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Octopus Temperature Sensor Brick TMP36 Analog for Arduino Micro:bit

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Octopus Temperature Sensor Brick TMP36 Analog for Arduino Micro:bit

Octopus TMP36 Temperature Sensor Brick is a temperature sensor with low voltage and accurate celsius read. It can provide voltage output,which forms a linear relationship with celsius temperature. TMP36 do not need any external calibration. When it is at +25°C, its typical accuracy is ±1°C,while it is within the range from -40°C to +125°C, its typical accuracy is ±2°C.

Features:

Accuracy:±2°C(Typical value in the whole temperature range)

Linear Degree:±0.5°C(Typical)

Enable to drive big capacitive load stably.

Low Working Voltage:+2.7 V to +5.5 V

When power currency lower than 50 μA, it has very small automatic heat effect.

No need to do any external calibration.

Nominated Temperature Measuring Range:-40 °C to +125 °C, working temperature can be up to +150 °C.

Ratio Coefficient:+10 mV/°C

Analog Output

Static Current:lower than 50 μA

Turn Off Current:Maximum 0.5 μA

$1.24

Original: $4.14

-70%
Octopus Temperature Sensor Brick TMP36 Analog for Arduino Micro:bit

$4.14

$1.24

Product Information

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Description

Octopus TMP36 Temperature Sensor Brick is a temperature sensor with low voltage and accurate celsius read. It can provide voltage output,which forms a linear relationship with celsius temperature. TMP36 do not need any external calibration. When it is at +25°C, its typical accuracy is ±1°C,while it is within the range from -40°C to +125°C, its typical accuracy is ±2°C.

Features:

Accuracy:±2°C(Typical value in the whole temperature range)

Linear Degree:±0.5°C(Typical)

Enable to drive big capacitive load stably.

Low Working Voltage:+2.7 V to +5.5 V

When power currency lower than 50 μA, it has very small automatic heat effect.

No need to do any external calibration.

Nominated Temperature Measuring Range:-40 °C to +125 °C, working temperature can be up to +150 °C.

Ratio Coefficient:+10 mV/°C

Analog Output

Static Current:lower than 50 μA

Turn Off Current:Maximum 0.5 μA