enet_txrx_ptp1588_transfer#
Overview#
The enet_rxtx_ptp1588 example shows the way to use ENET driver to
receive and transmit frame in the 1588 feature required cases.
This example shows how to initialize the ENET MAC.
How to use ENET MAC to receive and transmit frame.
How to add to the multicast group to receive PTP 1588 message.
How to get the time stamp of the PTP 1588 timer.
How to use Get the ENET transmit and receive frame time stamp.
The example transmits 20 number PTP event frame, shows the timestamp of the transmitted frame. The length, source MAC address and destination MAC address of the received frame will be print. The time stamp of the received timestamp will be print when the PTP message frame is received.
Note, The RMII mode is used for default setting to initialize the ENET interface between MAC and the external PHY. you can change it to MII mode as you wish. Please make sure the MII Mode setting in the MAC is synchronize to the setting in TWR-SERIAL board for the external PHY.
Supported Boards#
EVKB-IMXRT1050
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
EVKB-IMXRT1050 board
Personal Computer
Board settings
No special settings are required.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port.
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback network cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MIMXRT1060-EVKB
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
MIMXRT1060-EVKB board
Personal Computer
Board settings
No special settings are required.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port.
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback network cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MIMXRT1170-EVKB
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
MIMXRT1170-EVKB board
Personal Computer
Board settings
On MIMXRT1170-EVKB REVC board, GPIO_AD_32 uses as ENET_MDC in this example which is muxed with the SD1_CD_B, please check the R1926 and R136 connected to SD1_CD_B. If they are populated with resistor and SD card is inserted, this time enet can’t access PHY.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port(J3).
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
The transmitted frame is a 1000 length broadcast frame.
When a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
A frame received. the length 1000 Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MIMXRT1060-EVKC
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
MIMXRT1060-EVKC board
Personal Computer
Board settings
No special settings are required.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port.
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback network cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
EVK-MIMX8MM
Hardware requirements
Micro USB cable
MIMX8MM6-EVK board
J-Link Debug Probe
12V power supply
Loopback network cable RJ45 standard
Network cable RJ45 standard
Network switch
Personal Computer
Board settings
J501 connected with network switch through RJ45 network cable. Two types of base boards(ENET PHY is RTL8211F or AR8031) are supported and the default is for RTL8211F. For base boards with ENET PHY AR8031(older version than RevD) need define macro “EXAMPLE_ENET_PHY_PHYAR8031” to 1 in example source code.
Please note this application can’t support running with Linux BSP! This example aims to show the basic usage of the IP’s function, some of the used Pads/Resources are also used by Cortex-A core.
Prepare the Demo
Connect 12V power supply and J-Link Debug Probe to the board, switch SW101 to power on the board
Connect a USB cable between the host PC and the J901 USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable into network switch device(support loopback frames) and connect switch to the board’s Ethernet RJ45 port.
Download the program to the target board.
Launch the debugger in your IDE to begin running the demo.
Make loopback network cable: Standard 1 Standard 2 J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to the sheet above. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the debug terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
EVK-MIMX8MP
Hardware requirements
Micro USB cable
EVK-MIMX8M Plus board
J-Link Debug Probe
12V power supply
Loopback network cable RJ45 standard
Personal Computer
Board settings
J9 connected with loopback network cable.
Please note this application can’t support running with Linux BSP! This example aims to show the basic usage of the IP’s function, some of the used Pads/Resources are also used by Cortex-A core. If using the U-Boot bootaux to boot the Mcore, the U-Boot from Linux release 5.15.52_2.1.0 or later should be used.
Prepare the Demo
Connect 12V power supply and J-Link Debug Probe to the board, switch SW3 to power on the board
Connect a USB cable between the host PC and the J23 USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable into the board’s Ethernet RJ45 port.
Download the program to the target board.
Launch the debugger in your IDE to begin running the demo.
Make loopback network cable: Standard 1 Standard 2 J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to the sheet above. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the debug terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
EVK-MIMXRT1020
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
EVK-MIMXRT1020 board
Personal Computer
Board settings
No special settings are required.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port.
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback network cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Note: To debug in qspiflash, following steps are needed:
Select the flash target and compile.
Set the SW8: 1 off 2 off 3 on 4 off, then power on the board and connect USB cable to J23.
Start debugging in IDE.
Keil: Click “Download (F8)” to program the image to qspiflash first then clicking “Start/Stop Debug Session (Ctrl+F5)” to start debugging.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
A frame received. the length 1000 Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MIMXRT1024-EVK
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
MIMXRT1024-EVK board
Personal Computer
Board settings
No special settings are required.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port.
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback network cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Note: To debug in qspiflash, following steps are needed:
Select the flash target and compile.
Set the SW8: 1 off 2 off 3 on 4 off, then power on the board and connect USB cable to J23.
Start debugging in IDE.
Keil: Click “Download (F8)” to program the image to qspiflash first then clicking “Start/Stop Debug Session (Ctrl+F5)” to start debugging.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
A frame received. the length 1000 Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MIMXRT1040-EVK
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
MIMXRT1040-EVK board
Personal Computer
Board settings
No special settings are required.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port.
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback network cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
EVK-MIMXRT1064
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
EVK-MIMXRT1064 board
Personal Computer
Board settings
No special settings are required.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port.
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback network cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MIMXRT1160-EVK
Hardware requirements
Mini/micro USB cable
Loopback network cable RJ45 standard
MIMXRT1160-EVK board
Personal Computer
Board settings
On MIMXRT1160-EVK REVC board, GPIO_AD_32 uses as ENET_MDC in this example which is muxed with the SD1_CD_B, please check the R1926 and R136 connected to SD1_CD_B. If they are populated with resistor and SD card is inserted, this time enet can’t access PHY.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port(J3).
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
The transmitted frame is a 1000 length broadcast frame.
When a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
A frame received. the length 1000 Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MCIMX93AUTO-EVK
Hardware requirements
USB Type-C cable
Loopback network cable RJ45 standard
MCIMX93AUTO-EVK board
Personal Computer
Board settings
No special settings are required.
Note
Please run the application in Low Power boot mode (without Linux BSP). The IP module resource of the application is also used by Linux BSP. Or, run with Single Boot mode by changing Linux BSP to avoid resource conflict.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port(J601).
Download the program to the target board.
Either re-power up your board or launch the debugger in your IDE to begin running the demo.
Make loopback cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
The transmitted frame is a 1000 length broadcast frame.
When a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
A frame received. the length 1000 Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MCIMX93-EVK
Hardware requirements
USB Type-C cable
Loopback network cable RJ45 standard
MCIMX93-EVK board
Personal Computer
Board settings
No special settings are required.
Note
Please run the application in Low Power boot mode (without Linux BSP). The IP module resource of the application is also used by Linux BSP. Or, run with Single Boot mode by changing Linux BSP to avoid resource conflict.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port(J601).
Download the program to the target board.
Either re-power up your board or launch the debugger in your IDE to begin running the demo.
Make loopback cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
The transmitted frame is a 1000 length broadcast frame.
When a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
A frame received. the length 1000 Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
MCIMX93W-EVK
Hardware requirements
USB Type-C cable
Loopback network cable RJ45 standard
MCIMX93W-EVK board
Personal Computer
Board settings
No special settings are required.
Note
Please run the application in Low Power boot mode (without Linux BSP). The IP module resource of the application is also used by Linux BSP. Or, run with Single Boot mode by changing Linux BSP to avoid resource conflict.
Prepare the Demo
Connect a USB cable between the host PC and the OpenSDA USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port(J601).
Download the program to the target board.
Either re-power up your board or launch the debugger in your IDE to begin running the demo.
Make loopback cable: 568B standard Unknowed standard J1 orange+white green+white J2 orange green J3 green+white orange+white J4 blue brown+white J5 blue+white brown J6 green orange J7 brown+white blue J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not showed in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond …….. Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond The 2 frame transmitted success! the timestamp is xx second, xx nanosecond The 3 frame transmitted success! the timestamp is xx second, xx nanosecond The 4 frame transmitted success! the timestamp is xx second, xx nanosecond …… The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
The transmitted frame is a 1000 length broadcast frame.
When a 1000 length ptp event message frame is received, the log would be added to the terminal like: A frame received. the length 1000 the timestamp is xx second, xx nanosecond Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
A frame received. the length 1000 Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx
FRDM-MCXE247
Hardware requirements
USB-C cable
Loopback network cable RJ45 standard
FRDM-MCXE247 board
Personal Computer
Board settings
No special settings are required.
Prepare the Demo
Connect a USB cable between the host PC and the MCU-LINK USB port on the target board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Insert loopback network cable to Ethernet RJ45 port.
Download the program to the target board.
Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.
Make loopback network cable:
568B standard Unknown standard
J1 orange+white green+white
J2 orange green
J3 green+white orange+white
J4 blue brown+white
J5 blue+white brown
J6 green orange
J7 brown+white blue
J8 brown blue+white
Connect J1 => J3, J2 => J6, J4 => J7, J5 => J8. 10/100M transfer only requires J1, J2, J3, J6, and 1G transfer requires all 8 pins. Check your net cable color order and refer to 568B standard or the other standard. If your cable’s color order is not shown in the list, please connect J1~J8 based on your situation.
Running the demo
When the demo runs, the log would be seen on the terminal like:
ENET PTP 1588 example start.
Get the 1-th time xx second xx nanosecond
........
Get the 10-th time xx second xx nanosecond
The 1 frame transmitted success! the timestamp is xx second, xx nanosecond
The 2 frame transmitted success! the timestamp is xx second, xx nanosecond
The 3 frame transmitted success! the timestamp is xx second, xx nanosecond
The 4 frame transmitted success! the timestamp is xx second, xx nanosecond
......
The 20 frame transmitted success! the timestamp is xx second, xx nanosecond
Note: the xx second and xx nanosecond should not be zero and should be number with solid increment.
when a 1000 length ptp event message frame is received, the log would be added to the terminal like:
A frame received. the length 1000 the timestamp is xx second, xx nanosecond
Dest Address xx:xx:xx:xx:xx:xx Src Address xx:xx:xx:xx:xx:xx