High-Throughput Asynchronous Peptide Synthesizer PepAxis-Nova 7 from China Suppliers and Factory
Product Profile
The Nova 7 High-Throughput Asynchronous Peptide Synthesizer is a new-generation, fully automated intelligent platform designed specifically for high-throughput, multi-task parallel synthesis applications. The system employs an asynchronous synthesis mode and offers flexible 12- or 24-channel configurations. Each channel supports the simultaneous execution of different sequences, scales, and synthesis methods, achieving true “multi-purpose” functionality. The device is equipped with a high-precision quantitative dispensing system with a sampling accuracy of 0.1mL, ensuring the accuracy of reagent ratios during micro-scale synthesis; it supports independent channel settings for activation methods, reaction times, and deprotection processes, and allows for real-time start/stop or adjustment, greatly enhancing synthesis flexibility; combined with a customizable pre-activation module and channel-independent timing management functions, it effectively improves the success rate of synthesizing difficult sequences. It effectively meets the high-standard requirements of application scenarios such as peptide drug screening, structure-activity relationship studies, and peptide library construction.
Basic Parameters
| Type | Channels | Reactor (mL) | Amino Acid Sites | Activator Sites | Solvent Sites | Sizes (cm) |
|---|---|---|---|---|---|---|
| Nova 7 | 12/24 | 10/30 | 28 | 4 | 4~6 | 82×62×92 |


Experience advanced micro-scale asynchronous 12/24-channel peptide synthesis technology, designed to meet the needs of innovative researchers and laboratories in China.
Leverage precise quantitative dispensing for amino acids and activation reagents with an accuracy of ±0.1 mL, ensuring reliable results for all your synthesis projects.
Benefit from the independent configuration of activation and deprotection methods tailored to each amino acid, making our factory a trusted supplier for cutting-edge peptide synthesis solutions.