Medical Device Design
Full-lifecycle design from concept generation through design transfer.
Engineering Better Outcomes
From concept through design transfer, we help MedTech teams engineer reliable, safe, and manufacturable devices for regulated markets.
Discuss Your Device Program250+ Medical Devices Designed & Developed
Class I, II & III Device Development
ISO 13485-Certified Quality System
What We Do
We provide specialized design services for electromechanical medical devices — integrating mechanical design, electronics, embedded systems, and user-centered design to build reliable, safe, and manufacturable products.
Full-lifecycle design from concept generation through design transfer.
User needs analysis, feasibility, and iterative development against functional and safety requirements.
CAD modeling and mechanical engineering for enclosures, mechanisms, and precision components.
Circuit design and hardware engineering built for regulated device performance.
PCB layout and design engineering supporting signal integrity, safety, and manufacturability.
System architecture spanning hardware, firmware, and connectivity.
Embedded software engineering aligned to IEC 62304 and device safety requirements.
User-centered form and interface design for clinical and home-use environments.
Functional prototypes built to evaluate performance, usability, and reliability early.
Structured V&V testing to confirm design outputs meet specifications.
Production-ready design with validated processes and defined quality controls.
Ongoing design support and obsolescence management for devices already in production.
Engineering ownership across a device's life, from change control through redesign.
In-house labs support electrical safety and IEC 60601 testing, EMC and reliability testing, and environmental and endurance testing — so verification doesn't wait on a third-party lab queue.
How We Work
Our engineering programs move through a clear, structured development path — reducing ambiguity, controlling risk, and preparing the product for clean downstream execution.
User needs analysis, technical feasibility, and early risk assessment define the development direction before resources commit.
Mechanical, electronic, and software requirements are structured into one system architecture, with usability and risk controls (ISO 14971) built in from the start.
Functional prototypes are tested against defined requirements, closing gaps before they become expensive downstream.
Finalized design moves to production with complete documentation, validated processes, and defined quality controls — built for a clean handoff, not a surprise at manufacturing.
User needs analysis, technical feasibility, and early risk assessment define the development direction before resources commit.
Mechanical, electronic, and software requirements are structured into one system architecture, with usability and risk controls (ISO 14971) built in from the start.
Functional prototypes are tested against defined requirements, closing gaps before they become expensive downstream.
Finalized design moves to production with complete documentation, validated processes, and defined quality controls — built for a clean handoff, not a surprise at manufacturing.
Every program runs on a structured phase-gate model with defined milestones, proactive risk and change management, and QARA oversight integrated from day one — not bolted on after the fact.
Case Studies
Selected engineering programs across ophthalmic imaging, neurotechnology, and wearable cardiac monitoring — each shaped around product readiness, manufacturability, validation, and scalable production.
Case 01
Optimized a fundus imaging device from prototype to production — refining mechanical design for manufacturability, developing precision molds, and setting up cleanroom lens assembly to protect optical accuracy at scale.
Outcome
Manufacturing-ready design with a 20% reduction in development cost.
Case 02
Engineered a dual-wave neuromuscular stimulation platform on an FPGA-based architecture, applying DFM principles and a full V&V program to move from concept to an FDA 510(k)-aligned, production-ready device.
Outcome
Concept to commercialization in 2 years, with scalable manufacturing readiness for approximately 500 devices annually.
Case 03
Led industrial design and product engineering for a wearable ECG device — optimizing form factor for 14-day battery life and long-term wearability, then carrying the design through to FDA- and CDSCO-compliant pilot production.
Outcome
30% cost reduction through design optimization, with FDA and CDSCO compliance achieved.
Testimonials
What partners say about working with Syrma Johari MedTech across innovation, product development, and commercialization programs.
Chief Innovation Officer
Hemex Health
“
The collaboration with Syrma Johari MedTech strengthens our ability to rapidly innovate and bring new diagnostic solutions to market. By combining our proprietary FIA technology with Syrma Johari MedTech’s world-class assay development and optimization expertise, we are creating a powerful platform to address unmet needs across a wide range of diseases.
Chief Financial and Operating Officer
Volk Optical Inc.
“
Working with Syrma Johari MedTech has been an exceptional experience from start to finish. Their dedication to excellence and attention to detail have been instrumental in bringing our vision to life. Their collaborative approach and proactive communication have made the entire process seamless and efficient. Thank you for being more than just a partner — for being a trusted ally in our mission to make a difference in eye healthcare.
Co-Founder & CEO
Spinex
“
I’m pleased to share that our product units built by the Syrma Johari MedTech team have been extremely well received by patients. The feedback has been overwhelmingly positive; users appreciate the design, build quality, and functionality. Thank you for your hard work, commitment, and attention to detail throughout the process, reflecting your dedication and technical excellence.
Built for Regulatory Confidence
QARA is integrated into every engineering program from day one , not layered on after design freeze. Our teams work under an ISO 13485-certified quality system, with design controls, ISO 14971 risk management, and IEC 62304 alignment built into the development process — so verification, documentation, and design transfer are audit-ready by construction, not by cleanup.
Scope clarity: We engineer to regulatory requirements and support your submission documentation — we are not a substitute for your regulatory counsel on strategy-level decisions.
Yes. We partner with early-stage startups, growing MedTech companies, and established OEMs. Whether you’re developing a proof of concept, refining a prototype, or preparing for manufacturing, our engineering teams can support your product at every stage of development.
We provide end-to-end engineering support—from concept development and product design to mechanical, electronics, PCB, embedded firmware, prototyping, verification & validation, and design transfer for manufacturing.
Yes. Our development process is aligned with industry-recognized quality and regulatory practices, including ISO 13485, FDA design controls, IEC 60601, IEC 62304, ISO 14971, and EU MDR requirements, depending on your project’s scope.
Absolutely. Protecting your intellectual property is a priority. We are happy to execute a Non-Disclosure Agreement (NDA) before discussing confidential project details, and all project IP remains with the customer as defined in the engagement agreement.
It begins with a free engineering consultation. We’ll discuss your product, development stage, technical challenges, timelines, and project goals. Based on the discussion, we’ll recommend the most suitable engagement approach for your requirements.
Once you submit your inquiry, our engineering team reviews your requirements and typically responds within one business day to schedule an initial consultation.
Please fill out the form and our team will reach out within 24 hours. We look forward to hearing from you.
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