(VRM15) 0.7mL Cell for Reflection Measurement, no Cover, 17×5 mm, Wall 1mm, Fused
$155.00
This cylindrical cuvette is for reflection-based light scattering measurements, with a path length of 15 mm. Resistant to most chemicals. Use up to 1200°C. The price is for 1 piece.
- Type: Molded
Description
VRM15 Reflection Measurement Cell is a compact quartz cell engineered for reflection and surface measurement applications. With a 0.7 mL internal volume and a low-profile 17 × 5 mm body, it offers excellent light reflectance control and minimal sample requirements, making it ideal for optical characterization, thin-film studies, and photometric testing.
This cell is designed without a cover, making it especially convenient for open-surface reflection measurements, rapid sample changes, and integration with reflection stage systems. The 15 mm inner diameter provides a stable and uniform measurement area, while its quartz material ensures superior optical clarity and chemical resistance.
Typical Applications
- Reflection and surface optical measurements
- Thin film and coating analysis
- Photometric and spectroscopic testing
- Optical material R&D
- Integration with custom reflection setups
Key Features
- 0.7 mL internal volume minimizes sample consumption
- Compact geometry (17 mm × 5 mm) ensures stable reflection
- Quartz material with UV/VIS transmission from 190 to 2500 nm
- No cover — ideal for fast sample loading and surface testing
- High optical clarity suitable for precise reflection measurements
Technical Specifications
| Type | Reflection Measurement Cell | Volume | 0.7 mL |
| Article No. | VRM15 | Material | Quartz |
| Outer Diameter | 17 mm | Inner Diameter | 15 mm |
| Height | 5 mm | Wall Thickness | 1 mm |
| Wavelength Range | UV/VIS (190 – 2500 nm) | ||
| Fabrication Method | Fused* | Package | Cell Only |
Note: This reflection cell is designed for open-surface optical measurements, enabling easy handling and stable reflection geometry. Ideal for use in thin-film and coating experiments, photometric reflection setups, and precision optical research.
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