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Brochure NIRS Analyzer Pro [ENG]
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NIRS Analyzer Pro
NIRS Analyzer Pro is a process analysis system based
on high resolution diode array technology. It provides
non destructive analysis of granules, powders, slurries
or odalisque samples directly in the process line with-
out bypass – a true in-line system.
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• High resolution diode array technology for accurate and continuous analysis in reflectance
or transmittance mode
• Built-in instrument factory standardisation for quick and simple implementation of one or
several analysers
• Uptime protection systems for low maintenance
• Dedicated sample interfaces provides accuracy and rapid implementation
• Instant measurement of complete wavelength range for direct measurement of fast
moving samples
• Quantitative and qualitative data for better in-line process control
• Dual lamp technology retaining accuracy when the backup lamp is activated providing
consistent uninterrupted analytical accuracy
• Integrated intelligent Metrohm calibration tool, ISIcal
TM enables anyone to develop
calibrations
• Metrohm standard OPC interface for integration to local control systems enables
automatic regulation of the process
NIRS Analyzer Pro is a process analysis system based on
high re so lution diode array technology. It provides non
destruc tive analysis of products such as flour, feeds,
meals, ground meat and dairy products directly in the
process line without bypass.
The analyser is housed in a robust cabinet mounted at
the relevant location in the production area. Measure-
ments are displayed in the control room and results can
be fed into a regulation system for closed-loop automa tic
control. The solution helps to optimise the use of raw materials
and to consistently run production closer to target spe
ci-
fi cations.
Precise instrument matching enhances method develop-
ment, minimises implementation efforts and ensures
calib ration model transferability between analysers. 03
The NIRS Analyzer Pro analyser is available with dedicat-
ed interfaces based on reflectance or transmittance tech-
nology whichever is best suited for each application area.
Mea surements are done directly on the moving sample
in the process stream. A high-intensity dual-lamp light
source illuminates the sample directly or through an opti-
cal fiber. The light interacts with the sample and the
reflected or transmitted light is measured by the diode
array sensor. The backup lamp in the dual lamp system
secures uptime and analytical accuracy is unchanged
even after switching to a new lamp. The complete wavelength range is measured instanta-
neously enabling measurements also on fast moving
sam
ples with high accuracy. Calibrations are transferable
between units ensuring easy expansion to other measure-
ment points. Integration to process regulations systems
can be done through the Metrohm OPC interface.
System Description
Window reflectance
In-line analysis of paste, granulates, powdered products
etc in pipes or transport systems without bypass can be
performed. The products pass over the interface window.
The window reflection interface can easily be installed
into the production line using standard GEA Tuchenhagen
flowcells or welding an interface flange into the wall of
the pipe/transport system.
Dedicated sample interfaces
Direct light
In-line analysis of products where direct contact with the
product is not a technically feasible solution i.e. product
transported on a conveyer belt.
04 Temperature 150 °C (302 °F)
Pressure Vacuum > 1 torr,
Pressure < 3’000 PSI
Lens Sapphire; Diameter 45 mm,
thickness 12 mm,
with food grade
EPDM O-ring seal
Hygiene USDA, Dairy
Pipe flowcells Fits directly into GEA
Tuchenhagen
Varinline Access units
Type N (DN40 to DN150)
with 68 mm opening
Transport system Stainless steel welding flange
Lens Sapphire; Diameter 45 mm,
thickness 12 mm,
with food grade
EPDM O-ring seal
Hygiene USDA, Dairy
Distance 100-250 mm to sample surface
Scanning area 20-85 mm Ø
Powder probe
In line analysis of fine powder like dairy powders etc. The
powder probe interface can easily be installed into a hop-
per or pipe with free falling product. The probe has no
moving parts. The probe is automatically cleaned with
compressed air before each analysis. 05 Material Teflon (PCTFE)
Diameter% A? )tc?5
Length% A? Ae
Fiber Steel armoured fiber bundle
(1, 3, 5 or 10 meters)
Air Clean compressed air 43-72 PSI
Temperature Max 120 °C
Installation% A? )tc?5% A? 3?4!s"scc% A???`% A?IV6(?
Hygiene USDA, Dairy
Cleaning Clean with compressed air or wash
in water, hot or cold depending
on product
Lateral transmittance
In line analysis of slurries and viscous products such as
WPC, Cream Cheese, Mozarella etc. The Lateral transmit-
tance probe does not restrict the flow rate of the product
and can easily be installed in the production line using a
standard GEA Tuchenhagen flowcell for installation in a
pipe or by welding an interface flange into the wall of a
tank.
NIRS Analyzer Pro is CE labeled and complies with the following directives:
• Low Voltage Directive (LVD) (2006/95/EC)
• RoHS Directive (2002/95/EC)
• Packaging and packing and waste Directive (94/62/EC)
• WEEE Directive (2002/96/EC)
• ATEX Directive, (94/9/EC), Zone 20 (EN 61241-1-2004 – Explosion safety for DUST-Protection
by enclosure tD)
• IECEx, Zone 20 (IEC 61241-1-2004 – Explosion safety for DUST-Protection by enclosure tD)
• REACH Directive (1907/2006/EC)
• Developed and produced according to Metrohm ISO approval ISO 9001
Standards and approvals
06
Materials
Stainless steel
Lens Sapphire, 5 mm thick, with food
grade EPDM O-ring seal
Temperature Max 150 °C (302 °F)
Pressure Max 200 PSI (13.79 bars) –
Warning! Varinline access units
higher number than DN 80 permit
a maximum pressure of 145 PSI.
Hygiene USDA, Dairy
Optical fiber Steel armoured fiber bindle
(1, 3, 5 or 10 meters)
Pipe flowcells Fits directly into GEA Tuchenhagen
Varinline Access units Type N
(DN40 to DN150), 1½” to 6” with
68 mm opening or Type F (DN 25),
1” with 50 mm opening)
2#?(s??t
NIRS Analyzer Pro Reflection
Analysis time 5 - 50 ms / integration time; Average time per result 3-15 seconds
Measurement mode Reflectance (Window reflectance; Direct Light, Powder Probe)
Wavelength range 1’100-1’650 nm
Detector InGaAs Diode array
Spectral dispersion 1.1 nm / pixel
NIRS Analyzer Pro Transmittance
Analysis time 5 ms-60 sec / integration time; Average time per result 3-15 seconds
Measurement mode Transmittance (Lateral transmittance, transmittance probe pair)
Wavelength range 850-1’050 nm
Detector Si Diode array
Spectral dispersion 1.0 nm / pixel
General
Light source lifetime Dual lamp system MTBF = 17’500 h
Software package ISIscan
TM for instrument control; ISIcal TM for calibration development
Wavelength accuracy 0.5 nm
Wavelength precision < 0.02 nm
Wavelength stability < 0.01 nm/°C
Noise < 60 micro AU
Random Vibrations 0.4 grms at 10-150 Hz according to IEC 60068-2-64
0.4 grms at 10-1’250 Hz according to Metrohm internal standard
(more information available on request)
Temperature -5 to 40 °C (23-104 °F). With purge -5 to 65 °C (23-149 °F)
Installation in ATEX zone: 0-40 °C (32-104 °F).
With purge 0-65 °C (32-149 °F)
Purge air Flow rate minimum 5 l/min,
> 99.9% water free, > 99.9% free of oil and fine particles down to 0.3 ?m
Ambient humidity 10-90% relative
Dimensions (w × h × d) 42 × 42 × 13.5 cm (16.5 × 16.5 × 5.3 inches) + brackets to hold the unit
Weight 25 kg / 55 lbs
Cabinet 1.5 mm (lid 2.5 mm) Stainless Steel EN 1.4301 (SS2333)
Protection IP69K
1) according to IEC 60529 and DIN 40050 part 9, NT ELEC 023
Communication Ethernet, OPC, RINA, FossCare TM
Power supply Recommended isolated or conditioned line power
100-240 VAC, 50-60 Hz, 2.0 A, 150 W
1) IP6x is the highest protection for dust entering the unit. IPx9K means protected against the effect of high-pressure water and/or
steam cleaning at high temperature.
07
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Layout by Ecknauer+Schoch ASW, printed in Switzerland by Metrohm AG, CH-9100 Herisau
8.928.5000EN – 2013-03
www.metrohm-nirs.com
Ordering information
2.928.1110 NIRS Analyzer PRO – ContactReflection
2.928.1120 NIRS Analyzer PRO – FiberSystem
2.928.1130 NIRS Analyzer PRO – DirectLight/NonContact
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Date d'upload du document :
jeudi 23 avril 2020