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Step 4.
Click on [
+
] to add a new element to the board list.
Figure 10.
Adding a new element
Step 5.
Double-click on the newly added element to configure the board.
Step 6.
Select the voltage regulator part number.
Figure 11.
Voltage regulator selection
Step 7.
Select the FSM frequency (the default value is 10 kHz).
Step 8.
Select the ADC voltage reference (the default value is 5 V).
Step 9.
Click the [
Allocation
] button below the AEK-POW-LDOV01x list and click [
OK
] in the confirmation
window.
This operation delegates the automatic pin allocation to the
Step 10.
Generate and build the application using the appropriate icons in
The project folder is then populated with new files, including the main.c and the component folder with
the AEK-POW-LDOV01x drivers.
Step 11.
Open the main.c file and include the AEK_POW_LDOV01x.h file.
Step 12.
Save, generate, and compile the application.
Step 13.
Open the [
Board View Editor
This editor offers a graphical point-to-point guide on how to wire the boards.
Step 14.
to a USB port on your PC using a mini-USB to USB cable.
Step 15.
Launch
and open the debug.wsx file in the chosen application name UDE folder.
Step 16.
Run and debug your code.
4.2
Available demos for the AEK-POW-LDOV01x
The
includes some voltage regulator demos available for the SPC58EC Chorus 4M
(SPC58ECxx_RLA AEK-POW-LDOV01x – DC – DC Voltage Regulator - Test Application) and SPC582B Chorus
1M (SPC582Bxx_RLA AEK-POW-LDOV01x – DC – DC Voltage Regulator - Test Application). The demos are
identical, but they are controlled by different MCUs.
UM3028
Available demos for the AEK-POW-LDOV01x
UM3028
-
Rev 1
page 12/37