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CPSE Research

Space Science and Technology

Exploring nanosatellite engineering, space missions, advanced materials and the effects of the space environment through research-led, hands-on education.

UM6PSaT

A student CubeSat connecting education, engineering and scientific research

UM6PSaT is a student 1U CubeSat developed through CPSE research activities with support from CNES, the French space agency. The project introduces students to nanosatellite technologies by involving them directly in the development of a complete CubeSat mission.

1U CubeSat Compact nanosatellite platform
CNES Support Space engineering guidance
Student-Led Learning through real engineering work
Research Mission Space radiation and advanced materials
Exploded technical view of the UM6PSaT CubeSat
Mission gallery

Visualizing the UM6PSaT platform and mission

Exploded technical model of UM6PSaT UM6PSaT CubeSat represented in orbit
Mission lifecycle

Students participate in every stage of satellite development

UM6PSaT follows the essential development stages of a conventional satellite mission while providing a practical and accessible learning environment.

Stage 01

Feasibility Study

Definition of the scientific objective, mission requirements and technical viability.

Stage 02

Preliminary Design

Development of the initial satellite architecture and selection of its principal subsystems.

Stage 03

Detailed Design

Refinement of mechanical, electrical, communication and scientific payload solutions.

Stage 04

Manufacturing

Production and preparation of the satellite's structural and functional components.

Stage 05

Assembly and Integration

Integration of the CubeSat structure, electronics, power system and scientific payload.

Stage 06

Qualification and Acceptance

Verification and testing of the integrated system in preparation for a future launch opportunity.

Scientific mission

Understanding the effect of space radiation on advanced materials

Beyond its educational objective, UM6PSaT is intended to support research on space radiation and its impact on two-dimensional materials developed and studied at UM6P. The mission connects space engineering with materials science and potential future technology applications.

Graphene Black phosphorus MoSâ‚‚ Space radiation 2D materials Nanosatellites
Research impact

Developing skills for future space-science challenges

Interdisciplinary Training

Students connect physics, electronics, materials science, mechanical engineering, communication systems and project management.

Learning by Doing

The nanosatellite platform allows students to apply classroom knowledge to a complex engineering system with real mission constraints.

Research Integration

The mission creates links between space technology, radiation studies and CPSE research on advanced two-dimensional materials.