Technical specifications Laptop Ultrasound Scanner
Features and Benefits portable ultrasound laptop
Display : 10.1-inch high-resolution TFT LCD
Rezolutie Laterala : ≤3 mm (depth ≤80mm)
≤4 mm (80mm≤depth ≤130mm)
Rezolutie Longitudinala : ≤2 mm (depth ≤80mm)
≤3 mm (80mm≤depth ≤130mm)
Adancime Detectabila : ≥160mm
Zona oarba: ≤5mm
Eroare Geometrica : Lateral ≤15
Longitudinal ≤10
Specifications
Scanning probe
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electronic linear array, electronic convex array
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Imaging model
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B, B/B, B/M, M and 4B dynamic
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Gray scale
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256 levels, four selectable gamma curves
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Transducer frequency
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2.5-10 MHz depending the probe model
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Magnification
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×0.8, ×0.9, ×1.0,×1.1,×1.2,×1.3, ×1.4,×1.5
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Permanent storage
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1024 images in the internal memory of the portable ultrasound laptop scanner
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Cine loop
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192 current images in memory, manual and automatic
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Sound Power
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8 power levels from 0-7
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Dynamic Range
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Adjustable from 30-75
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USB Ports
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2 USB 2.0 for printer and memory stick & mini USB 2.0
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IP set
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8 sets of parameters for image port processing
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Pseudo color
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5 sets
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Image Processing
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Up/Down, Left/Right, Black/White, Frame correlation Edge enhancement, Scroll
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Measurement
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Circumference, Area, Volume, Heart ratio, Velocity, OB and Cardiac
B mode: Distance,
circumference, area, volume
M mode: Distance, velocity, heart rate GYN/OB (BPD,GS,CRL,AD,AC,FL,HC,FTA,APTD,TTD), Cardio (LV >>Simpson, S-p ELL, D-p ELL, Bullet) |
Focus
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Number and location of the focus can be adjusted by keyboard
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Puncture
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Puncture guide line with a special accesory available for certain probes
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TGC
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Adjustable, Near field, Middle field and Far field are adjustable from 39-99
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Body Marks
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35 with superposable arrows
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IP set
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Hospital’s name, Date, Time, Formula of Fetus’ weight and Pseudo color
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Image store format
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BMP, DICOM
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Formula of Fetus’ weight
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OSAKA, TOKYO1, TOKYO2, MERZ
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Image
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Frame correlation, Edge enhancement, Dynamic range, center line, scan angle Puncture
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Voltage
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AC85V-265V
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Advanced digital imaging technology laptop ultrasound
DBF: Digital Beam Forming technology
DFS: Dynamic Frequency Scanning technology
DRF: Dynamic Receiving Focusing technology
RDA: Real-time Dynamic Aperture imaging technology
DRA: Real-time Dynamic Receiving Apodization technology
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