ITO Coating Alkali-Free Glass

ITO Coating Alkali-Free Glass: Alkali-Free Glass, CTE 3.2 x 10^-6 /K; 5 - 500 ohm/sq, >85% visible transmission. No MOQ, prototypes in 5-10 days, DFM review w...

Machining Service July 25, 2026

Quick answer: ITO Coating Alkali-Free Glass covers Alkali-Free Glass (CTE 3.2 x 10^-6 /K, 350 nm – 2.0 um); 5 – 500 ohm/sq, >85% visible transmission. Prototypes ship in 5-10 working days.

The point of ito coating alkali-free glass is simple: adds a patternable transparent electrode layer. We deposit it by magnetron sputtering, laser patterning option onto Alkali-Free Glass and verify 5 – 500 ohm/sq, >85% visible transmission on every lot.

Key parameters

Material Alkali-Free Glass (AF32 / EAGLE-class display glass)
Thermal expansion (CTE) 3.2 x 10^-6 /K
Service temperature 600 C (Tg 717 C)
Transmission range 350 nm – 2.0 um
Density 2.43 g/cm3
Knoop hardness 590 kg/mm2
Refractive index 1.51 @ 587 nm
Stock thickness 0.10 – 1.1 mm
Maximum blank size 400 x 300 mm
Treatment ITO Coating – indium tin oxide transparent conductor
Specification 5 – 500 ohm/sq, >85% visible transmission
Deposition / method magnetron sputtering, laser patterning option
RFQ inputs PDF/DXF/STEP drawing, quantity brackets, surface and edge spec

Specification advice

Before sending the RFQ, check these against your drawing:

  • Material note: thin sheets below 0.3 mm demand carrier-supported handling through every step.
  • Sequence matters: all machining happens before ito coating; post-coating rework is not economical.
  • 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.

Process window

Beyond this page, Alkali-Free Glass routinely runs through double-side polishing, cnc machining, grinding, edge grinding in our shop – most real parts combine two or three of these steps.

Application context

The recurring buyers of ito coating alkali-free glass: industrial displays (touch covers, gauge windows, printed bezels); mems devices (cap wafers, TGV substrates, motion-sensor lids); ccd inspection equipment (CCD cover plates, reference grids, stage glass). Background reading on the underlying material science: SCHOTT AF 32 eco.

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: alkali-free display glass, ITO coating process, fused silica wafers 2-12 inch.

Frequently asked questions

How does Alkali-Free Glass behave under heat?

CTE is 3.2 x 10^-6 /K and continuous service reaches 600 C (Tg 717 C), which is what drives its use where no alkali ion migration into TFT or sensor layers matters.

What does ito coating add?

Adds a patternable transparent electrode layer. Applied by magnetron sputtering, laser patterning option to 5 – 500 ohm/sq, >85% visible transmission.

Is there a minimum order for ito coating alkali-free 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.

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
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3D GLASS PREVIEW Visual Specification

ITO / FTO Conductive Glass Builder

Interactive visual preview for custom precision glass configuration.

SP SPEC SUMMARY:
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SUBMIT RFQ — ENGINEERING REVIEW Your current 3D configuration and specification summary are attached automatically. Attach a drawing if you have one.
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FREQUENTLY ASKED QUESTIONS
What ITO/FTO sheet resistances are available?

Standard steps are 5-7, 7-10, 10-15, 15-20, 30-60 and 100 ohm/sq, with custom values on request. Lower sheet resistance generally means a thicker conductive film and slightly lower transmittance.

What glass thickness and transmittance can I expect?

Standard substrate thicknesses include 0.4, 0.55, 0.7, 1.1 and 2.0 mm. Transmittance at 550 nm is typically at or above 85%, and you can specify an 80/85/90% minimum in the builder.

Can you etch a custom electrode pattern?

Yes. Patterns can be laser- or wet-etched to a customer drawing, with edge deletion and typical pattern resolution around ±50 µm.

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

Engineering Review

Discuss your requirements

Tell us the material, tolerances and volumes and we will confirm the process route.