• During the R&D and production phases, especially in laboratory simulation tests, the ability to accurately and in real-time monitor the blood pump flow rate in the VAD.

  • Significantly enhances research efficiency and accelerates the design process.

  • Deepens understanding of the hemodynamics and fosters ongoing innovation in the development process of VAD.

  • When blood is subjected to a certain shear stress, its cellular components and network structure will change over time, resulting in complex mechanical behaviors such as viscoelasticity and thixotropy. The non-invasive design of the CG series ultrasonic flow sensor avoids system interruption, and cause  low fluid pressure loss, improve measurement efficiency.

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