SOLDERED DEBO RTC - Developer boards - Real-time clock - RTC, PCF85063A
16.31 EUR
Examine the detailed sheet with complete information, compare prices and find the features of PRODUCTNAME, on sale at the price of PRICE CURRENCY; it falls into the CATEGORY NAME; the product is sold by SELLER NAME and manufactured by MANUFACTURER NAME.
"The RTC (Real Time Clock) is a device that tracks time and date accurately and precisely. Due to its high precision, it is better suited for long-term time tracking than the clocks on microcontrollers.
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
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"
EAN: 0732388671908
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
"The RTC (Real Time Clock) is a device that tracks time and date accurately and precisely. Due to its high precision, it is better suited for long-term time tracking than the clocks on microcontrollers.
- 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"
EAN: 0732388671908
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
Comparison of Similar Products
- enables the connection of up to 8 devices with identical I2C addresses to one bus
- is based on the TCA9548A IC with three configurable address pins for a total of 8 different addresses
- enables expansion to up to 64 devices on one bus through address multiplexing
- supports the connection of devices such as the BME680 sensor
- compatible with easyC for simplified connection options
The I2C MUX significantly expands the possibilities of device networking by allowing multiple identical sensors or components to be operated on a single bus without conflicts due to address duplication. Setting the I2C addresses through the pins on the TCA9548A IC allows flexible adaptation of the network topology, which is an advantage in complex systems. In particular, the ability to connect up to 64 identical devices such as BME680 sensors to one microcontroller significantly increases the efficiency and scalability of projects.
Technical data
- Based on: TCA9548A
- Voltage: 1.65 ... 5,5 V
- Standard I2C address: 0x70, configurable via 3 jumpers
- easyC/Qwiic compatibility
- Dimensions: 54 mm x 38 mm
Conclusion: The use of an I2C multiplexer, especially the model based on the TCA9548A, offers a significant solution for developers who want to overcome the limitations of conventional I2C communication and effectively manage complex or extensive device networks. Its compatibility with the easyC system further simplifies the setup and management of connections.
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/I2C-multiplexer-TCA9548A-breakout-hardware-design"
- Simple connection via I2C
- Only two pins required
- compatible with 16×2, 20×4 and 16×4 LCD displays
- Supports Arduino and compatible boards
- quick commissioning with Arduino library
The adapter offers an efficient solution for integrating LCD displays into Arduino projects. By using the I2C interface, only two pins are occupied, which increases the availability of GPIO pins for other applications. The adapter is compatible with a wide range of LCD displays, including the popular 16×2, 20×4 and 16×4 formats. The Arduino library simplifies programming and enables quick and easy control of the LCD displays. The female header facilitates the connection and provides a stable and reliable interface between the LCD and the Arduino board.
Technical data
- I2C address: 0x20 (HEX)
- Voltage: 3.3 V
- Potentiometer for contrast
- for HDD44780 LCD driver
- easyC/Qwiic compatibility
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"".
In summary, this adapter is a practical and flexible solution for efficiently integrating LCD displays into Arduino projects. Its easy installation and wide compatibility make it a valuable component for developers and engineers.
External links
https://github.com/SolderedElectronics/Soldered-16x2-LCD-Arduino-Library
https://github.com/SolderedElectronics/I2C-LCD-driver-board-hardware-design"
- selectable I2C address: 0x70 to 0x77
- Dimensions: 30.6 x 17.6 x 2.7 mm
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
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
Specifications
• 16 x 2 characters (2 rows with 16 columns)
• HD44780 industry standard
• with soldered-on I2C communication adapter
• therefore only 4 I/O lines (power supply + 2x data lines) are required for operation
• both 3.3V and 5V logic level (@power supply 5V)
• 16 x 2 characters (2 lines with 16 columns)
• backlight: color blue
Technical data
- max. voltage: 3.3 V
- Communication protocol: I2C
- with soldered I2C adapter
- with easyC connection
- Display dimensions: 64.5 x 16 mm
- Dimensions: 80 x 36 x 12 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/Soldered-16x2-LCD-Arduino-Library"
Welcome to the world of electronic prototypes, where innovation and reliability meet! Our high-quality breadboard is the ideal tool for all your electronics projects.
Whether you are an experienced electronics expert or a beginner, our breadboard is designed to optimize your prototyping experience.
With precise plug-in holes and universal compatibility, it allows you to connect electronic components securely and effortlessly. This allows you to implement your ideas quickly and reliably.
Specifications
• 1 contact terminal with 300 contacts
• 2 distribution terminals with 100 contacts
• Material: plastic
• Color: black
• Adhesive surface on the underside
• Dimensions (LxWxH): 84 x 54 x10 mm
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
special features
no backlight, displays the last content for a long time, even after switching off the device
ultra-low power consumption, basically power is only needed for refreshing
SPI interface, for connection to other controller boards like Raspberry / Arduino / Nucleo etc.
comes with development resources and manual (examples for Raspberry Pi / Arduino / STM32)
Technical data- operating voltage: 3,3V
- Interface: 3-wire-SPI, 4-wire-SPI
- Outline dimension: 89.5 × 38 mm
- Display size: 66.89 × 29.05 mm
- Point spacing: 0.138 × 0.138
- Resolution: 296 × 128
- Display colour: black, white, red
- Grayscale: 2
- full update time: 15s
- Energy reserve: 26.4 mV (typ.)
- Standby power: 170°.<0,017 mV
• Betrachtungswinkel:>
Scope of delivery
- Display Module
- Connecting cable XH2.54 20 cm 8-pin
Documentation / Downloads
https://www.waveshare.com/wiki/2.9inch_e-Paper_Modules_(B)0,017>
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!"
The DS1302 chip uses a simple serial interface and sample code is available for Arduino, Raspberry Pi and many others.
The real time clock counts seconds, minutes, hours, the date of the month, the month, the day of the week and the year with leap year compensation valid until 2100.
• serial inputs and outputs for minimum pin count
• 2 V to 5.5 V full operation
• requires less than 300 nA at 2 V
• single byte or multi-byte data transfer for reading or writing clock or RAM data
Note• battery not included (battery see accessories)
Special features
no backlight, displays the last content for a long time even after switching off
ultra-low power consumption, basically power is only required for refreshing
SPI interface, to connect 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: 3.3V
• Interface: 3-wire SPI, 4-wire SPI
• Outline dimensions: 89.5 × 38 mm
• Display size: 66.89 × 29.05 mm
• Dot pitch: 0.226 × 0.227
• Resolution: 296 × 128
• Display color: black, white
• Grayscale: 4
• Power reserve: 26.4 mV (typ.)
• Standby power: <0,017 mV
• Betrachtungswinkel:> 170°
Scope of delivery
• Display module
• Connection cable XH2.54 20 cm 8-pin
Documentation / Downloads
http://www.waveshare.com/wiki/2.9inch_e-Paper_Module
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
- 1 TOPS on-device AI performance for fast and efficient data processing
- Video encoding with 5 MP resolution at 30 FPS for high-quality image capture
- Programmable and customizable for a wide range of AI applications
- Modular hardware with expandable interfaces for maximum flexibility
- ideal for developers who want to build or experiment with vision AI systems
The combination of powerful on-device AI and flexible architecture makes reCamera an optimal choice for applications such as machine vision, object recognition and edge AI. Extensive customization options are available for developers to meet specific project requirements.
Technical specifications
- AI performance: 1 TOPS @ Int8
- SoC: SG2002
- CPU: Dual-Core C906 (1 GHz + 700 MHz)
- MCU: 8051 with 8 KB SRAM
- RAM: 256 MB
- Video encoding: 5 MP @ 30 FPS
- Camera sensor: OV5647
- eMMC: 64 GB
- Expansion: removable TF card (up to 2 TB, not included)
- Ethernet: 100 Mbps
- USB: USB Type-C (2.0)
- Buttons: 1 reset button, 1 boot button
- Status display: 1 power LED, 2 programmable IO LEDs
- Fill light: 0.3 W white light
- Microphone: onboard microphone
- Speaker: external speaker
- Power supply: 5 V @ 1 A
- Dimensions: 40 x 40 x 36.5 mm
In summary, reCamera is a powerful and versatile solution for modern vision AI projects that impresses with its open architecture and modular design.
External links
https://github.com/Seeed-Studio/OSHW-reCamera-Series
https://github.com/Seeed-Studio/reCamera-OS"
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"
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"
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)
The sensitivity of the sensor can be adjusted using a potentiometer.
Robots, for example, can use three of these sensors to perform an automated line tracker function.
Technical specifications
• Function: Detects a line using infrared (0/1 signal output) / With three of these sensors, robots can automatically follow a line
• Detection range: 1 - 25 mm
• Supply voltage: 3 - 5 V
• Power consumption: 3 V approx. 7 mA / 5 V approx. 13 mA
• Operating temperature: 0 °C to 50 °C
• Dimensions: 42 x 11 x 8 mm
- Digital output
- 50 Hz to 15 kHz
- I2S Interface
- • 1,6 ... 3,6 V Operating voltage
- SPH0645LM4H
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
- I2C controlled, extends 2 signal pins as 16 I/O pins
- I2C address configurable by short-circuiting the A0/A1/A2 bridges
- offers two connection options: PH2.0 Terminal and/or solder pads
- integrated voltage converter, compatible with 3.3 V / 5 V level
- Supplied with development resources and manual
Technical data- Operating voltage: 5 V / 3.3 V
- interface: I2C
- Interrupt pins: INTA, INTB, INTB
- Expansion I/Os: 16
- Mounting hole size: 2.0 mm
- Dimensions: 38 × 23 mm
Documentation and downloads can be found here:
www.waveshare.com/wiki/MCP23017_IO_Expansion_Board
Welcome to the world of electronic prototypes, where innovation and reliability meet! Our high-quality breadboard is the ideal tool for all your electronics projects.
Whether you are an experienced electronics expert or a beginner, our breadboard is designed to optimize your prototyping experience.
With precise plug-in holes and universal compatibility, it allows you to connect electronic components securely and effortlessly. This allows you to implement your ideas quickly and reliably.
Specifications
• 1 contact terminal with 630 contacts
• 2 distribution terminals with 200 contacts
• Material: plastic
• Color: black
• Adhesive surface on the underside
• Dimensions (LxWxH): 165 x 54 x10 mm
It serves as an alternative to the CAN bus and is characterized by a lower speed and the support of a smaller number of simultaneous devices, but also has significantly lower costs. LIN is used for communication between microcontrollers. The operating voltage is 18V.
This breakout has a MASTER role. Master/slave is a communication model in which one device (master) controls one or more other devices (slave) and the slave then responds to the commands it receives from the master. A master in the LIN protocol can control up to 16 devices.
Technical data
- max. data rate: 20 kbit/s
- max. number of devices: 16
- max. bus length: 40 m
- Voltage: 18 V
- Dimensions: 21.3 x 22.6 x 12.3 mm
external links
https://github.com/SolderedElectronics/LIN-Transceiver-NCV7329-MASTER-breakout-hardware-design"
Technical data- Controller: ST7735S
- Interface: SPI
- Display color: RGB, 65 K Colors
- Resolution: 160 x 80
- Backlight: LED
- Operating voltage: 3.3 V
Scope of delivery
1x 0.96"" LCD module
1x PH2.0 20 cm, 8-pin
Documentation and downloads can be found here:
www.waveshare.com/wiki/0.96inch_LCD_Module"
Technical data• chipset: TTP224 for four keys
• supply voltage: 2.4 - 5.5 V DC
• status display
• dimensions:35 x 29 mm
- 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"
It contains all the necessary electronics and logic so that programming can be done by connecting a USB cable to the CONNECT programmer and connecting the CONNECT programmer to the programming header. The electronics responsible for the timing and signal sequence are also located on the board so that the ESP microcontroller is put into bootloader mode.
The ESP programming header can be found on boards from Soldered that are based on ESP8266 or ESP32 microcontrollers and do not have a USB-UART converter. However, this programmer can also be used for any other ESP32/ESP8266 board.
Technical data
- IC: CH340
- Pin layout: GPIO0, RESET, RX, TX, 3V3, GND
- LEDs: RX, TX, Power
- USB: USB-C
- Dimensions: 38 x 22 mm
external links
https://github.com/SolderedElectronics/CONNECT-programmer-hardware-design"
Specifications• driver chip ILI9225
• resolution 220 x 176
• SPI interface"
It is connected via three pins as follows:
- Ground
- Signal
- Supply (5V)
Security adviceNever look directly into the laser to avoid eye damage"
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: 2 relays
- Dimensions: 54 x 38 mm
external links
https://github.com/SolderedElectronics/2-channel-relay-board-hardware-design"
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: 4 relays
- Dimensions: 54 x 70 mm
external links
https://github.com/SolderedElectronics/4-channel-relay-board-hardware-design"
This module is based on the ADS1015 ADC and operates with a resolution of 12 bits. It can receive up to 3.3 V at its inputs and has a total of 4 channels, which can also be used as two differential channels. It is compatible with Arduino (or a compatible board such as Dasduino) and other microcontrollers powered by 5V. Two simple connectors allow easy connection via I2C communication.
Technical specifications
- Voltage: 3.3 V
- Resolution: 12-bit
- Number of channels: 4
- I2C communication
- easyC/Qwiic compatibility
- Dimensions: 22 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/Soldered-ADS1015-ADS1115-ADC-Arduino-Library
https://github.com/SolderedElectronics/ADC-12-bit-ADS1015-4-channel-with-PGA-breakout-hardware-design"
- 1 TOPS on-device AI performance for fast and efficient data processing
- Video encoding with 5 MP resolution at 30 FPS for high-quality image capture
- Programmable and customizable for a wide range of AI applications
- Modular hardware with expandable interfaces for maximum flexibility
- ideal for developers who want to build or experiment with vision AI systems
The combination of powerful on-device AI and flexible architecture makes reCamera an optimal choice for applications such as machine vision, object recognition and edge AI. Extensive customization options are available for developers to meet specific project requirements.
Technical specifications
- AI performance: 1 TOPS @ Int8
- SoC: SG2002
- CPU: Dual-Core C906 (1 GHz + 700 MHz)
- MCU: 8051 with 8 KB SRAM
- RAM: 256 MB
- Video encoding: 5 MP @ 30 FPS
- Camera sensor: OV5647
- eMMC: 8 GB
- Expansion: removable TF card (up to 2 TB, not included)
- Ethernet: 100 Mbps
- USB: USB Type-C (2.0)
- Buttons: 1 reset button, 1 boot button
- Status display: 1 power LED, 2 programmable IO LEDs
- Fill light: 0.3 W white light
- Microphone: onboard microphone
- Speaker: external speaker
- Power supply: 5 V @ 1 A
- Dimensions: 40 x 40 x 36.5 mm
In summary, reCamera is a powerful and versatile solution for modern vision AI projects that impresses with its open architecture and modular design.
External links
https://github.com/Seeed-Studio/OSHW-reCamera-Series
https://github.com/Seeed-Studio/reCamera-OS"
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"
Specifications• driver chip ILI9225
• resolution 220 x 176
• SPI interface"
