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Portable, with trolley ultrasound system FDC6100V
for multipurpose ultrasound imagingcolor dopplerelastography

portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
portable, with trolley ultrasound system
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Characteristics

Ergonomics
portable, with trolley
Application
for multipurpose ultrasound imaging
Imaging modes
color doppler, elastography
Probe type
convex-array, linear-array, microconvex-array, phased-array
Screen size
19-inch

Description

Vet Color Doppler Ultrasound Diagnostic System For clinical diagnosis of horses, cattle, sheep, pigs, cats, dogs and other animals 1. World-advanced ultrasound platform and architecture An 8-core DSP processor and a front-end ultrasound chip with the latest generation of "digital demodulator" is adopted, providing powerful computing capability, high integration, low power consumption as well as seamless upgrade which supports elastography. 2. Sparse transmit & multi-beam parallel processing technology Plane-wave transmitting as well as 16-beam parallel receiving and processing improve the frame rate of image and blood sensitivity in B + C and B + C + D modes, achieving triplex display. 3. Pulse inversion harmonic imaging technology Superior to traditional tissue harmonic imaging technology, pulse inversion harmonic imaging technology is applied to suppress side lobes and improve contrast resolution of the tissue with counteracted fundamental and enhanced harmonic. 4. Synthetic aperture beam-forming technology Break of restrictions traditional DAS beam-forming algorithm has on the number of physical channels generates excellent images both in near field and in far field with smaller hardware and lower transmit power. 5. A continuous transmit focus at every pixel · The distance differences of transmitting sound waves and those of receiving sound waves are calculated simultaneously, resulting to higher imaging precision and accuracy. · Diagnostic differences caused by differentiation of operators are lessened with no focus displayed and no need of manual adjustments. 6. Speckle noise suppression technology

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