Renesas: Designing IoT Air Quality Sensors Without the Need for a Battery
Online, On Demand
Live presentation date: May 18th, 2021
Overview:
Join our webinar, created in partnership of EBV and Renesas to understand more about the benefits the RE ultra-low power family can bring to an IoT sensor application, and understand how a new implementation metal oxide technology have enabled high performance and low cost sensing solutions supporting air quality applications in smart homes, appliances and wearables. This webinar will allow attendees to understand how to use these new products to design batteryless air quality sensors.
Agenda:
- Introduction to market trend
- Renesas Air Quality Sensors
- Overview of Air Quality
- MOx gas sensing technology
- Firmware training of sensors
- Current solutions: ZMOD4410, 4510 & firmware
- Applications in the market
- RE Microcontrollers
- Renesas’s Ultra low power SOTB process
- RE Microcontroller roadmap
- Designing low power applications with RE
- RE applications
- Batteryless Air Quality sensor
- The design of a batteryless Air quality sensor
- Questions and Answers
Speakers:
Graeme Clark,
Marketing Manager, Renesas Electronics Europe
Bernard Vicens,
Segment Manager Light, Home and Building, EBV Elektronik
Dave Simpson,
Director of Marketing Industrial Sensing, Integrated Device Technology
RELATED EVENTS

EBV TechSpark Summit Day – Madrid
Join us at the EBV TechSpark Summit Day Madrid – a unique hybrid conference featuring top experts, AI, CRA Security, Embedded Solutions, and market insights to help you stay ahead in electronics.

EBV & ams OSRAM | The Digital Future of UV-C Solutions – LEDs and Sensors for UV-C Treatment
Join us to explore how IoT-enabled UV-C technology enhances disinfection, automation, and efficiency across industries. Optimize, track, and innovate with us!

Watt’s Next? Renesas zeigt den Weg
Liebe Kunden, wir laden Sie zu unserem kostenfreien Renesas-Seminar ein – entdecken Sie GaN & REXFET, Power-Lösungen und HVPAK-Technologien für effiziente Anwendungen.