The Science of Precision Support Explained
Table of Contents
Why Five Zones Were Smart
How Airboost Flips the Script: From Zones to Micro-Precision
Airboost for Deep Restorative Sleep
Remember when smartphone cameras jumped from 8 megapixels to 12? The difference wasn’t just numbers on a spec sheet; it was real, noticeable image quality. More pixels meant finer detail, better accuracy, and fewer blurry areas.
You would be surprised to know that your mattress kind of works the same way.
A 5-zone mattress is like looking at your body through a 5-pixel grid; you get the general shape, but you miss the details. Misalignment happens in the gaps between zones. Pressure builds up at the boundaries. Your spine adjusts constantly, trying to find the right position.
That’s exactly why Airboost is like upgrading to a 4K display. Its 5-Zone AirKnit™ Support System isn’t just segmented — it’s a scientifically designed adaptive support system that responds with greater precision across the surface, helping maintain alignment without “zone boundary” compromises.
Why Five Zones Were Smart
A five-zone mattress makes intuitive sense. Engineers identified distinct pressure-bearing regions: head, shoulders, lumbar, hips, and feet. Giving each zone targeted support is objectively better than uniform support.
The improvement was measurable. Five-zone mattresses outperformed single-density alternatives in pressure relief, spinal alignment, and durability. They remain a legitimate choice for many sleepers.
The limitation appears when zones assume the body changes support needs only at fixed anatomical boundaries. In reality, the body functions as a continuous landscape of micro-variations.
Take the shoulder-to-torso transition. In a five-zone system, this junction becomes a hard boundary. But your shoulder anatomy extends into the upper torso. Support shifts abruptly instead of adapting fluidly.
Multiply this mismatch across dozens of micro-transitions during eight hours of sleep and countless position changes. Five zones simply cannot capture infinite micro-variations.
How Airboost Flips the Script: From Zones to Micro-Precision
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Airboost doesn’t stop at zones. It distributes support across 1 lakh intelligent micro-points, creating a resolution so fine it behaves like continuous support. Each AirKnit filament responds independently to local pressure rather than acting as part of a rigid block.
This isn’t marketing — it’s physics.
Here's what makes it revolutionary:

Superior Adaptive Support: The Airboost layer uses over 2 inches of flexible, noodle-like fibres. Each filament adapts individually at micro-pressure points. Your head, torso, hips, and legs all receive proportionate, real-time support based on load.
3X More Breathability: Traditional foam traps heat due to density. Airboost’s open-cell filament matrix and mesh panels on all sides allow air to move freely top-to-bottom and side-to-side. In India’s climate, this level of airflow is essential for uninterrupted sleep.
Max Rebound: Springs create full-bed bounce; memory foam recovers too slowly. Airboost delivers instant, localised rebound. Movement stays contained, stability returns immediately, and partner disturbance is minimized.
Performance Across Every Dimension
Body Support: Weight is distributed across thousands of points, preventing sink-in and maintaining spinal alignment across sleep positions.
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Heat Dissipation & Breathability: Porous filaments and open matrix construction prevent heat buildup and moisture trapping.
Durability: Without foam compression or spring fatigue, Airboost resists sagging. Filaments recover instantly night after night.
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Hygiene: Transparent mesh panels allow airflow and visibility. No trapped moisture, no hidden mildew.
Airboost for Deep Restorative Sleep
Airboost doesn’t reject five-zone logic; it evolves it. Five zones are a foundation, but true orthopedic performance and thermal comfort demand adaptive precision beyond fixed boundaries.
Built specifically for India’s heat, humidity, and high-stress lifestyles, Airboost delivers alignment, airflow, and sleep continuity in a single system.
