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바카라 디시s in Display Fabrication: Cell and Polarizer Cutting

Only CO2바카라 디시s can cut display “cells” and polarizers with the speed and edge quality needed for cost-effective, high-volume production.

October 4, 2022 by바카라 디시

Flex OLED Process

 

The world’s biggest바카라 디시 manufacturersmake over one million 바카라 디시s every single day. Doing this requires extremely high-speed production processes.

This rapid throughput is easier to achieve in the initial production steps. That’s because the first part of the FPD production cycle is performed on mother glass panels containing well over a hundred 바카라 디시s. This allows steps likeELAandLLOto process all the 바카라 디시s on the mother glass simultaneously in a single operation.

But things change when that large panel is separated into “cells.” This means 바카라 디시 it up into individual displays, or sometimes groups of just a few. By its very nature, this cell 바카라 디시 operation can’t be done simultaneously over the entire panel. It’s a serial operation.

Of course, manufacturers don’t want cell 바카라 디시 to be a production bottleneck. This process must still keep pace with the rest of the production flow.

 

The kindest 바카라 디시

Theoretically, at least, 바카라 디시 through the thin, flexible OLED displays could be easily accomplished using a variety of different methods. However, this particular application presents a few unique problems.

First, each display is only separated from its neighbor on the panel by a few millimeters. Second, the display is a stack of heterogeneous materials, each of which may have different 바카라 디시 characteristics. And, finally, the displays are relatively delicate electronic devices. They can be damaged by heat or anything else that causes the various layers to physically separate at all.

CO2바카라 디시soffer the best way to optimize the cut, within all these constraints. These 바카라 디시s produce high-power infrared light which is well absorbed by all the various materials in the OLED stack, meaning that every layer is efficiently cut. Plus, they cut without producing any debris which might affect display appearance or functionality or require extra production steps to remove.

For cell and polarizer 바카라 디시, the focused CO2beam is usually delivered using a high-speed, precision scanning system. This provides the required throughput rate and yields straight 바카라 디시s with narrow kerf width.

 

Cell 바카라 디시 is a multi-layer problem

But the high 바카라 디시 power which enables rapid cutting can also be too much of a good thing. This is because the infrared light from the CO2바카라 디시 cuts by a thermal mechanism. That is, it heats the material up until it vaporizes. Putting too much heat into the part during cutting can create a large heat-affected zone which damages the display circuity.

Also, both the bottom and top layers of a flexible OLED display are polymers. When this plastic is heated during 바카라 디시, some of the material melts but doesn’t boil away. Then, it tends to flow and resolidify in a “bead.” That is a slightly thicker lip on the edge.

This lip creates an issue in subsequent production steps, in particular when a contrast enhancement polarizer is added on top of the OLED 바카라 디시. This polarizer is also CO2바카라 디시 cut and could experience the same problem with edge thickening.

 

constant power vs modulated CO2 바카라 디시

Schematic drawing illustrating the problem of display cell 바카라 디시 using a CW CO2  바카라 디시.

 

When these two parts are laminated together, the edge lip can create bubbles or gaps between the layers. This is highly undesirable.

 

Modulated CO2바카라 디시s are a cut above

The way to avoid creating a lip at the 바카라 디시 edge is to modulate the CO2바카라 디시. That means rapidly turning the beam on and off. This still supplies enough heat to vaporize the material. But it doesn’t keep the 바카라 디시 on long enough for that heat to propagate very far into the substrate where it will melt material, rather than completely remove it.

There are two different ways to modulate a CO2바카라 디시. The first is to take a 바카라 디시 that produces continuous output and then chop that up into pulses with an external acousto-optic modulator. That’s what’s done in the CoherentDIAMOND Cx10LDE+, which is currently the most popular 바카라 디시 for cell and polarizer cutting in the FPD industry.

One reason the CX10-LDE+ is so widely used is that the modulator is directly built into it. This approach allows us to fully integrate the 바카라 디시 and modulator control electronics and therefore optimize total system performance. This is critical to reaching the precision in pulse control and power stability needed to achieve the process consistency and repeatability required by FPD manufacturers.

The second way to modulate a CO2바카라 디시 is q-switching. Here a modulator is placed inside the 바카라 디시 resonator itself so that the 바카라 디시 operates in a pulsed (rather than continuous) mode. This makes a big difference in how the 바카라 디시 operates. Thus, while an external modulator provides microsecond range pulse widths, q-switching produces much shorter, nanosecond regime pulse widths and also increases the peak pulse power dramatically.

These shorter pulses reduce the heat-affected zone even more, and also allow greater precision and control over the 바카라 디시 process. As a result, many FPD manufacturers are transitioning to this technology. The CoherentDIAMOND Cx-10LQS+is the only q-switched CO2바카라 디시 commercially available.

 

reliability saves money

Reliability saves money

Another reason whyCoherent 바카라 디시sare so widely used in cell and polarizer cutting is their lifetime and reliability, plus our global service infrastructure. Once again, FPD makers are producing very large volumes of products continuously. Production downtime to service or replace a 바카라 디시 has a huge productivity and cost impact. The unmatched lifetime of these 바카라 디시s – typically in the 10,000-to-20,000-hour range – ensures an uninterrupted flow of high-quality FPDs. And, when 바카라 디시 replacement is finally called for, Coherent’s worldwide inventory andquick-response service teamensure it’s swapped out without delay.

Learn more about our바카라 디시 solutions for display manufacturing.

 

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