Interactive Gaming Device Gyroscope Infrared Atomization
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Solution Overview
Problem
Existing gaming devices lack interactivity, failing to provide immersive and realistic fantasy experiences for older children, leading to superficial game experiences.
Innovation Solution
An interactive gaming device with a housing assembly containing a gyroscope, infrared assembly, atomization assembly, LED assembly, and horn, which detects movement trajectories and performs non-contact simulation operations through infrared ray emission and response, enhancing interactivity and safety.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If traditional gaming devices are used, then the device structure is simple, but the interactivity and engagement are poor
Solution Approach 1:
The patent combines multiple functional modules (gyroscope for movement detection, infrared assembly for non-contact sensing, atomization assembly for visual effects, LED assembly for lighting, and horn for audio) into a single integrated gaming device. This merging of functions increases interactivity while maintaining a unified device structure that players can easily operate.
Solution Approach 2:
The gaming device incorporates multiple sensors and actuators that enable it to perform various functions: detecting movement trajectories, responding to infrared signals, producing visual effects through atomization and LED lighting, and generating audio feedback. This multi-functionality enhances interactivity without requiring multiple separate devices.
2Reliability
If non-contact simulation operation is implemented, then safety is improved, but device complexity increases
Solution Approach 1:
The patent replaces traditional mechanical contact-based operation with non-contact infrared sensing. The infrared assembly detects player actions without physical contact, eliminating the need for buttons, switches, or other mechanical interfaces that could cause injury. This substitution improves safety while the integrated circuit board manages the complexity of infrared signal processing.
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
The device significantly improves interactivity and safety by allowing non-contact simulation operations, increasing the fun and engagement of gameplay through real-time movement tracking and responsive LED and audio outputs.
Implementation Method 1
the circuit board is provided with a gyroscope, and detects a movement trajectory of the housing assembly in real time
Implementation Method 2
the infrared assembly can emit and receive infrared rays
Implementation Method 3
water mist produced by the atomization assembly can be sprayed out of the housing assembly
Data Source
AI summary
The present disclosure discloses an interactive gaming device, including a housing assembly, which is a hollow cavity; a circuit board, a battery, a light-emitting diode (LED) assembly, and a horn which are fixedly arranged in the housing assembly respectively, wherein the circuit board is provided with a gyroscope, and detects a movement trajectory of the housing assembly in real time; an infrared assembly and an atomization assembly which are arranged at a front end of the housing assembly, wherein the infrared assembly can emit and receive infrared rays, and water mist produced by the atomization assembly can be sprayed out of the housing assembly; and a button assembly arranged on the circuit board and penetrating through the housing assembly.


