Verykool s3501 Lynx Screen Size Dimensions
Verykool s3501 Lynx screen size dimensions, viewport size, pixel density and more information.
Specs:
WIDTH | 320 px |
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HEIGHT | 480 px |
SCREEN SIZE INCH | 3.5" |
PX DENSITY | ~165 ppi |
ASPECT RATIO | 2/3 |
DISPLAY TYPE | TFT, 256K colors |
PHYSICAL SIZE MM | 113.4 x 60.2 x 12.5 mm |
OPERATING SYSTEM | Android 4.4.2 |
RELEASE DATE | Released 2014, November |
Information:
The verykool s3501 Lynx is a compact smartphone designed to meet the needs of users who prioritize portability and ease of use. With a screen size of 3.5 inches and a resolution of 320 x 480 pixels, this device offers a pixel density of approximately 165 ppi. While this may not compete with the high-resolution displays found on larger, premium smartphones, it is well-suited for users who value a smaller form factor and a device that can be comfortably operated with one hand. The aspect ratio of 2:3 provides a more squarish display compared to the more common 16:9 or 18:9 aspect ratios, which can be beneficial for certain types of content and applications.
The TFT display technology and support for 256K colors ensure that the verykool s3501 Lynx delivers vibrant and clear visuals for everyday use. Whether it's viewing photos, browsing the web, or engaging in casual gaming, the screen is capable of providing an enjoyable viewing experience. Additionally, the physical dimensions of the device, measuring at 113.4 x 60.2 x 12.5 mm (4.46 x 2.37 x 0.49 in), contribute to its pocket-friendly and ergonomic design, catering to users who prefer a more compact and lightweight smartphone.
Running on the Android 4.4.2 operating system, the verykool s3501 Lynx offers access to a wide range of apps and services on the Google Play Store, allowing users to customize their device according to their preferences. Despite being released in November 2014, the device still holds relevance for individuals seeking a basic yet functional smartphone that fulfills essential communication and entertainment needs without the bulk and complexity of larger, more advanced models.