Features
Synchronous mode: Auto, Normal, Single, None, Scan
Rising/Falling edge trigger
Modes of vertical precise, horizontal precise measurement and triggering threshold
Auto Measurement: frequency, cycle time, duty cycle, DC RMS voltage/Vpp /Vmax/Vmin/Vavg
Inbuilt signal generator/10 Hz-1 MHz square wave (duty adjustable) or 10 Hz-20 KHz
Sine/Square/Triangle/Sawtooth wave
Specifications
Analog bandwidth
1 MHz
Max sample rate
10 Msa/s
Max sample memory depth
8K
Analog input impedance
1 MΩ
Max input voltage
±40 V (X1)
Coupling
AC/DC
Vertical sensitivity
20 mv/Div~10 V/Div (1-2-5)
Horizontal sensitivity
1 uS/Div~2 S/Div (1-2-5)
Storage
Built-in 8 MB U disk storage for waveform data and images
Power supply
Internal 550 mAh Lithium battery, recharging through Micro USB port
Display
2.8' Full Color TFT LCD (320x240 pixels)
Dimensions
100 x 56.5 x 10.7 mm
Downloads
User Manual
Source Code
App
Input Voltage: 12 - 36 V Max. Phase Current: 2 A per phase Removable motor drivers Reset-button Screw terminals for power supply Dimensions: 53 mm x 68 mm x 18 mm Weight: 46 g
The Smart USB Soldering Iron Kit is a compact, cordless solution designed for precision and portability. Featuring intelligent three-speed temperature control (300-450°C) with an easy-to-read LED display, it heats up in just 10 seconds and melts solder in as little as 6 seconds.
The 1000 mAh rechargeable battery delivers up to 30 minutes of continuous use, making it ideal for quick repairs, electronics projects, and DIY tasks. With a plug-and-play, replaceable tip and a high-temperature-resistant insulated shell, it’s safe, user-friendly, and perfect for both beginners and professionals on the go.
Features
Three-Speed Intelligent Temperature Adjustment: Features an LED display screen with adjustable temperatures between 300-450°C (572-842°F). Easily switch between Celsius and Fahrenheit.
Integrated Plug-In Soldering Iron Tip: Plug-and-play design. The tip can be replaced by simply unscrewing it, ensuring quick and convenient operation.
Safe and Durable Design: High-temperature-resistant, insulated shell for enhanced safety during use.
Battery Capacity: Equipped with a rechargeable 1000 mAh battery that supports up to 30 minutes of continuous operation on a full charge – ideal for everyday tasks.
Efficient Performance: 8 W power with an integrated heating core for rapid heat-up. Melts tin in just 6 seconds, providing excellent thermal conductivity.
Easy to Use: After powering on via USB, set your desired temperature. The soldering iron heats up in 10 seconds. Once finished, place the tip on the stand—it cools down within 1 minute. Perfect for beginners, hobbyists, basic home repairs, and training engineers.
Cordless Innovation: This cordless soldering kit includes a built-in rechargeable lithium-ion battery, eliminating the need for cables. Versatile use for circuit board soldering, electrical repairs, jewelry making, metal crafts, computer maintenance, and DIY projects.
Specifications
Adjustable Temperature: 300-450°C (572-842°F)
Tin Melting Time: <15 seconds
Working Voltage: 5 V
Power Output: 8 W
Battery Capacity: 1000 mAh
Auto Sleep Function: Activates after 10 minutes of inactivity
Charging Time: Approx. 90 minutes
Battery Life: Up to 30 minutes continuous use
Charging Interface: USB-C
Main Material: Aluminum alloy
Dimensions: 190 x 16 mm (7.4 x 0.6")
Included
1x USB Soldering Iron
1x Soldering Tip
1x Soldering Rosin
1x Soldering Iron Holder (with Sponge)
1x USB-C Charging Cable
1x Solder Wire
1x Storage Box
The ZK-DP3D CNC USB-C DC-DC Converter is a versatile, high-precision voltage and current regulator designed for a wide range of applications. Featuring a digital control interface with adjustable voltage (1-30 V) and current (0-2 A), it offers a precision LCD display for monitoring input/output voltage, current, power, and more.
Equipped with intelligent fast-charge protocol support (QC2.0/3.0, FCP, SCP, AFC) and multiple safety protections, it is ideal for powering devices such as USB fans, routers, and batteries. Its compact design includes push-type terminals for easy connectivity and a high power output of up to 15 W, ensuring reliability and convenience for both hobbyists and professionals.
Specifications
Input voltage
4-13 V (3 input interfaces: USB, MicroUSB and USB-C)
Output voltage
1-30 V
Output current
0-2 A
Output power
Less than 15 W
Voltage display
Resolution 0.01 V, Accuracy ±(0.5% + 3 digits)
Current display
Resolution 0.001 A, Range 0-2 A, Accuracy ±(0.5% + 3 digits)
Power display
0.00-15.00 W
Operating current
approx. 30 mA
Dimensions
92 x 40 x 16 mm
Weight
41 g
The FNIRSI NVS-20 is a versatile monocular night vision device, ideal for clear observation in complete darkness or low light. It offers unlimited range in weak light and up to 300 m in total darkness.
Featuring a USB port and TF card slot, it supports firmware updates and media storage. With a color screen, it performs seamlessly day or night, enabling photo capture, video recording, playback, and up to 6x electronic zoom. The NVS-20 is the ultimate tool for enhancing night vision capabilities.
Specifications
Electronic Zoom
6x
Objective Lens Diameter
25 mm
Low Light or Daytime Observation Distance
2 m~∞
Full Black Observation Distance
300 m (max)
Video Resolution
4K (3840x2160) / 2K (2560x1440) / 1080FHD (1920x1080) / 720P (1280x720) / VGA (640x480) / QVGA (320x240)
Photo Resolution
36MP / 32MP / 30MP / 24MP / 20MP / 16MP / 12MP / 10MP / 8MP / 5MP / 3MP / VGA
IR Wavelength
850 nm
Water Resistance Level
IPX6
White Balance
Automatic, Daylight, Cloudy, Tungsten Filament, Fluorescent
ISO
Auto, 100, 200, 400, 800
LCD Brightness Adjustment
High, medium, and low levels
Light Source Frequency
50 Hz / 60 Hz
Storage
32 GB TF memory card
Voltage
3.7 V
Power supply
18650 internal battery
Charging
USB-C (5 V/1 A)
Display
1.54 inch HD IPS screen
Temperature
−5~40°C
Humidity
0-80%
Languages
Chinese / Traditional / English / Japanese / Italian / French / German / Russian / Spanish / Portuguese
Dimensions
152 x 42 x 82 mm
Weight
240 g
Included
1x NVS-20 Night Vision Monocular
1x 18650 Lithium battery
1x TF memory card (32 GB)
1x USB cable
1x Manual
Downloads
Manual
Firmware FW96675
The iCEBreaker FPGA board is an open-source educational FPGA development board.
The iCEBreaker is great for classes and workshops teaching the use of the open source FPGA design flow through Yosys, nextpnr, IceStorm, Icarus Verilog, Amaranth HDL and others. This means the board is low cost and has a nice set of features to allow for the design of interesting classes and workshop exercises. At the same time it allows the user to use the proprietary vendor tools if they choose to.
After the workshop the boards can be easily used as a development board as most GPIO are exposed, broken out and configurable through jumpers on the back of the board. There is only a minimal amount of buttons and LED that can't be disconnected and used for your own purposes.
Documentation
Workshop
The Conductor 3 ink is optimized for printing both rigid and flexible circuits. The printer lays down silver conductive ink to make the traces and pads that comprise your circuit board. After thermal curing, the ink is conductive and ready for reflow.
Specificaties
Recommended curing temperature is 90°C for 5 minutes, then 120°C for 20 minutes (temperature measured at ink surface).
Compatible with FR1, FR4, and flexible substrates.
For best results, cure immediately after printing.
Solder with tin-bismuth-silver solder wire and flux at 180°C, or use preset profile for reflow soldering.
Note: Cartridges must be kept refrigerated, and have a shelf life of 12 months.
The SparkFun JetBot AI Kit V3.0 is a great launchpad for creating entirely new AI projects for makers, students, and enthusiasts interested in learning AI and building fun applications. It’s straightforward to set up and use and is compatible with many popular accessories.
Several interactive tutorials show you how to harness AI's power to teach the SparkFun JetBot to follow objects, avoid collisions, and more. The Jetson Nano Developer Kit (not included in this kit) offers useful tools like the Jetson GPIO Python library and is compatible with standard sensors and peripherals; including some new python compatibility with the SparkFun Qwiic ecosystem.
Additionally, the included image is delivered with the advanced functionality of JetBot ROS (Robot Operating System) and AWS RoboMaker Ready with AWS IoT Greengrass already installed. SparkFun’s JetBot AI Kit is the only kit currently on the market ready to move beyond the standard JetBot examples and into the world of connected and intelligent robotics.
This kit includes everything you need to get started with JetBot minus a Phillips head screwdriver and an Ubuntu desktop GUI. If you need these, check out the includes tabs for some suggestions from our catalogue. Please be aware that the ability to run multiple neural networks in parallel may only be possible with a full 5V-4A power supply.
Features
SparkFun Qwiic ecosystem for I²C communication
The ecosystem can be expanded using 4x Qwiic connectors on GPIO header
Example Code for Basic Motion, Teleoperation, Collision avoidance, & Object Following
Compact form factor to optimize existing neural net from NVIDIA
136° FOV camera for machine vision
Pre-flashed MicroSD card
Chassis assembly offers expandable architecture
No soldering required
Included
64 GB MicroSD card - pre-flashed SparkFun JetBot image:
Nvidia Jetbot base image with the following installed: SparkFun Qwiic python library package
Driver for Edimax WiFi adapter
Greengrass
Jetbot ROS
Leopard Imaging 136FOV wide-angle camera & ribbon cable
EDIMAX WiFi Adapter
SparkFun Qwiic Motor Driver
SparkFun Micro OLED Breakout (Qwiic)
All hardware & prototyping electronics needed to complete your fully functional robot!
Required
NVIDIA Jetson Nano Developer Kit
Downloads
Assembly Guide
To make it even easier to use this breakout, all communication is enacted exclusively via I²C, utilizing our handy Qwiic system. However, we still have broken out 0.1' spaced pins in case you prefer to use a breadboard.
The CCS811 is an exceedingly popular sensor, providing readings for equivalent CO2 (or eCO2) in the parts per million (PPM) and total volatile organic compounds in the parts per billion (PPB). The CCS811 also has a feature that allows it to fine-tune its readings if it has access to the current humidity and temperature.
Luckily, the BME280 provides humidity, temperature and barometric pressure! This allows the sensors to work together to give us more accurate readings than they’d be able to provide on their own. We also made it easy to interface with them via I²C.
Features
Qwiic-Connector Enabled
Operation Voltage: 3.3 V
Total Volatile Organic Compound (TVOC) sensing from 0 to 1,187 parts per billion
eCO2 sensing from 400 to 8,192 parts per million
Temp Range: −40°C to +85°C
Humidity Range: 0-100% RH, = -3% from 20-80%
Pressure Range: 30,000Pa to 110,000Pa, relative accuracy of 12Pa, absolute accuracy of 100Pa
Altitude Range: 0 to 30,000 feet (9.2 km), relative accuracy of 3.3 feet (1 m) at sea level, 6.6 (2 m) at 30,000 feet
Pirate Audio Speaker is perfect for making a Lilliputian radio, sound effect player, or even as a teeny-weeny games console! The built-in 1W speaker isn't the loudest but it's great fun for lots of projects. The display and playback buttons let you control your audio or sound effects in a jiffy. Use Pimoroni's Pirate Audio software to play local audio files (MP3, FLAC, etc) or stream from services like Spotify. Features MAX98357A DAC / amplifier chip Mono audio Mini speaker (1W / 8Ω, attached) Push-fit speaker terminals 1.3' IPS colour LCD (240x240px) (ST7789 driver) Four tactile buttons Mini HAT-format board Fully-assembled Compatible with all 40-pin header Raspberry Pi models Pirate Audio software Dimensions: 65x30.5x9.5mm Software The Pirate Audio software and installer installs the Python library for the LCD, configures the I2S audio and SPI, and then installs Mopidy and our custom Pirate Audio plugins to display album art and track info, and to use the buttons for playback control. Here's how to get started: Set an SD card up with the latest version of Raspberry Pi OS. Connect to Wi-Fi or a wired network. Open a terminal and type the following:git clone https://github.com/pimoroni/pirate-audiocd pirate-audio/mopidysudo ./install.sh
Reboot your Pi Downloads MAX98357A Datasheet Pirate Audio software
Learn the basics of designing and making things with Inventables' software (Easel) and 3D carving machines (X-Carve and Carvey)
This book was written for people who have never carved before. It teaches the basics of designing and making things with Inventables' software (Easel) and 3D carving machines (X-Carve and Carvey). It showcases five step-by-step projects you can build yourself as a beginner, including an inspiration tile, kitchen cutting board, custom block stamp, fidget spinner, and balsa wood glider. The book also features a gallery of aspirational projects, like an electric guitar and a box joint toolbox, to show what else is possible through 3D carving. The design files and instructions for these more complex projects can be found on the Inventables website.
Projects Included
Participate in the world's largest mosaic tile wall
Build a glider to your own specifications
Create your own inlay cutting boards
Carve a fidget spinner toy
Craft wooden 3D stamps you can use to create your own greeting cards
The Pico Reset Button offers a direct and user-friendly solution for rebooting your Raspberry Pi Pico.
With the Reset Button, you no longer need to disconnect your Raspberry Pi Pico from the power source to reboot. Instead, the button allows you to quickly reboot with just a simple push of a button. Its compact size and easy installation by soldering it to just three points make it a handy tool.
The Reset Button is compatible with both the Raspberry Pi Pico and the newer Raspberry Pi Pico W and can be used regardless of model generation. Especially for hobbyists and developers the Pico Reset Button is a useful addition and allows an even easier and more efficient handling of the Raspberry Pi Pico.
Features
Ultra compact reset button
Allows restarting with just a simple push of a button
Reliable and permanent connection through soldering
Mounting: Soldering on the pins GND, GP22 & RUN
Dimensions: 9 x 7 x 4 mm
This portable WiFi weather station is the perfect blend of functionality and style, offering real-time updates on temperature, humidity, and time – all at a single glance.
Featuring a clear digital display, the station ensures that weather and time data are always easy to read and understand. Its minimalist design integrates seamlessly into any environment, adding a touch of modern sophistication without drawing unnecessary attention.
Features
Multi-Function Display: Shows weather, atmospheric pressure, min/max temperature, wind speed, city, country/region, date, day of the week, outdoor temperature & humidity – all at a glance.
Custom GIF Animations: Upload your own GIFs for a personalized display experience.
WiFi Connectivity: Automatically connects to the Internet to retrieve real-time weather and time data.
Power Supply: USB-C
Durable Plastic Casing
Dimensions: 45 x 35 x 40 mm
Elektor GREEN and GOLD members can download their digital edition here.
Not a member yet? Click here.
PbMonitor v1.0A Battery-Monitoring System for UPS and Energy Storage Applications
Solar Charge Controller with MPPT (1)Basic Principles of a Solar Controller for Stand-Alone Systems
B-Field Integration Magnetometer With Home-Made Sensors
Precise or Accurate?Your Instruments Need to Be Both!
AD7124 A Precision ADC in PracticeFeatures for Sensor Signal Conditioning
PID Control ToolOptimize Your Parameters Easily
embedded world 2025
Starting Out in Electronics……Continues with Tone Control
Academy Pro BoxBook + Online Course + Hardware
Milliohmmeter AdapterUses the Precision of Your Multimeter
The Next Leap in SemiconductorsOnward Toward 1.4 nm
Through-Hole Technology ConnectorsThe Best of Two Worlds: THR
Frequency CounterPortable and Auto-Calibrating Via GPS
Analog MetersPeculiar Parts, the Series
Stand-Alone Crystal TesterHow Accurate Is Your Clock Source?
Low-Cost I²C TesterConnect I²C Devices Directly to Your PC
From Life’s ExperienceWho Doesn’t Honor the Small Things?
2025: An AI OdysseyThe Transformative Impact on Software Development
Err-lectronicsCorrections, Updates, and Readers’ Letters
Raspberry Pi Standalone MIDI Synthesizer (2)Enhancing Our Setup with Intelligence
Nortonized Wien Bridge OscillatorSmall Changes Yield Significant Improvements
Putting a $0.10 Controller to the TestThe CH32V003 RISC-V Microcontroller and MounRiver Studio in Practice
An FPGA-Based Audio Player with Equalizer (2)Adding Volume Control, Advanced Mixing, and a Web Interface
Elektor GREEN and GOLD members can download their digital edition here.
Not a member yet? Click here.
Audio DSP FX Processor BoardPart 1: Features and Design
50 Years of Elektor in English
KiCad 8Top New and Updated Features
Elektor MultiCalculator KitAn Arduino-Based Calculator Kit for Electronic Purposes
Low-Cost GNSS RTK SystemsWith Centimeter-Level Degree of Accuracy
PCB Layout and SafetyHints for a Safe, Long-Life Design of Your Boards
Opamp TesterFor Audio and Other Applications
Project Update #4: ESP32-Based Energy MeterEnergy Monitoring with MQTT
Real-Time Spectrum Analyzer with Waveguide Technology and Multi-Interface PCsAaronia Establishes New Product Segment and Presents First Prototypes at Electronica in Munich
Applications of Ynvisible’s E-paper DisplaysTransform Businesses and Shape the Future
SMT InductorsCoils and Ferrites — Selection Made Easy
Arrow Electronics to Showcase Innovative Technologies at electronica 2024
Using EMI Shielding to Achieve Electromagnetic Compatibility Compliance
The Ultimate Tool for Every Electronics EnthusiastUnlock Endless Possibilities with Red Pitaya and 1,000+ Click Boards™
V-LD1 Distance Radar Module
Siglent Presents Its New Vector Network Analyzer Platform SNA6000A
HDI in the MiddleA New Cost-Effective PCB Pooling Service for Tiny BGAs
Remote Access IoT LabOne and Only Solution for Remote Learning and Development in Embedded Industry
Challenges of DFM Analysis for Flex and Rigid-Flex Design
From Life's ExperienceMicrotechnophobia
3D Christmas TreeA 3D PCB with a Low-Cost, 32-bit Microcontroller
Starting Out in Electronics……Continues with the Opamp!
An Autonomous Sensor Node (Project Update #1)Reducing Idle Power Consumption with External RTC and Power Switch
2024: An AI OdysseyA Look Back at the Future
LED Displays with the MAX7219A Hands-On Approach to a Great Chip
Err-lectronicsCorrections, Updates, and Readers’ Letters
VibroTactile GlovesA Breakthrough for Parkinson’s Patients
Elektor GREEN and GOLD members can download their digital edition here.
Not a member yet? Click here.
An Autonomous Sensor NodeLoRa-Based Data Transmission and Power by Solar Cells
Elektor eXpansion Board v1.0For ESP32-S3 and other XIAO controller boards
Model Railroad with CameraInstalling an ESP32 CAM Module
Broadband Magnetic Antenna for Long WaveMultiple Channels Without Tuning
TensorFlow Lite on Small MicrocontrollersA (Very) Beginner’s Point of View
A Hub for RS-422 and RS-485 DevicesWire Your Bus Like a Star
RF ProbeWith LED Bar Graph
Starting Out in Electronics……Reviews More Opamp Circuits
Open VarioThe Open-Source Multifunction Variometer for Paragliding
From Life’s ExperienceAbout Taking Things for Granted
AI-Based Water Meter Reading (Part 2)Get Your Old Meter Onto the IoT!
ML-Based Pest DetectionSmart Agriculture Device With IoT Connectivity
Why Anybus CompactCom Is the Ideal Choice for Embedded Industrial Communication
IQRF Communication StandardReliability for Lossy, Low-Rate Wireless Mesh Networks
How to Build a Smart Agricultural RobotEssential Technical Considerations and Challenges
Audio Notch Filter with Adjustable FrequencyUniversal Solution for Suppressing Frequencies in Audio Applications
The LeoINAGPS SystemGets Useful Insights on Your Electric Vehicle
Solar-Powered LoRa NodeA Modular, Compact, and Versatile IoT Solution
AWS for Arduino and Co. (2)Sending Data Using AWS IoT ExpressLink
Err-lectronicsCorrections, Updates, and Readers’ Letters
2024: An AI OdysseyDesktop Versus Embedded Accelerators: A Look at Some Options
ESP32 Range ExtenderA Simple Antenna Modification
This 900 MHz radio version can be used for either 868 MHz or 915 MHz transmission/reception – the exact radio frequency is determined when you load the software since it can be tuned around dynamically.
At the Feather 32u4's heart is at ATmega32u4 clocked at 8 MHz and at 3.3 V logic. This chip has 32 K of flash and 2 K of RAM, with built in USB so not only does it have a USB-to-Serial program & debug capability built in with no need for an FTDI-like chip, it can also act like a mouse, keyboard, USB MIDI device, etc.
To make it easy to use for portable projects, we added a connector for any 3.7 V Lithium polymer batteries and built in battery charging. You don't need a battery, it will run just fine straight from the micro USB connector. But, if you do have a battery, you can take it on the go, then plug in the USB to recharge. The Feather will automatically switch over to USB power when its available. We also tied the battery thru a divider to an analog pin, so you can measure and monitor the battery voltage to detect when you need a recharge.
Features
Measures 2.0' x 0.9' x 0.28' (51 x 23 x 8 mm) without headers soldered in
Light as a (large?) feather – 5.5 grams
ATmega32u4 @ 8 MHz with 3.3 V logic/power
3.3 V regulator with 500 mA peak current output
USB native support, comes with USB bootloader and serial port debugging
You also get tons of pins – 20 GPIO pins
Hardware Serial, hardware I²C, hardware SPI support
7x PWM pins
10x analog inputs
Built in 100 mA lipoly charger with charging status indicator LED
Pin #13 red LED for general purpose blinking
Power/enable pin
4 mounting holes
Reset button
The Feather 32u4 Radio uses the extra space left over to add an RFM69HCW 868/915 MHz radio module. These radios are not good for transmitting audio or video, but they do work quite well for small data packet transmission when you ned more range than 2.4 GHz (BT, BLE, WiFi, ZigBee)
SX1231 based module with SPI interface
Packet radio with ready-to-go Arduino libraries
Uses the license-free ISM band ('European ISM' @ 868 MHz or 'American ISM' @ 915 MHz)
+13 to +20 dBm up to 100 mW Power Output Capability (power output selectable in software)
50 mA (+13 dBm) to 150 mA (+20 dBm) current draw for transmissions
Range of approx. 350 meters, depending on obstructions, frequency, antenna and power output
Create multipoint networks with individual node addresses
Encrypted packet engine with AES-128
Simple wire antenna or spot for uFL connector
Comes fully assembled and tested, with a USB bootloader that lets you quickly use it with the Arduino IDE. Headrs are also included so you can solder it in and plug into a solderless breadboard. You will need to cut and solder on a small piece of wire (any solid or stranded core is fine) in order to create your antenna.
Lipoly battery and USB cable not included.
Grove is an open-source, modulated, and ready-to-use toolset and takes a building block approach to assemble electronics. This Kit includes a Base Shield to which the various Grove modules can be connected both individually, or together in various combinations to create fun and exciting projects. All of the modules use a Grove connector, which connects each of the components to a Base Shield in just a few seconds. The Base Shield can then be mounted onto an Arduino UNO board and can be programmed using the Arduino IDE. Instructions for connecting and programming the different modules are also included in this kit. This kit was elaborated in collaboration with Seeed Studio and provides the Arduino community with the opportunity to build projects with minimal effort of both wiring and coding. This kit acts as a bridge to the world of Grove and provides a flexible way for Makers to extend their projects to include other complex Grove modules. The Kit comes includes access to an online platform with all the instructions required to plug, sketch and play with the different Grove Modules. Please note: This kit does not include the Arduino Uno board. Included 1 Base Shield that is designed to fit on top of an Arduino UNO board. It comes equipped with 16 grove connectors, which, when placed on top of the UNO, provides the functionality to various pins. It includes: 7x digital connections 4x analog connections 4x I²C connections 1x UART connection 10 Grove modules included can be connected to the base shield, either through the digital, analog, or I2C connectors on the shield. Let's take a quick look at them: The LED - a simple LED that can be turned ON or OFF, or dimmed. The button - pushbutton can either be in a HIGH or LOW state. The potentiometer - a variable resistor that increases or decreases resistance when turning its knob. The buzzer - a piezo speaker that is used to produce binary sounds. The light sensor - a photoresistor that reads light intensity. The sound sensor - a tiny microphone that measures sound vibrations. The air pressure sensor - reads air pressure, using the I²C protocol. The temperature sensor - reads temperature and humidity at the same time. The accelerometer - a sensor used for orientation, used for detecting movement. The OLED screen - a screen that values or messages can be printed to. 6 Grove cables allow you to easily connect the modules to the Base Shield without any soldering required. The Arduino Sensor Kit Library is a wrapper that contains links to other libraries related to certain modules such as the accelerometer, air pressure sensor, temperature sensor, and OLED display. This library provides easy-to-use APIs that will help you build a clear mental model of the concepts you will be using.
The PoE HAT (G) is an IEEE 802.3af/at-compliant PoE (Power Over Ethernet) HAT for Raspberry Pi 5. By using with a PoE router or switch that supports the IEEE 802.3af/at network standard, it is possible to provide both network connection and power supply for your Raspberry Pi in only one Ethernet cable.
Features
Standard Raspberry Pi 40-pin GPIO header
PoE capability, IEEE 802.3af/at-compliant
Onboard original IC solution for more stable PoE power performance
Adopts non-isolated switched-mode power supply (SMPS)
Compact and easy to assemble
Specifications
PoE power input
38~57 V DC in
Power output
GPIO header: 5 V/5 A (max)
Network standard
IEEE 802.3af/at PoE
Dimensions
56.5 x 64.98 mm
Included
1x PoE HAT (G)
1x 2x2 header
1x 2x20 header
1x Standoffs pack
Downloads
Wiki
W6100-EVB-Pico is a microcontroller evaluation board based on the Raspberry Pi RP2040 and fully hardwired TCP/IP controller W6100 – and basically works the same as Raspberry Pi Pico board but with additional Ethernet via W6100. Features RP2040 microcontroller with 2 MByte Flash Dual-core cortex M0+ at up to 133 MHz 264 kByte multi-bank high performance SRAM External Quad-SPI Flash with eXecute In Place (XIP) High performance full-crossbar bus fabric 30 multi-function General Purpose I/O (4 can be used for ADC) 1.8-3.3 V I/O voltage (Note: Pico I/O voltage is fixed at 3.3 V) 12-bit 500 ksps Analogue to Digital Converter (ADC) Various digital peripherals 2x UART, 2x I²C, 2x SPI, 16x PWM channels 1x Timer with 4 alarms, 1x Real Time Counter 2x Programmable IO (PIO) blocks, 8 state machines total Flexible, user-programmable high-speed I/O Can emulate interfaces such as SD card and VGA Includes W6100 Supports Hardwired Internet Protocols: TCP, UDP, IPv6, IPv4, ICMPv6, ICMPv4, IGMP, MLDv1, ARP, PPPoE Supports 8 independent SOCKETs simultaneously with 32 KB memory Internal 16 Kbytes Memory for TX/RX Buffers SPI Interface Micro-USB B port for power and data (and for reprogramming the Flash) 40-pin 21x51 ‘DIP’ style 1 mm thick PCB with 0.1' through-hole pins also with edge castellations 3-pin ARM Serial Wire Debug (SWD) port 10 / 100 Ethernet PHY embedded Supports Auto Negotiation Full / Half Duplex 10 / 100 Based Built-in RJ45 (RB1-125BAG1A) Built-in LDO (LM8805SF5-33V) Downloads Documents Getting started on GitHub Firmware