
RELIABLE AND INTELLIGENT
Finus 70’s unique imaging technologies and transducer technology provide users with detailed images to enhance their diagnosis confidence.
Advanced Platform

Hi Platform
With massive data and lateral coherent beam reconstruction algorithm, it can obtain high frame rate and high resolution images.

SNS+
Automatically detect and suppress the speckle noise based on multi-dimension algorithm. Acquire and enhance tissue details from different directions, easily capture sub-millimeter level lesion or large organ boarder.

OMG Original Mag Guard
The electromagnetic guard processing of whole system is to prevent the ultrasonic signal from electromagnetic interference during the transmission process, to ensure the stability of the signal transmission, so as to obtain a clearer image.
Transducers
Finus 70 supports a wide range of transducers for different applications, including convex, linear, phased-array, intracavitary, XDiamond transducers, etc. With Focus & Fusion’s unique BTM transducer technique, the performance goes beyond users’ expectations.

Convex C5-1
Abdomen, Obstetrics, Gynecology
Micro-convex MC10-3
Pediatrics, Cardiology
Intracavitary EC9-4
Obstetrics, Gynecology, Urology
Linear L12-4
Small parts, Vascular, MSK
Linear L17-5
Small parts, Vascular, MSK
HD Linear L13-3
Small parts, Vascular, MSK, Breast
Phased Array P5-2
Cardiology, Abdomen, TCD
Phased Array P8-2
Abdomen, Pediatric cardiology
Bonding Technique
By uniform bonding process, adhesive to interconnect ceramic and lead is well controlled (max thickness: 1μm) to improve performance uniformity among elements.


Triple Matching Layers
High sensitivity and super bandwidth can be achieved through triple matching layers.
Micro-Elements Cutting
By micro-elements cutting, one element is cut into 6db several sub-elements to increase sensitivity and band-width of transducer.

Elastography
Real time elastography is a new noninvasive and painless technique that can help determine the hardness of organs and other structures such as the breast, thyroid and prostate. Elastic imaging provides users with dynamic visual information and displays the rigidity of organs, which is helpful for direct and quantitative diagnosis and treatment.

eBiopsy
Based on the accurate ultrasonic beam steering and image fusion technology, the needle body can be enhanced to the greatest extent, which can effectively guide doctors to perform puncture operations.

Tissue Doppler Imaging
Tissue Doppler Imaging (TDI) is a robust and reproducible echocardiographic tool that employs the Doppler effect to assess muscle wall characteristics throughout the cardiac cycle including velocity, displacement, deformation, and event timings. It has permitted a quantitative assessment of both global and regional function and timing of myocardial events.

Curved AM
Curved Anatomical M-Mode (CAM) technology can show all the spatial and temporal relationship of myocardial segment movements during the cardiac cycle in the scanning sector, which provides a new measurement method to quantitatively analyze the abnormalities of segmental myocardial motion during systolic or diastolic period.
