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MLX90614 IR Temperature Sensor: Pinout, Datasheet, Circuit [Video]

  • Contents

MLX90614 is a Contactless Infrared (IR) Digital Temperature Sensor that can be used to measure the temperature of a specific object ranging from-70°C to 382.2°C. The sensor uses IR rays to measure the temperature of the object without any physical contact and communicates with the microcontroller using the I2C protocol.

Using Melexis MLX90614 Non-Contact Infrared Thermometer with Arduino


Catalog

MLX90614 General Description

MLX90614 Pinout

MLX90614 Block Diagram

MLX90614 Specifications

MLX90614 Features

MLX90614 Alternatives

Where to Use MLX90614 Temperature Sensor

MLX90614 Working Principle

How to Use MLX90614 Temperature Sensor

MLX90614 Applications

MLX90614 Package

Component Datasheet

FAQ


MLX90614 General Description

The MLX90614 is built from 2 chips developed and manufactured by Melexis:
The Infra Red thermopile detector MLX81101.
The signal conditioning ASSP MLX90302, specially designed to process the output of IR sensor.
The device is available in an industry standard TO-39 package.


Thanks to the low noise amplifier, high resolution 17-bit ADC and powerful DSP unit of MLX90302 high accuracy and resolution of the thermometer is achieved. The calculated object and ambient temperatures are available in RAM of MLX90302 with resolution of 0.01˚C. They are accessible by 2 wire serial SMBus compatible protocol (0.02°C resolution) or via 10-bit PWM (Pulse Width Modulated) output of the device.

 

The MLX90614 is factory calibrated in wide temperature ranges: -40 to 125 ˚C for the ambient temperature and -70 to 382.2 ˚C for the object temperature. The 10-bit PWM is as a standard configured to transmit continuously the measured object temperature for an object temperature range of -20 to 120 ˚C with an output resolution of 0.14 ˚C. The PWM can be easily customized for virtually any range desired by customer by changing the content of 2 EEPROM cells. This has no effect on the factory calibration of the device.


MLX90614 Pinout

MLX90614 Pinout

 

Pin Name Function
VSS Ground. The metal can is also connected to this pin
SCL/Vz Serial clock input for 2 wire communications protocol. 5.7V zeneris available at this pin for connection of external bipolar transistorto MLX90614A to supply the device from external 8 -16V source.
PWM/SDA Digital input / output. In normal mode the measured objecttemperature is available at this pin Pulse Width Modulated.
VDD External supply voltage.

MLX90614 Block Diagram

MLX90614 Block Diagram

MLX90614 Block Diagram


MLX90614 Specifications

  • Operating Voltage: 3.6V to 5V (available in 3V and 5V version)

  • Supply Current: 1.5mA

  • Object Temperature Range: -70° C to 382.2°C

  • Ambient Temperature Range: -40° C to 125°C

  • Accuracy: 0.02°C

  • Field of View: 80°

  • Distance between object and sensor: 2cm-5cm (approx.)


MLX90614 Features

  • Small size, low cost

  • Easy to integrate

  • Factory calibrated in wide temperature range: -40 to 125 ˚C for sensor temperature and -70 to 380 ˚C for object temperature

  • High accuracy of 0.5°C over wide temperature range (0..+50°C for both Ta and To

  • High (medical) accuracy calibration optional

  • Measurement resolution of 0.02°C

  • Single and dual zone versions

  • SMBus compatible digital interface

  • Customizable PWM output for continuous reading

  • Available in 3V and 5V versions

  • Simple adaptation for 8 to 16V applications

  • Power saving mode

  • Different package options for applications and measurements versatility Automotive grade


MLX90614 Alternatives

Alternative for MLX90614: MLX90615, ZTP115, TPIS 1S

Alternate Ambient Temperature Sensors: DHT11, DHT22, PT100, TMP36, DS18B20


Where to Use MLX90614 Temperature Sensor

The key feature of the MLX90614 is that it is a high-precision, contactless IR temperature sensor. It can therefore be used in industries to measure the temperature of moving objects, such as a rotating motor shaft. Due to its high accuracy and precision, it is also used in a wide range of commercial, health and household applications such as room temperature monitoring, body temperature measurement, etc.


MLX90614 Working Principle

As mentioned above, the MLX90614 sensor can measure the temperature of an object without any physical contact with it. This is made possible by a law called the Stefan-Boltzmann Law, which states that all objects and living beings emit IR Energy and that the intensity of that emitted IR energy is directly proportional to the temperature of that object or living being. The MLX90614 sensor therefore calculates the temperature of the object by measuring the amount of IR energy emitted from it.


How to Use MLX90614 Temperature Sensor

The temperature sensor MLX90614 is manufactured by a company called Melexis. The sensor is factory calibrated and therefore acts as a plug and play sensor module to speed up the development process.

 

The MLX90614 consists of two devices integrated as a single sensor, one of which acts as a sensing unit and the other as a processing unit. The sensing unit and the Infrared Thermopile Detector called MLX81101 which senses the temperature and the processing unit is a single conditioning ASSP called MLX90302 which converts the signal from the sensor to the digital value and communicates using the I2C protocol. The MLX90302 has a low-noise amplifier, 17-bit ADC and a powerful DSP that helps the sensor achieve high accuracy and resolution.

mlx90614 functional diagram

The sensor does not require any external components and can be directly interfaced with a microcontroller such as Arduino. As you can see above the power pins (Vdd and Gnd) can be used directly to power the sensor, typically 5V can be used, but there are other versions of this sensor that can operate on 3.3V and 7V as well. The C1 capacitor is optional and is used to filter noise and provide optimum EMC capability. Signal pins (SCL and SDA) for use in I2C communication and can be connected directly to a 5V logic microcontroller.

 

The sensor is also sold as a module, as you can see in the image pinout. But the sensor module is very similar to the sensor itself and has no additional components other than the sensor itself.


MLX90614 Applications

  • High precision non-contact temperature measurements

  • Thermal Comfort sensor for Mobile Air Conditioning control system

  • Temperature sensing element for residential, commercial and industrial building air conditioning

  • Windshield defogging

  • Automotive blind angle detection

  • Industrial temperature control of moving parts

  • Temperature control in printers and copiers

  • Home appliances with temperature control

  • Healthcare

  • Livestock monitoring

  • Movement detection

  • Multiple zone temperature control – up to 100 sensors can be read via common 2 wires

  • Thermal relay/alert

  • Body temperature measurement


MLX90614 Package

MLX90614 Package


Component Datasheet

MLX90614 Datasheet


FAQ

  • What is mlx90614?

The MLX90614 is an infrared thermometer for non-contact temperature measurements. ... As a standard, the 10-bit PWM is configured to continuously transmit the measured temperature in range of -20 to 120°C, with an output resolution of 0.14°C.

  • How do I use mlx90614?
Arduino Wiring.
  1. Connect GND to common power/data ground.
  2. Connect PWR to the power supply, for the 3V sensor this is about 3.3V. For the 5V version, use about 5VDC.
  3. Connect the SDA pin to the I2C data SDA pin on your Arduino. ...
  4. Connect the SCL pin to the I2C clock SCL pin on your Arduino.
  • How do IR temperature sensors work?

These sensors work by focusing the infrared energy emitted by an object onto one or more photodetectors. ... Because the emitted infrared energy of any object is proportional to its temperature, the electrical signal provides an accurate reading of the temperature of the object that it is pointed at.

  • How do I make a contactless temperature sensor?
To make your IR thermometer, you will need:
  1. MLX90614 IR contactless thermometer.
  2. Arduino UNO board.
  3. 2 x Resistors by 4.7 k.
  4. 1 x Capacitor by 0.1 uF(100 nF)
  5. A breadboard and 9 jumpers.

 

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