Linux Som RK3568 for Advertising
Linux Som RK3568 for Advertising
Product Description
If you are looking for more details, kindly visit Linux SOM for Advertising.
Model: x3568cv2
Optional configuration: RAM(LPDDR4)+ROM(eMMC) 2+16G and 4+16G
Features of Linux SOM
● 64-bit 4-core A55 processor, 22nm process, main frequency up to 2.0GHz, CPU running time 115027
● 1Tops NPU, RKNN-Toolkit, supports one-click caffe/TensorFlow/TF-Lite/ONNX PyTorch/Keras/Darknet mainstream architecture model conversion.
● Commercial grade (0 'C-80' C) & Industrial grade (-40 'C-85' C)
● Support H.264/H.265/VP9/VP8 video decoding and 1080P 100fps H.265/H264/VP9 video encoding, can support the simultaneous decoding of multiple video sources. NVR is supported.
● Support 4K@60Hz and HDR10
● Dual-core GPU-ARM Mali-G52, 2EE Graphics processor Bifrost-based supports all major modern graphics apis
● Built-in 2D acceleration hard disk, support OpenGL.ES1.1/2.0/3.2, OpenCL2.0, Vulkan 1.1
● Multi-screen aberration (dual screen 3 screens) Support LVDS HDMI eDP Mipi-DSI LCD RGB888
● Rich hard disk expansion interface: dual Gigabit Ethernet, SATA3.0, PCIe3.0, 4G, etc.
● OS: Android11 Linux Debain Ubuntu
Applications of Linux SOM
● Medical HMI face recognition
● Intelligent gateway
● Smart classroom
● Smart home
● Advertising machine
● Handheld terminal AGV
Why Choose Us
Rich Connectivity:
Our Linux SOM offers a variety of connectivity options, including HDMI, DisplayPort, USB, and Ethernet, allowing seamless integration with different types of advertising displays and networking infrastructure.
Reliable and Stable:
Built on a robust Linux platform,Obola’s SOM ensures reliable and stable operation for continuous advertising applications, minimizing downtime and ensuring a smooth user experience.
Scalability:
Our Linux SOM based on the RK3568 processor is scalable to support a range of advertising display sizes and configurations, from small standalone displays to large-scale digital signage deployments.
Explore unparalleled versatility and efficiency with our top-tier Linux SOM, offering seamless integration and robust performance for a diverse range of embedded applications.Please contact us.
Parameters of Linux SOM
CPU
RK3568
Main Frequency
Quad-core A55(2GHz)
Memory / Storage
DDR: 2GB standard, 4GB hardware compatible
emmc:4GB/8GB/16GB optional, 16GB standard
Power ICs
Use RK809, support dynamic FM, etc.
Operating System
android11.0, linux, debain, ubuntu
Interface of Linux SOM
LCD Interface
Support DSI/LVDS/EDP/HDMI interface output
Touch Interface
Capacitive touch, extendable with resistive touch using USB or serial port
Audio Interface
IIS/PCM/TDM Interface
SPDIF Interface
1 x 8-channel optical audio output interface
SD card interface
2 SDIO output channels
emmc Interface
On-board emmc interface, no additional pinout
Ethernet Interface
Supports 2-way Gigabit Ethernet
USB HOST2.0 interface
2-way HOST2.0
USB HOST3.0 interface
2-way HOST3.0
OTG Interface
1 OTG interface (and one of the USB3.0 multiplexed)
UART Interface
10-way serial port, support with flow control serial port
PWM Interface
16 PWM outputs
IIC Interface
6 IIC outputs
SPI Interface
4 SPI outputs
ADC Interface
2 ADC outputs (6 unpinned)
CAN Interface
3 CAN outputs
Camera Interface
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4-way CSI input
HDMI Interface
1 HDMI2.1 TX
PCIE Interface
1 x PCIe2.1
SATA Interface
3 way
Technical Parameters of Linux SOM
4V input voltage
4V/5A (4V/8A input recommended)
RTC input voltage
2.5 to 3V/100uA, powered by external coin cell battery
Output Voltage
3.3V/1.5A (can be used for base board power)
Operating temperature
0~70 degrees
Storage temperature
-10 ~40 degrees
Structure Diagram
Parameters
Appearance
Stamp hole method
Core board size
55mm*55mm*3mm
Pin spacing
1.0mm
Pin pad size
1.3mm*0.5mm
Pin Header Specifications
Number of pins
200PIN
Plate Layer
10 floors
Warpage
Less than 0.5%
Comparative Overview: Variscite i.MX6 based SoM Solutions
By: Liron Kaplan, Konstantin Sinyuk
Intro
i.MX applications processors by NXP (previously Freescale) are a single and multi-core ARM® based solution for a wide range of applications. Located at the top of this product category is the iMX6 Series – general purpose application processors. The i.MX series was designed to meet the needs of a wide range of segments such as medical, defense, industrial, IoT, multimedia and more.
Using the i.MX6 processor for a new project could be an excellent choice, but it is one that requires a deep understanding of the i.MX6 Hardware and Software’s strengths, limitations, development tools, and environment. Developing this kind of expertise requires a significant investment of time and money on not only the hardware but also the software side. Therefore, in today’s fast paced electronics market, many developers choose to gain a competitive edge by basing their product on a System on Modules (SoM).
Choosing the right i.MX6 based SoM for your project will enable faster time to market, maintain lower R&D costs, and can provide a scalable and upgradeable infrastructure for the next phase of your project. Perhaps the most important advantage of choosing the right SoM is the fact that it allows you to gain a competitive advantage by focusing on developing your application and user experience.
What’s in the article
This article will provide a comparative overview of four available iMX6 based SoMs designed by Variscite. We will analyze the differences in terms of features, performance, and configuration options between the SoMs. Then we will compare core features such as: CPU, Multimedia, Connectivity, Networking, Mechanical Size, Power Consumption, and Operating System while pointing out design limitations where relevant.
Featured products
Overview and Target Applications
This section of the article provides a general overview of each SoM and a first glance into which product is better suited for specific target markets/applications.
Optimal for Linux-based applications with rich peripherals options, low power consumption, and basic multimedia capabilities.
The VAR-SOM-6UL System on Module (SoM) / Computer on Module (CoM) is powered by NXP iMX6UL / iMX6ULL / iMX6ULZ ARM Cortex-A7 processor, up to 900MHz CPU Clock. The SoM is a member of the ‘VAR-SOM Pin2Pin’ product family, providing a maximum scalability range; from the entry-level i.MX6UL/6ULL platform, through the iMX6 platforms, I.MX 8M-MINI, i.MX 8X up to the i.MX 8QuadMax.
The Pin2Pin family offers Variscite’s customers a high level of scalability, extended lifetime availability and reduced development time, cost and risk.
The VAR-SOM-6UL is a highly flexible module that provides various interfaces and connectivity options, such as certified single 802.11b/g/n or dual-band Wi-Fi 802.11ac/a/b/g/n, Bluetooth/BLE, dual Ethernet, dual USB, audio, camera in, parallel RGB and LVDS display with touch panel and serial interfaces.
The system supports industrial temperature grades -40 to 85°C.
Key features: The VAR-SOM-6UL part of Variscite’s Pin2Pin System on Module family. Up to 1024MB DDR3L, 512MB NAND / 64GB eMMC, dual USB, Bluetooth 5.2 / BLE, 2D pixel acceleration engine, audio, camera in, LVDS display with touch panel.
Target applications: IoT gateways, embedded systems, industrial applications, portable medical, smart appliances, battery-operated devices, wireless hubs, and human-machine interfaces.
Production-ready software: Linux Yocto and Debian.
Optimal for Linux-based applications with wide connectivity/interface options, low power, low size, basic multimedia support.
The DART-6UL is a flexible SoM powered by NXP i.MX 6UltraLite / iMX6ULL ARM Cortex™-A7 processor, with frequency options ranging up to 900MHz. All at a very attractive price point. The DART-6UL provides a wide variety of interfaces and connectivity options (such as fully certified Wi-Fi/BT module with 802.11ac/a/b/g/n and dual band 2.4/5 GHz, Dual ETH, USB, UART, I2C, CAN, SPI, ADC, and more) alongside some basic multimedia capabilities. The large number of connectivity options makes the DART-6UL an excellent choice for a controller, web server, gateway, etc.
DART-6UL is less suitable for Android and high-end multimedia applications, as it lacks a strong 2D/3D graphics acceleration, as well as video encode/decode engines. However, the DART-6UL’s small size and low power consumption positions this SoM as an excellent choice for a large variety of battery operated and handheld applications.
Key features: integrated NAND/eMMC, certified Wi-Fi 802.11ac/a/b/g/n module with dual band 2.4/5 GHz, Bluetooth/BLE, dual USB, dual Ethernet, display with touch panel and serial interfaces, audio, and a wide temperature range (-40 to 85°C).
Target applications: IoT, embedded systems, industrial applications, POS, battery operated devices, wireless hub, web server, smart home applications, gateways.
Production-ready software: Linux Yocto and Debian.
Optimal for Linux and entry point Android applications with integrated graphics and video engines.
Based on NXP i.MX6 Single or DualLite Cortex™-A9 processor with up to 1GHz CPU Clock, the VAR-SOM-SOLO/DUAL brings all the benefits of the successful VAR-SOM-MX6 (to follow) and carries much smaller dimensions in a slim lined price-point. Besides having multiple connectivity options and a wide range of available interfaces, VAR-SOM-SOLO/DUAL can also support entry point multimedia applications with its native GPU.
VAR-SOM-SOLO/DUAL is also pin2pin with VAR-SOM-MX6, which creates together a very wide range of options for product configuration and scalability. The option of changing between these SoMs is mainly relevant if customer strategy is to have both low-end & a high-end product version for different markets.
Key features: advanced 2D/3D graphics accelerator, integrated NAND and eMMC, USB, certified dual-band Wi-Fi/BT with MIMO, gigabit ethernet, A/V interfaces, and a wide industrial operating temperature grade (-40 to 85°C).
Target applications: coffee/vending machines, industrial applications, video monitors, printers, automotive.
Production-ready software: Linux Yocto / Android – entry point.
Optimal for Linux and Android applications requiring high-end processing power with advanced multimedia capabilities. Scalable with the VAR-SOM-SOLO/DUAL.
The VAR-SOM-MX6 is a versatile solution with many configuration options, allowing designers to use a single System on Module in a variety of applications to achieve minimal time-to-market for their products, while still accommodating R&D directions and marketing opportunities. This SoM includes the NXP Quad, Dual, DualLite and Single core i.MX6 in up to 1.2GHz ARM Cortex™-A9.
This product is ideal for industrial platforms for high-end Linux/Android applications, while 1080p video encode/decode and graphics accelerations make it equally suitable for intensive multimedia applications as well. As mentioned above, VAR-SOM-MX6 is also pin2pin with VAR-SOM-SOLO/DUAL, which creates a fully scalable solution for different product configurations and scalability.
Key features: -40 to 85 °C temperature range, dual CAN, 1080p video and GC2000 graphics accelerator, up to 64 GB eMMC, enhanced Wi-Fi/BT module including Dual Band 2.4 / 5 GHz and MIMO, gigabit ethernet, consuming only 13mA in suspend with a 3.7V Li-Po.
Target applications: industrial applications, intensive multimedia applications, data communication, measuring systems, embedded systems.
Production-ready software: Linux Yocto and Debian, Android and Windows Embedded Compact.
Optimal for Small Size, Low Power Linux and Android applications with advanced multimedia capabilities.
The DART-MX6 is a High Performance, Low Power and the smallest size i.MX6 Quad Module, measuring only 20mm x 50mm, offering impressive performance, scalability, and power consumption capability. Powered by NXP iMX6 Quad or Dual core 800MHz Cortex™-A9 processor.
DART-MX6 is well supported for both Linux and Android and delivers high-end overall performance in a very small form factor.
Key features: advanced dual-band Wi-Fi/BT with optional MIMO, dual USB, gigabit ethernet, PCIe, A/V interfaces, full -40 to 85 industrial operating temperatures, up to 64Gb eMMC, consuming only 8mA in suspend with a 3.7V Li-Po, 1080p video and GC2000 graphics accelerator.
Target applications: ideal for portable and battery operated embedded systems, outdoor cameras, IoT, video transmission systems, industrial computing systems, video/image communication, robotics.
Production-ready software: Linux Yocto and Debian, and Android.
– Continue Reading: go to Part 2.
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