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iQOO Pad Ultra leak points to active cooling and next-generation Snapdragon power

A new benchmark listing has provided an early look at iQOO's upcoming Pad Ultra, a gaming-focused Android tablet expected to launch in China this month.

By Gameforce Mobile News Desk

iQOO Pad Ultra leak points to active cooling and next-generation Snapdragon power - Gameforce Mobile news hero image

Key facts

Topic:
Hardware
Published:
2026-09-15
Reported by:
Gameforce Mobile News Desk

Key takeaways

  • A new benchmark listing has provided an early look at iQOO's upcoming Pad Ultra, a gaming-focused Android tablet expected to launch in China this month.
  • The listed device carries 16GB of RAM and a next-generation Qualcomm Snapdragon 8 Elite Extreme Gen 6 platform with an Adreno 850 GPU, while running Android 17.
  • Android gaming tablets are increasingly competing with dedicated handheld PCs, and devices such as this blur the boundary further by pairing desktop-scale displays with mobile silicon and specialised thermal hardware.

A new benchmark listing has provided an early look at iQOO's upcoming Pad Ultra, a gaming-focused Android tablet expected to launch in China this month. The listed device carries 16GB of RAM and a next-generation Qualcomm Snapdragon 8 Elite Extreme Gen 6 platform with an Adreno 850 GPU, while running Android 17. iQOO has already confirmed that the tablet will use a built-in cooling fan, an unusual feature that underlines its performance-first positioning.

Early benchmark numbers are substantially below Qualcomm reference hardware, but pre-release scores should be treated cautiously because unfinished firmware, thermal profiles and power limits can dramatically affect results. Active cooling could ultimately give the Pad Ultra an advantage over passively cooled tablets during extended gaming sessions, where sustained performance matters more than a short benchmark burst.

Android gaming tablets are increasingly competing with dedicated handheld PCs, and devices such as this blur the boundary further by pairing desktop-scale displays with mobile silicon and specialised thermal hardware.

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