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Healthcare Product Development

We deliver healthcare device development services covering electronics, firmware, software, and system integration from concept through production. Our engineering process improves reliability, simplifies manufacturing, and addresses regulatory requirements from the earliest design stages to minimize costly changes later. The result is a medical device that reaches the market faster and remains easier to support throughout its lifecycle.
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Solutions

Remote patient monitoring

We develop remote patient monitoring systems that combine medical-grade electronics, embedded software, and secure connectivity for healthcare devices used in home care, chronic disease management, and virtual care programs. Our engineers integrate sensors, wireless communication, cloud services, and mobile applications into a single solution tailored to your product requirements. This helps MedTech companies accelerate development, reduce technical risk, and bring reliable connected devices to market faster.

We develop:

  • Wearable and ambulatory ECG / cardiac monitoring devices
  • Blood glucose meters and continuous glucose monitoring (CGM) devices
  • Connected spirometers
  • Multi-parameter wearable and home monitoring systems
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Diagnostic and therapeutic medical devices

Successful healthcare product design starts with reliable electronics, robust analog front-end design, accurate signal acquisition, and software tailored to medical applications. We engineer diagnostic and therapeutic devices for hospitals, outpatient clinics, and rehabilitation centers, integrating embedded hardware, control software, and medical sensors into a unified system. This approach accelerates development, improves product reliability, and simplifies the path toward regulatory approval.

We develop:

  • Digital audiometers and tympanometers
  • Portable ophthalmic imaging and diagnostic devices
  • Targeted phototherapy and laser devices
  • Smart ultrasound therapy systems
  • Neuromuscular stimulation (NMES) devices
  • Medical infusion pump controllers
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Software solutions

Healthcare software connects clinical teams, patients, and medical devices into a single digital ecosystem. We develop custom healthcare software for telemedicine, medical imaging, mobile health, laboratory systems, and standards-based interoperability using HL7 and FHIR. Secure data exchange, intuitive workflows, and seamless integration help organizations deliver digital services more efficiently while improving access to accurate clinical information.

We develop:

  • AI-driven telehealth solutions
  • Medical imaging and DICOM software
  • Patient-facing mobile health (mHealth) apps
  • Clinician mobile workspaces and portals
  • Laboratory analyzer connectivity solutions
  • Medical data integration pipelines (FHIR/HL7)
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Healthcare Workflow Automation

Healthcare facilities handle thousands of operational events every day, so automation plays a critical role in delivering safe and efficient care. We create embedded controllers, connected devices, and management software that automate asset tracking, sterilization processes, access control, and patient self-service. These solutions reduce routine manual work and provide clear visibility into hospital operations. As a result, healthcare organizations can allocate resources more effectively and ensure stable, high-quality service.

Let’s make your production smarter, faster, and more reliable

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Explore our case studies

See how our hardware, firmware, and software expertise comes to life in real projects.
Conducting an EEG study

Software for EEG System

The Integra Sources team developed energy-efficient embedded software and an SDK for a medical EEG system. We delivered robust data transfer and storage, implemented m...
  • Firmware development
  • Healthcare
  • Software development

Portable Dermatoscope

We partnered with a leading dermatoscope manufacturer to modernize their compact model by integrating smartphone connectivity, upgrading key components, enhancing ligh...
  • Firmware development
  • Hardware development
  • Healthcare

Otoacoustic Emission System

With its advanced probe, the system captures two types of otoacoustic emissions: TEOAE and DPOAE. Results are saved directly to the device’s memory and can be printed ...
  • Embedded hardware development
  • Embedded software development
  • Firmware development
  • Healthcare

Wearable Blood Pressure Monitor Development

The portable blood pressure monitor measures blood pressure, heart rate, blood saturation, and posture and transmits the data to a tablet app.
  • Embedded hardware development
  • Firmware development
  • Healthcare
  • Mobile app development
  • Wearable device
Details of the medical alert bracelet.

Medical Alert Bracelet That Delivers Assistance at the Touch of a Button

A bracelet designed for patients at military hospitals and clinics in the USA. It notifies hospital staff about an emergency with the patient.
  • Embedded hardware development
  • Embedded software development
  • Firmware development
  • Healthcare
  • IoT
  • Wearable

Real-Time Signal Processing for Wearable Electrocardiogram Device

We developed an Android app and firmware for a wearable ECG device for the University of East London, which did research to quantify the cardiovascular effects of envi...
  • Android app development
  • BLE
  • Firmware development
  • Healthcare
  • Wearable
A smartphone with an attached device acts as a digital dermatoscope, helping to identify skin cancer - Integra Sources project

SkinView iOS App for Identifying Skin Cancer with Computer Vision

The app utilizes computer vision algorithms to analyze moles for melanoma detection, achieving 80% diagnostic accuracy and rapid processing times under 0.1 seconds.
  • Computer vision
  • Healthcare
  • Mobile app development
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Our advantages

Integrated electronics u0026 code design

We design your boards and code under one roof. This means your hardware is built specifically for your software's logic.
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Transparent process

We keep you in the loop from day one with clear milestones, open communication, and honest estimates.
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Industry-specific expertise

We know the specific challenges of electrical noise, thermal stress, and 24/7 duty cycles and use this experience to identify potential risks early in the design phase.
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Our clients say on Clutch

"Integra Sources' extensive preparation beforehand helped give confidence to the client that they chose the right partner. Despite the time difference, they are able to stay in constant communication. Integra's dedication to the project has led the client to develop an ongoing relationship."
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Christophe Baudia
CEO at GeoMoby
"The database has satisfied all scope requirements. The upgrades have improved communication and performance. Team strengths include accessibility and problem-solving and they are unafraid to research problems and develop their own solutions. Integra demonstrated strong management skills when they managed our servers for a week during an important trade show; we showcased our product at the event. Communication channels are always fluid and straightforward."
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Eduardo Ruiz
Founder & CEO at Ruiz Aerospace Manufacturing
"Integra's team helped us clarify our requirements and change systems architecture to achieve the final goal. I'd say that the flexibility and enthusiasm of both engineering and management teams throughout the whole project were some of the things we value most in our collaboration."
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Dr. Sam Wass
University of East London
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What’s included

A PCB and a small camera lying on a table.

Electronic design

Accurate medical equipment starts with a robust PCB layout. We design multi-layer boards with clean power distribution and high noise immunity to minimize interference. Careful analog front-end design for healthcare devices enables accurate acquisition of weak biometric signals with minimal distortion. The result is production-ready hardware that simplifies regulatory testing and operates reliably in demanding clinical environments.
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Integra Sources employee is writing a programming code.

Cross-Platform App Development

Connected medical products rely on applications that communicate reliably with hardware across multiple operating systems. We create cross-platform software for diagnostic equipment, patient monitoring systems, and wearable healthcare devices, delivering consistent performance and intuitive user interfaces. Developed as custom healthcare solutions, these applications reduce development effort, simplify future updates, and integrate smoothly with existing clinical workflows and medical hardware.
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Integra Sources project manager is testing a device.

Computer Vision Development

Automated image analysis speeds up diagnostic workflows and reduces manual errors. We integrate lightweight machine learning models directly into medical cameras and scanners for real-time tissue and abnormality detection. Our algorithms process high-resolution video streams in real time, helping clinicians perform image-guided procedures with greater precision. You receive robust custom healthcare software that streamlines diagnostic data processing and supports efficient clinical workflows.
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Cloud Application Development Services

Cloud Application Development Services

Centralized data processing transforms standalone healthcare devices into a connected ecosystem. We develop cloud backends that securely collect and process real-time patient telemetry from connected healthcare solutions. Our architectures support high-volume data streams, giving clinicians timely access to accurate monitoring dashboards. The platform handles sensitive patient data, reduces reliance on on-premises infrastructure, and scales as the number of connected devices grows.
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Pricing Models

Let’s find the right way to work together. We offer clear options for any industrial project.

1

Dedicated Team

Hire a specialized engineering unit. Manage resources directly and scale the team as the task evolves.
2

Research u0026 Feasibility

Evaluate technical viability before development begins. Identify constraints, estimate costs, and uncover potential risks early.
3

Fixed Price Model

Perfect for stable projects. The budget is agreed upfront, with a clearly defined scope and timeline.
4

Time and Material

Pay for actual progress. A flexible option for complex projects with evolving requirements and changing priorities.
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Frequently Asked Questions

Read this information to better understand the process of power electronics design.

Can the devices you develop integrate with EHR/EMR systems and hospital infrastructure?

Yes. We develop custom healthcare solutions that enable seamless integration with EHR/EMR platforms, laboratory systems, and other hospital infrastructure—including legacy backends. Depending on your existing IT stack, we use HL7, FHIR, or secure web APIs to provide reliable data exchange between our devices and clinical software. We also enforce authentication, encrypt data in transit, and implement access controls to protect sensitive patient information, helping you meet regulatory requirements without custom re-engineering on your side.

How do you handle real-time signal acquisition and processing in medical devices?

We capture physiological signals using high-precision analog front-ends (AFEs), low-noise amplifiers, and analog filtering. To process the acquired data with minimal and predictable latency, we use low-power microcontrollers running lightweight RTOS, ensuring deterministic task scheduling so critical events are detected in real time. For advanced signal processing, we implement DSP algorithms directly on the device. Our expertise in healthcare device engineering helps reduce motion artifacts and improve signal quality, enabling reliable performance in continuous monitoring and IoT solutions used across the healthcare industry.

What medical communication standards and protocols do you support?

We support widely used medical communication standards to ensure interoperability with clinical systems. For integration with hospital platforms and EHRs, we implement HL7, FHIR, DICOM, and IEEE 11073 for structured medical device and personal health data exchange. At the connectivity layer, we use Bluetooth Low Energy (BLE), Wi-Fi, and MQTT, while REST APIs enable secure integration with cloud platforms and third-party applications. Our healthcare solutions development focuses on reliable interoperability of custom healthcare systems within modern clinical workflows.

How do you ensure data security and patient privacy in connected healthcare devices?

We ensure data security and patient privacy throughout healthcare device development, from system architecture to deployment. Our team implements encrypted storage and data transmission, secure boot, authenticated firmware updates, and role-based access control. We use TLS for secure communications and follow secure coding practices, threat modeling, and rigorous testing. For IoT healthcare devices and smart devices in healthcare, we follow software development practices aligned with IEC 62304 principles and design with HIPAA and GDPR data protection requirements in mind.

How do you approach power management and battery life in wearable medical devices?

We optimize power consumption at every stage of healthcare solutions development. Our engineers select low-power components, including low-quiescent-current ICs and efficient power converters, and optimize firmware using low-power operating modes. We reduce radio activity, disable unused peripherals, and design battery management and charging circuits to maximize safety and battery life. This approach enables reliable operation between charges for IoT devices used in the healthcare industry.

How do you validate and test healthcare firmware before deployment?

We validate healthcare firmware through a multi-stage testing process that includes static code analysis, unit, integration, and system testing. We perform Hardware-in-the-Loop (HIL) testing to emulate real operating conditions and verify firmware behavior on target hardware. Additional stress, fault-injection, and communication interface testing help ensure stable performance. We also verify data integrity, connectivity, and end-to-end system behavior throughout the healthcare devices engineering lifecycle.

Our technologies

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