80.01490.075.0
Loading the interactive model…
Interactive 3D model of Inline Milk Quality Sensor - Exploded Multi-Part

Enclosures and housings

Inline Milk Quality Sensor - Exploded Multi-Part

4 views
Bounding box
1490.0 × 80.0 × 75.0 mm
Engine
Precision B-rep
Parameters
49
Published
September 7, 2026

Download

Free to download and use. See the terms.

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

NameValueRange
Exploded layout gap130 mm80 – 250
Main enclosure OD80 mm40 – 160
Main enclosure height60 mm20 – 120
Main enclosure edge fillet4 mm0 – 10
Milk port OD25 mm12 – 60
Milk port bore19 mm6 – 40
Milk port length45 mm20 – 80
Hose clamp groove depth1.5 mm0.5 – 3
Hose clamp groove width4 mm1 – 10
Hose clamp groove from end6 mm2 – 15
Flow chamber OD28 mm20 – 60
Flow chamber ID20 mm8 – 50
Flow chamber length50 mm20 – 100
Flow chamber edge fillet1.5 mm0 – 4
Electrode diameter3 mm1 – 10
Electrode length40 mm10 – 80
Electrode thread diameter5 mm2 – 12
Electrode thread length6 mm1 – 15
Electrode hex across flats7 mm2 – 20
Electrode hex thickness3 mm1 – 10
Temp probe diameter2 mm0.5 – 8
Temp probe insertion length15 mm3 – 40
Temp mount diameter5 mm1 – 12
Temp mount length5 mm1 – 15
Temp sensor angle45 deg0 – 90
Flow sensor section OD30 mm15 – 60
Flow sensor section length20 mm5 – 50
Flow sensor bore20 mm8 – 50
Piezoelectric transducer diameter6 mm2 – 15
Piezoelectric transducer height5 mm1 – 12
Electronics compartment OD60 mm30 – 120
Electronics compartment height15 mm5 – 40
Electronics wall thickness2 mm1 – 5
Electronics cavity depth11 mm2 – 35
PCB length50 mm20 – 100
PCB width35 mm15 – 80
PCB thickness1.6 mm0.8 – 3
PCB mounting hole diameter3 mm1 – 6
Wireless module length25 mm10 – 60
Wireless module width15 mm5 – 50
Wireless module thickness3 mm1 – 10
Wireless antenna diameter5 mm2 – 12
Wireless antenna length15 mm5 – 40
Battery compartment OD40 mm20 – 80
Battery compartment height20 mm5 – 50
Battery cavity diameter18.6 mm10 – 40
Battery wall thickness2 mm1 – 6
Battery spring contact diameter8 mm3 – 20
Battery spring contact height3 mm1 – 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.

Inline Milk Quality Sensor - Exploded Multi-Part - Free CAD Model (STEP, STL) | TextoCAD