Rather than relying on manual calculations or basic, rigid grids, Optiplanning uses advanced algorithms to arrange parts. It balances two critical factors: Minimizing scrap and offcuts.
By squeezing the maximum number of parts out of every sheet, companies typically see a massive drop in sheet consumption. Over a year, saving even 2% to 5% of raw material can translate into thousands of dollars returned to the bottom line. Lower Labor and Machine Wear
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Optimizing Panel Cutting Production: The Ultimate Guide to Biesse Optiplanning Software biesse optiplanning software
Modern manufacturing relies on interconnected data. Optiplanning is built to fit into a connected ecosystem.
Limitations & considerations
Its role is to bridge the gap between design and production. By integrating with design and ERP systems, it automates workflow from CAD to the saw. As part of the bSuite platform, it aligns with the Industry 4.0 principles of data-driven, interconnected manufacturing, turning the cutting department into a strategic center of efficiency. Rather than relying on manual calculations or basic,
It is designed specifically to maximize material yield, reduce programming time, and manage offcuts efficiently.
The Professional version (LW/HP) offers advanced features such as compiling over 400 parameters on a single page, jointly optimizing multiple jobs, and specifically handling mixed cutting lists and "stuck goods." It is capable of handling Z1 cuts (a specific type of cut in Biesse terminology) which is necessary for certain complex cutting patterns.
As with any professional software, there are practical aspects to using Optiplanning: Over a year, saving even 2% to 5%
: Includes dedicated areas for managing materials, panels, edgebanding strips, and laminate stocks. Advanced Optimization
Typical workflows