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What is nanolithography? | #STEM #Nanoscience for kids
Mike Deagan is a scientist at RPI (Rensselaer Polytechnic Institute) who studeis nanolithography techniques for making tiny computer chips that go into our phones and other technology. Want to learn more about nanoscience and nano technologies? Visit Curiosity Machine for lesson plans, engineering activities, and more: https://www.curiositymachine.org/challenges/161
Or watch our nanotechnology playlist: https://youtu.be/gl1mXVm2izQ
Technovation is the global tech education nonprofit that inspires girls to be leaders and problem solvers in their lives and their community ➡️ https://www.technovation.org/
👩🏾💻 Explore our Technovation Girls free STEM education program: https://technovationchallenge.org/
🎬 Watch Technovation girls learn how to code apps and make a difference in their commun...
published: 10 Sep 2018
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Nanoimprint Lithography (Canon Official)
Nanoimprint Lithography "stamps" extremely fine patterns to form circuits.
Canon's nanoimprint lithography technology enables both miniaturization and cost reduction. What's more, this technology is expected to significantly reduce power consumption during manufacturing.
Canon's special video site "Canon Video Square"
https://global.canon/en/v-square/
---
[関連動画]
How diagnostic ultrasound systems work (Canon Official)
https://youtu.be/JL-SB3JWmr0
---
Subscribe to the official Canon Imaging Plaza YouTube channel
https://www.youtube.com/user/canonimagingplaza
Official Canon website
https://global.canon/
---
#CanonOfficial #NIL #Nanoimprint #NanoimprintLithography
published: 26 Feb 2023
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microlithography and nanolithography explained
brief explanation of the microlithographic process
published: 15 Jul 2011
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Nanolithography Meaning
Video shows what nanolithography means. the use of lithography to fabricate nanoscale patterns. Nanolithography Meaning. How to pronounce, definition audio dictionary. How to say nanolithography. Powered by MaryTTS, Wiktionary
published: 02 May 2015
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Eulitha Lithography for Photonics, nanolithography services/equipment for research and production
Discover the cutting-edge world of lithography solutions for photonic devices in this captivating video filmed at Display Week 2023 in Los Angeles, where Kelsey Wooley, the Director of North American Operations for Eulitha, and Tariq Ghous, Strategic Director for Marketing, unveil their unique and innovative approach of Eulitha, a Swiss company.
Their revolutionary mask-based interference lithography technique, known as Talbot, stands out for its ability to produce high-resolution structures in large fields quickly and cost-effectively. With seamless patterning capabilities, they can image an entire 140 by 140 millimeter exposure field in a single exposure, achieving a remarkable resolution down to 60 nanometer half pitch. Their DU V capabilities allow them to run 30 wafers per hour, maki...
published: 14 Jun 2023
-
Medical 3D-Nanolithography for Additive Manufacturing
In the TIMed CENTER Core Facility "Medical 3D-Nanolithography for Additive Manufacturing" at the campus Linz, researchers of the University of Applied Sciences produce biocompatible 3D-structures made of chemically functional polymers. In this context, methods like multiphoton lithography and UV lithography enable researchers to manufacture 3D-structures on a micro- and nanometer-scale.
published: 15 Oct 2018
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WHAT IS NANOLITHOGRAPHY
NANOLITHOGRAPHY,
published: 02 Apr 2020
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Photolithography: Step by step
published: 24 Nov 2015
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Basic Silicon Photolithography Animation
The video covers a simplified animation of common steps used in a simple SiO2 patterning photolithography process.
In integrated circuit manufacturing, photolithography or optical lithography is a general term used for techniques that use light to produce minutely patterned thin films of suitable materials over a substrate, such as a silicon wafer, to protect selected areas of it during subsequent etching, deposition, or implantation operations. Typically, ultraviolet light is used to transfer a geometric design from an optical mask to a light-sensitive chemical (photoresist) coated on the substrate. The photoresist either breaks down or hardens where it is exposed to light. The patterned film is then created by removing the softer parts of the coating with appropriate solvents.
published: 11 Jul 2022
-
Dip Pen Nanolithography with Lipid Inks
Dip-pen nanolithography (DPN) technique allow controlling the composition and geometry of the biomimetic lipid assembly in the nano-scale.
published: 03 Feb 2015
2:23
What is nanolithography? | #STEM #Nanoscience for kids
Mike Deagan is a scientist at RPI (Rensselaer Polytechnic Institute) who studeis nanolithography techniques for making tiny computer chips that go into our phon...
Mike Deagan is a scientist at RPI (Rensselaer Polytechnic Institute) who studeis nanolithography techniques for making tiny computer chips that go into our phones and other technology. Want to learn more about nanoscience and nano technologies? Visit Curiosity Machine for lesson plans, engineering activities, and more: https://www.curiositymachine.org/challenges/161
Or watch our nanotechnology playlist: https://youtu.be/gl1mXVm2izQ
Technovation is the global tech education nonprofit that inspires girls to be leaders and problem solvers in their lives and their community ➡️ https://www.technovation.org/
👩🏾💻 Explore our Technovation Girls free STEM education program: https://technovationchallenge.org/
🎬 Watch Technovation girls learn how to code apps and make a difference in their communities: https://youtube.com/playlist?list=PLaisj5ariFBd8lF_njQ-naycihS1WFk_x
🙋🏽 Learn how you can be a mentor or Technovation partner: https://www.technovation.org/corporate-partners/
Instagram: https://www.instagram.com/technovationglobal
Twittter: https://twitter.com/technovation
Facebook: https://www.facebook.com/technovationglobal
Linkedin: https://www.linkedin.com/company/technovationglobal/
#Technovation #WomeninSTEM
https://wn.com/What_Is_Nanolithography_|_Stem_Nanoscience_For_Kids
Mike Deagan is a scientist at RPI (Rensselaer Polytechnic Institute) who studeis nanolithography techniques for making tiny computer chips that go into our phones and other technology. Want to learn more about nanoscience and nano technologies? Visit Curiosity Machine for lesson plans, engineering activities, and more: https://www.curiositymachine.org/challenges/161
Or watch our nanotechnology playlist: https://youtu.be/gl1mXVm2izQ
Technovation is the global tech education nonprofit that inspires girls to be leaders and problem solvers in their lives and their community ➡️ https://www.technovation.org/
👩🏾💻 Explore our Technovation Girls free STEM education program: https://technovationchallenge.org/
🎬 Watch Technovation girls learn how to code apps and make a difference in their communities: https://youtube.com/playlist?list=PLaisj5ariFBd8lF_njQ-naycihS1WFk_x
🙋🏽 Learn how you can be a mentor or Technovation partner: https://www.technovation.org/corporate-partners/
Instagram: https://www.instagram.com/technovationglobal
Twittter: https://twitter.com/technovation
Facebook: https://www.facebook.com/technovationglobal
Linkedin: https://www.linkedin.com/company/technovationglobal/
#Technovation #WomeninSTEM
- published: 10 Sep 2018
- views: 9507
3:40
Nanoimprint Lithography (Canon Official)
Nanoimprint Lithography "stamps" extremely fine patterns to form circuits.
Canon's nanoimprint lithography technology enables both miniaturization and cost redu...
Nanoimprint Lithography "stamps" extremely fine patterns to form circuits.
Canon's nanoimprint lithography technology enables both miniaturization and cost reduction. What's more, this technology is expected to significantly reduce power consumption during manufacturing.
Canon's special video site "Canon Video Square"
https://global.canon/en/v-square/
---
[関連動画]
How diagnostic ultrasound systems work (Canon Official)
https://youtu.be/JL-SB3JWmr0
---
Subscribe to the official Canon Imaging Plaza YouTube channel
https://www.youtube.com/user/canonimagingplaza
Official Canon website
https://global.canon/
---
#CanonOfficial #NIL #Nanoimprint #NanoimprintLithography
https://wn.com/Nanoimprint_Lithography_(Canon_Official)
Nanoimprint Lithography "stamps" extremely fine patterns to form circuits.
Canon's nanoimprint lithography technology enables both miniaturization and cost reduction. What's more, this technology is expected to significantly reduce power consumption during manufacturing.
Canon's special video site "Canon Video Square"
https://global.canon/en/v-square/
---
[関連動画]
How diagnostic ultrasound systems work (Canon Official)
https://youtu.be/JL-SB3JWmr0
---
Subscribe to the official Canon Imaging Plaza YouTube channel
https://www.youtube.com/user/canonimagingplaza
Official Canon website
https://global.canon/
---
#CanonOfficial #NIL #Nanoimprint #NanoimprintLithography
- published: 26 Feb 2023
- views: 50660
0:29
Nanolithography Meaning
Video shows what nanolithography means. the use of lithography to fabricate nanoscale patterns. Nanolithography Meaning. How to pronounce, definition audio dic...
Video shows what nanolithography means. the use of lithography to fabricate nanoscale patterns. Nanolithography Meaning. How to pronounce, definition audio dictionary. How to say nanolithography. Powered by MaryTTS, Wiktionary
https://wn.com/Nanolithography_Meaning
Video shows what nanolithography means. the use of lithography to fabricate nanoscale patterns. Nanolithography Meaning. How to pronounce, definition audio dictionary. How to say nanolithography. Powered by MaryTTS, Wiktionary
- published: 02 May 2015
- views: 1342
10:39
Eulitha Lithography for Photonics, nanolithography services/equipment for research and production
Discover the cutting-edge world of lithography solutions for photonic devices in this captivating video filmed at Display Week 2023 in Los Angeles, where Kelsey...
Discover the cutting-edge world of lithography solutions for photonic devices in this captivating video filmed at Display Week 2023 in Los Angeles, where Kelsey Wooley, the Director of North American Operations for Eulitha, and Tariq Ghous, Strategic Director for Marketing, unveil their unique and innovative approach of Eulitha, a Swiss company.
Their revolutionary mask-based interference lithography technique, known as Talbot, stands out for its ability to produce high-resolution structures in large fields quickly and cost-effectively. With seamless patterning capabilities, they can image an entire 140 by 140 millimeter exposure field in a single exposure, achieving a remarkable resolution down to 60 nanometer half pitch. Their DU V capabilities allow them to run 30 wafers per hour, making their process exceptionally fast and cost-effective.
Unlike traditional projection-based lithography methods, their tools offer superior affordability, making them ideal for customers in various industries such as AR, VR, laser, telecom, and more. Whether it's waveguides, diffraction gratings, polarizers, or other photonic structures, their lithography solution is indispensable.
In this video, we delve into the significance of their technology in the display industry. By employing mask-based interference lithography, they create periodic patterns that are vital for achieving high resolution in displays. They explain how their lithography technique is essential for the future of this industry.
Get a closer look at their state-of-the-art Fable R, Fable X, and Fable S machines, designed to cater to different needs. The Fable R, a tabletop tool, offers a low-cost entry point and is perfect for proof of concept and research purposes. The Fable X takes it a step further with larger wafer sizes and automation, enabling faster throughput and higher reliability. Finally, for those ready to venture into 300-millimeter wafers, their step-and-repeat system provides seamless exposure fields and full automation for high-volume production.
Witness how their lithography solution plays a pivotal role in the creation of displays. They illustrate how line space diffractive gratings, controlled by their technology, enhance the performance of augmented reality waveguides. Discover the incredible potential and booming market for their lithography tools in various sectors, including micro LEDs and holographic elements.
As a Swiss-based company, they pride themselves on precision and excellence. Their machines are manufactured in Switzerland, ensuring top-notch quality and reliability. With a global reach, they serve customers worldwide, with over half of their machines already in use in China.
Join them on this fascinating journey as they redefine the future of lithography and pave the way for groundbreaking innovations in the display industry. Stay tuned for more updates and exciting developments from their headquarters in Switzerland and their US office in Redmond, Washington.
Support this channel:
Sign up for free for Wise at http://wise.charbax.com - world's cheapest international money transfer, currency exchange and debit card for traveling - Donate to me to my Wise account at charbax@gmail.com (or send me a YouTube Thanks or Super Chat during live stream) if you want I can mention you in my next video. Value for value 😁
Check out my Display Week 2023 sponsors https://www.youtube.com/playlist?list=PL7xXqJFxvYvjCrPLmMguxH5aIl4y75Lr- and https://www.youtube.com/playlist?list=PL7xXqJFxvYvhNinXlfK22GotQv-7gjT4H both of whom I will soon be filming new videos with, so check back!
https://wn.com/Eulitha_Lithography_For_Photonics,_Nanolithography_Services_Equipment_For_Research_And_Production
Discover the cutting-edge world of lithography solutions for photonic devices in this captivating video filmed at Display Week 2023 in Los Angeles, where Kelsey Wooley, the Director of North American Operations for Eulitha, and Tariq Ghous, Strategic Director for Marketing, unveil their unique and innovative approach of Eulitha, a Swiss company.
Their revolutionary mask-based interference lithography technique, known as Talbot, stands out for its ability to produce high-resolution structures in large fields quickly and cost-effectively. With seamless patterning capabilities, they can image an entire 140 by 140 millimeter exposure field in a single exposure, achieving a remarkable resolution down to 60 nanometer half pitch. Their DU V capabilities allow them to run 30 wafers per hour, making their process exceptionally fast and cost-effective.
Unlike traditional projection-based lithography methods, their tools offer superior affordability, making them ideal for customers in various industries such as AR, VR, laser, telecom, and more. Whether it's waveguides, diffraction gratings, polarizers, or other photonic structures, their lithography solution is indispensable.
In this video, we delve into the significance of their technology in the display industry. By employing mask-based interference lithography, they create periodic patterns that are vital for achieving high resolution in displays. They explain how their lithography technique is essential for the future of this industry.
Get a closer look at their state-of-the-art Fable R, Fable X, and Fable S machines, designed to cater to different needs. The Fable R, a tabletop tool, offers a low-cost entry point and is perfect for proof of concept and research purposes. The Fable X takes it a step further with larger wafer sizes and automation, enabling faster throughput and higher reliability. Finally, for those ready to venture into 300-millimeter wafers, their step-and-repeat system provides seamless exposure fields and full automation for high-volume production.
Witness how their lithography solution plays a pivotal role in the creation of displays. They illustrate how line space diffractive gratings, controlled by their technology, enhance the performance of augmented reality waveguides. Discover the incredible potential and booming market for their lithography tools in various sectors, including micro LEDs and holographic elements.
As a Swiss-based company, they pride themselves on precision and excellence. Their machines are manufactured in Switzerland, ensuring top-notch quality and reliability. With a global reach, they serve customers worldwide, with over half of their machines already in use in China.
Join them on this fascinating journey as they redefine the future of lithography and pave the way for groundbreaking innovations in the display industry. Stay tuned for more updates and exciting developments from their headquarters in Switzerland and their US office in Redmond, Washington.
Support this channel:
Sign up for free for Wise at http://wise.charbax.com - world's cheapest international money transfer, currency exchange and debit card for traveling - Donate to me to my Wise account at charbax@gmail.com (or send me a YouTube Thanks or Super Chat during live stream) if you want I can mention you in my next video. Value for value 😁
Check out my Display Week 2023 sponsors https://www.youtube.com/playlist?list=PL7xXqJFxvYvjCrPLmMguxH5aIl4y75Lr- and https://www.youtube.com/playlist?list=PL7xXqJFxvYvhNinXlfK22GotQv-7gjT4H both of whom I will soon be filming new videos with, so check back!
- published: 14 Jun 2023
- views: 677
1:56
Medical 3D-Nanolithography for Additive Manufacturing
In the TIMed CENTER Core Facility "Medical 3D-Nanolithography for Additive Manufacturing" at the campus Linz, researchers of the University of Applied Sciences ...
In the TIMed CENTER Core Facility "Medical 3D-Nanolithography for Additive Manufacturing" at the campus Linz, researchers of the University of Applied Sciences produce biocompatible 3D-structures made of chemically functional polymers. In this context, methods like multiphoton lithography and UV lithography enable researchers to manufacture 3D-structures on a micro- and nanometer-scale.
https://wn.com/Medical_3D_Nanolithography_For_Additive_Manufacturing
In the TIMed CENTER Core Facility "Medical 3D-Nanolithography for Additive Manufacturing" at the campus Linz, researchers of the University of Applied Sciences produce biocompatible 3D-structures made of chemically functional polymers. In this context, methods like multiphoton lithography and UV lithography enable researchers to manufacture 3D-structures on a micro- and nanometer-scale.
- published: 15 Oct 2018
- views: 499
1:07
Basic Silicon Photolithography Animation
The video covers a simplified animation of common steps used in a simple SiO2 patterning photolithography process.
In integrated circuit manufacturing, photoli...
The video covers a simplified animation of common steps used in a simple SiO2 patterning photolithography process.
In integrated circuit manufacturing, photolithography or optical lithography is a general term used for techniques that use light to produce minutely patterned thin films of suitable materials over a substrate, such as a silicon wafer, to protect selected areas of it during subsequent etching, deposition, or implantation operations. Typically, ultraviolet light is used to transfer a geometric design from an optical mask to a light-sensitive chemical (photoresist) coated on the substrate. The photoresist either breaks down or hardens where it is exposed to light. The patterned film is then created by removing the softer parts of the coating with appropriate solvents.
https://wn.com/Basic_Silicon_Photolithography_Animation
The video covers a simplified animation of common steps used in a simple SiO2 patterning photolithography process.
In integrated circuit manufacturing, photolithography or optical lithography is a general term used for techniques that use light to produce minutely patterned thin films of suitable materials over a substrate, such as a silicon wafer, to protect selected areas of it during subsequent etching, deposition, or implantation operations. Typically, ultraviolet light is used to transfer a geometric design from an optical mask to a light-sensitive chemical (photoresist) coated on the substrate. The photoresist either breaks down or hardens where it is exposed to light. The patterned film is then created by removing the softer parts of the coating with appropriate solvents.
- published: 11 Jul 2022
- views: 26750
0:31
Dip Pen Nanolithography with Lipid Inks
Dip-pen nanolithography (DPN) technique allow controlling the composition and geometry of the biomimetic lipid assembly in the nano-scale.
Dip-pen nanolithography (DPN) technique allow controlling the composition and geometry of the biomimetic lipid assembly in the nano-scale.
https://wn.com/Dip_Pen_Nanolithography_With_Lipid_Inks
Dip-pen nanolithography (DPN) technique allow controlling the composition and geometry of the biomimetic lipid assembly in the nano-scale.
- published: 03 Feb 2015
- views: 5127