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Independent Temperature-Controlled Parallel Synthesizer

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PX Series Independent Temperature-Controlled Parallel Synthesizer

The PX-series independent temperature-controlled parallel synthesizer is a high-end research instrument that combines efficiency, flexibility, and safety in one compact device, specifically designed for modern chemical synthesis laboratories. This instrument features a multi-channel parallel reactor design equipped with 4 or 5 independent reaction units, each of which can independently control temperature and adjust stirring speed, significantly enhancing experimental flexibility and efficiency. Its unique... Refrigerant circulation temperature control And Emergency cooling function Moreover, it provides double assurance for temperature control during the synthesis reaction process.

Product Features

  1. Wide-range temperature control capability: Achieves wide-range temperature control from -40℃ to 250℃, meeting the stringent temperature requirements of various synthesis reactions and supporting simultaneous high- and low-temperature synthesis reactions.

  2. High-capacity reaction adaptability: By replacing the modules, each reaction unit can easily handle synthesis reactions across a wide volume range—from 0.5 mL to 1,000 mL (1,000 mL requires customization), thereby meeting diverse experimental needs.

  3. Diversified temperature control modes: It offers up to six temperature-control modes (including two isothermal modes, two constant-temperature modes, and two programmed temperature-control modes), allowing flexible selection based on experimental requirements for precise temperature control.

  4. Fully automatic temperature rise and fall control: Each reaction channel supports automatic temperature ramping and cooling functions, and allows for program-controlled settings of up to 10 temperature gradient segments, ensuring that the synthesis reaction proceeds smoothly under the preset temperature conditions.

  5. Intelligent operation interface: The design combines a touch screen with a rotary knob for intuitive and convenient operation. Users can easily set various parameters via the touch screen and monitor the reaction status in real time.

  6. High-precision temperature control system: By integrating an AI fusion algorithm with a refrigerant circulation module and an AI-powered fully automatic flow-limiting valve, we achieve precise and stable temperature control, ensuring the reliability of experimental results.

  7. Strong magnetic stirring performance: Adopting a high magnetic energy product module design, this product delivers powerful magnetic performance and is particularly well-suited for stirring high-viscosity samples, ensuring thorough mixing of reactants.

  8. Flexible mixing configuration: The mechanical stirrer features a rod-through design, allowing users to select the appropriate stirring rod according to their experimental needs, thereby enhancing flexibility and convenience of use.

  9. Emergency cooling function: Exclusively equipped with an emergency cooling function, this system monitors the temperature inside the materials in real time. Once the reactants generate excessive heat and the temperature rises above the safe threshold, the system will promptly and automatically activate a high-flow, low-temperature coolant circulation, effectively preventing experimental accidents and ensuring laboratory safety.

  10. Convenient Observation Design: Each reaction channel is equipped with an LED light and an observation window, allowing users to easily monitor the status of the reaction liquid at any time and adjust experimental parameters accordingly.

  11. Multiple security protections: It integrates multiple safety features, including dual overtemperature protection, overcurrent protection, self-diagnosis alarms, and high-temperature alarms after experiment termination, providing all-around assurance of the experiment’s safety and stability.

  12. Dual-stirring design: Each reaction channel is equipped with a dual-stirring system (strong magnetic stirring and mechanical stirring). Users can easily switch between stirring modes at the touch of a button on the touchscreen, meeting the stirring requirements of various experimental scenarios.

 

Accompanying Guide

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Application fields

  • Single or parallel synthesis
  • Design of Experiments (DOE)
  • Process Development
  • Scale-up
  • Route Exploration
  • Crystallization Research
  • Polymorph Screening
  • Lead compound optimization
  • Reaction optimization
  • Reagent, Catalyst, and Solvent Screening
  • Antibody-Drug Conjugate Screening (ADC/FDC/PDC/AOC, etc.)