MCUXpresso_LPC55S69/boards/lpcxpresso55s69/driver_examples/powerquad/benchmark_sw_filter/cm33_core0
Yilin Sun 6e8d03ec0a Updated to SDK v2.15.000
Signed-off-by: Yilin Sun <imi415@imi.moe>
2024-04-12 21:21:49 +08:00
..
armgcc Updated to SDK v2.15.000 2024-04-12 21:21:49 +08:00
board.c Stock SDK v2.11.0 2022-04-08 22:42:47 +08:00
board.h Stock SDK v2.11.0 2022-04-08 22:42:47 +08:00
clock_config.c Stock SDK v2.11.0 2022-04-08 22:42:47 +08:00
clock_config.h Stock SDK v2.11.0 2022-04-08 22:42:47 +08:00
pin_mux.c Stock SDK v2.11.0 2022-04-08 22:42:47 +08:00
pin_mux.h Stock SDK v2.11.0 2022-04-08 22:42:47 +08:00
powerquad_benchmark_sw_filter_v3_14.xml Updated to SDK v2.15.000 2024-04-12 21:21:49 +08:00
powerquad_benchmark_sw_filter.c Updated SDK v2.13.0 2023-01-26 10:53:53 +08:00
readme.md Updated to SDK v2.15.000 2024-04-12 21:21:49 +08:00

Overview

This example shows the official CMSIS DSP function performance. It could be compared with the project powerquad_benckmark_filter to show the PowerQuad performance improvement.

SDK version

  • Version: 2.15.000

Toolchain supported

  • MCUXpresso 11.8.0
  • IAR embedded Workbench 9.40.1
  • Keil MDK 5.38.1
  • GCC ARM Embedded 12.2

Hardware requirements

  • Mini/micro USB cable
  • LPCXpresso55s69 board
  • Personal Computer

Board settings

No special settings are required.

Prepare the Demo

  1. Connect a micro USB cable between the PC host and the CMSIS DAP USB port (P6) on the board
  2. 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
  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 message about error or success will be output to the termial.