FET3506J-S System on Module

CPU: Rockchip RK3506J

Architecture: 3x [email protected]+1x Cortex-M0

Frequency: 1.5GHz

RAM: 256MB DDR3,512MB DDR3

ROM: 256MB NandFlash,8GB eMMC

System: Linux 6.1

Brief Message Compare

FET3506J-S System on Module Based on Rockchip RK3506J Processor

FET3506J-S System on Module(SoM)/Computer on Module is developed based on the Rockchip RK3506J processor. It has undergone extensive reliability testing to ensure reliable operation in industrial environments. RK3506J is a high-performance triple-core Cortex-A7 application processor, designed with excellent power consumption control and thermal management capabilities, tailored for smart industrial applications. It offers a rich set of peripheral interfaces, such as RMII, UART, CAN, and Display, to support development in various application scenarios. 10 to 15-year longevity provides long-term and stable supply assurance for your products.

Rockchip RK3506J SoM Features:

  • Edge connector, all pins are led out
  • 22nm advanced process
  • Display interfaces: MIPI DSI, RGB
  • Rich industrial bus interfaces: RMII, CAN-FD, FLEXBUS, DSMC etc
  • DSMC can be used to extend PSRAM, FPGA communication
  • RM_IO enables matrix configuration for pin functions

Rockchip RK3506J system on module(SoM)

Low Power, Low Heat

FET3506J-S SoM only consumes 0.7W under full-load operation! No heat dissipation needed;
it can pass the +85°C high-temperature test under full-load.

Rockchip RK3506J system on module/single board computer Low Power, Low Heat

High-Speed Parallel Bus Interface DSMC

Low-cost, easy-to-develop FPGA-to-ARM high-speed communication bus supporting master/slave modes.

Rockchip RK3506J system on module/single board computer High-Speed Parallel Bus Interface DSMC

Configurable Parallel Data Interface FlexBUS

It can be used to connect ADC, DAC chips, DVP camera s, and QSPI LCD displays.

Rockchip RK3506J system on module/single board computer Configurable Parallel Data Interface FlexBUS

Matrix IO Design, Flexible Pin Function Configuration

RK3506 uses matrix IO design, allowing multiple functional signals to share a limited number of pin interfaces.
Any functional signal can be mapped to any pin interface through software configuration. Supports mapping 98 functional signals to 32 pin interfaces.

Rockchip RK3506J system on module/single board computer Matrix IO Design, Flexible Pin Function Configuration

Storage Health Diagnosis, Extending Lifespan

Forlinx Embedded provides users with in-depth storage driver optimization and eMMC health diagnostic tools,
maximizing the storage lifespan and reliability, reducing faults caused by the depletion of storage life.

Rockchip RK3506J system on module/single board computer Storage Health Diagnosis, Extending Lifespan

Rich Software Support

With comprehensive support for software ecosystems such as Linux 6.1, LVGL 9.2, AMP architecture, and Linux RT,
the RK3506 chip demonstrates powerful software compatibility and flexible system architecture,
capable of fully meeting the diverse application needs from display to control, widely applicable in many complex scenarios.

Rockchip RK3506J system on module/single board computer Rich Software Support

Wide Application Scenarios

FET3506J-S SoM is widely used in industrial automation, consumer electronics, smart healthcare, power, new energy, and communications.
With Forlinx Embedded's competitive pricing and strong after-sales support, it helps your product quickly reach the market and lead the industry.

Rockchip RK3506J system on module/single board computer Wide Application Scenarios

▊ Hardware Features



FET3506J-S System on Module Basic Features

CPU

Rockchip RK3506J

ARM

3×Cortex-A7,up to 1.5GHz

1×Cortex-M0

GPU

2D GPU

RAM

256MB/512MB DDR3

ROM

256MB Nand Flash/8GB eMMC

Operating Temperature

-40℃ ~+85℃

Working Voltage

DC 5V

Connection

Stamp hole (146 pins in total, pin center spacing 1mm)

Dimensions

44mm×35mm

OS

Linux6.1

Flashing Method

USB OTG


FET3506J-S System on Module Functional Parameters

Function

QTY

Spec.

MIPI DSI

≤1

Supports 1 x 2-lane MIPI Display Serial Interface with a speed of 1.5 Gbps per lane.

Built-in VOP controller, supporting only 1 x display output at a time.

RGB

≤1

Supports RGB888 24-bit, with resolution up to 1280x1280@60Hz.

RGB, FLEXBUS, and DSMC interfaces are multiplexed, allowing only one function to be selected at a time.

FLEXBUS

≤1

Supports 1 x flexible parallel FLEXBUS interface, enabling high-speed IO switching.

DSMC

≤1

Supports the DSMC data bus for PSRAM and FPGA communication. FPGA can be expanded through the DSMC interface, with master mode supporting ×8 and ×16 data bits, and slave mode supporting ×8 data bits.

USB 2.0

2

Supports 2 x high-speed USB 2.0 ports, with 1 x USB supporting OTG.

SDMMC

≤1

Supports 1x SDIO, 4 bits; the eMMC version SoM does not have this interface.

Ethernet

2

2 × RMII, 10/100-Mbps, supporting both full-duplex and half-duplex operations

CAN-FD

2

Supports CAN2.0 and CAN-FD

SPI

3

SPI0/SPI1 support both serial master and slave modes, configurable by software; SPI2 supports serial slave mode only.

UART

≤6

Supports 6 x serial communication interfaces, with UART0 serving as the debug serial port.

I2C

3

Supports both 7-bit and 10-bit address modes, as well as master and slave modes, with a maximum speed of up to 1Mbit/s.

Audio

/

4 × SAI(TX 1Lane/RX 1Lane ×2, TX 4Lane/RX 1Lane × 1, TX 1Lane/RX 4Lane × 1)
1 × 4ch PDM
1×SPDIF TX/RX 1×Audio ADC
2 ×Audio DSM

FSPI

≤1

Supports 1 x FSPI interface. By default, the SoM is connected to the SPI NAND FLASH, which supports system startup.

SARADC

≤4

10-bit resolution, with a speed up to 1MS/s, and an input voltage range of 0~1.8V.
SARADC0 is related to the boot-up sequence pins, while SARADC1 is multiplexed for recovery interface function.

PWM

≤11

Supports 12 x PWM interfaces, with 1 x already occupied by the SoM, leaving 11 available for user use.

JTAG

≤1

Supports JTAG SWD interface debugging, multiplexed with the debug serial port UART0 pins.

TOUCH KEY

≤8

Supports 8 x TOUCH KEY

GPIO

≤76

GPI≤70, GPO≤76,among them, the six pins MIPI_DPHY_DSI_TX_D0N/D0P/D1N/D1P/CLKN/CLKP can only be used as General Purpose Outputs (GPO).

Note: The parameters in the table are hardware design or theoretical CPU values.

▊ Carrier Board


Forlinx Rockchip Rk3506 Development Board
OK3506J-S Development Board

To minimize your development workload, we offer starter kits that can be used as complete development platforms for evaluation and application development.
OK3506J-S Single Board Computer by Forlinx, paired with the Rockchip RK3506J series SoM possessing 3×Cortex-A7 cores running at 1.5GHz and a Cortex-M0 core, supports the Linux 6.1 system.This development board, equipped with diverse functional interfaces, enables users to assess the product's performance, stability and user-friendliness more conveniently, thus accelerating the verification and development process.

▊ Downloads


Catalog: Forlinx Catalog Manual

Product Brief: FET3506J-S SoM and OK3506J-S SBC Introduction

▊ Accessories


Please click here to get more information about the supported modules and accessories.

▊ Technical Support


1. Files to be provided after buying

Hardware related: datasheet, user guide, carrier board schematic, carrier board PCB, SoM pinmux;

Firmware related: OS image, testing demo, source code, manual;

Compiling environment

2. Fast response after-sale technical support service

Contact Us

Welcome to get in touch with us, our experts will reply to your email within 24 hours.

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▊ How To Buy


1. Order Online

We have an online store on Alibaba, please contact us for details.

2. Order Offline

Please send your inquiry to [email protected];

3. Payment Terms

100% T/T in advance.

▊ Shipment


1. Delivery: Goods will be shipped by express upon the receipt of the payment;

2. Lead time: Goods will be shipped out within five working days for sample orders and 6 weeks for bulk orders;

3. Shipping charge: Buyers should bear the shipping cost.

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