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Showing 1–31 of 39 results
01S Vibration Sensor Module vibration Analog Output Sensitivity LM393 Size: 41 * 15 * 12.5mm The main chip: LM393, vibrating probe Operating voltage: DC 3-5V Main features: Has a signal output instructions; With analog and TTL-level signal output signal; Output valid signal is high, the light goes out; Adjustable sensitivity (fine-tuning); Vibration detection range
Angle Sensor Module for Arduino
High-sensitivity angle sensor SW-520D
Comparator output, clean signal, great waveform, strong driving ability, more than 15mA
Distribution positioner sensitivity adjustment
Working voltage: 3.3V~12V
Output form: Digital switching output (0 and 1)
With fixed bolt hole for easy installation
Description: This is RGB and Gesture Sensor, a small breakout board with a built in APDS-9960 sensor that offers ambient light and color measuring, proximity detection, and touchless gesture sensing. This is, in fact, the same sensor that the Samsung Galaxy S5 uses and is probably one of the best gesture sensors on the market for the price.
Dust Sensor, A simple Air Monitor
Overview
Sharp GP2Y1010AU0F onboard, detecting fine particle larger than 0.8μm
in diameter, even like the cigarette smoke
Low power consumption, analog voltage output, the output level is linear
with dust density
Embedded voltage boost circuit to support wide range of power supply
Force Sensitive Resistor
This Force-Sensing Resistor (FSR) has an active area of Ø12.7mm and a thickness of just 0.46mm. Overall length is 30.5mm and the device has a actuating travel of 0.15mm. The FSR is a robust, Polymer Thick Film (PFT) sensor whose material exhibits a resistance change when a force or pressure is applied. The sensitivity and performance of the FSR is optimised for use in human touch control applications such as automotive electronics, medical electronics and industrial PCs.
Simple and easy to integrate
Actuation force as low as 0.2N
Sensitivity range to 20N
Cost effective
Ultra thin
Robust, up to 10 million actuations
When external force is applied to the sensor, the resistive element is deformed against the substrate. Air from the spacer opening is pushed through the air vent in the tail, and the conductive material on the substrate comes into contact with parts of the active area. The more of the active area that touches the conductive element, the lower the resistance. All FSRs exhibit a “switchlike response”, meaning some amount of force is necessary to break the sensor’s resistance at rest (approximately 1 MO), and push it into the measurement range (beginning at approximately 100 KO)
Operationally, an FSR is very similar to a strain gauge, the main difference being that a strain gauge’s backing deforms with the resistive element, while an FSR’s does not. This fact is important to consider when mounting an FSR against a support, as discussed below.
The same applied force will result in a wider output swing in a FSR than a strain gauge. Strain gauges, however, have higher accuracy than an FSR. Depending upon the particular needs of the application, one may choose one or the other. Ultimately, a major consideration in the choice of a sensor is cost; a major advantage of FSRs is their low cost.
MAX6675 K Type Thermocouple Module
SainSmart MAX6675 Module + K Type Thermocouple Thermocouple Sensor Temperature 0~1024℃ for Arduino
Description:
Working voltage: DC5V
Operating Current: 50mA
The temperature measuring range: -200°C – 1300 °C [Test procedure for 0-1023 °C]
The temperature measurement accuracy: ± 1.5 °C
The temperature resolution: 0.25 °C
The output mode: SPI digital signal
With a fixed mounting holes for easy fixed installation.
Storage temperature: -50 ~ 150 °C
The module weight: 4g
Module size: 25mm * 15mm * 13mm
This module is only for reference routines and instructions, please note left after shoot-mail or contact sales technical hair item.
Pulse Sensor for Arduino
The Pulse Sensor Amped is a plug-and-play heart-rate sensor for Arduino. It can be used by students, artists, athletes, makers, and game & mobile developers who want to easily incorporate live heart-rate data into their projects. It essentially combines a simple optical heart rate sensor with amplification and noise cancellation circuitry making it fast and easy to get reliable pulse readings. Also, it sips power with just 4mA current draw at 5V so it’s great for mobile applications.
Simply clip the Pulse Sensor to your earlobe or fingertip and plug it into your 3 or 5 Volt Arduino and you’re ready to read heart rate! The 24″ cable on the Pulse Sensor is terminated with standard male headers so there’s no soldering required. Of course Arduino example code is available as well as a Processing sketch for visualizing heart rate data.
Dimensions: 0.625″ Diameter and 0.125″ Thick
Rain Sensor Module
Rain Sensor Module Humidity Raindrop Weather Detection Module for Arduino
Description:
The item is for Arduino robot kit, raindrops, rain sensor, monitoring can be used for a variety of weather conditions, and converted into the number of the reference signal and the AO output.
The sensor uses the FR-04 high-quality double-sided materials, King Size 5.0 * 4.0CM, and with the surface of the nickel plating treatment, against oxidative, conductivity, superior performance and longevity;
The output in the form: digital switching outputs (0 and 1) and analog AO voltage output,
TTL-level output, TTL output valid signal is low. Driving capability 100MA so, can directly drive relays, buzzer, a small fan, and so on.
Sensitivity can be adjusted via potentiometer
LED lights up when there is no rain output is high, raindrop up, the output ground level, LED light.
Feature:
Distribution bit to adjust sensitivity
A fixed bolt hole for easy installation
Power indicator, the output signal LED indicator
The comparator output, the signal is clean, waveform, driving ability over 15mA
Wide voltage LM393 comparator
A large area of rain board, more conducive to detect rain
Board with positioning holes to facilitate installation
Raindrops and control panels are separate, easy to wire leads
Specification:
Small board PCB size: 3.2cm x 1.4cm
Operating voltage: 3.3V-5V
Voltage: 5V
How to use:
Connected to 5V power supply, the power indicator light, sensor board is not water droplets, DO output is high, the switch lights off, dropping on a drop of water, DO output is low, the indicator light switch,
Brush off the above water droplets, has returned to output high state. . . .
AO analog output can be connected to the microcontroller AD port to detect the size of the drops in the above rainfall.
DO TTL digital outputs can also be connected to the microcontroller detects whether there is rain.
Connection mode:
VCC: positive power supply (3-5V)
GND: negative one.
DO: TTL switching signal output
AO: Analog signal output
Package included:
1x Rain sensing board
1 x Control board
5 x 20cm Dupont Line
Camera Module Features:
8 megapixel camera capable of taking
photographs of 3280 x 2464 pixels
Capture video at 1080p30, 720p60 and
640x480p90 resolutions All software is
supported within the latest version of
Raspbian Operating System