| name | sensor-calibration-workbench |
| description | Use when makers need calibration workflows for sensors such as CO2 sensors, load cells, magnetometers, color sensors, or analog sensors, including warm-up behavior, reference measurements, coefficient storage, and drift checks. |
Sensor Calibration Workbench
Use this skill when the sensor technically works, but the readings are not yet
trustworthy enough for the project.
Resources
references/calibration-flow.md - end-to-end calibration workflow and evidence checklist
references/common-failure-patterns.md - warm-up, scaling, drift, saturation, and environment mistakes
references/persistence-and-revalidation.md - storing coefficients and deciding when recalibration is needed
When to Use
Use this skill when the request involves:
- volatile or implausible sensor readings
- "how do I calibrate this sensor?"
- load-cell factor tuning
- CO2, magnetometer, or color-sensor calibration
- storing calibration coefficients in EEPROM or flash
- deciding whether the problem is calibration, hardware, or environment
Do not use this skill when the sensor is not detected at all. That should route
through hardware or bus bring-up first.
Workflow
- Confirm the measurement problem:
- unstable -> open
references/common-failure-patterns.md
- offset or scaling error -> open
references/calibration-flow.md
- values good once but bad later -> open
references/persistence-and-revalidation.md
- Identify the calibration class:
- one-point or zero-offset
- two-point scale calibration
- multi-orientation or environmental calibration
- Collect reference evidence before changing coefficients:
- known reference values
- warm-up state
- ambient conditions
- sample stability
- Decide how calibration values will persist and how revalidation will be
triggered after reboot, firmware update, or field drift.
Core Rules
- Calibration without a known reference is guesswork.
- Warm-up and stabilization time are part of calibration, not a side note.
- Do not mix hardware-fault symptoms with coefficient-tuning symptoms.
- Store both the calibration values and enough metadata to know when they became
stale.
Verification
- Confirm readings converge toward a known reference after calibration.
- Confirm the calibrated values stay stable across repeated samples.
- Confirm stored coefficients reload correctly after restart.
- If the project has operating thresholds, verify those thresholds against the
calibrated output rather than the raw sensor value.
Integration
- Pair with
i2c-bringup-diagnostician or circuit-debugger when the sensor is
not yet electrically trustworthy.
- Pair with
arduino-code-generator when the user needs persistence or
filtering code added to the sketch.
- Pair with
field-power-and-connectivity-triager when sensor behavior changes
only off USB or under field power conditions.