More Energy
Capture more of every day.
Dual-axis tracking follows both azimuth and elevation, keeping the array more closely aligned with the sun throughout the day and across the seasons.
Currently in engineering and validation
MaxxTraxx is a premium heavy-duty solar tracker engineered to capture more energy, handle demanding wind conditions, and perform on terrain that conventional array layouts may struggle to accommodate.
Three pillars
More Energy
Dual-axis tracking follows both azimuth and elevation, keeping the array more closely aligned with the sun throughout the day and across the seasons.
Built for Wind
MaxxTraxx is being engineered around structural resilience, not minimum material cost — for customers who do not want weather treated as a secondary specification.
Less Site Grading
A central elevated pivot allows each tracker to operate independently without requiring the same long, level rows common to conventional array layouts.
The central story
A dual-axis tracker can keep solar modules oriented toward the sun in two dimensions. That additional movement can produce substantially more energy than a fixed array — but greater movement creates greater engineering demands. MaxxTraxx is being developed around a simple idea: do not sacrifice structural confidence to gain solar yield.
Energy yield
Fixed arrays are designed around a compromise. Single-axis trackers improve on that by following the sun across one axis. Dual-axis systems go further, adjusting for both daily movement and seasonal elevation changes.
Published range of potential energy gain over fixed tilt under varying conditions.
Tracking for both azimuth and solar elevation.
A system designed to adapt as the sun's path changes throughout the year.
Published studies have reported energy gains of roughly 30–45% over fixed-tilt systems depending on geography, weather, and system design.
Structural resilience
Solar trackers spend their lives outdoors. MaxxTraxx is being developed as a heavy-duty platform for customers who do not want structural resilience treated as a secondary specification — with substantial components, serious foundations, and engineering focused on long-term field performance.
Terrain
Each tracker rotates around a central elevated pivot point supported by its own foundation. Because the tracker operates independently, uneven terrain does not require the same continuous leveling demanded by long-row systems.
Built for the land you have — not the land you wish you had.
Applications
Generate energy without forcing the entire property into a conventional row-based solar geometry.
High electrical demand, open land, and long operating hours can make increased solar yield especially valuable.
Elevated tracking geometry may create opportunities for land-use configurations that preserve agricultural activity.
For businesses with limited or uneven usable land, greater production per panel can improve site utilization.
When every installed module matters, maximizing yield per module can become more important than minimizing tracker complexity.
Applications where structural confidence is central to the project decision.
Development status
MaxxTraxx is currently being developed by the team behind AgriPower Solar. We are not interested in rushing a tracker to market simply to add another product to the category. We are building the machine we believe the category has been missing.
Interested in an Early Project?