Biomedical Engineering & R&D Consulting

Turning Biomedical R&D Objectives into Working Hardware

Innovantum Scientific provides engineering support for biomedical R&D teams from early feasibility through prototype development for sensors, microsystems, medical devices, ultrasound technologies, and advanced instrumentation.

Capabilities & Experience

From scientific concept to measurable prototype

Built on extensive experience leading research and development in academia, SBIR/STTR-funded startups, and medical device companies, Innovantum supports the engineering work between a research objective and a functioning experimental system. The work can begin with modeling and feasibility, continue through design and implementation, and culminate in prototype testing and technical characterization.

01 — CONCEPT

Concept & Feasibility

Translate a scientific objective into an engineering problem and identify the questions that need to be answered.

Requirements definition, feasibility analysis, measurement strategy, system architecture, technical tradeoffs, and identification of the highest-risk technical assumptions.
Explore
02 — MODEL

Modeling & Simulation

Evaluate the physics and design space before committing to hardware.

CAD development, finite-element analysis, multiphysics modeling, COMSOL simulation, parameter studies, and simulation-driven design decisions.
Explore
03 — DESIGN

Design & Process Development

Turn a validated concept into an implementable sensor, microsystem, or experimental subsystem.

Mechanical and electrical design, sensor and microsystem architecture, fabrication considerations, process development, interfaces, and engineering documentation.
Explore
04 — EXPERIMENT

Experimental Systems

Build the measurement infrastructure required to interrogate the technology in the real world.

Test fixtures, experimental setups, excitation and acquisition, instrumentation, sensor interfaces, measurement workflows, and bench automation systems.
Explore
05 — INTEGRATE

Electronics & Embedded Design

Connect the sensor or physical system to the electronics and control infrastructure it needs to operate.

Analog and mixed-signal circuitry, multilayer PCB design, sensor interfaces, embedded firmware, data acquisition, communications, embedded control systems, and hardware/software integration.
Explore
06 — VALIDATE

Prototype, Test & Characterization

Build, measure, troubleshoot, and generate the engineering evidence needed for the next milestone.

Prototype iteration, test-method development, performance characterization, experimental data analysis, troubleshooting, and technical reporting. Characterization can be performed using client or project-specific equipment when required.
Explore
SBIR / STTR Engineering Support

Engineering capacity for the technical work between milestones.

SBIR/STTR teams often have the scientific foundation and a defined technical objective, but need additional engineering capacity to turn that objective into a model, prototype, measurement system, and defensible performance data.

Bring a defined technical problem

A feasibility question, subsystem, prototype, measurement challenge, or other technical work package.

Add specialized engineering capacity

Support can span modeling, design, instrumentation, electronics, embedded systems, prototyping, and testing.

Work toward a measurable milestone

Develop the hardware, experiments, measurements, and engineering documentation needed to demonstrate progress.

Scope the engagement around the work

Projects can be structured around a defined technical investigation, development task, or milestone rather than requiring a full-time engineering hire.

Let's Talk

Have a technical objective that needs to become hardware?

Tell us what you're developing, where the technical challenge is, and what you need to demonstrate next.

Please do not include confidential or proprietary information in this form.