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Precision Glass Material

Corning PYREX® SG3.3 Glass

Corning PYREX SG3.3 borosilicate glass supply and custom processing for heat-resistant, laboratory, optical and technical components.

Engineering result: Use current Corning PYREX SG3.3 documentation and keep full-sheet, panel and Micro-Electro wafer data separated by product form.

01 — Engineering Overview

Technical Content and Specifications

ANTGLASS supplies and processes Corning PYREX SG3.3 Glass for optical, electronic, laboratory and industrial components made to customer drawings.

Material Overview

PYREX SG3.3: Borosilicate glass matched to silicon. The material system is described as Borosilicate glass matched to silicon. Selection begins with the exact grade, wavelength or optical function, thermal and chemical environment, starting form, finished geometry and inspection method. The material record is kept separate from the finished-part drawing so that grade data and manufacturing requirements remain traceable.

Applications associated with this material include Laboratory systems, sight windows, semiconductor packaging, sensors, heaters, industrial equipment.. ANTGLASS uses the approved material and drawing to manufacture blanks and finished parts rather than treating a published material property as a universal component guarantee.

Published Technical Properties

The values below are taken from the V4R2R2 source-linked material dataset. Conditions such as wavelength, temperature, thickness and orientation remain part of the value and should not be removed during comparison.

PropertyPublished reference
Material typeBorosilicate glass matched to silicon
Transmission>90% from 400-800 nm
Refractive index1.472 at 590 nm
Density2.23 g/cm3
Thermal expansion3.3 x 10^-6/K, room temperature to 300 C
Softening temperatureSoftening point 820 C
HardnessKnoop 480 HK 0.1/20
Thermal conductivity1.2 W/mK typical family value
Chemical resistanceOfficial reagent-specific weight-loss table; 5% HCl 24 h at 95 C: 0.00 mg/cm2
Published thickness0.2-1.4 mm wafer range; standard 0.5, 0.7, 0.85, 1.1 and 1.4 mm; panels up to 300 x 300 mm
Published size0.2-1.4 mm wafer range; standard 0.5, 0.7, 0.85, 1.1 and 1.4 mm; panels up to 300 x 300 mm

Available Forms and Custom Processing

Common starting and finished forms include 0.2-1.4 mm wafer range, standard 0.5, 0.7, 0.85, 1.1 and 1.4 mm, panels up to 300 x 300 mm, Cut blanks, Windows and plates, Discs, rings or wafers. Actual source size and thickness are matched to the order, while the finished component is controlled by the drawing.

  • Drawing and material-grade review
  • Blank preparation and geometry planning
  • Precision cutting, CNC machining, drilling and edge finishing
  • Lapping or polishing, cleaning, inspection and protective packaging

ANTGLASS can manufacture related products including Industrial Sight & Gauge Glass, Precision Glass Tubes & Cylindrical Components. Projects that need material selection, prototype validation, optical performance or harsh-environment review can also use the related solutions: High-Temperature & Chemical-Resistant Glass.

Design Rules for a Manufacturable RFQ

  • Define thermal cycling, gasket or sealing contact and the unsupported clear span.
  • Dimension critical surfaces, edges, holes, slots and datums separately on the drawing.
  • Identify optical, sealing, bonding, coated and cosmetic zones before quotation.
  • Match inspection methods to the functional tolerance and surface requirement.
  • State prototype and production quantities together with cleaning and packaging needs.

Quality Risks and Inspection

Control edge damage, sealing contact, thermal gradients and clamp loading. Material data does not replace validation of the complete pressure, thermal or chemical assembly.

  • Material identity and source documentation
  • Dimensions, thickness and feature position
  • Edge chips, cracks and surface condition
  • Cleaning, orientation and protective packaging

Applications and Product Connections

  • Laboratory systems
  • sight windows
  • semiconductor packaging
  • sensors
  • heaters
  • industrial equipment.

Material Comparison and Alternatives

Compare Corning PYREX SG3.3 Glass with Fused silica for lower CTE and higher temperature, soda-lime for lower cost, aluminosilicate for strengthening.. Substitution should preserve the functional wavelength, refractive or spectral behavior, thermal expansion, temperature range, chemical durability, mechanical behavior, starting form and component cost.

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Frequently Asked Questions About Corning PYREX SG3.3 Glass

What are the key properties of Corning PYREX SG3.3 Glass?

Corning PYREX SG3.3 Glass is selected from grade-specific optical, thermal, mechanical and chemical data. Published references include Material type: Borosilicate glass matched to silicon; Transmission: >90% from 400-800 nm; Refractive index: 1.472 at 590 nm; Density: 2.23 g/cm3. The finished component must also meet the drawing, surface and inspection requirements.

Can ANTGLASS supply and process pyrex borosilicate glass in custom sizes?

Yes. ANTGLASS supplies and processes Corning PYREX SG3.3 Glass as 0.2-1.4 mm wafer range, standard 0.5, 0.7, 0.85, 1.1 and 1.4 mm, panels up to 300 x 300 mm, Cut blanks, Windows and plates, subject to the selected starting form and drawing. We cut, machine, drill, grind, lap, polish, clean and inspect the material as required for the component.

Which products can be made from Corning PYREX SG3.3 Glass?

Typical product connections include Industrial Sight & Gauge Glass, Precision Glass Tubes & Cylindrical Components. The exact product form, dimensions, edge condition, optical zone and packaging are defined by the customer drawing and application.

How is Corning PYREX SG3.3 Glass machined and inspected?

The route is selected from material behavior, thickness, geometry and surface requirements. Inspection covers material identity, dimensions, edges and the functional surface; optical or substrate projects can add clear-aperture, flatness, TTV, surface-quality or spectral checks.

What materials should be compared with Corning PYREX SG3.3 Glass?

Common comparison directions include Fused silica for lower CTE and higher temperature, soda-lime for lower cost, aluminosilicate for strengthening.. Compare the exact grades by wavelength, refractive index or transmission, CTE, temperature, chemical resistance, durability, starting form and total component cost.

Request a Material and Drawing Review

Provide the exact grade or target properties, drawing, dimensions, critical surfaces, operating conditions, quantity and inspection requirements. ANTGLASS will review the material, starting form and process route together.

  • Exact material grade or target properties
  • Drawing, dimensions, thickness and critical tolerances
  • Wavelength, temperature, chemical and mechanical environment
  • Surface quality, flatness, TTV, coating or sealing requirements
  • Prototype and production quantities
  • Inspection, cleaning, traceability and packaging requirements