Process Monitoring – HyperFlux PRO Plus Raman Spectrometer

The HyperFlux PRO Plus redefines what is possible with process measurements using the power of Raman spectroscopy. The newly re-designed HTVS component enhances the spectral throughput by an order of magnitude over conventional designs providing superior photon management. This allows process measurements to be done faster and with better sensitivity.

  • Higher Raman sensitivity than ever before possible
  • More accurate identification and quantitation
  • Faster measurement
  • Lower laser power operation
  • Flexible chemometric options including Unscrambler, Simca-P+, Pirouette,  Eigenvector.
  • 21CFR11 and IQOQPQ option for GMP applications.
  • 8-channel multiplex option.
  • ATEX option available with OPIS 35 Laser Safety Accessory

HTVS Raman Spectrometer – ATEX rated. On-line/In line and Reaction monitoring

Tornado’s HyperFlux PRO Plus is a complete Raman spectroscopy system including a proprietary HTVS-enabled spectrometer, a high-quality stabilised laser, multiple laser safety interlocks, temperature monitoring and dynamic re-calibration, and automated system health monitoring and fault detection. This powerful, reliable, and easy-to-use instrument is contained in a small, lightweight, cost-effective package which is readily deployed in both in-line process and laboratory settings.

The HyperFlux PRO Plus redefines what is possible with process measurements using the power of Raman spectroscopy. The newly re-designed HTVS component enhances the spectral throughput by an order of magnitude over conventional designs providing superior photon management. This allows process measurements to be done faster and with better sensitivity. The HyperFlux PRO Plus is perfect for ATEX situations where the highest sensitivity is required. Put Raman to work in your process measurement scheme.

The HyperFlux PRO Plus offers customisable bandpass, resolution, and throughput configuration delivering high-performance with versatility to meet your application requirements:

  • 4 cm-1 spectral resolution with no slit
  • Configurable for a variety of applications
  • Stand-off and immersion probe optics
  • No moving parts for superior stability

High signal throughput allows:  Faster measurements, better detection limits, reduced laser power to preserve samples and the potential for use of anti-stokes signal.

Proven real world applications:

  • Monitoring of polymer curing processes
  • Following crystalisation (crystalization) processes
  • Monitoring extrusion processes
  • Optimisation of chemical reactions in manufacturing
  • Real-time detection of process anomalies and excursions
  • Analysis of fuel mixtures

Plus many other examples… 

SPECIFICATIONS:

Laser785 nm
Laser Power20mW to 475 mW
BandpassConfigurable to Measurement Requirements
ProbesImmersion and Non-Contact
Unit size and weight18.4 x 8.5 x 5.4 inches, 22 lbs
(46.7 x 21.6 x 13.7 cm, 9.9 kg)
Input power requirements100/240V AC line power @ 15A
Temperature limits0 to 35°C, 20-80% humidity (non condensing)
Fiber Lengthup to 3 meters standard
longer lengths can be fabricated upon request.
Number of Channels8 (with serial multiplexer)
Computer and OS requirementsWindows 7, 2 GHz dual-core with
4 Gb RAM, 250 Gb HD, and USB2.0
SoftwareProcess communications options

 

Watch the video demonstrating the Speed & Sensitivity of HyperFlux PRO Plus:
Real-time Raman Spectroscopy of Propylene Glycol in Water

 

Click Here to request HyperFlux PRO Plus Datasheet

Click Here to request Tornado Instruments Overview Brochure

Click Heret o request Technical Note – OPIS 35 Configuration for ATEX Zone 0

Click Here to request Application note:  Analysis of Protein Glycosylation

Click Here to request Application note:  Crystallization of Cannabidiol

Click Here to request Application note:  Degree of Cure of Epoxy/Acrylic Photopolymers

Click Here to request Application note:  Downstream Protein Purification Optimization

Click Here to request Application Note: HTVS Impact on Raman Limit of Detection Performance

Click Here to request Application note:  Improving quality, efficiency, and chemical process economics using HyperFlux™ PRO Plus real-time Reaction Monitoring

Click Here to request Application Note: In-Line Analysis of Low Levels of Caffeine

Click Here to request Application Note: Mammalian Cell Culture Technology – Monitoring and Controlling Upstream Bioprocesses

Click Here to request Application note:  Measurement of Sodium Perchlorate

Click Here to request Application note:  Process Monitoring of Downstream Protein Purification

Click Here to request Application Note: Process monitoring for recycled polymer extrusion

Click Here to request Application Note: Quantitative analysis of Biochemical Components

Click Here to request Application note:  Raman Spectroscopy as a PAT Tool for Freeze/Thaw Applications

Click Here to request Application note:  Rapid In-Line Analysis of Low Levels of an Analyte

Click Here to request Application note:  Real-time determination of EVA crosslinking with Raman during photovoltaic manufacturing

Click Here to request Application note:  Residence time distribution in the feed frame of a tablet press

Click Here to request Application note:  Sand in Sugar (Field Analysis of Heterogenous Solids)

Click Here to request Application note:  Tablet Coating in Solid-Dose Pharma Manufacturing

Click Here to request Position Paper: Monitoring & Controlling Crystallization Processes

Click Here to request White Paper: Coupled High-Throughput Raman and Ultrasonic Particle Manipulation for Increased Sensitivity and Selectivity in a Cell Reactor

Click Here to request White Paper: Enhancing Pharmaceutical Formulation Development through the Use of Raman Spectroscopy

Click Here to request White Paper: Process Monitoring of Cannabis Extraction

Click Here to request White Paper: Real-time Monitoring of Protein Capture Chromatography

Related Products

Hudson 785 Non-Contact Raman Probe

OPIS 35 ATEX Certified Laser Safety Accessory

Hudson Bioreactor Raman Immersion Probe

Process Monitoring – MicroNIR

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