Probe
Advanced Probe Material Applications
The probe is made of composite materials, providing greater penetration, higher resolution and uniform, and uncut images, with performance improvements of over 60% compared to traditional piezoelectric ceramic materials
Sub-cutting allows for complete control of the entire process of chip vibration, reducing sidelobe artifacts, enhancing fine tissue resolution, and achieving sharper boundaries between adjacent strong echo reflectors. This fully showcases the high-resolution images brought by the high-density probe, perfectly presenting image details, and increasing clinical diagnostic accuracy.
Lossless Signal Transmission and Reception
High-Precision Analog-to-Digital Conversion
Space-Time Wave Velocity Reconstruction
Exclusive Subarray Technology
High-Resolution Images
A dedicated high-density probe, employing a completely new array design technology and an exclusive subarray technology, undergoes secondary cutting of individual transducers, allowing for full control over the transducer's vibration throughout the process. This reduces sidelobe artifacts, enhances the resolution of fine tissue details, and sharpens the boundaries between adjacent strong echo reflectors. It fully showcases the high-resolution images brought by the high-density probe, perfectly presenting image details, and increasing the accuracy of clinical diagnosis.