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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
Excellent
The new generation of HiFiBerry amplifier for high-quality stereo HD sound.
Up to 60 Watt output power with stereo use
The HiFiBerry AMP2 is an amplifier for the Raspberry Pi. With this amplifier you can connect your speakers directly.
We therefore recommend the AMP2 to all customers who want a high-end solution for multiroom audio installations.
- new design with black board and high-quality workmanship
- up to 60 Watt output power with stereo use
- Digital Analogue Converter included - no external DAC required
- improved power supply for connected Raspberry Pi and other devices
- compatible with Raspberry Pi
- 4 up to 8 Ohm speakers can be operated
- Spacer included in delivery for direct mounting on the Raspberry Pi
- HD audio with sampling rates up to 192 kHz
- Texas Instruments TAS5756m
- fully digital audio processing
- powerful voltage regulator that supplies both the AMP2 and the Raspberry Pi, supports 12-24 Volt
- only one power supply unit required - Attention: not included
Recommended
Featured
- Supports 12th Gen Intel® Core™ Series Processors
- Dual Channel Non-ECC Unbuffered DDR4, 2 DIMMs
- 4+1+1 Hybrid Digital VRM Design
- Intel® GbE LAN with cFosSpeed Internet Accelerator Software
- NVMe PCIe 3.0 x4 M.2
- High Quality Audio Capacitors and Audio Noise Guard
- Smart Fan 6 Features Multiple Temperature Sensors , Hybrid Fan Headers with FAN STOP
- GIGABYTE APP Center, Simple and Easy Use
- Anti-Sulfur Resistors Design
Alternative
- Intel® Socket LGA 1700?Support for 13th and 12th processors.
- Unmatched performance?Twin 16*+1+2 phases Digital VRM solution
- Dual Channel DDR5?4*SMD DIMMs with XMP 3.0 memory module support
- Next generation memory?4*PCIe 4.0 x4 M.2 connectors
- Highly developed design and M.2 Thermal Guard III: to ensure VRM current stability and M.2 SSD performance
- EZ-Latch Plus?M.2 connector with quick release and screwless design
- Fast networking?2.5GbE LAN & Wi-Fi 6E 802.11ax
- Advanced connectivity? DP, HDMI, front USB-C® 10Gb/s, rear USB-C® 20Gb/s
- Smart Fan 6? Multiple temperature sensors, hybrid fan headers with FAN STOP
- Q-Flash Plus? BIOS updates without installing the CPU, memory and graphics card
* 8+8 phases parallel power supply design
• Connectors:
internal:
1 x U.2 SFF-8639 female
1 x PCI Express x16 (4-Lane), V4.0
1 x SATA 6 Gb/s 7 pin plug
• For 2.5'' NVMe SSD or SATA HDD / SSD
• Bootable
• Supports NVM Express (NVMe)
• Supports TRIM
• 1 x LED indicator
• 4 x mounting hole for 2.5'' drive
System requirements
• Linux Kernel 5.4 or above
• Windows 8.1/8.1-64/10/10-64
• Windows Server 2019
• PC with one free PCI Express x16 / x32 slot
Package content
• PCI Express card
• User manual
Package
• Retail Box
Specification
• Connectors:
internal:
1 x 4 pin Floppy male
1 x SATA 7 pin plug
1 x 9 pin USB 2.0 pin header male
external:
1 x eSATApd male
• Voltage: eSATApd 5 V and 12 V
System requirements
• PC with one free slot
• Power supply with one free 4 pin floppy power connector
• Motherboard with a free 7 pin SATA plug
• Motherboard with a free 9 pin USB 2.0 pin header male
Package content
• Slot bracket eSATApd
• Floppy power cable, length ca. 49 cm
• SATA data cable, length ca. 49 cm
• USB pin header female cable, length ca. 46 cm
Package
• Poly bag
Specifications
- Connections:
- 1 x 68 pin U.2 SFF-8639 connector
- 1 x 36-pin SFF-8643 socket
- 1 x 67-pin M.2 key M slot
- 1 x Molex 4-pin plug
- Interface: PCIe
- Suitable for M.2 modules of format: 22110, 2280, 2260, 2242 and 2230 with key M or key B+M on a PCIe basis
- Maximum height of components on the module: 1.35 mm. Double-sided modules can be used
- LEDs for power and activity
- Supports NVM Express (NVMe)
- Maximum output current: 4 A
- Overcurrent protection, overheating protection
- ESD protection up to 2 kV
- Dimensions (LxWxH): approx. 145 x 52 x 16 mm
System requirements
- Windows 7/7-64/8.1/8.1-64/10/10-64, Linux from Kernel 4.6.x
- One free U.2 SFF-8639 interface or
- one free U.2 SFF-8643 interface
Contents
- Converter
- Fastening material
- User manual
Packaging
- Retail box
PCIe fork
The card requires the PCIe fork (bifurcation) function of the motherboard to split the PCIe signal if multiple ports are assigned.
Note
Without PCIe bifurcation, only the first M.2 port of the card can be used.
Specifications
- Connections:
- 4x 67-pin M.2 key M slot
- 1x PCI Express x16, V4.0
- Internal:
- Interface: PCIe
- Supports M.2 modules in formats 2280, 2260, 2242 and 2230 with key M or key B+M on PCIe basis
- Maximum height of components on the module: 1.5 mm, use of two-sided modules possible
- Supports NVM Express (NVMe)
- 4 x LED indicator
- Bootable, UEFI version 2.3.1 or higher
- Supports S.M.A.R.T.
- Supports TRIM
- Heat sink dimensions: (LxWxH): approx. 134 x 93 x 10 mm
System requirements
- Linux Kernel 5.8 or higher
- Windows 8.1/8.1-64/10/10-64
- Windows Server 2016
- PC with one free PCI Express x16/x32 slot
- Motherboard and BIOS with PCIe bifurcation (fork) support
• Connectors:
1 x 67 pin M.2 key B slot >
1 x mSATA male
• Interface: SATA
• Supports M.2 modules in format 2280, 2260 and 2242 with key B or key B+M based on
SATA
• Maximum height of the components on the module: 1.5 mm, application of double-sided
assembled modules supported
• Bootable
• 1 x LED indicator
• Dimensions (LxWxH): ca. 95 x 30 x 4 mm
System requirements
• A free mSATA interface
Package content
• Adapter
• Screwdriver
• Mounting material
Package
• Retail Box
- the M.2 HAT+ M Key is a mechanical adapter board that converts between this connector and a sub-standard of M.2
- it supports devices with M.2 M-Key edge connectors in the 2230 and 2242 form factors
- it is capable of supplying up to 3 A to connected M.2 devices
- it complies with the Raspberry Pi HAT+ specification
- it is automatically recognized by the latest Raspberry Pi software/firmware
The Raspberry Pi M.2 HAT+ comes with a 16 mm high stacking head and threaded standoffs so that it can be mounted on a Raspberry Pi 5 together with the Raspberry Pi Active Cooler. This configuration ensures compatibility and functionality with the latest Raspberry Pi model and supports efficient heat dissipation and stable operation of the connected M.2 devices.
Technical specifications
- Supports the PCIe 2.0 interface with one lane (500 MB/s peak transfer rate)
- Supports devices that use the M.2 M-Key connector
- Supports devices with the form factors 2230 ... 2242
- Can deliver up to 3 A to connected M.2 devices
- Includes power and activity LEDs
- Complies with the Raspberry Pi HAT+ specification
Scope of delivery
- Ribbon cable
- 16 mm spacer socket strip
- Threaded spacers and screws
- Screw for securing and supporting the M.2 peripheral device
In summary, the Raspberry Pi M.2 HAT+ provides a significant enhancement for users of the Raspberry Pi 5 by enabling extended connectivity for fast storage solutions and other peripherals that utilize PCIe technology. This helps to increase the overall performance of the system.
Note
The original Raspberry Pi active fan fits between the Pi 5 and this M.2 HAT
External links
https://www.raspberrypi.com/news/double-standards/
Specification
• Connectors:
1 x 67 pin M.2 Key B male >
1 x 67 pin M.2 key B slot
1 x Nano SIM slot
• Form factor: M.2 22110
• Supports M.2 modules in format 2280, 2260, 2242 and 2230 with key B or key B+M
• Maximum height of the components on the module: 1.5 mm,
application of double-sided assembled modules supported
• Dimensions (LxWxH): ca. 110 x 22 x 5 mm
System requirements
• One free M.2 key B slot
Package content
• Adapter
• Mounting material
Package
• Box
Motherboards REICHELT IE Best Products
In addition, the UNO R4 WiFi features an integrated 12x8 LED matrix, a QWIIC connector, a VRTC pin for a backup battery, and an OFF pin.
With the UNO R4 WiFi, you can easily upgrade your project and add wireless connectivity to extend the reach of your current project.
If this is your first project, this board simply has everything you need to spark your maximum creativity.
Hardware Compatibility with UNO Form Factor
The UNO R4 WiFi maintains the same form factor, pinout, and 5V operating voltage as its predecessor the UNO R3. This ensures a seamless transition for existing shields and projects.
Expanded memory and faster clock
The UNO R4 WiFi has more memory and a higher clock frequency, enabling more precise calculations and effortless processing of complex projects.
Additional on-board peripheral capabilities
The UNO R4 WiFi offers a range of on-board peripherals, including a 12-bit DAC, CAN-BUS, and OP AMP, providing enhanced capabilities and design flexibility.
HID Support
Integrated HID support allows the UNO R4 WiFi to simulate a mouse or keyboard via USB-C.
Wi-Fi® and Bluetooth®
The UNO R4 WiFi features an ESP32-S3 module, enabling wireless connectivity. Combined with the Arduino IoT Cloud, Makers can now monitor and control their projects remotely.
QWIIC connector
The UNO R4 WiFi features a QWIIC I2C connector that allows for easy connection into the QWIIC ecosystem. Adapter cables allow compatibility with sensors and actuators based on other connector standards.
Support for a battery-powered RTC
The UNO includes additional pins, such as an ''OFF'' pin to turn off the board and a ''VRTC'' pin that powers the internal real-time clock and keeps it running.
LED Matrix
The UNO R4 WiFi has a bright 12x8 red LED matrix, ideal for creative projects with animations or plotting sensor data without the need for additional hardware.
Runtime error diagnostics
The UNO R4 WiFi includes an error recovery mechanism that detects runtime crashes and provides detailed explanations with hints on the line of code that caused the crash.
Specifications
• USB-C connector
• Renesas RA4M1 (Cortex M4)
• HID interface (simulate a mouse or keyboard)
• improved power supply (up to 24 V via VIN)
• CAN bus
• DAC (12 bits)
• OP AMP
• WiFi/BT LE (ESP32-S3)
• fully addressable LED matrix (12x8 matrix)
• QWIIC I2C connector
• RTC (with support for a buffer battery)
• diagnosis of runtime errors
External links
https://docs.arduino.cc/
- Supports AMD Ryzen™ 5000 Series/ Ryzen™ 5000 G-Series/ Ryzen™ 4000 G-Series and Ryzen™ 3000 Series Processors
- Dual Channel ECC/ Non-ECC Unbuffered DDR4, 4 DIMMs
- Ultra Durable™ PCIe 4.0 Ready x16 Slot
- Dual Ultra-Fast NVMe PCIe 4.0/3.0 M.2 Connectors
- High Quality Audio Capacitors and Audio Noise Guard for Ultimate Audio Quality
- GbE LAN with Bandwidth Management
- Rear DisplayPort and HDMI for Multi-display Support
- Smart Fan 5 Features Multiple Temperature Sensors, Hybrid Fan Headers with FAN STOP
- Anti-Sulfur Resistors Design
• Inner diameter: 3 mm
• Outer diameter: 8 mm
• Thickness: 0.5mm
The Portenta H7 Lite Connected is a cost-effective solution perfect for developers who want to harness the processing power of the Portenta H7 without relying on video output or advanced security features.
Compared to the Portenta H7 Lite, the Connected variant supports wireless transmission standards, which as usual facilitates the operation but also the programming of the system - last but not least, the electrical separation between PC and board has advantages especially in the development process.
The Portenta H7 Lite board simultaneously executes high-level code together with real-time tasks.
Program it with high-level languages and AI while performing low-latency operations on its customizable hardware. Its two asymmetric cores allow it to simultaneously run high-level code, such as protocol stacks, machine learning, or even interpreted languages like MicroPython or Javascript along with low-level real-time tasks. The main processor of the Portenta H7 is a ''dual-core unit'' consisting of a Cortex ® M7, running at 480 MHz, and a Cortex ® M4, running at 240 MHz. The two cores communicate via a ''remote procedure call'' mechanism, which seamlessly handles the calling of functions to the other processor.
Both processors share all on-chip peripherals and are executable with
• Arduino sketches on the mbedOS
• native mbed applications
• Micropython / Javascript via an interpreter
• TensorFlow Lite
The Portenta H7 board follows the Arduino MKR form factor, but is also equipped with two 80-pin high-density connectors on the bottom of the board. This ensures scalability for a wide range of applications by simply customizing your Portenta board with a Portenta Shield according to your needs (see ''Accessories and Alternative Products'')
Applications
• high quality industrial machines
• laboratory equipment
• computer vision
• PLCs
• industrial user interfaces
• robotics controls
• mission critical devices
• dedicated stationary computer
• high speed boot calculation (ms)
Technical Data
• STM32H747 dual core processor with graphics engine
• 8 MB SDRAM
• 16 MB NOR flash memory
• 10/100 Ethernet Phy
• WiFi 802.11 b/g/n
• Bluetooth 5.1
• USB HS
bulletpoint# Microchip ATECC608 Crypto
• USB-C (Host/Device/PD/High-/Full-Speed)
Delock M.2 PCIe card for gaming and server
Especially in the gaming and server range, this card is ideally suited to expand the existing system by four fast M.2 NVMe slots. All slots can be used simultaneously.
• Connectors:
internal:
4 x 67 pin M.2 key M slot
1 x PCI Express x16, V3.0
• Chipset: Asmedia ASM2824
• Interface: PCIe / NVMe
• Supports M.2 modules in format 2280, 2260, 2242 and 2230 with key M or key B+M
based on PCIe
• Maximum height of the components on the module: 1.5 mm, application of double-
sided assembled modules supported
• Data transfer rate up to 32 Gbps
• Supports NVM Express (NVMe)
• Bootable, ex UEFI version 2.3.1
• Supports S.M.A.R.T.
• 1 x 40 mm fan for active cooling of the M.2 modules
• 1 x heat sink
• 4 x LED indicator
• Dimensions heat sink (LxWxH): ca. 202 x 95 x 8 mm
System requirements
• Linux Kernel 3.17 or above
• Windows 8.1/8.1-64/10/10-64
• PC with one free PCI Express x16 / x32 slot
Package content
• PCI Express card with fan
• Heat sink
• M.2 mounting material
• Screwdriver
• 4 x thermal conductive pad
• User manual
Package
• Box
- Intel® Socket LGA 1700: support for 13th and 12th processors.
- Unmatched performance: Hybrid 6+2+1 Phases Digital VRM solution
- Dual channel DDR4: 4*DIMMs XMP memory module support
- Next generation memory: 2*PCIe 4.0 x4 M.2 connectors
- M.2 Thermal Guard: to ensure M.2 SSD performance
- EZ-Latch: PCIe 4.0x16 slot with quick release design
- Fast networking: 2.5GbE LAN
- Advanced connectivity: rear USB-C® 10Gb/s, DP, HDMI
- Smart Fan 6: multiple temperature sensors, hybrid fan headers with FAN STOP
- Q-Flash Plus: BIOS updates without installing the CPU, memory and graphics card
This USB pin header can be connected to a free USB pin header plug on your motherboard to expand your internal system by 2 USB-A ports. This enables you to connect e.g. a USB memory stick or USB WIFI stick internally. From the motherboard, the two USB ports are aligned to the right and left.
Technical data
• 1 x 9-pin 2.54 mm pin header socket
• For 2 x USB 2.0 A sockets directly on the motherboard
• USB port orientation: right, left
System requirements
• Motherboard with one free USB 9-pin connector
Package contents
• USB pin header socket > 2 x USB 2.0 port
Highlights:
- Flash BIOS button
- Core boost technology
- Digital PWM
- Support for water cooling
- M.2 Shield Frozr
- DDR4 Boost
- User-friendly design
- Benefits for your workflow
- Supports 13th/12th Gen Intel® Core™ Series Processors
- Dual Channel Non-ECC Unbuffered DDR4, 2 DIMMs
- GbE LAN with Bandwidth Management
- NVMe PCIe 3.0 x4 M.2
- High Quality Audio Capacitors and Audio Noise Guard
- Smart Fan 6 Features Multiple Temperature Sensors , Hybrid Fan Headers with FAN STOP
- GIGABYTE APP Center, Simple and Easy Use
- Anti-Sulfur Resistors Design
Specification
• Connectors:
1 x 67 pin M.2 Key M male
1 x 36 pin SFF-8643 female
• Interface: PCIe
• Form factor: M.2 2242
• Suitable for M.2 slot with key M based on PCIe
• Compatible to PCI Express V3.0
• Data transfer rate up to 32 Gbps
• Supports NVM Express (NVMe)
• Operating temperature: -10 °C ~ 85 °C
System requirements
• Windows 7/7-64/8.1/8.1-64/10/10-64
• A free M.2 interface with key M
Package content
• Adapter M.2 > SFF-8643
Package
• Retail Box
- Intel® Socket LGA 1700: support for 13th and 12th processors.
- Unmatched performance: Hybrid 8+2+1 Phases Digital VRM solution
- Dual channel DDR4: 4*DIMMs XMP memory module support
- Next-generation memory: 2*PCIe 4.0 x4 M.2 connectors
- EZ-Latch: PCIe 4.0x16 slot with quick release design
- Fast networking: GbE LAN
- Advanced connectivity: rear USB-C® 20Gb/s, DP, HDMI
- Smart Fan 6: multiple temperature sensors, hybrid fan headers with FAN STOP
- Q-Flash Plus: BIOS updates without installing the CPU, memory and graphics card
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...
The Portenta H7 board simultaneously executes high-level code together with real-time tasks.
Program it with high-level languages and AI while performing low-latency operations on its customizable hardware. Its two asymmetric cores allow simultaneous execution of high-level code, such as protocol stacks, machine learning, or even interpreted languages like MicroPython or Javascript together with low-level real-time tasks. The main processor of the Portenta H7 is a ''dual-core unit'' consisting of a Cortex ® M7, running at 480 MHz, and a Cortex ® M4, running at 240 MHz. The two cores communicate via a ''remote procedure call'' mechanism that seamlessly calls functions on the other processor.
Both processors share the entire chip-internal periphery and are executable with
• Arduino sketches on the mbedOS
• native mbed applications
• Micropython / Javascript via an interpreter
• TensorFlow Lite
The on-board wireless module allows simultaneous management of WiFi and Bluetooth connectivity. The WiFi interface can be operated as an access point, a station or as a dual-mode simultaneous AP/STA and can provide up to 65 Mbps transmission rate. The Bluetooth interface supports Bluetooth Classic and BLE.
The Portenta H7 board follows the Arduino MKR form factor, but is additionally equipped with two 80-pin high-density connectors on the bottom of the board. This ensures scalability for a wide range of applications by simply adapting your Portenta board with a Portenta shield to your needs.
Applications
• high quality industrial machinery
• laboratory equipment
• Computer vision
• PLCs
• industrial user interfaces
• Robotic control
• mission critical devices
• dedicated stationary computer
• High-speed boot calculation (ms)
Technical data
• STM32H747 Dual-core processor with graphics engine
• 8 MB SDRAM
• 16 MB NOR flash memory
• 10/100 Ethernet Phy
• USB HS
• NXP SE050C2 Crypto
• WiFi/BT module
• ceramic antenna
• DisplayPort via USB-C
Thanks to the u-blox NINA-W102 radio module, the RP2040 CONNECT is the only networked board in this series, and in addition, the built-in microphone is used to activate and control the board, as well as voice recognition via AI. Furthermore, an intelligent, six-axis IMU with AI features ensures that the board detects movements such as falling down, tapping twice, etc.
Arduino Cloud
Program and operate your NANO RP2040 CONNECT directly from your browser. Fully compatible, from day one.
Upload and operate your sketches wirelessly with the smartphone app ''Arduino IoT Remote''.
Technical features
• WLAN: 802.11b/g/n
• Bluetooth Low Energy v4.2
• supports Arduino IDE 2.0
• compatible with Raspberry Pi RP2040 software
• full support for MicroPython
Notice:
• this board comes without integrated headers.
• incl. free OpenMV license for machine vision
- supports Intel® Core™, Pentium® Gold and Celeron® 12th and 13th generation processors for LGA 1700 socket
- supports DDR4 memory, dual channel DDR4 5333+MHz (OC)
- enhanced power supply design: 12+1 Duet Rail Power System with P-PAK, 8-pin + 4-pin CPU power connectors, Core Boost, Memory Boost
- premium thermal solution: extended heatsink, MOSFET thermal pads with a value of 7 W/mK, additional choke thermal pads and M.2 Shield Frozr for a high performance system and uninterrupted gaming experience
- High-quality PCB: 6-layer PCB made of 2 ounces of thickened copper and server-level material
- lightning fast gaming experience: PCIe 4.0 slot, Lightning Gen 4 x4 M.2
- Intel Turbo USB 3.2 Gen 2: With Intel USB 3.2 Gen2 controller, Turbo USB ensures uninterrupted connection with more stability and fastest USB speeds
- 2.5G LAN with Wi-Fi 6E Solution: Enhanced networking solution for professional and multimedia use. Provides a secure, stable and fast network connection
- AUDIO BOOST: Treat your ears to studio-quality sound for an immersive gaming experience
- AMD Socket AM5:Supports AMD Ryzen™ 7000 Series Processors
- Unparalleled Performance:5+2+2 Phases Digital VRM Solution
- Dual Channel DDR5:4*SMD DIMMs with AMD EXPO™ & Intel® XMP Memory Module Support
- SuperSpeed Storage:PCIe 4.0 x4 M.2 Connector
- EZ-Latch:PCIe x16 Slot with Quick Release Design
- Fast Networks:2.5GbE LAN
- Extended Connectivity:2*DP, HDMI
- Smart Fan 6:Features Multiple Temperature Sensors, Hybrid Fan Headers with FAN STOP
- Q-Flash Plus:Update BIOS Without Installing the CPU, Memory and Graphics Card
With key features including a robust 51-W power budget, a convenient 12-V DC output for external devices and gigabit-speed networking, this LattePanda IOTA PoE module is the definitive solution for developing reliable, high-performance systems in industrial control, edge computing and smart surveillance applications.
In contrast, the H4+ features four SATA ports, a second Ethernet port and dual BIOS, making it the perfect choice for users who need storage for high-performance NAS and/or use it for routing functions.
Finally, although it is more expensive, we also have developed the H4 Ultra model, which can benefit from the powerful performance with twice the number of CPU cores (from 4 to 8) and more GPU execution units. Thanks to the large number of cores and high clock frequency, the H4 Ultra model's computing power is twice as high as that of the H4 and H4+ models, as the results of multithreading benchmarking show.
The Delta 19 V 90 W AC/DC adapter has an input voltage range of 100 - 240 V AC, an output voltage of 19 V DC and a power of 90 W. It is a high-quality, multifunctional power adapter. It is not only suitable for the LattePanda Mu Full-Function Evaluation Carrier Board, but also provides other compatible devices with a reliable and stable power supply.
Please note!
Always turn off the power source before connecting or disconnecting the LattePanda Mu Full-Function Evaluation Carrier Board or other devices, as well as cables or internal interfaces.
