Low-Power Intracranial Pressure Monitoring System

This low‑power intracranial pressure monitoring platform was engineered for accurate, stable readings over extended use. We delivered custom schematic and PCB design, embedded firmware, and system‑level validation focused on signal integrity and reliability. The result supports continuous ICP tracking and clearer diagnostic insight for improved patient care.
What We Did
Designed low‑power electronics (schematic/PCB) and embedded firmware for stable, precise ICP sensing, with validation focused on accuracy and long‑term operation.
Impact
Enabled continuous intracranial pressure monitoring with dependable diagnostics and improved clinical decision support.
Approach & scope
- - Designed low‑power electronics (schematic/PCB) and embedded firmware for stable, precise ICP sensing, with validation focused on accuracy and long‑term operation
Outcomes
- - Enabled continuous intracranial pressure monitoring with dependable diagnostics and improved clinical decision support.
- - This low‑power intracranial pressure monitoring platform was engineered for accurate, stable readings over extended use
- - We delivered custom schematic and PCB design, embedded firmware, and system‑level validation focused on signal integrity and reliability
- - The result supports continuous ICP tracking and clearer diagnostic insight for improved patient care
Technology stack
Plan a technical consultation
Share your requirements and we will propose a tailored engineering roadmap. Typical response time: 1 business day.
Related case studies
Achieved 6+ months of battery operation while delivering reliable tank‑pressure visibility — nicknamed “The Sleeping Beauty” by the client.
Delivered a flagship‑level device with built‑in dosage/volume calculation, diagnostics PC software, and production‑ready compliance (EMC/LVD) and cost analysis support.
Expanded into a syringe pump variant with an integrated drop counter, delivering precise, safe infusion workflows across use cases.