ESSR.US

MedAstra*

MedAstra*

MedAstra*

Advanced Medical Kit
Advanced Medical Kit

For MedAstra* we designed and engineered an advanced medical pack specifically conceived for use in space. Designed for astronauts, the hardware supports critical medical procedures where precision and containment are essential for mission success.

Client:

Client:

MedAstra*

MedAstra*

Year:

Year:

2025

2025

Services:

Services:

Industrial Design Hardware Engineering Technical Renders Motion & Animation

Industrial Design Hardware Engineering Technical Renders Motion & Animation

Deliverables

Industrial Design
Zero-gravity containment architecture
Astronaut-centric tactile interfaces
Space-rated material specifications

Technical Renders
High-resolution medical hardware assets
Configuration-accurate assembly visuals
Validated hardware baselines

Hardware Engineering
Precision deployment mechanics
Environmental stress validation
Modular component integration

Motion & Animation

Mechanical deployment sequences
Operational medical simulations
Orbital environment visualizations

Client:
MedAstra*
Year:
2025
Services:

Industrial Design Hardware Engineering Technical Renders Motion & Animation

The Mission:
The Mission:
Engineering for the constraints of orbital medicine. 
The primary objective was to develop a containment and deployment system that remains functional and organized in zero-gravity. The project required a high-precision approach to industrial design to ensure that complex medical tools could be accessed and stored securely within a compact, space-rated form factor.

The Result:

The Result:
Establishing a new baseline for extraterrestrial medical hardware. 
The final MedAstra* pack provides a validated solution for zero-gravity biological diagnostics. By prioritizing tactile interaction and industrial precision, we delivered a device that transitions from a secure transport state to a fully operational medical station, ensuring institutional authority and technical reliability for space-based healthcare.


The Mission:
Engineering for the constraints of orbital medicine. 
The primary objective was to develop a containment and deployment system that remains functional and organized in zero-gravity. The project required a high-precision approach to industrial design to ensure that complex medical tools could be accessed and stored securely within a compact, space-rated form factor.
The Result:
Establishing a new baseline for extraterrestrial medical hardware. 
The final MedAstra* pack provides a validated solution for zero-gravity biological diagnostics. By prioritizing tactile interaction and industrial precision, we delivered a device that transitions from a secure transport state to a fully operational medical station, ensuring institutional authority and technical reliability for space-based healthcare.