Breathe Easy with Canarin: Smart Pollution Sensors for a Healthier World

Monitor air quality in real-time and protect your loved ones

At CANARIN SPA

At CANARIN SPA, we are committed to revolutionizing air quality monitoring through cutting-edge technology. Our mission is to empower individuals, communities, and organizations with real-time, accurate, and accessible air pollution data—helping to create healthier environments and informed decision-making

The Canarin, our innovative remote sensor is designed to assess major air pollutants (such as PM2.5, PM10, NO₂, CO, and O3) in real-time while providing GPS tracking (if chosen) for precise location-based insights. Whether you’re a researcher, policymaker, urban planner, or health-conscious individual, our technology delivers reliable air quality data directly to your fingertips

Real-Time Monitoring

Instant air pollution data for timely interventions

Precision & Accuracy

High-quality sensors providing scientifically validated readings.

Portable & Smart

GPS-enabled for location-specific air quality mapping

User-Friendly Dashboard

Easy access to historical trends and live updates

Real-World Applications of Canarin

Our Canarin remote air quality sensor has been deployed in diverse environments, demonstrating its value in personal exposure monitoring, clinical research, and large-scale environmental assessments. Below are key case studies among others showcasing its impact:

1. Personal Exposure Monitoring in Bangkok (IJTLD, 2023) An individual used Canarin for one year to track daily exposure to air pollution while commuting, working, and engaging in outdoor activities in Bangkok, a city known for high pollution levels. The study provided valuable insights into air quality fluctuations in different urban settings, empowering the user to adjust habits (e.g., route changes, mask usage) to minimize pollutant exposure.

2. Patient Monitoring in Idiopathic Pulmonary Fibrosis (IPF) (ongoing study) A cohort of patients with Idiopathic Pulmonary Fibrosis (IPF) used Canarin over one year to track their exposure to air pollutants. While the final results are pending, preliminary findings show that Canarin played a crucial role in alerting patients when pollutant levels exceeded safety thresholds, helping them adjust their activities to reduce exacerbation risks.

2. Patient Monitoring in Idiopathic Pulmonary Fibrosis (IPF) (ongoing study) A cohort of patients with Idiopathic Pulmonary Fibrosis (IPF) used Canarin over one year to track their exposure to air pollutants. While the final results are pending, preliminary findings show that Canarin played a crucial role in alerting patients when pollutant levels exceeded safety thresholds, helping them adjust their activities to reduce exacerbation risks.

4. Air quality monitoring in Schools Canarin is being deployed in schools to assess indoor and outdoor air quality and measure childrens daily exposure to air pollutants. Given the vulnerability of children to air pollution—linked to respiratory issues like asthma and reduced lung development—this initiative aims to:

  • Identify pollution hotspots inside and around schools
  • Track variations in air quality throughout the school day (e.g., during drop-off, recess, and pick-up)
  • Help schools implement mitigation strategies, such as better ventilation, optimized classroom locations, and adjusted outdoor activity schedules
  • Raise awareness among parents and educators on pollution risks and prevention measures
  • These studies align with broader efforts to improve childrens health by reducing exposure to harmful pollutants, providing data-driven solutions for cleaner learning environments.

    All the case studies illustrate Canarin’s versatility, from individual health protection to clinical and large-scale environmental research, helping bridge critical gaps in air pollution monitoring worldwide.

01

Infrequent Readings

Traditional monitoring stations often provide readings at specific intervals (e.g., hourly, daily), which may not capture real-time fluctuations in air qualityUlamco laboris nisi ut aliquip ex ea commodo consequat. Et consectetur ducimus vero placeat

02

Limited Coverage

These stations are typically located in specific areas, often in government or industrial zones.2 This limited coverage can lead to significant gaps in data, especially in residential areas or less populated regions

03

High Cost

Maintaining and operating these stations can be expensive, limiting the number of locations where they can be deployed.

Features

Introduce Canarin as a network of affordable and accessible smart air quality sensors

Growing Concern

Air pollution significantly impacts respiratory health, causing issues like asthma, bronchitis, and even lung cancer.2 It can also worsen cardiovascular diseases

  • Urbanization: Increased industrial activity and vehicle emissions in cities contribute to higher pollution levels
  • Climate Change: Changing weather patterns can worsen air quality by trapping pollutants
  • Awareness: Growing public awareness and scientific evidence are highlighting the serious health consequences of air pollution.

Canarin: The Solution:

Canarin offers a network of affordable and accessible smart air quality sensors that empower individuals to monitor the air they breathe. Unlike traditional monitoring systems, Canarin sensors are

  • Pocket-friendly: Making air quality monitoring accessible to everyone.
  • Easy to deploy: This automated solution does not need any work from the user except keeping the device charged.
  • Data Driven: Providing real-time, hyperlocal data on air quality.

Contact

Address

31-33 rue St Ambroise 75011 Paris France

Call Us

+33 6 30807628

Email Us

canarin.sensors@gmail.com

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