lcd display schematic diagram factory
Important technical improvements of LCD, such as LED backlighting and wide viewing Angle, are directly related to LCD. And account for an LCD display 80% of the cost of the LCD panel, enough to show that the LCD panel is the core part of the entire display, the quality of the LCD panel, can be said to directly determine the quality of an LCD display.
The production of civil LCD displays is just an assembly process. The LCD panel, the main control circuit, shell, and other parts of the main assembly, basically will not have too complex technical problems.
Does this mean that LCDS are low-tech products? In fact, it is not. The production and manufacturing process of the LCD panels is very complicated, requiring at least 300 process processes. The whole process needs to be carried out in a dust-free environment and with precise technology.
The general structure of the LCD panel is not very complex, now the structure of the LCD panel is divided into two parts: the LCD panel and the backlight system.
Due to the LCD does not shine, so you need to use another light source to illuminate, the function of the backlight system is to this, but currently used CCFL lamp or LED backlight, don’t have the characteristics of the surface light source, so you need to guide plate, spreadsheet components, such as linear or point sources of light evenly across the surface, in order to make the entire LCD panel on the differences of luminous intensity is the same, but it is very difficult, to achieve the ideal state can be to try to reduce brightness non-uniformity, the backlight system has a lot to the test of design and workmanship.
In addition, there is a driving IC and printed circuit board beside the LCD panel, which is mainly used to control the rotation of LCD molecules in the LCD panel and the transmission of display signals. The LCD plate is thin and translucent without electricity. It is roughly shaped like a sandwich, with an LCD sandwiched between a layer of TFT glass and a layer of colored filters.
LCD with light refraction properties of solid crystals, with fluid flow characteristics at the same time, under the drive of the electrode, can be arranged in a way that, in accordance with the master want to control the strength of the light through, and then on the color filter, through the red, green, blue three colors of each pixel toning, eventually get the full-screen image.
According to the functional division, the LCD panel can be divided into the LCD panel and the backlight system. However, to produce an LCD panel, it needs to go through three complicated processes, namely, the manufacturing process of the front segment Array,the manufacturing process of the middle segment Cell, and the assembly of the rear segment module. Today we will be here, for you in detail to introduce the production of the LCD panel manufacturing process.
The manufacturing process of the LCD panel Array is mainly composed of four parts: film, yellow light, etch and peel film. If we just look at it in this way, many netizens do not understand the specific meaning of these four steps and why they do so.
First of all, the motion and arrangement of LCD molecules need electrons to drive them. Therefore, on the TFT glass, the carrier of LCD, there must be conductive parts to control the motion of LCD. In this case, we use ITO (Indium Tin Oxide) to do this.ITO is transparent and also acts as a thin-film conductive crystal so that it doesn’t block the backlight.
The different arrangement of LCD molecules and the rapid motion change can ensure that each pixel displays the corresponding color accurately and the image changes accurately and quickly, which requires the precision of LCD molecule control.ITO film needs special treatment, just like printing the circuit on the PCB board, drawing the conductive circuit on the whole LCD board.
This completes the previous Array process. It is not difficult to see from the whole process that ITO film is deposited, photoresist coated, exposed, developed, and etched on TFT glass, and finally, ITO electrode pattern designed in the early stage is formed on TFT glass to control the movement of LCD molecules on the glass. The general steps of the whole production process are not complicated, but the technical details and precautions are very complicated, so we will not introduce them here. Interested friends can consult relevant materials by themselves.
The glass that the LCD board uses makes a craft also very exquisite. (The manufacturing process flow of the LCD display screen)At present, the world’s largest LCD panel glass, mainly by the United States Corning, Japan Asahi glass manufacturers, located in the upstream of the production of LCD panel, these manufacturers have mastered the glass production technology patents. A few months ago, the earthquake caused a corning glass furnace shutdown incident, which has caused a certain impact on the LCD panel industry, you can see its position in the industry.
As mentioned earlier, the LCD panel is structured like a sandwich, with an LCD sandwiched between the lower TFT glass and the upper color filter. The terminal Cell process in LCD panel manufacturing involves the TFT glass being glued to the top and bottom of a colored filter, but this is not a simple bonding process that requires a lot of technical detail.
As you can see from the figure above, the glass is divided into 6 pieces of the same size. In other words, the LCD made from this glass is finally cut into 6 pieces, and the size of each piece is the final size. When the glass is cast, the specifications and sizes of each glass have been designed in advance.
Directional friction:Flannelette material is used to rub the surface of the layer in a specific direction so that the LCD molecules can be arranged along the friction direction of the aligned layer in the future to ensure the consistency of the arrangement of LCD molecules. After the alignment friction, there will be some contaminants such as flannelette thread, which need to be washed away through a special cleaning process.
After the TFT glass substrate is cleaned, a sealant coating is applied to allow the TFT glass substrate to be bonded to the color filter and to prevent LCD outflow.
Finally, the conductive adhesive is applied to the frame in the bonding direction of the glass of the color filter to ensure that external electrons can flow into the LCD layer. Then, according to the bonding mark on the TFT glass substrate and the color filter, two pieces of glass are bonded together, and the bonding material is solidified at high temperatures to make the upper and lower glasses fit statically.
Color filters are very important components of LCD panels. Manufacturers of color filters, like glass substrate manufacturers, are upstream of LCD panel manufacturers. Their oversupply or undersupply can directly affect the production schedule of LCD panels and indirectly affect the end market.
As can be seen from the above figure, each LCD panel is left with two edges after cutting. What is it used for? You can find the answer in the later module process
Finally, a polarizer is placed on both sides of each LCD substrate, with the horizontal polarizer facing outwards and the vertical polarizer facing inwards.
When making LCD panel, must up and down each use one, and presents the alternating direction, when has the electric field and does not have the electric field, causes the light to produce the phase difference and to present the light and dark state, uses in the display subtitle or the pattern.
The rear Module manufacturing process is mainly the integration of the drive IC pressing of the LCD substrate and the printed circuit board. This part can transmit the display signal received from the main control circuit to the drive IC to drive the LCD molecules to rotate and display the image. In addition, the backlight part will be integrated with the LCD substrate at this stage, and the complete LCD panel is completed.
Firstly, the heteroconductive adhesive is pressed on the two edges, which allows external electrons to enter the LCD substrate layer and acts as a bridge for electronic transmission
Next is the drive IC press. The main function of the drive IC is to output the required voltage to each pixel and control the degree of torsion of the LCD molecules. The drive IC is divided into two types. The source drive IC located in the X-axis is responsible for the input of data. It is characterized by high frequency and has an image function. The gate drive IC located in the Y-axis is responsible for the degree and speed of torsion of LCD molecules, which directly affects the response time of the LCD display. However, there are already many LCD panels that only have driving IC in the X-axis direction, perhaps because the Y-axis drive IC function has been integrated and simplified.
The press of the flexible circuit board can transmit data signals and act as the bridge between the external printed circuit and LCD. It can be bent and thus becomes a flexible or flexible circuit board
The manufacturing process of the LCD substrate still has a lot of details and matters needing attention, for example, rinse with clean, dry, dry, dry, ultrasonic cleaning, exposure, development and so on and so on, all have very strict technical details and requirements, so as to produce qualified eyes panel, interested friends can consult relevant technical information by a search engine.
LCD (LC) is a kind of LCD, which has the properties of light transmission and refraction of solid Crystal, as well as the flow property of Liquid. It is because of this property that it will be applied to the display field.
However, LCD does not emit light autonomously, so the display equipment using LCD as the display medium needs to be equipped with another backlight system.
First, a backplate is needed as the carrier of the light source. The common light source for LCD display equipment is CCFL cold cathode backlight, but it has started to switch to an LED backlight, but either one needs a backplate as the carrier.
CCFL backlight has been with LCD for a long time. Compared with LED backlight, CCFL backlight has many defects. However, it has gradually evolved to save 50% of the lamp and enhance the transmittance of the LCD panel, so as to achieve the purpose of energy-saving.
With the rapid development of LED in the field of lighting, the cost has been greatly reduced.LCD panels have also started to use LED as the backlight on a large scale. Currently, in order to control costs, an LED backlight is placed on the side rather than on the backplate, which can reduce the number of LED grains.
At the top of the diffusion plate, there will be 3~4 diffuser pieces, constantly uniform light to the whole surface, improve the uniformity of light, which is directly related to the LCD panel display effect. Professional LCD in order to better control the brightness uniformity of the screen, panel procurement, the later backlight control circuit, will make great efforts to ensure the quality of the panel.
Since the LCD substrate and the backlight system are not fixed by bonding, a metal or rubber frame is needed to be added to the outer layer to fix the LCD substrate and the backlight system.
After the period of the Module, the process is completed in LCM (LCDModule) factory, the core of this part of the basic does not involve the use of LCD manufacturing technology, mainly is some assembly work, so some machine panel factories such as chi mei, Korea department such as Samsung panel factory, all set with LCM factories in mainland China, Duan Mo group after the LCD panel assembly, so that we can convenient mainland area each big monitor procurement contract with LCD TV manufacturers, can reduce the human in the whole manufacturing and transportation costs.
However, neither Taiwan nor Korea has any intention to set up factories in mainland China for the LCD panel front and middle manufacturing process involving core technologies. Therefore, there is still a long way to go for China to have its own LCD panel industry.
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Text: Advanced Direct Drive LCD Advanced Direct Drive LCD Description: Using the Renesas API to create real world LCD products Objectives 1. Compile the Demo Project. 2. Change the background image , XP or Vista E10A Debugger Renesas H8S/2378 LCD Kit and LCD Panel HEW Version 4.06 or newer , knowledge of Renesas MCU"s and Basic understanding of LCD Displays Time to Complete Lab1: 30 Minutes , using the LCD Kit for the H8S/2378(part number YLCDRSK2378) before you begin a hardware design it is
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Text: : S5U13517P00C100 Schematic Diagram (1 of 3) S5U13517P00C100 Evaluation Board User Manual (Rev. 1.0 , : S5U13517P00C100 Schematic Diagram (2 of 3) 19 A B C R59 0 3.3VDD PCLK PDE PHS PVS GPO , Controller Figure 6-3: S5U13517P00C100 Schematic Diagram (3 of 3) S5U13517P00C100 Evaluation Board User , . . . . . . . . . . . 4.4.2 Connecting to the Epson S5U13U00P00C100 USB Adapter Board 4.5 LCD , Lists . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 Chapter 6 Schematic
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Text: LifeLine TFT-LCD Direct Drive H8S/2378 LIFELINE: H8S/2378 TFT- LCD Direct Drive Rev 1.2 12/2/2009 Who is this Document Written for? Anyone who has received an H8S/2378 LCD Demo kit and wants , step by step guide to make sure you can make it through the procedure. Note: If you are using the LCD , be aware that this board has an obsolete schematic that should be used only after noting the annotations in the updated schematic . One of the primary reasons the schematic is obsolete centers around how
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Text: FAN7317B - LCD Backlight Inverter Drive IC January 2010 FAN7317B LCD Backlight Inverter , The FAN7317B is a LCD backlight inverter drive IC that controls P-N full-bridge topology using a new , Inverter Drive IC Typical Application Circuit ( LCD Backlight Inverter ) Application 22-Inch LCD Monitor , . Transformer Schematic Diagram Figure 56. Transformer Schematic Diagram 3. Core & Bobbin Core , FAN7317B - LCD Backlight Inverter Drive IC Physical Dimensions 13.00 12.60 11.43 20 B 11 A
Text: FAN7317B LCD Backlight Inverter Drive IC Features Description ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ ï§ The FAN7317B is a LCD backlight inverter drive , FAN7317Bâ LCD Backlight Inverter Drive IC April 2011 Application Device Input Voltage Range , . Transformer Schematic Diagram Figure 56. Transformer Schematic Diagram 3. Core & Bobbin ï§ ï§ ï , ⢠1.0.2 www.fairchildsemi.com 19 FAN7317Bâ LCD Backlight Inverter Drive IC Typical
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Text: FAN7317B LCD Backlight Inverter Drive IC Features Description The FAN7317B is a LCD backlight , through Protection Functions Figure 55. Typical Application Circuit 2. Transformer Schematic Diagram Figure 56. Transformer Schematic Diagram 3. Core & Bobbin Core: EFD2126 Material: PL7 Bobbin , FAN7317B - LCD Backlight Inverter Drive IC Typical Application Circuit ( LCD Backlight Inverter , Semiconductor Corporation FAN7317B· 1.0.1 www.fairchildsemi.com 21 FAN7317B - LCD Backlight Inverter
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Text: 2). The following diagram shows the location of connectors H2, H3, and H4. H3 ( LCD Panel , Adapter Board 4.5 LCD Panel Interface . . . . . . . . . . . . . . . . . . . . . 4.6 GPIO Connections . . , 18 Chapter 6 Schematic Diagrams . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20 , laptop or desktop computer, via USB 2.0. This user manual is updated as appropriate. Please check the , ¢ Headers for connecting to LCD panels ⢠Header for S1D13748 GPIO pins (optional) ⢠On-board 4MHz
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Text: FAN7311 LCD Backlight Inverter Drive IC Internal Block Diagram FAN7311 LCD Backlight Inverter Drive , FAN7311 LCD Backlight Inverter Drive IC Features Description High-Efficiency Single-Stage , www.fairchildsemi.com FAN7311 LCD Backlight Inverter Drive IC January 2007 RT max. 2V CT OUTA , . 1.0.6 www.fairchildsemi.com 4 FAN7311 LCD Backlight Inverter Drive IC Absolute Maximum Ratings , Corporation FAN7311 Rev. 1.0.6 www.fairchildsemi.com 5 FAN7311 LCD Backlight Inverter Drive IC
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Text: have been optimized to drive flat-panel and CRT displays (or laptop and notebook applications. Set I supports up to 16 shades of gray on LCD "s and PDP"s (plasma display panels). Set II supports 64 shades of gray on LCD "s. Set III supports 64 colors on multi-color LCD "s, All three sets are fully compatible , graphic adapter board Schematic of evaluation/demo board Parts list Installation guide Cabling and power , SPC8000FOB, SPC8010FOA, and SEA6461J35 Drives CRT monitors and grayscale LCD or PDP (16 shades) Set II
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Text: . . . . . . . . . . . 4.5.2 Connecting to the Epson S5U13U00P00C100 USB Adapter Board 4.6 LCD , . . . . . . . . 18 6 Schematic Diagrams . . . . . . . . . . . . . . . . . . . . . . . . . . . , the S5U13U00P00C100 USB Adapter board so that it can be used with a laptop or desktop computer, via , S5U13U00P00C100 USB Adapter board · Headers for connecting to LCD panels · Header for S1D13742 GPIO pins , adjustable 6~24V output, 40mA max., to provide power for LED backlight of LCD panels. S1D13742 X63A-G
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Text: Backlight for the LCD Display, connect the Microsemi LXMG1623-05-44 Inverter Module to the B 11 and B 12 , 2 Video Interface ( LCD ) Controller other6 FIGURE 23. Typical LCD Based Display System Diagram , System Block Diagram with Video Interface Controller and LCD Display 29 www.national.com RD , . Provides charging current for PMP device when docked in docking station connector. Detachable LCD , provides lighting to LCD Display. High Efficiency Portable Media Player (PMP) Docking Station High
Text: Advanced Direct Drive LCD Advanced Direct Drive LCD Description: Using the Renesas API to create real world LCD products Objectives 1. Compile the Demo Project. 2. Change the background image. Lab Materials: Please verify you have the following materials at your lab station. · Laptop · E10A Debugger · Renesas H8SX/1668 LCD Kit and LCD Panel · HEW Version 4.06 or newer · H8S Tools Version , "s and Basic understanding of LCD Displays Time to Complete Lab1: 30 Minutes Time to Complete Lab2
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