Prima otomotif
Budget: $10 – $30 USD
I’m developing a microscopic machine that supports scientific research by performing ultra-precise quality-control tasks on sample materials. I already have broad functional goals but need an engineer who can turn them into a workable design.
Here’s what I’m looking for:
• Conceptual architecture for a microscopic machine (think MEMS/NEMS scale) dedicated to quality control measurements.
• 3D CAD model with tolerances suitable for lithography or micro-machining.
• Simulation or analytical validation showing expected performance, accuracy, and repeatability.
• A concise bill of materials and recommended fabrication process flow.
• Assembly and calibration guidelines so a research technician can reproduce your design in-house or at a micro-fabrication foundry.
Experience with COMSOL, SolidWorks, Ansys, or similar multiphysics tools is highly valued, and familiarity with clean-room fabrication constraints will make your proposal stand out. Please include examples of previous microscopic or MEMS devices you’ve designed or analyzed, and outline how you would approach achieving reliable quality-control readouts at this scale.
I’m happy to answer technical questions once we engage, and I expect iterative check-ins so we converge on a design that’s ready for lab fabrication and testing.
Here’s what I’m looking for:
• Conceptual architecture for a microscopic machine (think MEMS/NEMS scale) dedicated to quality control measurements.
• 3D CAD model with tolerances suitable for lithography or micro-machining.
• Simulation or analytical validation showing expected performance, accuracy, and repeatability.
• A concise bill of materials and recommended fabrication process flow.
• Assembly and calibration guidelines so a research technician can reproduce your design in-house or at a micro-fabrication foundry.
Experience with COMSOL, SolidWorks, Ansys, or similar multiphysics tools is highly valued, and familiarity with clean-room fabrication constraints will make your proposal stand out. Please include examples of previous microscopic or MEMS devices you’ve designed or analyzed, and outline how you would approach achieving reliable quality-control readouts at this scale.
I’m happy to answer technical questions once we engage, and I expect iterative check-ins so we converge on a design that’s ready for lab fabrication and testing.