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IR receiver sensor

SKU TPX00156 Barcode 7630049204218 Show more
Original price €0
Original price €2,76 - Original price €2,76
Original price
Current price €2,76
€2,76 - €2,76
Current price €2,76
VAT included

Very sensitive IR sensor with preamplifier, demodulator, and filter calibrated to the frequency of 38 kHz - 600 µs, with built-in amplifier/squarer.

Overview

It has only three terminals and operates on 5 V power supply.
Vdd= + 5 Vdc, GND= ground, OUT= TTL signal output


Tech specs

  • Output: active at low level (0.2 V)
  • Power supply: 4.5 V ~ 5.5 V
  • Power consumption: 0.6 mA
  • Wavelength: 940 nm
  • BPF center frequency: 38 kHz
  • Operating temperature: -10°C ~ +60°C
  • Signal range: max. 10 m
  • Dimensions: 7.3 x 7.6 x 5.2 mm
  • Weight: 0.68 g

Get Inspired

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Interfacing Grove Speech Recognizer with Arduino
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A quick tutorial on how to interface the voice recognition module with few examples.

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BLOG
This glove translates sign language using an array of sensors
This glove translates sign language using an array of sensors
January 14, 2023

For people not familiar with American Sign Language (ASL), being able to recognize what certain hand motions and positions mean is a nearly impossible task. To make this process easier, Hackster.io user ayooluwa98 came up with the idea to integrate various motion, resistive, and touch sensors into a single glove that could convert these signals into understandable text and speech. The system is based around a single Arduino Nano board, which is responsible for taking in sensor data and outputting the phrase that best matches the inputs. The orientation of the hand is ascertained by reading values from the X, Y, and Z axes of a single accelerometer and applying a small change based upon prior calibration. Meanwhile, resistive flex sensors spanning the length of each finger produce a different voltage level according to the bend’s extent. At each iteration of the program’s main loop, a series of Boolean statements are evaluated to pick the phrase that best matches the current finger bends and hand orientation, and this data is then outputted via the UART pins to an attached Bluetooth® HC-05 module. The final component is a connected phone running a custom app that takes the incoming words from Bluetooth® and saves them for text-to-speech output when the button is pressed. To see more about this project, you can read ayooluwa98’s write-up here on Hackster.io.

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