Insights from Will Parrett, Teledyne DD-Scientific
The industrial safety market is undergoing a significant shift away from traditional lead-based galvanic oxygen sensors towards longer-life, lead-free amperometric technology. But what is driving this transition, how rapidly is adoption accelerating, and what are the implications for instrument manufacturers, distributors and end users?
Presented by Will Parrett of Teledyne DD-Scientific at Sensor+Test in Nuremberg earlier this year, ‘The Evolution of Lead-Free O₂ Sensors for Industrial Safety’ examines the evolution of oxygen sensing in industrial safety. It explores the impact of RoHS legislation, the limitations of conventional galvanic sensors, advances in modern amperometric technology, and changing expectations around performance, service life and total cost of ownership. The presentation also compares adoption trends across key global regions and considers how the oxygen sensing market is likely to evolve in the years ahead.
Drawing on Teledyne DD-Scientific's expertise gained from manufacturing almost four million electrochemical gas sensors annually, together with Will's extensive experience in gas detection and instrumentation, this presentation provides practical insight into the technological, regulatory and commercial forces shaping the future of industrial safety and lead-free oxygen sensing.
Watch the full video below, or jump straight to the topics that interest you using the timestamp links further down the page. ⬇️
Introductions
Electrochemical O2 sensors in industrial safety
Galvanic O2 sensors
The movement of the industry away from galvanic sensors
RoHS and its impact on the industry
Amperometric O2 sensors as an alternative to galvanic
Modern advances in amperometric O2 sensors
How has the market adjusted to amperometric sensors
Rate of industry change by region from galvanic to amperometric sensors
The future of amperometric O2 sensors
The latest / future developments in amperometric O2 sensor technology

