HCHO / CH₂O Sensor Selection

Formaldehyde Sensors

Select formaldehyde sensors for indoor air-quality monitors, air purifiers, fresh-air systems, HVAC, smart homes, portable inspection instruments and industrial monitoring. Compare low-range HCHO modules, compact raw electrochemical cells, interference behavior and field-validation requirements.

HCHOFormaldehyde Selection
Indoor air quality
HVAC
Air purifier
Industrial HCHO
Residential IAQtens of ppb → low ppm General Module0–1.6 / 5 ppm Industrial Cell0–10 ppm Key ChecksAlcohol · CO · T/RH · zero drift
Engineering note: A 0–5 ppm full scale does not prove good indoor-air performance. For IAQ, low-end resolution, zero stability, temperature/humidity behavior and interference response matter more than a large maximum range.
Concentration context

Indoor formaldehyde operates far below many industrial sensor full scales

Formaldehyde monitoring spans residential air quality and occupational exposure. The concentration scales are different enough that one sensor architecture should not be assumed to fit both. Health Canada recommends 100 ppb as a 1-hour residential limit and 40 ppb as an 8-hour limit. OSHA's workplace standard uses 0.75 ppm as an 8-hour PEL and 2 ppm as a 15-minute STEL. These are reference values for understanding sensor range; the applicable requirement for a finished product still depends on market and jurisdiction.

40 ppbResidential 8-hour reference

Health Canada formaldehyde indoor-air guideline.

100 ppbResidential 1-hour reference

Shows why low-level IAQ resolution matters.

0.75 ppmOSHA 8-hour PEL

Occupational formaldehyde exposure context.

2 ppmOSHA 15-minute STEL

Short-term workplace exposure context.

Indoor sources

Furniture, pressed wood, coatings and combustion create a changing HCHO background

An IAQ sensor sees the building as much as it sees the gas. EPA identifies pressed-wood products, glues and adhesives, paints and coatings, tobacco smoke and unvented fuel-burning appliances as important indoor sources. New particleboard, MDF, cabinetry and furniture can dominate a room's formaldehyde signal.

Pressed wood

MDF, particleboard, plywood and furniture using formaldehyde-containing resins can off-gas HCHO.

Often a long-duration indoor source.

Coatings & adhesives

Glues, paints, varnishes and some finishes can increase indoor formaldehyde after renovation.

Useful for post-renovation monitoring.

Combustion

Smoking and unvented fuel-burning appliances can contribute formaldehyde.

Can coincide with CO and other combustion gases.

Temperature & humidity

Higher temperature and humidity can increase formaldehyde release from some indoor products.

A room can change even if the sensor is perfectly stable.
This is why temperature/humidity compensation must be interpreted carefully: the environment can change both the sensor response and the actual HCHO concentration.
Quick selection

Choose the formaldehyde sensor around the concentration band and product architecture

Residential IAQ / smart home

Low-range module

Favor low full scale, stable zero and ppb-level usable resolution.

  • Room monitor
  • Smart-home terminal
Air purifier / HVAC

0–5 ppm module

Direct UART / DAC / PWM output can simplify control and display integration.

  • Air purifier
  • Fresh-air ventilation
IAQ + T/RH measurement

Compensated digital module

Useful when the host wants HCHO together with ambient temperature and humidity.

  • Wall monitor
  • Building sensor node
Compact consumer OEM

16 mm raw cell

Small electrochemical elements fit space-sensitive electronics when the OEM owns the AFE.

  • Portable tester
  • Compact IAQ device
Industrial / environmental

0–10 ppm raw cell

Wider range and direct sensor current suit custom instrumentation.

  • Industrial hygiene
  • Environmental detector
Analytical confirmation

Reference sampling method

Use laboratory carbonyl methods when the requirement is formal analytical measurement rather than continuous trend monitoring.

  • DNPH cartridge
  • HPLC analysis
Sensor technology

Electrochemical HCHO sensors convert formaldehyde oxidation into current

Most products on this page use electrochemical sensing. Formaldehyde reaches the working electrode, undergoes oxidation and produces a current related to concentration. Raw cells expose that current directly; modules add the transimpedance stage, compensation, calibration and digital or voltage output.

Raw cell

Current-output sensor requiring external analog electronics.

Maximum design control.

Conditioned module

Signal processing and calibrated concentration output are integrated.

Lower integration workload.

Temperature compensation

Corrects known environmental response of the sensing system.

Important for daily IAQ variation.

Humidity handling

Most products allow broad RH operation but exclude condensation.

Wet surfaces and condensation still require system design.
OEM shortlist

Formaldehyde sensors for low-level IAQ, general OEM and industrial designs

The useful comparison is by job: low-range indoor monitoring, general 0–5 ppm integration, compact raw-cell integration and wider industrial sensing.

OEM needManufacturerModelTypePublished rangeKey pointOfficial source
Low-range residential IAQWinsenZE08B-CH2OElectrochemical module0–1.6 ppm≤0.01 ppm resolution, UART, ≤60 s response, built-in temperature compensation.Official ↗
General IAQ / HVACWinsenZE08K-CH2OElectrochemical module0–5 ppmUART + DAC + PWM, ≤0.01 ppm resolution and published 5-year life in clean air at 18–25°C.Official ↗
IAQ with T/RH dataWinsenZE510-CH2OElectrochemical module0–5 ppmUART plus onboard temperature and humidity measurement/compensation.Official ↗
General formaldehyde moduleWinsenZE07-CH2OElectrochemical module0–5 ppmUART + DAC, 0.01 ppm resolution, 3.7–9 V supply and ≤60 s response.Official ↗
Compact formaldehyde moduleWinsenZE08-CH2OElectrochemical module0–5 ppmUART + DAC in a compact module, ≤0.01 ppm resolution and temperature compensation.Official ↗
Industrial raw sensorWinsenME3-CH2ORaw electrochemical cell0–10 ppm
max 100 ppm
0.1 ppm resolution, ≤90 s T90, 300 mV bias and 2-year anticipated life.Official ↗
Compact residential raw cellWinsenME2-CH2O-16×15Raw electrochemical cell0–5 ppm
max 20 ppm
≤0.02 ppm resolution, ≤60 s T90, 16×15×6.2 mm package and 5-year published life in air at 18–25°C.Official ↗
Compact round raw cellWinsenME2-CH2O-Ф16Raw electrochemical cell0–5 / 10 ppmφ16×7.5 mm package, 0.02 ppm resolution and ≤60 s response.Official ↗
Pre-calibrated low-level moduleDart SensorsWZ-S / WZ-S-KMicro fuel-cell module0.03–2 ppm product positioningPre-calibrated ppm output, smart-home / portable use, Dart states it is not intended for industrial safety/personal monitoring.Official ↗
Ultra-compact raw HCHODart Sensors11 mm Formaldehyde Sensor2-electrode electrochemicalLow-level HCHOPublished lower detection limit 30 ppb; no sensor power supply required, external amplification needed.Official ↗
Digital embedded IAQInnodiskIAGM1Digital HCHO moduleManufacturer-definedI²C-oriented embedded module for indoor air quality, security monitoring and wireless sensor nodes.Official ↗

For low-level IAQ selection, compare usable low-end performance and field stability, not only full-scale range. Confirm current datasheets before production design.

Cross-sensitivity

Alcohol and CO are practical formaldehyde interferents in real buildings

Winsen's current ZE08B, ZE08K, ZE510 and ZE07 product pages all list alcohol and CO among interference gases. That matters because both can appear in normal indoor environments: alcohol from cleaning and disinfection products, and CO from combustion sources.

Alcohol interference

Hand sanitizer, ethanol cleaners, sprays and some household products can create temporary positive responses on electrochemical HCHO channels.

  • Test the finished product with expected alcohol concentrations.
  • Do not label every short spike as a formaldehyde emission event.
  • Consider multi-sensor logic if the product also measures VOCs.

CO / combustion context

Fuel-burning appliances and smoke can produce CO while also contributing formaldehyde and other carbonyls.

  • Check the HCHO sensor's CO response.
  • Use a dedicated CO channel when carbon monoxide matters.
  • Do not use HCHO output as a surrogate for combustion safety.
Dedicated HCHO ≠ generic TVOC. Formaldehyde is a VOC, but TVOC sensors respond to a broad gas mixture. A TVOC reading cannot be converted into formaldehyde concentration unless the sensing system and gas matrix have been specifically validated for that purpose.
Temperature & humidity

Temperature and humidity change both the room and the HCHO sensor system

Indoor formaldehyde can rise as materials off-gas more strongly at higher temperature and humidity. At the same time, electrochemical sensor baseline and sensitivity can change with environmental conditions. A useful IAQ product must distinguish those two effects.

Real concentration change

EPA notes that higher indoor temperature or humidity can increase release of formaldehyde from some products.

  • Summer readings can be higher than winter readings.
  • New furniture or renovation can shift the room baseline for weeks or months.

Sensor environmental response

The electrochemical channel itself can move with temperature and humidity.

  • Use compensation derived from controlled testing.
  • Do not assume one linear correction works across the full operating envelope.

Condensation

Winsen's modules specify non-condensing humidity operation.

  • Prevent water droplets on the gas path.
  • A bathroom-adjacent or cold-wall installation may need special enclosure design.
Sensor vs analytical method

Real-time HCHO sensors and DNPH/HPLC methods answer different questions

Electrochemical sensors provide continuous or near-real-time information. EPA formaldehyde methods use DNPH-coated cartridges to collect carbonyls and HPLC to quantify them. The two approaches should not be presented as interchangeable measurement classes.

Measurement routeOutputStrengthLimitationBest fit
Electrochemical HCHO sensor/moduleContinuous ppm/ppb estimateFast, compact, low power, easy for embedded controlCross-sensitivity, drift and environmental dependence must be managedIAQ display, purifier control, HVAC, portable screening, continuous monitoring
DNPH cartridge + HPLCIntegrated analytical concentrationCompound-specific laboratory analysis of collected carbonyl derivativesNot real time; requires sampling and laboratory workflowReference measurement, validation, formal sampling programs
Good OEM practice: use a reference method or trusted reference instrument during sensor validation, especially when the product makes quantitative low-ppb claims.
Application engineering

Formaldehyde sensor priorities by product type

Air purifier and fresh-air system

The sensor is usually used as a trend/control input rather than a stand-alone occupational instrument.

PriorityWhy it matters
Low-level stabilityThe control algorithm reacts near normal indoor concentration, not only at ppm-level excursions.
Alcohol immunityCleaning products and disinfectants can create false HCHO events.
Temperature compensationSeasonal and appliance-operating temperature changes affect readings.
Direct digital outputUART/DAC/PWM simplifies connection to appliance controllers.

Smart-home / wall IAQ monitor

Users may compare the displayed number with health guidelines, so low-end accuracy and consistency become especially important.

PriorityEngineering recommendation
RangeFavor a lower full scale if the product is primarily a residential HCHO monitor.
T/RHRecord ambient conditions and include them in compensation and user interpretation.
Cross-gas event handlingUse persistence logic or multi-sensor context to avoid overreacting to short alcohol spikes.
Field calibrationPlan factory calibration and reference checks for long-term quantitative products.

Industrial / environmental instrument

Industrial devices may need a wider range, raw current access and explicit calibration control.

RouteFitWatch point
ME3-CH2O0–10 ppm industrial/environmental raw cell300 mV bias, 0.1 ppm resolution and custom AFE required.
ME2-CH2O compact cellsSmall OEM instrumentNeed analog design, calibration and environmental compensation.
Conditioned moduleFast development / digital instrumentLess access to raw electrochemical behavior.
Winsen HCHO families

Eight Winsen formaldehyde products grouped by engineering role

Low-range IAQ

ZE08B-CH2O

0–1.6 ppm module, ≤0.01 ppm resolution, UART, temperature compensation and 2-year published life in air.

General 0–5 ppm IAQ modules

ZE08K / ZE07 / ZE08

All target general HCHO monitoring, but their voltage range, interface options and published life differ. ZE08K adds UART/DAC/PWM and a 5-year clean-air life claim; ZE07 and ZE08 are established 0–5 ppm module routes.

HCHO + T/RH module

ZE510-CH2O

0–5 ppm HCHO module with UART, temperature and humidity output, and onboard T/RH compensation for integrated IAQ systems.

Industrial raw cell

ME3-CH2O

0–10 ppm, max 100 ppm, current output, 300 mV bias, 0.1 ppm resolution and industrial/environmental application positioning.

Compact raw cell

ME2-CH2O-16×15

0–5 ppm, max 20 ppm, ≤0.02 ppm resolution and 16×15×6.2 mm package for residential and compact OEM designs.

Round compact raw cell

ME2-CH2O-Ф16

φ16×7.5 mm package with 0–5 / 10 ppm product configurations and 0.02 ppm published resolution.

Calibration & field validation

Low-level HCHO claims should be validated in the final product, not only on the sensor bench

A module can meet its component specification and still perform poorly in a finished enclosure if airflow, contamination, temperature gradients or interference events are not controlled.

1

Define the use band

Choose residential ppb, general 0–5 ppm or industrial 0–10 ppm before hardware freeze.

2

Characterize zero

Measure unit-to-unit baseline and long-term drift in clean air.

3

Test T/RH

Map sensor and enclosure response across realistic temperature/humidity combinations.

4

Challenge interferents

Test alcohol, CO and other relevant indoor gases in the intended concentration range.

5

Compare reference

Use a trusted reference method/instrument to confirm quantitative performance.

Calibration gas generation for formaldehyde is not trivial. Dart Sensors explicitly notes that suitable formaldehyde span gas requires specialist equipment and recommends permeation or diffusion-tube based systems with post-humidification for production calibration.
Additional manufacturers

Other formaldehyde sensor and module options

Dart Sensors

11 mm two-electrode HCHO elements and WZ pre-calibrated modules with low-ppb positioning for smart-home and portable products.

HCHO products ↗

Innodisk

IAGM1 digital formaldehyde module for embedded indoor-air, security and wireless sensor-network applications.

IAGM1 ↗

Submit an HCHO product

Manufacturers can submit an official product page and current datasheet for inclusion in Gas Nose selection resources.

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FAQ

Formaldehyde sensor questions

What formaldehyde range is best for indoor air-quality monitors?

For room-air monitoring, the useful concentration band is usually much lower than the full scale of a typical industrial gas sensor. A 0–1.6 ppm or 0–2 ppm module can be a better fit than a 0–10 ppm cell when the product is intended to resolve tens of ppb to a few hundred ppb.

Is formaldehyde the same as TVOC?

No. Formaldehyde is one specific volatile organic compound. A generic TVOC sensor responds to a broad mixture and cannot be assumed to report formaldehyde concentration accurately. Use a dedicated HCHO channel when the product needs formaldehyde-specific information.

Why do alcohol and CO matter for HCHO sensors?

Several current formaldehyde modules explicitly list alcohol and CO as interference gases. Alcohol-based cleaners, disinfectants and combustion sources can therefore disturb a formaldehyde reading. The complete product should be tested against the interferents expected in its real environment.

Why do temperature and humidity matter in indoor formaldehyde monitoring?

They affect both the sensor system and the room itself. Higher indoor temperature and humidity can increase formaldehyde off-gassing from some materials, while sensor zero and sensitivity can also shift with the environment. A good IAQ product must separate real concentration change from sensor environmental response.

Can a low-cost HCHO sensor replace laboratory formaldehyde testing?

Not automatically. Real-time electrochemical sensors are useful for trends, control, product indication and some monitoring tasks. Reference air-analysis methods such as DNPH cartridge sampling followed by HPLC are used when formal analytical measurement is required.

What is the difference between ZE08B, ZE08K and ZE510?

ZE08B is the lower-range 0–1.6 ppm module. ZE08K is a 0–5 ppm general-purpose module with UART, DAC and PWM outputs. ZE510 also covers 0–5 ppm but integrates temperature and humidity measurement and compensation, making it useful for IAQ products that need environmental data.

When should I choose a raw HCHO cell instead of a module?

Choose a raw cell when your team wants to design the analog front end, calibration and filtering itself, or when mechanical size is critical. Choose a module when direct UART, DAC or PWM output and shorter integration time are more important.

How should a formaldehyde sensor be validated before production?

Validate the final enclosure at relevant HCHO concentrations, temperature and humidity points, and with likely interferents such as alcohol and CO. Also check zero drift, response/recovery, air-path effects and unit-to-unit consistency before fixing calibration coefficients.

Engineering reference

Final checks before design freeze

  • Define whether the product is residential IAQ, appliance/HVAC, portable screening or occupational/industrial monitoring.
  • For IAQ, evaluate low-end accuracy and zero stability rather than judging only by 0–5 ppm full scale.
  • Test alcohol and CO interference in concentrations realistic for the final environment.
  • Separate real HCHO changes caused by temperature/humidity-driven off-gassing from sensor environmental drift.
  • Do not substitute a generic TVOC channel for dedicated formaldehyde measurement.
  • Choose raw cell only if the OEM can own the analog front end, calibration and compensation.
  • Use a reference method or high-quality reference instrument for quantitative validation.
  • Confirm the current manufacturer manual before production because specifications and life claims can change by revision.

Need a formaldehyde sensor for an OEM project?

Send the target concentration band, IAQ / HVAC / air-purifier / industrial application, required output, power supply, enclosure airflow and expected temperature-humidity range. Manufacturers can also submit HCHO sensor models with an official product page and current datasheet.

Submit HCHO Sensor / Project