Toy Gun Laser Detection and Electronic Trigger System
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Solution Overview
Problem
Existing automatic shooting devices for toy guns have limitations in detection distance, rely on pull-to-trigger mechanisms for firing, and lack expandable bullet magazines, resulting in poor realism and endurance during gameplay.
Innovation Solution
The integration of a laser detection device for enhanced accuracy and detection range, coupled with an electronic trigger module for faster reaction sensitivity, and a shot storage module with a control substrate for automatic shooting operations, addresses these limitations.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If a laser detection device is used, then detection distance and accuracy are enhanced, but device complexity increases
Solution Approach 1:
The patent combines the laser detection device with the toy gun body into an integrated system. The control substrate integrates multiple functions including receiving detection signals, controlling the electronic trigger module, and managing the shooting operation. This merging approach enhances detection accuracy while managing device complexity through functional integration rather than separate components.
Solution Approach 2:
The control substrate serves multiple functions: it receives detection signals from the laser detection device, controls the electronic trigger module, manages the shooting operation, and coordinates with the shot storage module. This multi-functionality reduces the need for separate control components, thereby managing complexity while achieving enhanced detection accuracy.
2Speed
If an electronic trigger module is used, then firing speed and reaction sensitivity are improved, but device complexity increases
Solution Approach 1:
The patent replaces the traditional mechanical pull-to-trigger device with an electronic trigger module. The electronic trigger module receives electrical signals from the control substrate and directly actuates the shooting module, eliminating mechanical linkages and improving firing speed. This substitution increases device complexity but is justified by the significant improvement in reaction sensitivity and firing speed.
3Duration of action of moving object
If a shot storage module is added, then endurance is extended, but device complexity increases
Solution Approach 1:
The shot storage module pre-stores multiple shots in the toy gun body, allowing the shooting operation to continue without frequent reloading. This preliminary preparation of ammunition extends the duration of action (endurance) of the toy gun. The control substrate manages the shot storage module to coordinate shooting operations, integrating this function into the existing control system to manage complexity.
4Productivity
If automatic shooting operation is implemented, then productivity is improved, but device complexity increases
Solution Approach 1:
The system implements automatic shooting operation where the control substrate autonomously receives detection signals and triggers the electronic trigger module without manual intervention. The toy gun body automatically coordinates the shooting operation based on target detection, improving productivity through unmanned operation. This self-service capability is achieved through integrated control that manages multiple components working together automatically.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This configuration significantly enhances the realism and endurance of gameplay by allowing for longer detection ranges, faster firing responses, and extended playtime without frequent reloading.
Implementation Method 1
the laser detection device, upon detecting a target object
Data Source
AI summary
A toy gun automatic shooting device includes a laser detection device arranged at one side of a toy gun body and includes a shooting module and an electronic trigger module. A reaction device is arranged on the toy gun body and includes a shot storage module, a control substrate, and an electrical power supply unit that supplies electrical power to a control substrate of the reaction device. The control substrate receives a detection signal from the laser detection device and controls the electronic trigger module to drive the shooting module that supplies shots so as to allow the toy gun body to carry out a shooting operation. Automatic shooting made after the laser detection device detects a target object is fulfilled to enhance the fun of playing a survival game, and further, detection being made with the laser detection device fulfills higher accuracy and longer distance of detection.


