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Mini CT scanner Consulting Hotline: 020-84050813 / 16
描述 DESCRIPTION / Description
KA Imaging's benchtop miniature CT scanner is the first X-ray analyzer on the market to use new high spatial resolution selenium detector technology developed exclusively by KA Imaging. The high detection efficiency of the selenium detector enables very high-speed sampling at low X-ray radiation doses. Due to its high efficiency, unprecedented volume scanning speeds can be obtained at full resolution. The inCiTe micro-CT scanner uses a patent-based propagation phase contrast method to enhance the fine structural details of usually low X-ray absorption. Phase contrast is more suitable for imaging low density materials. In addition, the InCiTe miniature CT scanner is equipped with a high-quality microfocus X-ray source for unparalleled resolution. Integrated software control and simplified user interface enable high automation and reduce operator-dependent interaction. The size and weight of the inCiTe Mini CT Scanner are optimized for the smallest footprint, easy to transport, and easily integrated into a laboratory benchtop workstation.
The inCiTe miniature CT scanner is suitable for biological materials, polymer composites and other low density materials. Whether it is preclinical imaging, non-destructive testing (NDT), specimen radiography or additive manufacturing materials, the research area can benefit from this new imaging technology.
独一无二 NUMBER ONES / unique 规格 SPECIFICATION / specification
Direct conversion X-ray detector is 100 times higher than scintillator detector
Spatial resolution down to 1.4 µm
Fast single scan, 3.2 mm field of view
High-speed processor and image display hardware
Gratingless real-time phase-contrast method
Imaging
High-resolution traditional micro-CT imaging
detector
Pixel Size MTF at 60 kV DQE at 60 kV
1 MP (1K x 1K pixels)
16 MP (4K x 4K pixels)
8 um
8 um
80% at 10 cycles / mm
50% at 45 cycles / mm
30% at 64 cycles / mm
40% at 10 cycles / mm
22% at 45 cycles / mm
10% at 64 cycles / mm
light source
5 µm focal spot size at 4W 40-100 kV, 20 W
2 µm focal spot size at 4W 40-110 kV, 16 W
3D objects
Maximum object size
(diameter and height)
Offset scan 90 mm, single scan 32 mm (16 MP)
Offset scan 21 mm, single scan 7.5 mm (1 MP)
Software CPU / GPU accelerated 3D reconstruction with ORS DragonFly
(optional)
General specifications
Radiation Safety <1 µSv / h at 100 mm distance from any accessi- ble surface
Dimensions, weight 1550mm (W) x 580mmm (H) x 500mm (D), 277 kg
Installation Requirements 100-240V AC, 10-30 ° C, <85% humidity
技术优势 TECH ADVANTAGE / Technical Advantage 成像效果 IMAGING EFFECT
Materials with low X-ray absorption or small absorption gradients can cause low contrast images when using conventional X-ray imaging techniques. However, after phase contrast X-ray imaging, the sensitivity can be greatly improved to help visualize these material bodies. Our phase contrast method is based on the free-space propagation of X-ray beams, which converts X-ray phase changes at the object plane into X-ray intensity changes in the image plane. Propagation-based phase contrast X-ray imaging can improve the detectability of materials with low X-ray absorption by orders of magnitude.
Agricultural imaging
Sweet pepper seeds
WITH (L), WITHOUT (R) phase-contrast
garlic
-
Bay leaf
-
Tissues and organs Materials Analysis
Phase contrast X-ray imaging of mouse knee cartilage is different from phase contrast (L) Cartilage phase contrast resolution (R) Composite: Front view of bulletproof textile sample (L) and phase contrast imaging showing 10 μm threads (R)
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Guangzhou Shenke Optoelectronics Technology Co., Ltd. viralyoda.com
Phone: 020-84050816 / 13 Fax: 020-84050812

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