ARD SHD P MKR SD - Arduino shield - MKR SD Proto Shield
25.66 EUR
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The Arduino MKR SD Proto Shield allows you to easily connect an SD card to your MKR form factor board. There is also a small prototyping area for soldering components.
EAN: 0813747020510
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
The Arduino MKR SD Proto Shield allows you to easily connect an SD card to your MKR form factor board. There is also a small prototyping area for soldering components.
EAN: 0813747020510
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
Comparison of Similar Products
- 1x micro SD card slot
- 2 MB SPI flash memory
Note
Supplied without a memory card
Libraries and instructions and examples can be found at
https://www.arduino.cc/en/guide/MKRRGBShield
Technical data
- 84 x APA102 RGB LEDs
- Input voltage: 5 V
- Operating voltage: 3.3 V
- maximum current: 2.5 A
- Interface: SPI
- Dimensions: 61,5 x 27 mm
Better and more efficient
The MKR WAN 1310 offers a number of improvements over its predecessor, the MKR WAN 1300 . The MKR WAN 1310 is still based on the Microchip® SAMD21 low power processor, the Murata CMWX1ZZABZ LoRa® module and the MKR family's signature crypto chip (ECC508), but includes a new charger, a 2 MByte SPI flash and improved control of the board's power consumption.
Improved Battery Performance
The latest changes have significantly improved the battery life of the MKR WAN 1310. With proper configuration, the power consumption is now only 104 µA! It is also possible to use the USB port to supply power (5 V) to the board. Run the board with or without batteries - the choice is yours.
On-board memory
Data logging and other OTA (Over The Air) functions are now possible since the integration of the integrated 2 MByte Flash. With this exciting new feature, you can transfer configuration files from the infrastructure to the card, create your own script commands, or simply store data locally to send whenever connectivity is best. The MKR WAN 1310's crypto chip provides additional security by storing credentials and certificates in the embedded secure element. These features make it the perfect IoT node and building block for large-scale, low-power IoT devices.
Arduino IoT Cloud
Use your MKR board in Arduino's IoT Cloud, an easy and fast way to ensure secure communication for all your connected things.
Build your own infrastructure
If you need to build your own dedicated LoRa® infrastructure, consider using the Arduino LoRa® PRO gateway. This will allow you to monitor all of your MKR WAN 1310 cards directly from the Arduino IoT Cloud.
Get Started
The Getting Started section contains all the information you need to configure your board, use the Arduino software (IDE), and tinker with coding and electronics.
Additional I2C Port
The MKR WAN 1310 has an additional port that is meant to be an extension of the I2C bus. It is a 5-pin connector SHR-05V-S-B (JST SH series) with a small form factor and a spacing of 1.0 mm.
Technical Data
• Microcontroller: SAMD21 Cortex®-M0 + 32-bit low power ARM MCU (see datasheet)
• radio module: CMWX1ZZABZ (see datasheet)
• Cryptographic Co-Processor: ATECC508 (see datasheet)
• supported batteries: rechargeable Li-Ion or Li-Po with a minimum capacity of 1024 mAh
• external interrupts: 8
• DC current per I/O pin: 7 mA
• QSPI flash...
Dimensions (L x W): 80 x 50 mm
Dimensions (L x W): 61.5 x 25 mm
- Air pressure
- Temperature and humidity
- UVA and UVB intensity
- Operating voltage: 3.3 V
- Communication: I²C, analog
- Built-in sensors:
- ST LPS22HB
- ST HTS221
- VISHAY TEMT6000 - dimensions (LxW): 61 x 25 mm
The measured data can be further processed as desired or stored using the built-in SD card slot.
Technical Data
Note: Sensor VISHAY VEML6075 not installed
The shield is perfect for rapid prototyping without soldering. Simply connect your sensors directly to this shield with Grove connectors.
- 14x Grove connections
- I²C and UART interface
The board offers both Single Grove and Double Grove analogue inputs
Dimensions (LxW): 101.5 x 53.3 mm
•GPS •GLONASS • Galileo
Examples of use
- For monitoring fleets or swarms
- scientific experiments at high altitude
- general localisation
The MKR GPS Shield is based on the u-blox SAM-M8Q GNSS (Global Navigation Satellite System) module. It is designed for use on MKR format boards, but thanks to its Eslov connector it can also be connected with a cable to any board with such a connector.
Technical data
- GNSS receiver: SAM-M8Q
- Connections: MKR, Eslov
- Battery: CR1216 (not included)
- Communication: Serial / I2C / DCC
Technical data
- Operating voltage: 3.3 V
- Input voltage: 7 - 12 V
- DC current for 3.3 V Pin: 700 mA
- DC Strin for 5 V Pub: 700 mA
Dimensions (LxW): 68.6 x 53.4 mm
Note
Please remember that the MKR2UNO is only a form factor adapter and therefore there is NO voltage translation. Be careful before connecting a shield, as a shield without IOREF level shifting capability may not work properly.
- dual-use prototype shield
- Pitch: 2.54 mm
- with stacking bar for the 2x3 ICSP pins
- SD card interface works with FAT16 or FAT32 formatted cards
- 3.3 V level shifter circuitry prevents damage to your SD card
- for the Prototyping area with soldering connectors, circuitry or sensors
- Onboard 3.3 V regulator is both a reliable reference voltage and also reliably runs SD cards that require a lot of power to run
- Supply voltage: 4.5 - 13.5 V DC li>
- 2 connections for 5 V servos li>
- TB6612 chipset with 1.2A per bridge li>
- Engines are automatically disabled at power up li>
- Arduino reset button li>
- Dimensions: 70 x 55 x 10 mm li> ul>
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
Maximum current of single-pole switch contact: 30 VDC, 2 A
Maximum load voltage: 48 V
Maximum switching capacity: 60 W
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 solar charger is a stackable shield to Arduino compatible platforms, enables adaptive battery power and act as energy harvester for in-field charging. You may use various batteries that has the voltage of 3.0V-4.2V to shift up for 5V output, or put on Li-ion battery and solar panel to form an autonomous sensor unit. The maximum current provided by the board can get up to 600mA. An usb connector is also useful to charge the battery.
Features
• Output Disconnect
• Short circuit protection
• 3W Output Power when connecting battery
• Continuous Charge Current Up to 900mA
• Battery status indication ( Red : Charging , Green: Charged )
• Micro-USB Connector
Specification
• Battery input voltage: 3.0~4.5V
• USB input voltage: 4.75~5.25V
• Solar input voltage: 4.8~6V
• Maximum Output Power(with battery): 3W(600mA@5V)
• Ripple voltage:<100mV @ 500mA
• Dimensions: 68*53mm
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
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
Open Programmable IoT Platform - Create your own devices for home or office automation. Control what you want, how you want. MKR IoT Carrier offers endless possibilities for IoT projects. No soldering required! With integrated sensors, circuits and displays, you can focus on programming and prototyping your ideas instead of wiring and troubleshooting.
Data acquisition
Map the wearer's environment using the built-in temperature, humidity, and pressure sensors, and collect motion data using the 6-axis IMU and light, gesture, and proximity sensors. Easily add more external sensors to capture more data from more sources via the integrated Grove ports (x3). Data storage: Capture and store all data locally on an SD card or connect to the Arduino IoT Cloud * for real-time data collection, storage and visualization.
Data visualization
Display real-time sensor readings locally on the built-in color OLED display and create visual or audible prompts using the embedded LEDs and buzzer.
Total control
Control small, low-voltage electronic devices directly with the integrated relays and five pushbuttons. The integrated display provides a convenient interface on the device for instant control. Alternatively, connect to the Arduino IoT Cloud * to remotely manage and control your device via the Arduino Remote IoT app on a smartphone.
Included
• SD card slot (without SD card))
• battery holder (without battery))
• Arduino MKR IoT Carrier Rev2
The ARD-CNC-Kit2 is a specially developed expansion board that enables CNC machines to be controlled via an Arduino board. This kit stands out for its compatibility with GRBL v0.9, a popular open-source software package developed for CNC applications. Thanks to its support for GRBL v0.9, the ARD-CNC-Kit2 can utilise advanced features such as PWM (Pulse Width Modulation) for controlling spindle speed and the implementation of soft limits, which serve to keep the machine within safe operating limits. These functions are particularly important for users who require precise and safe machine control. The kit allows for the simultaneous control of up to four stepper motors, with each motor controlled by a DRV8825 motor driver.
These drivers are renowned for their efficiency and reliability and are supplied with heat sinks that ensure optimal heat dissipation. This minimises the risk of overheating and the resulting damage or loss of performance.
- Controller: Microchip MCP2515
- Transceiver: NXP TJA1049
- Compatible with all MKR boards
Input voltage either 5 V via the header connector or 7 to 24 V via threaded terminal ends.
- detachable A4988 Motordriver
- compatible to GRBL 0.8
- control of up to 4 axes
- reset-button
- screw-terminals for power supply
- input voltage: 12 - 36 V
- dimensions: 53 x 68 x 18 mm
The included clock generator ensures a very precise PWM signal and a very precise positioning. The board has 2 inputs for voltage from 4.8V to 6V which can be used for up to 11A. With this input, a perfect power supply is always guaranteed and even bigger projects are no problem. The supply runs directly over the Motorino which provides a connection for voltage, ground and control.
With the build in capacitor, the voltage is buffered which prevents a sudden voltage-drop at a high load. But there is also the possibility to connect another capacitor. The control and the programing can be done, as usual, with the Arduino. Manuals and code examples allows a quick introduction for beginners.
Specifications
• 16 Channels , own clock generator
• Input 1: Coaxial power connector 5.5 / 2.1 mm , 4.8 ... 6 V, 5 A max.
• Input 2: Screw-terminal, 4.8 ... 6 V, 6 A max.
• compatible with Arduino Uno, Mega and may more microcontroller with Arduino compatible pinout
Scope of supply
• board
• manual
Dimensions: 69 x 24 x 56 mm
Features
• 16x2-character display
• 3 backlight pins
• 5 keypad pins
• I²C interface
Use
• Arduino Uno™, Duemilanove, Diecimilla and Mega R3
The Arduino™ 9 Axes Motion Shield has been developed with Bosch using their BN0055 absolute orientation sensor as an on-board key feature. With the shield, designers can start to introduce motion sensing to projects, connecting to TinkerKit modules and Arduino™ boards such as Uno, Yun, Leonardo, Ethernet, Mega, Due and Zero Pro.
The shield is powered only when connected to an Arduino™ board.
Features
• BN0055 absolute orientation sensor
• 5 V operating voltage
• 50 mW power consumption
The Arduino Portenta Proto Kit ME (Motion Environment) is a comprehensive solution for the development of functional prototypes with a focus on environmental monitoring and motion detection.
It combines multiple Arduino Pro products that work together to collect relevant data for applications such as predictive maintenance, asset tracking, smart building systems and industrial automation.
Thanks to reliable sensor technology and seamless cloud connectivity via the Arduino Pro 4G module, this kit enables you to quickly realize your ideas and transition from prototypes to final products.
Main components of the kit
- Portenta H7 microcontroller board: A versatile and powerful board with dual-core processor for parallel execution of high-level and real-time tasks. Ideal for applications ranging from smart devices to industrial automation.
- Nicla Sense ME Board: A compact board for measuring motion and environmental parameters such as rotation, acceleration, pressure, humidity, temperature, air quality and CO2 levels. Perfect for projects that require sensor fusion and edge processing.
- Portenta Mid Carrier: A versatile prototyping tool that extends Portenta boards with features such as Ethernet, Mini PCIe, camera connections, CAN lines, microSD support and 4G connectivity via the Arduino Pro 4G module. Ideal for applications such as machine vision, smart cities and remote maintenance.
- Modulinos: Plug-and-play sensors and actuators that connect easily via the Proto Shield's Qwiic connector. They offer functions such as rotary controls for fine adjustments, LEDs for visual feedback and sensors for measuring distance, movement, temperature and humidity. Ideal for quick and easy setup and expansion of projects.
- Arduino Pro 4G GNSS Module Global: Extends the kit's capabilities with reliable 4G connectivity and supports 2G and 3G networks for global coverage. Provides secure data transmission, real-time notifications and remote monitoring, ideal for projects ranging from firmware updates to large-scale security and environmental monitoring.
- Arduino Cloud Business Voucher: Three months of cloud access for real-time data storage, visualization and analysis.
In addition, the kit contains all the necessary accessories, including power supply and cables, to enable immediate use.
Exclusive! Certification course for maximum productivity!
Expand your knowledge with the ACE-220 Portenta Proto Kit Certification Course. In just 8 hours you will learn all the skills to get the most out of the kit - from hardware installation to cloud integration.
Note: You can find more information at https://docs.arduino.cc/hardware/portenta-proto-kit-me/
63.39 EUR Perfect for your next IoT projects
Create projects based on the Arduino Nano board with secure connections via screw terminals. If you need to add additional components, you can use the prototyping area.
Fast, safe and ready for additional prototyping.
• Fast and secure connection: screw terminals, perfect for solderless and reliable connections for your next IoT project.
• prototyping area in place: 8 x 9 plated-through prototyping area for additional components
• double row of headers: one row is left empty on each side of the board, with additional quick connections via jumpers
• thin headers: lower overall thickness (total thickness including the nano board is less than 15 mm)
Specifications
• Nano Screw Terminal Adapters (Pack of 3)
• screw terminals: 32 screw terminal connectors (3.5 mm pitch)
• terminal sockets: 2 double row sockets with 15 contacts each (pitch 2.54 mm)
• prototyping area: 9 x 8 grid (2.54 mm)
• dimensions (L x W): 70 x 50.5 mm
Create projects based on the Arduino Nano board with secure connections via screw terminals. If you need to add additional components, you can use the prototyping area.
Fast, safe and ready for additional prototyping.
• fast and secure connection: screw terminals, perfect for solderless and reliable connections for your next IoT project.
• prototyping area in place: 8 x 9 plated-through prototyping area for additional components
• double row of headers: one row is left empty on each side of the board, with additional quick connections via jumpers
• thin headers: lower overall thickness (total thickness including nano board is less than 15 mm)
Specifications
• Nano Screw Terminal Adapter (1x)
• screw terminals: 32 screw terminal connectors (3.5mm pitch)
• terminal sockets: 2 double row sockets with 15 contacts each (pitch 2.54 mm)
• prototyping area: 9 x 8 pitch (2.54 mm)
• dimensions (L x W): 70 x 50.5 mm
The Arduino™ Ethernet Shield 2 allows an Arduino™ board to connect to the Internet as well as read and write on a microSD card.
The shield is simply mounted on an Arduino™ board, for example on the Arduino™ Uno or since this version also on the Arduino™ Mega. Other shields can be stacked right on top of the Ethernet shield, allowing for optimum functionality integration in designs.
Connect the shield to your computer or a network hub/router via a standard Ethernet cable.
Features:
• W5500 Ethernet chip
• Slot for microSD card/card reader
• Reset controller
• RJ45 Ethernet jack
• 5 status LEDs
• Dimensions: 6.86 x 5.33 cm
You can use the Arduino™ shield to control 2 DC motors or 1 stepper motor independently of each other. You can also measure each motor's power consumption and perform many other functions.
Technical data
- Operating voltage: 5 - 12 V
- Motor control: L298P, controls 2 DC motors or 1 stepper motor
- Power: 2 A per channel or max. 4 A (with external power supply)
- Current detection: 1.65 V/A
- Free-running stop and brake function
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.
Arduino ProtoShield prototype expansion board including mini breadboard. Can be used with Arduino ProtoShield prototype expansion board to build prototype circuit.
All pins and power supply led outside, perfect for building prototype circuit with Arduino.
Specifications
• 1 x reset button, 1 x general purpose button and 2 LED circuits.
• 5V, GND and raw pins
• SOIC space for IC
• mini breadboard with 170 points
• dimensions (L x W x H): 44 x 34 x10 mm
This is a terminal adapter for the Arduino Nano. It is suitable for the Arduino Nano version 3.0, but you can also use this adapter for the older version (you just need to remember that A0-A7 are in reverse order). You can use this adapter to easily connect the Nano to the outside world via an interconnect cable.
Dimensions (L x W): 52 x 35 mm
The 55 x 85 mm board has a 40-pin GPIO strip, which allows you to connect the board and Raspberry perfectly and easily. The screw terminals are already pre-installed.
The included spacers and screws are designed so that the board can also be screwed directly onto the Raspberry B+, 2, 3 or 4.
Dimensions: 55 x 85 mm
Scope of delivery: prototype board, screws, spacers
This joystick/gamepad shield is based on Nokia 5110 LCD\
RF24L01 interface. You can easily develop joystick games and communicate wirelessly. The shield turns your Arduino into a simple controller with 7 buttons ( (4 x big buttons, 2 x small buttons + joystick select button ) and a two-axis thumb joystick.
Specifications
• nRF24L01 RF interface
• Nokia 5110 LCD interface
• Bluetooth interface
• I2C interface
• PS2 joystick
• Operating voltage: 3,3V or 5V e.g. STM32
• X,Y-axis with push button
• 6-button operation
• dimensions (L x W x H): 87 × 54 × 18 mm
