A prototype is just the start. Bringing a medical device to market means building evidence alongside the product.
Our guide covers six phases, from concept to post-market surveillance, including testing, risk controls, and cybersecurity.
Read more: https://t.co/8ou00cKeDZ
Early firmware decisions shape a product for years. Choices about hardware, connectivity, power, security, and updates affect reliability, cost, and maintenance long after launch. Good firmware makes a device work - and keeps it secure and dependable throughout its lifecycle.
A healthcare wearable is more than an app on a smaller screen. It’s a connected product where sensors, Bluetooth, mobile, cloud, clinical systems, security, and compliance must work together.
Find insights in our latest guide:
Great hardware doesn’t stop at the board and neither should the engineering team behind it.
Yalantis provides full-cycle FPGA design services, from architecture and RTL development to verification, board validation, and ongoing support.
Passing every component test doesn’t mean your IoT product is ready to ship.
A device can work perfectly on the bench and still fail during an OTA update, under unstable connectivity, or as the fleet scales.
See what your IoT testing strategy might be missing ⬇️
Building an #AI agent is one thing; making it business-ready is another. Yalantis handles the entire journey, delivering integrated AI agents that create measurable value: https://t.co/YsVqivNOyn
With 40+ end-to-end IoT deployments, we know what it takes to bring connected devices from concept to manufacturing.
To make choosing the right partner easier, here are five reasons to consider Yalantis for your next IoT project.
https://t.co/u4wOWlyvzS
The Yalantis team has joined the Nordic Semiconductor Design Partner network!
“For us, this is more than recognition of our engineering capabilities. It validates what we’ve already delivered in real-world deployments” says Denys Hukov, CGO at Yalantis.
Where does Rust earn its place?
It shines where crashes, memory leaks, and security bugs aren't an option, delivers C-level performance without a garbage collector, making it ideal for long-lived, concurrent, and safety-critical systems.
Explore more about Rust Development⬇️
Embedded systems development is more than writing code. Most failures happen between the layers, where hardware, firmware, cloud, security, and compliance meet. Learn why compliance isn't just a checkbox in our Compliance-First Guide: https://t.co/l9tqJR8eJ0
Building a #hardware product in 2026 is no easy task.
Every early decision matters. Once it's baked into silicon, fixing mistakes becomes far more expensive.
In the hardware development guide, we dive into the pitfalls of hardware development and share practical insights.
820,000 IoT devices are attacked every day.
With 21B+ connected devices online, security can no longer be an afterthought. It affects compliance, reliability, and time-to-market. IoT Security Guide shows how to build secure products from day one: https://t.co/KKEr7Uxzb9
The average hospital operates more than 350,000 connected medical devices, and 93% experienced a cyber attack in 2025. We explored how intelligent algorithms are becoming part of the clinical workflow while operating under strict #FDA and #EU regulatory requirements: