JOY-IT DEBO UART2RS232 - Developer boards - UART-RS232 transceiver, incl. pin header
13.36 EUR
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"The COM-TTL-RS232 transceiver is the ideal solution to enable seamless communication between UART interfaces and RS232 serial ports.
This compact module is designed for reliable and bidirectional data transmission and is ideal for use in industrial, communication and control applications.
Main features
Technical data
Scope of delivery
EAN: 4250236828497
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
"The COM-TTL-RS232 transceiver is the ideal solution to enable seamless communication between UART interfaces and RS232 serial ports.
This compact module is designed for reliable and bidirectional data transmission and is ideal for use in industrial, communication and control applications.
Main features
- Bidirectional signal conversion: Easily converts data signals between UART and RS232, enabling interaction between modern microcontrollers and legacy devices.
- Easy integration: Compact design and included pin header make it easy to use in your projects.
- Reliability through SP3232E chipset: High stability and efficiency for your applications.
- Flexible use: Supports logic levels from 3 V to 5.5 V and supply voltages of 3 V / 5 V.
Technical data
- Chipset: SP3232E
- Supply voltage: 3 V - 5 V
- Logic level: 3 V / 5 V
- Communication direction: Bidirectional
- Dimensions: 43 x 15 x 3 mm
- Weight: Only 3 g
Scope of delivery
- 1x UART - RS232 transceiver module (COM-TTL-RS232)
- 1x pin header (not soldered)
EAN: 4250236828497
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
Comparison of Similar Products
This allows a microcontroller to communicate
Works with both 5 V and 3.3 V. The unit is supplied fully assembled and tested as shown.
4-pin pin header includes 0 V, current and RX, TX
connections. In addition, there is a mini-USB socket that can be used to power the device.
Baud rate: Up to 150 kbps - works at both 5 V and 3.3 V.
- compatible with Arduino (or a compatible board such as Dasduino)
- extremely low power consumption
- integrated battery holder
- alarm function and interrupt pin
- uninterrupted time tracking even in the event of a power failure
The RTC (Real Time Clock) is characterized by its high accuracy, which makes it particularly suitable for applications where long-term time tracking is required. It is compatible with Arduino (or a compatible board such as Dasduino) and can be operated with extremely low power consumption. Thanks to the integrated battery holder, time tracking is maintained even in the event of a power failure. The alarm function and interrupt pin allow a microcontroller to go into sleep mode and only be reactivated when an alarm is triggered by the RTC.
The built-in battery holder (battery not included) ensures that real-time tracking is not affected even in the event of a power failure.
Technical data
- Communication: I2C
- RTC IC: PCF85063A
- Voltage: 0.9 V ... 5,5 V
- easyC/Qwiic compatibility
- Dimensions: 38 x 22 mm
The RTC offers a precise and reliable solution for long-term time tracking in applications that require accurate time recording. It is compatible with common microcontroller boards and ensures efficient and continuous time tracking thanks to its low power consumption and alarm function.
easyC
easyC is a robust connection system that optimizes the connection using JST-SH compatible connectors (JST 4-pin) of microcontrollers, sensors and actuators. It offers solderless connections, serial connections of multiple devices (daisy-chaining), error-free design, parallel connection, universal compatibility and intermediate compatibility with Qwiic (Sparkfun connection system), simplifying prototype development. Further information on easyC can be found under ""Data sheets"".
External links
https://github.com/SolderedElectronics/Soldered-PCF85063A-RTC-Module-Arduino-Library"
It is a full-duplex protocol, which means that it can receive and send data simultaneously. The data is transmitted with voltages from +3V to +15V for a digital ""one"" and from -3V to -15V for a digital ""zero"". This provides a secure environment for data transmission that is resistant to noise or interference. For this reason, RS-232 is often used in industry. This module converts serial communication to RS-232.
Technical data
- Voltage: 3.3 - 5.5 V
- Communication lines: TX, RX
- IC: MAX232
- Dimensions: 38 x 38 mm
This makes it an important tool for applications such as gas leak detection, safety systems and environmental monitoring. By interfacing the MQ7 sensor with suitable electronic circuits and microcontrollers such as Arduino (or a compatible board such as Dasduino), systems can be created that enable real-time monitoring and provide prompt alerts in the event of dangerous CO concentrations. It is necessary that the sensor needs some time to warm up in order to function correctly.
The breakout board works with both digital (DO) and analog (AO) signals. The digital output signal is obtained by setting a threshold value with a potentiometer. The analog output signal depends on the intensity of the gas.
Technical data
- Detects: Carbon monoxide (CO)
- Voltage: 5 V
- digital output: 0 V / 5 V
- analog output: 0 .. 5 V
- LM393 comparator
- Dimensions: 22 x 38 mm
External links
https://github.com/SolderedElectronics/CO-sensor-MQ7-breakout-hardware-design"
- Power supply via DC socket or USB-C connection
- Adjustable output voltages: 3.3 V, 5 V, 12 V
- Separate setting of the voltages via switch
- Integrated operational readiness LED and on/off switch
- Automatic voltage selection when using both power sources
The board can be used with Arduino (or a compatible board such as Dasduino), which increases flexibility in various project applications. The use of dual power supply options allows for versatile use in different environments and conditions, whether in the lab or in a mobile setup. The individually adjustable voltages are particularly useful for powering different types of components on a breadboard without the need for additional voltage regulators. User-friendliness is further enhanced by the clear labeling of the switches and the robust design of the board.
Technical data
- USB-C or DC socket
- Voltage at DC socket: 12 V DC
- Output current: 3V3 @ 500 mA, 5V @ 1 A
- Dimensions: 54 x 30 mm
In conclusion, this power supply is a reliable and customizable solution for electronics projects that require a precise power supply. By combining ease of use and technical flexibility, it offers significant added value for developers working with Arduino (or a compatible board such as Dasduino).
External links
https://github.com/SolderedElectronics/Breadboard-power-supply-board-hardware-design"
- supply voltage: 2.7 - 5.5 V
- Frequency range: 20 Hz - 20 KHz
- automatic gain, selectable
- Dimensions: 26 x 14 mm
This 20x4 character LCD is best suited for your project.
It works with the common HD44780 controller chip and has a green backlight.
It has a 16 pin connector and can be used as a built-in or plug-on display. For this purpose, a corresponding solderable pin header is included in the scope of delivery.
Specifications
• Display size: 20 characters x 4 lines
• supply voltage: 4.7 - 5.3 V
• logic level: 5 V
• LCD controller: HD44780
• backlight: 5V DC LED backlight
• green backlight
• 16-pin pin header
• dimensions (LxWxH): 98,3 x 60 x 14 mm
Scope of delivery
• 20x4 LCD module
• 16 pin male header
Technical details• input voltage up to 20 V / 100 W (via a PD-capable USB-C power supply unit)
• input interface: USB-C
• Output voltage: 5/9/12/15/20 V (adjustable via knob)
• Output current: max. 5 A
• output power: max. 100 W
• Output interface: screw terminal block
• dimensions (LxWxH): 31.5 x 15 x 14 mm
Note• USB-C power supply not included in delivery
Technical details• input voltage up to 20 V / 100 W (via a PD-capable USB-C power supply unit)
• input interface: USB-C
• Output voltage: 5/9/12/15/20 V (adjustable via knob)
• Output current: max. 5 A
• output power: max. 100 W
• Output interface: USB-A
• Dimensions (LxWxH): 31.5 x 15 x 14 mm
Note• USB-C power supply not included in delivery
The adapter is connected directly to a POE-capable router/switch or POE injector with a POE LAN cable (up to 100 meters cable length).
This allows you to use the Raspberry very flexibly and no power outlet and power supply is required.
- Connections: 1x USB-C plug, 1x RJ45 jack, 1 x RJ45 plug
- Input voltage: 36 - 57 V (standard PoE voltage 48 V, 52 V)
- Output voltage: DC 5 V
- Output current: 2 A
- Transmission distance: 10 - 100 m
- PoE Protocol: IEEE802.3af
- Network bandwidth: 10/100 Mbps
- Operating temperature: -50 to +75°C
- Dimensions: 82 x 28 x 23 mm
Scope of delivery
- Plug-in board
- Set of cables for plug-in board
- 50x 330 Ohm resistor
- 45x 10k Ohm resistor
- 10x 2n2222 transistor
- 10x 1n4148 diode
- 5x photoresistor
- 10x pushbutton
- 5x potentiometer 10k Ohm
- 2x 100nF ceramic capacitor
- 5mm RGB LED
- 3x 5mm blue LED
- 3x 5mm red LED
- 3x 5mm yellow LED
- 3x 5mm green LED
Please note
This article contains only components, there are no instructions or similar available!"
Technical details
• Output voltage: 5//15/20 V
• Supply voltage: up to 20 V / 100 W
• Output current: max. 5 A
• Output power: max. 100 W
• Input interface: USB-C
• Output interface: solder pads
• Dimensions (LxWxH): 19 x 10 x 5 mm
Note
• USB-C power supply unit not included in the scope of delivery
• easy to use, requires no knowledge of image recognition
• decodes various common 1D/2D codes like barcode, QR code etc
• integrated micro USB and UART serial port, allows connection to computers or embedded devices
• configurable by scanning the ""configuration code
• onBoard light source, works in the dark
Technical data• Operating voltage: 5 V
• Operating current: 13 5mA (scan), 58 mA (standby), 2 mA (sleep)
• Operating temperature: 0 ... 60°C
• Operating humidity: 5% ~ 95% (non-condensing)
• Communication interface: UART, USB
• decodes 1D codes: Codebar, Code 11, Code 39/Code 93, UPC/EAN, Code 128/EAN128, Interleaved 2 of 5, Matrix 2 of 5, MSI Code, Industrial 2 of 5, GS1 Databar(RSS)
• decodes 2D codes: QR Code, Datamatrix, PDF417
• Light source: white
• Scan angle: 360° rotation, ±65° tilt, ±60° tilt.
• Field of view: 28° (horizontal), 21.5° (vertical)
• Dimensions: 53.3 x 21.4 mm
Scope of delivery:
1x Barcode Scanner Module
1x cable USB-A plug to microUSB plug
1x PH2.0, 4-pin
Documentation and downloads can be found here:
www.waveshare.com/wiki/Barcode_Scanner_Module"
- the driver can control a stepper motor that requires a maximum of 800 mA
- works with a voltage of up to 14 V
- integrated LED lights indicate the active motor phase
- simple connection with a microcontroller
- direct control via the library
The stepper motor driver has been specially developed for applications where precision and ease of use are paramount. The LED lights provide clear feedback on the status of the motor, which is particularly useful for troubleshooting and initialization. Compatibility with Arduino (or a compatible board such as Dasduino) enables a wide range of applications and facilitates integration into existing projects. The library used for control is user-friendly and allows even less experienced users to use the driver effectively.
Technical specifications
- Voltage: 3.3 ... 14 V
- Current: 800 mA
- Dimensions: 36 x 22 mm
In summary, this stepper motor driver offers a reliable and user-friendly solution for controlling stepper motors that do not require more than 800 mA current. The additional features such as LED status indicators and simple microcontroller integration make the driver particularly suitable for educational and hobby projects where flexibility and ease of use are required.
External links
https://github.com/SolderedElectronics/Basic-stepper-driver-hardware-design"
The module has a maximum power point tracking (MPPT) function and multi-protection circuits, so it can still operate highly efficient, stable and safe. It is suitable for solar powered, low power IoT and other environmental protection projects.
• supports MPPT
• supports solar panel / USB port battery charging.
• integrated MPPT SET switch
• two 5 V output interfaces: Pin header and USB connector
• 14500 battery holder and PH2.0 battery connector
• multiple LED indicators to monitor status of solar panel and battery
Technical data• input voltage of the solar module (SOLAR IN): 6 ... 24 V
bulletpoint# microUSB input voltage (USB IN): 5 V
• pin header / USB output (USB OUT): 5 V / 1 A
• charging end voltage: 4.2 V ±1%
• deep discharge protection voltage: 2.9 V ±1%
• solar module charging efficiency:: approx. 78%
• USB charging efficiency: approx. 82%
• 3.7 V battery boost power efficiency: approx. 86%
• max. quiescent current: < 2 mA
• operating temperature: -40 ... +85°C
• dimensions: 65.2 × 56.2 × 22.9 mm
Documentation and downloads can be found here:
www.waveshare.com/wiki/Solar_Power_Manager
The module is controlled exactly like a conventional SD card and is therefore particularly simple. The module can be operated with 3.3 V as well as 5 V thanks to the integrated voltage converter.
Specifications• Operating voltage: 3 ... 5 V
• logic level: VCC
• Interface: SPI
• memory size: 512 MB
• clock frequency: up to 50 MHz
- Interface RS-232 V.24
- FIFO buffer with 265 bytes (receive) and 128 bytes (transmit)
- Data bits: 7 and 8
- Stop bits: 1 and 2
- Parity: none, even, odd, space and mark
- RS-232 signals: TxD, RxD, RTS, CTS, DCD, GND
- Power supply from the USB bus (bus power)
- Extended temperature range: -40°C to 85°C
- Chip set: FTDI
- Sensor for Silicon Labs
- measures relative humidity with ±3 %
- temperature accuracy: ± 0.4°C
- temperature range: -10 to +85°C
- Dimensions: 15.3 x 17.8 x 3 mm
If you want to switch a device with a high current or voltage requirement on and off, whether with direct current or alternating current, you need a relay. A relay is an electronic switch that is activated by a signal we send from an Arduino (or a compatible board like Dasduino). This module further simplifies the whole process as it contains everything you need for the relay and you only need to connect it to the microcontroller and the power supply. You don't even have to worry about voltages and currents, isolation between high and low voltage or grounding as everything is already accounted for on the board.
Technical data
- max. DC voltage and current: 30V, 10A
- max. alternating current voltage and current: 250V, 10A
- Number of relays: 1 relay
- Dimensions: 54 x 22 mm
external links
https://github.com/SolderedElectronics/1-channel-relay-board-hardware-design"
Features
- No background illumination, displays last content for a long time after switch-off
- Ultra-low power consumption, power is basically only needed to refresh
- SPI interface for connecting to other controller boards such as Raspberry/Arduino/Nucleo etc.
- Comes with development resources and manual (examples for Raspberry Pi/Arduino/STM32)
Technical data
- Operating voltage: 3.3 V
- Interface: 3-wire SPI, 4-wire SPI
- Outline dimensions: 48 mm x 33 mm
- Display size: 27.6 mm x 27.6 mm
- Dot pitch: 0.138 x 0.138
- Resolution: 200 x 200
- Display colour: black, white
- Grey level: 2
- Partial update time: 0.3 s
- Full update time: 2 s
- Energy reserve: 26.4 mW (typical)
- Standby power: <0.017 mW
- Viewing angle: >170°
Included in delivery
- Display module
- 20-cm, 8-pin connecting cable XH2.54
Documentation/downloads
http://www.waveshare.com/wiki/1.54inch_e-Paper_Module"
• Solar cell type: 156 monocrystalline cell
• Surface: tempered glass
• Frame material: aluminium alloy with anodic oxidation
• Back panel material: 0.25 mm PET
• Power: 5.0 W ± 5%.
• Operating voltage: 6.0 V ± 5%.
• Operating current: 833 mA ± 5%.
• Open circuit voltage: 7.2 V ± 5%.
• Short circuit current: 916 mA ± 5%.
• Connection: Hollow plug 3.5 x 1.35 mm (+ inside / - outside)
• Dimensions (LxWxH): 230 x 195 x 16.5 mm
By using a high resolution IPS panel with a high pixel density of 125 dpi, content can be displayed in high resolution on the compact display.
Specifications• Display: TFT (IPS) LCD
• 262,144 colours
• Resolution: 128 x 128 Pixel / 125 dpi
• Chip: ILI9163
• Interface: SPI
• Supply voltage: 3.3 V
• Power consumption: 8 - 10 mA
• LL voltage: 3.3 V
• Response time: 25 ms
• Brightness: 178 cd/m²
• Viewing Angle: 180
• Temperature range: -40 °C ... +85°C
• Dimensions (LxWxH): 30 x 43 x 10 mm
Powerful DC/DC converter with adjustable voltage regulator (XL6019). Ideal for simple and universal voltage adjustment.
- Input voltage: 5 ... 35 V
- Output voltage: 5 ... 40 V
- steplessly adjustable
- max. output current: 1.5 A
- max. output power: 20 W
- efficiency: up to 94
- built-in thermal overload shutdown
- built-in soft-start function
- filterless design with ferrite bead and capacitors from the output
- supply voltage: 5 V
- fixed 24 dB gain
- onBoard trimming potentiometer for controlling the input volume
- Protection against thermal overload, short-circuit and overcurrent
- Dimensions: 24 x 15 x 2 mm
- Power off 4.5 - 14 V DC
- 20 mA Quiescent current
- maximum gain up to 29.5 dB
- 20 W stereo output (4 O)
- integrated click and pop noise suppression
- short circuit cut-off and overload protection
Technical data- Resolution: 1024 x 600
- supported devices: Raspberry Pi, Banana Pi, Banana Pro, Windows PCs
- Connections: HDMI, Micro-USB
- Touch Controller: GT811
- Touch Panel Type: Capacitive (5 Multi-Touch)
- Backlight: LED
- Display size: 154.21 x 85.92 (mm)
Special functions- Can also be used as a standalone HDMI display
reference
- suitable housing see accessories
Technical features• Switching regulator LM2596S
• Input voltage: 4 ... 35 V (DC)
• input current: 2 A
• output voltage: 3 ... 34 V (DC)
• output current: 2 A
• output power: max. 15 W
• accuracy: ± 0.1 V (DC)
• adjustment via potentiometer
• control via segment display
• dimensions (LxWxH): 67 x 37 x 15 mm
Technical features• Step-Down converter with 5 V output
• Input voltage: 9 ... 35 V (DC)
• input current: max. 3.5 A
• output voltage: 5 V (DC)
• output current: max. 5 A
• output power: max. 25 W
• connection: 3 pin screw terminal
• dimensions (LxWxH): 31 x 46 x 19 mm
- Uses I2C address 0x44 or 0x45
- mitt relative humidity up to ±2%
- Accuracy: ±0.3°C
- 12.7 x 18 x 2.6 mm
- charging current: max. 1000 mA
- with low-battery detection
- 2 A internal switch
- Dimensions: 22 x 37 x 7 mm
If you want to switch a device with a high current or voltage requirement on and off, whether with direct current or alternating current, you need a relay. A relay is an electronic switch that is activated by a signal we send from an Arduino (or a compatible board like Dasduino). This module further simplifies the whole process as it contains everything you need for the relay and you only need to connect it to the microcontroller and the power supply. You don't even have to worry about voltages and currents, isolation between high and low voltage or grounding as everything is already accounted for on the board.
Technical data
- max. DC voltage and current: 30V, 10A
- max. AC voltage and current: 250V, 10A
- Number of relays: 1 relay
- with easyC support
- Dimensions: 70 x 22 mm
easyC
easyC is a robust connection system that optimizes the connection of microcontrollers, sensors and actuators using JST-SH compatible connectors (JST 4-pin). It offers solderless connections, serial connections of multiple devices (daisy-chaining), error-free design, parallel connection, universal compatibility and intermediate compatibility with Qwiic (Sparkfun connection system), simplifying prototype development. Further information on easyC can be found under ""Data sheets"".
external links
https://github.com/SolderedElectronics/1-channel-relay-board-with-easyC-hardware-design
https://github.com/SolderedElectronics/Soldered-Relay-Arduino-Library"
Features
- No background illumination, displays last content for a long time after switch-off
- Ultra-low power consumption, power is basically only needed to refresh
- 4 buttons on board
- Compatible with Raspberry Pi 2B/3B/Zero/Zero W/WH
- SPI interface for connecting to other controller boards such as Raspberry/Arduino/Nucleo etc.
- Comes with development resources and manual (examples for Raspberry Pi/Arduino/STM32)
Technical data
- Operating voltage: 3.3 V
- Interface: 3-wire SPI, 4-wire SPI
- Dimensions: 85 mm x 56 mm
- Display size: 57.288 mm x 38.192 mm
- Dot pitch: 0.217 x 0.217
- Resolution: 264 x 176
- Display colour: black, white
- Grey level: 2 full
- Update time: 6 s
- Energy reserve: 24 mW (typical)
- Standby power: <0.017 mW
- Viewing angle: >170°
Included in delivery
- Display HAT
- 2 screws
Documentation/downloads
https://www.waveshare.com/wiki/2.7inch_e-Paper_HAT"
- FT232H chip and one EEPROM for onboard configuration
- 20x GPIO
- Dimensions: 38 x 23 x 4 mm
Specification
• 5 VDC operating voltage
• colors: RGB
• dimensions (L x W x H): 48 x 38 x 5 mm
Anschluss- und Codebeispiel finden Sie im hinterlegten Datenblatt.
Helligkeit
• Rot: 600 - 800 mcd
• Blau: 800 - 1000 mcd
• Grün: 1500 - 2000 mcd
Durchlassspannung
• Rot: 1,8 - 2,1 V
• Blau: 3,0 - 3,2 V
• Grün: 3,0 - 3,2 V
Anschluss
• 1: Rot
• 2: Grün
• 3: Blau
• 4: Masse
Hinweis
Dieses Modul benötigt Widerstände zur Strombegrenzung um den LED-Chip zu schützen
Anschluss- und Codebeispiel finden Sie im hinterlegten Datenblatt.
Anschluss
• 1: Rot
• 2: Grün
• 3: Blau
• 4: Masse
The digital and analog outputs are located on the vias, marked DO and AO. The digital output can be obtained by setting a threshold value with a potentiometer. The analog output depends on the intensity of the gases.
Technical data
- Gas detection: carbon monoxide, methane, propane, flammable gases
- Logic voltage: 5 V
- Operating voltage: 5 V
- Operating temperature: -10°C to 50°C (14 to 122 °F)
- Gas detection range: 10-1000 ppm CO, 100-10000 ppm combustible gases
- Preheating time: 48 hours
- Mounting holes: 2
- Dimensions: 22 x 38 mm
Instructions for use
- the sensor requires 48 hours to preheat to the optimum operating temperature. If it detects gas, the LED lights up. If no gases are present, it remains switched off.
- Highly corrosive gases considerably weaken the sensor.
External links
https://github.com/SolderedElectronics/CO--flammable-gasses-sensor-MQ9-breakout-hardware-design"
- the sensor detects hydrogen concentrations from 100 to 1000 ppm
- digital and analog outputs are available via through pins
- a threshold can be set using a potentiometer for the digital output
- the device requires a preheating time of 48 hours for optimal function
- the sensor has a long service life, which means that it rarely needs to be replaced
The MQ8 sensor is equipped with digital (DO) and analog (AO) outputs, which facilitate integration into existing systems. The digital output is activated by setting a threshold value using a potentiometer, while the analog output reflects the measured gas concentration. An LED indication informs about the detection status of the gas. In addition, two mounting holes facilitate the secure attachment of the board. It should be noted that the sensor requires a preheating time of 48 hours to reach its optimum operating temperature. Furthermore, the sensor should not be immersed in water or frozen, as this can lead to damage. Exposure to highly corrosive gases should also be avoided in order not to impair the service life of the sensor.
Technical data
- Operating voltage: 5 V
- Logic voltage level: 5 V
- Operating temperature: -10 ... 50 °C
- Gas detection: Hydrogen
- Gas detection range: 100 ... 1000 ppm
- Preheating time: 48 h
- Mounting holes: 2
- Dimensions: 22 x 38 mm
In summary, the MQ8 sensor offers a reliable solution for early detection of hydrogen leaks. Its compatibility with Arduino (or a similar board such as Dasduino) allows easy integration into existing systems. Its long lifetime and ease of use make it a valuable tool for the industry to ensure safety and efficiency.
External links
https://github.com/SolderedElectronics/Hydrogen-sensor-MQ8-breakout-hardware-design"
- detects hydrogen concentrations in the range from 100 to 1000 ppm
- provides digital and analog signals via easyC
- integrated LED as an indicator for gas detection
- four mounting holes for easy attachment
- three male headers for connection flexibility
The MQ8 breakout board serves as an essential tool for monitoring and safety in areas where hydrogen is used or stored. With its ability to detect hydrogen concentrations in the range of 100 to 1000 ppm, it provides critical early warning of potentially dangerous leaks. The use of the easyC system allows for easy integration into existing safety systems and the digital and analog output offers versatile connectivity options. Visual feedback through an integrated LED and convenient mounting through pre-drilled holes maximize ease of use and efficiency.
Technical data
- Detects: Hydrogen
- Voltage: 3.3 V
- Output: digital
- ATTiny404 microcontroller onboard
- easyC/Qwiic compatibility
- Dimensions: 54 x 22 mm
Conclusion: The use of the MQ8 breakout board for Arduino (or a compatible board such as Dasduino) is an effective measure for the early detection of hydrogen leaks. This technology contributes significantly to the minimization of risks and to safety in industry-related and other relevant areas.
easyC
easyC is a robust connection system that optimizes the connection of microcontrollers, sensors and actuators using JST-SH-compatible connectors (JST 4-pin). It offers solderless connections, serial connections of multiple devices (daisy-chaining), error-free design, parallel connection, universal compatibility and intermediate compatibility with Qwiic (Sparkfun connection system), simplifying prototype development. Further information on easyC can be found under ""Data sheets"".
External links
https://github.com/SolderedElectronics/Soldered-MQ-Gas-Sensor-Arduino-Library/tree/main
https://github.com/SolderedElectronics/Hydrogen-sensor-MQ8-breakout-with-easyC-hardware-design"
