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Radley Jacketed Reactor System + Huber CC-508 Precision Heating/Cooling Circulator

Author : Andrew Condin

Radley Jacketed Reactor System + Huber CC-508 Precision Heating/Cooling Circulator (Pilot-Scale Thermal Control Platform)

A fully integrated industrial-grade closed-loop thermal reactor system combining a Radley jacketed glass reactor with a Huber CC-508 refrigerated/heating circulator (Pilot ONE controller).

This is a professional R&D / pilot-scale temperature control platform designed for precise, repeatable thermal processing with exceptional stability across heating and cooling cycles.

SYSTEM OVERVIEW

This configuration operates as a complete closed-loop thermal processing ecosystem:

  • Huber CC-508 provides high-precision thermal fluid conditioning (heating & cooling)
  • External circulation loop transfers controlled energy to the reactor jacket
  • Radley jacketed glass reactor ensures uniform heat distribution and process visibility
  • Pt100 probe feedback enables real-time closed-loop temperature regulation
  • Pilot ONE controller allows programmable thermal profiles and process automation

Result: tight temperature control, smooth ramping, and highly repeatable process conditions suitable for advanced laboratory or pilot-scale workflows.

$60,000.00

per unit

Radley Jacketed Reactor System + Huber CC-508 Precision Heating/Cooling Circulator (Pilot-Scale Thermal Control Platform)

A fully integrated industrial-grade closed-loop thermal reactor system combining a Radley jacketed glass reactor with a Huber CC-508 refrigerated/heating circulator (Pilot ONE controller).

This is a professional R&D / pilot-scale temperature control platform designed for precise, repeatable thermal processing with exceptional stability across heating and cooling cycles.

SYSTEM OVERVIEW

This configuration operates as a complete closed-loop thermal processing ecosystem:

  • Huber CC-508 provides high-precision thermal fluid conditioning (heating & cooling)
  • External circulation loop transfers controlled energy to the reactor jacket
  • Radley jacketed glass reactor ensures uniform heat distribution and process visibility
  • Pt100 probe feedback enables real-time closed-loop temperature regulation
  • Pilot ONE controller allows programmable thermal profiles and process automation

Result: tight temperature control, smooth ramping, and highly repeatable process conditions suitable for advanced laboratory or pilot-scale workflows.

HUBER CC-508 – INDUSTRIAL PRECISION THERMAL CONTROL

A premium German-engineered circulator system widely used in demanding chemical and research environments.

Key capabilities:

  • Broad temperature operating range (deep cooling to high-temperature heating)
  • High-stability closed-loop control (ultra-precise regulation)
  • Pilot ONE touchscreen interface with programmable process recipes
  • Integrated safety systems, alarms, and process monitoring
  • High-performance circulation pump (pressure + suction output)
  • External Pt100 probe input for direct process feedback

This unit is designed for continuous-duty industrial operation and long-term thermal stability.

RADLEY JACKETED GLASS REACTOR SYSTEM

A high-quality jacketed reactor engineered for controlled thermal exchange and process visibility.

Features:

  • Double-walled jacketed glass vessel for uniform heat transfer
  • Designed for external thermal fluid circulation
  • Excellent chemical resistance and thermal stability
  • Full visual process monitoring (transparent reactor body)
  • Compatible with controlled heating, cooling, and ramp cycles

PERFORMANCE ADVANTAGES

This system delivers capabilities beyond standard lab heating equipment:

  • True closed-loop temperature control (not open bath heating)
  • Eliminates overshoot and thermal instability common in basic systems
  • Smooth, programmable heating/cooling ramps
  • Exceptional reproducibility between runs
  • High thermal uniformity across reactor volume
  • Scalable for pilot R&D and process development environments

IDEAL APPLICATIONS

Designed for professional environments requiring precision thermal control:

  • Chemical process development (R&D)
  • Pilot-scale formulation and testing
  • Temperature-sensitive synthesis workflows
  • Material and compound stability testing
  • Controlled thermal cycling experiments
  • Process optimization and scale-up validation

ELECTRICAL / OPERATIONAL REQUIREMENTS

  • Industrial power supply (typically 208–230V depending on configuration)
  • Requires compatible thermal transfer fluid (silicone oil or glycol-based depending on operating range)
  • External circulation loop setup required

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