Top Shelf Panel Raising Router Bit System With Five Precision Profiles And Heavy Duty Carbide Blades For Sweet Woodworking Cuts Engineered For Knockout Performance And Kickback Fighting Safety Designed To Save Your Workshop A Total Badass Setup

Regular price $617.95 Sale price$1,265.00you save $647.05
SKU: VXB00004VWO8
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Pro panel raising router set for precise cabinet work
✔️ 140 mm overall width plus 32 mm spine opening for sturdy mounting

This carbide insert routing setup is made for crafting raised cabinet doors and decorative wall panels. You lock the aluminum carrier onto your table stand or handheld saw then snap in different cutting blades to switch profiles instantly. DIYers and pro carpenters lean on this arrangement for framing kitchen cupboards bathroom vanities and modular storage racks when working with sixteen millimeter / half inch solid lumber or nineteen millimeter / three quarter inch planks.

✅ Retail package includes one complete carrier system with five distinct profile inserts plus one trailing shear blade for full project coverage ✅ Overall head measures six inch / 140 mm across with a one quarter inch / 32 mm center bore ✅ Heavy duty micrograin tungsten tips resist dulling during dense oak and maple cross grains ✅ Drop edge guard shape keeps lumber pinned flat against the table surface during steep angles ✅ Ships with dedicated hex wrench plus padded nylon bag for shop transport protection ✅ Rated for continuous run times matching standard eleven volts / nine amp spindle setups

💡 How does a panel raising setup improve cabinet door production for weekend woodworkers?

Mastering blade swapping and feed rate control makes your shop workflow way more handy. - Match your motor torque to thick slab pushes so carbide edges slice clean without loading up bearings - Lock down fence alignment before testing scrap pieces to eliminate guesswork on raised center gaps - Rotate worn segments routinely because shiny beads increase friction heat on resin heavy timbers - Keep push sticks close to manage rebound forces while sliding long boards past the safety shield✝️