Gravity: I2C Ozone Sensor for ESP32 and Raspberry Pi | o3 Air Meter (0-10ppm) | I2C Output | Easy to Use
With simple Gravity interface and practical sample code, you can build your own ozone concentration monitor easily and conveniently!
Gravity: I2C Ozone Sensor for ESP32 and Raspberry Pi | o3 Air Meter (0-10ppm) | I2C Output | Easy to Use
Nº de artículo: 24154446

Gravity: I2C Ozone Sensor for ESP32 and Raspberry Pi | o3 Air Meter (0-10ppm) | I2C Output | Easy to Use

Nº de artículo: 24154446

CRC 63134

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With simple Gravity interface and practical sample code, you can build your own ozone concentration monitor easily and conveniently!
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What Stands Out

I2C Compatibility
Designed for seamless integration with ESP32 and Raspberry Pi, this sensor ensures easy connectivity, enabling quick setup and usage for both hobbyists and developers in air quality monitoring projects.
Ozone Detection Range
Capable of measuring ozone levels from 0 to 10ppm, this sensor provides accurate readings that are essential for air quality assessments, making it perfect for environmental monitoring applications.
User-Friendly Design
With a straightforward I2C output, this ozone sensor simplifies the user experience, allowing both beginners and experienced users to effortlessly incorporate it into their projects without complications.

Detalles de producto

Shop the Gravity I2C Ozone Sensor for Arduino ESP32 and Raspberry Pi at Ubuy Costa Rica. Measure ozone levels with the o3 Air Meter 0-10ppm. I2C output for easy use.
BrandDFROBOT
Power SourceGas Powered
Item Weight0.02 Kilograms
AlarmAudible
Operating Humidity95 percent
Unit Count1.0 Count
Number of Items1
ManufacturerDFROBOT

Who Should Buy?

Suitable For
  • Tech Enthusiasts

    Ideal for hobbyists and tech enthusiasts who want to experiment with air quality measurements using Raspberry Pi or ESP32.

  • Environmental Studies

    Suitable for students and researchers conducting environmental studies or projects focused on air quality and pollution assessment.

  • Home Automation

    Perfect for homeowners looking to integrate air quality monitoring into their smart home systems for health tracking.

Not Suitable For
  • Professional Labs

    Not suitable for professional laboratories that require high-precision readings beyond the 0-10ppm range for ozone.

DESCRIPCIÓN DEL PRODUCTO

Gravity: I2C Ozone Sensor for ESP32 and Raspberry Pi | o3 Air Meter (0-10ppm) | I2C Output | Easy to Use

¿Tienes alguna consulta? Chatea con nosotros

Preguntas y respuestas de los clientes

  • Pregunta: What is the Gravity: I2C Ozone Sensor used for?

    Respuesta: The Gravity: I2C Ozone Sensor is designed to measure the concentration of ozone in the air, with an accuracy range of 0-10ppm. This sensor is particularly useful in applications like environmental monitoring, indoor air quality evaluations, and educational projects involving robotics or IoT. The sensor's output via I2C makes it compatible with ESP32 and Raspberry Pi models, allowing for seamless integration into your projects.
  • Pregunta: How does the I2C communication work with this sensor?

    Respuesta: The Gravity: I2C Ozone Sensor utilizes I2C communication, a popular protocol for connecting multiple devices to microcontrollers. With I2C, two wires (SDA and SCL) enable data transfer between the sensor and your ESP32 or Raspberry Pi. This makes it easy to monitor ozone levels without complex wiring. Additionally, the ability to connect multiple sensors on the same bus facilitates more comprehensive environmental monitoring in a single project.
  • Pregunta: What are some common applications for the Gravity ozone sensor?

    Respuesta: Common applications for the Gravity: I2C Ozone Sensor include air quality monitoring in homes, schools, and labs, as well as integration in smart agriculture to measure ozone levels affecting crops. It is also utilized in HVAC systems to enhance air purity and safety. Hobbyists and educators often employ this sensor in projects that teach about air quality and environmental science, making it versatile for various use cases.
  • Pregunta: Is it compatible with both Raspberry Pi and ESP32?

    Respuesta: Yes, the Gravity: I2C Ozone Sensor is fully compatible with both Raspberry Pi and ESP32 platforms. This versatility allows users to choose their preferred development board based on the specific project requirements. Furthermore, the sensor integrates well with existing libraries for both platforms, simplifying the programming process and enabling users to focus on functionality and innovation rather than complex configuration.
  • Pregunta: What is the measurement accuracy of this sensor?

    Respuesta: The Gravity: I2C Ozone Sensor offers measurement accuracy within the range of 0-10ppm, making it a precise tool for detecting low concentrations of ozone. Such accuracy is crucial for applications that involve environmental audits, ensuring that users receive reliable data for analysis. The sensor’s sensitivity allows for early detection of ozone levels, contributing to better health and safety practices.
  • Pregunta: How do I connect the Gravity ozone sensor to my microcontroller?

    Respuesta: Connecting the Gravity: I2C Ozone Sensor to your microcontroller, like Raspberry Pi or ESP32, involves using the I2C interface. Simply connect the sensor's SDA and SCL pins to the corresponding pins on the microcontroller, along with the power (VCC) and ground (GND) connections. Most development boards come with example codes that make setup straightforward, ensuring that you can start monitoring ozone levels quickly.
  • Pregunta: What is the response time of the Gravity ozone sensor?

    Respuesta: The Gravity: I2C Ozone Sensor features a rapid response time, making it capable of providing real-time ozone level readings. Quick response is essential for applications where immediate data is needed, such as monitoring air quality in industrial settings or enhancing safety in environments where ozone exposure may have detrimental effects. This characteristic makes the sensor highly efficient for dynamic monitoring.
  • Pregunta: Can this sensor be used for indoor air quality monitoring?

    Respuesta: Absolutely! The Gravity: I2C Ozone Sensor is ideal for indoor air quality monitoring, as it allows users to track ozone levels in various settings like homes, offices, and schools. By providing real-time data, the sensor helps identify potential air quality issues, enabling users to take appropriate action, whether that's improving ventilation or addressing any sources of ozone generation.
  • Pregunta: Where can I buy the Gravity: I2C Ozone Sensor?

    Respuesta: You can purchase the Gravity: I2C Ozone Sensor for ESP32 and Raspberry Pi at Ubuy in Costa Rica. They offer a wide selection of electronic components and sensors, ensuring you can find what you need for your projects. Ubuy provides a convenient shopping experience, allowing you to explore multiple payment options and user-friendly navigation.
  • Pregunta: Is there any specific code library required for using the sensor?

    Respuesta: Yes, utilizing the Gravity: I2C Ozone Sensor typically requires specific code libraries that facilitate communication between the sensor and your ESP32 or Raspberry Pi. Many online resources, including GitHub repositories, offer libraries like 'Adafruit_Sensor' or vendor-specific libraries that simplify code implementation. These libraries provide functions for reading data directly from the sensor, allowing you to focus more on your project than on coding intricacies.

DFROBOT Indoor Air Quality Meters Editorial Review

The Gravity I2C Ozone Sensor for Arduino ESP32 and Raspberry Pi has received mixed reviews from customers. Some users report that the sensor works fine when used properly and that the average readings over 1 hour or 8 hours are close to what government stations nearby show. However, others have experienced issues with accuracy and Consistency. One customer found that after 48 hours of burn-in time, the sensor still drifted and failed to accurately read ozone levels. Another user set up two sensors following the same instructions, only to obtain extremely inConsistent readings which differed from those obtained from other ozone meter readers and paper test strips. Additionally, a customer reported that the sensor did not connect to an Arduino with I2C and when reaching out to the manufacturer, received no response.

Customer Reviews & Ratings

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ventajas

  • Easy to use
  • Can provide average ozone readings over time

Contras

  • Connectivity problems with Arduino I2C interface

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