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30µL Gold Plated Stainless Steel High Pressure Capsules for PerkinElmer/PE-B0182902
30µL Gold Plated Stainless Steel High Pressure Capsules for PerkinElmer/PE-B0182902
Enhance your high-pressure thermal analysis with 30µL Gold Plated Stainless Steel High Pressure Capsules designed for PerkinElmer (part number PE-B0182902). These capsules are crafted from high-quality stainless steel and feature a gold-plated interior, ensuring robust containment and precise measurement of samples under high-pressure conditions. Ideal for scientific research, quality control, and material characterization, they provide reliable performance across various industries.
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30µL Gold Plated Stainless Steel High Pressure Capsules for PerkinElmer/PE-B0182902
| Enhance your high-pressure thermal analysis with 30µL Gold Plated Stainless Steel High Pressure Capsules designed for PerkinElmer (part number PE-B0182902). These capsules are crafted from high-quality stainless steel and feature a gold-plated interior, ensuring robust containment and precise measurement of samples under high-pressure conditions. Ideal for scientific research, quality control, and material characterization, they provide reliable performance across various industries. | |||||
| Gold Plated Stainless Steel High Pressure Capsules | |||||
| SKU# | Capacity | Material | Suitable for Equipment Models | Maximum temperature | Pieces/Sets |
| CX-PE-30021 | 30 ul | Stainless Steel | PE-B0182902 | 750°C | 5 |
- Designed for PerkinElmer Instruments: Custom-fit for seamless compatibility with PerkinElmer thermal analysis systems, ensuring secure sample containment and precise thermal measurements under high-pressure conditions.
- High-Quality Stainless Steel: Offers exceptional durability and resistance to corrosion, guaranteeing long-term use and reliable thermal analysis results.
- Gold Plated Interior: Enhances sample stability and minimizes reactions, ensuring accurate and consistent experimental outcomes.
- Optimal Volume (30µL): Suitable for a variety of sample sizes, offering precise and reproducible thermal analysis.









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