Automatic counting display

By installing an automatic counting display on golf putting practice equipment, using infrared sensors to monitor shots and putts, and combining a counting module and a display module, the problem of the lack of recording function in indoor golf practice equipment is solved. This enables accurate counting and display of shot status, improving user experience and the fun of practice.

CN223732061UActive Publication Date: 2025-12-30SHENZHEN KUNTENG ANIME CO LTD
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Patent Information

Application Number
CN202422968448.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-12-30
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Existing indoor golf putting practice equipment lacks the function of recording shot performance, making it impossible for users to intuitively understand their practice performance. Furthermore, the counting function is simplistic and lacks fun.

Method used

Design an automatic counting display that includes an infrared sensing module and a counting module. The infrared sensor monitors the hitting and goal-scoring of golf balls, and the counting and display modules are combined to count the hits and goals. Two counting modes are provided: free training mode and competition mode, which record and display the number of hits and goals respectively.

Benefits of technology

It enables accurate counting and display of ball-hitting situations, improves user experience, enhances the fun of practice and the readability of data, and meets the needs of different training scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

An automatic counting display is used for golf putter practice equipment with a ball hitting end and a ball entering end, the ball entering end is provided with a large ball entering hole and a small ball entering hole, and the automatic counting display is installed on the golf putter practice equipment and comprises a first counting module, a second counting module and a third counting module. The storage unit is used for storing a program with a built-in initial total ball hitting number segment being 0 and a built-in total goal number segment being 0; the second counting module is used for storing a program with a built-in fixed total ball hitting number segment being 18 and a built-in fixed total goal number segment being 0; the execution module is used for executing the program of the first counting module or the program of the second counting module; the infrared sensing module is used for monitoring whether the golf ball passes or not, and when the golf ball passes, the infrared sensing module generates an electric signal; the display module is used for displaying fields in the program when the first counting module or the second counting module runs; the first counting module or the second counting module adjusts each field according to the electrical signal.
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Description

TECHNICAL FIELD

[0001] The utility model relates to information display field especially, and it is an automatic counting display. BACKGROUND

[0002] With the popularity of golf and the improvement of people's quality requirements for sports, indoor golf putting practice equipment gradually becomes an important tool for golf lovers and professional players in daily training. The traditional outdoor golf practice is limited by natural conditions such as weather and site, and the indoor golf putting practice equipment can provide stable and convenient training environment to help players perform efficient putting training at any time and any place.

[0003] However, the existing indoor golf putting practice equipment still has some deficiencies in user experience and other aspects. For example, most of the putting practice equipment on the market does not have the function of recording the user's hitting situation, which will cause the user to be unable to intuitively obtain his own practice performance through data, and without the recording function, the user will also be unable to develop a practice plan to complete a certain number of hits, and can only make the user continuously practice putting. In addition, even some putting practice equipment has a simple counting function, but the function is single and cannot provide interest to the user, making the practice boring and tedious.

[0004] Therefore, it is necessary to provide an automatic counting display capable of counting and displaying the hitting situation and effectively avoiding the single counting function. CONTENT OF THE UTILITY MODEL

[0005] The utility model aims at providing an automatic counting display capable of counting and displaying the hitting situation and effectively avoiding the single counting function.

[0006] According to an aspect of the present application, an automatic counting display is provided for a golf putting practice equipment having a hitting end and a ball entering end, the ball entering end being provided with a large ball entering hole and a small ball entering hole, the automatic counting display being installed on the golf putting practice equipment, and the automatic counting display comprising:

[0007] A first counting module for storing a program with a built-in initial total hit number field of 0 and a total ball entering number field of 0;

[0008] A second counting module for storing a program with a built-in fixed total hit number field of 18 and a total ball entering number field of 0;

[0009] An execution module for executing the program of the first counting module or the program of the second counting module;

[0010] an infrared sensing module for monitoring whether a golf ball passes through, the infrared sensing module generating an electrical signal when the golf ball passes through;

[0011] a display module for displaying a field in the program when the first counting module or the second counting module operates;

[0012] wherein the first counting module or the second counting module adjusts the fields built-in according to the electrical signal generated by the infrared sensing module.

[0013] More preferably, the infrared sensing module comprises:

[0014] a first emitting module for emitting an infrared light beam;

[0015] a first receiving module for receiving the infrared light beam emitted by the first emitting module;

[0016] wherein the first emitting module and the first receiving module are installed at a ball marking end, the ball marking end being located at a starting point of a slope between the hitting end and the hole end, when the golf ball passes through the infrared light beam between the first emitting module and the first receiving module, the infrared light beam is blocked, the first receiving module generates a hitting signal after not receiving the infrared light beam and transmits the hitting signal to the executing module, and the first receiving module does not generate the hitting signal again within 5 seconds.

[0017] More preferably, the infrared sensing module further comprises:

[0018] a second emitting module for emitting an infrared light beam;

[0019] a second receiving module for receiving the infrared light beam emitted by the second emitting module;

[0020] wherein the second emitting module and the second receiving module are installed directly below the large hole, if the golf ball falls into the large hole, the golf ball passes through the infrared light beam between the second emitting module and the second receiving module, at this time the infrared light beam is blocked, the second receiving module generates a first hole-in signal after not receiving the infrared light beam and transmits the first hole-in signal to the executing module, and the second receiving module does not generate the first hole-in signal again within 5 seconds.

[0021] More preferably, the infrared sensing module further comprises:

[0022] a third emitting module for emitting an infrared light beam;

[0023] a third receiving module for receiving the infrared light beam emitted by the third emitting module;

[0024] The third transmitting module and the third receiving module are installed right below the small ball hole. If a golf ball falls into the small ball hole, the infrared light beam between the third transmitting module and the third receiving module is blocked. The third receiving module generates a second ball-in signal and transmits it to the executing module when it does not receive the infrared light beam. The second ball-in signal is not generated again within 5 seconds.

[0025] More preferably,

[0026] When the executing module executes the program of the first counting module,

[0027] The field value of the initial total number of hits is increased by one each time the executing module receives a hit signal. The field value of the total number of hits is increased by one each time the executing module receives a first ball-in signal or a second ball-in signal. The maximum value of the field of the initial total number of hits is 200, and the maximum value of the field of the total number of hits is 18.

[0028] When the executing module executes the program of the second counting module,

[0029] The field value of the fixed total number of hits is decreased by one each time the executing module receives a hit signal. The field value of the total number of hits is increased by one each time the executing module receives a first ball-in signal or a second ball-in signal. The minimum value of the field of the fixed total number of hits is 0, and the maximum value of the field of the total number of hits is 18.

[0030] When the field value of the initial total number of hits increases to 200, the field values of the initial total number of hits and the total number of hits become 0. When the field value of the fixed total number of hits decreases to 0, the fixed total number of hits becomes 18, and the field value of the total number of hits becomes 0.

[0031] More preferably, the automatic counting display further comprises:

[0032] A function key module is used to trigger the function adjustment of the automatic counting display. The function key module comprises:

[0033] A first volume key is used to increase the broadcast volume of the automatic counting display.

[0034] A second volume key is used to decrease the broadcast volume of the automatic counting display.

[0035] A power key is used to turn on or off the automatic counter and switch the activation of the first counting module or the second counting module.

[0036] More preferably, the automatic counting display further comprises:

[0037] A power management module is configured to power the automatic counting display using a built-in dry battery or an external power adapter.

[0038] A speaker module is configured to play a goal sound effect when the second receiving module generates a first goal signal or the third receiving module generates a second goal signal.

[0039] In the power management module, the automatic counting display is turned on or off by long pressing the power key, the program executed in the execution module is switched by short pressing the power key, the volume of the speaker module is increased by pressing a first volume key, and the volume of the speaker module is decreased by pressing a second volume key.

[0040] More preferably, the display module comprises:

[0041] A first display module is configured to display the field value of the initial total number of strokes when the first counting module is running or display the field value of the fixed total number of strokes when the second counting module is running.

[0042] A second display module is configured to display the field value of the total number of goals when the first counting module or the second counting module is running.

[0043] More preferably, the automatic counting display further comprises:

[0044] An encoding module is configured to compile the field values in the execution module into codes recognizable by the display module and transmit the codes to the first display module and the second display module, respectively.

[0045] The first display module or the second display module displays the corresponding values according to the codes.

[0046] More preferably, the automatic counting display further comprises:

[0047] A storage module is configured to store the program of the first counting module and the program of the second counting module.

[0048] A standby module is configured to keep the display module always on.

[0049] The automatic counting display has the following advantages:

[0050] The automatic counting display can count and display the stroke conditions by monitoring the signals generated when the golf ball passes through a specific position and adjusting the field display on the display module using the signals, and the execution module can execute the program in the first counting module or the program in the second counting module, so that the automatic counting display avoids single counting function and improves user experience. BRIEF DESCRIPTION OF DRAWINGS

[0051] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the accompanying drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced. Obviously, the accompanying drawings in the following description only only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor based on these drawings.

[0052] Figure 1 Structure block diagram of the automatic counting display in an embodiment of the present application;

[0053] Figure 2 Structure block diagram of the infrared sensing module in the automatic counting display in an embodiment of the present application;

[0054] Figure 3 Structure block diagram of the display module in the automatic counting display in an embodiment of the present application;

[0055] Figure 4 Structure block diagram of the function key module in the automatic counting display in an embodiment of the present application;

[0056] Figure 5 Planar structure schematic diagram of the automatic counting display in an embodiment of the present application;

[0057] Figure 6 Planar structure schematic diagram of the automatic counting display in an embodiment of the present application;

[0058] Figure 7 Planar structure schematic diagram of the automatic counting display in an embodiment of the present application;

[0059] Brief description of the drawings: 200, automatic counting display; 10, first counting module; 20, second counting module; 30, execution module; 40, infrared sensing module; 41, first transmitting module; 42, first receiving module; 43, second transmitting module; 44, second receiving module; 45, third transmitting module; 46, third receiving module; 50, display module; 51, first display module; 52, second display module; 60, function key module; 61, first volume key; 62, second volume key; 63, power key; 70, power management module; 80, speaker module; 90, encoding module; 100, storage module; 110, standby module; 300, golf putting practice device; 210, hitting end; 220, ball entry end; 221, large ball entry hole; 222, small ball entry hole; 230, ball recording end; 240, ramp. DETAILED DESCRIPTION

[0060] For the purposes of the present application, a more complete understanding can be obtained by reference to the following description taken in connection with the accompanying drawings. The drawings presented herein are by way of illustration only and should not be construed as limiting the application. The drawings are presented solely for purposes of illustrating the preferred embodiments of the present application and are not to be construed as limiting the present application.

[0061] It should be noted that when an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. In addition, it should be noted that when an element is referred to as being "connected", "coupled", or "linked" to another element, it can be directly connected, coupled, or linked to the other element or intervening elements can also be present. The terms "vertical", "horizontal", "left", "right", and the like as used herein are merely used for illustration and do not limit the present application.

[0062] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0063] Reference will now be made to Figure 1 - Figure 4 An embodiment of the present application provides an automatic counting display 200 for a golf putting practice device 300 having a hitting end 210 and a putting end 220, the putting end 220 being provided with a large putting hole 221 and a small putting hole 222, the automatic counting display 200 being installed on the golf putting practice device 300, the automatic counting display 200 comprising a first counting module 10, a second counting module 20, an execution module 30, an infrared sensing module 40, and a display module 50.

[0064] The first counting module 10 is used to store a program having an initial total hitting number field of 0 and a total putting number field of 0. The second counting module 20 is used to store a program having a fixed total hitting number field of 18 and a total putting number field of 0. The execution module 30 is used to execute the program of the first counting module 10 or the program of the second counting module 20. The infrared sensing module 40 is used to monitor whether a golf ball passes through, and when a golf ball passes through, the infrared sensing module 40 generates an electrical signal. The display module 50 is used to display the fields in the program when the first counting module 10 or the second counting module 20 is running. Wherein, according to the electrical signal generated by the infrared sensing module 40, the first counting module 10 or the second counting module 20 adjusts the built-in fields.

[0065] Wherein, in the use of golf putting practice device 300, users usually want to be able to accumulate the number of hits and the number of balls, so as to grasp the overall practice at any time. Or some users need to set a fixed number of hits, evaluate the hit rate and success rate of each practice, and thus carry out targeted training. To meet these two kinds of practice, the automatic counting display 200 introduces the first counting module 10 and the second counting module 20 to process the needs of addition statistics and subtraction statistics respectively. The first counting module 10 accumulates the number of hits and the number of balls, and increments from zero, which is suitable for recording long-term practice data, thus meeting the user's demand for training historical data, providing the total number of hits and the total number of balls, and facilitating the understanding of overall progress. The second counting module 20 sets a fixed number of hits, and counts down the remaining number of hits while recording the number of balls. This allows users to adapt to goal-oriented practice scenarios. The automatic counting display 200 in the present application sets a fixed number of balls field of 18 times, which helps to cultivate the user's concentration and accuracy, and evaluate the efficiency of single practice. The infrared sensing module 40 can enable the display to accurately capture key events (hits and balls) in practice, avoid human intervention, and improve the accuracy and reliability of data. The display module 50 provides clear and intuitive feedback, making it easy for users to understand the practice status at any time. Through linkage with the execution module 30 and the infrared sensing module 40, data display in two modes is realized.

[0066] More preferably, the infrared sensing module 40 comprises a first emitting module 41 and a first receiving module 42.

[0067] The first emitting module 41 is used for emitting an infrared light beam. The first receiving module 42 is used for receiving the infrared light beam emitted by the first emitting module 41. The first emitting module 41 and the first receiving module 42 are installed at the ball recording end 230, which is located at the starting point of the slope 240 between the hitting end 210 and the ball end 220. When the golf ball passes through the infrared light beam between the first emitting module 41 and the first receiving module 42, the infrared light beam is blocked. The first receiving module 42 generates a hit signal after not receiving the infrared light beam, which is transmitted to the execution module 30, and no longer generates a hit signal within 5 seconds.

[0068] The first transmitting module 41 and the first receiving module 42 are installed at the recording end 230, which is designed between the hitting end 210 and the putting end 220, so that the user can let the ball pass through the recording end 230 after hitting the ball from the hitting end 210 and be recorded by the sensor. When the golf ball is hit from the hitting end 210, it will pass through the recording end 230 and pass through the infrared light beam between the two modules, and the slope 240 is a structure that many indoor putting practice devices have to provide a recommended slope to simulate the high point of the green in real golf. When the golf ball blocks the infrared light beam, the first receiving module 42 will immediately detect the interruption of the signal and generate a hitting signal. This non-contact monitoring method not only ensures accuracy, but also avoids wear and tear or errors that may be caused by physical contact. In order to prevent repeated counting problems caused by rapid and continuous passing or multiple rebounds of the golf ball, the first receiving module 42 is designed to no longer generate a new hitting signal within 5 seconds after detecting a hitting signal. This design ensures that each hit is counted only once, thereby improving the accuracy of the count. The design of the infrared sensing module 40 reduces the possibility of false positives. Because the size and shape of the golf ball are relatively fixed, it can reliably block the infrared light beam without causing false triggering. In this application, the distance between the first transmitting module 41 and the first receiving module 42 of the automatic counting display 200 is set to 40 cm.

[0069] More preferably, the infrared sensing module 40 further comprises a second transmitting module 43 and a second receiving module 44.

[0070] The second transmitting module 43 is used to emit an infrared light beam. The second receiving module 44 is used to receive the infrared light beam emitted by the second transmitting module 43. The second transmitting module 43 and the second receiving module 44 are installed directly below the large hole 221, and if the golf ball falls into the large hole 221, it will pass through the infrared light beam between the second transmitting module 43 and the second receiving module 44. At this time, the infrared light beam is blocked, and the second receiving module 44 generates a first putting signal after not receiving the infrared light beam and transmits it to the execution module 30, and does not generate a first putting signal within 5 seconds.

[0071] The second transmitting module 43 and the second receiving module 44 are installed right below the large hole 221 of the ball-in end 220, so that when a golf ball falls into the hole and does a projectile motion, the golf ball can be accurately captured entering the target area and passing through the infrared light beam between the two modules. When the golf ball blocks the infrared light beam of the ball-in end 220, the second receiving module 44 will immediately detect the interruption of the signal and generate a first ball-in signal. This design ensures that each ball-in (large hole 221) can be accurately recorded. In order to prevent the problem of repeated counting caused by the golf ball bouncing or rolling multiple times under the large hole 221, the second receiving module 44 is also designed to no longer generate a new first ball-in signal within 5 seconds after detecting the first ball-in signal. This design ensures that each ball-in is counted only once, thereby improving the accuracy of counting. The infrared sensing module 40 of the ball-in end 220 also uses a non-contact monitoring method to avoid wear or errors caused by physical contact. In addition, since the size and shape of the golf ball are relatively fixed, it can reliably block the infrared light beam, thereby reducing the possibility of false positives.

[0072] More preferably, the infrared sensing module 40 further comprises a third transmitting module 45 and a second receiving module 44.

[0073] The third transmitting module 45 is used to emit an infrared light beam. The third receiving module 46 is used to receive the infrared light beam emitted by the third transmitting module 45. The third transmitting module 45 and the third receiving module 46 are installed right below the small hole 222, and if a golf ball falls into the small hole 222, it will pass through the infrared light beam between the third transmitting module 45 and the third receiving module 46. At this time, the infrared light beam is blocked, and the third receiving module 46 generates a second ball-in signal after not receiving the infrared light beam and transmits it to the execution module 30, and does not generate a second ball-in signal within 5 seconds.

[0074] The third transmitting module 45 and the third receiving module 46 have the same implementation principle as the second transmitting module 43 and the second receiving module 44 described above, and can also generate a second ball-in signal after the golf ball enters (small hole 222) to increase the count display. By simultaneously monitoring the infrared sensing module 40 of the hitting end 210 and the ball-in end 220, the system can comprehensively record the number of hits and the number of ball-ins of the player. These data are of great significance for the player to evaluate his own practice effect, adjust the hitting strategy and improve the technical level. In this application, the distance between the second transmitting module 43 and the second receiving module 44 of the automatic count display 200 is set to 40 cm, and the distance between the third transmitting module 45 and the third receiving module 46 is also set to 40 cm.

[0075] More preferably, when the execution module 30 executes the program of the first counting module 10, the field value of the initial total number of hits is incremented by one each time a hit signal is received, and the field value of the total number of goals is incremented by one each time a first goal signal or a second goal signal is received, the maximum value of the field of the initial total number of hits being 200 and the maximum value of the field of the total number of goals being 200. When the execution module 30 executes the program of the second counting module 20, the field value of the fixed total number of hits is decremented by one each time a hit signal is received, and the field value of the total number of goals is incremented by one each time a first goal signal or a second goal signal is received, the minimum value of the fixed total number of hits being 0 and the maximum value of the field of the total number of goals being 18. When the field value of the initial total number of goals increases to 200, the field values of the initial total number of goals and the total number of goals become 0, and when the field value of the fixed total number of goals decreases to 0, the fixed total number of goals becomes 18 and the field value of the total number of goals becomes 0.

[0076] The first counting mode is the default mode after the automatic counting display 200 is turned on. When the user performs free training by executing the program of the first counting module 10, the user may perform continuous training for a long time, and therefore a relatively large maximum value is needed to record the number of hits and goals. 200 is a reasonable upper limit, which can meet the training needs of most users and avoid data overflow. When the initial total number of hits or the total number of goals reaches 200, they are reset to 0, which allows the user to start a new training period from scratch and maintains the continuity and readability of the data. When the program of the second counting module 20 is executed to simulate a game or training, the fixed total number of hits simulates the number of hits in a round of golf, which is usually 18 (a standard round of golf usually has 18 holes). Therefore, the maximum value of the fixed total number of hits is set to 18, which represents the number of hits in a round of play. When the fixed total number of hits decreases to 0, it indicates that a round of play or training has ended, at which point the fixed total number of hits is reset to 18 and the total number of goals is reset to 0, ready to start a new round. When the program of the first counting module 10 is executed for free training, the maximum value of the total number of goals is set to 200, consistent with the initial total number of hits, to ensure data symmetry and readability. When the program of the second counting module 20 is executed to simulate a game or training, the maximum value of the total number of goals is set to 18, because a round of golf usually has a maximum of 18 goal opportunities. Although in practice the user may not be able to score at every hole, setting 18 as the maximum value ensures that the data is logically reasonable. Resetting the number of hits or goals to 0 when they reach the maximum value is a common data processing mechanism that can avoid data overflow and confusion. At the same time, this also meets the user's usage habits and psychological expectations that when a round of practice or play is over, the data should be cleared and ready to start a new round.

[0077] More preferably, the automatic counting display 200 further comprises a function key module 60 and a power key 63.

[0078] The function key module 60 is used to trigger the function adjustment of the automatic counting display 200, and the function key module 60 comprises a first volume key 61 and a second volume key 62. The first volume key 61 is used to increase the broadcast volume of the automatic counting display 200. The second volume key 62 is used to decrease the broadcast volume of the automatic counting display 200. The power key 63 is used to turn on or off the automatic counter, and switch to activate the first counting module 10 or the second counting module 20.

[0079] The function key module 60 is integrated into the automatic counting display 200, so that the user can adjust the functions of the device through simple key operations without entering a complex menu or setting interface. This design reduces the difficulty of operation and improves the user experience. The first volume key 61 and the second volume key 62 are used to increase and decrease the broadcast volume respectively. This clear division of labor allows the user to quickly adjust the volume and avoid misoperation. At the same time, the volume keys are also set in accordance with the conventional operation habits of most electronic devices, which are easy for users to accept. The power key 63 is not only used to turn on or off the automatic counting display 200, but also used to switch the activation of the first counting module 10 or the second counting module 20. This design reduces the number of keys while increasing the functionality of the keys, making the device more compact and easy to operate. The user can switch between different counting modes through simple key operations to meet the needs of different scenarios. This setting allows the user to quickly adjust the device functions without interrupting the practice. For example, during practice, if the user feels that the broadcast volume is too loud or too soft, they can immediately adjust it through the volume keys; if they need to switch the counting mode, they can also quickly complete it through the power key 63. In this application, when the automatic counting display 200 is turned on, the volume defaults to the volume at the last shutdown. If the display was powered off last time, the volume defaults to the minimum volume when it is turned on next time.

[0080] More preferably, the automatic counting display 200 further comprises a power management module 70 and a speaker module 80.

[0081] The power management module 70 is used to power the automatic counting display 200 using a built-in dry battery or an external power adapter. The speaker module 80 is used to broadcast the goal sound effect when the second receiving module 44 generates the first goal signal or the third receiving module 46 generates the second goal signal. Long press the power key 63 to turn on or off the power management module 70 of the automatic counting display 200, short press the power key 63 to switch the program executed in the execution module 30 of the automatic counting display 200, press the first volume key to increase the broadcast volume of the speaker module 80, and press the second volume key to decrease the broadcast volume of the speaker module 80.

[0082] In this application, the automatic counting display 200 has a TOP-C jack (non-charging hole) next to the main switch, which is used to power the display through a 5V adapter when the dry battery is out of power. In this jack power supply state, the dry battery cannot power the product. Under the dry battery power supply option, three No. 7 batteries are required to provide 4.5V voltage for the normal operation of the display. In the normal use state, the dry battery power supply can provide more than 7 hours of endurance time. Providing both built-in dry battery and external power adapter power supply modes ensures the flexibility and durability of the device. The built-in dry battery is convenient for users to use the device without external power supply, such as outdoor practice field or home without socket area; while the external power adapter can provide stable and durable power for the device in the presence of power supply, avoiding the inconvenience and cost of frequent replacement of dry batteries. The ball-in audio effect can provide instant feedback to the user, increasing the interest and interactivity of the practice. This instant sound feedback not only lets the user know whether the ball has successfully scored, but also psychologically encourages the user to continue to strive, improving the practice effect. Long press power key 63 is used to turn on or off the device, which is a common electronic device operation method, consistent with the user's usage habits. When the automatic counting display 200 in this application is turned off through the power key 63, the field data will be cleared. Short press power key 63 is used to switch the program in the execution module 30, that is, to switch between different counting modes (such as free practice mode and competition / training mode). This design allows users to quickly switch modes without entering complex menus or settings, improving the convenience of operation. Provide first volume button and second volume button to increase and decrease the broadcast volume of the speaker module 80. This design allows users to adjust the volume according to their preferences and needs, ensuring that the broadcast content can be clearly heard in different environments (such as quiet indoor or noisy outdoor).

[0083] More preferably, the display module 50 comprises a first display module 51 and a second display module 52.

[0084] The first display module 51 is used to display the field value of the initial total number of hits when the first counting module 10 is running or to display the field value of the fixed total number of hits when the second counting module 20 is running. The second display module 52 is used to display the field value of the total number of goals when the first counting module 10 or the second counting module 20 is running.

[0085] The first display module 51 and the second display module 52 in the present application are respectively composed of two three-digit non-decimal number tubes (displaying 000-200). When the program of the first counting module 10 is running, the initial total number of hits and the initial total number of goals are both displayed as 000. As the counting increases, when the total number of hits reaches 200, the display resets the digital display and returns to 000. When the program of the second counting module 20 is running, the initial total number of hits is displayed as 018 and the initial total number of goals is displayed as 000. As the total number of hits decreases, when the total number of hits reaches 000, the display resets the digital display and returns to 018. By displaying the number of hits and the number of goals on different modules, the user can easily see these two key pieces of information. This way of partitioned display avoids confusion and overlap of information, improving the readability and clarity of the data. When the first counting module 10 (free practice mode) is running, the first display module 51 displays the field value of the initial total number of hits; when the second counting module 20 (game / training mode) is running, it displays the field value of the fixed total number of hits. This design allows the display module 50 to automatically adjust the display content according to different counting modes, meeting the diverse needs of users. Clear partitioned display helps users better understand the running state and current progress of the device. Users do not need to spend a lot of effort to find or interpret the data, and can easily grasp their practice situation. This design improves the user experience.

[0086] More preferably, the automatic counting display 200 further comprises an encoding module 90. The encoding module 90 is used to compile the field values in the execution module 30 into codes that can be recognized by the display module 50, and transmit them to the first display module 51 and the second display module 52 respectively. The first display module 51 or the second display module 52 displays the corresponding values according to the codes.

[0087] The main function of the encoding module 90 is to compile the fields in the execution module 30 into a code recognizable by the display module and transmit it to the first display module 51 and the second display module 52 (based on the terminal connection of the execution module 30 with the first display module 51 and the second display module 52 respectively). The encoding module 90 can compile the different field values in the execution module 30 (such as the number of hits, the number of goals, etc.) into a standardized coding format. This standardized coding format helps to ensure compatibility and consistency of data between different modules, reducing errors or failures caused by data format mismatch. The encoded data usually has smaller size and higher transmission efficiency. This means that the data can be transmitted from the execution module 30 to the display module 50 in a shorter time, thereby reducing the transmission delay and improving the response speed of the overall system. The encoding module 90 can transmit the same code to the first display module 51 and the second display module 52 (or other multiple display modules 50 in the application products of the present application) at the same time, thereby realizing the synchronous update of data between different display modules 50. This synchronous update function is particularly important for application scenarios that require real-time monitoring and feedback. Since the encoding module 90 has completed the compilation and transmission of data, the display module 50 only needs to be responsible for decoding and displaying the corresponding values of the code. This simplifies the design of the display module 50, reduces its complexity and cost. Through the processing of the encoding module 90, the display module 50 can display the information required by the user more quickly and accurately. This instant and accurate feedback helps to improve user experience and satisfaction.

[0088] More preferably, the automatic counting display 200 further comprises a storage module 100 and a standby module 110. The storage module 100 is used to store the program of the first counting module 10 and the program of the second counting module 20. The standby module 110 is used to keep the display module 50 always on.

[0089] The storage module 100 is used to store the programs of the first counting module 10 and the second counting module 20. This design ensures that the programs of the counting modules are saved and restored even after the device is powered off or restarted, thereby ensuring the stability and reliability of the device. By storing the programs in a dedicated storage module 100, it is also possible to prevent accidental deletion or damage to the programs, thereby improving the security of the device. The storage module 100 makes it easier to update and upgrade the programs. When the device needs to update the programs of the counting modules, it only needs to write new program files to the storage module 100, without the need to disassemble and reprogram the entire device. This reduces the maintenance cost and time of the device, and improves the upgradability and scalability of the device. The storage module 100 can ensure that the programs of the counting modules have enough memory and storage space during runtime, thereby optimizing the performance of the device. This helps to reduce the phenomenon of lag and delay during the operation of the device, and improves the response speed and user experience of the device. When the automatic counting display 200 in the present application executes the standby module 110, it can run for more than 36 hours under the power of three fully charged No. 7 dry batteries. The main function of the standby module 110 is to keep the display module 50 always on, so that the player can check the key information such as the number of hits and the number of goals at any time during the practice. This design improves the readability and practicality of the device, making it easier for the player to understand their own practice. Although the standby module 110 consumes some power, the power consumption in standby mode is much lower than the power consumption when the device is completely turned off and then restarted. Therefore, this design not only ensures the availability of the device, but also achieves the effect of energy saving and power saving. The standby module 110 allows the device to quickly enter the working state when the player needs to use it, without waiting for the device to start and load the program. This improves the response speed and user experience of the device, making it easier for the player to practice.

[0090] The product model of the automatic counting display 200 in the present application is: SPD-01-V1.

[0091] In this way, by monitoring the generation of signals when the golf ball passes through a certain position, and adjusting the field display on the display module 50 with the signals, the automatic counting display 200 can count and display the hitting situation, and the execution module 30 can execute the programs in the first counting module 10 or the second counting module 20, so that the automatic counting display 200 avoids the single counting function and improves the user experience.

[0092] The above embodiments only express several implementation ways of the present application, and the description is more specific and detailed, but it should not be understood as a limitation to the patent scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, several modifications and improvements can be made, which are all within the protection scope of the present application.

Claims

1. An automatic counting display for a golf putting practice apparatus having a ball striking end and a ball entry end, the ball entry end having a large ball entry aperture and a small ball entry aperture, the automatic counting display comprising: The automatic counting display is installed on the golf putting practice device, and comprises: a first counting module for storing a program with an initial total stroke field of 0 and a total hole field of 0; a second counting module for storing a program with a fixed total stroke field of 18 and a total hole field of 0; an execution module for executing the program of the first counting module or the program of the second counting module; an infrared sensing module for monitoring whether a golf ball passes, and generating an electric signal when the golf ball passes; a display module for displaying the fields in the program when the first counting module or the second counting module runs; wherein the first counting module or the second counting module adjusts the respective fields according to the electric signal generated by the infrared sensing module.

2. An automatic counting display according to claim 1, wherein The infrared sensing module comprises: a first transmitting module for transmitting an infrared light beam; a first receiving module for receiving the infrared light beam transmitted by the first transmitting module; wherein the first transmitting module and the first receiving module are installed at a ball counting end, which is located at a starting point of a slope between the stroke end and the hole end, when the golf ball passes through the infrared light beam between the first transmitting module and the first receiving module, the infrared light beam is blocked, the first receiving module generates a stroke signal and transmits it to the execution module after not receiving the infrared light beam, and no longer generates the stroke signal within 5 seconds.

3. An automatic counting display according to claim 2, wherein, The infrared sensing module further comprises: a second transmitting module for transmitting an infrared light beam; a second receiving module for receiving the infrared light beam transmitted by the second transmitting module; wherein the second transmitting module and the second receiving module are installed directly below the large hole, if the golf ball falls into the large hole, it passes through the infrared light beam between the second transmitting module and the second receiving module, at this time the infrared light beam is blocked, the second receiving module generates a first hole signal and transmits it to the execution module after not receiving the infrared light beam, and no longer generates the first hole signal within 5 seconds.

4. An automatic counting display according to claim 3, wherein The infrared sensing module further comprises: a third transmitting module for transmitting an infrared light beam; a third receiving module for receiving the infrared light beam transmitted by the third transmitting module; wherein the third transmitting module and the third receiving module are installed directly below the small hole, if the golf ball falls into the small hole, it passes through the infrared light beam between the third transmitting module and the third receiving module, at this time the infrared light beam is blocked, the third receiving module generates a second hole signal and transmits it to the execution module after not receiving the infrared light beam, and no longer generates the second hole signal within 5 seconds.

5. The automatic counting display according to claim 4, wherein when the execution module executes the program of the first counting module, The execution module increases the field value of the initial total number of hits by one each time a hit signal is received, and increases the field value of the total number of goals by one each time a first goal signal or a second goal signal is received, the maximum field value of the initial total number of hits is 200, and the maximum field value of the total number of goals is 200; When the execution module executes the program of the second counting module, The execution module decreases the field value of the fixed total number of hits by one each time a hit signal is received, and increases the field value of the total number of goals by one each time a first goal signal or a second goal signal is received, the minimum field value of the fixed total number of hits is 0, and the maximum field value of the total number of goals is 18; Wherein, when the field value of the initial total number of goals increases to 200, the field values of the initial total number of goals and the total number of goals become 0, when the field value of the fixed total number of goals decreases to 0, the fixed total number of goals becomes 18, and the field value of the total number of goals becomes 0.

6. An automatic counting display according to claim 1, wherein, The automatic counting display further comprises: A function key module for triggering the function adjustment of the automatic counting display, the function key module comprising: A first volume key for increasing the broadcast volume of the automatic counting display; A second volume key for decreasing the broadcast volume of the automatic counting display; A power key for turning on or off the automatic counter and switching the activation of the first counting module or the second counting module.

7. An automatic counting display according to claim 6, wherein, The automatic counting display further comprises: A power management module for powering the automatic counting display using a built-in dry battery or an external power adapter; A speaker module for broadcasting goal sound effects when the second receiving module generates a first goal signal or the third receiving module generates a second goal signal; Wherein, long pressing the power key turns on or off the power management module of the automatic counting display, short pressing the power key switches the program executed in the execution module of the automatic counting display, pressing the first volume key increases the broadcast volume of the speaker module, and pressing the second volume key decreases the broadcast volume of the speaker module.

8. An automatic counting display according to claim 1, wherein, The display module comprises: A first display module for displaying the field value of the initial total number of hits when the first counting module is running or displaying the field value of the fixed total number of hits when the second counting module is running; A second display module for displaying the field value of the total number of goals when the first counting module or the second counting module is running.

9. An automatic counting display according to claim 8, wherein, The automatic counting display further comprises: A coding module for compiling the field values in the execution module into codes recognizable by the display module and transmitting them to the first display module and the second display module respectively; Wherein, the first display module or the second display module displays the corresponding values according to the codes.

10. An automatic counting display according to claim 1, wherein, The automatic counting display further comprises: A storage module for storing the program of the first counting module and the program of the second counting module; A standby module for keeping the display module always on.