Modu Shiny jacket

Modu Shiny jacket Screen Size Dimensions

Modu Shiny jacket screen size dimensions, viewport size, pixel density and more information.

Specs:

WIDTH 128 px
HEIGHT 96 px
SCREEN SIZE INCH 1.3"
PX DENSITY ~123 ppi
ASPECT RATIO 1 1/3
DISPLAY TYPE AMOLED, 65K colors
PHYSICAL SIZE MM 95 x 45 x 13 mm
OPERATING SYSTEM Feature phone
RELEASE DATE Released 2009

Information:

The Modu Shiny jacket features a compact 1.3-inch AMOLED display with a screen resolution of 128 x 96 pixels, resulting in a pixel density of approximately 123 pixels per inch. This high pixel density ensures sharp and clear visuals, making it suitable for various user applications such as displaying crisp text, vibrant images, and easy-to-read icons. Despite its small physical size of 95 x 45 x 13 mm (3.74 x 1.77 x 0.51 in), the AMOLED display technology and 65K colors deliver impressive color reproduction and contrast, enhancing the user experience for tasks like viewing photos, reading messages, and navigating menus.

The 1 1/3 aspect ratio of the Modu Shiny jacket's display is well-suited for displaying square or nearly square content, making it ideal for applications that require a balanced and proportional presentation of information. The device's display characteristics make it particularly useful for its intended purpose as a feature phone, providing a clear and legible interface for making calls, sending texts, and accessing basic functionality. Additionally, the small form factor and high pixel density of the display contribute to its energy efficiency, ensuring prolonged battery life for extended usage without frequent recharging.

Despite being released in 2009, the Modu Shiny jacket's display specifications continue to offer practical benefits for various user applications, thanks to its AMOLED technology, high pixel density, and vibrant color reproduction. Whether used for communication, basic productivity tasks, or simple entertainment, the device's display characteristics cater to a range of user needs while maintaining an energy-efficient and compact design.