Optical Glass for Optical Sensors

Optical Glass for Optical Sensors: Optical Glass, CTE 7.1 x 10^-6 /K. No MOQ, prototypes in 5-10 days, DFM review with every RFQ.

Industry Application July 29, 2026

Optical Glass for Optical Sensors: Optical Glass (CTE 7.1 x 10^-6 /K, 350 nm – 2.0 um). Single-piece prototypes to production volumes, quoted from your drawing.

optical glass for optical sensors programs need filtered, AR-coated apertures matched to detector bands. Optical Glass is the fit here because it offers certified refractive index and dispersion. Typical parts: sensor windows, filter caps, lens covers.

Specification envelope

Material Optical Glass (N-BK7, H-K9L and filter glass sets)
Thermal expansion (CTE) 7.1 x 10^-6 /K
Service temperature 400 C (Tg 557 C)
Transmission range 350 nm – 2.0 um
Density 2.51 g/cm3
Knoop hardness 610 kg/mm2
Refractive index 1.5168 @ 587 nm
Stock thickness 0.30 – 50 mm
Maximum blank size 300 mm diameter
RFQ inputs PDF/DXF/STEP drawing, quantity brackets, surface and edge spec

Capabilities and limits

One material, many routes: on Optical Glass we also quote edge grinding, laser cutting, grinding, etching, and multi-step drawings are the norm rather than the exception.

DFM notes from the shop floor

Before sending the RFQ, check these against your drawing:

  • Material note: index-certified blanks must be oriented and serialized through the shop to keep melt traceability.
  • 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.

The full rules live in our tolerance design guide and holes and edges design guide.

Where these parts end up

Orders for optical glass for optical sensors cluster in scientific instruments (reference flats, cells, prism mounts, stage inserts); ccd inspection equipment (CCD cover plates, reference grids, stage glass); laser systems (windows, beam splitters, debris shields). Background reading on the underlying material science: RP Photonics: optical glass.

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: JGS1 quartz glass, optical polishing capability, microfluidic glass applications.

Frequently asked questions

Is there a minimum order for optical glass for optical sensors?

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 September 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

Optical Filter 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
Which filter types can I configure?

Longpass, shortpass, bandpass, notch, dichroic, neutral density and color filters. You set the relevant cut-on/cut-off or center wavelength, bandwidth and blocking, plus substrate and size.

How is a bandpass filter specified?

By center wavelength (CWL), full width at half maximum (FWHM), peak transmission and out-of-band blocking (e.g. OD4-OD6). The builder captures these as the spectral requirements for the quote.

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

Engineering Review

Building for this industry?

We support OEM programs from first prototype to audited volume production.