flexcomm_spi_interrupt_b2b_master#
Overview#
The spi_interrupt_b2b_master example shows how to use spi functional API to do interrupt transfer as a master:
In this example, the spi instance as master. Master sends a piece of data to slave, receive data from slave,and check if the data master received is correct. This example needs to work with spi_interrupt_b2b_slave example.
Supported Boards#
EVK-MIMXRT595
Hardware requirements
Micro USB cable
EVK-MIMXRT595 board
Personal Computer
Board settings
The example provides 2 options of SPI interfaces in communication.
SPI5 (default, normal SPI: #define USE_HS_SPI 0)
SPI14 (optional, high speed SPI: #define USE_HS_SPI 1) User can change the USE_HS_SPI value in spi_interrupt_b2b_master.c to choose different SPI interface.
Connect SPI master on board to SPI slave on other board. Only 1 set of signals need to be connected, either SPI5 or SPI14 depending on the USE_HS_SPI setting. NOTE: To use SPI14 on EVK board, please connect JP32 1-2.
Master_board(SPI14) Slave_board(SPI14)
Pin Name Board Location Pin Name Board Location
MISO J36 pin 5 MISO J36 pin 5
MOSI J36 pin 3 MOSI J36 pin 3
SCK J36 pin 7 SCK J36 pin 7
PCS0 J36 pin 1 PCS0 J36 pin 1
GND J36 pin 9 GND J36 pin 9
Connect SPI master on board to SPI slave on other board
Master_board(SPI5) Slave_board(SPI5)
Pin Name Board Location Pin Name Board Location
MISO JP26 pin 3 MISO JP26 pin 3
MOSI JP26 pin 2 MOSI JP26 pin 2
SCK JP26 pin 4 SCK JP26 pin 4
PCS0 JP26 pin 1 PCS0 JP26 pin 1
GND JP26 pin 5 GND JP26 pin 5
Prepare the Demo
Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J40) on the board
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Download the program to the target board.
Launch the debugger in your IDE to begin running the demo.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
EVK-MIMXRT685
Hardware requirements
Micro USB cable
EVK-MIMXRT685 board
Personal Computer
Board settings
Connect SPI master on board to SPI slave on other board.
Master_board(SPI5) Slave_board(SPI5)
Pin Name Board Location Pin Name Board Location
MISO J28 pin 5 MISO J28 pin 5
MOSI J28 pin 4 MOSI J28 pin 4
SCK J28 pin 6 SCK J28 pin 6
PCS0 J28 pin 3 PCS0 J28 pin 3
GND J28 pin 7 GND J28 pin 7
Prepare the Demo
Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J5) on the board
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Download the program to the target board.
Launch the debugger in your IDE to begin running the demo.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
FRDM-MCXW23
Hardware requirements
Type-C USB cable
FRDM-MCXW23 Board
Personal Computer
Board settings
MASTER_BOARD CONNECTS TO SLAVE_BOARD
Pin Name Board Location Pin Name Board Location
SPI_SSEL1 J1-5 SPI_SSEL1 J1-5
SPI_MOSI J4-2 SPI_MOSI J4-2
SPI_MISO J4-1 SPI_MISO J4-1
SPI_SCK J4-6 SPI_SCK J4-6
GND J3-7 GND J3-7
Use the default jumper settings.
Prepare the Demo
Connect a USB cable between the host PC and the FRDM board J10.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
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.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ SPI board to board interrupt master example started!
SPI transfer finished! ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
FRDM-RW612
Hardware requirements
Micro USB cable
FRDM-RW612 board
Personal Computer
Board settings
Connect SPI master on board to SPI slave on other board.
Master_board(SPI1) Slave_board(SPI1)
Pin Name Board Location Pin Name Board Location
MISO J1 pin 4 MISO J1 pin 4
MOSI J1 pin 2 MOSI J1 pin 2
SCK J2 pin 12 SCK J2 pin 12
PCS0 J2 pin 6 PCS0 J2 pin 6
GND J3 pin 14 GND J3 pin 14
Prepare the Demo
Connect a micro USB cable between the PC host and the MCU-Link USB port (J10) on the board
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Download the program to the target board.
Launch the debugger in your IDE to begin running the demo.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
LPCXpresso51U68
Hardware requirements
Micro USB cable
LPCXpresso51U68 board
Personal Computer
Board settings
Populate jumper JP3. Connect SPI master on board to SPI slave on other board
Master - SPI3
Pin Name Board Location
MISO J4 pin 3
MOSI J4 pin 2
SCK J4 pin 4
PCS2 J4 pin 7
Prepare the Demo
Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J6) on the board
Open a serial terminal with the following settings (See Appendix A in Getting started guide for description how to determine serial port number):
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Download the program to the target board.
Reset the SoC and run the project.
Running the demo
When the demo runs successfully, the log would be seen on the CMSIS DAP terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
LPCXpresso54628
Hardware requirements
Micro USB cable
LPCXpresso54628 board
Personal Computer
Board settings
SPI one board: Transfer data from SPI master interface on board to other SPI interface on other board
INSTANCE0(SPI9)
Pin Name Board Location
MISO J9 pin 11
MOSI J9 pin 13
SCK J9 pin 9
PCS0 J9 pin 15
GND P3 Pin 1
Prepare the Demo
Connect a Micro USB cable between the PC host and the LPC-Link USB port (J8) on the board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Download the program to the target board.
Reset the SoC and run the project.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
LPCXpresso54S018
Hardware requirements
Micro USB cable
LPCXpresso54S018 board
Personal Computer
Board settings
SPI one board: Transfer data from SPI master interface on board to other SPI interface on other board
INSTANCE0(SPI9)
Pin Name Board Location
MISO J9 pin 11
MOSI J9 pin 13
SCK J9 pin 9
PCS0 J9 pin 15
##### Prepare the Demo
1. Connect a Micro USB cable between the PC host and the LPC-Link USB port (J8) 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. Reset the SoC and run the project.
##### Running the demo
This demo is an external flash plain load demo, ROM will copy image in external flash to SRAMX to run:
1. Build the demo to generate a bin file.
Note: If need to generate bin file using MCUXpresso IDE, below steps need to be followed:
Set in example Properties->C/C++ Build->Settings->Build steps->Post-build steps->Edit
enbable arm-none-eabi-objcopy -v -O binary "&{BuildArtifactFileName}" "&{BuildArtifactFileBaseName}.bin"
This plainload example linked the vector table to 0x00000000, but program to external flash 0x10000000.
2. Program the bin file to external on board flash via SEGGER J-FLASH Lite(V6.22 or higher):
a. Open SEGGER J-FLASH Lite, select device LPC54S018.
b. Click the 'Erase Chip' to erase the extrenal flash.(if can not success, press SW4 button and reset the board, and try to erase again)
c. Select the bin data file, set the '.bin/Erase Start' address to 0x10000000, then click 'Program Device'
Note: Please use above way to program the binary file built by armgcc tool chain to external flash.
For IAR, KEIL, MCUXpresso IDE, you can use the IDE tool to program the external flash.
When the demo runs successfully, the log would be seen on the terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
LPCXpresso54S018M
Hardware requirements
Micro USB cable
LPCXpresso54S018M board
Personal Computer
Board settings
SPI one board: Transfer data from SPI master interface on board to other SPI interface on other board
INSTANCE0(SPI9)
Pin Name Board Location
MISO J9 pin 11
MOSI J9 pin 13
SCK J9 pin 9
PCS0 J9 pin 15
##### Prepare the Demo
1. Connect a Micro USB cable between the PC host and the LPC-Link USB port (J8) 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. Reset the SoC and run the project.
##### Running the demo
This demo is an external flash plain load demo, ROM will copy image in external flash to SRAMX to run:
1. Build the demo to generate a bin file.
Note: If need to generate bin file using MCUXpresso IDE, below steps need to be followed:
Set in example Properties->C/C++ Build->Settings->Build steps->Post-build steps->Edit
enbable arm-none-eabi-objcopy -v -O binary "&{BuildArtifactFileName}" "&{BuildArtifactFileBaseName}.bin"
This plainload example linked the vector table to 0x00000000, but program to external flash 0x10000000.
2. Program the bin file to external on board flash via SEGGER J-FLASH Lite(V6.22 or higher):
a. Open SEGGER J-FLASH Lite, select device LPC54S018M.
b. Click the 'Erase Chip' to erase the extrenal flash.(if can not success, press SW4 button and reset the board, and try to erase again)
c. Select the bin data file, set the '.bin/Erase Start' address to 0x10000000, then click 'Program Device'
Note: Please use above way to program the binary file built by armgcc tool chain to external flash.
For IAR, KEIL, MCUXpresso IDE, you can use the IDE tool to program the external flash.
When the demo runs successfully, the log would be seen on the terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
LPCXpresso55S06
Hardware requirements
Micro USB cable
Two LPCXpresso55S06 boards
Personal Computer
Board settings
SPI one board: Transfer data from SPI master interface on board to other SPI interface on other board
Master_board(SPI3) Slave_board(SPI3)
Pin Name Board Location Pin Name Board Location
MISO J12 pin 2 MISO J12 pin 2
MOSI J12 pin 1 MOSI J12 pin 1
SCK J10 pin 16 SCK J10 pin 16
SSEL0 J10 pin 14 SSEL0 J10 pin 14
GND J9 pin 8 GND J9 pin 8
Prepare the Demo
Connect a Micro USB cable between the PC host and the LPC-Link USB port (J1) on the board.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Download the program to the target board.
Reset the SoC and run the project.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ SPI board to board interrupt master example started!
SPI transfer finished! ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
LPCXpresso55S16
Hardware requirements
Micro USB cable
Two LPCXpresso55S16 boards
Personal Computer
Board settings
SPI one board: Transfer data from SPI master interface on board to other SPI interface on other board
Master_board(SPI7) Slave_board(SPI7)
Pin Name Board Location Pin Name Board Location
MISO J9 pin 11 MISO J9 pin 11
MOSI J9 pin 9 MOSI J9 pin 9
SCK J9 pin 13 SCK J9 pin 13
SSEL1 J9 pin 2 SSEL1 J9 pin 2
GND J9 pin 8 GND J9 pin 8
The jumper setting: Default jumpers configuration does not work, you will need to add JP20 and JP21 (JP22 optional for ADC use)
##### Prepare the Demo
1. Connect a Micro USB cable between the PC host and the LPC-Link 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. Reset the SoC and run the project.
##### Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
SPI board to board interrupt master example started!
SPI transfer finished!
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
LPCXpresso55S28
Hardware requirements
Micro USB cable
Two LPCXpresso55S28 boards
Personal Computer
Board settings
SPI one board: Transfer data from SPI master interface on board to other SPI interface on other board
Master_board(SPI7) Slave_board(SPI7)
Pin Name Board Location Pin Name Board Location
MISO P17 pin 12 MISO P17 pin 12
MOSI P17 pin 10 MOSI P17 pin 10
SCK P17 pin 14 SCK P17 pin 14
SSEL1 P17 pin 1 SSEL1 P17 pin 1
GND P17 pin 7 GND P17 pin 7
##### Prepare the Demo
Note: MCUXpresso IDE project default debug console is semihost
1. Connect a Micro USB cable between the PC host and the LPC-Link USB port (P6) 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. Reset the SoC and run the project.
##### Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
SPI board to board interrupt master example started!
SPI transfer finished!
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
LPCXpresso55S36
Hardware requirements
Micro USB cable
Two LPCXpresso55S36 boards
Personal Computer
Board settings
Short JP51 1-2, JP52 1-2.
SPI one board: Transfer data from SPI master interface on board to other SPI interface on other board
Master_board(SPI2) Slave_board(SPI2)
Pin Name Board Location Pin Name Board Location
MISO J122 pin 12 MISO J122 pin 12
MOSI J8 pin 3 MOSI J8 pin 3
SCK J122 pin 8 SCK J122 pin 8
SSEL0 J122 pin 6 SSEL0 J122 pin 6
GND J92 pin 14 GND J92 pin 14
##### Prepare the Demo
1. Connect a Micro USB cable between the PC host and the LPC-Link 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. Reset the SoC and run the project.
##### Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
SPI board to board interrupt master example started!
SPI transfer finished!
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
LPCXpresso55S69
Hardware requirements
Micro USB cable
Two LPCXpresso55s69 boards
Personal Computer
Board settings
SPI one board: Transfer data from SPI master interface on board to other SPI interface on other board
Master_board(SPI7) Slave_board(SPI7)
Pin Name Board Location Pin Name Board Location
MISO P17 pin 12 MISO P17 pin 12
MOSI P17 pin 10 MOSI P17 pin 10
SCK P17 pin 14 SCK P17 pin 14
SSEL1 P17 pin 1 SSEL1 P17 pin 1
GND P17 pin 7 GND P17 pin 7
##### Prepare the Demo
Note: MCUXpresso IDE project default debug console is semihost
1. Connect a Micro USB cable between the PC host and the LPC-Link USB port (P6) 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. Reset the SoC and run the project.
##### Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
SPI board to board interrupt master example started!
SPI transfer finished!
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
MIMXRT685-AUD-EVK
Hardware requirements
Micro USB cable
MIMXRT685-AUD-EVK board
Personal Computer
Board settings
Make sure the JP41 2-3 is connected.
Connect SPI master on board to SPI slave on other board.
Master_board(SPI5) Slave_board(SPI5)
Pin Name Board Location Pin Name Board Location
MISO J28 pin 5 MISO J28 pin 5
MOSI J28 pin 4 MOSI J28 pin 4
SCK J28 pin 6 SCK J28 pin 6
PCS0 J28 pin 3 PCS0 J28 pin 3
GND J28 pin 7 GND J28 pin 7
Prepare the Demo
Connect a micro USB cable between the PC host and the CMSIS DAP USB port (J5) on the board
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Download the program to the target board.
Launch the debugger in your IDE to begin running the demo.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
RD-RW612-BGA
Hardware requirements
Micro USB cable
RD-RW612-BGA board
Personal Computer
Board settings
Connect JP30 1-2, JP9, JP19, JP23, JP51. Disconnect JP47 and connect JP47-1 to GND(J8-6). Extra rework is needed for the slave board besides the above connection, remove R97, R415, R594 and install R409, R49, R13.
Connect SPI master on board to SPI slave on other board.
Master_board(SPI0) Slave_board(SPI0)
Pin Name Board Location Pin Name Board Location
MISO J5 pin 5 MISO J5 pin 5
MOSI J5 pin 4 MOSI J5 pin 4
SCK J5 pin 6 SCK J5 pin 6
PCS0 J5 pin 3 PCS0 J5 pin 3
GND J5 pin 7 GND J5 pin 7
Prepare the Demo
Connect a micro USB cable between the PC host and the MCU-Link USB port (J7) on the board
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
Download the program to the target board.
Launch the debugger in your IDE to begin running the demo.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
SPI board to board interrupt master example started!
SPI transfer finished!
MCXW23-EVK
Hardware requirements
Mini/micro USB cable
MCXW23-EVK Board
Personal Computer
Board settings
MASTER_BOARD CONNECTS TO SLAVE_BOARD
Pin Name Board Location Pin Name Board Location
SPI_SSEL1 J24-3 SPI_SSEL1 J24-3
SPI_MOSI J18-6 SPI_MOSI J18-6
SPI_MISO J18-5 SPI_MISO J18-5
SPI_SCK J18-4 SPI_SCK J18-4
GND J18-8 GND J18-8
Use the default jumper settings.
Prepare the Demo
Connect a USB cable between the host PC and the EVK board J33.
Open a serial terminal with the following settings:
115200 baud rate
8 data bits
No parity
One stop bit
No flow control
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.
Running the demo
When the demo runs successfully, the log would be seen on the terminal like:
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ SPI board to board interrupt master example started!
SPI transfer finished! ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~