WF0340ATYAB7MNN0 – LCD-TFT display from Winstar Co.

WF0340ATYAB7MNN0 is a 3.4-inch Circular Screen IPS TFT Display with a resolution of 800×800 dots. It uses IPS (In-plane Switching) technology to achieve fast and stable response time, higher frequency transmittance, and better color performance. The most significant advantage of IPS is the wider viewing angles of up: 85/ down: 85/ left: 85/ right: 85 degrees. This circular TFT display has the module dimensions of 94.9 x 96.95 mm and the active area of 87.6 x 87.6 mm. It boasts a built-in ILI9881C driver IC, supporting 4-wire MIPI interfaces. The contrast ratio of the module is 1200:1, the brightness is 300cd/m2 (typical value), the analog circuit voltage is 3.3V (typical value), and the logic circuit voltage is 1.8V.

The operating temperature range of this 3.4″ LCD is from -20℃ to +70℃, and the storage temperature range covers from -30℃ to +80℃. The circular TFT LCD display is suitable for home appliances, electronic alarm clocks, cocktail machines, and other products requiring circular display screens.

Datasheet

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Resolution800x800
Brightness (cd/m²)300
Viewing DirectionFull
InterfaceMIPI DSI
ControllerILI9881C
Mounting FrameNo
Touch PanelNone
Outline Dimensions87.6 x 87.6
Operating temp. (°C)-20~70
SpecialNone

Industrial operating temperature range

image

This module can operate in a stable and failure-free way for a long period within wide range of temperatures. Thanks to such option, it may be successfully applied e.g. in transportation and automotive industry.

High contrast

The main difference between LCD and OLED technology is a matter of light generating. Standard LCD panel requires backlight to illuminate its pixels and thus displayed image. Whereas in OLED technology, pixels themselves are a source of emitted in appropriate color light.

LCD module backlight causes that obtained blackness is never perfect because part of the light breaks through the matrix. This feature becomes particularly clear in a dark room. On the other hand, OLED technology makes possible complete disconnection of selected pixels, so that the cell emits 0 cd/m2 achieving an effect of perfect blackness. Perfect blackness and comparable to LCD brightness result in much higher contrast and readability. Depending on the external lighting, static contrast of OLED screen is from 2000: 1 to infinity, reaching the highest possible value in today's technology.

COG (Chip on glass)

Displays with Chip on Glass characterize with smaller thickness of all outer dimensions and thanks to more hermetic construction they are tighter and more shock-resistant. Additionally, they are more price-attractive and have lower power consumption.

Fast response time

OLED screens characterize with faster response time in comparison to LCD matrixes. LCD display reaction time is in range between a few to even several hundred milliseconds and results from liquid crystal properties. On the other hand, the response time of OLED modules is less than 10 μs. LCD response time rapidly grows in below-zero temperatures and it may even cause a complete stop of displayed content or at least ghosting. OLED displays do not have this failure and run at full speed even in temperature of -40 °C.

Ultra thin

epapier

EPD (Electronic Paper Display) technology does not require backlight. This feature affects the thickness of the entire module - in some models it is even less than 1 mm. Modern ultrathin displays are much more convenient and versatile in design and assembly, providing a result consistent with the latest industrial design and trends.

Full viewing angles

In OLED displays each pixel emits individually light just by the surface, so that the displayed image is completely readable from any viewing angle. To compare, in LCD technology light-emitting layer is located from below and on this layer, there is applied light transmissive and color filtering matrix. Created in such display image characterize with very good optical parameters only when you look at it from right angle. Any different viewing angle results in lower light transmission. This causes a visible deterioration of image quality that is reflected in brightness and contrast decrease.

Built-in fonts

All standard Winstar OLED displays have built-in 4 sets of fonts: English, European, Japanese and Cyrillic. Thanks to usage of many languages, this solution extends the range of applications on various markets. Selected characters from the extended set of fonts can also be used by application developers as icons. Additionally, embedded fonts significantly speed up applications development in graphic displays. There is no need to design and program own fonts as user can just choose and apply a suitable one.

Long liveliness

The history of OLED displays is relatively short. Initially, the main drawback of this technology was a short life span of OLED cells (especially for blue color) which significantly narrowed scope of applications. Conducted research eliminated this obstacle. Currently, contrary to popular beliefs and myths, OLED technology is so refined that it can be successfully used in industrial applications. At present, OLED displays surpass LCD modules in all respect and their liveliness varies from 50 000 to 110 000 hours (depending on the color).

Low power consumption

Thanks to using special organic material, OLED technology enables automatic generation of light. OLED panel does not require backlight and consumes only as much energy as need lit at the time pixels. With this solution, the average OLED power consumption is much lower in comparison to LCD panel with standard backlight.

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