MCUXpresso SDK Documentation

log_bm

log_bm#

Overview#

The log Demo application demonstrates to prompt LOG with level by commands. Note: Please input one character at a time. If you input too many characters each time, the receiver may overflow because the low level UART uses simple polling way for receiving. If you want to try inputting many characters each time, just define DEBUG_CONSOLE_TRANSFER_NON_BLOCKING in your project to use the advanced debug console utility. Besides, the demo does not support semihosting mode. The log demo is based on shell, debug console and serial manager. When semihosting is used, debug console and serial manager are bypassed. So the log demo cannot work with semihosting.

Supported Boards#

EVKB-IMXRT1050
Hardware requirements
  • Mini/micro USB cable

  • EVKB-IMXRT1050 board

  • Personal Computer

Board settings

No special settings are required.

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.

Note

  • This demo will use GPIO toggle which is only available on A1 silicon (MIMXRT105xxxxxB).

Running the demo

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

MIMXRT1060-EVKB
Hardware requirements
  • Mini/micro USB cable

  • MIMXRT1060-EVKB board

  • Personal Computer

Board settings

No special settings are required.

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.

Note

  • This demo will use GPIO toggle which is only available on A1 silicon (MIMXRT106xxxxxA).

Running the demo

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
 * Copyright 2021 NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

MIMXRT1170-EVKB
Hardware requirements
  • Mini/micro USB cable

  • EVK-MIMXRT1170 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

MIMXRT1060-EVKC
Hardware requirements
  • Mini/micro USB cable

  • MIMXRT1060-EVKC board

  • Personal Computer

Board settings

No special settings are required.

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.

Note

  • This demo will use GPIO toggle which is only available on A1 silicon (MIMXRT106xxxxxA).

Running the demo

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
 * Copyright 2021 NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-IMXRT1152
Hardware requirements
  • Type-C USB cable

  • FRDM-IMXRT1152 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2026 NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

EVK-MIMXRT1010
Hardware requirements
  • Mini/micro USB cable

  • EVK-MIMXRT1010 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

Note: To debug in qspiflash, following steps are needed:

  1. Select the flash target and compile.

  2. Set the SW8: 1 off 2 off 3 on 4 off, then power on the board and connect USB cable to J41.

  3. 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.

EVK-MIMXRT1015
Hardware requirements
  • Mini/micro USB cable

  • EVK-MIMXRT1015 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

Note: To debug in qspiflash, following steps are needed:

  1. Select the flash target and compile.

  2. Set the SW8: 1 off 2 off 3 on 4 off, then power on the board and connect USB cable to J41.

  3. 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.

EVK-MIMXRT1020
Hardware requirements
  • Mini/micro USB cable

  • EVK-MIMXRT1020 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

Note: To debug in qspiflash, following steps are needed:

  1. Select the flash target and compile.

  2. Set the SW8: 1 off 2 off 3 on 4 off, then power on the board and connect USB cable to J23.

  3. 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.

MIMXRT1024-EVK
Hardware requirements
  • Mini/micro USB cable

  • MIMXRT1024-EVK board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

Note: To debug in qspiflash, following steps are needed:

  1. Select the flash target and compile.

  2. Set the SW8: 1 off 2 off 3 on 4 off, then power on the board and connect USB cable to J23.

  3. 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.

MIMXRT1040-EVK
Hardware requirements
  • Mini/micro USB cable

  • MIMXRT1040-EVK board

  • Personal Computer

Board settings

No special settings are required.

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.

Note

  • This demo will use GPIO toggle which is only available on A1 silicon (MIMXRT104xxxxxA).

Running the demo

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
 * Copyright 2021 NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

EVK-MIMXRT1064
Hardware requirements
  • Mini/micro USB cable

  • EVK-MIMXRT1064 board

  • Personal Computer

Board settings

No special settings are required.

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.

Note

  • This demo will use GPIO toggle which is only available on A1 silicon (MIMXRT106xxxxxA).

Running the demo

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

MIMXRT1160-EVK
Hardware requirements
  • Mini/micro USB cable

  • EVK-MIMXRT1160 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
 * Copyright 2021 NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

MIMXRT1180-EVK
Hardware requirements
  • Mini/micro USB cable

  • MIMXRT1180-EVK board

  • Personal Computer

Board settings

No special settings are required.

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

Running the demo

When the example runs successfully, the following message is displayed in the terminal:

Copyright  2022  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 
EVK-MIMXRT595
Hardware requirements
  • Micro USB cable

  • EVK-MIMXRT595 board

  • Personal Computer

Board settings
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 log below shows the output of the shell demo in the terminal window:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

EVK-MIMXRT685
Hardware requirements
  • Micro USB cable

  • EVK-MIMXRT685 board

  • Personal Computer

Board settings
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 log below shows the output of the shell demo in the terminal window:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-K22F
Hardware requirements
  • Mini USB cable

  • FRDM-K22F board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-K32L2A4S
Hardware requirements
  • Mini USB cable

  • FRDM-K32L2A4S board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-K32L2B
Hardware requirements
  • Mini USB cable

  • FRDM-K32L2B board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-K32L3A6
Hardware requirements
  • Mini USB cable

  • FRDM-K32L3A6 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-KE15Z
Hardware requirements
  • Micro USB cable

  • FRDM-KE15Z board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-KE16Z
Hardware requirements
  • Micro USB cable

  • FRDM-KE16Z board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-KE17Z
Hardware requirements
  • Micro USB cable

  • FRDM-KE17Z board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-KE17Z512
Hardware requirements
  • Micro USB cable

  • FRDM-KE17Z512 board

  • Personal Computer

Board settings

No special settings are required.

Prepare the Demo
  1. Connect a USB 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. 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 example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-MCXC242
Hardware requirements
  • Mini USB cable

  • FRDM-MCXC242 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright 2024 NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-MCXC444
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXC444 board

  • Personal Computer

Board settings

No special settings are required.

Prepare the Demo
  1. Connect a USB cable between the PC host and the Debug Link port 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. 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 example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

FRDM-MCXW71
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXW71 Board

  • Personal Computer

Board settings
Prepare the Demo
  1. Connect a USB cable between the host PC and UART0 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

Copyright 2024 NXP

LOG SHELL>>

MCX-W71-EVK
Hardware requirements
  • Type-C USB cable

  • MCX-W71-EVK Board

  • Personal Computer

Board settings
Prepare the Demo
  1. Connect a USB cable between the host PC and UART0 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

Copyright 2025 NXP

LOG SHELL>>

KW45B41Z-EVK
Hardware requirements
  • Mini/micro USB cable

  • KW45B41Z-EVK Board

  • Personal Computer

Board settings
Prepare the Demo
  1. Connect a USB cable between the host PC and UART0 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

Copyright 2020 NXP

LOG SHELL>>

KW45B41Z-LOC
Hardware requirements
  • Mini/micro USB cable

  • KW45B41Z-LOC Board

  • Personal Computer

Board settings
Prepare the Demo
  1. Connect a USB cable between the host PC and UART1 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

Copyright 2020 NXP

LOG SHELL>>

KW47-EVK
Hardware requirements
  • Type-C USB cable

  • KW47-EVK Board

  • Personal Computer

Board settings
Prepare the Demo
  1. Connect a USB cable between the host PC and UART1 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

Copyright 2024 NXP

LOG SHELL>>

LPCXpresso51U68
Hardware requirements
  • Mini USB cable

  • LPCXpresso51U68 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

LPCXpresso54628
Hardware requirements
  • Mini/micro USB cable

  • LPCLPCXpresso54628 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

LPCXpresso54S018
Hardware requirements
  • Mini/micro USB cable

  • LPCLPCXpresso54S018 board

  • Personal Computer

Board settings

No special settings are required.

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

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 example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

LPCXpresso54S018M
Hardware requirements
  • Mini/micro USB cable

  • LPCLPCXpresso54S018M board

  • Personal Computer

Board settings

No special settings are required.

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

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 example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

LPCXpresso55S16
Hardware requirements
  • Mini USB cable

  • LPCXpresso55S16 board

  • Personal Computer

Board settings

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 USB cable between the host PC and the 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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

LPCXpresso55S28
Hardware requirements
  • Mini USB cable

  • LPCXpresso55S28 board

  • Personal Computer

Board settings

No special settings are required.

Prepare the Demo

Note: MCUXpresso IDE project default debug console is semihost

  1. Connect a USB cable between the host PC and the 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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

LPCXpresso55S69
Hardware requirements
  • Mini USB cable

  • LPCXpresso55s69 board

  • Personal Computer

Board settings

No special settings are required.

Prepare the Demo

Note: MCUXpresso IDE project default debug console is semihost

  1. Connect a USB cable between the host PC and the 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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

MCX-W72-EVK
Hardware requirements
  • Type-C USB cable

  • MCX-W72-EVK Board

  • Personal Computer

Board settings
Prepare the Demo
  1. Connect a USB cable between the host PC and UART1 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

Copyright 2024 NXP

LOG SHELL>>

MIMXRT685-AUD-EVK
Hardware requirements
  • Micro USB cable

  • MIMXRT685-AUD-EVK board

  • Personal Computer

Board settings
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 log below shows the output of the shell demo in the terminal window:

SHELL build: Sep 27 2020
 * Copyright 2021 NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

MIMXRT700-EVK
Hardware requirements
  • Micro USB cable

  • MIMXRT700-EVK board

  • Personal Computer

Board settings
Prepare the Demo
  1. Connect a micro USB cable between the PC host and the MCU-LINK 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 log below shows the output of the shell demo in the terminal window:

Copyright  2024  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 
TWR-KM34Z50MV3
Hardware requirements
  • Mini USB cable

  • TWR-KM34Z50MV3 board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

TWR-KM34Z75M
Hardware requirements
  • Mini USB cable

  • TWR-KM34Z75M board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

TWR-KM35Z75M
Hardware requirements
  • Micro USB cable

  • TWR-KM35Z75M board

  • Personal Computer

Board settings

No special settings are required.

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

When the example runs successfully, the following message is displayed in the terminal:

SHELL build: Sep 27 2020
Copyright  2020  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 

Note: The shell information “SHELL build: Sep 27 2020” may be different, which depends on the compile date.

KW47-LOC
Hardware requirements
  • Type-C USB cable

  • KW47-LOC Board

  • Personal Computer

Board settings

No special is needed.

Prepare the Demo
  1. Connect a USB cable between the host PC and UART1 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
Copyright  2024  NXP

LOG SHELL>> 
MCXW72-LOC
Hardware requirements
  • Type-C USB cable

  • MCXW72-LOC Board

  • Personal Computer

Board settings

No special is needed.

Prepare the Demo
  1. Connect a USB cable between the host PC and UART1 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
Copyright  2024  NXP

LOG SHELL>> 
FRDM-IMXRT1186
Hardware requirements
  • Type-C USB cable

  • FRDM-IMXRT1186 board

  • Personal Computer

Board settings

No special settings are required.

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

Running the demo

When the example runs successfully, the following message is displayed in the terminal:

Copyright  2022  NXP

LOG SHELL>> installbackend debugconsole
LOG SHELL>> log fatal
           0: FATAL log_main.c:83:This is "fatal" log message

LOG SHELL>> log error
           0: ERROR log_main.c:87:This is "error" log message

LOG SHELL>> log warning
           0: WARN  log_main.c:91:This is "warning" log message

LOG SHELL>> log info
           0: INFO  log_main.c:95:This is "info" log message

LOG SHELL>> log debug
           0: DEBUG log_main.c:99:This is "debug" log message

LOG SHELL>> log trace
           0: TRACE log_main.c:103:This is "trace" log message

LOG SHELL>> log test
           0: ERROR log_main.c:107:The input arguement "test" is not valid

LOG SHELL>> uninstallbackend debugconsole
LOG SHELL>> 
FRDM-MCXW72
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXW72 Board

  • Personal Computer

Board settings

No special is needed.

Prepare the Demo
  1. Connect a USB cable between the host PC and UART1 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
Copyright  2024  NXP

LOG SHELL>> 
FRDM-KW43
Hardware requirements
  • Type-C USB cable

  • FRDM-KW43 Board

  • Personal Computer

Board settings

No special settings are required.

Prepare the Demo
  1. Connect a USB cable between the host PC and the FRDM board J28.

  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

Copyright 2024 NXP

LOG SHELL>>

FRDM-MCXW70
Hardware requirements
  • Type-C USB cable

  • FRDM-MCXW70 Board

  • Personal Computer

Board settings

No special settings are required.

Prepare the Demo
  1. Connect a USB cable between the host PC and the FRDM board J28.

  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

Copyright 2024 NXP

LOG SHELL>>