Multifunctional skipping rope handle and skipping rope
By designing a multi-functional skipping handle, including a compact layout circuit board and a stable limiting rib structure, the problem of easy disengagement of existing skipping handles is solved, and a more stable and functional handle design is achieved.
Patent Information
- Application Number
- CN202421743449.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-22
AI Technical Summary
The internal structure of the existing skipping rope handle is not compact enough, which makes the handle easy to fall out of the hand.
A multi-functional skipping rope handle is designed, including a head section, a bent section and a handheld section. The circuit board extends along the bend direction of the handle body. The induction body and the counting sensor are connected to the rotary body. The battery is located in the handheld section. The limiting ribs and fixing holes are used to stabilize the installation of the circuit board.
The compact layout of the internal structure of the handle is realized, avoiding the handle from being disengaged, and increasing the stability and functionality of the handle, including counting function and heart rate monitoring.
Smart Images

Figure CN222969106U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fitness equipment, and more specifically, to a multifunctional skipping rope handle and a skipping rope. Background Art
[0002] Skipping rope is a traditional physical exercise item, which occupies an important position in people's daily physical exercise. And from the initial ordinary physical exercise item, skipping rope has gradually derived various jumping methods, and even developed into a high-intensity competitive event.
[0003] The patent publication number is CN115702992A, which discloses a skipping rope. The handle further includes a detection device and a battery. The detection device and the battery are both located in the housing of the corresponding handle, and the battery supplies power to the detection device. The detection device includes a circuit board. According to the structure of the drawings in this application, the circuit board in this solution is only located on the upper side of the handle. On the one hand, the internal structure layout of the skipping rope handle is not compact enough. On the other hand, most of the weight of the skipping rope handle is concentrated on the upper side, which is the side where the skipping rope handle is connected to the rope body. During the process of swinging the skipping rope, due to the large weight on this side, it is easy to make the handle slip out of the hand. Summary of the Utility Model
[0004] The utility model provides a multifunctional skipping rope handle, which makes the internal structure layout of the handle more reasonable and solves the problems that the internal structure of the existing skipping rope handle is not compact enough and it is easy to slip out.
[0005] The utility model also provides a skipping rope, which uses the skipping rope handle for training to make the force on each part of the handle more uniform during the skipping process.
[0006] To achieve the above object, the technical solution provided by the utility model is as follows:
[0007] A multifunctional skipping rope handle includes a handle main body formed by an outer housing. The handle main body includes a head section, a bending section and a hand-held section which are connected in sequence from the head to the tail;
[0008] The axis line aa of the head section, the axis line bb of the bending section and the axis line cc of the hand-held section are located in the same plane; relative to the axis line aa of the head section, the axis line bb of the bending section is bent towards the side of the axis line aa of the head section; relative to the axis line bb of the bending section, the axis line cc of the hand-held section is bent towards the side of the axis line bb of the bending section again;
[0009] A circuit board is arranged in the handle main body. One end of the circuit board extends to one end of the handle main body close to the head section, and the other end extends to the handle tail end of the handle main body in sequence along the direction of the head section, the bending section and the hand-held section.
[0010] Further, the head segment is connected to a rotating body which is capable of rotating relative to the handle body, and an inductor is connected to the rotating body; one end of the circuit board is provided with a counting sensor for connecting to the inductor.
[0011] Further, the outer housing includes a front housing and a rear housing, and the circuit board is located inside the front housing; the front housing is provided with second limiting ribs in a stepped shape, and the circuit board is supported on the second limiting ribs; the rear housing is further provided with fixing holes for fixedly connecting the circuit board.
[0012] Further, a battery connected to the circuit board is further provided inside the handle body, and the battery is located inside the handheld segment.
[0013] Further, a display screen and at least one button are further provided on the front housing, the display screen and the button are both electrically connected to the circuit board, and the display screen is located on the side facing the trainer.
[0014] Further, a heart rate sensor electrically connected to the circuit board is provided on the upper side of the bending segment, and a limiting groove is provided inside the outer housing for installing the heart rate sensor.
[0015] Further, a connecting rod is provided on the side of the rotating body facing the handle body, a rotating connecting portion is sleeved and connected on the connecting rod, and the rotating connecting portion is further connected to the head segment.
[0016] Further, one end of the connecting rod is provided with a flat segment, a connecting seat is connected to the flat segment, and the inductor is located on the connecting seat.
[0017] The present utility model further provides a skipping rope, including a first skipping rope handle and a second skipping rope handle, and at least one of the first skipping rope handle and the second skipping rope handle is the skipping rope handle as described above;
[0018] The first skipping rope handle and the second skipping rope handle are connected by a rope body;
[0019] Alternatively, counterweights are respectively connected to the first skipping rope handle and the second skipping rope handle.
[0020] Further, the counterweight is a hollow sphere inside, and a plurality of through holes are opened on the surface of the sphere.
[0021] Adopting the technical solution provided by the present utility model, compared with the prior art, the following beneficial effects are achieved:
[0022] (1) A multi-functional skipping rope handle of the present utility model includes a head section, a bent section, and a hand-held section. The bent section is bent, and the head section and the hand-held section are connected through the bent bent section. A circuit board is arranged inside the handle body. One end of the circuit board extends to a position close to the rotating body, and the other end extends to the end of the handle body following the bending direction of the handle body, making the circuit board make the most of the space inside the handle body, making the structure of the handle body more compact and preventing the handle body from slipping out of the hand during skipping.
[0023] (2) A multi-functional skipping rope handle of the present utility model has second limiting ribs in a stepped shape arranged on the front shell. The circuit board is supported on the second limiting ribs. The stepped second limiting ribs can, according to the different depths of the circuit board inside the front shell, make the stepped steps on the second limiting ribs adapt to support the edge of the circuit board, so that the circuit board is stably installed inside the handle body.
[0024] (3) A multi-functional skipping rope handle of the present utility model has a battery arranged inside the handle body, and the battery is located inside the hand-held section, which can balance the weight of the skipping rope handle, prevent the weight of the skipping rope handle from concentrating on the upper part of the skipping rope handle, and avoid excessive force on the upper part of the skipping rope handle during skipping, making it easy to be thrown out of the hand.
[0025] (4) A multi-functional skipping rope handle of the present utility model has buttons, a display, and a heart rate sensor arranged on the handle body and connected to the circuit board, making it convenient to count during skipping, and at the same time, it can monitor the heart rate of the trainer in real time during skipping and make real-time training adjustments according to the heart rate condition.
[0026] (5) A multi-functional skipping rope handle of the present utility model has a flat section arranged at one end of the connecting rod on the rotating body. The flat section is connected in a matching manner with the flat hole on the connecting seat, enabling the connecting seat to rotate following the rotating body and avoiding slipping between the connecting seat and the rotating body.
[0027] (6) A skipping rope of the present utility model has at least one of the first skipping rope handle and the second skipping rope handle being the skipping rope handle described above, and has the beneficial effects of the skipping rope handle. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a schematic diagram of the overall structure of the skipping rope handle and the skipping rope;
[0029] Figure 2 It is a schematic diagram of the relative position relationship between the head section and the hand-held section;
[0030] Figure 3 It is a three-dimensional structure schematic diagram of the skipping rope handle and the skipping rope;
[0031] Figure 4 It is a schematic diagram of the internal structure of the skipping rope handle facing the rear shell direction;
[0032] Figure 5 Schematic diagram of the internal structure of the skipping rope handle facing the front housing direction;
[0033] Figure 6 Schematic diagram of the internal structure of the front housing;
[0034] Figure 7 Schematic diagram of the connection of the rotating body, the rotating connection part and the connection seat;
[0035] Figure 8 Schematic diagram of the structure of the rotating body;
[0036] Figure 9 Schematic diagram of the structure of the connection seat.
[0037] Label description:
[0038] 1. Handle body; 101. Button; 102. Heart rate sensor; 103. Display screen; 104. Fixing member; 105. Limiting groove; 106. First limiting rib; 107. Second limiting rib; 108. Fixing hole; 109. Support plate;
[0039] 11. Head section; 12. Bending section; 121. Second upper side; 122. Second lower side; 13. Hand-held section; 131. Third side; 132. Handle end; 14. Front housing; 15. Rear housing;
[0040] 2. Rotating body; 201. Connecting rod; 202. Flat section; 203. Rope passing hole;
[0041] 21. Rotating connection part; 22. Connection seat; 221. Inductive body; 222. Fixed end; 223. Flat hole; 3. Rope body; 4. Counterweight body; 401. Through hole; 5. Circuit board; 501. Button; 502. Counting sensor; 503. Display; 504. Charging interface; 505. Battery. Detailed implementation manners
[0042] To further understand the content of the present invention, the present invention will be described in detail in conjunction with the drawings and embodiments.
[0043] It should be noted that the terms "first", "second", etc. in the description and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and do not have to be used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so as to implement the embodiments of this application described herein.
[0044] In this application, the orientation or positional relationship indicated by terms such as "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal", etc. is based on the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe this application and its embodiments, and are not used to limit that the indicated devices, elements, or components must have a specific orientation, or be constructed and operated in a specific orientation. Moreover, in addition to being able to represent the orientation or positional relationship, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in this application can be understood according to specific circumstances.
[0045] A skipping rope handle provided in this embodiment, as the handle of a sports equipment, is mainly applied to connect with a rope body for skipping rope exercise. Of course, in other cases, the skipping rope handle in this embodiment can also be used as the handle of other sports equipment, such as a dumbbell curl bar, etc. This embodiment will still be described with skipping rope as an example.
[0046] As Figure 1 and 2 shown, a skipping rope handle provided includes a handle body 1. When performing skipping rope training, the hand of the trainer grips the handle body 1.
[0047] The handle body 1 includes a head section 11, a bending section 12, and a hand-held section 13, and the head section 11, the bending section 12, and the hand-held section 13 are connected in sequence from the head to the tail. Among them, the bending section 12 is bent, its upper end is connected to the head section 11, and its lower end is connected to the hand-held section 13. The axis aa of the head section 11, the axis bb of the bending section 12, and the axis cc of the hand-held section 13 are located in the same plane.
[0048] Relative to the axis aa of the head section 11, the axis bb of the bending section 12 is bent towards the side away from the axis aa of the head section 11 and forms an angle α between the axis bb and the axis aa, and the angle α is 45°; relative to the axis bb of the bending section 12, the axis cc of the hand-held section 13 is bent towards the side close to the axis aa of the head section 11 and forms an angle β between the axis cc and the axis aa, and the angle β is 30°.
[0049] In other embodiments, the angles α and β can also be set to other values, but the angle α is not greater than 50°, and the angle β is not greater than the angle α.
[0050] To Figure 2Taking the middle orientation as an example, specifically, the lower end of the head section 11 is connected to the bent section 12. Relative to the head section 11, the axis line bb of the bent section 12 bends towards the right. After the bent section 12 bends, it extends towards the handheld section 13 and is connected to the handheld section 13. Relative to the bent section 12, the axis line cc of the handheld section 13 bends towards the left, making the handle body 1 form a "Z" shape or a "lightning" shape.
[0051] Still taking Figure 1 and Figure 2 the view direction in as an example, the upper side of the bent section 12 is the second upper side 121, and the lower side is the second lower side 122. In this embodiment, the second upper side 121 is configured as the place where the thumb presses when the hand grasps, and the second lower side 122 is configured as the place where the index finger abuts when the hand grasps.
[0052] Taking the example of a trainer grasping with the right hand, the handheld section 13 in this skipping rope handle is the main part for the hand to grasp. When grasping with the right hand, the thumb presses on the second upper side 121 of the bent section 12, and the index finger abuts on the second lower side 122 of the bent section 12 and is close to the connection between the bent section 12 and the handheld section 13, so that the thumb and index finger of the hand clamp on the bent bent section 12. After the hand grasps the handle body 1, the handheld section 13 is located in the palm, and the remaining four fingers except the thumb grasp on the handheld section 13, and the thumb and index finger clamp on both sides of the bent section 12.
[0053] During the skipping process, usually the head section 11 in the handle body 1 faces the outside of the trainer's body, and the handheld section 13 faces the inside of the body. The force direction of the handle body 1 is the direction from the handheld section 13 towards the head section 11. In this embodiment, through the bent bent section 12 connecting the head section 11 and the handheld section 13, after the hand grasps the handle body 1, the thumb and index finger clamp the bent section 12, and the clamping force of the thumb and index finger can provide a block for the handle to slide or come out, so that the handle body 1 can be stably and firmly grasped in the trainer's hand. Similarly, the left - hand grasping method of the trainer is the same as the right - hand grasping method.
[0054] The connections between the head section 11 and the bent section 12 and between the bent section 12 and the handheld section 13 are smoothly transitioned, making the grasping more comfortable. In this embodiment, the smooth transition is not limited to the arc - shaped transition method, but also includes the transition method connected by several chamfer lines, as long as there are no protruding edges at the connection.
[0055] As an implementation method, the head section 11, the bent section 12 and the handheld section 13 are integrally formed to form the handle body 1. The handle body 1 is made of plastic and can be formed by injection molding when integrally formed. In other cases, the handle body 1 can also be made by 3D printing. Of course, in some cases, the head section 11, the bent section 12 and the handheld section 13 can also be connected by other methods.
[0056] As shown in the combination Figure 3 The free end of the handheld section 13 is the handle tail end 132. The outer shape of the handheld section 13 is conical, and its cross-sectional area gradually increases from the handle tail end 132 to the connection between the bending section 12 and the handheld section 13. The handle tail end 132 is arc-shaped. Setting the outer shape of the handheld section 13 as conical can, on the one hand, optimize the structure of the handle body 1 and reduce the use of raw materials; on the other hand, when the hand grasps the handle body 1, the main force points for grasping by the hand are at the bending section 12 and the upper part of the handheld section 13. The handheld section 13 is located at the palm of the hand. The closer the handheld section 13 is to the handle tail end 132, the smaller its cross-sectional area, so that the handheld section 13 has a certain movement space in the palm, which is convenient for adjusting the position of the handle body 1 in the hand and making it easy to adjust the handle body 1 to the most comfortable position for each trainer.
[0057] The handle body 1 is formed by an outer shell, and a space capable of accommodating other components is provided inside it. A heart rate sensor 102 is provided at the outer shell where the bending section 12 is located. Specifically, the heart rate sensor 102 is located on the second upper side 121 of the bending section 12. One side of the heart rate sensor 102 is outside the outer shell, and the other side is connected to the circuit board 5 located inside the handle body 1, so that when the trainer's thumb presses on the second upper side 121, it can press on the heart rate sensor 102 for collecting the heart rate of the trainer and performing real-time heart rate collection and monitoring during the skipping rope training process.
[0058] Two buttons 101 are also provided on the handle body 1. By operating the buttons, the counting function of the skipping rope or the heart rate monitoring function of the skipping rope can be started. In other cases, the button 101 can also be set to one or other quantities. In this embodiment, the button 101 is set on the side close to the thumb tip when the hand grasps the handle body 1, which is convenient for the thumb to operate the button. More specifically, the button 101 is set at the head section 11 or the bending section 12 of the handle body 1, so as to be close to the thumb.
[0059] A display screen 103 is also provided on the handle body 1. The display screen 103 can be used to display the skipping rope count and the real-time heart rate. The display screen 103 is located on the side close to the trainer during use, which is convenient for observation during training. More specifically, the display screen 103 is set at the handheld section 13.
[0060] A circuit board 5 is provided inside the handle body 1. The heart rate sensor 102, the button 101, and the display screen 103 are all electrically connected to the circuit board 5.
[0061] In this embodiment, a connecting portion is provided at one end of the head section 11. The connecting portion is connected to the rotating body 2, and the other end of the head section 11 is connected to the bending section 12. The rotating body 2 can rotate relative to the handle body 1, and the rotating body 2 is used to connect to the rope body 3. During the skipping process, when skipping once, the rotating body 2 rotates one circle following the rope body 3, which can prevent the rope body 3 from being wound together. In other cases, the connecting portion at one end of the head section 11 can also be a part of the head section 11, and the connecting portion is integrally provided with the head section 11, and the rope body 3 is directly connected to the connecting portion. The skipping rope handle in this way is relatively simple, but the rope body 3 is prone to winding during the skipping process.
[0062] Combined with Figure 1 and Figure 3 As shown, the handle body 1 is formed by an outer shell, and a circuit board 5 is provided inside the outer shell. In this embodiment, the rotating body 2 rotates relative to the handle body 1, and an induction body 221 is connected to the rotating body 2. One end of the circuit board 5 located inside the outer shell is provided with a counting sensor 502 for connecting to the induction body 221, and the other end of the circuit board 5 extends to the handle end 132 of the handle body 1 along the directions of the head section 11, the bending section 12, and the hand-held section 13 in sequence. Here, the connection method between the counting sensor 502 and the induction body 221 is an inductive connection, and they do not directly contact. The counting sensor 502 is arranged close to the induction body 221. During the rotation of the rotating body 2, the induction body 221 is driven to rotate synchronously. When the induction body 221 rotates to a position where it can be recognized by the counting sensor 502, the counting sensor 502 is triggered to transmit a signal and count once.
[0063] Combined with Figure 4 and Figure 5 As shown, one end of the circuit board 5 extends to a position close to the rotating body 2, and the other end extends to the handle end 132 following the bending direction of the handle body 1. Relative to the axis line aa of the head section 11, the axis line bb of the bending section 12 bends towards the axis line aa of the head section 11; relative to the axis line bb of the bending section 12, the axis line cc of the hand-held section 13 bends towards the axis line bb of the bending section 12 again. The circuit board 5 is also bent to adapt to the shape of the handle body 1, so as to maximize the use of the space inside the handle body 1 to reasonably layout the components on the circuit board 5, making the structure of the handle body 1 more compact.
[0064] A rotating body 2 is provided on the handle body 1. When skipping once, the rotating body 2 rotates one circle. When the rotating body 2 rotates, it drives the induction body 221 to rotate. The counting sensor 502 recognizes the induction body 221 once and counts once, enabling the skipping rope handle in this embodiment to achieve a counting function and increasing the usage function of the skipping rope handle.
[0065] The outer casing of the handle body 1 is provided as a split type. In this embodiment, the handle body 1 is split vertically along its axis. Specifically, the outer casing of the handle body 1 is split into a front casing 14 and a rear casing 15. The front casing 14 and the rear casing 15 can be connected by clamping, or by setting fixing holes on the front casing 14 and fixing pins on the rear casing 15, and the fixing holes and the fixing pins are fixed to each other for connection. The split type of the outer casing in the up-and-down manner is more convenient for the installation of the circuit board 5. However, in other cases, the split type of the outer casing is not limited to the up-and-down manner and can also be other ways.
[0066] Combined Figure 5 with Figure 6 as shown, in this embodiment, the circuit board 5 is located inside the front casing 14. In other embodiments, the circuit board 5 can also be arranged inside the rear casing 15.
[0067] Specifically in this embodiment, a second limiting rib 107 is provided on the front casing 14. The second limiting rib 107 is located inside the edge of the opening of the front casing, and the second limiting rib 107 is in a stepped shape. A fixing hole 108 is also provided on the rear casing 15. A protruding step is provided on the rear casing 15, and the fixing hole 108 is arranged on the step. When setting the circuit board 5, the circuit board 5 is located on the step, and the edge of the circuit board 5 is supported on the second limiting rib 107. Multiple stepped steps are provided on the second limiting rib 107. According to the different depths of the circuit board 5 located inside the front casing 14, the stepped steps on the second limiting rib 107 can adapt to support the edge of the circuit board 5, so that the circuit board 5 is stably installed inside the handle body 1.
[0068] The circuit board 5 is connected to the fixing hole 108 through a fixing member 104. The fixing member 104 can be a fastening screw, and the fastening screw passes through the circuit board 5 and is fixedly connected to the fixing hole 108.
[0069] Several first limiting ribs 106 are also spaced apart and arranged inside the edge of the opening of the front casing. The first limiting ribs 106 abut against the edge of the circuit board 5 to prevent the circuit board 5 from shaking inside the handle body 1. Moreover, the first limiting ribs 106 and the second limiting ribs 107 can also increase the structural strength of the outer casing.
[0070] A battery 505 connected to the circuit board 5 is also arranged inside the handle body 1, and the battery 505 is located inside the handheld section 13. The battery 505 provides power for the circuit board 5 and other components inside the handle body 1. The battery 505 is arranged in the handheld section 13, which can balance the weight of the skipping rope handle, prevent the weight of the skipping rope handle from concentrating on the upper part of the skipping rope handle, and avoid excessive force on the upper part of the skipping rope handle during the skipping process, which is likely to be thrown out of the hand.
[0071] A charging interface 504 is provided near the end 132 of the handle of the handheld section 13. The battery 505 is a rechargeable battery, and the charging interface 504 can be externally connected to a power source to charge the battery 505. In other cases, the charging interface 504 can also be provided at other positions. In other embodiments, the charging interface 504 may not be provided, and the battery 505 is a replaceable battery.
[0072] Through holes for setting the display screen 103 and the button 101 are opened on the front housing, so that while one side of the display screen 103 and the button 101 is electrically connected to the circuit board 5, the other side can extend out of the front housing through the through holes, for the trainer to operate the button 101 and observe the display screen 103. A key 501 is provided at the corresponding position on the circuit board 5. When the button 101 is operated, the button 101 can trigger the key 501, thereby controlling the working condition of the circuit board 5.
[0073] Through holes are also opened on the upper side surface of the bent section 12 for setting the heart rate sensor 102. One side of the heart rate sensor 102 is connected to the circuit board 5, and the other side can extend out of the outer shell through the through hole, so that the thumb of the trainer can press the heart rate sensor 102 to collect the heart rate. A limiting groove 105 is provided on the inner side of the outer shell near the through hole for installing the heart rate sensor 102. Specifically, the periphery of the heart rate sensor 102 is installed in the limiting groove 105 to limit and fix the heart rate sensor 102.
[0074] Combined Figure 7 、 Figure 8 and Figure 9 As shown in, a connecting rod 201 is provided on the side of the rotating body 2 facing the handle main body 1. A rotating connection part 21 is sleeved on the connecting rod 201, and the rotating connection part 21 is also connected to the head section 11. The rotating connection part 21 adopts a bearing. The inner ring of the bearing is sleeved and connected to the connecting rod 201, the outer ring of the bearing abuts against the inner side of the head section 11, and the inner side of the head section 11 clamps the outer ring of the bearing. A support plate 109 is circumferentially provided on the inner side of the end of the head section 11 close to the rotating body 2, and the support plate 109 supports and limits the rotating connection part 21.
[0075] One end of the connecting rod 201 is provided with a flat section 202, and both sides of the flat section 202 are set to be planar. The flat section 202 is connected to the connecting seat 22, and the inductor 221 is located on the connecting seat 22. The connecting seat 22 includes a fixed end 222, and a flat hole 223 is formed in the fixed end 222. The flat hole 223 is in fit connection with the flat section 202. Through the fit connection between the flat section 202 on the connecting rod 201 and the flat hole 223 on the connecting seat 22, the connecting seat 22 can follow the rotating body 2 to rotate, and the phenomenon of slipping between the connecting seat 22 and the rotating body 2 is avoided. An auxiliary end is arranged on one side of the fixed end 222, and the inductor 221 is arranged on the auxiliary end. When the connecting seat 22 follows the rotating body 2 to rotate, it drives the inductor 221 to rotate around the center line of the rotating body 2.
[0076] Specifically, the inductor 221 is a magnetic body and can be a magnet. The counting sensor 502 adopts a Hall sensor. As a magnetic field sensor, the Hall sensor can identify the magnet.
[0077] In one case, a rope passing hole 203 is arranged on the rotating body 2. The rope passing hole 203 is a U-shaped hole. One end of the rope body 3 passes through the rope passing hole 203 and is connected to the rotating body 2. The rope passing hole 203 is set as a U-shaped hole, which can fix the rope body 3 only through the rope passing hole 203 itself, and can also adjust the length of the skipping rope.
[0078] The present utility model also provides a skipping rope, which includes a first skipping rope handle and a second skipping rope handle. The first skipping rope handle is the skipping rope handle in the above, and the first skipping rope handle is usually grasped by the right hand of the trainer. In other cases, the second skipping rope handle can also be the skipping rope handle in the above, or both the first skipping rope handle and the second skipping rope handle are the skipping rope handles in the above.
[0079] In this embodiment, counterweights 4 are respectively connected to the first skipping rope handle and the second skipping rope handle. A relatively short rope body 3 is respectively connected to the first skipping rope handle and the second skipping rope handle through the rotating body 2, and the other end of the rope body 3 is connected to the counterweight 4, forming a cordless skipping rope.
[0080] In another case, the first skipping rope handle and the second skipping rope handle are connected by a rope body. The rope body 3 is set to be relatively long, and both ends of the rope body 3 are respectively connected to the first skipping rope handle and the second skipping rope handle through the rotating body 2, forming a corded skipping rope.
[0081] In this embodiment, the counterweight 4 is a hollow sphere, and several through holes 401 are formed on the surface of the sphere. The shape of the through holes 401 is in the shape of "lightning". Of course, in other cases, the through holes 401 can also be other shapes, such as circular holes. The through holes 401 are arranged on the counterweight 4, which can be used for ventilation to reduce the wind resistance of the counterweight 4.
[0082] The head section 11 and the hand-held section 13 of the skipping rope handle adopted by this skipping rope are connected through a bent bending section 12, so that the head section 11 and the hand-held section 13 are not on the same straight line. When the trainer holds the skipping rope handle by hand, the thumb and index finger are clamped on the bending section 12. When performing skipping rope training, the clamping force of the thumb and index finger can provide a barrier to prevent the handle from sliding or coming off, so that the handle body 1 can be firmly held in the trainer's hand stably.
[0083] A circuit board 5 is arranged inside the handle body 1 formed by the outer shell. One end of the circuit board 5 extends to a position close to the rotating body 2, and the other end extends to the end 132 of the handle body 1 following the bending direction of the handle body 1, maximizing the space inside the handle body 1 and making the structure of the handle body 1 more compact. Moreover, a counting sensor 502 is arranged at one end of the circuit board 5 close to the rotating body 2, enabling the skipping rope handle to achieve the counting function and increasing the usage functions of the skipping rope handle.
[0084] The terms "installed", "set up", "provided with", "connected" referred to here should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or there is internal communication between two devices, components or parts. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific situations.
[0085] The above has schematically described the present invention and its implementation manners. This description is not restrictive, and what is shown in the drawings is only one of the implementation manners of the present invention. The actual structure is not limited thereto. Therefore, if those of ordinary skill in the art are inspired by it and design similar structural manners and embodiments to this technical solution without creative work without departing from the creative purpose of the present invention, they shall fall within the protection scope of the present invention.
Claims
1. A multifunctional rope skipping handle, comprising a handle body (1) formed by an outer shell, the handle body (1) comprising a head section (11), a bending section (12) and a hand-holding section (13) which are sequentially connected from the head to the tail; Features: The axis line aa of the head section (11), the axis line bb of the bending section (12) and the axis line cc of the hand-held section (13) are located on the same plane; relative to the axis line aa of the head section (11), the axis line bb of the bending section (12) is bent toward the axis line aa of the head section (11); relative to the axis line bb of the bending section (12), the axis line cc of the hand-held section (13) is bent again toward the axis line bb of the bending section (12); A circuit board (5) is arranged inside the handle body (1), one end of the circuit board (5) extends to an end of the handle body (1) close to the head section (11), and the other end extends in sequence along the direction of the head section (11), the bending section (12) and the hand-holding section (13) to the handle tail end (132) of the handle body (1).
2. The multifunctional rope skipping handle according to claim 1, characterized in that: The head section (11) is connected to a rotating body (2), the rotating body (2) is capable of rotating relative to the handle body (1), and the rotating body (2) is connected to an induction body (221); a counting sensor (502) is provided at one end of the circuit board (5) for connecting to the induction body (221).
3. The multifunctional rope skipping handle according to claim 1, characterized in that: The outer shell comprises a front shell and a rear shell, the circuit board (5) being located in the front shell; a second limiting rib (107) in the shape of a step is provided on the front shell, the circuit board (5) being supported on the second limiting rib (107); and a fixing hole (108) is also provided on the rear shell for fixing and connecting the circuit board (5).
4. The multifunctional rope skipping handle according to any one of claims 1 to 3, characterized in that: A battery (505) connected to the circuit board (5) is also provided in the handle body (1), and the battery (505) is located in the hand-held section (13).
5. The multifunctional rope skipping handle according to claim 3, characterized in that: A display screen (103) and at least one button (101) are also provided on the front housing; the display screen (103) and the button (101) are both electrically connected to the circuit board (5), and the display screen (103) is located on the side facing the trainee.
6. The multifunctional rope skipping handle according to claim 5, characterized in that: A heart rate sensor (102) electrically connected to the circuit board (5) is arranged on the upper side of the bent section (12), and a limiting groove (105) is arranged on the inner side of the outer shell for mounting the heart rate sensor (102).
7. The multifunctional rope skipping handle according to claim 2, characterized in that: A connecting rod (201) is provided on the side of the rotating body (2) facing the handle body (1), and a rotating connecting portion (21) is sleeved on the connecting rod (201), and the rotating connecting portion (21) is also connected to the head section (11).
8. The multifunctional rope skipping handle according to claim 7, characterized in that: A flat section (202) is provided at one end of the connecting rod (201), the flat section (202) is connected to a connecting seat (22), and the induction body (221) is located on the connecting seat (22).
9. A skipping rope, characterized in that: It comprises a first skipping rope handle and a second skipping rope handle, wherein at least one of the first skipping rope handle and the second skipping rope handle is the skipping rope handle according to any one of claims 1 to 8; The first rope skipping handle and the second rope skipping handle are connected via a rope body; Alternatively, the first rope skipping handle and the second rope skipping handle are respectively connected to a counterweight body (4).
10. The skipping rope according to claim 9, characterized in that: The counterweight body (4) is a sphere with a hollow interior, and a plurality of through holes (401) are provided on the surface of the sphere.
Citation Information
Patent Citations
Skipping rope
CN115702992A