115.01291.055.0
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Interactive 3D model of Mini Laptop CyberDeck Enclosure

Brackets and mounts

Mini Laptop CyberDeck Enclosure

14 views
Bounding box
1291.0 × 115.0 × 55.0 mm
Engine
Precision B-rep
Parameters
44
Published
August 11, 2026

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The prompt

Design a real, compact 5-inch mini laptop / CyberDeck enclosure for 3D printing. The device must look like a small finished laptop, NOT an open electronics tray or mounting platform. Components: - 5" HDMI display: 122 × 95 × 15 mm - Raspberry Pi 3 Model A+: 65 × 56 mm - Waveshare Li-polymer Battery HAT SW6106: 65.05 × 56.55 mm - Rii Mini K06 keyboard: 155 × 89 × 16.5 mm - 3.7V 3000mAh Li-Po battery The display must be mounted inside the upper lid with a small 2–3 mm clearance. The Rii Mini K06 keyboard should sit in a shallow recessed area in the lower half. It may slightly protrude above the surface, but must remain inside the overall laptop footprint. Add a small finger cutout so the keyboard can be easily removed and replaced. Place the Raspberry Pi and Battery HAT INSIDE the lower enclosure, underneath/behind the keyboard, with enough space for cables, connectors and ventilation. Use a two-piece laptop design with a hinged display lid. Create a solid enclosed shell with rounded edges and 2.5–3 mm walls. Add only the necessary external openings for HDMI, USB, USB-C, microSD, GPIO and other required ports. IMPORTANT: Design the overall laptop shape FIRST, then fit the electronics INSIDE it. Do NOT create an open tray, external mounting platform, random protruding parts, or exposed electronics. The final result should look like a real small portable laptop that can be assembled and 3D printed.

Parameters

NameValueRange
Layout Gap200 mm50 – 500
Lid Wall Thickness2.5 mm2 – 4
Lid Display Clearance2.5 mm1 – 5
Lid Display Pocket Depth16 mm14 – 20
Lid Outer X132 mm120 – 160
Lid Outer Y105 mm90 – 130
Lid Height (Z)18.5 mm15 – 25
Lid Hinge Lug Width12 mm6 – 20
Lid Hinge Lug Length10 mm6 – 20
Lid Hinge Hole Dia6 mm3 – 10
Display X122 mm100 – 150
Display Y95 mm80 – 120
Display Z15 mm10 – 20
Base Wall Thickness2.5 mm2 – 4
Base Outer X165 mm140 – 200
Base Outer Y100 mm80 – 130
Base Height (Z)45 mm35 – 60
Keyboard Clearance2.5 mm1 – 5
Keyboard Protrusion3 mm0 – 10
Electronics Pocket X155 mm100 – 180
Electronics Pocket Y85 mm60 – 110
Base Top Wall Remaining2 mm1 – 4
Keyboard Module X155 mm140 – 190
Keyboard Module Y89 mm80 – 110
Keyboard Module Z16.5 mm10 – 25
Raspberry Pi X65 mm50 – 80
Raspberry Pi Y56 mm40 – 70
Raspberry Pi Z20 mm15 – 30
Battery HAT X65 mm50 – 80
Battery HAT Y56.5 mm40 – 70
Battery HAT Z15 mm10 – 25
Battery X50 mm30 – 80
Battery Y30 mm20 – 50
Battery Z8 mm5 – 15
Base Hinge Lug Width12 mm6 – 20
Base Hinge Lug Length10 mm6 – 20
Base Hinge Hole Dia6 mm3 – 10
Vent Slot Count6 mm2 – 12
Vent Slot Length40 mm20 – 60
Vent Slot Width3 mm1 – 6
Pin Diameter6 mm3 – 10
Pin Length30 mm15 – 50
Pin Lug Y1-48 mm-70 – -20
Pin Lug Y248 mm20 – 70

Every value above is a live dimension. Open a model like this in the editor and each one becomes a slider you can drag before exporting.