View this email in your browser 
(https://mailchi.mp/mepca/top-engineering-news-10121369?e=8b9d2478b4)
https://esi-tec.com
Silicon-on-Saphire for Hazardous Areas
https://esi-tec.com

Silicon-on-Sapphire (SOS) sensor technology has emerged as a cornerstone in the 
design and functionality of ESI's intrinsically safe pressure transmitters, 
playing a pivotal role in ensuring reliable and accurate measurements in 
hazardous environments. The combination of silicon's sensing capabilities and 
sapphire's resilience creates a symbiotic relationship that addresses the 
challenges posed by harsh environments in hazardous locations.

The SOS sensor leverages the exceptional properties of both silicon and 
sapphire to deliver unparalleled performance. The Sapphire offers remarkable 
durability, chemical inertness, and resistance to extreme temperatures. The 
silicon is grown onto the surface of the sapphire substrate creating a sensor 
that benefits from the best of both materials. The silicon provides sensitivity 
and accuracy, while the sapphire substrate shields it from corrosive chemicals, 
abrasive substances, and high temperatures, ensuring long-term reliability in 
even the harshest environments.

The use of Silicon-on-Sapphire Technology is particularly crucial in 
intrinsically safe pressure transmitters designed for hazardous locations. In 
environments where the risk of explosion is present, safety is of utmost 
importance. Intrinsically safe devices are engineered to prevent the release of 
sufficient electrical or thermal energy to ignite a hazardous atmosphere. ESI's 
pressure transmitters, incorporating SOS sensor technology, meet these 
stringent safety requirements while delivering accurate and dependable pressure 
measurements.
https://esi-tec.com

The inherent electrical insulation properties of sapphire play a pivotal role 
in achieving intrinsic safety. Sapphire is an excellent insulator, preventing 
the passage of electric current and reducing the risk of sparking or 
overheating. This makes SOS sensors inherently safer for use in explosive 
atmospheres compared to traditional sensors that may pose a higher risk.

Additionally, silicon-on-sapphire technology enables ESI to create pressure 
transmitters with a compact design without compromising performance. The thin, 
yet robust, nature of the SOS sensor allows for the development of smaller and 
lighter devices, making them easier to install and maintain in tight spaces 
within industrial facilities.

As industries continue to prioritise safety and accuracy in their operations, 
SOS technology is poised to remain at the forefront of intrinsically safe 
pressure transmitter solutions, providing a reliable and durable solution for 
critical applications.
LEARN MORE HERE (https://esi-tec.com)

============================================================
** LinkedIn (https://www.linkedin.com/company/esi-technology-ltd/)
** YouTube (https://www.youtube.com/@esitechnology)
** Website (https://esi-tec.com/)
** Facebook (https://www.facebook.com/pressuremeasurement/)
** Instagram (https://www.instagram.com/esitechnologyltd/)
Copyright © 2024 Cogent Multimedia Ltd, All rights reserved.
 You are a long time subscriber of The MEPCA Magazine, if you no longer wish to 
receive our emails please unsubscribe accordingly. Thank you.

Our mailing address is:
Cogent Multimedia Ltd
CIM Online Ltd 1st Floor, Saphir House 5 Jubilee Way
FAVERSHAM, Kent ME13 8GD
United Kingdom
Want to change how you receive these emails?
You can ** update your preferences 
(https://mepca-engineering.us4.list-manage.com/profile?u=c8f19806103281f546fb82fd6&id=dae9b5c0fa&e=8b9d2478b4&c=ff6f0a3c06)
or ** unsubscribe from this list 
(https://mepca-engineering.us4.list-manage.com/unsubscribe?u=c8f19806103281f546fb82fd6&id=dae9b5c0fa&t=b&e=8b9d2478b4&c=ff6f0a3c06)
.

Reply via email to