ISO 9001:2015 Certified Facility

Precision glass machining

Custom Precision Glass Machining

Machining Glass makes precision glass and quartz components to print — wafers, microfluidic chips, optical filters, windows, conductive glass and more. Send a drawing and we handle machining, coating, bonding and inspection.

Custom Precision Glass Machining
Core product frameworks

Interactive Configuration Modules

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[01.A]
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AR & Optical Windows

AR-coated and uncoated windows for UV, visible and infrared paths, with controlled flatness and parallelism.

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[02.B]
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Beam Splitters

Plate and dichroic beam splitters for laser and imaging systems, coated to your split ratio.

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[03.C]
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CCD Cover Glass

Cover and carrier glass for CCD/CMOS sensor screening and imaging equipment.

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[04.D]
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Custom Glass

Made-to-print quartz and specialty glass — thin discs, sheets and non-standard geometries.

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[05.E]
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Glass & Quartz Wafers

Fused silica, quartz and borosilicate wafers from 2 to 12 inches, diced, ground and cleaned for…

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[06.F]
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Glass-Bottom Microplates

Glass-bottom microplates for high-content screening and high-resolution imaging.

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[07.G]
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ITO / FTO Conductive Glass

ITO and FTO coated glass with specified sheet resistance for displays, touch sensors and electrochemistry.

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[08.H]
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LED / OLED Cover Glass

Etched and grooved cover glass for LED and OLED module packaging and encapsulation.

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[09.I]
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Microfluidic Chips

Etched and bonded glass chips with sealed channels for diagnostics, cell analysis and lab-on-chip instruments.

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[10.J]
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Optical Filters

Coated optical glass filters — longpass, shortpass, bandpass, notch, dichroic and neutral density — cut to…

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[11.K]
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Perforated & Shaped Plates

Drilled, slotted and profiled glass and quartz plates held to tight positional tolerances.

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Advanced tooling

Engineering Capabilities

01

AR Coating Process for Optical Glass Windows – Complete Manufacturing Overview

A detailed explanation of the anti-reflective (AR) coating manufacturing process for optical glass windows, covering materials, deposition techniques, quality control, and batch scalability for industrial buyers.

02

Borosilicate Glass Sandblasting for Consistent Matte Surface Processing

A technical overview of the sandblasting process used to create consistent matte finishes on borosilicate glass components, covering material selection, step-by-step manufacturing, quality control, and scalability…

03

Chalcogenide Glass Coating for IR Optical Components

Explore the step-by-step production of chalcogenide glass coatings for IR optical components, from base material selection to advanced coating techniques, ensuring high-performance infrared optics for industrial…

04

CNC Glass V-Groove Machining for LED and Optical Parts

An in-depth look at how precision CNC glass V-groove machining produces high-accuracy grooves for LED and optical parts—covering materials, step-by-step fabrication, equipment, quality checks, and scalable…

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Substrates

Materials We Machine

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Catalogue

Featured Products

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Workflow

From Concept to Certification

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1. Submission

Upload STEP / DXF drawings for structural review.

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2. DFM Review

Engineering review of tolerances and material compatibility.

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3. Production

CNC / laser machining in a cleanroom-controlled environment.

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4. Verification

Final metrology reporting and ISO compliance documentation.

Engineering FAQ

What is the minimum feature size for laser-etched glass? expand_more
Using femtosecond laser technology we reach feature sizes down to 10 microns, with aspect ratios up to 1:50 depending on substrate thickness and material.
Do you support microfluidic channel bonding? expand_more
Yes — thermal bonding for fused silica and UV-adhesive bonding for multi-layer assemblies, giving hermetic seals for high-pressure applications.
What tolerances can be expected on CNC-ground edges? expand_more
Standard tolerances are ±0.05 mm. For critical work we grind to ±0.005 mm with laser-interferometer verification.
From the blog

Engineering Notes & Insights

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Engineering Review

Ready to precision-engineer your glass components?

Send drawings, tolerances and material notes. We review geometry, material and feasibility, then quote prototype or production quantities.