Description
The all-quartz flow-through cuvette is a high-precision cell for applications in spectroscopy. New technology enables the positioning of precise internal threads into the quartz glass. Tubes can now be connected very easily and securely directly to the cuvette.
The second path length is available by simply turning the cuvette through 90° – all tubes remain screwed in place. Time consuming changing of the cuvette is no longer necessary. Two different path lengths have a beneficial effect to the costs and the application. Furthermore, it is possible to measure the fluorescence with each optical path length – another benefit.
Fluorescence All-Quartz Flow-Through Cells 176.761-QS
Specifications
Window Material: | Quartz glass high performance (QS) |
---|---|
Wavelength Range: | 200 – 2500 nm |
Width: | 12.5 mm |
Depth: | 12.5 mm |
Height: | 35 mm |
Light Path: | 2.5 mm |
Max Temperature: | Not Specified |
Fiber Optic Cable: | None |
Features
- No liquid leakage, monolithic quartz glass construction prevents this by design
- Suitable for high and low temperatures
- Fully autoclavable
- Secure tube connection is ensured due to the innovative quartz glass internal threads
Applications
- Spectroscopy
- Chemistry Labs
- Laser spectroscopy
Frequently Asked Questions
What is the material of the flow-through cells?
The flow-through cells are made of all-quartz glass.
Can the cuvette be easily connected to tubes?
Yes, the new technology enables the positioning of precise internal threads into the quartz glass, making it easy to connect tubes directly to the cuvette.
Is it possible to measure fluorescence with different optical path lengths?
Yes, it is possible to measure fluorescence with each optical path length, which is a benefit of the product.
Is the cuvette suitable for use in high and low temperatures?
Yes, the cuvette is suitable for use in both high and low temperatures.
What applications is the flow-through cell suitable for?
The flow-through cell is suitable for applications in spectroscopy, chemistry labs, and laser spectroscopy.
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