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What is the thermal dissipation capacity of the SR40 V3 Hydro Cooling Container?

Update Time:2026/9/17

Short answer

The SR40 V3 is built for the extreme thermal density of modern hydro-cooled ASIC miners and HPC hardware. Optimized fluid dynamics and high-capacity internal manifolds move heat into the secondary loop, where dissipation capacity is set by the paired dry cooling tower and the site's ambient conditions.

  • Built for hydro ASIC and HPC densities
  • Optimized fluid dynamics
  • High-capacity internal manifolds
  • Capacity set by dry tower + ambient

How heat moves through the system

SR40 V3 hydro cooling container with its matching dry cooling tower
SR40 V3 container paired with a dry cooling tower — heat is rejected in the second loop.
  • Heat is captured at the rack. The primary loop picks up heat directly from hydro-cooled hardware.
  • Transferred to the secondary loop. High-capacity manifolds carry the load out of the container.
  • Rejected by the dry cooling tower. Tower sizing — not the container — sets the megawatt ceiling.
  • Quoted per project. Exact capacity is engineered against your hardware mix and site ambient conditions.
Mining hardware wall inside a hydro cooling container at full load
Full-load hardware inside the container — the heat source the loop is sized for.
Row of SR40 V3 containers deployed on a prepared site
Container rows on site with paired heat rejection.

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