Micro-control detection device using electronic technology

By disassembling the micro-controlled detection device into detachable small parts and a retractable height detection device, the problems of inconvenient handling and easy impact of existing devices are solved, achieving convenient handling and protection.

CN121933108APending Publication Date: 2026-04-28SICHUAN VOCATIONAL & TECHN COLLEGE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SICHUAN VOCATIONAL & TECHN COLLEGE
Filing Date
2023-12-06
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing micro-controlled detection devices require ultrasonic sensors to be placed at a high position, resulting in tall instruments that are inconvenient to move and prone to damage.

Method used

The micro-controlled detection device is broken down into several small components, including a weight scale, a support frame, and a micro-controlled detection body. The detachable support frame and embedded block design facilitate disassembly and assembly, and the retractable height detection device reduces the area occupied.

Benefits of technology

It enables convenient handling and prevents instruments from being bumped or knocked over. The detachable design and retractable structure simplify the handling process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a micro-control detection device using an electronic technology, the structure of the micro-control detection device comprises a weighing scale, a power line, two support frames and a micro-control detection main body, the rear end of the weighing scale is fixedly connected with the power line, the two support frames are mutually spliced, the support frame at the bottom is clamped with the top of the weighing scale, and the micro-control detection main body is fixedly connected with the power line. The micro-control detection main body is spliced to the tops of the supporting frames, the weighing scale comprises a supporting seat, a supporting clamping block, supporting legs, a weight sensor and the supporting frames, the rear end of the supporting seat is connected with a power line, and the supporting clamping block is arranged on the rear side of the top of the supporting seat. And then the micro-control detection main body is detached from the end face of the supporting frame, so that an instrument with a relatively large size can be detached into small parts, and the instrument is convenient to carry.
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Description

Technical Field

[0001] This invention relates to the field of electronic technology and equipment technology, specifically a micro-controlled detection device utilizing electronic technology. Background Technology

[0002] Many aspects of modern society rely on electronic technology, and micro-control detection devices are no exception. Micro-control detectors use electronic technology to set relevant parameters and then use electronic technology to feed back and display the collected data. Existing electronic scales are a type of micro-control detection device. They use weight sensors to detect weight, then use electronic technology to collect the detected data and feed it back and display it, enabling precise micro-control detection of weight. There are also automatic height detectors that use ultrasound to detect weight. Both of these devices use a combination of micro-control detection devices and electronic technology to detect and display height and weight.

[0003] Based on the above findings of the inventors, the existing micro-controlled detection device using electronic technology has the following shortcomings. For example, the existing height and weight detectors are all assembled as one unit. Since height is detected by ultrasound, the ultrasonic sensor needs to be placed at a high position to detect people of different heights, which makes the entire instrument quite tall. When moving the instrument, its height makes it easy to bump into things, and it is inconvenient to move it with the help of multiple people. Summary of the Invention

[0004] To address the above problems, the present invention provides a micro-controlled detection device utilizing electronic technology.

[0005] To achieve the above objectives, the present invention is implemented through the following technical solution: a micro-controlled detection device utilizing electronic technology, the structure of which includes a weighing scale, a power cord, a support frame, and a micro-controlled detection body. The rear end of the weighing scale is fixedly connected to the power cord. Two support frames are provided, and the two support frames are spliced ​​together. The bottom support frame is engaged with the top of the weighing scale. The micro-controlled detection body is spliced ​​to the top of the support frame.

[0006] Furthermore, the scale includes a support base, a support block, support feet, weight sensors, and a support frame. The rear end of the support base is connected to a power cord, and a support block is provided on the top rear side of the support base. The support block engages with the bottom of the support frame. There are four support feet, which are respectively located on the four bottom sides of the support base. There are four weight sensors, which are respectively installed on the four top sides of the support base. The inside of the support frame is fixedly connected to the top of the four weight sensors. The end face of the support block matches the bottom of the support frame.

[0007] Furthermore, the support frame consists of a support body, an embedding groove, an embedding block, and circuit wires. The bottom end face of the support body is provided with an embedding groove, which engages with the end face of the support block. The embedding block is located on the top end face of the support body. The two ends of the circuit wires are respectively engaged with the end faces of the embedding block and the embedding groove. Both ends of the circuit wires are provided with connectors, which can connect the scale to the circuit of the micro-control detection body through the circuit wires.

[0008] Furthermore, the embedded block is composed of an embedded body, a recessed groove, an anti-slip sleeve, and an anti-slip groove. The embedded body is disposed on the top end face of the support body, the recessed groove is located inside the embedded body, the anti-slip sleeve is nested on the outer end face of the embedded body, and there are six anti-slip grooves, which are arranged in groups of three on the left and right sides of the embedded body. The anti-slip sleeve is made of rubber and has the characteristic of tightly connecting the embedded body to the embedded groove in another support body.

[0009] Furthermore, the micro-controlled detection body includes a frame, an electronic circuit board, a display screen, a speaker, a height detection device, and a fixing device. The bottom of the frame is engaged with the top end face of the embedded block. The electronic circuit board is installed inside the bottom end of the frame. The display screen is installed at the front end of the frame. The speaker is located inside the rear end of the frame. The height detection device is engaged with the top end face of the frame. The fixing device is installed at the rear top end of the frame and engages with the end face of the height detection device. The height detection device can extend and retract inside the frame.

[0010] Furthermore, the height detection device includes a lifting plate, a slot, a rotating shaft, a swing plate, and an ultrasonic sensor. The lifting plate is engaged with the top of the frame, the slot is located at the bottom rear end of the lifting plate and is movably engaged with a fixing device, the rotating shaft is located at the top of the lifting plate, the swing plate is engaged with the end face of the rotating shaft, and the ultrasonic sensor is installed on the bottom end face of the swing plate. The interiors of both the lifting plate and the swing plate are hollow, which can hide the circuit connected to the ultrasonic sensor inside. The bottom end face of the slot is inclined at 45 degrees.

[0011] Furthermore, the fixing device includes a mounting base, a movable groove, a fixing block, a pull rod, and a return spring. The mounting base is fixedly installed on the rear side of the lifting plate. The movable groove is located inside the movable groove. The fixing block is engaged inside the movable groove, and the fixing block is movably engaged with the groove. The pull rod is connected to the end face of the fixing block and passes through the mounting base. The return spring is installed inside the movable groove and is movably engaged with the fixing block. The bottom end face of the fixing block is inclined at 45 degrees. Beneficial effects

[0012] Compared with the prior art, the present invention has the following beneficial effects: This invention removes two support frames from the end face of the support base, and then removes the micro-control detection body from the end face of the support frame, which can disassemble a large instrument into smaller parts, making it easier to transport the instrument.

[0013] This invention retracts the lifting plate into the frame and then swings the swing plate downwards via a pivot so that the end face of the swing plate fits against the end face of the frame, reducing the area occupied by the micro-control detection body and making it easy to transport and handle the micro-control detection body. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the main structure of a micro-controlled detection device utilizing electronic technology according to the present invention.

[0015] Figure 2 This is a side view of the structure of the weighing scale of the present invention.

[0016] Figure 3 This is a side view of the support frame structure of the present invention.

[0017] Figure 4 This is a side view of the embedded block structure of the present invention.

[0018] Figure 5 This is a side view of the micro-controlled detection body structure of the present invention.

[0019] Figure 6 This is a side view of the height detection device of the present invention in its folded state.

[0020] Figure 7 This is a side view of the fixing device of the present invention.

[0021] In the diagram: 1. Weight scale; 2. Power cord; 3. Support frame; 4. Microcontroller detection body; 11. Support base; 12. Support block; 13. Support foot; 14. Weight sensor; 15. Support body; 31. Embedded groove; 32. Embedded block; 33. Circuit wire; 34. Embedded body; 331. Recessed groove; 332. Anti-slip sleeve; 333. Anti-slip groove; 334. Frame; 41. Electronic circuit board; 42. Display screen; 43. Speaker; 44. Height detection device; 45. Fixing device; 46. Lifting plate; 451. Slot; 452. Rotating shaft; 453. Swing plate; 454. Ultrasonic sensor; 455. Mounting base a1; Movable groove a2; Fixing block a3; Pull rod a4; Return spring a5. Implementation

[0022] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0023] Example 1: Please refer to Figures 1-4 The specific embodiments of the present invention are as follows: Its structure includes a weighing scale 1, a power cord 2, a support frame 3, and a micro-control detection body 4. The rear end of the weighing scale 1 is fixedly connected to the power cord 2. There are two support frames 3, and the two support frames 3 are spliced ​​together. The bottom support frame 3 is engaged with the top of the weighing scale 1. The micro-control detection body 4 is spliced ​​to the top of the support frame 3.

[0024] The weighing scale 1 includes a support base 11, a support block 12, support feet 13, weight sensors 14, and a support frame 15. The rear end of the support base 11 is connected to the power cord 2, and the support block 12 is provided on the top rear side of the support base 11. The support block 12 engages with the bottom of the support frame 3. There are four support feet 13, which are respectively located on the four sides of the bottom of the support base 11. There are four weight sensors 14, which are respectively installed on the four sides of the top of the support base 11. The inside of the support frame 15 is fixedly connected to the top of the four weight sensors 14. The end face of the support block 12 matches the bottom of the support frame 3, which facilitates the disassembly of the two support frames 3 from the end face of the support base 11, and then the disassembly of the micro-control detection body 4 from the end face of the support frame 3. This allows the large instrument to be disassembled into smaller parts, making it easier to transport the instrument and avoiding damage during transport.

[0025] The support frame 3 consists of a support body 31, an embedding groove 32, an embedding block 33, and a circuit wire 34. The bottom end face of the support body 31 is provided with an embedding groove 32, which engages with the end face of the support block 12. The embedding block 33 is located on the top end face of the support body 31. The two ends of the circuit wire 34 are respectively engaged with the end faces of the embedding block 33 and the embedding groove 32. Both ends of the circuit wire 34 are provided with connectors, which can connect the scale 1 to the circuit of the micro-control detection body 4 through the circuit wire 34. This facilitates the disassembly of the support block 12 and makes it convenient to disassemble the instrument into small parts for transport.

[0026] The embedded block 33 consists of an embedded body 331, a recessed groove 332, an anti-slip sleeve 333, and an anti-slip groove 334. The embedded body 331 is located on the top end face of the support body 31. The recessed groove 332 is located inside the embedded body 331. The anti-slip sleeve 333 is nested on the outer end face of the embedded body 331. There are six anti-slip grooves 334, and the anti-slip grooves 334 are arranged in groups of three on the left and right sides of the embedded body 331. The anti-slip sleeve 333 is made of rubber and has the characteristic of tightly connecting the embedded body 331 with the embedded groove 32 in another support body 31. This helps to stably connect the two support frames 3 together and avoids the instrument from shaking after installation.

[0027] Based on the above embodiments, the specific working principle is as follows: When the instrument needs to be moved, the two support frames 3 can be disassembled from the end face of the support base 11, and the micro-control detection body 4 can be disassembled from the end face of the support frame 3. This allows the large instrument to be disassembled into smaller parts, making it easier to move the instrument. When weight detection is required, both feet stand on the end face of the support frame 15, and the weight is detected by the force exerted by the weight sensor 14 through the support frame 15. The detection parameters are displayed on the display screen 43 of the micro-control detection body 4. The embedding groove 32 of the support body 31 is then embedded into the end face of the support block 12 for splicing. The support block 12 can also be disassembled separately, making it easier to disassemble the instrument into smaller parts for movement. Finally, the anti-slip sleeve 333 is used to tightly connect the embedding body 331 with the embedding groove 32 of the other support body 31. The anti-slip groove 334 increases the friction of the anti-slip sleeve 333, allowing the two support frames 3 to be stably connected together, preventing the instrument from shaking after installation.

[0028] Example 2: Please refer to Figures 5-7 The specific embodiments of the present invention are as follows: The micro-controlled detection body 4 includes a frame 41, an electronic circuit board 42, a display screen 43, a speaker 44, a height detection device 45, and a fixing device 46. The bottom of the frame 41 is engaged with the top end face of the embedded block 33. The electronic circuit board 42 is installed at the bottom inside the frame 41. The display screen 43 is installed at the front end of the frame 41. The speaker 44 is located at the rear end inside the frame 41. The height detection device 45 is engaged with the top end face of the frame 41. The fixing device 46 is installed at the top rear side of the frame 41, and the fixing device 46 is engaged with the end face of the height detection device 45. The height detection device 45 can extend and retract inside the frame 41, which facilitates the transmission of parameters detected by the ultrasonic sensor 455 to the electronic circuit board 42 for processing and then display on the display screen 43 for micro-controlled detection.

[0029] The height detection device 45 includes a lifting plate 451, a slot 452, a rotating shaft 453, a swing plate 454, and an ultrasonic sensor 455. The lifting plate 451 is engaged with the top of the frame 41. The slot 452 is located at the bottom rear end of the lifting plate 451 and is movably engaged with the fixing device 46. The rotating shaft 453 is located at the top of the lifting plate 451. The swing plate 454 is engaged with the end face of the rotating shaft 453. The ultrasonic sensor 455 is installed on the bottom end face of the swing plate 454. Both the lifting plate 451 and the swing plate 454 are hollow inside, which can hide the circuit connected to the ultrasonic sensor 455 inside. The bottom end face of the slot 452 is inclined at 45 degrees, which is conducive to retracting the lifting plate 451 into the frame 41 and then swinging the swing plate 454 downward through the rotating shaft 453 so that the end face of the swing plate 454 fits against the end face of the frame 41, which is convenient for transportation.

[0030] The fixing device 46 includes a mounting base a1, a movable groove a2, a fixing block a3, a pull rod a4, and a return spring a5. The mounting base a1 is fixedly installed on the rear side of the lifting plate 451. The movable groove a2 is located inside the movable groove a2. The fixing block a3 is engaged inside the movable groove a2 and is movably engaged with the slot 452. The pull rod a4 is connected to the end face of the fixing block a3 and passes through the mounting base a1. The return spring a5 is installed inside the movable groove a2 and is movably engaged with the fixing block a3. The bottom end face of the fixing block a3 is inclined at 45 degrees, which facilitates pulling the pull rod a4 to disengage the fixing block a3 from the slot 452, allowing the lifting plate 451 to retract inside the frame 41.

[0031] Based on the above embodiments, the specific working principle is as follows: The height of the person is detected by the ultrasonic sensor 455 in the height detection device 45, and the parameters detected by the ultrasonic sensor 455 are transmitted to the electronic circuit board 42 for processing and then displayed on the display screen 43. The detected parameters can also be broadcast through the speaker 44. When the frame 41 is disassembled from the end face of the support frame 3, the lifting plate 451 can be retracted into the frame 41, and the swing plate 454 is swung downward through the rotating shaft 453 so that the end face of the swing plate 454 is attached to the frame. The end face of 41 reduces the area occupied by the micro-control detection body 4, making it easier to transport and move the micro-control detection body 4. Finally, the return spring a5 resets and drives the fixing block a3 to lock in the slot 452 to fix the lifting plate 451, allowing the lifting plate 451 to support the ultrasonic sensor 455 for height detection. When the lifting plate 451 needs to be retracted, the pull rod a4 can be pulled to disengage the fixing block a3 from the slot 452, allowing the lifting plate 451 to retract inside the frame 41, which facilitates the movement of the micro-control detection body 4.

[0032] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0033] Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A micro-controlled detection device utilizing electronic technology, comprising a weighing scale (1), a power cord (2), a support frame (3), and a micro-controlled detection body (4), characterized in that: The rear end of the scale (1) is fixedly connected to the power cord (2). There are two support frames (3), and the two support frames (3) are spliced ​​together. The bottom support frame (3) is engaged with the top of the scale (1). The micro-control detection body (4) is spliced ​​on the top of the support frame (3).

2. The micro-controlled detection device utilizing electronic technology according to claim 1, characterized in that: The scale (1) includes a support base (11), a support block (12), support feet (13), weight sensors (14), and a support frame (15). The rear end of the support base (11) is connected to the power cord (2), and the support block (12) is provided on the top rear side of the support base (11). The support block (12) engages with the bottom of the support frame (3). There are four support feet (13), which are respectively located on the four sides of the bottom of the support base (11). There are four weight sensors (14), which are respectively installed on the four sides of the top of the support base (11). The inside of the support frame (15) is fixedly connected to the top of the four weight sensors (14).

3. The micro-controlled detection device utilizing electronic technology according to claim 1, characterized in that: The support frame (3) is composed of a support body (31), an embedding groove (32), an embedding block (33), and a circuit wire (34). The bottom end face of the support body (31) is provided with an embedding groove (32), which engages with the end face of the support block (12). The embedding block (33) is located on the top end face of the support body (31), and the two ends of the circuit wire (34) are respectively engaged with the end face of the embedding block (33) and the embedding groove (32).

4. The micro-controlled detection device utilizing electronic technology according to claim 3, characterized in that: The embedded block (33) consists of an embedded body (331), a recessed groove (332), an anti-slip sleeve (333), and an anti-slip groove (334). The embedded body (331) is located on the top end face of the support body (31). The recessed groove (332) is located inside the embedded body (331). The anti-slip sleeve (333) is nested on the outer end face of the embedded body (331). There are six anti-slip grooves (334), and the anti-slip grooves (334) are arranged in groups of three on the left and right sides of the embedded body (331).

5. A micro-controlled detection device utilizing electronic technology according to claim 1, characterized in that: The micro-controlled detection body (4) includes a frame (41), an electronic circuit board (42), a display screen (43), a speaker (44), a height detection device (45), and a fixing device (46). The bottom of the frame (41) is engaged with the top end face of the embedded block (33). The electronic circuit board (42) is installed at the bottom inside the frame (41). The display screen (43) is installed at the front end of the frame (41). The speaker (44) is located at the rear end inside the frame (41). The height detection device (45) is engaged with the top end face of the frame (41). The fixing device (46) is installed at the top rear side of the frame (41), and the fixing device (46) is engaged with the end face of the height detection device (45).

6. A micro-controlled detection device utilizing electronic technology according to claim 5, characterized in that: The height detection device (45) includes a lifting plate (451), a slot (452), a rotating shaft (453), a swing plate (454), and an ultrasonic sensor (455). The lifting plate (451) is engaged with the top of the frame (41). The slot (452) is located at the bottom rear side of the lifting plate (451) and is movably engaged with the fixing device (46). The rotating shaft (453) is located at the top of the lifting plate (451). The swing plate (454) is engaged with the end face of the rotating shaft (453). The ultrasonic sensor (455) is installed on the bottom end face of the swing plate (454).

7. A micro-controlled detection device utilizing electronic technology according to claim 5, characterized in that: The fixing device (46) includes a mounting base (a1), a movable groove (a2), a fixing block (a3), a pull rod (a4), and a return spring (a5). The mounting base (a1) is fixedly installed on the rear side of the lifting plate (451). The movable groove (a2) is located inside the movable groove (a2). The fixing block (a3) ​​is engaged inside the movable groove (a2) and is movably engaged with the slot (452). The pull rod (a4) is connected to the end face of the fixing block (a3) ​​and passes through the mounting base (a1). The return spring (a5) is installed inside the movable groove (a2).