# Maggy x48 v2 jig — alignment test print **File:** `Maggy x48 v2 Jig ALIGNMENT TEST.pdf` (also archived at https://files.dfgadmin.com/Printing/Production/Maggy%20x48%20v2%20Jig%20ALIGNMENT%20TEST.pdf) **Printy template:** `Maggy x48 MO-240 v2 Template` — id `25bc67d9-fd2b-4349-9f61-39d01812d71e` Page 608 × 478 mm = the plate, origin corner at the page's top-left. 48 slots, type `Maggy`, 63 × 63 print centered on each pedestal: first slot (15, 15), pitch 71.3 × 75.3. ## Setup - Load the v2 jig on the MO-240 with nylon M4 bolts in (10,10), (510,10), (10,310), (510,310). - Put a blank (or sacrificial) Maggy plate on every pedestal. - Print the test file the same way a normal Maggy job is printed. ## What's on each plate - Site label `C# R#` — column 1 / row 1 is the site nearest the plate's origin corner. Columns run along the 608 mm edge, rows along the 478 mm edge. - A hairline square at the exact plate edge (61.93 mm). - Center crosshair and 10 mm circle. - On all four sides, tick scales starting at the plate edge and running inward, 0.5 mm per tick, numbered 1–4 mm. ## Reading it - Centered: the hairline lands on the plate edge on all four sides; no ticks are clipped. - Shifted: one side's scale is cut off by the plate edge. **The tick number at the cut is how far the print is shifted toward that side.** The opposite side shows a blank strip of the same width inside the hairline. - Example: RIGHT scale cut at 1.5 → print is 1.5 mm too far right. - Example: TOP scale cut at 0.5 and LEFT scale cut at 1.0 → print is 0.5 up and 1.0 left. - Ticks are numbered from the edge, so 1 = 1.0 mm, and a cut halfway between 1 and 2 = 1.5 mm. ## What to report Readings for at least the four corner sites and the center (C1R1, C8R1, C1R6, C8R6, C4R3), e.g. ``` C1R1: right 1.0, top 0.5 C8R1: right 1.5, top 0.5 C1R6: right 1.0, top 0.0 C8R6: right 1.5, top 0.0 C4R3: right 1.2, top 0.3 ``` Uniform offset → fix once in the VersaWorks job origin (or shift every slot in the template). Offset that grows across the plate → per-slot corrections get baked into a revised template (same approach as the SpeakerV2 x16 template).