MCUXpresso SDK Documentation

i3c_polling_b2b_transfer_master

i3c_polling_b2b_transfer_master#

Overview#

The example shows how to use i3c driver as master to do board to board transfer using polling method.

In this example, one i3c instance as master and another i3c instance on the other board as slave. Master first sends a piece of data to slave in I2C mode, and receive a piece of data from slave and check if the data received from slave is correct. Then master will enter dynamic address cycle to assign address to the connected slave, after success, will use I3C SDR mode to transfer data, then receive data from the connected I3C slave and check the data consistency.

Supported Boards#

MIMXRT1180-EVK
Hardware requirements
  • Micro USB cable

  • Two MIMXRT1180-EVK boards

  • Personal Computer

Board settings

Weld 1.5kΩ to R778. I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C2 pins of MASTER_BOARD are connected with I3C2 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
I3C2_CLK       J50-1           I3C2_CLK      J50-1
I3C2_SDA       J50-2           I3C2_SDA      J50-2
GND            J50-4           GND           J50-4
Prepare the Demo
  1. Connect a USB cable between the host PC and the OpenSDA USB port on the target board.

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
EVK-MIMXRT595
Hardware requirements
  • Micro USB cable

  • EVK-MIMXRT595 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P2_29       J18-1               P2_29      J18-1
P2_30       J18-2               P2_30      J18-2
GND         J18-4               GND        J18-4
Prepare the Demo
  1. Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J40) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Launch the debugger in your IDE to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
EVK-MIMXRT685
Hardware requirements
  • Micro USB cable

  • EVK-MIMXRT685 board

  • Personal Computer

Board settings

Please notice that the I3C module can only work for 1.8V on the board, short JP12 1-2. I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P2_29       J18-1               P2_29      J18-1
P2_30       J18-2               P2_30      J18-2
GND         J18-4               GND        J18-4
Prepare the Demo
  1. Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J5) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Launch the debugger in your IDE to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXA153
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXA153 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P0_16      J20                P0_16      J20
P0_17      J21                P0_17      J21
GND        J6-8               GND        J6-8
Prepare the Demo
  1. Connect a Type-C USB cable between the host PC and the MCU-Link port(J15) on the target board.

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Remove jumper J43 3-4.

  5. Press reset button to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXA156
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXA156 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD    CONNECTS TO       SLAVE_BOARD
Pin Name        Board Location    Pin Name   Board Location
I3C0_SCL/P1_9   J8-3              P1_9       J8-3
I3C0_SDA/P1_8   J8-4              P1_8       J8-4
GND             J5-8              GND        J5-8
Prepare the Demo
  1. Connect a USB Type-C cable between the host PC and the MCU-Link USB port on the target board.

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The log below shows the output of the hello world demo in the terminal window:

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXN236
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXN236 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P1_16      J9-4               P1_16      J9-4
P1_17      J9-3               P1_17      J9-3
GND        J8-2               GND        J8-2
Prepare the Demo
  1. Connect a type-c USB cable between the PC host and the MCU-Link USB port (J10) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXN947
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXN947 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P1_16      J5-3              P1_16      J5-3
P1_17      J5-4              P1_17      J5-4
GND        J5-8              GND        J5-8 
Prepare the Demo
  1. Connect a type-c USB cable between the PC host and the MCU-Link USB port (J17) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXN947T
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXN947T board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P1_16      J5-3              P1_16      J5-3
P1_17      J5-4              P1_17      J5-4
GND        J5-8              GND        J5-8 
Prepare the Demo
  1. Connect a type-c USB cable between the PC host and the MCU-Link USB port (J17) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXW71
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXW71 Board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows: Jumper setting:

EVK board: ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ MASTER(I3C0) connect to SLAVE(I3C0) Pin Name Board Location Pin Name Board Location SCL J2 pin 1 SCL J2 pin 1 SDA J2 pin 2 SDA J2 pin 2 GND J2 pin 4 GND J2 pin 4 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

Other jumpers keep default configuration.

Prepare the Demo
  1. Connect the micro and mini USB cable between the PC host and the USB ports on the board.

  2. Open a serial terminal on PC for the serial device with these settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
MCX-W71-EVK
Hardware requirements
  • Type-C USB cable

  • MCX-W71-EVK Board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows: Jumper setting:

EVK board:

MASTER(I3C0)                  connect to        SLAVE(I3C0)
Pin Name    Board Location                      Pin Name    Board Location
SCL         J2  pin 1                           SCL         J2  pin 1
SDA         J2  pin 3                           SDA         J2  pin 3
GND         J2  pin 7                           GND         J2  pin 7

Other jumpers keep default configuration.

Prepare the Demo
  1. Connect a USB cable between the host PC and the EVK board J14.

  2. Open a serial terminal on PC for the serial device with these settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
KW45B41Z-EVK
Hardware requirements
  • Mini/micro USB cable

  • KW45B41Z-EVK Board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows: Jumper setting:

EVK board: ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ MASTER(I3C0) connect to SLAVE(I3C0) Pin Name Board Location Pin Name Board Location SCL J2 pin 9 SCL J2 pin 9 SDA J2 pin 10 SDA J2 pin 10 GND J10 pin 4 GND J10 pin 4 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

Other jumpers keep default configuration.

Prepare the Demo
  1. Connect the micro and mini USB cable between the PC host and the USB ports on the board.

  2. Open a serial terminal on PC for the serial device with these settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
KW47-EVK
Hardware requirements
  • Type-C USB cable

  • KW47-EVK Board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows: Jumper setting:

EVK board:

MASTER(I3C0)                  connect to        SLAVE(I3C0)
Pin Name    Board Location                      Pin Name    Board Location
SCL         J2  pin 1                           SCL         J2  pin 1
SDA         J2  pin 3                           SDA         J2  pin 3
GND         J2  pin 7                           GND         J2  pin 7

Other jumpers keep default configuration.

Prepare the Demo
  1. Connect a USB cable between the host PC and the EVK board J14.

  2. Open a serial terminal on PC for the serial device with these settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
LPCXpresso55S36
Hardware requirements
  • Micro USB cable

  • LPCXpresso55S36 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P0_9       J9-20              P0_9       J9-20
P0_24      J9-18              P0_24      J9-18
GND        J9-14              GND        J9-14

Connect the jumper resistor R554 2-3.

Prepare the Demo
  1. Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J1) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
LPCXpresso860MAX
Hardware requirements
  • Micro USB cable

  • LPCXpresso860max board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P0_26       J1-2               P0_26       J1-2
P1_14       J1-4               P1_14       J1-4
GND         J1-14              GND         J1-14
Prepare the Demo
  1. Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J4) on the board

  2. Open a serial terminal with the following settings:

    • 9600 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f
I3C master transfer successful in I2C mode .

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.

I3C master transfer successful in I3C SDR mode .

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.

MCIMX93AUTO-EVK
Hardware requirements
  • USB Type-C cable

  • MCIMX93AUTO-EVK board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows:

MASTER                        connect to        SLAVE
Pin Name    Board Location                      Pin Name    Board Location
SCL         J17 pin 16                          SCL         J17 pin 16
SDA         J17 pin 18                          SDA         J17 pin 18
GND         J17 pin 29                          GND         J17 pin 29
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
  1. Connect 12V~20V power supply and JLink Plus to the board, switch SW2 to power on the board

  2. Connect a USB Type-C cable between the host PC and the J26 USB port on the target board.

  3. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  4. Download the program to the target board.

  5. Either re-power up your board or launch the debugger in your IDE to begin running the demo.

Tips: The I3C use the same PHY pin as LPI2C, Acore already use the i2c resource. Please test the function in “LOW POWER MODE” only.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f


I3C master transfer successful in I2C mode .

I3C master do dynamic address assignment to the I3C slaves on bus.

I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.

I3C master transfer successful in I3C SDR mode .

MCIMX93-EVK
Hardware requirements
  • USB Type-C cable

  • MCIMX93-EVK board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows:

MASTER                        connect to        SLAVE
Pin Name    Board Location                      Pin Name    Board Location
SCL         J1005 pin 3                         SCL         J1005 pin 3
SDA         J1005 pin 5                         SDA         J1005 pin 5
GND         J1005 pin 7                         GND         J1005 pin 7
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
  1. Connect 12V~20V power supply and JLink Plus to the board, switch SW301 to power on the board

  2. Connect a USB Type-C cable between the host PC and the J1401 USB port on the target board.

  3. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  4. Download the program to the target board.

  5. Either re-power up your board or launch the debugger in your IDE to begin running the demo.

Tips: The I3C use the same PHY pin as LPI2C, Acore already use the i2c resource. Please test the function in “LOW POWER MODE” only.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f


I3C master transfer successful in I2C mode .

I3C master do dynamic address assignment to the I3C slaves on bus.

I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.

I3C master transfer successful in I3C SDR mode .

MCIMX93W-EVK
Hardware requirements
  • USB Type-C cable

  • MCIMX93W-EVK board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows:

MASTER                        connect to        SLAVE
Pin Name    Board Location                      Pin Name    Board Location
SCL         J1005 pin 3                         SCL         J1005 pin 3
SDA         J1005 pin 5                         SDA         J1005 pin 5
GND         J1005 pin 7                         GND         J1005 pin 7
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
  1. Connect 12V~20V power supply and JLink Plus to the board, switch SW301 to power on the board

  2. Connect a USB Type-C cable between the host PC and the J1401 USB port on the target board.

  3. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  4. Download the program to the target board.

  5. Either re-power up your board or launch the debugger in your IDE to begin running the demo.

Tips: The I3C use the same PHY pin as LPI2C, Acore already use the i2c resource. Please test the function in “LOW POWER MODE” only.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f


I3C master transfer successful in I2C mode .

I3C master do dynamic address assignment to the I3C slaves on bus.

I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.

I3C master transfer successful in I3C SDR mode .

MCIMX93-QSB
Hardware requirements
  • USB Type-C cable

  • MCIMX93-QSB board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows:

MASTER                        connect to        SLAVE
Pin Name    Board Location                      Pin Name    Board Location
SCL         J1005 pin 3                         SCL         J1005 pin 3
SDA         J1005 pin 5                         SDA         J1005 pin 5
GND         J1005 pin 7                         GND         J1005 pin 7
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
  1. Connect 12V~20V power supply and JLink Plus to the board, switch SW301 to power on the board

  2. Connect a USB Type-C cable between the host PC and the J1401 USB port on the target board.

  3. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  4. Download the program to the target board.

  5. Either re-power up your board or launch the debugger in your IDE to begin running the demo.

Tips: The I3C use the same PHY pin as LPI2C, Acore already use the i2c resource. Please test the function in “LOW POWER MODE” only.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f


I3C master transfer successful in I2C mode .

I3C master do dynamic address assignment to the I3C slaves on bus.

I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.

I3C master transfer successful in I3C SDR mode .

MCX-N5XX-EVK
Hardware requirements
  • Micro USB cable

  • MCX-N5XX-EVK board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P1_16      J17                P1_16      J17
P1_17      J18                P1_17      J18
GND        J19-8              GND        J19-8
Prepare the Demo
  1. Connect a micro USB cable between the PC host and the MCU-Link USB port (J5) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
MCX-N9XX-EVK
Hardware requirements
  • Micro USB cable

  • MCX-N9XX-EVK board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P1_16      J17                P1_16      J17
P1_17      J18                P1_17      J18
GND        J19-8              GND        J19-8
Prepare the Demo
  1. Connect a micro USB cable between the PC host and the MCU-Link USB port (J5) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
MCX-W72-EVK
Hardware requirements
  • Type-C USB cable

  • MCX-W72-EVK Board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows: Jumper setting:

EVK board:

MASTER(I3C0)                  connect to        SLAVE(I3C0)
Pin Name    Board Location                      Pin Name    Board Location
SCL         J2  pin 1                           SCL         J2  pin 1
SDA         J2  pin 3                           SDA         J2  pin 3
GND         J2  pin 7                           GND         J2  pin 7

Other jumpers keep default configuration.

Prepare the Demo
  1. Connect a USB cable between the host PC and the EVK board J14.

  2. Open a serial terminal on PC for the serial device with these settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.
MIMXRT685-AUD-EVK
Hardware requirements
  • Micro USB cable

  • MIMXRT685-AUD-EVK board

  • Personal Computer

Board settings

Make sure the R470, R471 option B(2-3) is connected to route the I3C signal to J18. Please notice that the I3C module can only work for 1.8V on the board, short JP12 1-2. I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD        CONNECTS TO         SLAVE_BOARD
Pin Name   Board Location     Pin Name   Board Location
P2_29       J18-1               P2_29      J18-1
P2_30       J18-2               P2_30      J18-2
GND         J18-4               GND        J18-4
Prepare the Demo
  1. Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J5) on the board

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Launch the debugger in your IDE to begin running the demo.

Running the demo

The following message shows in the terminal if the example runs successfully.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f


I3C master transfer successful in I2C mode .

I3C master do dynamic address assignment to the I3C slaves on bus.

I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.

I3C master transfer successful in I3C SDR mode .

MIMXRT700-EVK
Hardware requirements
  • Mini/micro USB cable

  • MIMXRT700-EVK board

  • Personal Computer

Board settings

Jumper setting:

EVK board: ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ MASTER(I3C3) connect to SLAVE(I3C3) Pin Name Board Location Pin Name Board Location SCL J48 pin 3 SCL J48 pin 3 SDA J48 pin 5 SDA J48 pin 5 GND J48 pin 8 GND J48 pin 8 ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

Other jumpers keep default configuration.

Prepare the Demo
  1. Connect a USB Type-C cable between the host PC and the MCU-Link port on the target board.

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f
I3C master transfer successful in I2C mode .

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.

I3C master transfer successful in I3C SDR mode .

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
KW47-LOC
Hardware requirements
  • Type-C USB cable

  • KW47-LOC Board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows: Jumper setting:

LOC board:

MASTER(I3C0)                  connect to        SLAVE(I3C0)
Pin Name    Board Location                      Pin Name    Board Location
SCL         J2  pin 5                           SCL         J2  pin 5
SDA         J2  pin 6                           SDA         J2  pin 6
GND         J2  pin 8                           GND         J2  pin 8

Short the JP24-2 and JP24-3 with the jumper, other jumpers keep default configuration.

Prepare the Demo
  1. Connect a USB cable between the host PC and the LOC board J3.

  2. Open a serial terminal on PC for the serial device with these settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
MCXW72-LOC
Hardware requirements
  • Type-C USB cable

  • MCXW72-LOC Board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows: Jumper setting:

LOC board:

MASTER(I3C0)                  connect to        SLAVE(I3C0)
Pin Name    Board Location                      Pin Name    Board Location
SCL         J2  pin 5                           SCL         J2  pin 5
SDA         J2  pin 6                           SDA         J2  pin 6
GND         J2  pin 8                           GND         J2  pin 8

Short the JP24-2 and JP24-3 with the jumper, other jumpers keep default configuration.

Prepare the Demo
  1. Connect a USB cable between the host PC and the LOC board J3.

  2. Open a serial terminal on PC for the serial device with these settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXA266
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXA266 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD    CONNECTS TO       SLAVE_BOARD
Pin Name        Board Location    Pin Name   Board Location
I3C0_SCL/P1_9   J2-20             P1_9       J2-20
I3C0_SDA/P1_8   J2-18             P1_8       J2-18
GND             J2-14             GND        J2-14
Prepare the Demo
  1. Connect a USB Type-C cable between the host PC and the MCU-Link USB port on the target board.

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The log below shows the output of the hello world demo in the terminal window:

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXA366
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXA366 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD    CONNECTS TO       SLAVE_BOARD
Pin Name        Board Location    Pin Name   Board Location
I3C0_SCL/P1_9   J2-20             P1_9       J2-20
I3C0_SDA/P1_8   J2-18             P1_8       J2-18
GND             J2-14             GND        J2-14
Prepare the Demo
  1. Connect a USB Type-C cable between the host PC and the MCU-Link USB port on the target board.

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The log below shows the output of the hello world demo in the terminal window:

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXW72
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXW72 Board

  • Personal Computer

Board settings

To make the example work, connections needed to be as follows: Jumper setting:

FRDM board:

MASTER(I3C0)                  connect to        SLAVE(I3C0)
Pin Name    Board Location                      Pin Name    Board Location
SCL         J5  pin 5                           SCL         J5  pin 5
SDA         J5  pin 6                           SDA         J5  pin 6
GND         J5  pin 8                           GND         J5  pin 8

Other jumpers keep default configuration.

Prepare the Demo
  1. Connect a USB cable between the host PC and the FRDM board J10.

  2. Open a serial terminal on PC for the serial device with these settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Either press the reset button on your board or launch the debugger in your IDE to begin running the demo.

Running the demo

The following lines are printed to the serial terminal when the demo program is executed.

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXA577
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXA577 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD    CONNECTS TO       SLAVE_BOARD
Pin Name        Board Location    Pin Name   Board Location
I3C0_SCL/P0_21  J2-20             P0_21      J2-20
I3C0_SDA/P0_20  J2-18             P0_20      J2-18
GND             J2-14             GND        J2-14
Prepare the Demo
  1. Connect a USB Type-C cable between the host PC and the MCU-Link USB port on the target board.

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The log below shows the output of the hello world demo in the terminal window:

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.
FRDM-MCXA287
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXA287 board

  • Personal Computer

Board settings

I3C one board:

  • Transfer data from MASTER_BOARD to SLAVE_BOARD of I3C interface, I3C0 pins of MASTER_BOARD are connected with I3C0 pins of SLAVE_BOARD

MASTER_BOARD    CONNECTS TO       SLAVE_BOARD
Pin Name        Board Location    Pin Name   Board Location
I3C0_SCL/P0_21  J2-20             P0_21      J2-20
I3C0_SDA/P0_20  J2-18             P0_20      J2-18
GND             J2-14             GND        J2-14
Prepare the Demo
  1. Connect a USB Type-C cable between the host PC and the MCU-Link USB port on the target board.

  2. Open a serial terminal with the following settings:

    • 115200 baud rate

    • 8 data bits

    • No parity

    • One stop bit

    • No flow control

  3. Download the program to the target board.

  4. Press reset button to begin running the demo.

Running the demo

The log below shows the output of the hello world demo in the terminal window:

I3C board2board polling example -- Master transfer.

Start to do I3C master transfer in I2C mode.
Master will send data :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  

Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I2C mode.

I3C master do dynamic address assignment to the I3C slaves on bus.
I3C master dynamic address assignment done.

Start to do I3C master transfer in I3C SDR mode.
I3C master transfer successful in I3C SDR mode.

Start to do I3C master transfer in I3C HDR mode.
Receive sent data from slave :
0x 0  0x 1  0x 2  0x 3  0x 4  0x 5  0x 6  0x 7  
0x 8  0x 9  0x a  0x b  0x c  0x d  0x e  0x f  
0x10  0x11  0x12  0x13  0x14  0x15  0x16  0x17  
0x18  0x19  0x1a  0x1b  0x1c  0x1d  0x1e  0x1f  
I3C master transfer successful in I3C HDR mode.