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GE ISOVOLT Titan E Brochure
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1. GE Measurement amp Control Solutions X ray Tubehousing ISOVOLT 160 MC2 E Applications e Film exposures of circumferential welds of nozzles pipes and vessels e Panoramic type exposure technique Features Panoramic radiating tube unipolar grounded anode water cooled Metal ceramic tube with cone anode Compatible with X ray equipment of the ISOVOLT series Produced under ISO 9001 certified quality management system Options e Quick lock cable flange e Collimator attachments GE imagination at work Technical Data Maximum tube voltage 160 kv Maximum anode dissipation 1000 W Tube current at max tube voltage 6 0 mA Focal spot size EN 12 543 0 4 mm x 4 0 mm at radiated angle of 0 Former focal spot designation 0 3 x 3 0 Emergent beam angle 40 Inherent filtration 0 5 mm Ti 2mm Al 2mm H O Circumferential density 5 averaged over 6 films attached on the circumference of a test tube tube FFD 80 mm exposure with 80 kV 1 mA 6 s on Dental film prefilter 1 5 mm Cu 4 mm Al High voltage connection Plug socket for rubber cone plug R24 with optional quick lock cable flange Cooling water flow rate min 4 l min Cooling water temperature max 40 C Cooling water pressure max 6 bar Weight with optional cable quick lock 8 kg 17 6 Ibs Dimensions see drawing Dose Rate within the Central Beam The generation of rad
2. iation in an X ray tube solely depends on the operation values not on the make The dose rate relevant in practice and suitable for cal culations of radiation protection values is defined by national standards 18 thus the dose rate of the tubehousing ISOVOLT 160 MC2 measured at a distance of 1 m from the focal spot amounts to 1 22 Sv h at maximum tube voltage and maximum anode dissipation 16 14 12 38 1 5 10 mA This value must not be used to assess biological effects The dose rate of the leakage radiation is lt 2 5 mSv h 250 mrem h 0 20 40 60 80 100 120 140 160 180 40 x 360 CT I J uD B P t oS 8 Ss 49 2 282 11 1 500 19 7 Note centerline orthogonal to tube axis does not represent maximum intensity www ge mcs com GEIT 30031EN 03 11 2011 General Electric Company All Rights Reserved Specifications are subject to change without notice GE is a registered trademark of General Electric Company Other company or product names mentioned in this document may be trademarks or registered trademarks of their respective companies which are not affiliated with GE Contact GE Sensing amp Inspection Technologies GmbH Bogenstrasse 41 22926 Ahrensburg Germany T 49 0 4102 807 0
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