed plate 402 can drive the rotating disk 5 to rotate. The rotating disk 5 can rotate around the axis 501 as the fulcrum. When the rotating disk 5 rotates, it drives the push rod 504 to rotate and move at an angle. Since the rotating disk 5 is triangular, the contact area between it and gear 403 is reduced by the triangle, which can quickly drive the push rod 504 to move.
[0048] Among them: the rotating disk 5 is triangular in shape, and the angle can be 45-120°. The triangular shape of the rotating disk 5 makes it easy to install the push rod 504 on the side of the rotating disk 5.
[0049] The locking block 503 is set in a semi-circular arc shape. The locking block 503 has a 180° semi-circular arc surface and is evenly distributed on the outer side of the arc surface of the rotating disk 5. The locking block 503 can increase the contact area between the toothed plate 502 and the gear 403.
[0050] Example 2: The difference between Example 2 and Example 1 is that slide rails 202 are embedded on both sides of the camera 103, and sliders 203 slide inside the slide rails 202. A folding plate 2 is folded on the side of the slider 203 near the display screen 101, and a scraper 201 is embedded at the upper end of the folding plate 2.
[0051] The upper ends of the slider 203 and the push rod 504 are fixed. The slide rails 202 are all set in a semi-circular arc shape. The folding plate 2 is folded in a wave shape. The lower end of the folding plate 2 is spaced 1-2 cm from the lower end of the slide rail 202. When the push rod 504 moves vertically, the slider 203 slides inside the slide rail 202. At the same time, the folding plate 2 moves vertically and folds. The scraper 201 cleans and scrapes the surface of the camera 103.
[0052] Specifically: by tilting the push rod 504, the push rod 504 pushes the slider 203 to slide inside the slide rail 202. The slider 203 causes the upper end of the folding plate 2 to be squeezed, and the folding plate 2 is squeezed and folded downwards as a whole. In turn, the folding plate 2 can drive the scraper 201 to clean and scrape the surface of the camera 103. Thus, this interactive device can use the pressure when pressing the switch 102 to automatically clean the camera 103, avoiding the adhesion of impurities on the surface of the camera 103 and causing unclear images.
[0053] When the push rod 504 tilts and slides, it pushes to the lower end of the slider 203. The slider 203 slides inside the slide rail 202. When the slider 203 slides, it presses against the upper end of the folding plate 2. At the same time, the folding plate 2 is pressed and folded downwards as a whole. The downward sliding of the folding plate 2 can drive the scraper 201 to slide vertically. When the scraper 201 slides, it can clean the surface of the camera 103.
[0054] Wherein: the slide rail 202 is set in a semi-circular arc shape, and the sliding direction of the slider 203 can be limited by the slide rail 202;
[0055] The folding plate 2 is designed in a wave shape, which makes it easy to fold the folding plate 2. At the same time, the folding plate 2 slides as a whole when folding, which makes it easy for the folding plate 2 to drive the scraper 201 to slide.
[0056] Example 3: A remotely controlled e-commerce information interaction device, the method comprising the following steps:
[0057] S1: Signal receiver 106 receives signals from the remote control terminal. Signal receiver 106 transmits the signals to the inside of processor 105. Processor 105 transmits the signals to the inside of signal transmitter 107 and transmits the signals to the inside of the remote control terminal through signal transmitter 107. Simultaneously, processor 105 transmits signal commands to the inside of controller 104. Controller 104 can control camera 103 and display screen 101 in sequence.
[0058] S2: When the switch 102 is pressed manually, the switch 102 is pressed against the side of the connecting rod 3, and the connecting rod 3 drives the inclined plate 301 to move horizontally. Since the inclined plate 301 is inclined, the inclined plate 301 can drive the protrusion 303 to slide vertically inside the slide groove 302.
[0059] S3: The protrusion 303 can be pressed to the upper end of the push rod 304. The push rod 304 drives the sliding rod 401 to slide vertically. The toothed grooves 402 on both sides of the sliding rod 401 are vertically rotated and engaged with the gear 403, and then the gear 403 rotates at an angle.
[0060] S4: When gear 403 rotates, toothed plate 403 and toothed plate 402 rotate and engage, and then rotating disk 5 rotates around axis 501 as fulcrum, and the rotation direction of rotating disk 5 is opposite to the rotation direction of toothed plate 403. When rotating disk 5 rotates, it drives push rod 504 to move in an inclined rotation.
[0061] S5: By tilting the push rod 504, the push rod 504 pushes the slider 203 to slide inside the slide rail 202. The slider 203 causes the upper end of the folding plate 2 to be squeezed, and the folding plate 2 is squeezed and folded downward as a whole. In this way, the folding plate 2 can drive the scraper 201 to clean and scrape the surface of the camera 103.
[0062] The above are merely preferred embodiments of the present invention. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of the present invention, and these should also be considered within the scope of protection of the present invention. These will not affect the effectiveness of the implementation of the present invention or the practicality of the patent.
Claims
1. A remote-controlled e-commerce information interaction device, comprising an interaction device (1), the inner side of the interaction device (1) comprising a display screen (101), a switch (102), a camera (103), a controller (104), a processor (105), a signal receiver (106) and a signal transmitter (107), characterized in that: The interactive device (1) is equipped with a vertically movable transmission mechanism and an automatic cleaning mechanism inside; The transmission mechanism includes a connecting rod (3), an inclined plate (301), a slide groove (302), a protrusion (303), a push rod (304), a bracket (4), a sliding rod (401), a toothed groove (402), and a gear (403). The connecting rod (3) and the inclined plate (301) are arranged sequentially on the side of the switch (102). The inclined plate (301) is set at an inclination of 45-90° at the upper end of the connecting rod (3). The slide groove (302) is embedded in the upper end of the inclined plate (301). The protrusion (303) is slidably embedded in the interior of the slide groove (302). The protrusion (303), the top rod (304), and the sliding rod (401) are arranged vertically in sequence. The bracket (4) is arranged inside the interactive device (1). The sliding rod (401) passes through the inner side of the bracket (4). The bracket (4) is set in a concave shape. The gear (403) is installed on both sides of the upper end of the bracket (4). The tooth groove (402) is arranged sequentially on both sides of the sliding rod (401). The gear (403) and the tooth groove (402) are rotated and engaged. The cleaning mechanism includes a rotating disk (5), a shaft (501), a toothed plate (502), a locking block (503), a push rod (504), and a rotating ball (505); The rotating disk (5) is triangular in shape and semi-circular in shape on the side. The toothed plates (502) are arranged on one side of the semi-circular surface of the rotating disk (5). The push rod (504) is located at the upper end of the rotating disk (5) and extends to both sides of the upper end of the camera (103). The shaft (501) is installed on both sides of the bracket (4). When the gear (403) rotates, the gear (403) and the toothed plate (502) rotate and engage, and then the rotating disk (5) rotates around the axis (501) as the fulcrum. When the rotating disk (5) rotates, it drives the push rod (504) to move in an inclined rotation. The camera (103) has slide rails (202) embedded on both sides, and a slider (203) slides inside the slide rails (202). The slider (203) is fixed to the upper end of the push rod (504). A folding plate (2) is folded on the side of the slider (203) near the display screen (101). A scraper (201) is embedded at the upper end of the folding plate (2). The scraper (201) is used to clean and scrape the surface of the camera (103). The slider (203) slides and causes the upper end of the folding plate (2) to be squeezed.
2. The remotely controlled electronic commerce information interaction device according to claim 1, characterized in that: The convex strip (303) has the same inclination angle as the inclined plate (301). 3.The remote-controlled electric business information interaction device according to claim 1, characterized in that: The cleaning mechanism includes a locking block (503), which is arranged in a semi-circular arc shape and is evenly distributed on the outer side of the arc surface of the rotating disk (5).
4. A remote-controlled e-commerce information interaction method, characterized in that: The method of using the remotely controlled e-commerce information interaction device according to claims 1-3 includes the following steps: S1: The signal receiver (106) receives the signal from the remote control terminal. The signal receiver (106) transmits the signal to the inside of the processor (105). The processor (105) transmits the signal to the inside of the signal transmitter (107) and transmits the signal to the inside of the remote control terminal through the signal transmitter (107). The processor (105) simultaneously transmits the signal command to the inside of the controller (104). The controller (104) controls the camera (103) and the display screen (101) in sequence. S2: When the switch (102) is pressed manually, the switch (102) is pressed against the side of the connecting rod (3), and the connecting rod (3) drives the inclined plate (301) to move horizontally. Since the inclined plate (301) is set at an angle, the inclined plate (301) drives the protrusion (303) to slide vertically at an angle inside the groove (302). S3: The protrusion (303) presses the push rod (304) to move upward, and the push rod (304) drives the sliding rod (401) to slide vertically. The tooth grooves (402) on both sides of the sliding rod (401) are vertically rotated and engaged with the gear (403), and then the gear (403) rotates at an angle. S4: When the gear (403) rotates, the gear (403) and the toothed plate (502) rotate and engage, and then the rotating disk (5) rotates around the axis (501) as the fulcrum, and the rotation direction of the rotating disk (5) is opposite to the rotation direction of the gear (403). When the rotating disk (5) rotates, it drives the push rod (504) to move in an inclined rotation. S5: By tilting the push rod (504), the push rod (504) pushes the slider (203) to slide inside the slide rail (202). The slider (203) causes the upper end of the folding plate (2) to be squeezed. The folding plate (2) is squeezed and folded downward as a whole. Then the folding plate (2) drives the scraper (201) to clean and scrape the surface of the camera (103).
Citation Information
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