Layout and Spacing
Tubing and Ultra-Fin spacing guide — match fin density to the calculated heat load, keep loops balanced and design for the lowest practical water temperature.

Density follows the load
Ultra-Fin performance is optimized by matching fin spacing to the calculated room heat load. Higher heat-loss areas require increased fin density, while lower heat-loss areas can be installed with wider spacing without sacrificing comfort or efficiency.
Use higher Ultra-Fin density when designing for the lowest possible operating water temperature.
If future conversion from a boiler to an air-to-water heat pump is anticipated, design the Ultra-Fin system using increased fin density (higher-load spacing) from the outset. The additional heat transfer surface allows the system to deliver the required heat output while operating at the lowest practical water temperature, maximizing efficiency today and ensuring compatability with future low-temperature heat sources.
Layout and Spacing Guide
Use these quick references for planning. Final layouts and material lists can be generated with the Ultra‑Calc™
Tubing quantity depends on joist spacing, installation method, and designheat load. Use the Ultra‑Calc™ software or the tubing layout tables in the manual to estimate the required tubing length for your project. Allow additional tubing for manifold connections and field routing where required.
(91 m) per loop
Ultra-Calc System Design Tool
Ultra‑Calc™ is a free online design tool that generates complete system layouts, material quantities, and project documentation, and printable reports in minutes.
When designing for future air‑to‑water heat pump compatability, select higher-density from the outset



