Customization: | Available |
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Classification: | Imaging Diagnostic Equipment |
Type: | Ultrasound Scanner |
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The notebook(Diagnostic Ultrasound System) type CMS600P2 is a full digital B-Ultrasound diagnostic system.Notebook Ultrsound adopts embedded operating system, which greatly optimizes the product performance. The ultrasound system is taken more conveniently for its high effective data processing ability, pop-up menu and keyboard design.Hospital/Medical Ultrasound System includes rich measuring software packages that satisfy the clinic diagnostic need fully.
-Update software though USBDisplay mode: | B, 2B, 4B, B/M, M |
Image gray scale: | 256 |
Monitor: | 10 inch TFT LCD |
Display resolution: | 1024*600 |
Lateral resolution | 2 mm (near field) 4 mm (far field) |
Axial resolution | 2 mm (near field) 2 mm (far field) |
Dead zone | ≤3 mm |
Display depth | ≤240 mm |
Horizontal geometric position precision | ≤5% |
Vertical l geometric position precision | ≤5% |
Zoom | 0.9, 1.0, 1.1, 1.2, 1.3, 1.5, 2.0 |
Cine loop | 600 frames |
Image storage | 2048 frames |
Body mark | 43 |
Focus | The number and position can be adjustable. |
Assistant tool | Puncture guide and histogram Obstetrics, gynecology, cardiology, small parts, urology etc. can generate reports automatically. |
Measurement | Distance, circumference, area, volume,angle, ratio, slope etc. |
language | Chinese, English |
Comment | Date, time, name, hospital,number, frame rate, depth, gain, dynamic range, frame correlation, frequency etc. |
mage processing | Controllable frame correlation, gamma correction, histogram |
Image conversion | Up and down, left and right, black and white |
Interface | USB,Video,VGA |
Standard Configuration | 3.5 MHz convex probe, 2.0 MHz~5.0 MHz |
Optional Configuration | 3.5 MHz Micro-convex probe 6.5 MHz endo-vaginal probe, 5.0 MHz~8.5 MHz 7.5 MHz linear probe, 5.0 MHz~10.0 MHz |
1.The device which adopts linux embedded operating system, has well compatibility, transplantable character, and flexible expansibility.
2.It adopts advanced full digital beam-forming, real time dynamic aperture, real time dynamic receiving apodization, real time dynamic receive focusing, frame correlation, modern image processing technology etc., which improves image quality.