Redmi Note 14 Pro 5G / POCO X7 China HyperOS OS1.0.5.0.UOOCNXM Update

HyperOS OS1.0.5.0.UOOCNXM Stable Official Update for Redmi Note 14 Pro 5G / POCO X7 China (malachite)

This page shows the OS1.0.5.0.UOOCNXM update only. If you're looking for other updates check here.

Note: All files listed here are official untouched HyperOS ROMs. It's not owned, modified or edited by XM Firmware Updater.

Note
You might be looking for something else!

This page shows a single update only. If you're looking for another update or other downloads check:

HyperOS Downloads Firmware Downloads Vendor Downloads
  • Device: Redmi Note 14 Pro 5G / POCO X7 China
  • Codename: malachite
  • Version: OS1.0.5.0.UOOCNXM
  • Branch: Stable
  • Type: Recovery
  • Size: 6.5 GB
  • Release Date: 2024-09-26
  • Package Name: miui_MALACHITE_OS1.0.5.0.UOOCNXM_5b70511a4a_14.0.zip
  • MD5: 5b70511a4a09c44c9af73568cc1dcc72
  • Download:
  • Changelog:

    [Highlights]
    Fix: Compatibility issues for some types of networks
    [System]
    Optimization: App launching algorithm speeds up app opening process
    Optimization: New startup animation strategy makes apps launch faster
    Updated the security patch to September 2024. Increased system security.
    [Camera]
    Optimization: Performance improvements and overall stability

  • Device: Redmi Note 14 Pro 5G / POCO X7 China
  • Codename: malachite
  • Version: OS1.0.5.0.UOOCNXM
  • Branch: Stable
  • Type: Fastboot
  • Size: 8.4 GB
  • Release Date: 2024-09-14
  • Package Name: malachite_images_OS1.0.5.0.UOOCNXM_20240914.0000.00_14.0_cn_172f05e676.tgz
  • MD5: 172f05e67673ea353e46d6cdb97d7fa3
  • Download:
  • Changelog:

    [Highlights]
    Fix: Compatibility issues for some types of networks
    [System]
    Optimization: App launching algorithm speeds up app opening process
    Optimization: New startup animation strategy makes apps launch faster
    Updated the security patch to September 2024. Increased system security.
    [Camera]
    Optimization: Performance improvements and overall stability