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Pilot-scale Automated Solid-Phase Peptide Synthesizer - PepAxis™-Atlas 6 from Reliable China Suppliers & Factory
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Pilot-scale Automated Solid-Phase Peptide Synthesizer - PepAxis™-Atlas 6 from Reliable China Suppliers & Factory

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Discover our pilot-scale automated solid-phase peptide synthesis system, designed to streamline the production process for peptide manufacturing. This advanced technology features a single-channel configuration, making it an ideal choice for both small and medium-scale projects.

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As a leading supplier in China, our factory is committed to providing high-quality peptide synthesis solutions tailored to meet your specific needs. Elevate your research and production capabilities with our state-of-the-art synthesis equipment, backed by exceptional service and support.

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    PepAxis-Atlas 6 Ⅰ

    Number of Channels: 1

    Reactor Volume: 0.5–2 L

    Amino Acid Positions: 6

    Synthesis Scale: 2–25 mmol

    Dimensions (W × D × H): 70 cm × 60 cm × 75 cm

    PepAxis-Atlas 6 Ⅱ

    Number of Channels: 1

    Reactor Volume: 1 / 2 / 5 L

    Amino Acid Positions: 6

    Synthesis Scale: 4–60 mmol

    Dimensions (W × D × H): 85 cm × 85 cm × 90 cm

    Atlas 6 (formerly 486 Pro) is a flexible single-channel system for pilot-scale synthesis, adaptable to different synthesis strategies. Users can freely replace reactor specifications according to requirements, enabling synthesis scales from 2–25 mmol (or up to 60 mmol depending on configuration). The instrument emphasizes operational autonomy and process scalability, providing a stable and efficient synthesis platform for process optimization and pilot-scale scale-up.
    📋 Basic Parameters
    Type Channels Reactor (L) Amino Acid Sites Solvent Sites Sizes (cm)
    Atlas 6 1 0.5 / 1 / 2 6 5 70 × 60 × 75
    1 / 2 / 5 6 5 85 × 85 × 90
    ⚙️ Technical Specifications
    Temperature Control Method Water bath heating
    Amino Acid Bottles 50–200 mL
    Solvent Positions 5
    Solvent Reservoirs 20 L, 50 L
    Mixing Mode 180° vertical inversion mechanical stirring
    Power Supply 110 / 220 V, 50 / 60 Hz
    Weight 87 kg
    Frequently Asked Questions
    Q What is the difference between PepAxis-Atlas 6 Ⅰ and Atlas 6 Ⅱ?
    The primary difference lies in reactor volume and synthesis scale. Atlas 6 Ⅰ supports reactor volumes of 0.5–2 L with a synthesis scale of 2–25 mmol, while Atlas 6 Ⅱ supports larger reactor volumes of 1, 2, or 5 L and a synthesis scale of 4–60 mmol, making it suitable for higher-throughput pilot production.
    Q Can users switch reactor sizes on the Atlas 6 system?
    Yes. The Atlas 6 is designed with operational flexibility in mind. Users can freely replace reactor specifications according to their synthesis requirements, allowing the system to adapt to a wide range of scales without replacing the entire instrument.
    Q What mixing technology does the Atlas 6 use?
    The Atlas 6 utilizes 180° vertical inversion mechanical stirring as its mixing mode. This approach ensures thorough and consistent mixing of reagents within the reactor, which is critical for achieving high coupling efficiency during peptide synthesis.
    Q What synthesis strategies is the Atlas 6 compatible with?
    The Atlas 6 is a flexible single-channel system adaptable to different synthesis strategies. It is designed to support process optimization and pilot-scale scale-up, making it well-suited for both standard Fmoc SPPS workflows and customized protocols developed for specific peptide targets.
    Q What are the power supply requirements for the Atlas 6?
    The Atlas 6 supports both 110 V and 220 V power supplies at 50/60 Hz, making it compatible with laboratory environments in most countries and regions worldwide without requiring additional voltage converters.
    Q How many amino acid and solvent positions does the Atlas 6 support?
    The Atlas 6 supports 6 amino acid positions with bottle volumes ranging from 50 to 200 mL, and 5 solvent positions with solvent reservoirs available in 20 L and 50 L capacities, providing sufficient reagent capacity for extended pilot-scale synthesis runs.