Smart watch motion testing device

By combining a smartwatch testing device with arm swing and reciprocating motion, the problems of data stability and consistency in traditional testing methods are solved, enabling multi-dimensional motion evaluation and ensuring the accuracy and consistency of the test.

CN224052556UActive Publication Date: 2026-03-27SHENZHEN YANXIANG QIANDONG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional smartwatch sports data testing methods rely on manual wearing, which makes it difficult to guarantee data stability and consistency. Furthermore, existing testing devices have limited functionality and cannot comprehensively evaluate multi-dimensional sports data.

Method used

Design a smartwatch motion testing device that combines arm swing and reciprocating motion. A rotating disk drives the extended arm to swing and the movable sleeve to reciprocate, enabling multi-dimensional testing, including swinging and vibration in the left and right directions and the vertical direction. The control system collects and compares information such as step count, step frequency, and stride length.

Benefits of technology

It improves the stability and consistency of data evaluation, enabling a comprehensive assessment of the smartwatch's sports performance, reducing the impact of human factors, and supporting simultaneous testing of multiple watches.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent watch motion testing device, and relates to the technical field of intelligent watch motion detection, the intelligent watch motion testing device comprises a mounting rack, a swing arm assembly and a moving assembly, the swing arm assembly comprises a rotating disc which is rotatably mounted on the mounting rack along an axis extending along a first horizontal direction; an extension arm extending in the radial direction of the rotating disc is arranged on the side surface of the rotating disc so as to swing along with the rotating disc in the rotating process of the rotating disc; the moving assembly comprises a movable sleeve, the movable sleeve is arranged outside the extension arm in a sleeving mode and reciprocates in the length direction of the extension arm, and the movable sleeve is used for containing a to-be-tested watch. Swing and vibration in multiple dimensions are covered in the testing process, and motion evaluation of the smart watch can be achieved by comparing the rotating frequency of the rotating disc, the swing amplitude of the extension arm and the reciprocating times of the movable sleeve with information such as the step number and the frequency recorded by the to-be-tested watch. And the testing stability and the consistency of simultaneous testing of a plurality of watches are ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to intelligent wrist -watch motion detection technical field, especially intelligent wrist -watch motion testing device. BACKGROUND

[0002] The test of intelligent wrist -watch motion data usually is verified by test personnel in the traditional mode, but the motion data needs long time and a large number of verification to evaluate the stability and consistency of data, which not only puts forward higher requirements to test personnel, but also is difficult to ensure the reliability of test data.

[0003] For the scene of verifying the consistency of data of multiple devices, a test personnel usually wears multiple watches on left and right hands simultaneously to test, and since the wearing position and the wearing mode of left and right hands are different, it causes that the test conditions are not unified, and it is difficult to ensure that the action amplitudes of left and right hands are consistent, which causes certain influence on evaluating the stability of data. UTILITY MODEL CONTENT

[0004] The utility model discloses a kind of intelligent wrist -watch motion testing devices, and the motion test of intelligent wrist -watch is realized by the form of swing arm movement and reciprocating motion, can support multiple dimensions test, ensure the stability, consistency and accuracy of data evaluation.

[0005] To achieve the above object, the utility model provides a kind of intelligent wrist -watch motion testing device, comprising:

[0006] Mounting frame;

[0007] Swing arm assembly, including the rotation of the axis along the first horizontal direction extension and being installed in the rotating disc of mounting frame, the side surface of rotating disc is provided with the extension arm along its radial direction extension, to swing with rotating disc in the rotating disc rotation process;And,

[0008] Moving assembly, including movable sleeve, the movable sleeve is sleeved on the outside of extension arm, and reciprocating motion is made along the length direction of extension arm, and the movable sleeve is used for the wrist watch to be settled.

[0009] In an embodiment, the swing arm assembly further includes reciprocating transmission structure, and the reciprocating transmission structure includes:

[0010] First driving part, fixed in mounting frame, with the driving shaft of the axis rotation along the second horizontal direction extension and along the second horizontal direction extension;And,

[0011] A transmission assembly is connected to the driving shaft and the rotating disc to convert the reciprocating linear driving force of the driving shaft along the second horizontal direction into the reciprocating swinging driving force of the extension arm around the axis extending along the first horizontal direction.

[0012] The first horizontal direction and the second horizontal direction are perpendicular to each other.

[0013] In an embodiment, a middle portion of the rotating disc is provided with a protrusion, the protrusion is rotatably installed on the mounting frame, and an outer surface of the driving shaft is provided with threads.

[0014] The transmission assembly comprises a sliding sleeve, a rack, and a gear, the sliding sleeve is sleeved on the outer surface of the driving shaft and threadedly cooperates with the driving shaft, the rack extends along the second horizontal direction and is fixed with the sliding sleeve, and the gear is fixedly sleeved on the outside of the protrusion and engages with the rack.

[0015] During rotation of the driving shaft, the sliding sleeve drives the rack to make linear reciprocating movement along the second horizontal direction, so as to drive the rotating disc to rotate and in turn drive the extension arm to reciprocate swing through the gear.

[0016] In an embodiment, the mounting frame comprises a mounting body extending along the up-down direction and a support rod provided at the upper end of the mounting body, the support rod extends along the second horizontal direction, and an end portion of the support rod is provided with a protruding column extending along the first horizontal direction.

[0017] The first driving portion is fixed on the mounting body.

[0018] An end surface of the protrusion is provided with a groove for the protruding column to pass through.

[0019] In an embodiment, the moving assembly further comprises:

[0020] A rotating member extends along the radial direction of the rotating disc, an end portion of the rotating member is rotatably installed to the middle portion of the rotating disc along the axis extending along the first horizontal direction, and the rotating member is provided with a connecting portion.

[0021] A connecting rod is hingedly connected to the connecting portion and the rotating member at one end and is hingedly connected to the outside of the movable sleeve at the other end to drive the movable sleeve to move during rotation of the rotating member; and

[0022] A second driving portion is fixed to the rotating disc to drive the rotating member to move.

[0023] In an embodiment, a side surface of the rotating member is provided with a sliding groove.

[0024] The connecting part is arranged as a stroke adjustment motor movably mounted to the sliding groove.

[0025] In an embodiment, the smart watch motion testing device further comprises a clamping assembly, the clamping assembly comprising:

[0026] a main body fixed to the movable sleeve,

[0027] at least one clamping part arranged at the side of the main body, the clamping part being used for clamping and fixing at least one smart watch to be detected.

[0028] In an embodiment, two opposite sides of the main body are respectively formed with two mounting sides, each of the mounting sides is provided with two first limiting columns arranged at intervals, and an end of the main body is provided with a guide column;

[0029] The clamping assembly further comprises an adjusting slider movably mounted on the guide column in the up-down direction, the adjusting slider is provided with second limiting columns corresponding to the first limiting columns one by one, during the movement of the adjusting slider, the two first limiting columns at the same side can be in common abutment or loose with the two second limiting columns for the smart watch to be detected, the outer surfaces of the first limiting columns and the second limiting columns are both sleeved with soft rubber sleeves, and the outer surfaces of the soft rubber sleeves are provided with recessed parts adapted to the smart watch to be detected.

[0030] The clamping part is arranged in two, each of the clamping parts comprises two first limiting columns and two second limiting columns at the same side.

[0031] In an embodiment, the outer surfaces of the first limiting columns and the second limiting columns are sleeved with soft rubber sleeves, and the outer surfaces of the soft rubber sleeves are provided with recessed parts adapted to the smart watch to be detected.

[0032] In an embodiment, the adjusting slider is provided with a guide groove for the guide column to pass through; and / or,

[0033] The guide column is arranged in two, a connecting block is arranged between the two guide columns, the upper end of the connecting block is provided with a threaded hole, at least part of the adjusting slider is between the two guide columns, the clamping assembly further comprises a screwing piece, one end of the screwing piece is provided with a holding part, the other end passes through the threaded hole and is fixed with the adjusting slider, and the adjusting slider is moved relative to the main body by rotating the holding part.

[0034] In an embodiment, the smart watch motion testing device further comprises a control device, the control device comprising a mainboard, the mainboard being electrically connected with the swing arm assembly and the moving assembly, wherein:

[0035] The smartwatch sports testing device also includes a display screen mounted on the mounting bracket, the display screen being electrically connected to the motherboard; and / or,

[0036] The smartwatch sports testing device also includes an adjustment button on the mounting bracket, which is electrically connected to the motherboard.

[0037] In the technical solution of this utility model, during the rotation of the rotating disk, the extension arm moves. By controlling the rotation trajectory of the rotating disk, the swinging motion of the extension arm can be achieved. The movable sleeve can perform linear reciprocating motion relative to the extension arm, thereby enabling the watch under test to be tested in various scenarios such as swinging only, reciprocating only, and a combination of swinging and reciprocating, thus covering multiple dimensions of swinging and vibration in the left-right and vertical directions during the test. This avoids the problem of limited test scenarios in existing test methods. By comparing the rotation frequency of the rotating disk, the swing amplitude of the extension arm, the number of reciprocations of the movable sleeve with the step count, step frequency, stride length, and frequency recorded by the watch under test, the motion evaluation of the smartwatch can be achieved, ensuring the stability of the test and the consistency of testing multiple watches simultaneously. Attached Figure Description

[0038] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0039] Figure 1 An exploded perspective view of an embodiment of the smartwatch sports testing device provided by this utility model;

[0040] Figure 2 for Figure 1 A schematic diagram of the structure of the smartwatch motion testing device (oscillation process);

[0041] Figure 3 for Figure 1 3D exploded view of the middle swing arm assembly;

[0042] Figure 4 for Figure 1 A schematic diagram of the structure of the moving component (rotational position);

[0043] Figure 5 for Figure 1 A schematic diagram of the structure of the moving component (another rotational position);

[0044] Figure 6 for Figure 1Structure diagram of the moving assembly (another rotating position);

[0045] Figure 7 For Figure 1 Structure diagram of the moving assembly (another rotating position);

[0046] Figure 8 For Figure 1 Structure diagram of the moving assembly (another rotating position);

[0047] Brief Description of the Drawings:

[0048] 100, smart watch motion testing device; 1, mounting frame; 11, mounting body; 12, support rod; 121, convex column; 2, swing arm assembly; 21, rotating disc; 211, convex part; 22, extension arm; 231, first driving part; 231a, driving shaft; 232, sliding sleeve; 233, rack; 3, moving assembly; 31, movable sleeve; 32, rotating piece; 321, connecting part; 33, connecting rod; 34, second driving part; 4, clamping assembly; 41, main body; 411, first limit; 42, guide column; 43, adjusting sliding block; 431, second limit column; 432, guide groove; 44, soft rubber sleeve; 441, recess; 45, screw part; 451, holding part; 5, mainboard; 6, display screen; 7, adjusting button.

[0049] The realization, functional features and advantages of the utility model will be further described with reference to the drawings in combination with embodiments. DETAILED DESCRIPTION

[0050] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0051] It should be noted that if the directionality indication is involved in the embodiments of the utility model, the directionality indication is only used to explain the relative position relationship, movement condition and the like between components in a certain specific posture, and if the specific posture changes, the directionality indication also changes accordingly.

[0052] In addition, if the description of "first", "second" and the like is involved in the embodiments of the utility model, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one feature. In addition, the technical solutions of various embodiments can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.

[0053] The test of the smart watch motion data is usually verified by the tester wearing the test in the traditional mode, which not only puts forward higher requirements for the tester, but also is difficult to ensure the reliability of the test data.

[0054] The existing test device can only realize the step counting function, cannot verify more data types in the motion process, and can only test one object at a time, so it is difficult to meet the increasingly rich motion function test.

[0055] In the existing test table, the step motor is combined with the infrared sensor, the infrared sensor is used to check the change of the infrared light beam between the transmitter and the receiver to determine whether the swing is effective. This method needs to accurately design the relative distance among the transmitter, the receiver and the shield in structure. Since the infrared transmission sensor needs to be used in pairs, the wiring and structure design are more complex, it is difficult to meet the requirements of rotation angle and speed, so it is impossible to test the data such as step frequency, step length and speed matching, and the function is relatively single.

[0056] Therefore, the utility model provides a kind of smart watch motion test device, the motion test of smart watch is realized by the form of swing arm movement and reciprocating motion, can support multiple dimensions test, ensure the stability, consistency and accuracy of data evaluation.

[0057] Please combine Figures 1 to 3 The smart watch motion test device 100 includes a mounting frame 1, a swing arm assembly 2 and a moving assembly 3, the swing arm assembly 2 includes a rotating disc 21 rotatably mounted on the mounting frame 1 along the axis extending in the first horizontal direction, the side surface of the rotating disc 21 is provided with an extension arm 22 extending in the radial direction thereof, so as to swing with the rotating disc 21 during the rotation of the rotating disc 21, and the moving assembly 3 includes a movable sleeve 31, the movable sleeve 31 is sleeved on the outside of the extension arm 22 and reciprocates along the length direction of the extension arm 22, and the movable sleeve 31 is used for placing the watch to be tested.

[0058] The utility model discloses a technical scheme, the process of rotating disc 21 rotation, drive extension arm 22 activity, through the rotation track of control rotating disc 21 can realize the swing action of extension arm 22, and the movable sleeve 31 can be relative to extension arm 22 do linear reciprocating movement, thereby making the watch of waiting for testing can realize only swing, only reciprocating and swing reciprocating combination of multiple scenes under the test of movable sleeve 31, thereby in the test process, the swing, vibration of multiple dimensions such as left and right direction, vertical direction are covered, avoid the problem of limited test scene of the existing test mode, through the rotation frequency of comparison rotating disc 21, the swing amplitude of extension arm 22, the reciprocating times of movable sleeve 31 and the information comparison of the step number, step frequency, step amplitude, frequency recorded by the watch of waiting for testing can realize the motion evaluation of smart watch, guarantee the stability of test and the consistency of multiple watches simultaneous test.

[0059] Please combine Figure 3 , the swing arm assembly 2 further comprises a reciprocating transmission structure for enabling the extension arm 22 to swing and reciprocate, i.e., the extension arm 22 can only reciprocate and swing at a set angle, and cannot rotate 360°. Specifically, the reciprocating transmission structure comprises a first driving part 231 and a transmission assembly. The first driving part 231 is fixed to the mounting frame 1 and has a driving shaft 231a extending along the second horizontal direction and rotating along the axis extending in the second horizontal direction. The reciprocating transmission structure comprises a transmission assembly which is connected to the driving shaft 231a and the rotating disc 21, and is used to convert the reciprocating linear driving force of the driving shaft 231a in the second horizontal direction into the reciprocating swing driving force of the extension arm 22 around the axis extending in the first horizontal direction. That is, during the continuous reciprocation of the driving shaft 231a, the rotating disc 21 does not continuously rotate 360°, but reciprocates and swings, thereby simulating the motion of the user's arm swing.

[0060] The first driving part 231 can be a servo motor. By inputting parameters, the motor rotation angle, rotation frequency, and rotation times can be controlled to achieve swing amplitude and frequency control.

[0061] The utility model discloses not limit the specific structure of transmission assembly, can be crank slider mechanism, screw nut mechanism etc. In this embodiment, the middle part of rotary disc 21 is provided with convex portion 211, and convex portion 211 is rotatably installed on mounting frame 1;Transmission assembly includes sliding sleeve 232, rack 233 and gear, sliding sleeve 232 is fixedly sleeved on the outer surface of drive shaft 231a, rack 233 extends along the second horizontal direction, and is fixed with sliding sleeve 232, gear is fixedly sleeved on the outside of convex portion 211, and is engaged with rack 233;Among them, first drive part 231 has cylinder barrel, and the cylinder barrel is fixed, and the end portion is provided with the through hole that communicates the inner chamber of cylinder barrel, and one end of first drive shaft 231a is in the cylinder barrel, and the other end can be telescopic from the through hole, to realize the activity in the second horizontal direction, in the process that drive shaft 231a reciprocates linearly along the second horizontal direction relative to cylinder barrel, sliding sleeve 232 moves synchronously with drive shaft 231a, to drive rack 233 to reciprocate linearly along the second horizontal direction, to drive rotary disc 21 to rotate through the intermeshing relationship of rack 233 and gear. Since rotary disc 21 is rotatably installed through the convex portion 211 in the center thereof, rotary disc 21 can rotate along the axis in the first horizontal direction, and thus can drive extension arm 22 to swing, thereby achieving the design requirement of swing test.

[0062] It should be noted that the first drive part 231 is set as a servo electric cylinder, and the drive shaft 231a can realize telescopic movement along the second horizontal direction through the cooperation of internal parts, thereby driving the rack 233 to reciprocate linearly.

[0063] Specifically, the first horizontal direction and the second horizontal direction are perpendicular to each other, for example, the first horizontal direction is front-to-back, and the second horizontal direction is left-to-right. According to different positions of the device, different directions can be corresponded.

[0064] Based on the above embodiment, the mounting frame 1 includes a mounting body 11 extending in the up-down direction and a support rod 12 provided at the upper end of the mounting body 11, the support rod 12 extends in the second horizontal direction, and the end of the support rod 12 is provided with a convex column 121 extending in the first horizontal direction; the first drive part 231 is fixed to the mounting body 11; the end face of the convex portion 211 is provided with a groove for the convex column 121 to pass through. The mounting body 11 and the support rod 12 form an L-shaped support structure, the first drive part 231 is arranged at the side of the mounting body 11 and avoids the support rod 12, and the extension direction of the support rod 12 is the same as the extension directions of the drive shaft 231a and the rack 233. Thus, the combination of related components is completed.

[0065] Further, the mounting frame 1 further includes an upper shell and a lower cover that are spliced to serve as the mounting base of the mounting body 11, which can increase the contact area with the plane and ensure stability. At the same time, the control components can also be arranged between the upper shell and the lower cover.

[0066] The utility model discloses do not limit the specific form of mobile assembly 3, can drive the reciprocating of movable sleeve 31 through the expansion and contraction of air cylinder, can also realize the reciprocating drive of movable sleeve 31 through screw nut mechanism, in this embodiment, please combine Figure 3 , mobile assembly 3 still includes rotating part 32, connecting rod 33 and second drive part 34, rotating part 32 extends along the radial direction of rotary disc 21, and the end of rotating part 32 is rotationally installed to the middle part of rotary disc 21 along the axis extending in the first horizontal direction, and connecting portion 321 is arranged on rotating part 32;Connecting rod 33 one end is hinged with connecting portion 321, and the other end is hinged with the outside of movable sleeve 31 to drive movable sleeve 31 to move in the rotating process of rotating part 32;Second drive part 34 is fixed to rotary disc 21 to drive rotating part 32 to move.Specifically, please combine Figures 4 to 6 , the one end of second drive part 34 drives rotating part 32 to rotate actively, and because of the hinged cooperation of connecting rod 33, the height of the upper end of connecting rod 33 will change in the counterclockwise rotating process, thereby pulling movable sleeve 31 to make lifting movement.

[0067] Further, the position of connecting portion 321 along the extension direction of rotating part 32 is adjustable.By adjusting the relative position of connecting portion 321 on rotating part 32, the reciprocating stroke of connecting rod 33 driving movable sleeve 31 can be changed, for example, when connecting portion 321 is at the end and middle part of rotating part 32, the stroke of movable sleeve 31 is different.

[0068] It should be understood that the position adjustment of connecting portion 321 can be manual adjustment, in some embodiments, the side surface of rotating part 32 is provided with sliding groove;Connecting portion 321 is arranged as stroke adjustment motor, and the stroke adjustment motor is movably installed to the sliding groove.The stroke adjustment motor can be electrically connected with mainboard 5, so as to actively move in the sliding groove according to the operation instruction, realize the adjustment of position, so that the driving control of the whole detection device is more intelligent.

[0069] Second drive part 34 can be arranged as motor, and the motor is directly embedded and installed in the middle part of rotary disc 21, and the main shaft of the motor is directly connected with the end of rotating part 32.

[0070] Further, the smart watch motion testing device 100 further comprises a clamping assembly 4, the clamping assembly 4 comprises a main body 41 and at least one clamping part, the main body 41 is fixed to the movable sleeve 31, in some embodiments, a threaded position can be arranged at the lower end of the push-pull sleeve, the main body 41 is detachably connected with the movable sleeve 31 through threads, the clamping part is arranged at the side of the main body 41, and the clamping part is used for clamping and fixing at least one smart watch to be detected. For example, one clamping part can clamp multiple smart watches at the same time, or two clamping parts can be arranged, each clamping part clamps one smart watch, or two clamping parts can be arranged, each clamping part clamps multiple smart watches, that is, through reasonable design of the clamping part, multiple smart watches to be detected can be placed.

[0071] The clamping part can be mechanical clamping or pneumatic adsorption. Please combine Figures 7 to 8 The opposite sides of the main body 41 are respectively formed with two mounting sides, each mounting side is protrudingly provided with two first limiting columns 411 arranged at intervals, and the end of the main body 41 is provided with a guide column 42; the clamping assembly 4 further comprises an adjusting sliding block 43, the adjusting sliding block 43 is movably mounted on the guide column 42 along the length direction of the guide column 42, the adjusting sliding block 43 is provided with second limiting columns 431 corresponding to the first limiting columns 411 one by one, that is, the first limiting columns 411 are arranged in four, and each two first limiting columns 411 are arranged at the same mounting side, the second limiting columns 431 are arranged in four, and the lower end of the adjusting sliding block 43 can be connected through a threaded part 45, an operator rotates the threaded part 45 to drive the adjusting sliding block 43 to move, and in the movement process of the adjusting sliding block 43, the four second limiting columns 431 can be simultaneously adjusted to adjust the distance from the first limiting columns 411, so that the two first limiting columns 411 located at the same side can be close to each other to jointly abut or move away from each other to loosen the smart watch to be detected; at this time, the clamping part is arranged in two and located at the opposite sides of the main body 41, each clamping part comprises two first limiting columns 411 and two second limiting columns 431 located at the same side. For example, in the static state, the two clamping parts correspond to the left and right sides of the main body 41 respectively, and the guide column 42 extends in the vertical direction, at this time, in the linear movement process of the adjusting sliding block 43 along the guide column 42, in the clamping part located at the left side or the clamping part located at the right side, the two second limiting columns 431 can be cooperated with the two first limiting columns 411, so as to abut against the lower side and the upper side of the smart watch to be detected, and mechanical clamping and fixing are realized. The cooperation of the four limiting columns can adapt to the shape of the watch, avoid the arc curve of the watch case from slipping in the swinging process, and at the same time, it is beneficial to avoid the connection structure of the watch and the watchband. At the same time, this structure form can make the two smart watches installed synchronously, the motion state synchronously, and the disassembly and assembly action synchronously.

[0072] Further, the outer surfaces of the first limiting column 411 and the second limiting column 431 are sleeved with a soft rubber sleeve 44, and the outer surface of the soft rubber sleeve 44 is provided with a recess 441 for adapting to the smart watch to be detected.

[0073] The soft rubber sleeve 44 is used to contact the watch case and can provide a certain compression and extrusion, so as to improve the clamping effect and protect the appearance of the test watch from being damaged. The recess 441 is an arc-shaped recess provided on the soft rubber sleeve 44, so as to adapt to the watch, so that the watch can be embedded in the recess 441, the stability is improved, and the clamping and positioning are facilitated.

[0074] Based on the above embodiment, each clamping part can clamp multiple watches at the same time, and the multiple watches are arranged at intervals along the extension direction of the limiting column. Correspondingly, multiple recesses 441 are provided on the outer surface of the soft rubber sleeve 44.

[0075] In order to improve the stable cooperation of the guide, in some embodiments, the adjusting slide 43 is provided with a guide groove 432 for the guide column 42 to pass through. The guide groove 432 should be adapted to the shape of the guide column 42. When the guide column 42 is a cylinder, the guide groove 432 is a circular hole. When the guide column 42 is a square, a guide groove 432 penetrating in the up-down direction is formed in the side surface of the adjusting slide 43, so as to be inserted and matched.

[0076] In order to realize the driving of the adjusting slide 43 and enable the adjusting slide 43 to be locked at the position for clamping the watch in cooperation with the first limiting column 411, in some embodiments, two guide columns 42 are provided, a connecting block is arranged between the two guide columns 42, the upper end of the connecting block is provided with a threaded hole, at least part of the adjusting slide 43 is between the two guide columns 42, the clamping assembly 4 further comprises a screw member 45, one end of the screw member 45 is provided with a holding part 451, the surface of the screw member 45 is provided with a thread (not shown in the figure), which can be threadedly matched with the threaded hole, and the other end of the screw member 45 is fixed with the adjusting slide 43. The adjusting slide 43 is driven to move relative to the main body 41 by rotating the holding part 451. In this structure, the space occupied by the related structure is small, the operator holds the holding part 451, and the thread of the screw member 45 is moved by rotating the holding part 451, so as to drive the adjusting slide 43 to move upward or downward. Because the screw member 45 is threadedly matched with the connecting block, even if the holding part 451 is loosened, the self-locking can be realized due to the thread cooperation, so as to realize the position fixing.

[0077] It should be noted that in other embodiments, the driving form of the air cylinder can also be realized, and the utility model does not make detailed description.

[0078] Moreover, the smart watch motion testing device 100 further comprises a control device, which comprises a mainboard 5 electrically connected with the swing arm assembly 2 and the moving assembly 3, so as to control the driving of the extension arm 22 and the movable sleeve 31, and through the electrical connection with the swing arm assembly 2 and the moving assembly 3, the relevant parameters can be obtained, and the data collection is facilitated to match the evaluation with the watch data.

[0079] Specifically, the smart watch motion testing device 100 further comprises a display screen 6 arranged on the mounting rack 1, which is electrically connected with the mainboard 5, and the display screen 6 can display the set parameters and various data indexes in the testing process. The smart watch motion testing device 100 further comprises an adjusting button 7 arranged on the mounting rack 1, which is electrically connected with the mainboard 5, so as to provide the user with the adjusting operation through the key.

[0080] With Figure 1 the embodiment as an example, the cooperation of the related structures is described.

[0081] The mounting rack 1 is composed of a main body 41, a support rod 12, an upper shell and a lower cover. The control device is integrated in the upper shell and the lower cover, which comprises a mainboard 5, and through the chip and the program, various testing parameters can be set. The display screen 6 is arranged on the upper shell to realize the data display in the testing process, and the user can operate the adjusting button 7 to test. The servo electric cylinder is arranged above the main body 41, which is connected with the horizontal gear (i.e. the rack). The horizontal gear is engaged with the gear of the convex part 211 of the rotating disc 21. The extension arm 22 is a connecting rod with a certain length, which is provided with the movable sleeve 31. The lower end of the movable sleeve 31 is provided with the clamping assembly 4. During the testing, four watches can be placed on the clamping assembly 4 at the same time, and the clamping is realized through the cooperation of the limiting column and the soft rubber sleeve 44. The rotating disc 21 is cooperated with the movable sleeve 31 through the rotating piece 32 and the connecting rod 33, so as to realize the up-down vibration of the movable sleeve 31. The adapter part is provided with a stroke adjusting motor, and the push-pull stroke (i.e. the vibration amplitude) can be adjusted through the control. The testing device has the advantages of simple structure, simple operation and stable reliability, and can reduce the adverse effects of human factors on the testing structure. Specifically, the device can adjust the horizontal gear and the stroke adjusting motor through the controller driving device, control the amplitude of left-right swing and the amplitude of up-down motion, so as to make the testing process more convenient and simple. Moreover, the device can fix multiple watch heads, support the same frequency swing of multiple devices, provide accurate testing conditions for the motion algorithm, and facilitate the analysis of the algorithm consistency and the consistency of multiple devices.

[0082] The swing arm is used to simulate the swing of the arm, the stroke of the first driving part 231 is controlled, the swing arm can swing left and right according to a certain amplitude, the stroke adjusting motor is matched with the connecting rod 33, the stroke of the connecting rod 33 is controlled, the movable sleeve 31 reciprocates along the vertical direction, the extending arm 22 can effectively swing according to the set frequency through the adjustment control system, the error caused by the artificial test condition is solved through the comparison of the motor rotating speed, the amplitude, the vibration frequency and the steps, the step frequency, the step amplitude, the frequency and the like of each watch, the stability and the consistency of the algorithm are accurately evaluated. Meanwhile, the structure supports the swing and vibration in multiple dimensions such as the left and right directions and the vertical direction. The problem of the limited test scene under the single structure is solved.

[0083] The above is only the preferred embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made by using the utility model specification and the attached drawings or directly / indirectly applied in other related technical fields under the utility model concept of the utility model is included in the patent protection range of the utility model.

Claims

1. A smart watch exercise testing device, characterized by, The smart watch motion testing device comprises: a mounting frame; a swing arm assembly, comprising a rotating disc rotatably mounted on the mounting frame along an axis extending in a first horizontal direction, a side surface of the rotating disc being provided with an extension arm extending in a radial direction of the rotating disc to swing with the rotating disc during rotation of the rotating disc; and a moving assembly, comprising a movable sleeve, the movable sleeve being sleeved on an outer portion of the extension arm and reciprocating along a length direction of the extension arm, the movable sleeve being used for placing a watch to be tested. 2.The smart watch motion testing device of claim 1, wherein, The swing arm assembly further comprises a reciprocating transmission structure, the reciprocating transmission structure comprising: a first driving portion fixed on the mounting frame and having a driving shaft reciprocating in a second horizontal direction; and a transmission assembly in transmission connection with the driving shaft and the rotating disc, used for converting a reciprocating linear driving force of the driving shaft in the second horizontal direction into a reciprocating swing driving force of the extension arm around the axis extending in the first horizontal direction. The first horizontal direction and the second horizontal direction are perpendicular to each other. 3.The smart watch motion testing device of claim 2, wherein, A convex portion is convexly arranged at a middle portion of the rotating disc, the convex portion being rotatably mounted on the mounting frame. The transmission assembly comprises a sliding sleeve, a rack and a gear, the sliding sleeve being fixedly sleeved on an outer surface of the driving shaft, the rack extending in the second horizontal direction and being fixed with the sliding sleeve, the gear being fixedly sleeved on an outer portion of the convex portion and being in mesh with the rack. During reciprocation of the driving shaft, the sliding sleeve drives the rack to make linear reciprocation in the second horizontal direction, so as to drive the rotating disc to rotate and further drive the extension arm to reciprocate swing through the gear. 4.The smart watch motion testing device of claim 3, wherein, The mounting frame comprises a mounting body extending in an up-down direction and a support rod arranged at an upper end of the mounting body, the support rod extending in the second horizontal direction, an end portion of the support rod being convexly provided with a convex column extending in the first horizontal direction. The first driving portion is fixed on the mounting body. An end face of the convex portion is provided with a groove for the convex column to pass through. 5.The smart watch motion testing device of claim 1, wherein, The moving assembly further comprises: a rotating member extending in the radial direction of the rotating disc, an end portion of the rotating member being rotatably mounted to the middle portion of the rotating disc along the axis extending in the first horizontal direction, the rotating member being provided with a connecting portion; a connecting rod, one end of the connecting rod being hingedly connected with the connecting portion and being in sliding connection with the rotating member, the other end of the connecting rod being hingedly connected with an outer portion of the movable sleeve to drive the movable sleeve to move during rotation of the rotating member; and a second driving portion fixed to the rotating disc to drive the rotating member to move. 6.The smart watch motion testing device of claim 5, wherein, A side surface of the rotating member is provided with a sliding groove. The connecting portion is a stroke adjustment motor, the stroke adjustment motor being movably mounted to the sliding groove. 7.The smart watch motion testing device of claim 1, wherein, The smart watch motion testing device further comprises a clamping assembly, the clamping assembly comprising: a main body fixed to the movable sleeve, at least one clamping portion arranged at a side of the main body, the clamping portion being used for clamping at least one smart watch to be detected. 8.The smart watch motion testing device of claim 7, wherein, Opposite sides of the main body are respectively formed with two mounting sides, each of the mounting sides being convexly provided with two first limiting columns arranged at intervals, an end portion of the main body being provided with a guide column. The clamping assembly further comprises an adjusting slider movably mounted on the guide column along the length direction of the guide column, and a second limiting column corresponding to the first limiting column is arranged on the adjusting slider; during the movement of the adjusting slider, the two first limiting columns on the same side can be in contact with the two second limiting columns to hold or release the smart watch to be detected; the outer surfaces of the first limiting column and the second limiting column are sleeved with soft rubber sleeves, and the outer surfaces of the soft rubber sleeves are provided with recesses matched with the smart watch to be detected. The clamping part is provided with two clamping parts, each of which comprises two first limiting columns and two second limiting columns on the same side. 9.The smart watch motion testing device of claim 8, wherein, The adjusting slider is provided with a guide groove for the guide column to pass through; and / or, The guide column is provided with two guide columns, and a connecting block is arranged between the two guide columns, the upper end of the connecting block is provided with a threaded hole, at least part of the adjusting slider is between the two guide columns, the clamping assembly further comprises a screwing piece, one end of the screwing piece is provided with a holding part, the other end passes through the threaded hole and is fixed with the adjusting slider, and the adjusting slider is moved relative to the main body by rotating the holding part. 10.The smart watch motion testing device of claim 1, wherein, The smart watch motion testing device further comprises a control device, and the control device comprises a mainboard electrically connected with the swing arm assembly and the moving assembly, wherein: The smart watch motion testing device further comprises a display screen arranged on the mounting frame, and the display screen is electrically connected with the mainboard; and / or, The smart watch motion testing device further comprises an adjusting button arranged on the mounting frame, and the adjusting button is electrically connected with the mainboard.