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System composition

Complete list of components. Prices are approximate; everything is available on any marketplace.

Electronics

Component Example Price Purpose
ESP32-C3 board ESP32-C3 Super Mini or similar ~$3 device brain, Wi-Fi
VOC sensor SGP40 (module, I2C) ~$4 air quality index
120mm fan, 12V any case fan, preferably with ball bearing ~$5 air flow through filter
MOSFET switch AO3400/IRLZ44N module or ready-made "MOSFET switch module" ~$1 turning on fan from 3.3V GPIO
12V / 1A power supply any quality one ~$4 fan power
12→5V step-down module mini-360 (buck) ~$1 powering ESP32 from the same PSU

For board selection — Controllers, for power and step-down modules — Electronics Basics.

Filter section

Component Example Purpose
HEPA filter round cartridge from an automotive/household air purifier catches particles
Activated carbon granules in a cassette or carbon mat absorbs VOC and odors
Case 3D printed (design STL for your filter) or any suitable box holds everything together

Layer order

Air flow should be: inlet → HEPA → carbon → fan → outlet. The fan can be installed "as exhaust" after the filters — this prevents dirty air from being drawn in around the case bypassing the filter, but overall this is not critical; we work with air turnover over time, the higher the fan CFM the shorter this time.

Why SGP40

  • I2C, 3.3V power — connects to ESP32 with two signal wires;
  • outputs VOC index 0..500 (100 = "normal air", higher = dirtier), no calibration needed;
  • Adafruit has a ready-made library.

Alternatives:

  • ENS160 — VOC index + eCO2 estimate, also I2C. A good "two-in-one" option;
  • MH-Z19B/C — real NDIR CO2 sensor (ppm), UART, ~$20. Overkill for a filter.

Tools

Soldering iron, flux, solder, multimeter, heat shrink. Details — Tools.