System on Module FET5718-C based on TI Sitara AM5718
FET5718-C is an SoM (system on module) designed by Forlinx based on TI AM5718 SoC, AM571x Sitara™ processors are Arm® applications processors built to meet the intense processing needs of modern embedded products.
AM571x devices bring high processing performance through the maximum flexibility of a fully integrated mixed processor solution. The devices also combine programmable video processing with a highly integrated peripheral set.
System on Module FET5718-C Features:
- ARM Cortex-A15, frequency up to 1.5G Hz;
- DSP C66x with frequency of 750MHz
- 2x dual-core ARM Cortex -M4 with frequency of 213MHz;
- 2x dual-core PRU with frequency of 200MHz;
- High-speed transmission interfaces like USB 3.0, PCIe 3.0, HDMI 1.4, UART*10, QSPI*1, CAN*2, Gagibit Ethernet*2 are available and also powerful multi-media performance, wide range of applications;
- OS options: Linux 4.9.41 + QT5.6, TI-RTOS;
- 12-layer EINT PCB designing;
- the development board consists of carrier board and SoM, and the carrier board designed with 4-layer PCB and SoM with 12-layer PCB;
- carrier board dimensions of 130*190mm, and connector hight between SoM and carrier board is just 2mm
- SoM with 320 pins that all functions of CPU are available;
- Industrial grade temp width: -40℃ to +85℃
Multi-core heterogeneous development platform
Demos including command line and QT demos such as OpenCV, OpenCL, OpenGL demos, and also DSP and PRU environment build up and development demos
Powerful Multi-media Performance
The development board is integrated with SGX544 3D and GC320 2D GPU which are applicable for senior graphic UI, meanwhile, Cortex-M4 GPU IPU2 is specially used in IVA image and video hardware codec
perfectly supports H.264, MPEG4 multiple encoding forms and video hardware decode playing, supports multiple video together with decoding playing, multiple decoding channels up to 1080P@60FPS,
supports MJPEG iamge hardware codec, and also the VPE can well support hardware image, video zooming and color spacing converting.
Dual-screen Display
Support Linux 4.9.41, image system with QT5-wayland architecture, can be QT5.6 independent operation,
Also supports LCD and HDMI extended display, supports home screen sub-screen settings, exclusively provides waylandsink (hardware decoded video playback)
Window fixed-point display; Qt, OpenCV window fixed-point display solution
Multiple Expanding Functions
Set LCD resolution and boot logo in UBOOT,
flash OS image just by an SD card, WIFI, MIPI camera , CPU frequency auto adjusting and appoint a fixed frequency
Deeply optimized operating system
Forlinx chose a high-version Linux kernel and QT system to support Linux 4.9.41 plus QT5.6 and to optimize in depth.
Availabe Demos
TESTING DEMO | ||
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Forlinx Demo BackLight Keypad RTC Network Ping DemoBrowser Calculato WatchDog Musicplayer Audiorecorder WIFI Terminal Can 4G |
ARM ralted DDR Bandwidth Memory Latency NBench Linpack Posix_SMP Communication Bandwidth Communication Latency Whetstone |
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3D Chameleon KMS Cube Coverflow Navigation ExampleUI |
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Multimedia IVAHD H.264 Decode VIP VPE IVAHD MPEG4 Encode and Decode Audio Capture H.265 (HEVC) Decode DSP C66 Image Processing AAC Decode IVAHD MJPEG Encode IVAHD H.264 Encode |
Settings Network Settings System Shutdown Task Info Refresh Matrix Memory atrix Shutdown system Info |
|
Video Analytics Demo OpenCV+OpenCL+OpenGL Demo |
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USB USB Bonnie |
CPU frequency testing |
Command Line Testing | |
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system information inquiry key testUART test Watchdog testWIFI test Screen shot test RTC test Temp sensor test CAN test USB mouse test USB2.0 test USB 3.0 test HDMI test |
LCD backlight adjusting camera testSD card test Ethernet test Web service test Audio record/ playback test Sobel test Facial recognition test PCIe test QSPI test 4G test SATA test SPI test BT test |
Hardware Codec Testing | ||
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Video playing VPE Gstreamer Video zoom Video amplication Color space converting |
Image codec MJPEG decode MJPEG encode |
|
Video codec H264 decode H264 encode MPEG4 decode MPEG4 encode |
PRU Testing | ||
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CSS tutorial CCS installation Install PRU to CCS PRU firmware start and stop Build new CCS |
TI official demo compiling and testing Import project Compile project Demo testing Start PRU |
|
Forlinx demo compiling and testing Import project Compile project LED demo test UART test |
DSP and IPU Testing | ||
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Multiple cores communication test | DSP test | |
Re-compile testing demo by CCS | A15 application compiling |
▊ Hardware Features
Overview of FET5718-C System on Module | |
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CPU | TI Sitara AM5718 |
Architecture | Cortex-A15-1.5GHz |
2xDual-Core PRU-200MHz | |
RAM | 1GB DDR3L |
Dimensions | 50*70mm |
PMU | TPS659162RGZR |
Working Temp Width | -40℃~+85℃ |
OS | Linux4.9.41+ QT5.6+Wayland |
DSP-C66X-750MHZ | 2xDual Cortex-M4-213MHz |
PowerVR SGX544 3D GPU | Vivante GC320 2D GPU |
Flash/ Storage | 8GB eMMC |
Pakcage | board to board connector |
Voltage Input | 5V |
RH | 10-90%RH non-condensing |
FET5718-C System on Module Features | ||
---|---|---|
Peripheral | QTY | Spec. |
LCD | ≤3 | GB888 24-bit |
HDMI |
1 |
HDMI 1.4a, 1080P@60Hz; 36-bit RGB display; HDCP 1.4 encryption; Deep color mode (10-bit, 12-bit color depth are both supported by pixel clock of 148.5MHz) |
CAMERA |
≤4 |
2x 8-bit DVP, up to 5.0MP
2x 8/ 16/ 24-bit DVP
|
MIPI CSI-2 |
2 |
CSI-2_PHY1: 1 clock lane+ 4 data lane
CSI2_PHY1: 1 clock lane+ 2 data lane |
SD/MMC/SDIO |
≤4 |
1-bit or 4-bit transferring mode is supported by SD and SDIO card with UHS-I SDR104 mode (up to 104MB/s)
SD/ MMC/ SDIO1: 4-bit data
SD/ MMC/ SDIO2: 8-bit data (used as eMMC on SoM)
SD/ MMC/ SDIO3: 8-bit data
SD/ MMC/ SDIO4: 4-bit data |
IIC |
≤5 |
IIC1/ 2: up to 400Kbps, standard OD
IIC3/ 4/ 5: up to 3.4Mbps, analogy OD |
HDQ1W | ≤1 |
Support TI/ Benchmarq HDQ master device function
Comply with Dallas 1-Wire protocol |
UART | ≤10 |
can support 5/ 6/ 7/ 8 data bits, parity bit, 1, 1.5, 2 stop bits UART1: full serial interface is supported UART3: IrDA 1.4, CIR are supported others are standard interface |
SPI | ≤4 |
up to 4x SPI, each with up to 4 master channel |
QSPI | ≤1 |
work as master mode only
6 signal pins |
McASP | ≤8 |
supports 8-ch audio at most
McASP1/2: up to 16 separate TX/ RX channel
McASP3-8: up to 4 separate TX/ RX channel |
USB3.0 | ≤1 |
super speed USB3.0 Dual-Role-Device, Host is supported |
USB2.0 | 1 |
high-speed USB 2.0 Dual-Role-Device, Host is supported |
SATA | 1 | SATA Gen2 |
PCIe | ≤2 |
PCI Express 3.0 subsystem, with 2x 5-Gbps channel
1x Dual-channel interface with GEN2 standard, 2x Single-channel interface with Gen2 standard |
CAN | ≤2 |
two CAN controller at most, complys with CAN2.0 protocol |
Ethernet | ≤2 |
3-port gigabit ethernet switch subsystem provides ethernet packet communication and can be configured as an ethernet switch. It provides two network ports and available for RGMII/ RMII/ MII interface, 10M/ 100M/ 1000M adaptive |
PWMSS | ≤3 |
supports up to 3x PWMSS, each is available for:
eHRPWM: 16-bit timer, up to 2 separate PWM output
eCAP: 32-bit timer, one channel is special for input capture pin
eQEP: rotating decode unit |
JTAG | supported | standard IEEE1149.1 |
KeyPad Port | supported | 9*9 keyboard |
GPMC | 1 |
8-bit/ 16-bit data bus width
up to 28-bit address bus
up to 8-bit chip selection bus |
▊ Download
Catalog: Forlinx Catalog Manual
▊ 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
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