Auxiliary shooting system for shooting instrument and equipment thereof
By designing an auxiliary shooting system for shooting equipment that can receive and process shooting data in real time, combining the user-configured parameters and real-time weather information to calculate the optimal shooting angle and time, the problem of low accuracy of traditional shooting methods in complex environments is solved, and efficient and accurate shooting assistance is achieved.
Patent Information
- Application Number
- CN202421717997.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-19
AI Technical Summary
Traditional shooting methods are difficult to improve shooting accuracy in complex and changing environments. Existing auxiliary equipment can only provide a single aiming auxiliary function and cannot comprehensively consider multiple factors.
An auxiliary shooting system for shooting equipment was designed to wirelessly connect the rangefinder and timer to receive and process shooting data in real time, and combine the user-configured parameters and real-time weather information to calculate the optimal shooting angle and time.
It significantly improves the accuracy and efficiency of shooting, adapts to different environmental conditions, provides personalized configuration functions, lowers the threshold for use, and improves the shooting experience and training effect.
Smart Images

Figure CN222881813U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of shooting equipment, in particular to an auxiliary shooting system for shooting equipment and equipment thereof. Background Art
[0002] In the current shooting field, shooting accuracy is an important indicator for evaluating the performance of shooting equipment and the skills of users. However, shooting accuracy is often affected by many factors, such as target distance, angle, wind direction, wind speed, bullet initial velocity, etc. Traditional shooting methods mostly rely on the shooter's experience and mechanical aiming, which is not only inefficient, but also difficult to cope with complex and changing shooting environments.
[0003] With the continuous advancement of science and technology, shooting equipment auxiliary equipment has gradually become an effective means to improve shooting accuracy. At present, there are some shooting auxiliary equipment on the market, such as laser sights, red dot sights, rangefinders, etc. These devices have improved shooting accuracy to a certain extent. However, most of these devices can only provide a single aiming assistance function and cannot comprehensively consider the impact of multiple factors on shooting accuracy.
[0004] In addition, China's shooting equipment industry has developed rapidly in recent years, and the market size has continued to expand. According to market research data, the market size of China's shooting equipment industry has continued to grow in recent years, reflecting the popularity of shooting sports and the increase in consumer demand for shooting equipment. At the same time, with the continuous advancement of technology, the performance of shooting equipment is also constantly improving, providing a broad space for the development of shooting equipment auxiliary equipment.
[0005] Therefore, in order to further improve the accuracy of shooting and meet the needs of shooting sports, the utility model proposes an auxiliary shooting system and equipment for shooting equipment that integrates multiple auxiliary information. Utility Model Content
[0006] In order to solve the problems of the prior art, the utility model provides an auxiliary shooting system for a shooting device and equipment thereof.
[0007] In order to solve the above technical problems, the utility model is realized by the following technical solutions: an auxiliary shooting system for shooting equipment and equipment thereof, including an auxiliary shooting system, a rangefinder and a timer, wherein the auxiliary shooting system is respectively connected to the rangefinder and the timer by wireless data via Bluetooth;
[0008] The auxiliary shooting system includes an interface operation module, a Bluetooth data transmission module and a data processing module. The interface operation module is used to display the independently configured controls on the interface, and process the received data to display the output result data. The Bluetooth data transmission module is used to build a wireless data transmission line with the rangefinder and the timer. The data processing module is used to process the received data and then interact with the user through the interface operation module.
[0009] The interface operation module includes a real-time calculation unit, a bead configuration unit, a close position configuration unit, a distance angle unit, an initial velocity configuration unit, a zeroing configuration unit and a meteorological information unit.
[0010] The real-time calculation unit is used to perform real-time calculations on the received data according to a preset algorithm. The bead configuration unit is used for the user to select an appropriate bead size and save it in the system so that the influence of the bead size on shooting accuracy can be considered during calculation. The precision configuration unit allows the user to set the precision according to the shooting equipment to ensure shooting accuracy. The distance angle unit calculates the shooting angle based on the received data to help the shooter adjust the shooting angle.
[0011] The initial velocity configuration unit is used to provide configurable bead initial velocity options, and the user can select a suitable initial velocity according to the conditions of the shooting equipment and the beads. The zeroing configuration unit is used for the user to set the zeroing parameters according to the actual conditions of the shooting equipment to ensure the accuracy of the shooting equipment. The meteorological information unit is used to obtain real-time meteorological information such as humidity, temperature, air pressure, wind speed, wind direction, etc. by accessing an external meteorological data source or a built-in meteorological sensor, and consider the impact of these meteorological factors on shooting accuracy in the calculation.
[0012] The beneficial effects of the utility model are:
[0013] 1. The utility model uses Bluetooth wireless to connect the rangefinder and timer, receives and processes shooting data in real time, and provides users with the best shooting angle and time. The personalized configuration function allows the system to adapt to different shooting needs, and the intuitive operation interface lowers the threshold for use. In addition, the system can also obtain weather information in real time to ensure stable performance in various environments. Overall, the utility model provides shooting enthusiasts and professionals with a powerful and easy-to-operate shooting auxiliary tool, which greatly improves the shooting experience and training effect;
[0014] 2. By receiving data from the rangefinder and timer in real time, combined with user-configured parameters and real-time weather information, the auxiliary shooting system can calculate the best shooting angle and shooting time in real time, significantly improving the accuracy of shooting. This allows shooting enthusiasts and professionals to hit targets more accurately in complex environments; the system's built-in real-time calculation unit can quickly process data and provide users with instant feedback. Users do not need to calculate and judge manually, but only need to operate according to the system prompts, which greatly speeds up the speed and efficiency of shooting;
[0015] 3. The system supports users to make personalized configurations according to the actual situation of the shooting equipment and shooting needs, including parameters such as bead size, density, initial velocity, etc. This flexibility enables the system to adapt to the needs of different users and different scenarios, improving the applicability and practicality of the system; the system allows users to easily get started through an intuitive user interface and simple operation methods. Users do not need to have professional technical background or complex operation experience to quickly master the use of the system;
[0016] 4. The system can record key data during the shooting process, such as shooting time, shooting angle, shooting results, etc. These data can be used for subsequent analysis and optimization, helping users to better understand shooting performance and formulate corresponding training and improvement plans; the system's built-in meteorological information unit can obtain external meteorological data in real time and consider the impact of these meteorological factors on shooting accuracy during calculation. This enables the system to adapt to different weather and environmental conditions and maintain stable performance. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of data connection of the overall equipment of the utility model.
[0018] Figure 2 It is a schematic diagram of the overall internal structure of the system of the present utility model.
[0019] Figure 3 It is an internal schematic diagram of the interface operation module of the utility model.
[0020] Figure 4 It is a schematic diagram of the operation interface of the utility model.
[0021] Figures 1 to 4 In: 1. Auxiliary shooting system; 2. Rangefinder; 3. Timer; 11. Interface operation module; 12. Bluetooth data transmission module; 13. Data processing module; 111. Real-time calculation unit; 112. Bead configuration unit; 113. Micro-position configuration unit; 114. Distance angle unit; 115. Initial velocity configuration unit; 116. Zeroing configuration unit; 117. Meteorological information unit. DETAILED DESCRIPTION
[0022] like Figures 1 to 4 The utility model shown provides an auxiliary shooting system and equipment for shooting equipment, which can significantly improve the accuracy and efficiency of shooting. The following is a detailed description of the specific implementation of the auxiliary shooting system and equipment.
[0023] The system mainly consists of three parts: auxiliary shooting system 1, rangefinder 2 and timer 3. The auxiliary shooting system 1 is the core of the whole system, responsible for receiving, processing and displaying data. The rangefinder 2 is used to measure the distance from the shooting target to the shooter, and the timer 3 is used to record the shooting time. The three parts establish a wireless data connection through Bluetooth technology to ensure the stability and real-time performance of data transmission.
[0024] The detailed structure of the auxiliary shooting system 1, the auxiliary shooting system 1 consists of an interface operation module 11, a Bluetooth data transmission module 12 and a data processing module 13.
[0025] Interface operation module 11: Real-time calculation unit 111: responsible for receiving data sent by rangefinder 2 and timer 3, and performing real-time calculation based on a preset algorithm. The calculation results include key information such as shooting angle and shooting time.
[0026] Bead configuration unit 112: allows the user to select a suitable bead size according to shooting requirements, and saves the selection result in the system so that the influence of the bead size on shooting accuracy can be considered in subsequent calculations.
[0027] Precision configuration unit 113: The user can use this unit to set the precision according to the characteristics of the shooting equipment to ensure the accuracy of the shooting.
[0028] Distance angle unit 114: displays the best shooting angle according to the data provided by the rangefinder 2 and the calculation result of the real-time calculation unit 111.
[0029] Initial velocity configuration unit 115: provides a variety of bead initial velocity options, and the user can select a suitable initial velocity according to actual conditions.
[0030] Zeroing configuration unit 116: Through this unit, the user can set the zeroing parameters according to the actual situation of the shooting device to ensure the accuracy of shooting.
[0031] Meteorological information unit 117: obtains real-time meteorological information (such as wind speed, wind direction, temperature, etc.) through connection with external meteorological data sources or built-in meteorological sensors, and considers the impact of these meteorological factors on shooting accuracy during calculation.
[0032] Bluetooth data transmission module 12: responsible for establishing and maintaining the wireless data transmission line between the auxiliary shooting system 1 and the rangefinder 2 and the timer 3, ensuring the real-time and stable transmission of data.
[0033] Data processing module 13: receives data transmitted by Bluetooth data transmission module 12, performs necessary processing (such as data cleaning, format conversion, etc.), and then displays the processing results to the user through interface operation module 11. At the same time, this module is also responsible for interacting with other system components (such as interface operation module 11, Bluetooth data transmission module 12) to ensure the normal operation of the entire system.
[0034] Operation process: The user turns on the auxiliary shooting system 1 and connects the rangefinder 2 and the timer 3.
[0035] The user configures parameters such as bead size, density, initial velocity, etc. through the interface operation module 11.
[0036] The user uses the rangefinder 2 to measure the distance from the shooting target to the shooter, and transmits the data to the auxiliary shooting system 1 via Bluetooth.
[0037] The real-time calculation unit 111 of the auxiliary shooting system 1 performs real-time calculation according to the received data and a preset algorithm to obtain the best shooting angle and shooting time.
[0038] The auxiliary shooting system 1 displays the calculation results to the user through the interface operation module 11, and the user shoots according to the prompts.
[0039] The timer 3 records the shooting time and transmits the data to the auxiliary shooting system 1 via Bluetooth for subsequent data analysis and optimization.
[0040] Through the above-mentioned implementation modes, the auxiliary shooting system for shooting equipment and the equipment thereof provided by the utility model can significantly improve the accuracy and efficiency of shooting, and provide strong support for shooting enthusiasts and professionals.
Claims
1. An auxiliary shooting system for a shooting device and its equipment, comprising an auxiliary shooting system (1), a rangefinder (2) and a timer (3), characterized in that: The auxiliary shooting system (1) is respectively connected to the rangefinder (2) and the timer (3) via Bluetooth for wireless data communication.
2. The auxiliary shooting system and device for shooting equipment according to claim 1, characterized in that: The auxiliary shooting system (1) comprises an interface operation module (11), a Bluetooth data transmission module (12) and a data processing module (13); the interface operation module (11) is used to display autonomously configured controls on the interface, and to process received data and then display output result data; the Bluetooth data transmission module (12) is used to establish a wireless data transmission line with a rangefinder (2) and a timer (3); and the data processing module (13) is used to process received data and then interact with a user through the interface operation module (11).
3. The auxiliary shooting system and device for shooting equipment according to claim 2, characterized in that: The interface operation module (11) includes a real-time calculation unit (111), a bead configuration unit (112), a fine position configuration unit (113), a distance angle unit (114), an initial velocity configuration unit (115), a zeroing configuration unit (116) and a meteorological information unit (117). The real-time calculation unit (111) is used to perform real-time calculations on received data according to a preset algorithm. The bead configuration unit (112) is used for a user to select a suitable bead size and store it in the system. The fine position configuration unit (113) is used for a user to set a fine position according to a shooting device. The distance angle unit (114) calculates the shooting angle according to the received data.
4. The auxiliary shooting system and device for shooting equipment according to claim 3, characterized in that: The initial velocity configuration unit (115) is used to provide configurable bead initial velocity options, the zeroing configuration unit (116) is used for the user to set the zeroing parameters according to the actual situation of the shooting device, and the meteorological information unit (117) is used to obtain real-time meteorological information by accessing an external meteorological data source or a built-in meteorological sensor.