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Supplier: Nikon Metrology
Description: XT H 225 for all-purpose X-ray and CT inspection The versatile XT H 225 system offers a powerful microfocus X-ray source, a large inspection volume, high image resolution and is ready for ultrafast CT reconstruction. They cover a wide range of applications, including the inspection of small
- X-ray Operating Voltage: 180 to 320 kilovolts
- Focal Spot Size: 1 to 20 µm
- System Type: Computed Tomographic System
- Form Factor: Monitoring System
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Supplier: Nikon Metrology
Description: blended with 25 years’ experience of X-ray Computed Tomography (CT) Absolute accuracy 9 + L/50 μm in accordance with the VDI/VDE 2630 Proprietary micro-focus source developed for metrology CT purposes High-precision mechatronics increase sample manipulation accuracy Straightforward
- X-ray Operating Voltage: 225 kilovolts
- Focal Spot Size: 3 µm
- System Type: Computed Tomographic System
- Form Factor: Monitoring System
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Supplier: Nikon Metrology
Description: Unique XT H 450 micro-focus X-ray and CT system for turbine blade and casting inspection The XT H 450 system offers the necessary source power to penetrate through high density parts and generate a scatter-free CT volume with micron accuracy. The system is available with a flat
- X-ray Operating Voltage: 450 kilovolts
- Focal Spot Size: 80 µm
- System Type: Computed Tomographic System
- Form Factor: Monitoring System
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Supplier: Nikon Metrology
Description: faster CT data acquisition or achieve higher CT data accuracy in the same time span Key benefits Proprietary 225/320kV microfocus X-ray source Run highly accurate inspection on dense industrial objects Easy system operation and low cost-of-ownership Stunning images providing great insight
- X-ray Operating Voltage: 180 to 320 kilovolts
- Focal Spot Size: 1 to 20 µm
- System Type: Computed Tomographic System
- Form Factor: Monitoring System
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Supplier: Accuris
Description: Standard Guide for Computed Tomography (CT) System Selection
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Supplier: ASTM International
Description: CT systems and scan services. Computed tomography systems are complex instruments, consisting of many components that must correctly interact in order to yield images that repeatedly reproduce satisfactory examination results. Computed tomography
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Supplier: Accuris
Description: Standard Test Method for Measurement of Computed Tomography (CT) System Performance
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Supplier: North Star Imaging, Inc.
Description: The ImagiX is North Star Imaging’s most compact system. The generous scanning envelope can handle products up to 5 in (12 cm) in size making it a great choice for laboratories, small electronics and R&D applications. SYSTEM CAPABILITIES Advanced 2D X-ray inspection 2D CT Slice
- X-ray Operating Voltage: 10 to 150 kilovolts
- Focal Spot Size: 5 µm
- Features: Aircraft / Military Inspection, Coating Flaw / Holiday, Digital Imaging / Tomography System, Flaw Detection, Pore / Void, Radiographic / X-ray, Subsurface Crack Detection, Tube / Pipeline Defects, Web Inspection, Weld / Joint Inspection
- System Type: Computed Tomographic System, X-ray Generator / Source
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Supplier: Accuris
Description: STANDARD GUIDE FOR COMPUTED TOMOGRAPHY (CT) SYSTEM SELECTION - INCLUDES STANDARD + REDLINE (PDF)
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Supplier: ASTM International
Description: 1.1 This test method provides instruction for determining the spatial resolution and contrast sensitivity in X-ray and γ-ray computed tomography (CT) volumes. The determination is based on examination of the CT volume of a uniform cylinder of material. The spatial resolution
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Supplier: Accuris
Description: STANDARD TEST METHOD FOR MEASUREMENT OF COMPUTED TOMOGRAPHY (CT) SYSTEM PERFORMANCE - INCLUDES STANDARD + REDLINE (PDF)
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Supplier: SPIE
Description: radiation therapy planning. Spectral Computed Tomography provides a concise, practical coverage of this important medical tool. The first chapter considers the main clinical motivations for spectral CT applications. In Chapter 2, the measurement properties of spectral CT systems
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Supplier: North Star Imaging, Inc.
Description: Easiest, Fastest and Most Complete 3D X-ray Industrial Computed Tomography (CT) Software on the Market 3D X-ray (CT) has never been easier with Automatic Parallelization for systems with multiple CPU’s and GPU’s and Intuitive interface and OpenGL based 3D volume rendering.
- Applications: Condition Monitoring Software, Fault Isolation, Non-Destructive Test, Printed Circuit Board Testing
- Features: Data Acquisition Capability, Other, Program Custom Tests, Third Party Software Integration
- Computer Platform: PC
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Description: "the system") based on X-ray computed tomography (CT). Here, the system is limited to those that feature tomographic scanning, not standard X-ray projection. This document is applicable to liquids, aerosols and gelatinous objects in transparent or visually opaque
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Supplier: CSA Group
Description: IEC 62945:2018 provides test methods for the evaluation of image quality of computed tomography (CT) security-screening systems. The quality of data for automated analysis is the primary concern. Security screening systems are generally used to scan parcels, including
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Supplier: SPIE
Description: X-ray computed tomography (CT) has experienced an explosion of technological development for a quarter century. Six years after the second edition of Computed Tomography, this third edition captures the most recent advances in technology and clinical applications. New to
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Description: IEC 62945:2018 provides test methods for the evaluation of image quality of computed tomography (CT) security-screening systems. The quality of data for automated analysis is the primary concern. Security screening systems are generally used to scan parcels, including
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Supplier: ASTM International
Description: equipment: (1) the need for a tutorial guide addressing the general principles of X-ray CT as they apply to industrial imaging; and (2) the need for a consistent set of CT performance parameter definitions, including how these performance parameters relate to CT system specifications. 1.3
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Supplier: SPIE
Description: X-ray computed tomography (CT) continues to experience rapid growth, both in basic technology and new clinical applications. Seven years after its first edition, Computed Tomography: Principles, Design, Artifacts, and Recent Advancements, Second Edition, provides an
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Supplier: SPIE - Education
Description: This course will present a description of the fundamental physics and mathematical principles of CT. Key system performance parameters and design tradeoffs are reviewed. Causes and corrections of various image artifacts are extensively discussed. Potential impact of image artifacts and
- Technology / Subject Expertise: Bioengineering / Biomedical, Electronics, Photonics / Optics, Signal Integrity / EMC
- Type: Continuing Education Credit (CEU), Course
- Delivery: Internet / Online, On-site / In Plant
- Industry: Life Sciences
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Supplier: ASTM International
Description: 1.1 Computed tomography (CT) is a radiographic method that provides an ideal examination technique whenever the primary goal is to locate and size planar and volumetric detail in three dimensions. Because of the relatively good penetrability of X rays, as well as the sensitivity of
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Supplier: CSA Group
Description: performance parameters relate to CT system specifications. ISO 15708-4:2017 deals with computed axial tomography and excludes other types of tomography such as translational tomography and tomosynthesis.
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Supplier: CSA Group
Description: applications) and gives a consistent set of CT performance parameter definitions, including how those performance parameters relate to CT system specifications. ISO 15708-3:2017 deals with computed axial tomography and excludes other types of tomography such as
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Supplier: CSA Group
Description: definitions, including how those performance parameters relate to CT system specifications. ISO 15708-2:2017 deals with computed axial tomography and excludes other types of tomography such as translational tomography and tomosynthesis.
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Description: ISO 15708-1 provides a tutorial introduction to the theory and use of computed tomography. It begins with an overview intended for the interested reader possessing a general technical background. Subsequent, more technical clauses describe the physical and mathematical basis of CT
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Supplier: Carl Zeiss Industrial Metrology, LLC
Description: system maintenance costs and maximum availability were decisive during the development of METROTOM 800. This was achieved through the use of maintenance-free micro-focus X-ray tube technology. Extremely small focal points enable razor-sharp projection images on the detector – the foundation
- X-ray Operating Voltage: 130 kilovolts
- Focal Spot Size: 5 µm
- System Type: Computed Tomographic System
- Features: Digital Imaging / Tomography System, Flaw Detection, Inclusions, Pore / Void, Radiographic / X-ray
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Description: Test methods and test articles for the evaluation of the image quality of CT security screeningsystems are provided. The quality of data for automated analysis is the primary concern. This standard does not address the systems ability to use its image data to automatically detect explosives
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Supplier: Carl Zeiss Industrial Metrology, LLC
Description: component in which different cavity sizes can be used as a criterion for component evaluation. Computer tomography evaluations are used for cast aluminum parts and other NF materials as well as for plastic components in the automobile, medical technology, and mechanical engineering
- System Type: Computed Tomographic System
- Features: Digital Imaging / Tomography System, Flaw Detection, Inclusions, Pore / Void, Radiographic / X-ray
- Other Features: Programmable / Digital Control Unit
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Supplier: ASME
Description: This standard provides definitions and a test procedure for the performance evaluation of X-ray CT systems used for 3D measurements. Materials covered include plastic polymers, aluminum alloys, and steel alloys. This standard applies to a variety of CT systems and is designed to
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Supplier: ASME Standards and Certification
Description: This standard provides definitions and a test procedure for the performance evaluation of X-ray CT systems used for 3D measurements. Materials covered include plastic polymers, aluminum alloys, and steel alloys. This standard applies to a variety of CT systems and is designed to
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Description: IEC TR 61948-2:2019 is valid for single photon scintillation cameras with parallel hole collimators used in planar scintigraphy and tomography. It is also valid for the SPECT portion of SPECT/CT systems with parallel hole collimators, including the co-registration between the SPECT and
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Supplier: VJ Technologies, Inc.
Description: The VJ Electronix Vertex Series-CT is a dedicated Computed Tomography X-Ray system designed to provide the high accuracy and reliability required to perform 3D analysis of the inner structure of any specimen while still capable of the highest quality 2D inspection.
- System Type: Computed Tomographic System
- Features: Digital Imaging / Tomography System, Flaw Detection, Other, Radiographic / X-ray
- Form Factor: Monitoring System
- Other Features: Programmable / Digital Control Unit
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Supplier: AENOR
Description: Geometrical product specifications (GPS) - Acceptance and reverification tests for coordinate measuring systems (CMS) - Part 11: CMSs using the principle of X-ray computed tomography (CT) (ISO/DIS 10360-11:2021)
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Supplier: North Star Imaging, Inc.
Description: North Star Imaging is one of the leading manufacturers of 2D Digital Radiography and 3D Computed Tomography systems in the World. Additionally, each worldwide location houses state of the art equipment for demonstration and need based X-ray/CT Inspection Services. No matter your
- Industry: Automotive, Aviation / Aerospace
- Capability / Technology: Computed Tomography / Digital Imaging, Radiographic / X-ray
- Features: East Asia / Pacific Only, Europe Only, Midwest US Only, North America, Northeast US Only, Other, Southwest US Only, United States Only
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Uses and Advances of Computed Tomography in the 3D Scanning of Industrial Parts (.pdf)
As seen in the December issue of 3D Scanning Technologies, North Star Imaging talks about their recent developments of Computed Tomography technology. This editorial also incorporates a case study involving CAD model to CT model comparisons, 3D measurements and much more.
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Computed Tomography
Quality assurance in industrial production has long wanted a tool that can inspect and measure the interior of workpieces non-destructively. And, it should deal with geometry and volume, dimensions and tolerances in a single scan.
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Replacing Digital Radiography Imaging with High Speed Computed Tomography
Digital Radiography has many benefits over film radiography, and has been used to substantially reduce cycle times while often producing superior image quality.
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Helical 3D Tomography with Air Bearing Systems and Piezo Motors
3D Computerized Tomography (CT) and micro computed-tomography (micro-CT) systems are used to study the internal structures of a wide variety of material samples.
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Small Animal MRI
Animal imaging refers to the use of medical imaging technologies, such as X-ray, computed tomography (CT), magnetic resonance imaging (MRI), ultrasound, and positron emission tomography (PET), to diagnose and monitor diseases and conditions in animals.
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Multi-Channel Signal Acquisition and Generation for Magnetic Particle Imaging with Red Pitaya
Tomographic imaging modalities, such as magnetic resonance imaging (MRI) or computed tomography (CT), have become a central part of the clinical routine and are vital for the diagnosis of diseases and health problems.
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Medical Imaging Systems Technology: Modalities, Volume 2
Medical Imaging Systems Technology: Modalities, Volume 2. Tackling the latest cutting-edge techniques and technologies in an in-depth but eminently clear and readable approach, this volume addresses X-ray computed tomography, single-shot MRI techniques and applications, Electrical impedance
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Minimum Incremental Motion and Holding Stability in Beamline Positioning
Many beamline applications such as X-ray microscopy and Computed Tomography (CT) require positioning of samples, detectors, and optics in order to perform measurements. Microscopy applications often require imaging of the structure of matter at the sub-micrometer and even nanometer level. Good
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Patty's Industrial Hygiene 4-Volume Set 6th Edition
DESIGNING COMPUTED TOMOGRAPHY SYSTEMS .
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Scientific Papers
DESIGN AND EVALUATION OF A NOVEL, HIGH-RESOLUTION SMALL-ANIMAL SINGLE PHOTON EMISSION COMPUTED TOMOGRAPHY SYSTEM .
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States > Hawaii > State > Regulations > Title 11 - Department of Health > Indoor and Radiological Health Branch > [HAC 11-45] 045 - Radiation Control
§11-45-119 Radiographic systems other than fluoroscopic, dental intraoral, or computed tomography systems .
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World Congress on Medical Physics and Biomedical Engineering, June 7-12, 2015, Toronto, Canada
Compton scattering spectroscopy for determining filtration of a clinical computed tomography system , in proceedings of "X Latin American Symposium on Nuclear Physics and Applications" PoS(X LASNPA)033 6.
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Radiation Exposure and Image Quality in X-Ray Diagnostic Radiology
Fig. 5.3 Dose profile and slice width in the computed tomography system axis (Example s ¼ 10 mm .
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Springer Handbook of Medical Technology
Computed tomography systems consist of a front-end, i.e., the scanner unit, and a back-end, i.e., the con- trol console and viewing station.
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World Congress on Medical Physics and Biomedical Engineering, September 7 - 12, 2009, Munich, Germany
2006) Characteris- tics and applications of a flat panel computed tomography system .
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World Congress on Medical Physics and Biomedical Engineering 2006
Nano X-ray Computed Tomography System ...................................................................................................................1417 .
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