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LU90614 TTL Infrared Temperature Sensor for Non-Contact Measurement - With Converter
LU90614 TTL Infrared Temperature Sensor for Non-Contact Measurement - With Converter
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Rs. 799.00
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Rs. 799.00
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The LU90614 TTL Infrared Temperature Sensor for Non-Contact Measurement - With converter is a versatile and accurate solution for non-invasive temperature measurement. Compatible with popular platforms such as Arduino, ESP32, Raspberry Pi and PIC, this sensor offers reliable measurements without the need for physical contact.Featuring two operating modes, one for reading the temperature of objects and another for reading body temperature, with a measurement range of -40°C to 382.2°C and a small margin of error of ±0.5°C, it is versatile for numerous applications.This sensor has a resolution of 0.02°C, and the LU90614 can operate at 3.3V, making it energy efficient. Its compact design and serial communication facilitate integration into various projects.Whether for measuring the temperature of objects or for body temperature measurement applications, the LU90614 Infrared Temperature Sensor is a reliable and practical choice.For added convenience, it features a CH340 USB converter , facilitating serial communication with a computer and allowing for quick testing and debugging.![Contactlesos Temperature Sensor Module, GY-906 LU90614 - [1032414] Contactlesos Temperature Sensor Module, GY-906 LU90614 - [1032414]](https://www.usinainfo.com.br/1032414-desc-longa/sensor-de-temperatura-infravermelho-lu90614-para-medicao-sem-contato.jpg)
Module Pin ConnectionsIts commands sent via serial are in hexadecimal format, allowing integration with any microcontroller.Body Language Reading:
0xFA 0xC5 0xBF 0xFA 0xCA 0xC4Reading Objects:
0xFA 0xC6 0xC0 0xFA 0xCA 0xC4According to your manual, we can easily convert hexadecimal data to decimal, as in the example below
: Received: 0xFE 0xAA 0x28 0x1E 0x00 0x00 0x00 0x00 0xEELet's break this down according to the structure:
- Packet Header: 0xFE
- Instruction: 0xAA
- DataH: 0x28
- DataL: 0x1E
- Reserved Bits: 0x00 0x00 0x00 0x00
- End of Packet: 0xEEThe relevant values for temperature are DataH and DataL. You can combine them into a single value to obtain the temperature in degrees Celsius. The temperature is represented as an integer part (DataH) and a fractional part (DataL).
DataH = 0 x 28 = 40 (in decimal) DataL = 0 x 1E = 30 (in decimal)Now, to get the complete temperature, you can calculate: Temperature = DateH + (DateL / 100)
In this case:
Temperature = 40 + (30 / 100) = 40.30 degrees CelsiusTherefore, based on the received hexadecimal sequence, the temperature is approximately 40.30°C.![Example of connecting the LU90614 Infrared Temperature Sensor to an Arduino - [1034570] Example of connecting the LU90614 Infrared Temperature Sensor to an Arduino - [1034570]](https://www.usinainfo.com.br/1034570-infografico/sensor-de-temperatura-infravermelho-lu90614-para-medicao-sem-contato.jpg)
Example of connecting the LU90614 Infrared Temperature Sensor to an Arduino.
![Contactlesos Temperature Sensor Module, GY-906 LU90614 - [1032414] Contactlesos Temperature Sensor Module, GY-906 LU90614 - [1032414]](https://www.usinainfo.com.br/1032414-desc-longa/sensor-de-temperatura-infravermelho-lu90614-para-medicao-sem-contato.jpg)
Module Pin ConnectionsIts commands sent via serial are in hexadecimal format, allowing integration with any microcontroller.Body Language Reading:
0xFA 0xC5 0xBF 0xFA 0xCA 0xC4Reading Objects:
0xFA 0xC6 0xC0 0xFA 0xCA 0xC4According to your manual, we can easily convert hexadecimal data to decimal, as in the example below
: Received: 0xFE 0xAA 0x28 0x1E 0x00 0x00 0x00 0x00 0xEELet's break this down according to the structure:
- Packet Header: 0xFE
- Instruction: 0xAA
- DataH: 0x28
- DataL: 0x1E
- Reserved Bits: 0x00 0x00 0x00 0x00
- End of Packet: 0xEEThe relevant values for temperature are DataH and DataL. You can combine them into a single value to obtain the temperature in degrees Celsius. The temperature is represented as an integer part (DataH) and a fractional part (DataL).
DataH = 0 x 28 = 40 (in decimal) DataL = 0 x 1E = 30 (in decimal)Now, to get the complete temperature, you can calculate: Temperature = DateH + (DateL / 100)
In this case:
Temperature = 40 + (30 / 100) = 40.30 degrees CelsiusTherefore, based on the received hexadecimal sequence, the temperature is approximately 40.30°C.
![Example of connecting the LU90614 Infrared Temperature Sensor to an Arduino - [1034570] Example of connecting the LU90614 Infrared Temperature Sensor to an Arduino - [1034570]](https://www.usinainfo.com.br/1034570-infografico/sensor-de-temperatura-infravermelho-lu90614-para-medicao-sem-contato.jpg)
Example of connecting the LU90614 Infrared Temperature Sensor to an Arduino.
CHARACTERISTICS:
- LU90614 Infrared Temperature Sensor
- Includes CH340 USB converter
- Non-contact measurements
- Compatible with Arduino, ESP32, Raspberry Pi, PIC, among others
- Wide temperature range
- Factory calibrated
- Higher resolution and precision
- Energy saving mode
- Temperature detection in objects
- Body temperature measurement
SPECIFICATIONS:
- Model: LU90614
- Operating voltage: 3.3V / 5V (Not recommended)
- Temperature range: -40°C ~ 382.2°C
- Communication: Serial TTL
- Serial configuration: Baud rate - 9600 bps / Data bits - 8 / Parity - NONE / Stop bit-1
- Error margin: ±0.5°C;
- Resolution: 0.02°C;
- Dimensions (LxWxH): 31.6 x 15 x 20mm;
- Probe diameter: 7.9 mm;
- Weight: 10g.
Shipping & Returns
Shipping & Returns
- Shipping Time:- Our orders are shipped within 24 Hours.
- Delivery Time:- 2-5 Days (Anywhere in India), 7-10 Days for remote location
- Shipping Partner:- Bluedart, Delhivery, Xpressbees, & India Post.
- Replacement:- Damaged During Transit, Missing Parts Or Item Mismatch.
- Return:- Item mismatch or parts missing etc.
- No return/Replacement will apply if the Product has been subject to misuse, static discharge, neglect, accident, modification, or has been soldered or altered in any way.
- We accept no responsibility for improper installation of our products. Electrical polarity must be properly observed in hooking up electrical components.

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