Production Line
The company has 1 LCD segment code screen production line, 4 backlight production lines, 5 FOG binding lines and 10 module assembly production lines. Perfect automation equipment technology, stable shipment, daily production of 30000 +/piece.
Production Experience
More than ten years of production experience since its establishment, at the same time, strengthen the training of production management personnel, front-line employees, business and sales teams to ensure smooth customer communication, high cooperation and accurate delivery time.
Our certification
The factory has passed SIO9001 quality system certification and ROHS certification.
After-sales
The company has offices in many places (Shenzhen, Ningbo, Zhengzhou) with perfect after-sales service mechanism, providing technical support before and after sales, and arranging engineers nearby to provide on-site service.
What Is Transmissive Lcd Display?
Transmissive Lcd Display is a common professional term for 7 segment screens in LCD screens. The liquid crystal molecules in the LCD screen do not emit light themselves, and the refraction of the liquid crystal molecules needs to be controlled by backlight illumination. The display content is obtained by filtering through a polarizer. This display technology is usually widely used on monochrome displays.
Features of Transmissive Lcd Display
transmissive lcd screen consists of multiple layers, including a backlight layer, a polarizer, a liquid crystal layer and a color filter.
LED lights are usually used as backlight sources to provide uniform lighting.
There are two polarizers on the display, arranged at 90 degrees. The first polarizer attached to the front allows light in a specific direction to pass through. The desired display background color can be obtained by adjusting the angle of the surface.
The electrode atmosphere seg and com of the liquid crystal screen, when voltage is applied to the liquid crystal layer, the liquid crystal molecules will be arranged according to the change of the electric field, thereby adjusting the refractive index of light passing through the polarizer. He can determine the brightness and color of each pixel.
The light regulated by the liquid crystal layer passes through the color filter - usually red, green and blue filters, through the color filtering and color superposition, adjusted to different colors to make the LCD screen display colorful, and then by applying different voltages to different pixels, the fully transparent LCD screen can display a variety of images and text.
As an electronic component manufacturer, selecting the right display device is crucial during product development. LCD screens allow for data visualization, so early in the development process, we need to clearly define the application scenario-that is, determine the product we're developing and the content it will display.
Then, when using the LCD screen, the angles we observe it from directly determine the viewing angle requirements, which leads to more ergonomic designs.
Power and power consumption constraints are crucial during product development, making solution feasibility crucial. Normally, the power consumption of our seven LCD segments is negligible, as LCD screens are non-luminous. However, the driving voltage directly determines the battery voltage, so we consider this when selecting power consumption.
Of course, in special environments, we also need to consider the cold and heat resistance of the liquid crystal molecules in the LCD screen. Therefore, effective communication is essential during the early stages of development to prevent display anomalies and even damage to the LCD screen under unusual circumstances.
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