Overcoming The Scale Barrier: UNPARALLELED® Produces 20-Meter Single-Piece Precision Granite Bases

Jun 08, 2026 Leave a message

The rapid scaling of the global semiconductor, panel display, and industrial CT industries has driven an unprecedented demand for massive, heavy-duty structural components. For technologies like perovskite solar cell coating machines, long-stroke linear motor platforms, and multi-axis gantry CMMs, split-joint bases are often unacceptable due to micro-defects at the seams. The industry requires giant, single-piece structures.

To address this challenge, UNPARALLELED Group has scaled its manufacturing capabilities to the absolute limits of modern precision engineering at our 200,000m² production complex.

100-Ton Single-Piece Machining Limits

Processing a piece of granite that weighs dozens of tons requires an entirely different tier of industrial infrastructure. Our heavy-duty CNC machining centers and overhead cranes are fully rated to handle single-piece components weighing up to 100 tons, with maximum dimensional limits of:

  • Length: 20,000 mm (20 meters)
  • Width: 4,000 mm
  • Thickness: 1,000 mm

Operating four dedicated high-capacity production lines for precision granite machine beds, our facility outputs up to 20,000 sets of 5,000mm-class granite beds monthly-making UNPARALLELED the world's fastest and highest-volume producer of massive precision stone components by annual tonnage.

single-piece components

Premium Capital Investments for Surface Finishes

To guarantee sub-micron flatness across a 20-meter span, general machining equipment is insufficient. UNPARALLELED® has deployed a fleet of four ultra-large Nante (Taiwan) grinding machines, representing an investment of over 500,000 USD per single unit.

These massive grinders allow our engineering team to mechanically grind both metallic and non-metallic precision platforms up to 6,000 mm in a single pass before final hand-lapping. By merging heavy industrial tonnage with high-end machinery, we provide international OEMs with the exact structural foundation required for their next-generation, large-scale automation systems.