diff --git a/PCB Design/Music Player/Process.md b/PCB Design/Music Player/Process.md index f89e30a..c8ffa93 100644 --- a/PCB Design/Music Player/Process.md +++ b/PCB Design/Music Player/Process.md @@ -39,4 +39,6 @@ Since 3.3V are needed the values of 180K and 1M will be used for the feedback vo Figure 31 in section 10.2 of the datasheet should be used as an example layout for the regulator ## PCM5102A ## LCD Selection -Initially I was planning to use the [NHD-2.4-240320DA-CTXN](https://www.digikey.com/en/products/detail/newhaven-display-intl/NHD-2-4-240320DA-CTXN/26743729) but I found that it requires 9.0V to drive the back light. Since I am driving this off of a single cell lipo I didn't want to add the additional complexity of another boost converter to get to 9.0V. I was able to find \ No newline at end of file +Initially I was planning to use the [NHD-2.4-240320DA-CTXN](https://www.digikey.com/en/products/detail/newhaven-display-intl/NHD-2-4-240320DA-CTXN/26743729) but I found that it requires 9.0V to drive the back light. Since I am driving this off of a single cell lipo I didn't want to add the additional complexity of another boost converter to get to 9.0V. I was able to find [another very similar display](https://www.digikey.com/en/products/detail/newhaven-display-intl/NHD-2-4-240320AF-CSXP/22204988) that instead uses 3.0V (up to 3.3V) to power the back light. + +The display controller gives the option of using SPI or parallel RGB to control the display. I decided to go with SPI since it is much simpler to route and manage and I don't need the performance gained by the parallel RGB interface. \ No newline at end of file