Advanced Winding device for manufacturing electrode A winding device Synergistic Combinations System

Publication ID: 26-US11916182B2_0003_PTD
Published: January 17, 2026
Category:Synergistic Combinations

Legal Citation

pr1or.art Inc., “Advanced Winding device for manufacturing electrode A winding device Synergistic Combinations System,” Published Technical Disclosure No. 26-US11916182B2_0003_PTD, Published January 17, 2026, available at https://archive.pr1or.art/26-US11916182B2_0003_PTD
This technical disclosure describes improvements that would be readily apparent to a Person Having Ordinary Skill In The Art (PHOSITA) when considered in combination with the foundational architecture disclosed in U.S. Patent No. 119,161,822.

Summary of the Inventive Concept

A sophisticated Winding device for manufacturing electrode A winding device solution that integrates synergistic combinations methodologies to address specific technical challenges in Winding domain.

Background and Problem Solved

In the context of Winding device for manufacturing electrode assembly, a major challenge is the presence of foreign particles during the winding process, affecting the quality and efficiency of the electrode assembly. The original patent addressed this issue by integrating a foreign particle remover surrounding the winding core, spaced from it, to remove foreign particles as the electrode and separation film are wound. However, there is a need for further innovation to improve upon this concept. The new inventive concept tackles this issue by implementing synergistic combinations enhancements to the original Winding device for manufacturing electrode A winding device technology.

Detailed Description of the Inventive Concept

The Advanced Winding device for manufacturing electrode A winding device Synergistic Combinations System is a comprehensive technical system that implements synergistic combinations enhancements to the original Winding device for manufacturing electrode A winding device technology. The system incorporates specific components, mechanisms, and implementation details that enable someone skilled in the art to practice this invention without undue experimentation. This includes the integration of AI algorithms to detect and analyze foreign particles, IoT sensors to monitor the winding process in real-time, and blockchain technology to ensure the integrity and authenticity of the electrode assembly. The winding core and foreign particle remover are optimized to work in tandem, utilizing new materials and surface treatments to minimize particle attraction and enhance removal efficiency. The inflow portion of the remover is designed to allow the electrode and separator to enter while being wound, enabling the removal of foreign particles. This synergistic combination of components and technologies facilitates efficient electrode assembly manufacturing while ensuring high-quality output.

Novelty and Inventive Step

The Advanced Winding device for manufacturing electrode A winding device Synergistic Combinations System introduces a non-obvious combination of AI, IoT, blockchain, and new materials to the original patent's concept, providing a technically new and innovative solution. The integration of these technologies is not an obvious to try modification, as it requires a deep understanding of the interplay between the winding process, foreign particle removal, and the electrode assembly quality. The inventive concept's novel combination of components and technologies provides a significant improvement over the original patent, enabling more efficient and high-quality electrode assembly manufacturing.

Alternative Embodiments and Variations

Alternative embodiments of the Advanced Winding device for manufacturing electrode A winding device Synergistic Combinations System could include variations in the AI algorithm's architecture, IoT sensor configurations, and blockchain implementation. Additionally, different new materials and surface treatments could be explored to further enhance the winding core and foreign particle remover's performance. The inventive concept could also be adapted for use in other manufacturing domains, such as battery production or medical device assembly.

Potential Commercial Applications and Market

The Advanced Winding device for manufacturing electrode A winding device Synergistic Combinations System has significant commercial potential in the energy storage and battery production industries, where high-quality electrode assemblies are critical. The inventive concept's ability to improve manufacturing efficiency and output quality could lead to increased market share and revenue growth for companies adopting this technology. Furthermore, the synergistic combinations approach could be applied to other manufacturing domains, expanding the market potential and opportunities for growth.

CPC Classifications

SectionClassGroup
H H01 H01M10/0409
H H01 H01M4/04
H H01 H01M10/0431

Field of Art

Electrode assembly manufacturing technologies, specifically battery electrode production systems with foreign particle removal mechanisms, requiring expertise in mechanical engineering, materials science, and precision manufacturing techniques

Person of Ordinary Skill (PHOSITA) Profile

A skilled engineer with advanced degree in mechanical or materials engineering, 3-5 years experience in battery manufacturing equipment design, familiar with precision winding technologies and particle contamination mitigation strategies

Obviousness Rationale

A PHOSITA would recognize that integrating AI, IoT, and blockchain technologies into an existing winding device represents predictable technological enhancements that address known challenges in manufacturing precision. The core functional elements of foreign particle removal remain consistent with the source patent, while the proposed technological integrations represent standard optimization approaches in advanced manufacturing systems. The synergistic combinations proposed are logical extensions of existing technological capabilities within electrode assembly manufacturing.

Obvious Combinations & Variations

Source Patent Element
Foreign particle remover surrounding winding core
PTD Variation
AI-enhanced foreign particle detection and removal algorithms
Obviousness Reasoning
Implementing machine learning for particle detection is a known technique in precision manufacturing, representing an obvious improvement to existing mechanical removal processes
Source Patent Element
Winding core for electrode and separation film
PTD Variation
IoT sensors monitoring winding process in real-time
Obviousness Reasoning
Integrating sensor technologies for process monitoring is a standard design choice in advanced manufacturing systems, providing predictable quality control outcomes
Source Patent Element
Inflow portion for electrode and separator entry
PTD Variation
Surface treatments minimizing particle attraction
Obviousness Reasoning
Material surface modification to reduce contamination is a well-established technique in manufacturing engineering, representing an obvious optimization strategy
Source Patent Element
Electrode assembly manufacturing mechanism
PTD Variation
Blockchain technology for ensuring manufacturing integrity
Obviousness Reasoning
Implementing blockchain for process verification is a known approach in tracking advanced manufacturing processes, representing a logical technological extension
35 U.S.C. § 103 Summary: Based on the teachings of US11916182B2, the proposed technical variations represent obvious modifications to the existing winding device technology, wherein a person having ordinary skill in the art would readily conceive of integrating advanced monitoring, detection, and verification technologies into the fundamental manufacturing process disclosed in the source patent. The proposed combinations constitute prima facie obviousness under 35 U.S.C. ยง 103, rendering subsequent claims covering similar technological implementations anticipated and unpatentable.

Original Patent Information

Patent NumberUS 119,161,822
TitleWinding device for manufacturing electrode assembly