NEC manual NEC MultiSync MD213MG

Page 1

Medical Desktop

NEC MultiSync® MD213MG

21.3” high-resolution 3MP grayscale LCD display ideal for medical imaging applications

Designed exclusively for the demanding needs of radiology and PACS, the NEC MultiSync MD213MG, a 21.3” 3-Megapixel (MP) grayscale display, delivers unrivaled imaging performance. Benefits you’ll realize from this medically certified display include:

NEC’s UA-SFT 3MP (1536 x 2048) liquid crystal technology offers long life at high brightness without compromising contrast or viewing angles, resulting in outstanding grayscale image quality.

Digital uniformity correction reduces screen uniformmity errors and compensates for differences in grayscale and luminance across the entire screen

Built-in front sensor constantly monitors calibration and corrects for minor fluctuations of light output, helping to maintain the factory calibration throughout the life of the monitor

Each NEC MultiSync MD213MG monitor is calibrated out of the box to the DICOM grayscale display function for luminance.

12-bit gamma provides for more finely detailed, high-definition rendering of images and crisper display of even the most delicate shadings

GammaComp™ MD software, included with each display, ensures consistent image quality. The software provides a simple interface for conformance to the DICOM standard, while providing an easy- to-use QA environment for medical imaging. Optionally, GammaComp MD Administrator provides computer networks with centralized control and management of multiple display systems.

www.necdisplay.com

Image 1
Contents NEC MultiSync MD213MG Resolutions Supported Analog/Digital Input SignalNative Resolution Additional Features

MD213MG specifications

The NEC MD213MG is a premier medical display designed to meet the demanding standards of healthcare environments, particularly in radiology and diagnostics. As a high-performance monitor, it delivers exceptional image quality, ensuring that medical professionals can rely on its accurate visualizations for critical decision-making.

One of the standout features of the MD213MG is its 21.3-inch screen, providing ample space for detailed imaging while maintaining a compact footprint suitable for various clinical settings. The monitor boasts a resolution of 2048 x 1536 pixels, which allows for sharp and clear images that are crucial for diagnosing conditions through X-rays, MRIs, CT scans, and other modalities.

The display utilizes advanced LCD technology, offering high brightness levels and contrast ratios that enhance image readability. With a luminance of up to 500 cd/m², the MD213MG ensures that images remain visible even under varying lighting conditions. This is vital in healthcare environments where lighting can significantly impact image visibility.

Additionally, the MD213MG features a 10-bit grayscale capability, enabling the display of over 1 billion colors. This extensive range allows for smooth gradations and precise rendering of subtle differences in tissue densities, aiding in more accurate diagnoses. The monitor is also equipped with DICOM calibration, ensuring that it adheres to the Digital Imaging and Communications in Medicine (DICOM) standards, which is essential for consistent and reliable imaging across different devices.

Connectivity is another important aspect of the MD213MG, offering multiple input options, including DVI and DisplayPort. This flexibility allows healthcare facilities to integrate the monitor into existing systems without significant upgrades. The monitor is designed with ergonomics in mind, featuring height-adjustable stands and the ability to tilt, ensuring comfort during prolonged use.

In terms of durability, the MD213MG is built to withstand the rigors of a hospital environment. It has an anti-glare surface to reduce reflections and facilitate viewing during surgeries or in brightly lit rooms. Its long lifespan and low power consumption also contribute to cost-effectiveness for healthcare organizations.

Overall, the NEC MD213MG medical display combines advanced imaging technologies, ergonomic design, and reliable performance, making it an essential tool for enhancing patient care and diagnostic accuracy in medical facilities.