Innoseis MEMS Sensors.

Sensitivity in a small package.

Introducing the worlds smallest, most sensitive microelectromechanical systems accelerometers, engineered with high performance and low power consumption at its heart.

These MEMS sensors are built to power tomorrow’s navigation, guidance, and measurement systems.


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first class sensitivity

Unrivaled sensitivity and stability with a bandwidth from 0 to 200 Hz gives your application ultra-precise data.

Efficiency at scale

Competitive per-unit costs through standardised, volume production manufacturing.

Lowest power demands

Industry-leading ultra low-power consumption as low as 20mW offers efficient solutions.

SMALLEST AND LIGHTEST IN CLASS

At 9x9x3mm and only 1.5 grams, our sensors are the smallest and lightest MEMS sensors of this class on the market today.

TECHNOLOGY BORN FROM GRAVITATIONAL WAVES

Innoseis Sensor Technology MEMS sensors were born from fundamental research into gravitational wave detection and are now demonstrating world-record performance in their class, addressing critical needs in various application areas.

Leveraging in-house experience, we’re developing the next generation of novel sensing products, designing and manufacturing high precision, low power wireless sensing technology, improving clients’ business and operational efficiencies.

An image of a scientist working on gravity waves
Marco Kraan – Nikhef

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SPEC SHEET

PROVEN PERFORMANCE

The Innoseis team has been our innovation partner in developing solutions for sensing and data communication challenges since 2014. Their pioneering technologies are field-proven and are being used at scale in our operations.
Xander CampmanPrinciple Science Expert
Xander Campman
By working with the Innoseis team and utilizing their sensor technology we were able to develop and deploy a world class recording system that allowed us to be significantly more competitive.
P. AntonikCEO, Geofizyka Torun
P. Antonik
The cooperation with Innoseis has resulted in the development of extremely sensitive MEMS sensors, these will be crucial for the operation of our future gravitational wave detectors.
N. van BakelHead of Detector Research and Development
N. van Bakel

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unprecedented sensitivity

in demanding situations

AEROSpace

Improved orbit and propulsion control for longer operational lifetimes.

Geophysics

Better quality seismic signals with lower operational cost.

Truck with visualized sensor graphics driving on a highway

Autonomous Vehicles

High precision positioning, with or without GPS assist.

Infrastructure monitoring

Fast identification of changes to structural integrity.

MEET THE INNOSEIS TEAM

MARK BEKER

MARK BEKER

Chief Executive Officer (CEO)

Matthijs Heeres

Matthijs Heeres

Chief Operations Officer (COO)

Jo van den Brand

Jo van den Brand

Chief Technical Officer (CTO)

Shanine Hoost

Shanine Hoost

Business Manager

Aran Dokoupil

Aran Dokoupil

Technology development VP

Luuk Bleijendaal

Luuk Bleijendaal

R&D Engineer

Juliette van der Jagt

Juliette van der Jagt

R&D Engineer

Mitchell Werensteijn

Mitchell Werensteijn

R&D Engineer

Boris Mulder

Boris Mulder

Software Engineer

Pedro Casanova

Pedro Casanova

Embedded Software Engineer

Ruben Stauttener

Ruben Stauttener

R&D Engineer

Martin Doets

Martin Doets

Senior Mechanical Engineer

Ad Berkien

Ad Berkien

Mechanical Engineer

Andrew Clark

Andrew Clark

Advisory Board Member

Ad Ketelaars

Ad Ketelaars

Advisory Board Member



heAD OFFICE

Science Park 105
1098 XG Amsterdam

CALL

020-592-2063

EMAIL

info@innoseis.com

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