ESR spectrometer is an ideal instrument for on- and off-line ESR testing under laboratory and plant conditions. When using additional and software means the spectrometer becomes not only for routine measurements, but also a research instrument for develop
- Features
Compact. Portable, lightweight table-top unit.
Easy To Use. Full computer control requires minimal user training.
Sensitive. Micromolar sensitivity.
Integrated. Complete in one cabinet;Requires only a computer to operate.
Reliable. Sturdy design provides trouble-free service LOW COST.
FIELDS OF APPLICATION
- ESR spectrometer
ESR spectrometer is an ideal instrument for on- and off-line ESR testing under laboratory and plant conditions. When using additional and software means the spectrometer becomes not only for routine measurements,
but also a research instrument for developing new complex application.
- Pharmaceutical research
A large, Midwest-based pharmaceutical firm uses the ESR spectrometer to monitor incubated kidney cell lines undergoing apoptosis.
- Fermentation
In the Central Nervous System research lab of an internationally known pharmaceutical firm, the ESR spectrometer helps boost yields in an antibiotic biosynthesis. During a fermentation process unwanted
free radical buildup is easily seen and, if found, corrected for.
- Veterinary research
An internationally known manufacturer uses the ESR spectrometer to monitor free radical generation occurring in reaction among constituents in animal feeds of different compositions.
- Polymer production
A chemical company uses the ESR spectrometer to closely measure free radical initiator concentration at its on-line process for producing polystyrene.
- Supertanker engine wear
At international ports an American oil company uses the CMS8400 in an engine wear assay. A portion of a Supertanker's engine oil is tested looking for the presence of metals that would indicate damage.
- Biological research
To better elucidate their work on free radicals in biological systems, researchers at NIEH are using the ESR spectrometer as part of a novel hybrid technique where ESR is being combined with MS and HPLC.
- Flavour Stability in Beer
The lag time determination ESR spectroscopy supplies a measure of the endogeous antioxidative activity which in direct connection to the stability of flavour.
ABOUT CONSTRUCTION
- ESR SYSTEM
The instrument's micromolar sensitivity and resolution can only be exceeded in systems many times its price and size. The design features a compact electromagnet and power supply.
The instrument's rugged design, low power consumption, and ability to operate in the absence of water lines allow its use in transportable applications. Its automated features will be appreciated
by both novice and experienced users alike.
- MICROWAVE BRIDGE
A reliable solid-state Gunn oscillator, operating at approximately 9.6 GHz, is the heart of the microwave bridge used in the ESR spectrometer. It provides extremely stable frequency and power output.
A circulator provides good isolation and low signal loss, and the use of a reference arm allows for balanced detection, enhancing overall system sensitivity. The output frequency, phase, and bias are
automatically adjusted whenever the sample is changed.
- MICROWAVE CAVITY
The uses a rectangular TE102 cavity with a center frequency of approximately 9.6 GHz and an unloaded 0 of 5,000. Its variable iris aperture matches a wide range of sample holders and dewars, with a maximum
diameter of 9.5 mm. Critical coupling of the cavity is accomplished automatically by way of the motor driven iris. Magnetic field in the cavity may be modulated up to l0 Gauss peak-to-peak at l00 kHz.
- LOCK-IN AMPLIFIER
A Lock-in Amplifier operates at 100 kHz and performs the signal processing function for the ESR spectrometer. The initial amplification and impedance matching between the microwave detector and the lock-in
amplifier is provided by a fixed gain preamplifier in the microwave bridge. Gain, phase, and time constant are all controlled by means of the data acquisition software. Signal averaging can also be used to
improve the signal to noise ratio for very weak signals.
- FIELD CONTROLLER
The Field Controller sets and maintains the level of magnetic field applied to the sample. Field center point, scan width, and scan duration are all set from the external computer. A Hall-effect probe mounted
between the pole pieces maintains the field at the required level.
- ELECTROMAGNET
The electromagnet supplied with the CMS 8400 system features three-inch diameter pole caps which provide a field of up to 7,000 Gauss. The pole caps are shimmed to provide a homogenous field over the entire
sample area of the cavity. The reduced magnet gap of 15 mm results in homogeneity equal to a 4 inch or larger magnet.
- MAGNET POWER SUPPLY
The Magnet Power Supply is a well-regulated solid-state supply that can deliver up to 16 amperes. It is Hall regulated by the Field Controller and is temperature protected against cooling system failure.
- SOFTWARE
Data acquisition for the ESR spectrometer is based upon intuitive pull down menus. User selections are highlighted in the menu toolbox, and dialog boxes appear whenever keyboard entry is required. Careful
consideration was given to the design of the user interface in order to provide an environment which is easy to learn, yet powerful enough for an experienced user.
SPECIFICATIONS
Operating Frequency 9.1 - 9.6 GHz
Microwave Cavity Power 100 mW
Cavity TE102, 9.6 GHz, unloaded Q 5,000
Cavity Modulation 100 mG to 10 G, p-p, at 100 kHz
Magnetic Field Strength 100 to 7,000 Gauss
Magnetic Field Homogeneity +/- 50 mG over sample volume in active region, TE1 02
Magnetic Field Regulation +/- 1 0 ppm plus 1 0 mG for 15 minutes after 30 minute warm-up
Power 500 W, 110 or 220 VAC
Weight 50 kg (110 lbs)
Physical 26.2 x 48.3 x 45.7 cm (10.5" x 19" x 18")
Field Scanning Time Variable from 30 seconds to 60 minutes
Field Scanning Range Variable to 6,000 Gauss Scan Range Linearity +/-.5% of scan range of less than 1 kG width
Field Regulator Calibration Accuracy +/- 1 0 G on 3 - 4 kG range; other ranges +/- IO G plus. 1 % of field setting
AFC Lock Stability 1 ppm
Sensitivity 5 x I 0^10 spins/ H spins
Computer Interface RS232C
Water Consumption of Magnet .25 I/minute (needed only above 4,000 gauss)
Computer 386 or higher (486 needed for Windows 95)
Operating System DOS/Windows 95/98/NT/ME
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