Detection tool for tablet personal computer production

By designing tablet computer detection tooling for automatic positioning and charging detection, the problem of not being able to automatically identify the boot state in the prior art is solved, and the detection accuracy and efficiency are improved.

CN120352811AActive Publication Date: 2025-07-22JIANGSU LANGKE INTELLIGENT IND TECH CO LTD
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Patent Information

Application Number
CN202510847296.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-07-22
Estimated Expiration
2045-06-24

AI Technical Summary

Technical Problem

Existing tablet computer detection tooling cannot achieve automatic positioning and automatic identification of the tablet's boot status before detection, resulting in low detection accuracy and efficiency.

Method used

A detection tool including a support positioning part, a state observation part, an activity control part, a charging detection part and an auxiliary detection part is designed, and components such as electric telescopic rods, servo motors and charging lines are used to realize automatic positioning and charging, and automatically identify the power-on status of the tablet computer.

Benefits of technology

Improve the accuracy and efficiency of tablet computer detection, avoid misjudgment caused by shutdown, and save manual adjustment time.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention provides a detection tool for tablet personal computer production, and relates to the technical field of tablet personal computer detection, and the detection tool comprises a support positioning part, a state observation part, a motion control part, a charging detection part and an auxiliary detection part. The state observation part is mounted on the supporting and positioning part; the movable control part is mounted on the supporting and positioning part; the charging detection part is mounted at the top of the supporting and positioning part; the auxiliary detection part is mounted at the top of the supporting and positioning part, and the auxiliary detection part is located on the right side of the row of to-be-detected tablet personal computers; according to the invention, a worker can conveniently observe whether the tablet personal computer is started or not, misjudgment caused by shutdown of the qualified tablet personal computer is avoided, and the detection precision of the tablet personal computer is ensured; the problems that it is inconvenient for workers to observe the running state of the tablet personal computer, when the tablet personal computer is in a shutdown state, a screen of the tablet personal computer is lighted up after a charging head is inserted for a period of time, and misjudgment is easily caused by shutdown of the qualified tablet personal computer are solved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of tablet computer detection, and more specifically, particularly relates to a detection tool for tablet computer production. Background Art

[0002] Tablet computers, also called portable computers, are small and portable personal computers with a touch screen as the basic input device; when tablet computers are produced, charging tests need to be carried out. Through the charging test, the physical connection of the charging interface can be confirmed to be stable, avoiding contact failure caused by deformed, oxidized or poorly welded elastic pieces.

[0003] The currently used detection tools still have the following problems: 1. It is not convenient for staff to observe the operation status of the tablet computer. When the tablet computer is in the shutdown state, the screen of the tablet computer will light up only after the charging head is inserted for a period of time, resulting in misjudgment of qualified tablet computers due to shutdown reasons, affecting the detection accuracy of the tablet computer; 2. Although some detection tools are equipped with positioning structures, they need to be manually controlled by staff and cannot achieve automatic positioning before tablet computer detection; 3. When the placement direction of the tablet computer is incorrect, the staff needs to first readjust the direction of the tablet computer and then perform the detection, and cannot directly detect the tablet computer with the incorrect placement direction, affecting the detection efficiency of the tablet computer. Summary of the Invention

[0004] The embodiment of the present disclosure relates to a detection tool for tablet computer production, which has a support and positioning part, a status observation part, a movement control part, a charging detection part and an auxiliary detection part; it is convenient for staff to observe whether the tablet computer is powered on, avoiding misjudgment of qualified tablet computers due to shutdown reasons and ensuring the detection accuracy of the tablet computer; when the U-shaped mounting base moves to the right, the circular positioning roller can pre-press the uppermost tablet computer, making the tablet computer more stable during detection; the charging cable B can be inserted into the charging port of the tablet computer, saving the time for staff to adjust the tablet computer and improving the overall detection efficiency of the tablet computer; it solves the problems that qualified tablet computers are easily misjudged due to shutdown reasons, automatic positioning before tablet computer detection cannot be achieved, and tablet computers with incorrect placement directions cannot be directly detected.

[0005] The present invention provides a detection tool for tablet computer production, used for detecting tablet computers; including: a support and positioning part, a status observation part, a movement control part, a charging detection part and an auxiliary detection part; a row of tablet computers to be detected are placed on the support and positioning part, and power buttons are respectively arranged on the right front sides of the row of tablet computers to be detected; A control panel is installed on the support and positioning part; the state observation part is installed on the support and positioning part, and the state observation part is used to detect whether the tablet computer is powered on; the activity control part is installed on the support and positioning part, and the activity control part is used to control the state observation part. The charging detection part is installed on the top of the support and positioning part, and the charging detection part is located on the left side of a row of tablet computers to be detected; the auxiliary detection part is installed on the top of the support and positioning part, and the auxiliary detection part is located on the right side of a row of tablet computers to be detected, and the auxiliary detection part is used to improve the detection efficiency of the tablet computer.

[0006] In at least some embodiments, the support and positioning part includes: a support base and an L-shaped positioning frame; there are four L-shaped positioning frames in total, and the four L-shaped positioning frames are fixedly installed on the top of the support base; receiving grooves are formed on the L-shaped positioning frames on the right front side and the left rear side, and a rectangular slot is formed on the L-shaped positioning frame on the left front side.

[0007] In at least some embodiments, the support and positioning part further includes: an electric telescopic rod A and an X-shaped support frame; the electric telescopic rod A is fixedly installed on the support base, and the electric telescopic rod A is also electrically connected to the control panel; the X-shaped support frame is slidably installed on the four L-shaped positioning frames, and the X-shaped support frame is also fixedly connected to the output shaft of the electric telescopic rod A.

[0008] In at least some embodiments, the state observation part includes: an electric telescopic rod B and a semi-circular push button; there are two electric telescopic rods B in total, and the two electric telescopic rods B are fixedly installed on the L-shaped positioning frames on the right front side and the left rear side, and the two electric telescopic rods B are also electrically connected to the control panel; there are two semi-circular push buttons in total, and the two semi-circular push buttons are fixedly installed on the output shafts of the two electric telescopic rods B.

[0009] In at least some embodiments, the activity control part includes: a rectangular mounting block and a control button A; the rectangular mounting block is fixedly installed on the left front side of the X-shaped support frame, and the rectangular mounting block is inserted into the rectangular slot; there are two control buttons A in total, and the two control buttons A are fixedly installed inside the rectangular mounting block; the lower control button A is in a pressed state, and the two control buttons A are also electrically connected to the control panel.

[0010] In at least some embodiments, the charging detection part includes: a dovetail slider A, a U-shaped mounting seat, a servo motor A and a driving lead screw A; the dovetail slider A is fixedly installed on the top of the support base; the U-shaped mounting seat is slidably installed outside the dovetail slider A; the servo motor A is fixedly installed on the top of the support base, and the servo motor A is also electrically connected to the control panel; the driving lead screw A is fixedly installed on the output shaft of the servo motor A, and the driving lead screw A is also threadedly connected to the U-shaped mounting seat.

[0011] In at least some embodiments, the charging detection unit further includes: an octagonal rod, a mounting frame A, a support spring, and a control button B; the octagonal rod is fixedly installed on the U-shaped mounting base; the mounting frame A is slidably installed outside the octagonal rod; the support spring is sleeved outside the octagonal rod, and the support spring is located on the left side of the mounting frame A; the control button B is fixedly installed inside the mounting frame A, and the control button B is in a pressed state, and the control button B is also electrically connected to the control panel.

[0012] In at least some embodiments, the charging detection unit further includes: a charging cable A, a limit screw A, a mounting bracket, and a circular positioning roller; the charging cable A is inserted into the mounting frame A; the limit screw A is threadedly connected to the mounting frame A, and the bottom end of the limit screw A contacts the charging cable A; the mounting bracket is fixedly installed on the right side of the mounting frame A; the circular positioning roller is rotatably installed outside the mounting bracket; when the charging cable A is aligned with the charging port on the tablet computer, the bottom of the circular positioning roller is flush with the top surface of the tablet computer.

[0013] In at least some embodiments, the auxiliary detection unit includes: a dovetail slider B, a mounting frame B, and a servo motor B; the dovetail slider B is fixedly installed on the top of the support base; the mounting frame B is slidably installed outside the dovetail slider B; the servo motor B is fixedly installed on the top of the support base, and the servo motor B is also electrically connected to the control panel.

[0014] In at least some embodiments, the auxiliary detection unit further includes: a driving lead screw B, a charging cable B, and a limit screw B; the driving lead screw B is fixedly installed on the output shaft of the servo motor B, and the driving lead screw B is also threadedly connected to the mounting frame B; the charging cable B is inserted into the mounting frame B, and the charging cable B is located directly to the right of the charging cable A; the limit screw B is threadedly connected to the mounting frame B, and the bottom of the limit screw B contacts the charging cable B.

[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. The setting of the four L-shaped positioning frames in the present invention plays a positioning role for a row of tablet computers to be tested; the setting of the two storage grooves plays a storage role for the power buttons; when the output shaft of the electric telescopic rod A extends, the X-shaped support frame drives multiple tablet computers to move upward simultaneously, realizing continuous detection of the tablet computers; when the electric telescopic rod A drives the X-shaped support frame to move downward, the tablet computers to be tested intermittently enter between the four L-shaped positioning frames, facilitating the placement of multiple tablet computers to be detected.

[0016] 2. When the upper control button A is in the pressed state, all the tablets above the X-shaped support frame have been detected. At this time, the control panel controls the two electric telescopic rods B to work, causing the output shafts of the two electric telescopic rods B to contract, ensuring that when the staff places multiple tablets to be detected, the two semi-circular pressing blocks will not press the corresponding power buttons. When the lower control button A is in the pressed state, all the tablets to be detected are placed on the top of the X-shaped support frame. At this time, the control panel controls the two electric telescopic rods B to work, causing the output shafts of the two electric telescopic rods B to extend, ensuring that when the electric telescopic rod A drives the X-shaped support frame to move upward, the two semi-circular pressing blocks can automatically press the power buttons, facilitating the staff to observe whether the tablets are powered on. When the screen of the tablet lights up after the power button is pressed, it indicates that the tablet is in the powered-on state; when the screen of the tablet does not light up after the power button is pressed, it indicates that the tablet is in the powered-off state. When the tablet is in the powered-off state, the screen of the tablet will only light up after inserting the charging head for a period of time, resulting in the production of qualified tablets being easily misjudged due to the powered-off reason, affecting the detection accuracy of the tablets.

[0017] 3. When the servo motor A works, the U-shaped mounting seat moves to the right under the action of the driving screw rod A; when the U-shaped mounting seat moves to the right, the charging cable A can be automatically inserted into the charging port of the tablet. In addition, when the U-shaped mounting seat moves to the right, the circular positioning roller can press the uppermost tablet in advance, making the tablet more stable during detection; when the direction of the tablet to be detected is placed wrongly, after the charging cable A contacts the tablet, the mounting frame A will stop moving, causing the support spring to be compressed.

[0018] 4. When the support spring is compressed, the control button B can automatically release the pressed state. At this time, the control panel controls the servo motor B to work; when the servo motor B works, the charging cable B can be inserted into the charging port of the tablet, saving the time for the staff to adjust the tablet and improving the overall detection efficiency of the tablet. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0020] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0021] In the drawings: Figure 1 shows a three-dimensional structural schematic diagram of the present invention; Figure 2 shows the present invention Figure 1 a left-side perspective structural schematic diagram; Figure 3 Shows the structural schematic diagram of the support and positioning part of the present invention; Figure 4 Shows the present invention Figure 3 The partial enlarged structural schematic diagram of area A in; Figure 5 Shows the present invention Figure 1 The top view structural schematic diagram of; Figure 6 Shows the present invention Figure 5 The sectional structural schematic diagram in the direction of B-B of; Figure 7 Shows the present invention Figure 6 The partial enlarged structural schematic diagram of area C in; Figure 8 Shows the structural schematic diagram of the charging detection part of the present invention; Figure 9 Shows the present invention Figure 8 The central sectional structural schematic diagram of; Figure 10 Shows the present invention Figure 9 The partial enlarged structural schematic diagram of area D in; Figure 11 Shows the structural schematic diagram of the auxiliary detection part of the present invention.

[0022] List of reference numerals: 100, support and positioning part; 101, support base; 102, L-shaped positioning frame; 1021, storage groove; 1022, rectangular slot hole; 103, electric telescopic rod A; 104, X-shaped support frame; 200, tablet computer; 201, power button; 300, control panel; 400, status observation part; 401, electric telescopic rod B; 402, semi-circular pressing block; 500, activity control part; 501, rectangular mounting block; 502, control button A; 600, charging detection part; 601, dovetail slider A; 602, U-shaped mounting seat; 603, servo motor A; 604, driving lead screw A; 605, octagonal rod; 606, mounting frame A; 607, support spring; 608, control button B; 609, charging wire A; 610, limit screw A; 611, mounting bracket; 612, circular positioning roller; 700, auxiliary detection part; 701, dovetail slider B; 702, mounting frame B; 703, servo motor B; 704, driving lead screw B; 705, charging wire B; 706, limit screw B. Detailed implementation manners

[0023] In order to make the objectives, solutions, and advantages of the technical solution of the present invention clearer, the technical solution of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the ordinary meanings in the art. The same reference numerals in the drawings represent the same components.

[0024] Embodiment: Please refer to Figures 1 to 11 As shown in the figure: The present invention provides a detection tooling for tablet computer production, which is used to detect the tablet computer 200; it includes: a support and positioning part 100, a state observation part 400, a movement control part 500, a charging detection part 600, and an auxiliary detection part 700; a row of tablet computers 200 to be detected are placed on the support and positioning part 100, and power buttons 201 are respectively arranged on the right front sides of the row of tablet computers 200 to be detected; a control panel 300 is installed on the support and positioning part 100; the state observation part 400 is installed on the support and positioning part 100, and the state observation part 400 is used to detect whether the tablet computer 200 is powered on; the movement control part 500 is installed on the support and positioning part 100, and the movement control part 500 is used to control the state observation part 400; the charging detection part 600 is installed on the top of the support and positioning part 100, and the charging detection part 600 is located on the left side of the row of tablet computers 200 to be detected; the auxiliary detection part 700 is installed on the top of the support and positioning part 100, and the auxiliary detection part 700 is located on the right side of the row of tablet computers 200 to be detected, and the auxiliary detection part 700 is used to improve the detection efficiency of the tablet computer 200.

[0025] In the embodiments of the present disclosure, as Figure 1 and Figure 3 shown, the support and positioning part 100 includes: a support base 101 and an L-shaped positioning frame 102; there are four L-shaped positioning frames 102 in total, and the four L-shaped positioning frames 102 are fixedly installed on the top of the support base 101; receiving grooves 1021 are formed on the L-shaped positioning frames 102 on the right front side and the left rear side, and a rectangular slot 1022 is formed on the L-shaped positioning frame 102 on the left front side; the support and positioning part 100 further includes: an electric telescopic rod A103 and an X-shaped support frame 104; the electric telescopic rod A103 is fixedly installed on the support base 101, and the electric telescopic rod A103 is also electrically connected to the control panel 300; the X-shaped support frame 104 is slidably installed on the four L-shaped positioning frames 102, and the X-shaped support frame 104 is also fixedly connected to the output shaft of the electric telescopic rod A103; Its specific functions are as follows: Since the four L-shaped positioning frames 102 are fixedly installed on the top of the support base 101, they play a positioning role for a row of tablets 200 to be tested; the setting of the two storage grooves 1021 plays a role in storing the power buttons 201; also, since the electric telescopic rod A 103 is fixedly installed on the support base 101, and the X-shaped support frame 104 is slidably installed on the four L-shaped positioning frames 102, and the X-shaped support frame 104 is also fixedly connected to the output shaft of the electric telescopic rod A 103. When the output shaft of the electric telescopic rod A 103 extends, the X-shaped support frame 104 drives multiple tablets 200 to move upward simultaneously, realizing the continuous detection of the tablets 200; when the electric telescopic rod A 103 drives the X-shaped support frame 104 to move downward, the tablets 200 to be tested intermittently enter between the four L-shaped positioning frames 102, facilitating the placement of multiple tablets 200 to be detected.

[0026] In the embodiment of the present disclosure, as Figure 4 and Figure 7 shown, the state observation unit 400 includes: an electric telescopic rod B 401 and a semi-circular push button 402; there are two electric telescopic rods B 401 in total, and the two electric telescopic rods B 401 are fixedly installed on the L-shaped positioning frames 102 on the right front side and the left rear side, and the two electric telescopic rods B 401 are also electrically connected to the control panel 300; there are two semi-circular push buttons 402 in total, and the two semi-circular push buttons 402 are fixedly installed on the output shafts of the two electric telescopic rods B 401; the activity control unit 500 includes: a rectangular mounting block 501 and a control button A 502; the rectangular mounting block 501 is fixedly installed on the left front side of the X-shaped support frame 104, and the rectangular mounting block 501 is inserted into the rectangular slot 1022; there are two control buttons A 502 in total, and the two control buttons A 502 are fixedly installed inside the rectangular mounting block 501; the lower control button A 502 is in a pressed state, and the two control buttons A 502 are also electrically connected to the control panel 300; Its specific functions are as follows: Since the two control buttons A502 are fixedly installed inside the rectangular mounting block 501 and are also electrically connected to the control panel 300, when the upper control button A502 is in the pressed state, all the tablets 200 above the X-shaped support frame 104 have been detected. At this time, the control panel 300 controls the two electric telescopic rods B401 to work, causing the output shafts of the two electric telescopic rods B401 to contract, ensuring that when the staff places multiple tablets 200 to be detected, the two semi-circular pressing blocks 402 will not press the corresponding power buttons 201. Also, since the two semi-circular pressing blocks 402 are fixedly installed on the output shafts of the two electric telescopic rods B401, when the lower control button A502 is in the pressed state, all the tablets 200 to be detected are placed on the top of the X-shaped support frame 104. At this time, the control panel 300 controls the two electric telescopic rods B401 to work, causing the output shafts of the two electric telescopic rods B401 to extend, ensuring that when the electric telescopic rod A103 drives the X-shaped support frame 104 to move upward, the two semi-circular pressing blocks 402 can automatically press the power button 201, facilitating the staff to observe whether the tablet 200 is powered on. When the screen of the tablet 200 lights up after the power button 201 is pressed, it indicates that the tablet 200 is in the powered-on state; when the screen of the tablet 200 does not light up after the power button 201 is pressed, it indicates that the tablet 200 is in the powered-off state. When the tablet 200 is in the powered-off state, the screen of the tablet 200 will only light up after inserting the charger for a period of time, resulting in the production of qualified tablets 200 being easily misjudged due to the powered-off reason, affecting the detection accuracy of the tablets 200.

[0027] In the embodiments of the present disclosure, as Figures 8 to 10As shown in the figure, the charging detection unit 600 includes: a dovetail slider A601, a U-shaped mounting base 602, a servo motor A603, and a driving lead screw A604; the dovetail slider A601 is fixedly mounted on the top of the support base 101; the U-shaped mounting base 602 is slidably mounted outside the dovetail slider A601; the servo motor A603 is fixedly mounted on the top of the support base 101, and the servo motor A603 is also electrically connected to the control panel 300; the driving lead screw A604 is fixedly mounted on the output shaft of the servo motor A603, and the driving lead screw A604 is also threadedly connected to the U-shaped mounting base 602; the charging detection unit 600 further includes: an octagonal rod 605, a mounting frame A606, a support spring 607, and a control button B608; the octagonal rod 605 is fixedly mounted on the U-shaped mounting base 602; the mounting frame A606 is slidably mounted outside the octagonal rod 605; the support spring 607 is sleeved outside the octagonal rod 605, and the support spring 607 is located on the left side of the mounting frame A606; the control button B608 is fixedly mounted inside the mounting frame A606, and the control button B608 is in a pressed state, and the control button B608 is also electrically connected to the control panel 300; the charging detection unit 600 further includes: a charging cable A609, a limit screw A610, a mounting bracket 611, and a circular positioning roller 612; the charging cable A609 is inserted into the mounting frame A606; the limit screw A610 is threadedly connected to the mounting frame A606, and the bottom end of the limit screw A610 contacts the charging cable A609; the mounting bracket 611 is fixedly mounted on the right side of the mounting frame A606; the circular positioning roller 612 is rotatably mounted outside the mounting bracket 611; when the charging cable A609 is aligned with the charging port on the tablet computer 200, the bottom of the circular positioning roller 612 is flush with the top surface of the tablet computer 200; Its specific function is as follows: Since the U-shaped mounting base 602 is slidably mounted outside the dovetail slider A601, and the driving lead screw A604 is fixedly mounted on the output shaft of the servo motor A603, and the driving lead screw A604 is also threadedly connected to the U-shaped mounting base 602, when the servo motor A603 works, the U-shaped mounting base 602 moves to the right under the action of the driving lead screw A604; and because the charging cable A609 is inserted into the mounting frame A606, and the limit screw A610 is threadedly connected to the mounting frame A606, and the bottom end of the limit screw A610 contacts the charging cable A609, when the U-shaped mounting base 602 moves to the right, the charging cable A609 can be automatically inserted into the charging port of the tablet computer 200; In addition, since the mounting bracket 611 is fixedly mounted on the right side of the mounting frame A606, and the circular positioning roller 612 is rotatably mounted outside the mounting bracket 611, when the U-shaped mounting base 602 moves to the right, the circular positioning roller 612 can pre-press the uppermost tablet computer 200, making the detection of the tablet computer 200 more stable. Also, since the mounting frame A606 is slidably mounted outside the octagonal rod 605, and the support spring 607 is sleeved outside the octagonal rod 605, and the support spring 607 is located on the left side of the mounting frame A606, when the tablet computer 200 to be detected is placed in the wrong direction, after the charging cable A609 contacts the tablet computer 200, the mounting frame A606 will stop moving, causing the support spring 607 to be compressed.

[0028] In the embodiment of the present disclosure, as Figure 11 shown, the auxiliary detection unit 700 includes: a dovetail slider B701, a mounting frame B702, and a servo motor B703; the dovetail slider B701 is fixedly mounted on the top of the support base 101; the mounting frame B702 is slidably mounted outside the dovetail slider B701; the servo motor B703 is fixedly mounted on the top of the support base 101, and the servo motor B703 is also electrically connected to the control panel 300; the auxiliary detection unit 700 further includes: a driving lead screw B704, a charging cable B705, and a limit screw B706; the driving lead screw B704 is fixedly mounted on the output shaft of the servo motor B703, and the driving lead screw B704 is also threadedly connected to the mounting frame B702; the charging cable B705 is inserted into the mounting frame B702, and the charging cable B705 is located directly to the right of the charging cable A609; the limit screw B706 is threadedly connected to the mounting frame B702, and the bottom of the limit screw B706 contacts the charging cable B705; Its specific function is: since the control button B608 is fixedly mounted inside the mounting frame A606, and the control button B608 is also electrically connected to the control panel 300, when the support spring 607 is compressed, the control button B608 can automatically release the pressed state. At this time, the control panel 300 controls the servo motor B703 to work. Also, since the driving lead screw B704 is threadedly connected to the mounting frame B702, and the charging cable B705 is inserted into the mounting frame B702, and the charging cable B705 is located directly to the right of the charging cable A609, when the servo motor B703 works, the charging cable B705 can be inserted into the charging port of the tablet computer 200, saving the time for the staff to adjust the tablet computer 200 and improving the overall detection efficiency of the tablet computer 200.

[0029] The specific usage and function of this embodiment: When the present invention is in use, first, the staff installs the support base 101 at the production line through bolts, then connects the control panel 300 to an external power supply, and then connects the charging cable A 609 and the charging cable B 705 to an external socket. When the upper control button A 502 is in the pressed state, all the tablet computers 200 above the X-shaped support frame 104 have been detected. At this time, the control panel 300 controls the two electric telescopic rods B 401 to work, so that the output shafts of the two electric telescopic rods B 401 contract, ensuring that when the staff or the robotic arm places multiple tablet computers 200 to be detected, the two semi-circular pressing blocks 402 will not press the corresponding power button 201. Then, the tablet computers 200 to be detected are placed between the four L-shaped positioning frames 102 manually or by a robotic arm. When the electric telescopic rod A 103 drives the X-shaped support frame 104 to move downward, the tablet computers 200 to be tested intermittently enter between the four L-shaped positioning frames 102, facilitating the placement of multiple tablet computers 200 to be detected. When the lower control button A 502 is in the pressed state, all the tablet computers 200 to be detected are placed on the top of the X-shaped support frame 104. At this time, the control panel 300 controls the two electric telescopic rods B 401 to work, so that the output shafts of the two electric telescopic rods B 401 extend. When the output shaft of the electric telescopic rod A 103 extends, the X-shaped support frame 104 drives multiple tablet computers 200 to move upward simultaneously, realizing the continuous detection of the tablet computers 200. When the electric telescopic rod A 103 drives the X-shaped support frame 104 to move upward, the two semi-circular pressing blocks 402 can automatically press the power button 201, facilitating the staff to observe whether the tablet computer 200 is turned on. When the screen of the tablet computer 200 lights up after the power button 201 is pressed, it indicates that the tablet computer 200 is in the on state. When the screen of the tablet computer 200 does not light up after the power button 201 is pressed, it indicates that the tablet computer 200 is in the off state. When the servo motor A 603 works, the U-shaped mounting seat 602 moves to the right under the action of the driving lead screw A 604. When the U-shaped mounting seat 602 moves to the right, the charging cable A 609 can automatically be inserted into the charging port of the tablet computer 200. When the U-shaped mounting seat 602 moves to the right, the circular positioning roller 612 can pre-press the uppermost tablet computer 200, making the tablet computer 200 more stable during detection. When the tablet computer 200 to be detected is placed in the wrong direction, after the charging cable A 609 contacts the tablet computer 200, the mounting frame A 606 will stop moving, causing the support spring 607 to compress. When the support spring 607 compresses, the control button B 608 can automatically release the pressed state. At this time, the control panel 300 controls the servo motor B 703 to work. When the servo motor B 703 works, the charging cable B 705 can be inserted into the charging port of the tablet computer 200, saving the time for the staff to adjust the tablet computer 200 and improving the overall detection efficiency of the tablet computer 200.

[0030] In this text, the following points need to be noted: 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.

[0031] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0032] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.

Claims

1. An inspection tool for tablet computer production, used to inspect a tablet computer (200); including: A support and positioning part (100), a state observation part (400), an activity control part (500), a charging detection part (600) and an auxiliary detection part (700); a row of tablets (200) to be detected are placed on the support and positioning part (100), and power buttons (201) are respectively arranged on the right front sides of the row of tablets (200) to be detected; A control panel (300) is installed on the support and positioning part (100); characterized in that, the state observation part (400) is installed on the support and positioning part (100), and the state observation part (400) is used for detecting whether the tablet (200) is powered on; the activity control part (500) is installed on the support and positioning part (100), and the activity control part (500) is used for controlling the state observation part (400); The charging detection part (600) is installed on the top of the support and positioning part (100), and the charging detection part (600) is located on the left side of the row of tablets (200) to be detected; the auxiliary detection part (700) is installed on the top of the support and positioning part (100), and the auxiliary detection part (700) is located on the right side of the row of tablets (200) to be detected, and the auxiliary detection part (700) is used for improving the detection efficiency of the tablet (200).

2. The inspection tooling for tablet computer production according to claim 1, characterized in that, The support and positioning part (100) includes: a support base (101) and an L-shaped positioning frame (102); there are four L-shaped positioning frames (102) in total, and the four L-shaped positioning frames (102) are fixedly installed on the top of the support base (101); receiving grooves (1021) are formed on the L-shaped positioning frames (102) on the right front side and the left rear side, and a rectangular slot (1022) is formed on the L-shaped positioning frame (102) on the left front side.

3. The inspection tooling for tablet computer production according to claim 2, characterized in that, The support and positioning part (100) further includes: an electric telescopic rod A (103) and an X-shaped support frame (104); the electric telescopic rod A (103) is fixedly installed on the support base (101), and the electric telescopic rod A (103) is also electrically connected to the control panel (300); the X-shaped support frame (104) is slidably installed on the four L-shaped positioning frames (102), and the X-shaped support frame (104) is also fixedly connected to the output shaft of the electric telescopic rod A (103).

4. The inspection tooling for tablet computer production according to claim 2, characterized in that, The state observation part (400) includes: an electric telescopic rod B (401) and a semi-circular pressing block (402); there are two electric telescopic rods B (401) in total, and the two electric telescopic rods B (401) are fixedly installed on the L-shaped positioning frames (102) on the right front side and the left rear side, and the two electric telescopic rods B (401) are also electrically connected to the control panel (300); there are two semi-circular pressing blocks (402) in total, and the two semi-circular pressing blocks (402) are fixedly installed on the output shafts of the two electric telescopic rods B (401).

5. A detection tool for tablet computer production according to claim 3, characterized in that, The activity control unit (500) includes: a rectangular mounting block (501) and a control button A (502); the rectangular mounting block (501) is fixedly installed on the left front side of the X-shaped support frame (104), and the rectangular mounting block (501) is inserted into the rectangular slot (1022); there are two control buttons A (502) in total, and the two control buttons A (502) are fixedly installed inside the rectangular mounting block (501); the lower control button A (502) is in a pressed state, and the two control buttons A (502) are also electrically connected to the control panel (300).

6. The inspection tooling for tablet computer production according to claim 2, characterized in that, The charging detection unit (600) includes: a dovetail slider A (601), a U-shaped mounting base (602), a servo motor A (603), and a driving lead screw A (604); the dovetail slider A (601) is fixedly installed on the top of the support base (101); the U-shaped mounting base (602) is slidably installed outside the dovetail slider A (601); the servo motor A (603) is fixedly installed on the top of the support base (101), and the servo motor A (603) is also electrically connected to the control panel (300); the driving lead screw A (604) is fixedly installed on the output shaft of the servo motor A (603), and the driving lead screw A (604) is also threadedly connected to the U-shaped mounting base (602).

7. The inspection tooling for tablet computer production according to claim 6, characterized in that, The charging detection unit (600) further includes: an octagonal rod (605), a mounting frame A (606), a support spring (607), and a control button B (608); the octagonal rod (605) is fixedly installed on the U-shaped mounting base (602); the mounting frame A (606) is slidably installed outside the octagonal rod (605); the support spring (607) is sleeved outside the octagonal rod (605), and the support spring (607) is located on the left side of the mounting frame A (606); the control button B (608) is fixedly installed inside the mounting frame A (606), and the control button B (608) is in a pressed state, and the control button B (608) is also electrically connected to the control panel (300).

8. A detection tool for tablet computer production according to claim 7, characterized in that, The charging detection unit (600) further includes: a charging cable A (609), a limit screw A (610), a mounting bracket (611), and a circular positioning roller (612); the charging cable A (609) is inserted into the mounting frame A (606); the limit screw A (610) is threadedly connected to the mounting frame A (606), and the bottom end of the limit screw A (610) contacts the charging cable A (609); the mounting bracket (611) is fixedly installed on the right side of the mounting frame A (606); the circular positioning roller (612) is rotatably installed outside the mounting bracket (611); when the charging cable A (609) is aligned with the charging port on the tablet computer (200), the bottom of the circular positioning roller (612) is flush with the top surface of the tablet computer (200).

9. The inspection tooling for tablet computer production according to claim 8, wherein, The auxiliary detection unit (700) includes: a dovetail slider B (701), a mounting frame B (702), and a servo motor B (703); the dovetail slider B (701) is fixedly installed on the top of the support base (101); the mounting frame B (702) is slidably installed outside the dovetail slider B (701); the servo motor B (703) is fixedly installed on the top of the support base (101), and the servo motor B (703) is also electrically connected to the control panel (300).

10. The inspection tooling for tablet computer production according to claim 9, characterized in that, The auxiliary detection unit (700) further includes: a driving lead screw B (704), a charging cable B (705), and a limit screw B (706); the driving lead screw B (704) is fixedly installed on the output shaft of the servo motor B (703), and the driving lead screw B (704) is also threadedly connected to the mounting frame B (702); the charging cable B (705) is inserted into the mounting frame B (702), and the charging cable B (705) is located directly to the right of the charging cable A (609); the limit screw B (706) is threadedly connected to the mounting frame B (702), and the bottom of the limit screw B (706) contacts the charging cable B (705).

Citation Information

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