Process Capability

CNC Machining ITO Coated Glass

CNC Machining ITO Coated Glass: ITO Coated Glass, CTE substrate dependent; +/-0.01 mm positional. No MOQ, prototypes in 5-10 days, DFM review with every RFQ.

CNC Machining ITO Coated Glass

CNC Machining ITO Coated Glass – ITO Coated Glass (CTE substrate dependent, >85% visible @ 100 ohm/sq); CNC Machining to +/-0.01 mm positional. No minimum order; DFM review included with every RFQ.

cnc machining ito coated glass is a materials problem before it is a machining problem. ITO Coated Glass has transparent conductivity and a Knoop hardness of substrate value, so the cnc machining recipe – feeds, coolant, tooling – differs from what works on ordinary float glass. The line runs 4-axis machining centers with diamond tooling and through-spindle coolant and holds +/-0.01 mm positional.

Key parameters

Material ITO Coated Glass (ITO on soda-lime, borosilicate or alkali-free)
Thermal expansion (CTE) substrate dependent
Service temperature 350 C (coating stable)
Transmission range >85% visible @ 100 ohm/sq
Density 2.23 – 2.51 g/cm3
Knoop hardness substrate value
Refractive index 1.9 – 2.1 (ITO film)
Stock thickness 0.30 – 3.0 mm substrates
Maximum blank size 400 x 300 mm
Process CNC Machining
Working tolerance +/-0.01 mm positional
Minimum feature 0.4 mm slot width
Surface finish Ra 0.4 um ground, optional polish
Thickness window 0.5 – 50 mm
Edge condition chamfered 0.1 – 0.5 mm as standard
RFQ inputs PDF/DXF/STEP drawing, quantity brackets, surface and edge spec

Getting the drawing right

The shop-floor rules that matter here:

  • Material note: machining happens film-side-aware: scribing, edge deletion and contact zones are defined before cutting.
  • Process boundary: internal corners carry a minimum radius equal to the smallest practical tool, typically R0.5 mm.
  • Over-specification is the quiet budget killer: a 20/10 scratch-dig face costs roughly three times an 80/50 face, so grade each surface individually.

For the complete framework, see the tolerance design guide and the holes and edges design guide.

Capabilities and limits

The core strength of CNC Machining is complex 3D geometry – pockets, steps, counterbores and compound edges in one setup. The honest limit: internal corners carry a minimum radius equal to the smallest practical tool, typically R0.5 mm. Both belong on the drawing before quoting, not after.

One material, many routes: on ITO Coated Glass we also quote dicing, drilling, coring, edge grinding, and multi-step drawings are the norm rather than the exception.

Application context

The recurring buyers of cnc machining ito coated glass: industrial displays (touch covers, gauge windows, printed bezels); aerospace optics (sensor windows, star-tracker flats, radiation-tolerant ports); ccd inspection equipment (CCD cover plates, reference grids, stage glass). Background reading on the underlying material science: ScienceDirect: indium tin oxide.

The fastest route to a quote is geometry: use the 3D builder below, draw a dimensioned 2D drawing from it, or open the site-wide custom glass machining 3D + 2D builder for fully custom parts.

Related reading on this site: ITO coated glass, ITO coating process, CCD screening plates.

Frequently asked questions

What equipment runs the cnc machining work?

4-axis machining centers with diamond tooling and through-spindle coolant.

Is there a minimum order for cnc machining ito coated glass?

No. Single prototypes are accepted, and pricing steps down at 10, 100 and 1,000 pieces.

How fast can prototypes ship?

Machined prototypes ship in 5 – 10 working days. Coated or bonded parts add 1 – 2 weeks depending on queue slots.

What files do you need for a quote?

A dimensioned PDF plus DXF or STEP geometry. If only a sketch exists, our drawing review service formalizes it before quoting.

Do parts ship with inspection data?

Dimensional reports, surface certificates and material certs per melt are available; specify the level on the RFQ.

Specifications on this page were last reviewed by our engineering team in August 2026.

Configure in 3D, draw in 2D

3D Model & 2D Drawing Builder

PRECISION GLASS 3D
3D Precision Glass Configurator Build a visual 3D preview for custom precision glass parts, including wafers, microfluidic chips, coated glass, optical filters, and machined quartz plates. This tool is for visual configuration only. Final dimensions, tolerances, materials, coatings, and manufacturability will be reviewed from your drawing or specification.
3D GLASS PREVIEW Visual Specification

Custom Glass Builder

Interactive visual preview for custom precision glass configuration.

SP SPEC SUMMARY:
Import Code (One-Click Recall)

Save this code before you leave — it is the only way to recall this exact model. If you lose it, your configuration cannot be restored.

SUBMIT RFQ — ENGINEERING REVIEW Your current 3D configuration and specification summary are attached automatically. Attach a drawing if you have one.
Arithmetic verification image

FREQUENTLY ASKED QUESTIONS
What if my part does not match any standard builder?

Use the custom glass builder: choose shape (including ring or drawing-defined), size, thickness, optional holes, coating and edge/surface finish, set a tolerance, preview it in 3D and attach a drawing to the RFQ.

Which materials can the custom builder use?

Fused silica, quartz, JGS1/JGS2, Borofloat 33, alkali-free and borosilicate glass, optical and soda-lime glass, or a named custom material such as sapphire or Zerodur.

Need a different product family? Open the full 3D + 2D builder.

Engineering Review

Have a drawing for this process?

Upload it with your RFQ - engineering replies with a DFM note and firm lead time.