Spotlight Labs


Developer of a helmet-integrated physiological and environmental monitoring ecosystem for high-performance aviation. Focus areas include wearable multi-modal biosensors (behind-the-ear reflectance photoplethysmography), embedded data acquisition, real-time onboard alerts, cloud-based analytics, and flight-test validation for military and research applications. The organization conducts human-subjects research and partners with contract manufacturers for production.

Industries

aerospace-8a20
biometrics
hardware
sensor

Nr. of Employees

small (1-50)

Spotlight Labs

Engineering and Flight Test: 186 Industrial Ln., Berlin, VT 05641


Patents

Human performance oxygen sensor

US-12064247-B2

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Combined exhaled air and environmental gas sensor apparatus

US-11172845-B1

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Products

Helmet-integrated physiological and environmental monitoring earcup system

A self-contained earcup module that collects multi-wavelength optical biosignals and environmental parameters, provides onboard data logging and real-time aural alerts, and transfers data for cloud analytics.


Services

Design and execution of human-rated testing protocols (centrifuge, hypobaric chamber, and live sorties) to validate sensor performance in aviation environments.

Expertise Areas

  • Wearable biosensor development
  • In-flight physiological monitoring and hypoxia detection
  • Photoplethysmography measurement and validation
  • Flight test and operational validation (TRL-9)
  • Show More (4)

Key Technologies

  • Reflectance photoplethysmography (behind-the-ear PPG)
  • Multi-wavelength optical biosensors
  • Bone-conduction audio alerting
  • 6DOF accelerometry
  • Show More (5)

News & Updates

Announcement of a contract manufacturing agreement to produce the human-performance ecosystem in Vermont.

Company signs long-term lease to establish new headquarters in Haddonfield, NJ.

Peer-reviewed paper reporting investigation of behind-the-ear PPG against arterial blood gas and other PPG sensors in hypoxic and high-G conditions.

Completion of Phase-1 verification and validation for the in-flight human performance system; progression to squadron-wide field testing.

Press and industry announcements introducing the helmet-based hypoxia sensor device and its intended role in detecting and alerting pilots to physiological degradation.


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