FREI ARD MIC MODUL1 - Arduino - Microphone module, analog
13.15 EUR
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The sound detector is based on a microphone and a power amplifier and can be used to detect the sound level in the environment. The sensor receives the signal through both a digital and an analog output.
The sensitivity can be adjusted with the potentiometer and the LEDs mounted on the PCB indicate the power and the compressor output.
EAN: 0791352940297
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
The sound detector is based on a microphone and a power amplifier and can be used to detect the sound level in the environment. The sensor receives the signal through both a digital and an analog output.
The sensitivity can be adjusted with the potentiometer and the LEDs mounted on the PCB indicate the power and the compressor output.
EAN: 0791352940297
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
Comparison of Similar Products
The sound sensor module is used to detect sounds and is based on the LM386 audio amplifier chip. It amplifies the sound signals detected by the microphone and outputs analog voltage values that can be processed by microcontrollers such as Arduino. The module is ideal for simple noise detection and sound evaluation projects.
- Sensitive microphone input Picks up sound signals from the environment and converts them into electrical signals.
- Integrated LM386 amplifier Amplifies weak input signals for a stable analog output.
- Adjustable sensitivity The noise detection threshold can be adjusted via a potentiometer.
- Compatible with Arduino Direct connection via VCC, GND and A0 possible, easy integration into microcontroller projects.
- Simple wiring Only three wires required, quick commissioning for learning and DIY projects.
Technical data:
- Operating voltage: 5 V DC
- Signal output: analog (OUT)
- Amplifier chip: LM386
- Connection: 3-pin (VCC, GND, OUT)
- Microphone type: Electret condenser microphone
- Compatibility: Arduino, ESP32, Raspberry Pi and others
- Dimensions: approx. 35 × 16 × 8 mm
Areas of application:
- Sound-activated controls
- Light or motor activation for sound events
- Environmental and noise monitoring
- Acoustic detection in learning and electronics projects
- Sound level demonstrations in the education sector
The Sound Sensor Module is a simple, effective solution for sound detection and ideal for beginners in electronics and Arduino projects.
This is a highly sensitive sound detection module with two output signal pins.
D0: When it detects a sound up to a certain threshold, it can output a high or low level.
A0: It can output the output voltage signal of the microphone in real time.
Specification
• power supply: 5 V / 3.3 V
• analog output
• high sensitivity microphone
• power indicator light
• frequency response range: 50 Hz - 20 KHz
• impedance: 2.2 kOhm
• Sensitivity: 48 - 66 dB
• Polar pattern: universal
• Operating temperature: -40 ... +85 C
• Operating humidity: 30 - 90%.
• Hole for mounting screw 3 mm.
• dimensions (L x W x H): 40 x 15 x 10 mm
AO - analog input, real-time output voltage signal of the microphone.
DO - digital output depends on the volume and the set limit.
Specifications
• voltage: 3.3 to 5 VDC
• outputs: 1x analog + 1x digital
• mounting: 1 mounting hole (3 mm)
• 2 LEDs: 1x power supply LED + 1x comparator output LED
• frequency range: 50 Hz ... 20 KHz
• Impedance: 2.2 KOhm
• Sensitivity: 48 - 66 dB
• Operating temperature: -40 ... +85 °C
• Dimensions (L x W x H): 44 x 15 x 10 mm
By simply plugging in the module, you can flexibly and quickly expand your system's capabilities and seamlessly manage the new I/Os from the Opta base unit, taking advantage of the open and well-known Arduino ecosystem or the PLC IDE IEC 61131-3 programming environment.
The integrated oscillator generates a square wave signal which is proportional to the intensity of the selected color.
Application examples are the reading of test strips, sorting by colors or recognition and calibration.
Technical features
- 2,7 .. 5,5 V supply voltage
- programmable colour selection
- dimensions: 28,4 x 28,4 mm
Technical data
Operating voltage: 3 ... 5 V DC
Output voltage: 0 ... 1 V DC
Operating current < 0.1 mA
Accuracy: 1 UV index
- Detects magnetic fields based on the Hall effect
- measures magnetic fields generated by different sources
- the strength of the magnetic field influences the output voltage
- has an analog output for measurement data transmission
- compatible with Arduino (or a compatible board such as Dasduino)
The Hall effect sensor makes it possible to detect the presence and strength of magnetic fields. This sensor converts the magnetic field strength directly into an electrical signal. The Hall effect sensor can be used for a wide range of applications, from position determination and speed measurement to current measurement. By using the Hall effect, the sensor can detect magnetic fields generated by permanent magnets or electric currents. As the sensor has an analog output, the measured field strength can be determined precisely. The integration of the sensor into electronic projects, especially those realized with an Arduino (or a compatible board such as Dasduino), is characterized by its ease of use and versatility.
Technical data
- Logic voltage level: 0 .. 5 V
- Operating voltage: 2.25 ... 5 V
- Sensor: SI7211-B-00-IV
- Output: analog
- Mounting holes: 2
- Dimensions: 22 x 22 mm
In summary, the Hall effect sensor enables effective detection and measurement of magnetic fields with high accuracy. Its compatibility with Arduino-based projects makes it a valuable tool for developers and engineers who need precise measurements of magnetic fields in their applications.
External links
https://github.com/SolderedElectronics/Soldered-Hall-Effect-Sensor-Arduino-Library
https://github.com/SolderedElectronics/Hall-effect-sensor-breakout-with-analog-output-hardware-design
Quickly deploy sensor nodes to send collected data to the built-in Arduino cloud (or third-party services) using built-in WiFi/Bluetooth Low Energy connectivity.
• powerful microcontroller with 2 MP color camera.
• AI and ML with low power consumption.
• WiFi and Bluetooth Low Energy connectivity.
• with built-in microphone, distance sensor and a 6-axis intelligent motion sensor
• supports MicroPython
• extend your existing project with sensor functions
• standalone on battery power
• compatible with Arduino Nicla, MKR and Portenta products
technical data
• STM32H747AII6 Dual ARM CortexR M7/M4 IC
- 1x ARM CortexR M7 core up to 480 MHz
- 1x ARM CortexR M4 core up to 240 MHz
• Memory: 2 MB Flash, 1 MB RAM, 16 MB QSPI
• Wi-Fi / Bluetooth Low Energy 4.2
• Sensors
- 2 MP color camera
- 6-axis sensor IMU (LSM6DSOX)
- Distance/Flight Time Sensor (VL53L1CBV0FY/1)
- Microphone (MP34DT05)
• ADC, I2C, JTAG, Power / GPIO Pins, Serial Port
• Security: NXP SE050C2 Crypto Chip
• Power supply
- via USB
- via solder contacts
- with 3,7 V Li-Po battery
• dimensions (LxW): 23 x 23 mm
Application examples
• industrial automation by seeing, hearing and feeling
• automated inventory management system through QR codes/barcodes recognition
• automated quality control through machine learning (ML)
• predictive multi-sensor maintenance (noise detection e.g. defective ball bearings in conveyor belt)
- Joystick
- Relay
- Microphone
- 8 LED PCB
- Voltage regulator linear
- Flame
- Hall TTL
- Touch
- Temp I2C
- Buzzer
- Piezo Speaker 16R
- RGB-LED
- IR-optical detection
- Two color LED 5/3mm ''RED/GREEN
- Gas MQ-2
- Vibration
- Reed contact
- Heartbeat
- Flash LED
- Light barrier
- Button
- Shock
- Rotary encoder
- 5V Step-engine with driver PCB
- Tilt
- Photoresistor
- Temperature and humidity
- Potentiometer / analog hall
- 1W LED module WW
- Temperature 1Wire
- NTC treshold TTL / NTC 10k
- IR receiver 38KHz
- IR LED
- Motion detection PIR
Technical data
- Operating voltage: 5 V
- 3-pin output (signal, plus, ground)
- Dimensions: 25 x 15 mm
An analog real-time voltage signal is output via the signal pin.
Specifications
-
• 32 x 16 high brightness blue LEDs (512 LEDs in total) in 10mm pitch.
• operating voltage: 5 V
• visible from more than 12 m distance
• robust plastic frame
• controller IC's on board, simple clocked data interface
• Arduino-compatible library, graphics functions and sample support
• dimensions (L x W x H): 320 x 160 x 14 mm (including rear connectors)
Merkmale
• Anschluss über 4-polige Stiftleiste
• Betriebsspannung 3,3 - 5 V DC
Anschluss
• 1- Signalausgang
• 2- Eiingang für LED
• 3- Spannungs+
• 4- Masse
Zum Anschluss werden drei Pins und eine 5 V Betriebsspannung benötigt.
• Betriebsspannung: 5 V DC
• Maße: 25 x 12 mm
Technische Daten der Diode
5 mm Infrarotdiode
940 nm Wellenlänge
19 m Leuchtreichweite
- Receives signals from GPS, GLONASS and Galileo.
- integrated EASY and AlwaysLocate for fast and accurate positioning.
- advanced internal logger LOCUS for storing routes and location data.
- Option to use with CR1220 battery for backup timing and GPS data.
- IPX connector for external antenna connection if required.
The L86-M33 GNSS receiver is characterized by its versatility as it receives signals from GPS, GLONASS and Galileo constellations. Thanks to the integration of EASY and AlwaysLocate, it offers fast and precise positioning, even in difficult environments. The internal LOCUS logger allows users to efficiently store routes and location data.
In addition, the module's breakout board provides a connection for a CR1220 battery, which acts as a backup for timing and GPS data. This ensures the continuity of operating data even in the event of a power failure or interruption. The ability to connect the module to an external antenna provides additional flexibility to achieve optimum performance even in weak signal environments.
Technical specifications
- GNSS: GPS + GLONASS
- Ceramic antenna on the circuit board
- Possibility of connecting the external antenna via the IPX connector
- Integrated circuit: L86-M33
- voltage: 3.3 V
- maximum update speed: 10 Hz
- Dimensions: 54 mm x 38 mm
External links
https://github.com/SolderedElectronics/GNSS-GPS-L86-M33-breakout-hardware-design
https://github.com/SolderedElectronics/Soldered-GNSS-L86-M33-Arduino-Library
The main advantage of RTCs is that they have battery backup, which keeps the clock/calendar running even in the event of a power failure. An exceptionally small amount of power is required to keep the RTC running.
Technical features
- DS1307 RTC
- I²C interface
- for LIR2032 (not included)
- less than 500 nA in backup mode
Content
• rotation potentiometer module
• Button Module
• flux LED module
• SMD RGB light module
• analog temperature sensor
• Straw Hat LED Light Module
• Sound sensor
• Infrared receiver module
• ball switch module
• vibration switch modu
• knock module
• light sensor
• mercury switch module
• infrared transmitter module
• temperature sensor LM35
• 18B20 temperature sensor
• Collision switch module
• Pluggable unit RGB LED light
• Active buzzer module
• Encoder module
• grayscale sensor
• passive buzzer module
• relay module
• obstacle avoidance module 4 x 3-pole cable (21 cm) 10 x 20 mm dupont cable (20 cm)
The change in resistance caused by a change in weight is output by a converter circuit via TTL 232. An A/D converter with 24-bit accuracy is used for processing, the update interval is 80 Hz (every 0.0125 seconds).
Technical data
• Operating voltage: 5 V DC
• Operating current: < 10 mA
• Dimensions: 38 x 21 x 10 mm
• refresh rate: 80 Hz
Features
• 320 x 480 resolution
• 8-bit parallel interface
• SPI interface for SD slot
• LCD controller: ILI9486 / R61581
• without touch function
• display with LED backlight
• compatible with: Arduino Uno, Arduino Leonardo, Arduino Mega
external links
lcdwiki.com/3.5inch_Arduino_Display-UNO
optional driver: https://github.com/prenticedavid
Note: Driver may vary - ILI9486 / R61581
The Uno Proto Shield offers you the possibility to convert Arduino projects from breadboard to a real circuit and to use your specially developed circuits with an Arduino.
- Size: M3.0 Metric
- Wrench size: 5mm
- Material: brass, stainless steel
- ideally suited to connect expansion boards to Arduino
Content:
- 10x M3.0 spacer 6mm Female - Female
- 10x M3.0 Spacer 10mm Female - Female
- 10x M3.0 Spacer 12mm Female - Female
- 10x M3.0 Spacer 15mm Female - Female
- 10x M3.0 spacer 6mm+6mm male-female
- 10x M3.0 spacer 10mm+6mm male-female
- 10x M3.0 spacer 15mm+6mm male-female
- 10x M3.0 spacer 20mm+6mm male-female
- 20x M3.0 screw 8mm
- 20x M3.0 nut
Note: Not suitable for Raspberry Pi products!
Extended 14 digital IO ports (12 servo interface) and power supply
• 6 analog IO ports and power supply
• 1 digital port for external power supply
• automatic switching between digital port and integrated external power supply
• 1 input terminal for external power supply + input pins
• RS485 interface
• reset button
• interface for xbee/Bluetooth Bee Bluetooth wireless modules
• APC220 / Bluetooth V3 interfaces for Bluetooth wireless data transmission
• IIC / I2C / TWI interfaces
• 3.3 V output connector
• interface for SD card module
Specifications
• can be placed in the middle of a small breadplate as a paractic experimental extension
• convenient to use, reliable and durable
Specifications
• Control of two DC motors simultaneously with a voltage of 4.8 ... 24 V and up to 2 A
• Schottky diodes for protection against motor back voltage
• control of a servo motor with a special voltage regulator
• signal buzzer
• Bluetooth connection
• 6 digital and analog pins with 5V and GND pins for easy connection
• separate pins for connection to ultrasonic sensors
The Shield uses a Cinterion TX62 radio module designed for high-efficiency, low-power IoT applications and optimized bandwidth and performance.
The Shield enables the development of asset tracking and remote monitoring applications (agriculture, smart cities, utilities) combined with the powerful computing power of Portenta H7. This is a Works with Arduino product, developed by Arduino and Thales.
• add NB-IoT, CAT.M1 and positioning to Portenta.
• change connectivity capabilities without changing the board.
• reduce communication bandwidth requirements in IoT applications
• low power module
• implement a small multiprotocol gateway (H7 WiFi - BT + NB-IoT/CAT.M1)
• compatible with MKR boards and Portenta H7
Technical data
• Cinterion TX62 radio module (see data sheet)
• NB-IoT - LTE CAT.M1
• 3GPP Rel.14 compliant protocol LTE Cat. M1/NB1/NB2
• UMTS BANDS: 1 - 5 / 8 / 12 (17) / 13 / 18 - 20 / 25 - 28 / 66 / 71 / 85
• LTE Cat.M1 DL: max. 300 kbps, UL: max. 1.1 Mbps
• LTE Cat.NB1 DL: max. 27 kbps, UL: max. 63 kbit/s
• LTE Cat.NB2 DL: max. 124 kbps, UL: max. 158 kbps
• point-to-point mobile terminated (MT) and mobile originated (MO) text mode
• Protocol Data Unit (PDU) mode
• GNSS capability (GPS/BeiDou/Galileo/GLONASS)
• Embedded IPv4 and IPv6 TCP/IP stack access
• Internet services: TCP server/client, UDP client, DNS, Ping, HTTP client, FTP client, MQTT client Secure connection with TLS/DTLS Secure Boot
Possible application areas
• Remote monitoring
• industry and agriculture
• public utilities
• asset tracking
• daily life
• fleet management of industrial vehicles
The Arduino Sensor Kit is perfect for Makers or those who want to be. For this, the kit contains the 10 most popular sensors and actuators from the Grove ecosystem. Start right away: The modules are already connected via the boards, no soldering is necessary!
The kit consists of a base shield which is used to connect the modules analog, digital or via the I²C interface. The connection and programming of the modules is explained step by step in 12 tutorials. The use with an Arduino Uno is recommended.
Scope of delivery and projects
• OLED Screen - for direct display of measurement results
• LED - switch on/off or dim
• Button - push button
• Potentiometer - adjustable resistor
• Buzzer - buzzer to generate binary tones
• Light Sensor - photo resistor for light intensity detection
• Sound Sensor - small microphone
• Air Pressure Sensor - measures the air pressure
• Temperature Sensor - measures humidity and temperature
• Accelerometer - accelerometer, which is also used for orientation
• 6x Grove cable
Further Information
https://sensorkit.arduino.cc
Languages
• English
• Spanish
• Chinese
Note
Delivery without Arduino Uno
Spezifikationen
• 32 x 16 weiße LEDs mit hoher Helligkeit (insgesamt 512 LEDs) im 10 mm Raster
• Betriebsspannung: 5 V
• sichtbar aus über 12 m Entfernung
• robuster Kunststoffrahmen
• Controller IC's auf der Platine, einfache getaktete Datenschnittstelle
• Arduino-kompatible Bibliothek, Grafikfunktionen und Beispielunterstützung
• Maße (L x B x H): 320 x 160 x 14 mm (einschließlich rückseitiger Anschlüsse)
Thanks to the u-blox NINA-W102 radio module, the RP2040 CONNECT is the only networked board in this series, and in addition, the built-in microphone is used to activate and control the board, as well as voice recognition via AI. Furthermore, an intelligent, six-axis IMU with AI features ensures that the board detects movements such as falling down, tapping twice, etc.
Arduino Cloud
Program and operate your NANO RP2040 CONNECT directly from your browser. Fully compatible, from day one.
Upload and operate your sketches wirelessly with the smartphone app ''Arduino IoT Remote''.
Technical features
• WLAN: 802.11b/g/n
• Bluetooth Low Energy v4.2
• supports Arduino IDE 2.0
• compatible with Raspberry Pi RP2040 software
• full support for MicroPython
Notice:
• this board comes with integrated headers.
• incl. free OpenMV license for machine vision
Designed for industrial and smart agriculture applications, the Arduino Edge Control Enclosure Kit is the perfect companion for the Arduino Edge Control.
It provides the module with a rugged enclosure that protects it from the elements, dust, and accidental shocks. It is IP40 certified and compatible with DIN rails, allowing it to fit securely and easily into any standard rack or cabinet.
In addition, the kit features a two-line, 16-digit LC display with white backlighting and a programmable push button so it can be customized by the user to instantly visualize sensor data such as weather conditions and soil parameters. With each push of the button, various data can be displayed on the spot and in real time, without the need for connectivity.
Specifications
• rugged and compact protective housing for outdoor/industrial use
• easy installation and organization in racks or cabinets
• IP40 certified protection
• LC display for instant on-site review of sensor data
• customizable push button to display different data alternately
• monitor data even when connection is unavailable or unreliable
Note: The Arduino Edge Control is not included in the kit!
The Maker UNO RP2040 is a versatile microcontroller board based on the RP2040 chip. It combines the performance of the RP2040 with user-friendly functions specially developed for learning purposes and rapid prototyping.
- Integrated buzzer: enables acoustic signals and simple sound outputs
- LEDs on each digital pin: facilitates debugging and understanding of pin states
- Arduino compatible: supports programming via the Arduino IDE for a familiar development environment
- MicroPython support: enables scripting in MicroPython for flexible development options
- Robust power supply: equipped with a Vin pin that supports up to 12 V input voltage
Technical specifications:
Microcontroller: RP2040 Dual-Core Arm Cortex-M0+
Clock frequency: up to 133 MHz
RAM: 264 KB SRAM
Memory: external flash memory (size varies depending on model)
Interfaces: GPIOs, SPI, I2C, UART, PWM, ADC
Power supply: via USB or Vin-Pin (up to 12 V)
The Maker UNO RP2040 is ideal for educational purposes as it facilitates learning and debugging thanks to its additional functions such as the integrated buzzer and the status LEDs on each pin. At the same time, it offers sufficient power and flexibility for demanding projects and prototype developments.
Technical data
- Chip set: ENC28J60-I/SO
- Integrated 25 MHz quartz
- Interface: HR911105A
- 3.3-V supply to the board
Technical features
• chipset CH375B
• 5 V power supply
• 2x8 pin header
• USB-A socket
• status light
• integrated 122 MHz oscillator
Thanks to the u-blox NINA-W102 radio module, the RP2040 CONNECT is the only networked board in this series, and in addition, the built-in microphone is used to activate and control the board, as well as voice recognition via AI. Furthermore, an intelligent, six-axis IMU with AI features ensures that the board detects movements such as falling down, tapping twice, etc.
Arduino Cloud
Program and operate your NANO RP2040 CONNECT directly from your browser. Fully compatible, from day one.
Upload and operate your sketches wirelessly with the smartphone app ''Arduino IoT Remote''.
Technical features
• WLAN: 802.11b/g/n
• Bluetooth Low Energy v4.2
• supports Arduino IDE 2.0
• compatible with Raspberry Pi RP2040 software
• full support for MicroPython
Notice:
• this board comes without integrated headers.
• incl. free OpenMV license for machine vision
Description
This module is equipped with a ceramic vibration sensor which outputs an analog signal when vibration occurs. The sensor can measure vibrations of different strengths. Vibrations acting on the sensor generate a voltage signal depending on the strength of the vibration due to the piezoelectric effect. This allows you to monitor vibrations in your plant, for example.
Specifications
• piezoelectric ceramic chip
• analog interface
• -10 ... +70°C
• dimensions (LxWxH): 36 x 20 x 14 mm
Technical data
Operating voltage: 3.3 - 5 V
Operating current: 20 mA @ 5 V
Dimensions: 28 x 10 mm
Specifications
• TCS3200 chip
• Input voltage: 3.3/5 V
• 4 outputs with frequency-dependent signals (red, green, blue and clear)
• Includes 4 white LEDs for illumination of the measurement
• Dimensions (Ø x W): 37 x 19 mm
