Vaisala targets growing hydrogen and renewable gas markets with its first intrinsically safe dew point instrument DMP370

Vaisala DMP370 touch-screen enabled PPE-gloved hand pressing a button
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Designed for hydrogen, biomethane and industrial gas infrastructure, the DMP370 delivers continuous dew point monitoring in hazardous locations.

Vaisala, a global leader in measurement instruments and intelligence, today launched the Vaisala DMP370 Intrinsically Safe Dew Point Instrument for hazardous locations. The new instrument extends Vaisala's proven DRYCAP® dew point technology into hazardous locations.

Announced at Gastech 2026 in Bangkok, the world's largest exhibition and conference for natural gas, LNG, low carbon solutions, and energy innovation, the DMP370 enables continuous, drift-compensated moisture measurement in hydrogen production, renewable and natural gas infrastructure, chemical processing and other industrial applications where combustible gases or dust may be present.

Growing industrial gas markets increase the need for reliable moisture measurement

According to the International Energy Agency's Global Hydrogen Review 2026, global hydrogen demand surpassed 100 million tonnes already in 2025. Much of this demand comes from industrial processes where gas quality directly affects safety, equipment performance, and operational reliability.

As hydrogen and biomethane production and other decarbonized gas applications expand, reliable moisture measurement is becoming increasingly important across both new and existing gas infrastructure.

Moisture plays a critical role in many gas processes. Excess moisture can compromise fuel cell performance, reduce process efficiency, shorten equipment lifetime, and increase operational risks in gas infrastructure, electrolyzers, and industrial processing facilities.

In many of these environments, only equipment certified for hazardous locations may be used.

Existing measurement solutions often require compromises

Measuring moisture in hazardous locations has traditionally involved trade-offs. Some solutions require additional protective enclosures or introduce installation constraints, depending on the protection concept and application. Other technologies periodically interrupt measurements during regeneration or heating cycles, creating gaps in monitoring data.

The new DMP370 addresses these challenges by combining intrinsic safety with uninterrupted measurement. The solution is enabled by Vaisala's proven DRYCAP® dew point technology and an innovative drift-compensation solution.

Bringing Vaisala's DRYCAP® technology to hazardous locations for the first time

The DMP370 combines Vaisala’s DMP37X probe and HMT370EX transmitter into a single intrinsically safe solution.

Intrinsic safety limits the instrument's electrical energy by design, preventing it from becoming an ignition source in explosive atmospheres.

The DMP370 measures continuously, combining fast response with long-term stability, providing operators with uninterrupted gas-quality data without measurement gaps.

"As hydrogen and renewable gas projects move from pilot installations to full-scale industrial operations, the need for reliable, continuous gas-quality monitoring is growing. Operators need measurement solutions that support both process performance and safety in hazardous locations," said Antti Heikkilä, Product Line Manager of Industrial Decarbonization at Vaisala.

"With the DMP370, we're bringing Vaisala's proven DRYCAP® measurement technology into hazardous locations, enabling continuous dew point measurement in applications where explosion safety is essential," he added.

Designed for emerging and established industrial applications

The DMP370 supports gas quality measurement and gas purity monitoring across a wide range of hazardous industrial environments, including:

  • Hydrogen: hydrogen production, storage, fuel cell, and electrolyzer output monitoring applications
  • Natural gas and biomethane: biogas upgrading into biomethane, grid injection and monitoring of gas infrastructure, including natural gas pipelines
  • Chemical and industrial processing: synthetic fuels including eSAF, methanol production, pharmaceuticals, electronics manufacturing, and oil and gas
  • Battery manufacturing: dry-process applications where combustible carbon dust may be present
  • Compressed air and nitrogen: inerting, purge gas and hazardous-location moisture monitoring

Key facts

  • Product: Vaisala DMP370 Intrinsically Safe Dew Point Instrument
  • Configuration: Vaisala’s DMP37X probe + HMT370EX transmitter, certified as a single intrinsically safe unit
  • Technology: Vaisala DRYCAP® dew point sensor with an innovative drift-compensation solution
  • Measurement range:  -70°C ... +10°C Td/f
  • Measurement accuracy: ±2°C Td/f (typical)
  • Temperature range: -40...+60°C
  • Pressure range: 0...40 bar (abs)
  • Intrinsically safe (Ex i), for up to Zone 0 / 20 (ATEX, IECEx)
  • FM approved for Class I, II, III, Division 1, Groups A, B, C, D, E, F and G, T4 (US and Canada)
  • Traceable calibration (certificate included)
  • Availability: First deliveries begin Q1 2027
  • Markets: Hydrogen, natural gas/biomethane, chemical and industrial processing, battery manufacturing, compressed air and nitrogen

Media resources

More information for the media

Miia Lahti
Communications Partner, Industrial Measurements, Vaisala
miia.lahti (at) vaisala.com

Vaisala is a global leader in measurement instruments and intelligence for climate action. We equip our customers with devices and data to improve resource efficiency, drive energy transition, and care for the safety and well-being of people and societies worldwide. With over 90 years of innovation and expertise, we employ a team of close to 2,500 experts committed to taking every measure for the planet. Vaisala series A shares are listed on the Nasdaq Helsinki stock exchange.
www.vaisala.com

Sources:

International Energy Agency's Global Hydrogen Review 2026

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