'Mode' p9 Searchterm 'Mode' found in 134 articles 14 terms [ • ] - 120 definitions [• ] Result Pages : •
From SIUI Inc.;'CTS-415 PLUS is a premium digital B/W ultrasound system with outstanding images and powerful application functions. It meets all your clinical requirements on black and white ultrasound examinations.' 'A variety of probes including convex, micro-convex, linear, vaginal, rectal probes and powerful imaging functions enable wide applications in cardiology, abdomen, small parts, pediatrics and OB/GYN.'
Device Information and Specification
APPLICATIONS
CONFIGURATION
Normal system, gray scale(256)
Linear and convex
PROBES STANDARD
2.5MHz ~ 11.0MHz, Broad band, Tri-frequency
IMAGING OPTIONS
Real ZOOM, max. Zoom * 4.0, multiplying power and position selectable
OPTIONAL PACKAGE
H*W*D m
1.3 * 0.52 * 0.77
WEIGHT
65 kg (main unit)
POWER REQUIREMENT
AC 220V/110V, 50Hz/60Hz
POWER CONSUMPTION
0.45 KVA
•
From SIUI Inc.;'SIUI's newly developed CTS-485 is a portable ultrasound system with advanced technology. With its powerful features, such as 256 grayscale, cineloop, RS232C interface and broadband high-density, multi-frequency probes, the system is designed for professional applications in cardiology, abdominal, small parts, liver, gallbladder, kidney, obstetrics, gynecology, peripheral vascular, etc. The CTS-485 has passed FDA clearance and CE Marking.'
Device Information and Specification
APPLICATIONS
CONFIGURATION
Portable, gray scale(256)
Linear and convex
PROBES STANDARD
1 * 2.5MHz ~ 5.0MHz multifrequency convex probe
2.5MHz to 10.0MHz broad band, trifrequency
IMAGING OPTIONS
Multi zoom rate and depth shift
OPTIONAL PACKAGE
H*W*D m
0.26 * 0.3 * 0.41
WEIGHT
11 kg (main unit)
POWER REQUIREMENT
AC 220V/110V, 50Hz/60Hz
POWER CONSUMPTION
0.1 KVA
•
From SIUI Inc.;
Device Information and Specification
CONFIGURATION
Normal system, gray scale(256)
Linear and convex
PROBES STANDARD
2.5MHz ~ 11.0MHz, broad band, tri-frequency
IMAGING OPTIONS
Real zoom, max. Zoom * 4.0, multiplying power and position selectable
OPTIONAL PACKAGE
H*W*D m
1.30 * 0.52 * 0.77
WEIGHT
90kg (main unit)
POWER REQUIREMENT
AC 220V/110V, 50Hz/60Hz
POWER CONSUMPTION
0.45 KVA
•
From SIUI Inc.;'Incorporating the latest advances in technology, the CTS-6000 digital B/W ultrasound system provides exceptional imaging quality and complete diagnostic capabilities. It is equipped with extensive analysis package, super broadband multifrequency probes and disk storage capacity, a complete system that fully meets different clinical needs. CTS-6000 sets a new standard for digital ultrasound imaging.'
Device Information and Specification
CONFIGURATION
Normal system, 12-inch high-resolution non-interlace monitor , Tri-probe connector
Linear and convex
PROBES STANDARD
1 * Super broadband linear probe L7S34, 1 * super broadband micro-convex probe C3L60, 1 * super broadband micro-convex probe C3120;
IMAGING OPTIONS
Real ZOOM, max. zoomx4.0, position selectable
H*W*D m
1.28 * 0.48 * 0.72
WEIGHT
98kg (main unit)
POWER REQUIREMENT
AC 220V/110V, 50Hz/60Hz
POWER CONSUMPTION
0.43 KVA
•
Duplex ultrasonography (duplex scan) consists of two ultrasound modalities to study blood flow and the perivascular tissue. This includes B-mode / gray scale imaging used in combination with spectral Doppler / pulsed-wave Doppler. The real-time visualization of the vessels and tissue by the B-mode component improves the PW Doppler positioning and the direction of blood flow can be inferred. The angle between the direction of the PW Doppler signal and the estimated direction of blood flow can be measured. Duplex techniques are available on phased array, linear array, and mechanical scanners. A phased array probe is able to create nearly simultaneous images and flow information. A linear array transducer can also do this if the Doppler probe is attached separately to one end of the scanhead. A mechanical transducer freeze the image; the crystals must be static to produce a Doppler image. The first two transducers are therefore the best choice for Duplex. See also Compound B-Mode, and Duplex Scanner. Further Reading: News & More:
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