Boxing goal

The boxing target uses a magnetic induction device with a Hall sensor and magnet for precise punch detection, addressing the limitations of existing targets by enhancing accuracy and reaction speed.

DE202025106413U1Active Publication Date: 2026-01-22GUANGDONG TRANSCONTINENTAL TECH CO LTD
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Patent Information

Application Number
DE202025106413
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Priority Date
2025-09-19
Filing Date
2025-10-21
Publication Date
2026-01-22
Estimated Expiration
2035-10-31

AI Technical Summary

Technical Problem

Existing boxing targets lack interactivity and precision in punch detection, with pressure sensors having large detection areas leading to inaccurate localization and photoelectric devices being susceptible to ambient light interference.

Method used

A boxing target with a magnetic induction device using a Hall sensor and magnet suspended by an elastic element, allowing precise punch detection by moving between detection and non-detection positions, insensitive to ambient light and temperature.

Benefits of technology

Enables precise and fast detection of punch impacts, reducing false triggers and improving user experience with enhanced accuracy and reaction speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

Box goal, characterized by the fact that it includes: Housing (1), wherein the housing (1) has a receiving space (11), wherein a power supply system (12) and a first printed circuit board (13) electrically connected to the power supply system (12) are arranged within the receiving space (11); several percussion assemblies (2), wherein the several percussion assemblies (2) are movably arranged in the receiving space (11), wherein the percussion assembly (2) has a trigger position and a non-trigger position and wherein the percussion assembly (2) is movable between the trigger position and the non-trigger position, wherein by striking the percussion assembly (2) the percussion assembly (2) is brought into the trigger position and by releasing the percussion assembly (2) the percussion assembly (2) moves from the trigger position to the non-trigger position; a detection device, wherein the detection device is arranged in the impact assembly (2) and is electrically connected to the first circuit board (13), wherein the detection device reacts to the impact action of the impact assembly (2) and generates a detection signal and transmits the detection signal to the first circuit board (13) when the impact assembly (2) is in the trigger position; and wherein the detection device no longer reacts when the impact assembly (2) moves from the trigger position to the non-trigger position.
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Description

TECHNICAL AREA

[0001] The present invention relates to the technical field of training equipment, in particular a boxing target. STATE OF THE ART

[0002] With societal development and an improved quality of life, sport and fitness are gradually becoming an integral part of people's lives. Boxing, as an intense sport that provides a full-body workout, not only improves health but also enhances fighting skills and overall presence. Most existing boxing training methods currently use a simple punching bag as a target, which, while beneficial for physical fitness, lacks interactivity and entertainment, and does not allow for the development of reaction time. Boxing targets currently available on the market are increasingly equipped with pressure sensors or photoelectric detection devices that utilize electrical signals to detect punches. However, pressure sensors are typically arranged in a regional array configuration, with each individual sensor unit covering a relatively large area.This makes it difficult to distinguish subtle striking actions in adjacent positions, leading to inaccurate localization of the point of impact. Photoelectric detection devices, on the other hand, are susceptible to interference from ambient light, which can lead to misjudgments under conditions of strong lighting or shadows.

[0003] Based on this, it is necessary to propose a completely new boxing target, where the boxing target has a higher reaction speed when receiving punch actions and enables precise punch detection, thereby improving the user experience. CONTENT OF THE PRESENT INVENTION

[0004] To overcome the disadvantages of the prior art, the present invention provides a boxing target wherein the boxing target has a higher reaction speed when receiving punching actions and enables precise punch detection, thereby improving the user experience.

[0005] The technical solution used in the present invention to solve its technical problems is...

[0006] This invention provides a boxing target comprising a housing, several striking assemblies, and a detection device, wherein the housing has a receiving space, wherein a power supply system and a first circuit board electrically connected to the power supply system are arranged within the receiving space; wherein the several striking assemblies are movably arranged in the receiving space, wherein the striking assembly has a trigger position and a non-trigger position, and wherein the striking assembly is movable between the trigger position and the non-trigger position, wherein striking the striking assembly brings the striking assembly into the trigger position, and releasing the striking assembly moves the striking assembly from the trigger position to the non-trigger position;wherein the detection device is arranged in the impact assembly and is electrically connected to the first circuit board, wherein the detection device reacts to the impact movement of the impact assembly and generates a detection signal and transmits the detection signal to the first circuit board when the impact assembly is in the trigger position; and wherein the detection device no longer reacts when the impact assembly moves from the trigger position to the non-trigger position.

[0007] As a further development of the present invention, the detection device is a magnetic induction device, wherein the magnetic induction device comprises a Hall sensor and a magnet, wherein the magnet is suspended in the impact assembly by means of an elastic element and the Hall sensor is arranged on one side of the elastic element, wherein the magnet has a detection position and a non-detection position and is movable between the detection position and the non-detection position, wherein when the impact assembly is struck, the impact assembly can move the magnet in the direction of the detection position in order to trigger the Hall sensor to generate a detection signal and transmit the detection signal to the first circuit board, wherein when the impact assembly is released, the magnet is moved from the detection position to the non-detection position under the influence of the elastic element.at which point the Hall sensor ceases generating the detection signal.

[0008] Advantageous effect: The magnetic induction device reacts to the impact assembly and generates a detection signal, enabling precise recording of the impact assembly's triggering action. The magnet is suspended within the impact assembly by an elastic element, allowing it to move quickly to the detection position at the moment of impact, thus increasing reaction speed and accuracy. Furthermore, the Hall sensor is insensitive to ambient light, temperature, and humidity, reducing the risk of false triggers. BRIEF DESCRIPTION OF THE DRAWING

[0009] In order to illustrate the technical solutions in the embodiments of the present invention more clearly, the accompanying drawings used in the description of the embodiments are briefly presented below, and it will be obvious that the accompanying drawings in the following description are only some of the embodiments of the present invention, and that for a person with ordinary technical knowledge in the field, other accompanying drawings can be obtained from these drawings without creative work.

[0010] The present invention will be explained in more detail below in connection with figures and exemplary embodiments. Fig. Figure 1 is a schematic view of the overall structure of the box target; Fig. Figure 2 is an exploded view of the structure of the box target; Fig. Figure 3 is a schematic sectional view of the structure of the box target; Fig. Figure 4 is an enlarged schematic view of area A in Fig. 2; Fig. Figure 5 is an exploded view of the connection between the mounting part and the magnetic induction device; Fig. Figure 6 is a schematic structural view of the third circuit board; Fig. 7 is a schematic structural view of the striking base; Fig. Figure 8 is an enlarged schematic view of area B in Fig. 7; Fig. Figure 9 is an exploded view of the structure of the box target from a different perspective. DETAILED DESCRIPTION

[0011] With reference to the Fig. 1, Fig. 2, Fig. 3, Fig. 4, Fig. 5, Fig. 6, Fig. 7, Fig. 8 to Fig. Figure 9 of the present invention discloses a box target 100 comprising a housing 1, several striking assemblies 2 and a detection device, wherein the housing 1 has a receiving space 11, wherein a power supply system 12 and a first circuit board 13 electrically connected to the power supply system 12 are arranged within the receiving space 11; wherein the several striking assemblies 2 are movably arranged in the receiving space 11, wherein the striking assembly 2 has a trigger position and a non-trigger position and wherein the striking assembly 2 is movable between the trigger position and the non-trigger position, wherein by striking the striking assembly 2 the striking assembly 2 is brought into the trigger position and by releasing the striking assembly 2 the striking assembly 2 moves from the trigger position to the non-trigger position;wherein the detection device is arranged in the impact assembly 2 and is electrically connected to the first circuit board 13, wherein the detection device reacts to the impact action of the impact assembly 2 and generates a detection signal and transmits the detection signal to the first circuit board 13 when the impact assembly 2 is in the trigger position; and wherein the detection device no longer reacts when the impact assembly 2 moves from the trigger position to the non-trigger position.

[0012] As a further development of the present invention, the detection device is a magnetic induction device 3. With reference to the Fig. 2 and 4 to 5, the magnetic induction device 3 comprises a Hall sensor 31 and a magnet 32, wherein the magnet 32 ​​is suspended in the impact assembly 2 by means of an elastic element 33 and the Hall sensor 31 is arranged on one side of the elastic element 33, wherein the magnet 32 ​​has a detection position and a non-detection position and is movable between the detection position and the non-detection position, wherein when the impact assembly 2 is struck, the impact assembly 2 can move the magnet 32 ​​towards the detection position in order to trigger the Hall sensor 31 to generate a detection signal and transmit the detection signal to the first circuit board 13, wherein when the impact assembly 2 is released, the magnet 32 ​​is moved from the detection position to the non-detection position by the action of the elastic element 33, and the Hall sensor 31 is moved to this The generation of the detection signal ends at a certain point.The magnetic induction device 3 reacts to the impact assembly 2 and generates a detection signal, enabling precise detection of the impact assembly's triggering action. The magnet 32 ​​is suspended within the impact assembly 2 by means of an elastic element 33, allowing it to move rapidly to the detection position at the moment of impact, thus increasing the response speed and accuracy. Furthermore, the Hall sensor 31 is insensitive to ambient light, temperature, and humidity, reducing the risk of false triggering.

[0013] In this embodiment, the number of detection devices is one, with the detection device being arranged at a central position inside the striking assembly 2; the central position can generally cover the striking area of ​​the striking assembly 2 most effectively, thereby reducing detection blind zones and simultaneously lowering manufacturing costs. In other embodiments, the number of detection devices is multiple, with the multiple detection devices being arranged circumferentially within the striking assembly 2.

[0014] The structure described above arranges several detection devices circumferentially within the impact assembly 2, forming an omnidirectional induction array that can precisely detect the spatial position of the impact point and enable precise recording of the impact action.

[0015] In other embodiments, the detection device can be an infrared detection device, an ultrasonic detection device, or a laser detection device; the user can select the appropriate type of detection device depending on the different application scenarios and requirements.

[0016] In this embodiment, the power supply system 12 is a power supply battery or a power supply connection, wherein the power supply connection serves to be electrically connected to an external power source in order to supply power to the box target 100.

[0017] In this embodiment, the impact assembly 2 comprises, with reference to the Fig. 4 to Fig. 5 a mounting cavity 21, wherein at least one mounting part 22 for mounting the magnetic induction device 3 is arranged in the circumference of the mounting cavity 21, wherein a mounting passage 221 is provided inside the mounting part 22, wherein the elastic element 33 is arranged in the mounting passage 221, and wherein the magnet 32 ​​is arranged at the upper end of the mounting passage 221 and is brought into contact with the elastic element 33, so that the magnet 32 ​​is suspended in the mounting part 22. The structure described above ensures that the magnet 32 ​​can be moved along the mounting passage 221 during movement, thereby increasing the induction accuracy of the Hall sensor 31. In addition, the magnet 32 ​​and elastic element 33 are arranged in the mounting passage 221, thereby reducing external influences such as shocks, dust, and moisture on the sensor unit. Preferably, the elastic element 33 is a spring.

[0018] In this embodiment, see Fig. 5, a first mounting opening 222 for mounting the Hall sensor 31 is provided on the side wall of the mounting part 22, wherein the first mounting opening 222 is connected to the mounting passage 221. Due to the structure described above, the magnet 32 ​​can quickly and precisely trigger the Hall sensor 31 when reacting to the impact action of the impact assembly 2, thus generating a detection signal; in addition, the first mounting opening 222 is arranged on the side wall of the mounting part 22, which prevents the impact force of the impact assembly 2 from acting on the Hall sensor 31, thus increasing the service life of the magnetic induction device 3 and keeping the structure compact.

[0019] In this embodiment, a projecting pin 223 is slidably arranged in the assembly passage 221, the lower end of the projecting pin 223 being connected to the magnet 32, the projecting pin 223 being located below the striking assembly 2. Preferably, the upper end of the projecting pin 223 rests against the inner wall of the striking assembly 2, the projecting pin 223 sliding within the assembly passage 221 during striking actions and moving the magnet 32 ​​between the detection position and the non-detection position. Due to the structure described above, the striking force acts on the projecting pin 223, moving the magnet 32 ​​uniformly between the detection and non-detection positions, thereby reducing the wear of the magnet 32 ​​and simultaneously increasing the accuracy of the detection signal.

[0020] Preferably, the magnet 32 ​​has a ring-shaped structure, with the magnet 32 ​​being mounted at the lower end of the protruding pin 223. The structure described above results in a more uniform magnetic field distribution and stabilizes the movement of the magnet 32 ​​during the movement process, thereby preventing signal instabilities.

[0021] In this embodiment, a second mounting opening 224 is provided with reference to the Fig. 5 on the top of the mounting part 22, which is connected to the mounting passage 221, wherein the projecting pin 223 is slidably arranged in the mounting passage 221 and protrudes from the second mounting opening 224 and extends outwards to bear against the inner wall of the impact assembly 2; Through the structure described above, the impact force of the impact assembly 2 is transmitted via the projecting pin 223 to the magnet 32, so that the magnet 32 ​​is moved uniformly and efficiently between the detection position and the non-detection position, thereby reducing the wear of the magnet 32 ​​and simultaneously increasing the accuracy of the detection signal.

[0022] In this embodiment, a limiting locking block 225 is provided on the side wall of the projecting pin 223, the limiting locking block 225 bearing against the bottom wall of the second mounting opening 224, so that the projecting pin 223 is mounted in the mounting passage 221 and can slide within the mounting passage 221. Furthermore, this prevents the projecting pin 223 from falling out of the mounting passage 221 during the sliding process.

[0023] In this embodiment, with reference to the Fig. 6 in the impact assembly 2 further a second circuit board 23 is provided, wherein the Hall sensor 31 is electrically connected to the second circuit board 23, wherein at least one through-hole 231 is provided on the second circuit board 23, wherein the mounting part 22 is passed through the through-hole 231, so that the second circuit board 23 is connected to the mounting part 22.

[0024] In this embodiment, a pressing device is arranged inside the mounting part 22, the pressing device serving to press the second circuit board 23 onto the mounting part 22.

[0025] In particular, the pressing device comprises at least one first positioning section 226 arranged at the upper end of the mounting part 22 and at least one first positioning fitting section 232 arranged on the second circuit board 23, wherein the first positioning section 226 is inserted into the first positioning fitting section 232, so that the second circuit board 23 is pressed onto the mounting part 22. The structure described above provides a stable and reliable connection between the second circuit board 23 and the mounting part 22, thereby ensuring the stability and accuracy of the detection signal of the magnetic induction device 3.Preferably, the first positioning section 226 is a positioning pin, wherein the first positioning fitting section 232 is a positioning hole, the positioning pin being mounted in the positioning hole, so that the second printed circuit board 23 can be positioned and mounted quickly and precisely on the mounting part 22, and a more stable and reliable connection exists between the second printed circuit board 23 and the mounting part 22, thereby preventing the second printed circuit board 23 and the mounting part 22 from loosening due to impact actions.

[0026] In this embodiment, with reference to the Fig. 7. At least one first support rib 227 extends from the side wall of the mounting part 22, wherein two adjacent first support ribs 227 are connected by a second support rib 228, and the first positioning section 226 is arranged at the upper end of the first support rib 227. The structure described above presses the second circuit board 23 into the mounting cavity 21, thereby preventing loosening during the impact process and ensuring that the response of the magnetic induction device 3 is not impaired. Preferably, the first positioning section 226 is arranged at the upper end of the first support rib 227, so that the second circuit board 23 is mounted at a fixed height.

[0027] In this embodiment, the mounting part 22 is connected to the lower end of the housing 1 via a connecting element.

[0028] In this embodiment, with reference to the Fig. 5, Fig. 7 and Fig. 8. The connecting element comprises at least one first connecting section 229 arranged at the lower end of the mounting part 22 and at least one second connecting section 14 arranged on the bottom wall of the housing 1, wherein the first connecting section 229 is correspondingly connected to the second connecting section 14, such that the mounting part 22 is mounted precisely at the lower end of the housing 1. The structure described above ensures a stable and reliable connection between the mounting part 22 and the lower end of the housing 1, thereby preventing the mounting part 22 from being displaced or loosened during the impact process and thus preventing any impairment of the accuracy of the detection signal.Preferably, the first connecting section 229 is a connecting pin, the second connecting section 14 is a connecting hole, wherein the connecting pin is mounted in the connecting hole, so that the mounting part 22 can be mounted quickly and precisely at the lower end of the housing 1 and a stable and reliable connection exists between the mounting part 22 and the housing 1, thereby preventing the mounting part 22 from loosening due to impact actions and impairing the detection result.

[0029] In this embodiment, a positioning mounting groove 214 is provided in the mounting cavity 21, wherein the positioning mounting groove 214 serves for the precise positioning of the mounting part 22.

[0030] In particular, with reference to the Fig. 7 In the mounting cavity 21, a first partition 211, a second partition 212, and a third partition 213 are arranged, wherein the first partition 211, the second partition 212, and the third partition 213 together enclose and define the positioning mounting groove 214. The structure described above ensures that the mounting part 22 is positioned precisely in the positioning mounting groove 214, thereby preventing slippage and displacement due to long-term impact vibrations and increasing the stability and service life of the entire box target.

[0031] In this embodiment, the striking assembly 2 comprises a striking base 24 arranged at the bottom of the housing 1 and a striking target surface 25, wherein the striking base 24 is connected to the striking target surface 25 and forms a mounting cavity 21, wherein at least one mounting pin 251 is provided circumferentially at the lower end of the striking target surface 25, and wherein at least one mounting opening 241 is provided circumferentially at the upper end of the striking base 24, wherein the mounting pin 251 is mounted in the mounting opening 241, so that the striking base 24 is connected to the striking target surface 25. The structure described above provides a stable and reliable connection between the striking base 24 and the striking target surface 25, thus preventing displacement or loosening of the striking assembly 2 during repeated striking actions.

[0032] In this embodiment, an adhesive layer is provided on the outer surface of the mounting post 251, wherein the mounting post 251 is installed in the mounting opening 241 and firmly connected by the adhesive layer. The provision of an adhesive layer strengthens the connection between the striking base 24 and the striking target surface 25, thereby preventing displacement or loosening of the striking assembly 2 during repeated striking actions. Simultaneously, the adhesive layer can fill the gap between the mounting post 251 and the mounting opening 241 and prevent the ingress of dust, moisture, or corrosive media into the mounting cavity 21.

[0033] Preferably, the target surface 25 is an elastic target surface 25, preferably a PU target surface. PU material has a high elastic recovery force, can quickly absorb and distribute energy at the moment of impact, and the PU target surface can effectively absorb sound energy, thereby reducing impact noise and improving the user experience.

[0034] In this embodiment, with reference to the Fig. 2 and Fig.9 the housing 9 an upper housing 15 and a lower housing 16, wherein the upper housing 15 and the lower housing 16 are connected to each other to form the receiving space 11; wherein at least one mounting section 161 is provided on the circumference of the lower housing 16, wherein an opening 151 corresponding to the mounting section 161 is provided on the circumference of the upper housing 15, wherein the impact assembly 2 is installed on the mounting section 161 and extends upwards so that it passes through the opening 151;

[0035] In this embodiment, at least one plug pin 152 is provided on the inner wall of the upper housing 15, and at least one receiving pin 162 is provided on the inner wall of the lower housing 16, the receiving pin 162 having a receiving opening 163, and the plug pin 152 being inserted into the receiving opening 163, thus connecting the upper housing 15 and the lower housing 16. The structure described above ensures a stable connection between the upper housing 15 and the lower housing 16.

[0036] In this embodiment, a loudspeaker device 4 is further provided in the housing 1, wherein the loudspeaker device 4 is arranged at the outer edge of the receiving space 11 of the housing 1 and is electrically connected to the first circuit board 13; wherein several diffusion sections 41 are also provided on the housing 1, wherein the diffusion section 41 comprises at least one diffusion opening 411 and the diffusion section 41 and the impact assembly 2 are arranged offset from one another. In this embodiment, several indicator light elements are provided in the housing 1, wherein the indicator light elements are electrically connected to the first circuit board 13 and each indicator light element is assigned to one of the impact assemblies 2; wherein the indicator light element comprises a third circuit board 17, wherein at least one LED light bead 171 is provided on the third circuit board 17.

[0037] The indicator lights illuminate one after the other, so that the user performs the corresponding striking actions according to the order in which the indicator lights illuminate.

[0038] Preferably, a power supply compartment 18 is provided in the recording space 11, wherein the power supply system 12 is arranged in the power supply compartment 18 and is electrically connected to the first circuit board 13.

[0039] In this embodiment, the boxing target 100 has a control system, wherein the control system is electrically connected to the first circuit board 13; wherein the control system comprises a switching unit, wherein the boxing target 100 has at least two different punching training modes and the switching unit serves to cyclically switch the boxing target 100 between at least two different punching training modes; wherein the boxing target 100 has several different music modes, wherein the switching unit further serves to cyclically switch the boxing target 100 between several different music modes; wherein the control system further comprises a wireless communication module, wherein the wireless communication module serves to connect the boxing target 100 to an external mobile device for communication purposes;

[0040] In this embodiment, a touch keypad 19 is provided on the housing 1 and is electrically connected to the first circuit board 13, wherein the switching unit comprises a switch button 191 arranged on the touch keypad 19, a volume control button 192 and a music control button 193, wherein the switch button 191 serves to switch the boxing target 100 on and off, wherein the volume control button 192 comprises a first volume control button 1921 and a second volume control button 1922, wherein the volume can be reduced by pressing the first volume control button 1921 for a long time and the switching frequency of the indicator light element can be adjusted by pressing the first volume control button 1921 for a short time in order to control the user's punching speed;wherein the volume can be increased by pressing and holding the second volume control button 1922, and the punch training mode of the boxing target 100 can be switched by pressing and holding the second volume control button 1922; wherein the music control button 193 is used to cycle through several different music modes of the boxing target 100; wherein the boxing target 100 comprises a first music mode (F00), a second music mode (F01), and a third music mode (F03), wherein the music control button 193 is used to cycle through the first music mode, the second music mode, and the third music mode of the boxing target 100; wherein the control system further comprises a memory module, wherein the memory module is electrically connected to the first circuit board 13, and wherein the memory module contains at least one background music track, several different punch sound effects, and punch cue tones;wherein the punch cue tones comprise a first punch cue tone and a second punch cue tone, the first punch cue tone and the second punch cue tone serving to respond to the user's punch action, wherein the box target 100 emits the first cue tone and the indicator light element flashes with a light of the first color in response to the punch action of punch assembly 2 when the user's punch action is correct; and wherein the box target 100 emits the second cue tone and the indicator light element flashes with a light of the first color in response to the punch action of punch assembly 2 when the user's punch action is incorrect; wherein the light of the first color is blue and the light of the second color is red; wherein the box target 100 remains silent when it switches to the first music mode (F00);wherein the boxing target 100 exits the silent state when switching to the second music mode (F01), wherein the control system controls the speaker device to play back the built-in punch sound effects, and wherein the control system controls the speaker device to play back the punch sound effects and the music from the external mobile device in a mixed manner when the boxing target 100 is communicatively connected to the external mobile device; wherein the boxing target 100 plays back only the built-in background music and punch cue tone when switching to the third music mode (F02); wherein the control system further comprises a counter unit, wherein the counter unit is electrically connected to the first circuit board 13, and wherein the counter unit is configured to record the number of punches.

[0041] In this embodiment, the first circuit board 13 is electrically connected to a digital display tube 132, wherein the touch keypad 19 further comprises a display area 194 corresponding to the digital display tube 132, the display area 194 serving to indicate the connection mode between the boxing target 100 and an external mobile device as well as the operating status of the boxing target. The operating status of the boxing target 100 includes punch training mode (P1-P12), punch speed (H1-H12), music mode (F00-F02), volume, number of punches, and battery level indicator.

[0042] Preferably the number of impact assemblies 2 is six, wherein the six impact assemblies 2 are arranged circumferentially around the touch keypad 19.

[0043] In this embodiment, at least one external connecting element 164 is provided on the side wall of the housing 1, the external connecting element 164 serving to connect the box target to an external mobile device. A charging port is also provided on the side wall of the housing 1, the charging port being electrically connected to the power supply system 12.

[0044] The above embodiments are one or more embodiments provided in combination with the specific content, and it is not stipulated that the specific implementation of the present invention is limited to these descriptions. Any method, structure, etc., that is similar or alike to the present invention, or that involves at least one technical derivation or substitution of the present invention's conceptual premise, should be considered to be within the scope of protection of the present invention.

Claims

[1] Box goal, characterized by , that it includes: Housing (1) wherein the housing (1) has a receiving space (11) wherein a power supply system (12) and a first printed circuit board (13) electrically connected to the power supply system (12) are arranged within the receiving space (11); several percussion assemblies (2), wherein the several percussion assemblies (2) are movably arranged in the receiving space (11), wherein the percussion assembly (2) has a trigger position and a non-trigger position and wherein the percussion assembly (2) is movable between the trigger position and the non-trigger position, wherein by striking the percussion assembly (2) the percussion assembly (2) is brought into the trigger position and by releasing the percussion assembly (2) the percussion assembly (2) moves from the trigger position to the non-trigger position; a detection device, wherein the detection device is arranged in the impact assembly (2) and is electrically connected to the first circuit board (13), wherein the detection device reacts to the impact action of the impact assembly (2) and generates a detection signal and transmits the detection signal to the first circuit board (13) when the impact assembly (2) is in the trigger position; and wherein the detection device no longer reacts when the impact assembly (2) moves from the trigger position to the non-trigger position. [2] Box target (100) according to claim 1, characterized by, that the detection device is a magnetic induction device (3); wherein the magnetic induction device (3) comprises a Hall sensor (31) and a magnet (32), wherein the magnet (32) is arranged in the impact assembly (2) by means of an elastic element (33) and the Hall sensor (31) is arranged on one side of the elastic element (33), wherein the magnet (32) has a detection position and a non-detection position and is movable between the detection position and the non-detection position, wherein when the impact assembly (2) is struck, the impact assembly (2) can move the magnet (32) in the direction of the detection position in order to trigger the Hall sensor (31) to generate a detection signal and transmit the detection signal to the first circuit board (13), wherein when the impact assembly (2) is released, the magnet (32) is moved from the detection position to the non-detection position under the action of the elastic element (33),where the Hall sensor (31) stops generating the detection signal at this time. [3] Box target (100) according to claim 1, characterized by that the number of detection devices is one, wherein the detection device is arranged at a central position inside the impact assembly (2), or that the number of detection devices is several, wherein the several detection devices are arranged circumferentially inside the impact assembly (2). [4] Box target (100) according to claim 1, characterized by that the detection device is arranged outside the impact assembly (2). [5] Box target (100) according to claim 1, characterized by that the detection device is an infrared detection device, an ultrasonic detection device, or a laser detection device. [6] Box target (100) according to claim 2, characterized by, that the impact assembly (2) has a mounting cavity (21), wherein at least one mounting part (22) for mounting the magnetic induction device (3) is arranged in the circumference of the mounting cavity (21), wherein a mounting passage (221) is provided inside the mounting part (22), wherein the elastic element (33) is arranged in the mounting passage (221), wherein the magnet (32) is arranged at the upper end of the mounting passage (221) and is brought into contact with the elastic element (33), so that the magnet (32) is arranged in the mounting part (22). [7] Box target (100) according to claim 6, characterized by , that a first mounting opening (222) for mounting the Hall sensor (31) is provided on the mounting part (22) and that the first mounting opening (222) is connected to the mounting passage (221). [8] Box target (100) according to claim 7, characterized by , that the first mounting opening (222) is arranged on the side wall of the mounting part (22); wherein a projecting pin (223) is slidably arranged in the assembly passage (221), wherein the lower end of the projecting pin (223) is connected to the magnet (32), wherein the projecting pin (223) is located below the striking assembly (2), wherein the projecting pin (223) is slidable in the assembly passage (221) by the striking action of the striking assembly (2) and moves the magnet (32) between the detection position and the non-detection position; wherein a second mounting opening (224) is provided on the upper side of the mounting part (22) which is connected to the mounting passage (221), wherein the projecting pin (223) is slidably arranged in the mounting passage (221) and projects outwards from the second mounting opening (224) and extends outwards to bear against the inner wall of the striking assembly (2); wherein a limiting locking block (225) is provided on the side wall of the projecting pin (223), wherein the limiting locking block (225) rests against the bottom wall of the second mounting opening (224) so ​​that the projecting pin (223) is mounted in the mounting passage (221); wherein the magnet (32) has a ring-shaped structure, wherein the magnet (32) is placed at the lower end of the projecting pin (223); wherein the impact assembly (2) further includes a second printed circuit board (23), wherein the Hall sensor (31) is electrically connected to the second printed circuit board (23), wherein at least one through-hole (231) is provided on the second printed circuit board (23), wherein the mounting part (22) is passed through the through-hole (231) so that the second printed circuit board (23) is connected to the mounting part (22); wherein a pressing device is arranged inside the mounting part (22), the pressing device serving to press the second circuit board (23) onto the mounting part (22); wherein the pressing device comprises at least one first positioning section (226) arranged at the upper end of the mounting part (22) and at least one first positioning fitting section (232) arranged on the second printed circuit board (23), wherein the first positioning section (226) is inserted into the first positioning fitting section (232) so that the second printed circuit board (23) is pressed onto the mounting part (22); wherein at least one first support rib (227) extends from the side wall of the mounting part (22), wherein two adjacent first support ribs (227) are connected by a second support rib (228) and the first positioning section (226) is arranged at the upper end of the first support rib (227), wherein the mounting part (22) is connected to the lower end of the housing (1) via a connecting element; wherein the connecting element comprises at least one first connecting section (229) arranged at the lower end of the mounting part (22) and at least one second connecting section (14) arranged on the bottom wall of the housing (1), wherein the first connecting section (229) is correspondingly connected to the second connecting section (14) so ​​that the mounting part (22) is mounted in a positionally accurate manner at the lower end of the housing (1); wherein a positioning mounting groove (214) is located in the mounting cavity (21), wherein the positioning mounting groove (214) serves for the positionally accurate mounting of the mounting part (22);wherein a first partition (211), a second partition (212) and a third partition (213) are arranged in the mounting cavity (21), wherein the first partition (211), the second partition (212) and the third partition (213) together enclose and define the positioning mounting groove (214). [9] Box target (100) according to claim 1, characterized by, that the impact assembly (2) comprises an impact base (24) arranged at the bottom of the housing (1) and an impact target surface (25), wherein the impact base (24) is connected to the impact target surface (25) and forms a mounting cavity (21), wherein at least one mounting pin (251) is provided circumferentially at the lower end of the impact target surface (25), wherein at least one mounting opening (241) is provided circumferentially at the upper end of the impact base (24), wherein the mounting pin (251) is mounted in the mounting opening (241) so that the impact base (24) is connected to the impact target surface (25); wherein the impact target surface (25) is an elastic impact target surface (25); wherein an adhesive layer is provided on the outer surface of the mounting post (251), wherein the mounting post (251) is installed in the mounting opening (241) and is firmly connected by the adhesive layer; wherein the housing (1) comprises an upper housing (15) and a lower housing (16), wherein the upper housing (15) and the lower housing (16) are connected to each other to form the receiving space (11); wherein at least one mounting section (161) is provided on the circumference of the lower housing (16), wherein an opening (151) corresponding to the mounting section (161) is provided on the circumference of the upper housing (15), wherein the impact assembly (2) is installed on the mounting section (161) and extends upwards so that it passes through the opening (151);wherein at least one plug pin (152) is provided on the inner wall of the upper housing (15), wherein at least one receiving pin (162) is provided on the inner wall of the lower housing (16), wherein a receiving opening (163) is provided on the receiving pin (162), wherein the plug pin (152) is inserted into the receiving opening (163) so that the upper housing (15) and the lower housing (16) are connected to each other. [10] Box target (100) according to claim 1, characterized by , that the power supply system (12) is a power supply battery or a power supply connection, the power supply connection being used to be electrically connected to an external power source in order to supply power to the box target (100); wherein a loudspeaker device (4) is further provided in the housing (1), wherein the loudspeaker device (4) is arranged at the outer edge of the receiving space (11) of the housing (1) and is electrically connected to the first circuit board (13); wherein several diffusion sections (41) are also provided on the housing (1), wherein the diffusion section (41) comprises at least one diffusion opening (411) and the diffusion section (41) and the impact assembly (2) are arranged offset from each other; wherein several indicator light elements are provided in the housing (1), wherein the indicator light elements are electrically connected to the first circuit board (13) and each indicator light element is assigned to one of the impact assemblies (2);wherein the indicator light element comprises a third circuit board (17) wherein at least one LED light bead (171) is provided on the third circuit board (17), and wherein several indicator light elements illuminate sequentially to prompt the user to perform a punching action; wherein the boxing target (100) comprises a control system, the control system being electrically connected to the first circuit board (13); wherein the control system comprises a switching unit, the boxing target (100) having at least two different punching training modes, and the switching unit being used to cyclically switch the boxing target (100) between at least two different punching training modes; wherein the boxing target (100) having several different music modes, the switching unit being further used to cyclically switch the boxing target (100) between several different music modes;wherein the control system further comprises a wireless communication module, wherein the wireless communication module serves to connect the box target (100) to an external mobile device for communication purposes; wherein a touch keypad (19) electrically connected to the first circuit board (13) is provided on the housing (1), wherein the switching unit comprises a switch button (191) arranged on the touch keypad (19), a volume control button (192) and a music control button (193), wherein the switch button (191) serves to turn the boxing target (100) on and off, wherein the volume control button (192) comprises a first volume control button (1921) and a second volume control button (1922), wherein the volume can be reduced by pressing the first volume control button (1921) for a long time and the switching frequency of the indicator light element can be adjusted by pressing the first volume control button (1921) for a short time in order to control the user's punching speed;wherein the volume can be increased by pressing and holding the second volume control button (1922) and the punch training mode of the boxing target (100) can be switched by pressing and holding the second volume control button (1922) briefly; wherein the music control button (193) is used to cycle through several different music modes of the boxing target (100); wherein the boxing target (100) includes a first music mode, a second music mode and a third music mode, wherein the music control button (193) is used to cycle through the first music mode, the second music mode and the third music mode of the boxing target (100); wherein the control system further comprises a memory module, the memory module being electrically connected to the first circuit board (13), and wherein the memory module stores at least one background music track, several different punch sound effects, and punch cue tones; wherein the punch cue tones comprise a first punch cue tone and a second punch cue tone, the first punch cue tone and the second punch cue tone serving to respond to the user's punch action, wherein the boxing target (100) emits the first cue tone and the indicator light element flashes a light of the first color in response to the punch action of the punching assembly (2) when the user's punch action is correct; and wherein the boxing target (100) emits the second cue tone and the indicator light element flashes a light of the first color in response to the punch action of the punching assembly (2) when the user's punch action is incorrect; where the light of the first color is blue and the light of the second color is red; wherein the box target (100) remains silent when switching to the first music mode; wherein the box target (100) leaves the silent state when switching to the second music mode, wherein the control system controls the speaker device to play the built-in punch sound effects, and wherein the control system controls the speaker device to play a mixed version of the punch sound effects and the music from the external mobile device when the box target (100) is communicatively connected to the external mobile device; wherein the box target (100) plays only the built-in background music and punch cue tone when switching to the third music mode; wherein the control system further comprises a counting unit, wherein the counting unit is electrically connected to the first circuit board (13), and wherein the counting unit is configured to record the number of strokes; wherein the first circuit board (13) is electrically connected to a digital display tube (132), wherein the touch keypad (19) further comprises a display area (194) corresponding to the digital display tube (132), the display area (194) being used to indicate the connection mode between the box target (100) and an external mobile device and the operating status of the box target (100).