The Laboratory 96 Well Impact Plate represents precision engineering for crystallisation under oil applications, featuring 96 conical wells each with 19.1 microliter capacity and flat bottom design measuring 1.99mm in diameter. This specialized configuration ensures optimal sample placement at the center of each well, facilitating accurate crystallisation processes while enabling clear microscope observation of crystal formation. The low-profile construction significantly reduces storage space requirements without compromising functionality, making it an essential tool for modern research facilities that demand both precision and efficiency in their experimental setups. Its robust construction guarantees consistent performance across diverse laboratory conditions, providing researchers with reliable data generation capabilities.
This impact plate finds extensive application across pharmaceutical research institutions, biotechnology companies, and academic laboratories where protein cr...
The Laboratory 96 Well Impact Plate represents precision engineering for crystallisation under oil applications, featuring 96 conical wells each with 19.1 microliter capacity and flat bottom design measuring 1.99mm in diameter. This specialized configuration ensures optimal sample placement at the center of each well, facilitating accurate crystallisation processes while enabling clear microscope observation of crystal formation. The low-profile construction significantly reduces storage space requirements without compromising functionality, making it an essential tool for modern research facilities that demand both precision and efficiency in their experimental setups. Its robust construction guarantees consistent performance across diverse laboratory conditions, providing researchers with reliable data generation capabilities.
This impact plate finds extensive application across pharmaceutical research institutions, biotechnology companies, and academic laboratories where protein crystallisation and compound screening form core research activities. Industries engaged in high-throughput screening particularly benefit from its efficient design that allows simultaneous processing of multiple samples while maintaining experimental integrity. Research facilities focused on drug discovery and development rely on this plate for its proven reliability in producing consistent crystallisation outcomes, while chemical laboratories utilize it for quality control procedures that demand accurate and reproducible results. The plate's adaptability makes it suitable for both standard laboratory procedures and cutting-edge research initiatives.
The 96 Well Impact Plate delivers substantial business value through its exceptional reliability and operational efficiency. Its durable construction minimizes the need for frequent replacements, resulting in significant long-term cost savings for laboratory operations. The precision design reduces experimental variability, ensuring data integrity and enhancing research outcomes while supporting reproducible scientific discoveries. Organizations benefit from its space-optimized storage characteristics that improve laboratory workflow organization and efficiency. The plate's compatibility with standard laboratory equipment simplifies integration into existing processes without requiring additional investments. These combined attributes provide a trustworthy laboratory solution that supports effective scientific research while maximizing return on investment.
Key Features:
- 96 conical wells with 19.1 microliter capacity per well
- Flat bottom design measuring precisely 1.99mm in diameter
- Low-profile construction for optimal storage efficiency
- Specifically engineered for crystallisation under oil applications
- Secure compatibility with appropriate sealing lids
Benefits:
- Ensures precise sample placement for accurate crystallisation results
- Enables clear microscope monitoring of crystal growth development
- Reduces storage space requirements through compact design
- Maintains consistent performance across multiple experimental cycles
- Supports high-throughput screening with reliable, reproducible outcomes