Telescoping Laptop Raiser for Stable Portable Ergonomics
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Conventional laptop raiser devices are cumbersome, oversized, and lack ergonomic friendliness, making them difficult to transport and use in various environments, leading to uncomfortable typing and screen viewing positions.
Innovation Solution
A lightweight, cylindrical laptop raiser device with a non-slip surface, available in single-piece or telescoping variations, featuring sliding arms for smart devices, internal power ports, and customizable designs for improved portability and usability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Stability of the object's composition
If conventional laptop raiser devices are designed with sturdy construction, then stability is improved, but portability deteriorates due to cumbersome and oversized design
Solution Approach 1:
The laptop raiser is divided into multiple telescoping segments that can be extended or retracted. When not in use, the segments are retracted into a compact form factor that is easy to carry. When needed, the segments extend to provide the necessary elevation and stability for the laptop, thus resolving the contradiction between stability and portability.
Solution Approach 2:
The laptop raiser employs a telescoping mechanism that allows dynamic adjustment of its length and structure. This dynamic design enables the device to transform from a compact portable state to a stable elevated state, accommodating both portability and stability requirements at different usage phases.
2Stability of the object's composition
If conventional laptop raisers are designed for stability, then elevation support is improved, but ease of transport deteriorates due to oversized structure
Solution Approach 1:
The telescoping segments are nested within each other when retracted, similar to nested dolls. This nesting mechanism allows the laptop raiser to be compressed into a small transport size while maintaining the capability to extend to the required elevation support dimensions when deployed, thus resolving the contradiction between elevation support and transport size.
Solution Approach 2:
By segmenting the structure into telescoping parts, the device can achieve a compact form for transport while providing sufficient elevation support when extended. The segmented design allows the structure to be both small during transport and large enough for stable laptop elevation during use.
3Ease of manufacture
If conventional laptop raisers use simple stand design, then manufacturing cost is reduced, but ergonomics deteriorate due to lack of adjustable positioning
Solution Approach 1:
The telescoping mechanism provides dynamic adjustability for ergonomics while using simple mechanical components that are easy to manufacture. The adjustable positioning is achieved through straightforward telescoping segments rather than complex mechanisms, thus maintaining ease of manufacture while improving ergonomics.
Data Source
AI summary
A laptop raiser device is disclosed as a tilting mechanism to elevate your laptop on any surface or in any environment. The laptop raiser device comprises a body component that is configured in a cylindrical shape with a flattened horizontal side to prevent it from rolling. The body component is made of a lightweight outer foam material with a non-slip surface. The body component is a single-piece or telescoping variation. The body component comprises sliding arms for holding smart devices. The body component also includes non-slip pads and carrying pouch. The laptop raiser device is available in different colors, patterns, and designs.


