Rotatable Camera Mount Structure for Stable AI Voice Control
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Solution Overview
Problem
Existing rotatable camera mounting devices lack stability, intelligence, usability, and human-computer interaction, limiting their functionality and entertainment value.
Innovation Solution
A rotatable camera mounting device with a stable skeletal structure, integrated 3D holographic capabilities, LED ambient lighting, and AI voice control, along with modular design for easy installation and maintenance, enhancing load-bearing capacity and user interaction.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Strength
If traditional rotatable camera mounting devices are used, then the device can take photos for objects, but the device lacks stability and cannot carry heavy objects
Solution Approach 1:
The device is divided into an upper base and a lower base as separate modular components. The upper base contains the camera mounting structure while the lower base houses the driving motor and control electronics. This segmentation allows each module to be optimized independently for its specific function while maintaining overall structural strength and stability.
Solution Approach 2:
The upper base is designed with localized reinforcement structures and a optimized geometric shape that concentrates strength where needed for carrying heavy camera equipment. The lower base features a different structural configuration optimized for motor mounting and electrical component placement. Each base has locally adapted properties matching its functional requirements.
2Extent of automation
If traditional rotatable camera mounting devices are used, then the device has basic functionality, but the device lacks intelligence and human-computer interaction
Solution Approach 1:
The control system is designed to perform multiple functions through a single integrated unit. The control electronics can process voice commands for rotation control, manage LED lighting sequences, control the 3D holographic device, and handle camera mounting operations. This multi-functionality reduces the need for separate control modules while achieving high-level automation and intelligence.
Solution Approach 2:
The patent replaces traditional mechanical control interfaces with voice-based acoustic control and electronic control systems. Voice commands are processed by microphones and speech recognition algorithms, eliminating the need for physical buttons or dials. This substitution enables intelligent automation while simplifying the user interaction interface.
3Adaptability or versatility
If traditional rotatable camera mounting devices are used, then the device has simple function, but the device lacks entertainment value and usability
Solution Approach 1:
The patent combines multiple functional devices into a single integrated mounting system. The camera mounting mechanism, 3D holographic display, LED ambient lighting system, and voice control unit are merged into one cohesive device. This integration allows the system to perform photography, entertainment, and interactive control functions simultaneously, greatly enhancing versatility without requiring separate devices.
Solution Approach 2:
The 3D holographic device and LED lighting components are nested within or around the camera mounting structure. The holographic device can be positioned in the rotating mechanism, while LED strips are integrated into the base structure. This nesting arrangement allows multiple functions to coexist in a compact configuration, increasing functional versatility while managing structural complexity.
4Ease of manufacture
If the main electrical components are located on the upper base, then the upper base functions are integrated, but the installation and maintenance become difficult
Solution Approach 1:
The device is segmented into upper and lower bases with clear functional separation. Electrical components including the motor, control electronics, and power supply are located in the lower base, which can be accessed independently. The upper base containing the camera mounting and optical components can be assembled and removed without disassembling electrical systems, greatly simplifying both installation and maintenance procedures.
Solution Approach 2:
The electrical subsystem is extracted from the upper base and placed in the lower base as a separate module. This extraction allows the upper base to be manufactured, assembled, and tested independently of the electrical components. Maintenance of electrical systems can be performed by accessing only the lower base without disturbing the camera mounting structure, improving ease of manufacture and maintenance.
Data Source
AI summary
The present disclosure provides rotatable camera mounting device, wherein comprising: an upper base, wherein, the upper base comprises a loading surface and an upper base body connected to the loading surface, the upper base body comprises an upper base frame, a first connecting member, and a first reinforcing skeleton connected to the upper base frame, the first connecting member is provided with an accommodating cavity, and one end of the first connecting member away from the loading surface is provided with a first connecting surface.


