158 results on '"Colomer‑Farrarons, Jordi"'
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2. Conclusions and Future Work
3. Self-powered Nodes for Structural Health Monitoring Applications
4. LoRa Autosensed Self-powered Monitoring for Smart Industry
5. Introduction
6. Ubiquitous Self-powered Architectures
7. Galvanic Cell-Based Self-powered Devices
8. Self-powered Nodes for Structural Health Monitoring Applications
9. Introduction
10. Self-powered Energy Harvesting Systems for Health Supervising Applications
11. Galvanic Cell-Based Self-powered Devices
12. Conclusions and Future Work
13. LoRa Autosensed Self-powered Monitoring for Smart Industry
14. Ubiquitous Self-powered Architectures
15. Impedance Analysis AC Techniques. Cellular Quantification
16. Electrochemical DC Techniques. Glucose Monitoring and Multi-parametric Detection
17. Project-Based Engineering Learning for BME: Electrochemical Instrumentation
18. Introduction to Electronics. Study, Design and Validation Tests
19. Electrochemical Biosensors
20. Introduction to Electrochemical Point-of-Care Devices
21. ‘Plug-and-Power’ Point-of-Care diagnostics: A novel approach for self-powered electronic reader-based portable analytical devices
22. Fully Autonomous Active Self-Powered Point-of-Care Devices: The Challenges and Opportunities
23. Using Current to Drive Two SDC Memristors Connected in Series and in Anti-Series
24. Energy Harvesting (Multi Harvesting Power Chip)
25. CMOS Front-End Architecture for In-vivo Biomedical Subcutaneous Detection Devices
26. Conclusions and Future Work
27. Biomedical Integrated Instrumentation
28. Introduction
29. Low-Power Energy Harvesting Solutions for Smart Self-Powered Sensors
30. Using current to drive two SDC memristors connected in series and in anti-series
31. Low-Power Energy Harvesting Solutions for Biomedical Devices
32. Ultra-Low-Power Harvesting Body-Centred Electronics for Future Health Monitoring Devices
33. Erratum to: Electrochemical DC Techniques. Glucose Monitoring and Multi-parametric Detection
34. Amperometric and Impedance Monitoring Systems for Biomedical Applications
35. Bioimpedance Technique for Point-of-Care Devices Relying on Disposable Label-Free Sensors – An Anemia Detection Case
36. Nano-Enabled Implantable Device for Glucose Monitoring
37. Ubiquitous Self-Powered Architecture for Fuel Cell-Based Point-of-Care Applications
38. An Integrated Detection Method for Flow Viscosity Measurements in Microdevices
39. Power-conditioning circuitry for a self-powered system based on micro PZT generators in a 0.13-[micro]m low-voltage low-power technology
40. Bioelectronics for Amperometric Biosensors
41. Self-Powered Point-of-Care Device for Galvanic Cell-Based Sample Concentration Measurement
42. Portable Bio-Devices: Design of electrochemical instruments from miniaturized to implantable devices
43. A CMOS Self-Powered Front-End Architecture for Subcutaneous Event-Detector Devices
44. Effect of Temperature and Flow Rate on the Cell-Free Area in the Microfluidic Channel
45. Autonomous self-powered potentiostat architecture for biomedical wearable applications
46. Competitive USB-Powered Hand-Held Potentiostat for POC Applications: An HRP Detection Case
47. Self-Powered Portable Electronic Reader for Point-of-Care Amperometric Measurements
48. Electrochemical Instrumentation of an Embedded Potentiostat System (EPS) for a Programmable-System-On-a-Chip
49. Energy-Aware Adaptative Supercapacitor Storage System for Multi-Harvesting Solutions
50. A low-power electronic instrumentation for multi-parametric diabetes mellitus analysis
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