Seibersdorf Labor GmbH
A subsidiary of the AIT Austrian Institute of Technology GmbH, founded as a spin-off in 2009. The company provides high-quality laboratory and analysis work, application-oriented research and development as well as consulting and training.
- +43(0) 50550 2882
- +43(0) 50550 2881
- rf@seibersdorf-laboratories.at
- Radiofrequency Engineering
Seibersdorf, 2444
Austria
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Applications
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product
Absorber Lined Shielding Enclosure Measurements
ALSE
Due to on-going work in the standardization committee CISPR D (responsible for CISPR 25) the latest issue CISPR 25 Ed. 4.0 has not been cited to-date. In the meantime we are able to offer two different validation procedures:
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Measurement
Field Uniformity
The purpose of our measurement is to characterise the properties (uniform field area, UFA) of the anechoic room according to IEC 61000-4-3 Ed. 3.1 b or EN 61000 4 3.
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Calibration
Field Probes
We calibrate following types of field probes:Electric field probesMagnetic field probesFlux density metersRadiation monitorsNear field probes
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Measurement
Site VSWR
The Site VSWR measurement is done according to CISPR 16-1-4 in the frequency range from 1 GHz to 18 GHz using broadband omni directional antennas in horizontal and vertical polarisation. The volumetric test method is applied (test volume needs to be specified), test distance 3 m - any other distance upon request. The ground plane has to be covered with absorbing material.
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Validation
Freespace VSWR
The Free Space VSWR validation is done according to J.S. Hollis, T.J. Lyon, L. Clayton: "Microwave Antenna Measurement", Scientific-Atlanta Inc., Atlanta, Georgia, USA, July 1970.
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Normalised Site Attenuation
NSA
Normalised Site Attenuation (NSA) is measured in accordance with CISPR 16-1-4 and ANSI C63.4 in semi and fully anechoic environment.
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Calibration
RF Test Equipment
We calibrate following types of RF test equipment:EMF test systems (frequency selective)EMF test systems (broadband)Field strength transfer standards (e.g. RefRad)Line Impedance Stabilisation Network (LISN)Cable, attenuator, couplerAntennaField Probe
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Measurement
Ambient Noise
The Ambient Noise (AN) measurement is done in accordance with CISPR 22 and EN 50022
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Precision Conical Dipole
PCD 8250
Exposure evaluation next to mobile communication facilities e.g. GSM and UMTS base stations. Accurate RF radiation safety measurements e.g. nearby broadcast stations or in buildings. All kinds of field strength measurements where high precision, a wide frequency range and small antenna dimensions are required. Measurements according to our Field Nose method. Frequency range: 80 MHz 3 GHz
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Comb Generator
RefRad X
A comb generator is built inside a conical antenna element. Therefore no cable between antenna and generator is required. Thus leads to repeatable measurement results and reliable simulation of radiation performance.Optionally a fibre link for synchronisation with the receiver is used.Frequency Range 10 kHz - 3 GHzFrequency Spacing 10 kHz, 1 MHz, 5 MHz
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Effectiveness
Shielding
The Sielding Effectiveness (SE) is measured in accordance withMil-Std. 285, NSA 65-6 and EN 50147 1.
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Validation
Table Influence (TI)
The Table Influence (TI) is measured according to CISPR 16-1-4 in the frequency range 200 MHz 18 GHz.
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Calibration
EMC Test Antennas
There are some changes in the calibration standard ANSI C63.4 concerning the calibration procedures of hybrid antennas, also the newly issued standard - CISPR 16-1-6 dealing with EMC antenna calibration is covered by our services. You are very welcome to consult Seibersdorf Laboratories calibration experts for the recommended calibration procedures of the most common radiated emission test standards.
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Precision Conical Dipole
PCD 3100
Site validation measurements according to prEN 50147-3 in fully anechoic rooms. Accurate RF radiation safety measurements (e.g. broadcast stations). All purposes of broadband precision field-strength measurements. Frequency range: 30 MHz - 1 GHz
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Consulting & Training
For the performance of EMC testing laboratories the reliability of test results is a major concern. Therefore the knowledge of uncertainty calculations is an important issue.