
Precision-machined layout squares built for accuracy and durability.
Woodpeckers Stainless Steel Squares are engineered around a one-piece machined core, ensuring accuracy that does not rely on pins, rivets, screws, or welds. Each square is CNC-machined for precision and verified using a computer-controlled optical inspection system capable of measuring angular accuracy to five decimal places.
The 1/16" stainless-steel blade is heat-treated and tempered for strength and long-term stability, then bead blasted to create a non-glare finish that contrasts clearly with the laser-engraved measurement scales. Narrow cheeks form a shoulder that helps the square stay registered against the workpiece, even when you release your grip.
Laser-engraved scales are accurate to 0.004" tolerance, and the thin blade positions measurements close to the work surface to reduce parallax error. Precisely spaced scribing notches allow you to draw parallel lines easily by placing a pencil in the selected notch and sliding the square along the edge of your stock. Twin-point notch design allows accurate marking whether pushing or pulling.
For machinery setup, laser-engraved measurements appear on both the beam edges and the end, and the square can stand upright on its own, freeing both hands for adjustments. These squares are guaranteed to be within 0.0085° of square, delivering exceptional layout accuracy.
Note: Some images may show the broader product range. Refer to the primary product image for the exact model supplied.
Key Features
- One-piece CNC-machined stainless-steel core construction
- Optical inspection verification for high angular accuracy
- Heat-treated and tempered 1/16" stainless-steel blade
- Non-glare bead-blasted finish with laser-engraved scales
- Measurement accuracy tolerance of 0.004"
- Precision scribing notches for parallel line marking
- Narrow cheek design maintains registration on stock
- Laser-engraved measurements on beam edges and end
- Self-standing design for machine setup tasks
- Guaranteed square within 0.0085°