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ABOUT NSASRC

NorthStar Aerospace Science Research Center (NSASRC) is dedicated to cross-disciplinary R&D in aerospace engineering, advanced materials, and automated scientific instruments. We translate forward-looking theories into high-precision physical engineering and scientific solutions.

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PRECISION GEOMETRY
SSEAP Logo
SYSTEMS ENGINEERING
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ROCKET ENGINEERING

Engineering the Future with
Precision and Sustainability.

We firmly believe that cutting-edge science must be built on rigorous fundamental research and pragmatic engineering practices. NSASRC focuses on breaking through existing technological frameworks. From next-generation propulsion systems to sustainable chemical materials, we define future technical benchmarks with the most stringent standards.

Research & Development Focus

01

Aerospace & Aerodynamics

Focusing on the in-depth development of high-altitude vehicles and propulsion systems. Covering hybrid rocket design and unmanned aerial vehicle (UAV) engineering optimization for specific mission requirements (e.g., long-endurance or loitering munition configurations).

02

Advanced Materials & Sustainable Chemistry

Exploring the limits of bio-based materials and polymers. Targeting sustainability issues, efforts include optimizing the extraction processes of biomaterials like chitin, applications of polymer cross-linking technologies, and chemical recycling processes for specific plastics.

03

Instrumentation & Industrial IoT

Autonomously developing highly scalable automated instruments for modern laboratories and advanced industrial needs. Integrating embedded systems, MQTT remote communication protocols, and customized web dashboards to build precision temperature control and fluid handling equipment, such as industrial-grade heating stirrers.

Team Ecosystem & Collaborations

Core Agile Operations

AGF
AGF

The team consists of technical members specializing in advanced CAD modeling and parametric geometric design. They are dedicated to translating abstract physical theories, engineering calculus, and mechanical requirements into high-precision 3D digital assets and manufacturable physical entities. We are the most solid bridge between 'design blueprints' and 'physical prototyping'.

SSEAP
SSEAP

The 'brain and nerves' and customized hardware. Covering Internet of Things (IoT), embedded systems, and special-specification instruments built exclusively for scientific experiments or specific missions. This is the logistical and system core that empowers flight vehicles or experimental equipment with intelligence and automation capabilities.

KARMNZ
KARMNZ

The core team responsible for propulsion dynamics and vehicle integration, leading the complete engineering lifecycle from fundamental propellant development to final vehicle launch. Through rigorous systems engineering processes, the team ensures the rocket system possesses highly independent and complete R&D and manufacturing capabilities.

Academic & Strategic Partnerships

Technological iteration requires cross-disciplinary vision. NSASRC actively establishes in-depth collaborative relationships with university-level research teams and laboratories. By integrating cutting-edge computer vision, dynamic object tracking technology, and 3D spatial algorithms into existing aerospace and automation projects, we continuously expand our technological boundaries.