MultiSync E221N

NEC MultiSync E221N Screen Size Dimensions

MultiSync E221N screen size, viewport size, pixel density and more information.

Specs:

WIDTH 1920 px
HEIGHT 1080 px
SCREEN SIZE INCH 22" (inches)
CASE WIDTH 19.22 in | 48.8 cm | 488.1 mm | 1.6 ft
CASE HEIGHT 11.46 in | 29.1 cm | 291 mm | 0.95 ft
CASE DEPTH 1.87 in | 4.8 cm | 47.6 mm | 0.16 ft
DISPLAY TYPE IPS
PX DENSITY 102 ppi
ASPECT RATIO 16:9
YEAR 2017

Information:

The NEC MultiSync E221N is a 22-inch monitor that boasts a screen resolution of 1920 x 1080 pixels, resulting in a pixel density of 102 pixels per inch (ppi). This display utilizes IPS (In-Plane Switching) technology, which ensures consistent and accurate color representation from wide viewing angles. The 16:9 aspect ratio of the screen makes it well-suited for multimedia and productivity applications, providing ample screen real estate for multitasking and immersive viewing experiences.

The monitor's dimensions of 19.22 x 11.46 x 1.87 inches (48.8 x 29.1 x 4.8 cm) make it a compact and space-efficient choice for various user environments. The slim profile and narrow bezels contribute to a sleek and modern aesthetic, while also minimizing distractions for users focused on visual content. Its release in 2017 positions it as a contemporary and relevant option for those seeking up-to-date display technology.

The display characteristics of the NEC MultiSync E221N make it a versatile choice for a range of user applications. Its high pixel density ensures sharp and detailed imagery, making it ideal for graphic design, photo editing, and other visual-centric tasks. The IPS technology guarantees accurate color reproduction, making it suitable for professional content creation and color-critical work. Additionally, the spacious 22-inch screen size and 16:9 aspect ratio provide an immersive and engaging experience for multimedia consumption, gaming, and movie watching. Overall, the NEC MultiSync E221N offers a compelling combination of display characteristics that cater to the diverse needs of users across different usage scenarios.