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Advanced Moblie Imaging. Go Wherever you like, whenever you need.
A high performance yet flexible and compact digital portable, the FDR GO offers exactly what you need for your moblie exams.
Lightweight and Compact
The lightweight, compact chassis ensures superb maneuverability even in the tightest of spaces.
Easy and Safe Travel
The system's dual motor drive provides smooth, easy steering and quiet travel. The travel speed can be adjusted to match the preferred maneuverability, acceleration and steering control. A fail safe drive handle automatically stops system movement when the handle is released, while the collision-sensing safety bumper stops movement and signals user when contact is detected.
Controls on the collimator slowly move the system forward or backward, allowing precise bedside positioning without having to return to the drive handle.
Comfortable Safe Storage
A custom designed storage area holds detectors, grids and spare batteries. The detector bin features a clever shock absorbing holder.
The sophisticated design of the GUI contributes to the safe, comfortable and efficient execution of all portable examinations
Combining the already familiar console advance workflow with a new color scheme and intuitive screen layout makes it possible to check and confirm study information quickly and accurately. The image display area on the monitor is now larger, allowing for easy review of diagnostic images, while an optional touch panel monitor ensures quick and accurate operation.
Status display for D-EVO II
System display icons for the D-EVO II are newly added. This makes it possible to verify the panel status at any time; including remaining charge level, WiFi connection etc.
A range of DR detectors are available. Multiple panels can be carried on the system simultaneously, allowing the user the flexibility to change techniques mid-round. Neonatal examinations in incubators are simplified by the use of the C24.
Improving image contrast through the removal of scattered radiation
This newly developed “scattered radiation estimation technology” calculates and removes scattered radiation signal. Using this method the contrast of every image is automatically optimized; minimizing the impact of excess scatter caused by factors as diverse as patient physique, imaging region and imaging conditions (X-ray intensity, dose, etc.)
Contrast adjustment parameters in accordance with preferred grid type
Multiple simulated grid types are available.
Image contrast is automatically adjusted equivalentto the preferred grid type.
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