ARC™ Personal Climate Device
Engineering personal comfort through targeted airflow, compact design, and continuous innovation.
Prototype Development REV C
What is ARC™?
ARC™ is an innovative personal climate device currently under development by Arcentis Technologies.
The concept focuses on delivering targeted airflow through a compact, ergonomic architecture designed to enhance personal comfort while reducing reliance on larger cooling systems.
The project has progressed into physical prototype development, where engineering assumptions are being evaluated through assembly, controlled testing, and iterative refinement.
Current development activities include prototype assembly, electrical system validation, variable speed control testing, and preparation for structured airflow and performance evaluation.
ARC™ Development Progress
Tracking the engineering, prototyping and validation of the ARC™ Personal Climate Device from concept through to production.
✅ Concept Development
✅ Initial Research
✅ CAD Modelling
✅ Design Refinement
✅ REV C Engineering Design
✅ Prototype Components Received
🔄 Prototype Build & Assembly — Current Stage
🔄 Electrical & Variable Speed Control Validation
⬜ Airflow Validation
⬜ Performance Validation
⬜ Endurance Testing
⬜ Design Optimisation
⬜ Prototype Demonstration
⬜ User Evaluation
⬜ Production Feasibility Assessment
⬜ Manufacturing Planning
⬜ Market Evaluation
⬜ Product Launch Strategy
⬜ Commercial Production
ARC™ is being developed through a structured engineering process focused on design validation, performance testing, and continuous improvement. Each stage provides valuable insight that helps shape future iterations of the product.
Engineering Principles
Efficient Airflow
Designed to explore targeted airflow delivery through a compact architecture.
Compact Design
Aiming to provide practical personal comfort in a space-efficient form factor.
Continuous Development
Refined through iterative design, prototyping, and evaluation.
Future Scalability
Developed with future manufacturing and product evolution in mind.
Journal Entries
Journal Entry #001
Introducing Arcentis Technologies
The official launch of Arcentis Technologies and the beginning of the ARC™ Personal Climate Device development programme. We turn innovative ideas into practical products through engineering, prototyping, and continuous improvement.
Published: June 2026
Journal Entry #002
Exploring the original ARC™ concept and establishing the core objectives for the project. Early design goals focused on targeted airflow, compact architecture, user comfort, and practical everyday usability.
Published: June 2026
Journal Entry #003
Documenting the transition from initial sketches to detailed CAD modelling. Multiple iterations were evaluated to improve ergonomics, structural integrity, component integration, and airflow pathways.
Published: June 2026
ARC™ Concept Development
Journal Entry #004
REV C Engineering Design Completed
The ARC™ project reached a significant milestone with the completion of the REV C engineering model. Refinements included improvements to geometry, structural features, identification marking, and preparation for prototype assembly.
Published: June 2026
CAD Design Evolution
Journal Entries
Journal Entry #005
Prototype Assembly Preparation
Preparation activities for the first physical prototype are underway. This phase focuses on component sourcing, assembly planning, testing procedures, and performance evaluation strategies.
Published: June 2026
Journal Entry #006
The primary components required for ARC™ prototype development have been received and inspected. Development can now progress from preparation into physical assembly and testing.
Published: June 2026
Journal Entry #007
Assembly of the first ARC™ prototype is now underway. Airflow, power, and control systems are being integrated to prepare the device for functional testing and performance evaluation.
Published: June 2026
Prototype Components Received
Journal Entry #008
First Airflow Validation Test
ARC™ completes its first airflow validation test, successfully demonstrating controlled airflow generation and confirming core prototype functionality.
Published: June 2026
Prototype Assembly Begins
Journal Entries
Initial Performance Evaluation
Journal Entry #009
In progress.
Published: June 2026
Design Improvements
Journal Entry #010
In progress
Published: June 2026
