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Supplier: Hamamatsu Photonics
Description: Sealed type microfocus x-ray source using the transmission target. Tube voltage : 40 kV to 110 kV, Maximum output : 16 W, Minimum resolution : 2 um, Short FOD : 1 mm, X-ray beam angle : 120 degree, Communication method : RS-232C X-ray source for non-destructive
- Focal Spot Size: 2 µm
- Source Type: X-ray Generator
- Target Angle: 120 degrees
- Voltage: 40 to 110 kilovolts
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Supplier: Hamamatsu Photonics
Description: Sealed type microfocus x-ray source using the transmission target. Tube voltage : 90 kV to 130 kV, Maximum output : 39 W, Minimum focal spot size : 11 um, Short FOD : 0.25 mm, X-ray beam angle : 166 degree, Communication method : RS-232C X-ray source for
- Focal Spot Size: 11 µm
- Source Type: X-ray Generator
- Target Angle: 166 degrees
- Voltage: 90 to 130 kilovolts
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Supplier: Hamamatsu Photonics
Description: Open type microfocus x-ray source using the reflection target. High voltage power supply is integrated. High power operation at 230 kV is available. Tube voltage : 20 kV to 230 kV, Maximum output : 200 W, Minimum resolution : 4 um, Short FOD : 5 mm, X-ray beam angle : 40
- Focal Spot Size: 4 µm
- Source Type: X-ray Generator
- Target Angle: 40 degrees
- Voltage: 20 to 230 kilovolts
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Supplier: Hamamatsu Photonics
Description: Open type microfocus x-ray source using the reflection target. High voltage power supply is integrated. High power operation at 300 kV is available. Tube voltage : 20 kV to 300 kV, Maximum output : 200 W, Minimum resolution : 4 um, Short FOD : 5 mm, X-ray beam angle : 40
- Focal Spot Size: 4 µm
- Source Type: X-ray Generator
- Target Angle: 40 to 60 degrees
- Voltage: 20 to 300 kilovolts
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Supplier: Fischer Technology, Inc.
Description: the measurement head, readings can be taken at various points on the product to be measured. The instrument's modular design enables targeted selection of the optimal X-ray source and the ideal detector to meet your specific requirements. Features: Precise measurements during
- Computer Interface: Yes
- Cooled Detector: Yes
- Detector Window: Be Window
- Excitation Source: X-Ray Tubes
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Description: Thermo Scientific* MicroFocus X-Ray Tube 125kV Side Window is a constant potential, continuous duty X-ray tube.Short target to window spacing facilitates the generation of high resolution direct x-ray magnified images from any size object.
- Source Type: X-ray Tube
- Voltage: 125 kilovolts
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Description: Thermo Scientific* MicroFocus X-ray tube 125kV side window is a constant potential, continuous duty X-ray tube.Short target to window spacing facilitates the generation of high resolution direct X-ray magnified images from any size object.
- Focal Spot Size: 10 to 45 µm
- Source Type: X-ray Tube
- Tube Current: 500 microamps
- Voltage: 20 to 125 kilovolts
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Supplier: Rigaku Corporation
Description: W X-ray generator with easily replaceable filaments and target materials to optimize X-ray flux for a wide range of elements. A range of incident crystal types allows tuning of the incident X-ray beam energy such that elements form Ca to U can be measured. Both
- Application Software Included: Yes
- Excitation Source: X-Ray Tubes
- Optical System: Crystal
- Sample Type: Solids, Liquids
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Description: The unit houses a side-window sealed tube and a high voltage power supply. An external controller is available for driving the unit and setting up and monitoring the target voltage and beam current. Key Features Highly stable flux output of <0.2% standard deviation
- Focal Spot Size: 250 to 450 µm
- Form Factor: Portable / Hand Held / Mobile
- Instrument / System Type: X-ray Generator / Source
- X-ray Operating Voltage: 5 to 60 kilovolts
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Description: Thermo Scientific* PXS5-722SA, 70kV MicroFocus X-Ray Sources are constant potential, continuous duty microfocus portable X-ray sources for use in high resolution radiographic and real-time imaging applications.Houses a side-window sealed tube, a high voltage power supply and the
- Source Type: X-ray tube and Power Supply
- Target Angle: 24 degrees
- Tube Current: 2.40E6 microamps
- Voltage: 20 to 70 kilovolts
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Supplier: Rigaku Corporation
Description: ) optical kernel that dramatically increases signal-to-noise. By using secondary target excitation, instead of convention direct excitation, sensitivity is further improved. The resulting dramatic reduction in background noise, and simultaneous increase in element peaks, result in a
- Computer Interface: Yes
- Cooled Detector: Yes
- Detector Type: Other
- Excitation Source: X-Ray Tubes
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Supplier: Xenemetrix Ltd.
Description: EX-6600 SDD Secondary Target EDXRF Xenemetrix’s EX-6600 SDD Energy Dispersive X-ray Fluorescence (EDXRF) spectrometer offers the ultimate in sensitivity and selectivity. The Silicon Drift Detector (SDD) simultaneously delivers lower electronic noise and higher count
- Analyzer Type: Multichannel
- Application Software Included: Yes
- Computer Interface: Yes
- Cooled Detector: Yes
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Supplier: Plansee SE
Description: minimize the time to market required for the development of new coating materials. The best proof of our expertise is us! We coat many of our products such as semiconductor base plates and x-ray targets in-house using the PVD, CVD, APS and VPS coating processes. Planar molybdenum
- Type: Sputtering Target
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Supplier: Rigaku Corporation
Description: Rigaku's unique ZSX 400 sequential wavelength dispersive X-ray fluorescence (WDXRF) spectrometer was specifically designed to handle very large and/or heavy samples. Accepting samples up to 400 mm diameter, 50 mm thick and 30 kg weight, this system is ideal for analyzing sputtering
- Computer Interface: Yes
- Excitation Source: X-Ray Tubes
- Measurement Mode: Sequential
- Module Type: Wavelength Dispersive
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Supplier: Nikon Metrology
Description: obtain an even smaller spot size and higher magnification capability. Regardless of the target of choice, the XT H 225 ST system uses an open-tube X-ray source that guarantees a lower cost-of-ownership. Stunning images from internal structures A small spot size and a
- Focal Spot Size: 1 to 10 µm
- Form Factor: Other
- Instrument / System Type: Computed Tomographic System
- Programmable / Digital Control Unit: Yes
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Supplier: Plansee SE
Description: For the high-resolution devices used in general X-ray applications, mammography, angiography and computed tomography, we develop and manufacture extremely robust X-ray anodes and components for X-ray tubes. We supply anodes made from molybdenum alloys such as TZM and MHC
- Applications / Industry: Specialty / Other
- Form / Shape: Application Specific / Custom
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Description: ISO 16526-2:2011 specifies a constancy check of a X-ray system where mainly the X-ray voltage is checked and also the tube current and the constitution of the target which can be changing due to ageing of the tube. The thick filter method is based on a measurement
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Description: IEC 60522-1:2020 applies to X-RAY TUBE ASSEMBLIES and to FILTERING MATERIAL, in medical diagnostic applications up to a HIGH VOLTAGE of 150 kV. For HIGH VOLTAGES greater than 50 kV, this document applies to X-RAY TUBE ASSEMBLIES with tungsten or tungsten-alloy
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Supplier: CSA Group
Description: ISO 16526-2:2011 specifies a constancy check of a X-ray system where mainly the X-ray voltage is checked and also the tube current and the constitution of the target which can be changing due to ageing of the tube. The thick filter method is based on a measurement
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Supplier: Newport MKS
Description: and laser focusing applications. Light rays leaving the objective’s rear aperture are collimated, so that for imaging applications, a secondary lens (usually called a tube lens) is needed in order to focus the collected light from the specimen onto the sensor. The labeled magnification
- Lens Type: Other
- Microoptic: Yes
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Supplier: Newport MKS
Description: imaging and laser focusing applications. Light rays leaving the objective’s rear aperture are collimated, so that for imaging applications, a secondary lens (usually called a tube lens) is needed in order to focus the collected light from the specimen onto the sensor. The labeled
- Lens Type: Other
- Microoptic: Yes
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Supplier: Newport MKS
Description: imaging and laser focusing applications. Light rays leaving the objective’s rear aperture are collimated, so that for imaging applications, a secondary lens (usually called a tube lens) is needed in order to focus the collected light from the specimen onto the sensor. The labeled
- Lens Type: Other
- Microoptic: Yes
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Optical Lenses - Microscope Objective Lens, Long Working Distance, 2x, 0.05 NA, 100 mm FL -- MLWD-2XSupplier: Newport MKS
Description: imaging and laser focusing applications. Light rays leaving the objective’s rear aperture are collimated, so that for imaging applications, a secondary lens (usually called a tube lens) is needed in order to focus the collected light from the specimen onto the sensor. The labeled
- Lens Type: Other
- Microoptic: Yes
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THE CLIENT A midwestern metal tube manufacturer specializes in the production of large, metal industrial tubing ranging from 8'' - 20'' in diameter. Within the plant's production operations, the manufacturer's main focus is on the drying of the metal tubing, as (read more)
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in any blow-off application where the target area remains in a fixed location, or where the nozzle must reach into a tight space. The nozzles are mounted on ¼” diameter semi-rigid copper tubing that can be bent with a tube bending tool one time only. They can be attached to the (read more)
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Improvements in Low Power, End window, Transmission-Target X-ray Tubes
End-window transmission-target X-ray tubes are designed for very close anode-to-sample. coupling for compact portable XRF instruments. Several recent improvements have been. achieved to make these tubes considerably brighter, with better output stability and even smaller size and lower power
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Characterization Techniques for Miniature Low Power X-Ray Tubes
as the spectral characterization of the tube. The beamspot. dimensions and location can be measured at several high-voltage settings to ensure. stability. This setup allows monitoring spectral contamination lines, total output flux, and. net target-peak intensity at the anode line. To ensure tube X-ray
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Use of X-ray fluorescence for chemical analysis
Toussaint (1971) examined the excitation effici- encies of different x ray tube targets for some low energy x ray spectra and found a gold target to be most efficient for the K, lines of silicon, aluminium and magnesium.
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http://www-pub.iaea.org/MTCD/publications/PDF/Pub1381_web.pdf
13) Repeat the procedure for all X ray tube targets and for magnification mode.
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Estimation of Service Life of X-Ray Tube Anodes
Thus, the X ray tube target structure (strong target on soft substrate) achieved in the process of operation of the X ray tube is optimal for reducing the accumulation of irreversible plastic deformations due to material fatigue.
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http://www-pub.iaea.org/MTCD/publications/PDF/Pub1498_web.pdf
To overcome this difficulty, one participating SSDL (Finland) established other mammography qualities based on a tungsten X ray tube target (Cuba is also planning to use a tungsten target based system).
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L absorption spectra of 57La to 63Eu in their oxides
In the case of the L absorption spectra of La, Ce, Pr and Nd, no suitable reference line was found on the higher wavelength side of the LIIlabsorption edge, when Cu and W target x ray tubes were employed.
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Multiple Bragg reflection monochromators for synchrotron x radiation
For comparative purposes a copper target x ray tube loaded at 40 keV and 20 mA was used to illuminate the 2-2 spectro- meter.
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On the existence of `white line' for Ta, W and Re
A sealed type tungsten target x ray tube was operated at 20KV and 12mA and the exposures were varied from 10 to 20 hours on Ilford Ilfex x ray films.
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An X-ray diffraction investigation of molten copper-indium alloys by the partial interference function method
Fluorescent radiation was excited from the alloys by the short wavelength continuum from the copper target x ray tube .
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Tips and Tricks for the Orthopäden and accident surgeons
So, the central beam of the X - ray tube becomes the target beam.
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Full-field images of mammographic phantoms obtained with a single photon counting system
Figure 8 (a) shows the radiograph of part of the phantom, obtained at 28 kVp with a Mo target X ray tube on a standard mammographic film-screen system.
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