Enclosures and housings
Inline Milk Quality Sensor - Exploded Multi-Part
- Bounding box
- 1490.0 × 80.0 × 75.0 mm
- Engine
- Precision B-rep
- Parameters
- 49
- Published
- September 7, 2026
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The prompt
Create a realistic industrial 3D CAD model of a compact inline milk-quality sensing module designed for bovine milking systems. The device is a small cylindrical/disc-shaped food-grade enclosure installed inline on a milk tube between the cow milking cluster and milk collection container. Design it as a compact, manufacturable engineering product with: Two opposite milk inlet/outlet ports compatible with flexible food-grade milk tubing Internal milk-flow chamber Two stainless-steel conductivity electrodes positioned inside the milk chamber for electrical conductivity measurement Small temperature sensor positioned near the milk flow Flow measurement section Sealed electronics compartment separated from the milk-contact area Small microcontroller/edge-processing PCB Battery compartment Wireless communication module Waterproof/sealed outer enclosure Smooth rounded edges suitable for dairy-farm cleaning and hygiene Generate the model as a true engineering/CAD-style object, not a cartoon or artistic object. Show: Complete assembled device Transparent cutaway view Exploded view showing enclosure, PCB, battery, electrodes, temperature sensor and flow chamber Device installed on a transparent milk tube Milk-flow direction arrows Dimensioned engineering view Use realistic mechanical proportions and make all components physically connected and manufacturable. Keep the device small, lightweight, low-cost and suitable for attachment to an existing milking pipeline. Style: SolidWorks/Fusion 360 engineering visualization, industrial CAD, precise mechanical geometry, realistic materials, orthographic views, exploded assembly, section view, clean white/gray engineering background.
Parameters
| Name | Value | Range |
|---|---|---|
| Exploded layout gap | 130 mm | 80 – 250 |
| Main enclosure OD | 80 mm | 40 – 160 |
| Main enclosure height | 60 mm | 20 – 120 |
| Main enclosure edge fillet | 4 mm | 0 – 10 |
| Milk port OD | 25 mm | 12 – 60 |
| Milk port bore | 19 mm | 6 – 40 |
| Milk port length | 45 mm | 20 – 80 |
| Hose clamp groove depth | 1.5 mm | 0.5 – 3 |
| Hose clamp groove width | 4 mm | 1 – 10 |
| Hose clamp groove from end | 6 mm | 2 – 15 |
| Flow chamber OD | 28 mm | 20 – 60 |
| Flow chamber ID | 20 mm | 8 – 50 |
| Flow chamber length | 50 mm | 20 – 100 |
| Flow chamber edge fillet | 1.5 mm | 0 – 4 |
| Electrode diameter | 3 mm | 1 – 10 |
| Electrode length | 40 mm | 10 – 80 |
| Electrode thread diameter | 5 mm | 2 – 12 |
| Electrode thread length | 6 mm | 1 – 15 |
| Electrode hex across flats | 7 mm | 2 – 20 |
| Electrode hex thickness | 3 mm | 1 – 10 |
| Temp probe diameter | 2 mm | 0.5 – 8 |
| Temp probe insertion length | 15 mm | 3 – 40 |
| Temp mount diameter | 5 mm | 1 – 12 |
| Temp mount length | 5 mm | 1 – 15 |
| Temp sensor angle | 45 deg | 0 – 90 |
| Flow sensor section OD | 30 mm | 15 – 60 |
| Flow sensor section length | 20 mm | 5 – 50 |
| Flow sensor bore | 20 mm | 8 – 50 |
| Piezoelectric transducer diameter | 6 mm | 2 – 15 |
| Piezoelectric transducer height | 5 mm | 1 – 12 |
| Electronics compartment OD | 60 mm | 30 – 120 |
| Electronics compartment height | 15 mm | 5 – 40 |
| Electronics wall thickness | 2 mm | 1 – 5 |
| Electronics cavity depth | 11 mm | 2 – 35 |
| PCB length | 50 mm | 20 – 100 |
| PCB width | 35 mm | 15 – 80 |
| PCB thickness | 1.6 mm | 0.8 – 3 |
| PCB mounting hole diameter | 3 mm | 1 – 6 |
| Wireless module length | 25 mm | 10 – 60 |
| Wireless module width | 15 mm | 5 – 50 |
| Wireless module thickness | 3 mm | 1 – 10 |
| Wireless antenna diameter | 5 mm | 2 – 12 |
| Wireless antenna length | 15 mm | 5 – 40 |
| Battery compartment OD | 40 mm | 20 – 80 |
| Battery compartment height | 20 mm | 5 – 50 |
| Battery cavity diameter | 18.6 mm | 10 – 40 |
| Battery wall thickness | 2 mm | 1 – 6 |
| Battery spring contact diameter | 8 mm | 3 – 20 |
| Battery spring contact height | 3 mm | 1 – 8 |
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.
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