Heads up: many models on this page are AI-generated or uploaded untested. They may be misconfigured for the intended application — check the dimensions and tolerances, and verify or edit the model before printing or relying on it.*
Spine Deck Pi 4 Plate
A 170 x 100 x 4 mm ribbed electronics deck for a rover chassis. It has raised bosses on the 58 x 49 mm Raspberry Pi 4 pattern with M2.5 nut pockets underneath, four 5.5 mm M5 holes for bolting to rails, slots for a PCA9685 servo board, battery-strap slots and wire pass-throughs.
Motor-Clearance Deck Leg
A tapered, hollow 60 mm leg/standoff that lifts a robot deck or chassis plate high enough to clear gearmotors and wiring underneath. It has a 32 mm square foot and a 20 mm square top pad with a 4.0 mm bore for an M3 brass heat-set insert, and the walls are 2 mm thick to keep material use low.
Pi 4 Rover Deck With Legs
A 120 x 90 x 3 mm raised electronics deck with four integral 10 mm legs, part of the 'N20 4WD Skid-Steer Rover Base' kit. The legs stand it 40 mm above the chassis plate, and each foot takes an M3 heat-set insert (4.0 x 6 mm bore) for M3x8 screws from under the chassis. The deck has 2.9 mm M2.5 holes on the Raspberry Pi 4 58 x 49 mm pattern with 6 mm x 3 mm spacer bosses, a 4 x 7 grid of 3.4 mm M3 holes on a 10 mm pitch for a motor driver or ESP32, and two 30 x 10 mm cable windows.
18650 Battery Top Deck
Part of the 'NEMA17 Self-Balancing Robot Frame' kit (print ×1): the 120 × 80 × 4 mm top deck, which bolts to the stack columns with four M3x10 screws through 3.4 mm holes at (±44, ±34). A tray with 2 mm walls rises 14 mm above the deck and holds a 3S 18650 pack in a 70 × 58 mm space. Four 20 × 3 mm slots take two 20 mm hook-and-loop straps. A 12 × 8 mm notch in the end wall and a 20 × 8 mm floor slot route the battery leads down to the electronics deck.
Flagged: battery or DC power. Not for safety-critical use without independent engineering review.