Adjustable Camera Bracket With Multi-Mount Bottom Plate
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Solution Overview
Problem
Existing camera brackets are limited in their ability to adjust the camera's position and offer limited installation methods, resulting in a low user experience.
Innovation Solution
A camera bracket comprising a bottom plate, an orientable hose, and a fixed part, where the bottom plate has hanging holes and through-hole slots for wall and column fixation, and the orientable hose allows for multi-directional camera position adjustment.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If a fixed screw position is used to fix the camera, then the camera is securely fixed, but the camera position cannot be adjusted, resulting in limited functionality
Solution Approach 1:
The bracket transitions from a fixed rigid structure to a dynamic adjustable structure by introducing a rotating connection between the bottom plate and the support arm. This allows the camera position to be dynamically adjusted while maintaining secure fixation through the screw mechanism, resolving the contradiction between stability and adjustability
Solution Approach 2:
The bracket is divided into multiple independent components (bottom plate, support arm, fixed part) that can be independently positioned and adjusted. The support arm can rotate relative to the bottom plate, and the fixed part can be positioned along the support arm, allowing flexible camera positioning while maintaining secure fixation at each segment
2Device complexity
If a single bracket design is used, then the structure is simple, but the installation and fixing methods are limited, resulting in low user experience
Solution Approach 1:
The bracket is designed with multiple functional features: hanging holes for wall mounting, through-hole slots for alternative fixation methods, and an adjustable support arm for positioning. This multi-functional design allows the same bracket structure to be installed and used in various ways, increasing adaptability without significantly increasing complexity
Solution Approach 2:
The bracket adds dimensional flexibility by introducing rotational movement between components and positioning slots that allow adjustment along the arm length. This transforms a simple 2D flat bracket into a 3D adjustable structure, providing multiple installation orientations and camera positions while maintaining structural simplicity
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 camera bracket provides increased installation and fixing methods, enabling random position adjustments of the camera, thereby enhancing user experience across multiple scenarios.
Implementation Method 1
the spring washer is elastically held against the bottom plate and the orientable hose
Data Source
AI summary
The present application provides a camera bracket, comprising a bottom plate, an orientable hose and a fixed part. The bottom plate is set with two hanging holes and two first through-hole slots, the two hanging holes are located at both sides of the center of the bottom plate, the two first through-hole slots are symmetrically set along the radial directions of the bottom plate, one end of the orientable hose is removably fixed in the bottom plate center, the fixed part is removably connected to the other end of the hose for removable connection of the camera components. Setting two hanging holes and two first through-hole slots on the bottom plate mounts the bottom plate onto the wall, and the two first through-hole slots allow for straps to pass through and bind to columns. The hose is memory adjustable and enables the multi-directional position change of the camera.

