ION Science Ltd, the global leader in the design and development of gas sensing technology, is pleased to announce the launch of the ‘MiniPID 2 PPB XF Sensor’, a ground-breaking new variant engineered with patented Floating Ground (FG) Filter technology.

Engineered to ensure resilience against harsh environmental factors for extended periods, allowing heightened reliability with reduced maintenance requirements, ensuring uninterrupted operations on site.

The MiniPID 2 PPB XF boasts a filter lifetime of over 10,000 hours and a lamp life of 10,000 hours. Paring these features alongside ION Sciences award winning humidity resistant and anti-contamination design, reduces maintenance frequencies providing lower cost of ownership. The sensor also includes a serviceable electrode stack and lamp, is intrinsically safe, all housed in a Series 4/A package.

“We are thrilled to introduce the MiniPID 2 PPB XF Sensor to the market,” said Peter Morris, Head of Sensors at ION Science Ltd. “This latest addition to our Sensor portfolio reflects our commitment to innovation and our dedication to meeting the evolving needs of our customers. With its extended lifespan and lower maintenance requirements, the MiniPID 2 PPB XF Sensor offers unmatched reliability and performance for VOC gas detection applications”.

With a range exceeding 40 parts per million (ppm) a minimum detection limit of less than 1 ppb and a response time <12s the MiniPID 2 PPB XF Sensor sets a new standard for reliability and precision in volatile organic compound (VOC) detection. Equipped with a 10.6eV lamp and incorporating Ion Science’s patented fitler technology, the MiniPID 2 PPB XF Sensor delivers unparalleled performance and durability even in the most challenging environmental conditions.

Key features of the MiniPID 2 PPB XF sensor variant include:

• >10,000 Hour Filter Lifetime
• 10,000 Hours Lamp Life
• Anti-contamination Design
• Humidity Resistant
• Low Cost of Ownership
• Serviceable Electrode Stack and Lamp
• Intrinsically Safe
• Series 4/A Package

The MiniPID 2 PPB XF Sensor boasts an extended filter lifespan, thanks to integrating ION Science’s patented FG Filter technology, ensuring prolonged reliability and performance in volatile organic compound (VOC) detection applications.

Users can rely on the PPB XF Sensor for precise and accurate detection of VOCs in various environmental conditions.

As well as this, the newly implemented filter is built to last. This enhancement eliminates the risk of unexpected burnouts, reducing maintenance time and costs by minimising the need for frequent sensor replacements and calibrations which in turn enables planned proactive maintenance operations. Leading to uninterrupted, quality, monitoring simultaneously optimising overall operational efficiency.

With a robust design, engineered to withstand even the harshest environmental conditions, the MiniPID PPB XF Sensor ensures durability and performance when integrated into gas detection instrumentation, making it ideal for use in a wide range of industrial and commercial settings.

The MiniPID 2 PPB XF Sensor and wider sensor range are now available for purchase directly through ION Science Ltd. and our global subsidiary offices.

About ION Science Ltd

ION Science Ltd. is a leading manufacturer of advanced gas sensing technology and gas detection instrumentation, dedicated to providing innovative solutions to protect people and the environment from hazardous gases.

We now offer eight different sensor variants, each designed to meet the specific needs of our diverse customer base, including industrial, air quality, environmental, and personal safety sectors. ION is committed to delivering superior performance, reliability, and user experience worldwide.

For more information about the MiniPID 2 PPB XF Sensor and other products from ION Science Ltd Click Here.

Alternatively, please contact:

Peter Morris
Head of Sensors
E: peter.morris@ionscience.com
W: www.ionscience.com

Enquire Today

Please complete the form below and a member of our team will contact you shortly.