Accelerate realization of your bespoke electrotherapy device with a pre-engineered technology platform.
Electrotherapy devices demand absolute precision. From waveform accuracy and electrical safety to biocompatibility, usability, and regulatory compliance, every decision directly impacts clinical performance and market approval.
XEL STIM is a pre-engineered electrotherapy technology platform developed to help medical device companies accelerate product development without compromising customization. Forged through decades of engineering expertise, XEL STIM has powered high-performance electrotherapy devices for our customers in more than 80 international markets.
Real-time impedance profiling with precise phase and timing control for responsive, accurate stimulation.
Configurable transmit frequencies (0.7–7 MHz+), modular power architecture, and scalable power stages supporting low-intensity therapy through high-intensity focused applications.
Configurable transmit frequencies (0.7–7 MHz+), modular power architecture, and scalable power stages supporting low-intensity therapy through high-intensity focused applications.
Configurable transmit frequencies (0.7–7 MHz+), modular power architecture, and scalable power stages supporting low-intensity therapy through high-intensity focused applications.
Modular hardware and firmware baselines ensure consistent performance and reliable accuracy across builds.
Validated schematics minimize redesigns, shorten testing cycles, and reduce development effort.
Architectures aligned with IEC 60601, IEC 62304, ISO 14971, and ISO 27001 simplify compliance and approvals.
Easily add new modalities, features, electrodes, and workflows without rebuilding the core system.
Mental Health & Neuro-Wellness Stress, anxiety, sleep modulation, cognitive performance, and neuromodulation
Mental Health & Neuro-Wellness Stress, anxiety, sleep modulation, cognitive performance, and neuromodulation
See how XEL STIM can support your product roadmap and shorten the path to commercialization.
Class III, FDA-approved system supporting bone growth and spinal fusion procedures.
FDA-cleared cranial electrical stimulation system for insomnia, stress, anxiety, and migraine management.
Class II, FDA 510(k)-cleared monopolar RF system for non-invasive body contouring.
What are XEL platforms?
Medical device engineering services cover the technical activities required to design, develop, verify, and sustain medical devices. These services span hardware, firmware, software, systems engineering, verification and validation, regulatory documentation, and post-market engineering support across the product lifecycle.
What types of accelerators are included in the XEL ecosystem?
Design and development typically focus on creating a new product concept and initial implementation. Engineering services extend beyond this phase to include system integration, verification and validation, manufacturability readiness, regulatory support, scaling to production, and lifecycle sustenance. Engineering services emphasize execution, compliance, and long-term product viability.
Which MedTech applications can XEL platforms be used for?
An ideal medical device engineering partner should integrate regulatory compliance at every step by conforming to industry standards such as ISO 13485 and applicable global regulations such as FDA and EU MDR. This includes design controls, risk management, verification and validation activities, technical documentation, and post-market changes.
Are TECH XEL platforms off-the-shelf products or customizable?
Engineering solutions for medical devices help reduce time-to-market by applying proven frameworks, early manufacturability reviews, structured verification planning, and regulatory-compliant development practices. These approaches minimize rework, improve predictability, and support smoother transitions from development to production.
How do TECH XEL platforms reduce development risk and timelines?
ISO 13485 certification demonstrates that an engineering service provider operates within a quality management system for medical devices. It reflects disciplined processes for design control, documentation, risk management, and traceability, which are critical for developing products intended for regulated markets.
How do XEL platforms support regulatory compliance?
Engineering change management follows a controlled workflow starting with an Engineering Change Request (ECR), impact assessment, and approval through a change control board. Approved changes are executed via Engineering Change Orders (ECOs), supported by required verification, validation, and documentation updates as per ISO 13485 and FDA 21 CFR Part 820 requirements.
How do we engage Syrma Johari MedTech on XEL platforms? ?
The right medical device engineering partner brings relevant domain expertise, regulatory knowledge, multidisciplinary engineering depth, and a track record of supporting complex medical device projects. OEMs can identify a partner suited to their needs by evaluating lifecycle coverage, quality systems, verification and validation capabilities, and experience across similar device categories.
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