Engineering notes
Embedded Systems and Reliability
Reliable embedded systems, and why embedded systems fail in the field. Our work has included power-on self-tests that verify the hardware at boot, persistent fault logs, I2C bus-error recovery, FIFO overflow detection, stale-data detection and hard-fault debugging. On a medical programme it has also included an alarm when a wireless link drops, and controller soak and stability testing.

Embedded Systems and Reliability
Explore how embedded systems are transforming healthcare with real-time monitoring, AI insights, and secure, connected medical devices.

Embedded Systems and Reliability
Learn how intelligent redesign modernizes legacy medical devices, improving reliability, compliance, and lifecycle while preserving proven clinical behavior.

Embedded Systems and Reliability
Learn how medical device interface design improves clinical clarity, reduces errors, and supports safer decision-making in high-pressure environments.

Embedded Systems and Reliability
Learn how embedded systems development and firmware engineering are shaping safer, smarter, and more reliable medical devices.

Embedded Systems and Reliability
Learn why hardware-software co-design is essential for reliable embedded systems, covering timing, security, manufacturability, and scalability.

Embedded Systems and Reliability
Explore why embedded systems fail in the field learning prevention, robust design, and testing for real-world conditions with Pinetics.