117.0202.552.5
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Interactive 3D model of MiniLaptopEnclosure

Brackets and mounts

MiniLaptopEnclosure

18 views
Bounding box
202.5 × 117.0 × 52.5 mm
Engine
Precision B-rep
Parameters
74
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
Base Length190 mm150 – 250
Base Width110 mm90 – 150
Base Height28 mm22 – 40
Wall Thickness2.5 mm1.5 – 5
Corner Radius3 mm0 – 10
Floor Thickness2.5 mm1.5 – 5
Keyboard Pocket Length155 mm140 – 170
Keyboard Pocket Width89 mm80 – 100
Keyboard Pocket Depth12 mm8 – 18
Keyboard Offset from Front5 mm0 – 20
Finger Cutout Radius8 mm3 – 15
Finger Cutout Width15 mm8 – 30
Lid Length190 mm150 – 250
Lid Width110 mm90 – 150
Lid Height20 mm16 – 30
Front Wall (Bezel)2 mm1 – 4
Back Wall2.5 mm1 – 5
Corner Radius3 mm0 – 10
Display Clearance0.5 mm0 – 5
Display Module Length122 mm100 – 140
Display Module Width95 mm80 – 110
Display Thickness15 mm8 – 20
Keyboard Length155 mm140 – 170
Keyboard Width89 mm80 – 100
Keyboard Height16.5 mm12 – 22
Raspberry Pi Length65 mm50 – 80
Raspberry Pi Width56 mm40 – 70
Pi/HAT Stack Height12 mm6 – 20
Pi X Position-35 mm-80 – 80
Pi Y Position0 mm-40 – 40
Battery Length60 mm40 – 80
Battery Width40 mm30 – 60
Battery Height8 mm4 – 15
Battery X Position35 mm-80 – 80
Battery Y Position0 mm-40 – 40
Hinge Pin Diameter3 mm1 – 6
Hinge Axis Y Offset4 mm1 – 10
Hinge Axis Z Offset (from base top)-2 mm-8 – 4
Base Knuckle X Span20 mm10 – 30
Base Knuckle Y Protrusion6 mm2 – 15
Base Knuckle Z Size6 mm2 – 12
Lid Knuckle X Span20 mm10 – 30
Lid Knuckle Y Protrusion6 mm2 – 15
Lid Knuckle Z Size6 mm2 – 12
Left Hinge Pin X-75 mm-95 – -50
Right Hinge Pin X75 mm50 – 95
Vent Slot Count51 – 10
Slot Width30 mm10 – 60
Slot Height2 mm1 – 5
Slot Spacing5 mm0 – 15
Vent Z Position8 mm0 – 25
HDMI Width15 mm8 – 25
HDMI Height10 mm5 – 20
HDMI X-60 mm-95 – 95
HDMI Z18 mm5 – 35
USB-A Width15 mm8 – 25
USB-A Height8 mm5 – 20
USB-A X-30 mm-95 – 95
USB-A Z18 mm5 – 35
USB-C Width12 mm6 – 20
USB-C Height8 mm5 – 20
USB-C X0 mm-95 – 95
USB-C Z18 mm5 – 35
microSD Width12 mm6 – 20
microSD Height2 mm1 – 8
microSD X30 mm-95 – 95
microSD Z18 mm5 – 35
GPIO Width50 mm30 – 80
GPIO Height3 mm1 – 10
GPIO X60 mm-95 – 95
GPIO Z18 mm5 – 35
Power Hole Radius5 mm2 – 15
Power Hole X80 mm-95 – 95
Power Hole Z18 mm5 – 35

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.