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High-Throughput Asynchronous Peptide Synthesizer - PepAxis-Nova 7 from China Suppliers & 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 |
Technical Parameters
Reactor Volume
10 / 30 mL
Synthesis Scale
0.1–0.6 mmol (upgradeable)
Synthesis Mode
Asynchronous synthesis
Temperature Control
Hot air (whole unit)
Mixing Mode
Vortex agitation + Nitrogen bubbling
Amino Acid Positions
28, 125 / 250 mL
Special Reagent Positions
8, single aspiration
Activation Reagent Positions
4, 125 / 250 mL
Solvent Positions
4–6, 0.5–10 L reservoirs
Solvent Transfer
Quantitative liquid delivery, accuracy 0.1 mL
Dimensions (W × D × H)
100 cm × 65 cm × 1780 cm
Frequently Asked Questions (FAQ)
Q
What is the maximum number of channels supported by the Nova 7 Peptide Synthesizer?
The Nova 7 supports flexible configurations of either 12 or 24 channels, allowing researchers to scale their synthesis capacity based on project requirements.
Q
Can different peptide sequences be synthesized simultaneously on the Nova 7?
Yes. Thanks to its asynchronous synthesis mode, each channel on the Nova 7 can independently execute different sequences, scales, and synthesis methods at the same time, achieving true multi-purpose parallel synthesis.
Q
What is the dispensing accuracy of the Nova 7's liquid delivery system?
The Nova 7 is equipped with a high-precision quantitative dispensing system with a sampling accuracy of 0.1 mL, ensuring precise reagent ratios during micro-scale synthesis operations.
Q
What mixing methods does the Nova 7 use during synthesis?
The Nova 7 employs a dual mixing approach combining vortex agitation and nitrogen bubbling, ensuring thorough and efficient reagent mixing throughout the synthesis process.
Q
What application scenarios is the Nova 7 best suited for?
The Nova 7 is ideally suited for high-throughput applications including peptide drug screening, structure-activity relationship (SAR) studies, and peptide library construction, meeting the high-standard demands of modern pharmaceutical and research workflows.
Q
Can the activation method and reaction time be adjusted independently for each channel?
Yes. The Nova 7 supports fully independent channel settings for activation methods, reaction times, and deprotection processes. Users can also start, stop, or adjust any channel in real time, offering exceptional synthesis flexibility for complex or difficult sequences.


Experience advanced micro-scale asynchronous 12/24-channel peptide synthesis designed for precision and efficiency.
Our system offers quantitative dispensing for amino acids and activation reagents with an impressive accuracy of ±0.1 mL, ensuring reliable results every time.
Each amino acid can be independently configured for activation and deprotection methods, providing enhanced flexibility for peptide synthesis processes.