3D model · MakerWorld

TP-Link ER605 19" Rack Mount

Model details

Platform
MakerWorld
Price
Free
License
see the platform page
The author sets the terms — check them on the model page before printing for sale.
Formats
STL
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Author:mjrko84

Published

Description

🌐 TP-Link ER605 19" Rack Mount

"Clean up your homelab and rackmount your Omada gateway."

Upgrade your network cabinet with this custom-designed 19-inch rack mount adapter specifically tailored for the TP-Link ER605 VPN Router. Designed for small-form-factor home labs and IT setups, this modular bracket ensures a clean, professional, and secure installation for your gateway.

📦 Included Files & 3MF Profiles

To guarantee the best printing experience and structural integrity, this project includes multiple file options:

- Raw STL File: For those who prefer to slice their own files from scratch. - Polycarbonate (PC) 3MF: Pre-configured profile for maximum thermal resistance. Set with 3 Wall Loops, 4 Top/Bottom Layers, and 5% Gyroid Infill to optimize print time and reduce internal plastic tension while keeping high rigidity. - Bambu PETG HF 3MF: Profile optimized for Bambu Lab's High-Flow PETG. Set with 3 Wall Loops, 4 Top/Bottom Layers, and 15% Gyroid Infill for an excellent balance between production speed and mechanical durability. 🔩 Modular Design & Easy Assembly

To make printing easier and avoid the need for large print beds, the adapter is split into a smart 3-piece assembly .

- Hardware Required: You only need 4 x M5 screws and 4 x M5 nuts to bolt the bracket segments securely together. - The fit is engineered to grip the router safely without scratching the metal casing. ⚠️ Material Selection Warning

Network equipment generates continuous heat, and rack cabinets can get surprisingly warm.

- 🚫 DO NOT USE PLA: It will inevitably warp, deform, and sag under the router's ambient heat. - 🟢 PETG HF or PC: Use the provided 3MF files for materials that can withstand continuous thermal loads without deformation. 📏 Tested Print Settings

- Layer Height: 0.20mm (Provides the perfect balance between dimensional accuracy for the M5 screw holes and structural speed). - Nozzle: 0.4mm. - Wall Loops: 3 walls. - Top & Bottom Shells: 4 Top Layers / 4 Bottom Layers.

Guides and print profiles

Print profiles and steps

PETG HF Version 0.2mm layer, 3 walls, 15% infill PETG HF Version

📏 Tested Print Settings

- Layer Height: 0.20mm (Provides the perfect balance between dimensional accuracy for the M5 screw holes and structural speed). - Nozzle: 0.4mm. - Wall Loops: 3 walls. - Top & Bottom Shells: 4 Top Layers / 4 Bottom Layers. ⚠️ Material Selection Warning

Network equipment generates continuous heat, and rack cabinets can get surprisingly warm.

- 🚫 DO NOT USE PLA: It will inevitably warp, deform, and sag under the router's ambient heat. - 🟢 PETG HF or PC: Use the provided 3MF files for materials that can withstand continuous thermal loads without deformation.

Polycarbonate Version 0.2mm layer, 3 walls, 5% infill Polycarbonate Version

📏 Tested Print Settings

- Layer Height: 0.20mm (Provides the perfect balance between dimensional accuracy for the M5 screw holes and structural speed). - Nozzle: 0.4mm. - Wall Loops: 3 walls. - Top & Bottom Shells: 4 Top Layers / 4 Bottom Layers. ⚠️ Material Selection Warning

Network equipment generates continuous heat, and rack cabinets can get surprisingly warm.

- 🚫 DO NOT USE PLA: It will inevitably warp, deform, and sag under the router's ambient heat. - 🟢 PETG HF or PC: Use the provided 3MF files for materials that can withstand continuous thermal loads without deformation.

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