SCHOTT S8612 IR-Cut Glass — 0.7 mm, Uncoated
Pricing is available by quotation. Save products to your Interest List to request a quote for several items, or contact us about this product.
Pricing is available by quotation. Save products to your Interest List to request a quote for several items, or contact us about this product.
Referencia interna:
GLS-500026-00
SCHOTT S8612 absorbing near-IR filter glass. 0.7 mm requested finished thickness; Uncoated. Review the 380–1100 nm spectrum, red-light transmission and IR rejection together. Cut size and fabrication confirmed by quotation.
Absorptive glass provides a gradual spectral roll-off rather than a fixed, abrupt cutoff. More thickness improves infrared rejection but also reduces useful visible and red transmission. Specify the edge definition and maximum allowed transmission across the entire blocked band; a single cutoff wavelength does not define blocking performance. Absorbed power becomes heat. No standalone NVIS compliance is implied.
| Wavelength | Internal transmission |
|---|---|
| 630 nm | 38.23% |
| 650 nm | 23.02% |
| 670 nm | 12.3% |
| 700 nm | 3.901% |
| 800 nm | 0.07933% |
| 900 nm | <0.03162% |
| 1000 nm | 0.07238% |
| 1100 nm | 0.3802% |
Calculated from published 1 mm reference data using Ti(d) = Ti(dref)d/dref. Values reported below the source limit are upper-bound estimates.
The graph covers 380–1100 nm, with the published 1 mm reference dashed and calculated 0.7, 1.1, 1.6, 2 and 3 mm curves. Source: SCHOTT S8612 datasheet, 03.05.2023, 10 nm reference samples. Calculations assume homogeneous glass and normal incidence. Internal transmission excludes surface reflection and coating effects; the graph does not establish total transmission of a finished coated filter.
0.7 mm is a requested custom finished thickness. Confirm blank size, polishing, thickness tolerance, clear aperture and edges. Both optical surfaces uncoated.
Lot tracked. Availability, dimensions and optical requirements are confirmed by quotation. Plotted thicknesses do not establish stock or fabrication feasibility.
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