
( Brand: Applied Biosystems ), ( Manufacturer Part Number: 4462077 ), ( Part Type: Plate Adapter ), ( Country/region Of Manufacture: United States )
The Applied Biosystems 4462077 ABI ViiA 7 Real-Time PCR 96-Well Plate Adapter is a crucial component in the field of molecular biology, specifically for real-time PCR experiments. This adapter is designed to work seamlessly with the ABI ViiA 7 Real-Time PCR System, a highly regarded instrument known for its accuracy and reliability.
The adapter is constructed from high-quality materials to ensure durability and compatibility with the system. It features a 96-well format, allowing for the simultaneous analysis of up to 96 samples, making it an efficient tool for high-throughput research. The wells are engineered to provide optimal performance, ensuring consistent results and minimizing cross-contamination.
The adapter is easy to use and handle. It securely attaches to the ABI ViiA 7 instrument, ensuring a snug fit and preventing any movement during the PCR process. This stability is crucial for achieving accurate and reproducible results.
Furthermore, the adapter is designed to be compatible with a wide range of PCR mastermixes and primer sets, providing researchers with flexibility in their experiments. It is also suitable for use with various types of samples, including DNA, RNA, and cDNA.
In summary, the Applied Biosystems 4462077 ABI ViiA 7 Real-Time PCR 96-Well Plate Adapter is an essential tool for researchers working with real-time PCR. Its durability, high-performance wells, and compatibility with various samples and mastermixes make it a versatile and reliable option for high-throughput molecular biology research.
Pros of buying Applied Biosystems 4462077 ABI ViiA 7 Real-Time PCR 96-Well Plate Adapter:1. Compatibility: This adapter is designed to work with the ABI ViiA 7 Real-Time PCR system, ensuring seamless integration and reliable results.
2. High-throughput: The 96-well format allows for processing a large number of samples at once, saving time and resources.
3. Durable and reliable: Applied Biosystems products are known for their high-quality materials and robust construction, ensuring long-term use.
4. Easy to use: The adapter is designed for easy handling and loading, reducing the risk of errors during the PCR process.
Cons of buying Applied Biosystems 4462077 ABI ViiA 7 Real-Time PCR 96-Well Plate Adapter:1. Cost: The adapter is not cheap, and the overall cost of the ABI ViiA 7 system and consumables can be significant.
2. Limited versatility: The adapter is specifically designed for the ABI ViiA 7 system, and may not be compatible with other PCR systems.
3. Requires specialized knowledge: While the adapter is easy to use, the ABI ViiA 7 system and PCR processes in general require specialized knowledge and training to operate effectively.
Conclusion:If you are already using the ABI ViiA 7 system and require a high-throughput solution for your PCR needs, the Applied Biosystems 4462077 ABI ViiA 7 Real-Time PCR 96-Well Plate Adapter is a reliable and durable option. However, the cost and limited versatility should be considered before making a purchase. If you are looking for a more versatile or budget-friendly option, you may want to explore other options on the market.
Recommendation:If you are currently using the ABI ViiA 7 system and require a high-throughput solution, the Applied Biosystems 4462077 ABI ViiA 7 Real-Time PCR 96-Well Plate Adapter is a recommended option. However, if you are looking for a budget-friendly or more versatile option, you may want to explore other options on the market, such as the Bio-Rad CFX Connect Real-Time PCR Detection System and its corresponding plates.
This product is ideal for those who want to enhance their laboratory or clinics capabilities and improve patient outcomes. It is suitable for use in various settings, including businesses, industrial facilities, healthcare institutions, and dental clinics. It is designed to work with the Viia7 Real-Time PCR system, manufactured in USA, and compatible a range of applications.