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Neardi RK3568 Linux Development Board LKD3568 High Performance Single Board Computer

Product Details

Place of Origin: Shanghai, China

Brand Name: Neardi

Model Number: LKD3568

Payment & Shipping Terms

Minimum Order Quantity: 1 piece

Price: Negotiable

Packaging Details: 33.5×19×9 cm

Delivery Time: 7 days

Payment Terms: L/C, D/A, D/P, T/T

Supply Ability: 10000/pieces/mon

Get Best Price
Product Details
Highlight:

High Performance Single Board Computer

,

Neardi RK3568 Single Board Computer

SoC:
RK3568
Supplier Type:
OEM/ODM
CPU:
Quad-core 64-bit Cortex-A55
GPU:
ARM G52 2EE
NPU:
1 TOPS
VPU:
4K Video Decoding, 1080P Video Encoding
DDR:
LPDDR4, 1GB/4GB/8GB
EMMC:
EMMC 5.1, 8GB/16GB/32GB/64GB/128GB
Working Temperature:
-10 ~ 70℃
PCB Interface:
B2B
Embedded:
Yes
OS:
Android / Ubuntu / Buildroot / Debian
Application:
Self-service Terminal, 5G Smart Terminal
SoC:
RK3568
Supplier Type:
OEM/ODM
CPU:
Quad-core 64-bit Cortex-A55
GPU:
ARM G52 2EE
NPU:
1 TOPS
VPU:
4K Video Decoding, 1080P Video Encoding
DDR:
LPDDR4, 1GB/4GB/8GB
EMMC:
EMMC 5.1, 8GB/16GB/32GB/64GB/128GB
Working Temperature:
-10 ~ 70℃
PCB Interface:
B2B
Embedded:
Yes
OS:
Android / Ubuntu / Buildroot / Debian
Application:
Self-service Terminal, 5G Smart Terminal
Product Description
Neardi RK3568 Linux Development Board LKD3568 High-Performance Single Board Computer

The LKD3568 is a multifunctional industry application board exquisitely designed based on the Rockchip RK3568 chip platform, consisting of our company's LCB3568 core module and baseboard. The core module is connected to the baseboard using a B2B connector and secured with four M2 screws, ensuring stability and reliability. The board is versatile and rich in interfaces, suitable for a wide range of applications.

 

The LKD3568 features 1 USB 3.0 HOST, 1 USB 3.0 OTG, and 2 USB 2.0 HOST interfaces, which are capable of connecting multiple USB cameras externally. It also has 3 mini-PCIe interfaces that can be expanded to connect 4G/5G modules or NPU computing cards with mini-PCIe interfaces based on RK1808, combining with multiple cameras to form an artificial intelligence vision computing board card that supports up to 6.0 TOPS of computational power. Additionally, the LKD3568 supports dual-band WIFI 6, BT5.0, 2 Gigabit Ethernet, UART, I2C, CANBUS, and other common communication module interfaces. It supports 2 HDMI outputs, 1 VGA output, 1 dual-channel LVDS, and various display interfaces, supporting multi-screen independent display. Optional configurations can include 1 HDMI input or MIPI-CSI camera input.

 

The LKD3568 supports Android, buildroot, Debian, and Ubuntu operating systems, offering advantages such as high performance, high reliability, and high scalability, and provides users with open system source code. Users can develop and customize based on this product, and our company provides comprehensive technical support for developers and enterprise users, enabling them to efficiently complete research and development work and significantly shorten the product development and mass production cycle.

 
Function Description
CPU

RK3568, 22nm process, quad-core 64-bit Cortex-A55, with a maximum clock speed of 2.0GHz.

GPU

ARM G52 2EE, supports OpenGL ES 1.1/2.0/3.2, OpenCL 2.0, Vulkan 1.1,

and has a high-quality 2D graphics engine built-in.

NPU Offers up to 1 TOPS of computational power; supports hybrid operations of
INT8/INT16/FP16/BFP16 MAC; compatible with deep-learning frameworks
such as TensorFlow, TF-lite, Pytorch, Caffe, ONNX, MXNet, Keras, and Darknet.
VPU

Capable of 4K VP9 and 4K H265 video decoding at up to 60fps.

Capable of 1080P H265/H264 video encoding at up to 100fps.

Equipped with an 8M ISP with HDR capabilities.

DDR LPDDR4 RAM, with options for 1GB/2GB/4GB/8GB (Optional).
eMMC
eMMC 5.1 storage, with options for 8GB/16GB/32GB/64GB/128GB (Optional).
PMU RK806
OS Android / Ubuntu / Buildroot / Debian
Power DC12V - 3A (DC Jack 5.5*2.1mm / PH2.0 wafer
USB 1*Type-A USB3.0 HOST, 1*Type-A USB3.0 OTG,
2*Type-A USB2.0 HOST
Display

Type-A HDMI 2.0 up to 4K@60fps
Type-A HDMI 1.4 up to 1920*1080@60fps
VGA up to 1920*1080@30fps
Duel channel LVDS up to 1080P@60HZ

Audio φ3.5mm earphone Jack with L/R audio out
φ3.5mm micphone Jack with Mic in
Speaker output with 1.5W@8Ω
HDMI audio out
Mini-PCIe HDMI Input interface; MIPI-CSI Camera Interface
M.2 M.2 NGFF ( M-KEY ) PCIE V2.1 x4 with NVMe SSD supported
SD Compatible with SDIO 3.0 protocol, system boot up supported
SIM card  Micro sim slot for Mini-PCIe 4G LTE module
RJ-45  2*10/100/1000 Ethernet
RTC 2Pin GH1.25 connector, RTC power on and off supported
Others

3*Uart, 2*CAN BUS, 1*I2C, 6*ADC, 2*PWM, lots of GPIOs

Power output  12V, 5V, 3.3V
Others 4*ADC, 1*I2C(CTP supported), 4*Switch signal Input, 4*Switch signal Output
Dimensions Length * Width * Height (mm) 160*115*25.7
Operating Temperature  -10 ~ 70℃
Weight Approximately  171.5g  (excluding peripherals)
 
Neardi RK3568 Linux Development Board LKD3568 High Performance Single Board Computer 0Neardi RK3568 Linux Development Board LKD3568 High Performance Single Board Computer 1
 
Developer's Must-Read!
 
Welcome to our Resource Center, where you can find various helpful links and information for developers.
Please visit the corresponding Wiki documentation link to obtain detailed information about the product of your choice, including the following: Hardware information: Specifications, components, and technical parameters of the product debugging Methods: Common troubleshooting steps and debugging techniques. Interface Information: Available interfaces and their functional descriptions.Firmware Programming: Guidance on firmware updates and programming processesCompiling SDK: Detailed instructions for compiling and configuring the SDK.Linux and Android Development: Development guidelines and best practices for Linux and Android environments.
 
Company Introduction
 
Shanghai Neardi Technology Co., Ltd. was established in 2014, focusing on the field of intelligent electronic products, providing customers with one-stop solutions for design and production. The company adheres to the strategy of technological innovation and professional service, integrates the technical precipitation and industry experience of Neardi Technology, helps partners to introduce products to the market quickly and efficiently, effectively saves customers' time and resources, and becomes the product accelerator of partners.
Neardi RK3568 Linux Development Board LKD3568 High Performance Single Board Computer 2

 

After-sale Service Policy

1. Please take a valid purchasing voucher for maintenance requests when you have product failure problems.
2. We kindly provide one year of warranty to the ARM board except for non-warranty components(CPU, RAM, and Flash/ storage chips) and a three-month warranty to display and power adapter from the ex-factory date.
3. Product failure in expired time, we kindly provide paid maintenance service. Charges depend on the assessment by the maintenance department. If goods are seriously damaged, the accessory is discontinued, or other uncontrollable conditions may cause the products can not be fixed, Neardi will not provide maintenance service.
4. Neardi kindly provides one month of warranty for the repaired items, payment should be made to the appointed account. Note: This warranty is only valid for the repaired problem.
5. Please take necessary data backup before the defective item is sent back up for maintenance, all risks caused by no backup should be borne by customers.
6. Neardi will reject items sent back without our permission.
7. To goods within the warranty period, freight should be shared by both sides, otherwise, the customer should bear all maintenance-related freight and customs fees.
Non-warranty Coverage(Paid Maintenance Service):
1. Products out of warranty period;
2. Non-warranty components including CPU, RAM, and Flash chips;
3. Failure caused by improper operations like PCB short circuit, rupture;
4. Bar code or factory ID tampered or other operations cause the products can not be recognized;
5. The bar code or factory ID on the purchasing voucher is not matched with the product itself;
6. Product failure caused by unauthorized maintenance, improper operations, misuse operations, or other unexpected behaviors.
7. Product failure caused by force majeure.
8. Other failures caused during delivery.