SDAA436
September 2026
DRV8000-Q1
1
Abstract
Trademarks
1
Introduction to Human Machine Interface
2
Introduction to AM62L
3
Demo Overview
3.1
Background
4
Methods to Reduce Active Power
4.1
Light Weight Graphics Application
4.2
Minimal Linux Device Tree
4.3
Local Power Sleep Controller (LPSC)
4.4
Reducing Clock Frequencies
4.5
Auto Clock Gating
4.6
DDR in Auto Self-Refresh
4.7
Performance
5
Demo Specific Optimizations
5.1
LVGL Application
5.2
Minimal Device Tree
5.3
Slow Clock Speed
5.4
Slow A53 Core Clock Frequency
5.5
Turn Off One A53 Core
5.6
Slow DDR Transfer Speed
5.7
DDR Auto Self-Refresh
5.8
Auto Clock Gating
5.9
Slow Panel FPS
6
Power Data
7
Implementing Low Powers Modes within an HMI Use Case
8
Demo Steps
8.1
System Requirements
8.2
Prepare the SD Card
8.2.1
Build the Required Files
8.2.1.1
Boot Images
8.2.1.2
U-Boot Commands
8.2.1.3
GUI Files
8.2.1.4
Kernel Image, Modules, and Device Tree
8.2.1.5
Scripts
8.3
Run the Demo
9
Summary
10
References
11
Appendix
11.1
Display Image
11.2
Minimal Device Tree Patch
11.3
Slow Clock Frequencies
11.4
Slow DDR Speed to 800 MT/s Patch
11.5
Enable Auto Self Refresh for DDR
11.6
Enable Auto Clock Gating
11.7
Slow Panel Pixel Clock by Half Patch
11.8
U-Boot Commands
11.9
Enable All Power Optimizations and Run lvglsim Binary
11.10
RPI Touch Display Troubleshooting
Application Note
Building Low Power Human-Machine Interface with AM62L