
JGS3 Substrate, Ø25.4 × 3.0 mm
O-OG-25.4-3.0-BL499Design Tools
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Overview
JGS3 substrate is a fused-silica material optimized specifically for the ultraviolet band, offering excellent UV transmission and low absorption loss, making it suitable for optical applications from the deep-ultraviolet to the visible range. This material is widely used in ultraviolet lasers, photolithography systems, UV imaging, and precision spectroscopic measurement. JGS3 substrate achieves high flatness and a high surface finish, making it well suited to research and high-end optical systems with stringent requirements for UV performance and optical consistency.
Handling & Storage
For optimal performance, store and use the substrate in an environment at 25 °C with 40%–60% relative humidity. If the surface becomes contaminated, gently clean it with ≥99% alcohol and lint-free lens tissue. Never use coarse cloth, water, or cleaners containing abrasive particles, as these may damage the optical surface.
| Substrate Material | JGS3 |
| Dimensions | 25.4 × 3.0 mm |
| Surface Quality | 10-5 S-D per CA |
| Surface Flatness | λ/10 @ 633 nm |
| Coating Type | Uncoated |
Product Family: Optical Substrates (7 variants)
| Product | SKU | Dimensions | Substrate | Wavelength | |
|---|---|---|---|---|---|
| JGS3 Substrate, Ø25.4 × 3.0 mm Current |
O-OG-25.4-3.0-BL499
| 25.4 × 3.0 mm | JGS3 | — | |
| UVFS Substrate, Ø50.8 × 9.0 mm |
O-OG-50.8-9.0-BL498
| 50.8 × 9.0 mm | UVFS | — | Contact |
| UVFS Substrate Plate, 15.0 × 15.0 × 0.5 mm |
O-OG-15.0x15.0-0.5-BL497
| 15.0 × 15.0 × 0.5 mm | UVFS | — | Contact |
| UVFS Substrate Plate, 15.0 × 15.0 × 2.0 mm |
O-OG-15.0x15.0-2.0-BL496
| 15.0 × 15.0 × 2.0 mm | UVFS | — | Contact |
| UVFS Substrate Plate, 15.0 × 15.0 × 1.0 mm |
O-OG-15.0x15.0-1.0-BL495
| 15.0 × 15.0 × 1.0 mm | UVFS | — | Contact |
| SF11 Substrate Block, 5.0 × 5.0 × 19.0 mm |
O-OG-5.0x5.0-19.0-BL494
| 5.0 × 5.0 × 19.0 mm | SF11 | — | Contact |
| SF11 Substrate, Ø20.0 × 5.0 mm, AR@615-1100nm |
O-OG-20.0-5.0-BL493
| 20.0 × 5.0 mm | SF11 | 615.0–1100.0 nm | Contact |




