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Jonathan Chang

Panasonic

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Jonathan Chang | Panasonic: How does Panasonic's Fine Cross technology differ from conventional copper mesh processes?

00:00:43 - 00:00:54

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Summary of the clip:

How does Panasonic's Fine Cross technology differ from conventional copper mesh processes?

Panasonic's Fine Cross technology involves a unique process of creating grooves on PET or PC materials. Copper is then deposited within these grooves. This is achieved through a roll-to-roll manufacturing process, enabling the production of very long rolls of the material. The process also supports the creation of two-layer structures, with patterns on both the top and bottom layers.

The key differentiator of this technology is the embedding of the copper within the substrate, as opposed to conventional copper mesh processes where the copper sits on top. This embedding results in a smoother surface. Furthermore, the technology allows for the creation of very narrow, two-micron width lines, contributing to higher transparency compared to conventional solutions.

The roll-to-roll nature of the process allows for scalability and cost-effectiveness in manufacturing. The ability to create customizable patterns and multi-layer structures expands the range of potential applications for the technology. This approach offers a balance between conductivity, transparency, and surface smoothness, making it suitable for various applications.

In this short video, you can learn:
* The core manufacturing process of Fine Cross technology.
* How Fine Cross differs from traditional copper mesh.
* The advantages of Fine Cross in terms of surface smoothness and transparency.

📋 **Clip Abstract** This segment details Panasonic's Fine Cross technology, highlighting its unique groove-based copper embedding process and its advantages over conventional copper mesh. The roll-to-roll manufacturing and customizable patterns are also discussed.
🔗 Link in comments 👇

#FineCrossTechnology, #CopperEmbedding, #RollToRollManufacturing, #MicronLineWidth, #TransparentConductors, #FlexibleElectronics

This is a highlight of the presentation:

FineX: Panasonic’s Roll-to-Roll Solution for Next-Generation Transparent Conductive Films

The Future of Electronics RESHAPED USA | Boston 2100

UMass Boston

Organised By:

TechBlick

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00:02:28 - 00:02:38

What advantages does Fine Cross offer over ITO in heating applications, particularly for EVs?

What advantages does Fine Cross offer over ITO in heating applications, particularly for EVs?

Fine Cross technology offers significant advantages over Indium Tin Oxide (ITO) in heating applications, particularly relevant for electric vehicles (EVs). Due to its low resistance, Fine Cross enables a much faster ramp-up in heat temperature compared to conventional ITO solutions. This rapid heating capability is crucial for applications like de-icing and defogging in automotive systems.

Furthermore, Fine Cross allows for lower power consumption through pulsing. Unlike ITO, which requires a constant voltage to maintain heat, Fine Cross can achieve the desired temperature with intermittent pulses. This is particularly beneficial for EVs, where energy efficiency is paramount, and conserving power extends the vehicle's range.

The ability to use pulsing to maintain heat not only saves power but also prevents the film from overheating, which could potentially damage the wires. This combination of faster heating and lower power consumption makes Fine Cross a compelling alternative to ITO in various heating applications, especially in the context of electric vehicles.

In this short video, you can learn:
* How Fine Cross achieves faster heating compared to ITO.
* The power-saving benefits of using pulsing with Fine Cross.
* The relevance of these advantages for electric vehicle applications.

📋 **Clip Abstract** This segment compares Fine Cross to ITO for heating applications, emphasizing its faster heating and lower power consumption through pulsing, which is particularly advantageous for electric vehicles.
🔗 Link in comments 👇

#FineCross, #IndiumTinOxide, #ResistiveHeating, #PulsedHeating, #ElectricVehicles, #AutomotiveTech

00:05:56 - 00:06:07

How can Fine Cross be used as a transparent PCB for LEDs, and what advantages does it offer?

How can Fine Cross be used as a transparent PCB for LEDs, and what advantages does it offer?

Fine Cross technology can be utilized as a transparent printed circuit board (PCB) for LEDs, offering high transparency for applications such as micro-LED and mini-LED displays. The flat surface of Fine Cross, achieved through its unique manufacturing process, simplifies the thin-layer deposition process, making it easier to handle and produce compared to conventional PCBs. This facilitates faster response times and improved color uniformity in LED displays.

The customizable patterning capabilities of Fine Cross allow for precise control over light diffusion, minimizing diffraction and ensuring a smooth surface for LED mounting. This is particularly important for achieving uniform brightness and color across the display. The roll-to-roll manufacturing process enables the production of large rolls of transparent PCBs, facilitating scalability and cost-effectiveness.

Compared to standard mesh and ITO solutions, Fine Cross offers superior performance in terms of transmittance, maintaining high levels of transparency while providing the necessary conductivity for powering the LEDs. This combination of transparency, ease of manufacturing, and customizable patterning makes Fine Cross an attractive option for transparent LED display applications.

In this short video, you can learn:
* How Fine Cross can function as a transparent PCB for LEDs.
* The benefits of its flat surface for thin-layer deposition.
* Its superior transmittance compared to standard mesh and ITO.

📋 **Clip Abstract** This segment discusses the use of Fine Cross as a transparent PCB for LEDs, highlighting its advantages in terms of manufacturing, light diffusion control, and superior transmittance compared to conventional materials.
🔗 Link in comments 👇

#FineCross, #TransparentPCB, #RollToRollManufacturing, #ThinFilmDeposition, #MicroLED, #MiniLED

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