Portable Digital Color Doppler Ultrasound System FDC6000
Item #: AM-COR-0466-ZP
Model: FDC6000
Regulatory Status: Approved by Regulations on the Supervision and Administration of Medical Devices.
Application: Medical Use
Features: 1, 2 probe interface, free switching, support hot plug
2.Rich data transmission interface
3. Support multi-language decryption display and input, the software operation interface has navigation function
4.Built-in multiple inspection types, and automatically optimize parameters according to different types with one click
5, DICOM3.0 interface, network remote assistance tool software, technicians can maintain the system remotely through the network
FDC6000 Full Digital Color Doppler Ultrasound Diagnostic System
Adopt the world's leading core technology and integrate modern ergonomic design. Excellent image quality and blood flow sensitivity, and a wide range of probe adaptation capabilities, which can meet the special consultation rooms of abdominal, obstetrics and gynecology, heart, small organs, superficial blood vessels, musculoskeletal and ophthalmology, anesthesia, urology, neurosurgery and other specialized consultation rooms Clinical diagnostic needs.
Ultrasound imaging technology:
1. The world's leading ultrasound platform and architecture
It adopts the latest generation of ultrasonic front-end chip with "digital demodulator" and 8-core DSP processor, which provides powerful computing power with higher integration, lower power consumption, and seamless upgrade to support elastic imaging.
2. Sparse transmission + multi-beam parallel processing technology
Plane wave transmission and 16-beam parallel receiving and processing greatly improve the imaging frame rate and blood flow sensitivity at B + C, B + C + D, and realize a truly practical "triple-synchronous" display.
3. Pulse Inverse Harmonic Imaging Technology (PIHI)
Fundamental wave cancellation and harmonic enhancement. Compared with traditional tissue harmonic imaging, it greatly suppresses side lobes and improves tissue contrast resolution.
4. Synthetic Aperture Beam Synthesis (SA)
It completely breaks through the limitation of the physical channel number of the traditional DAS beam synthesis algorithm, and obtains excellent image quality from the near field to the far field with a smaller hardware scale and lower transmission power.
5. Launch point-by-point focusing technology
Simultaneous calculation of transmitted and received sound path differences can greatly improve imaging accuracy and precision.
There is no need to manually adjust the focus (no focus display), reducing diagnostic differences caused by different operators.
6. Speckle noise suppression technology
The speckle noise in the ultrasound image is effectively removed, and a clearer and more delicate two-dimensional image is obtained.
7. Free arm 3D + 4D imaging technology
For fetal examination, it can greatly improve the ultrasound detection rate of malformed fetuses.
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