Electronic Sighting Device with Real-Time Data Interaction
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Solution Overview
Problem
Traditional sighting devices require single-eye operation, limiting the user's ability to observe surroundings and do not provide precise recording or real-time video acquisition of the shooting process, posing risks during gun use, especially in illegal activities or hunting.
Innovation Solution
An electronic sighting device with real-time information interaction, equipped with a housing containing a field-of-view obtaining unit, range finding unit, sensor module, and interaction unit, which records and uploads shooting data to a cloud platform, allowing for two-eye sighting and accurate impact point forecasting.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If traditional mechanical or optical sights are used, then the structure is simple and easy to operate, but the user must close one eye which limits observation of surroundings and reduces safety
Solution Approach 1:
The patent replaces traditional mechanical single-eye sighting with an electronic display system that presents the target image on a screen, enabling the user to keep both eyes open while maintaining accurate aiming capability. The electronic display unit shows the captured image with reticle overlay, substituting the mechanical optical path with an electronic visualization system.
Solution Approach 2:
The patent creates a visual copy of the target scene through the image capturing unit and displays it on the display unit. This copy allows the user to view the target and aim accurately while maintaining natural binocular vision, eliminating the need to close one eye as in traditional mechanical sights.
2Loss of information
If traditional sights without recording functionality are used, then the device complexity is low, but precise recording of shooting process and real-time video acquisition cannot be achieved
Solution Approach 1:
The patent merges the image capturing function with the sighting function into a single integrated system. The same image capturing unit that captures the target scene also provides the visual feed for aiming and records the shooting process, eliminating the need for separate recording devices and reducing overall system complexity.
Solution Approach 2:
The image capturing unit serves multiple functions: it provides real-time visual feedback for aiming on the display unit, records the shooting process for later review, and captures evidence for safety and accountability. This multi-functional design achieves comprehensive information capture without proportionally increasing device complexity.
3Device complexity
If single-eye sighting is used to maintain simple device structure, then the sighting operation is straightforward, but the user cannot observe sudden changes in surroundings
Solution Approach 1:
The patent substitutes the mechanical constraint of single-eye alignment with an electronic display system that can be viewed with both eyes open. The display unit presents the target image and reticle in a format that accommodates binocular vision, allowing the user to maintain situational awareness of surroundings while accurately aiming.
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
Enables precise and safe shooting operations by providing real-time video and data recording, enhancing user safety and reducing the risk of accidents during gun use.
Implementation Method 1
the vibration sensor comprises a piezoelectric vibrator
Implementation Method 2
the photoelectric sensor is mounted at a trigger of a gun and used for judging whether the trigger is pulled
Data Source
AI summary
The present invention relates to a sighting device, and specifically relates to an electronic sighting device with real-time information interaction. The sighting device comprises a field-of-view obtaining unit, a display unit; a sighting circuit unit, a sensor module, a positioning unit, and an interaction unit, wherein shooting vibration of a gun is judged by a vibration sensor in the sensor module, and then, the interaction unit is connected with internet or a remote display terminal to send the real-time information acquired by the sensor module and/or image information acquired by the field-of-view obtaining unit during shooting process to the internet or the remote display terminal, to achieve information collection and recording of each-time shooting by the electronic sighting device and achieve real-time interaction of the collected information with the internet or the remote display terminal.


