Bottom Line: The Original ZimaBoard Successfully Booted Android-x86 8.1-r5, but This Is a Historical Compatibility Test
The 2023 procedure worked: write Android-x86 to USB, boot the installer, install to SSD, then complete Android setup. It proved that the original x86 ZimaBoard could run that Android-x86 release. It does not prove that every modern Android-x86 build, Play Services package or peripheral will behave the same way today.

Create the Installer and Boot From USB



The source used Android-x86 8.1-r5 and Rufus. The Android-x86 download page is the right place to check available project images, while the official Rufus site is the safer source for the USB-writing tool.
Install to the Correct SSD Partition





This is the destructive part. Confirm the target disk and partition before formatting. The screenshots are useful because they show exactly where a wrong selection could erase the wrong storage device.
What “Tablet-Level Functionality” Actually Means Here




The test reached the Android home screen, app drawer and Play Store-style workflow with keyboard/mouse input. That is enough to call the experiment functional, but app compatibility still depends on Android version, x86 support, graphics, DRM, audio and the individual application.
Use the 2023 Test as a Hardware Experiment, Not a Current OS Recommendation
The original article used the first-generation board. If you are evaluating the same x86 experiment on current hardware, see the ZimaBoard 2 product page and the Zima community setup gallery. Keep a separate system disk or full backup so an Android test does not overwrite your NAS environment.
