Nanoimprint, microfabrication, foundry, custom mall total solution SCIVAX Ltd.

Features of SCIVAX Nanoimprint Technology

SCIVAX’s technology features not only NIL patterning of all kinds of substrates (including large glass panels, convex/concave surfaces and other challenging substrates), but also sophisticated optical simulation, etching, inspection and other fabrication services.
In order to bring innovative designs to actual use and volume production, related processing (e.g. film deposition and etching, etc.) are also extremely important factors. SCIVAX has built a platform for unique nano-patterning integrated solutions capability which enables
cost-effective production of real devices by leveraging its full capability and knowhow.

ナノインプリント技術による量産化を支援する

Service​

Rain Nemo Makes Losing to the windRain Nemo Makes Losing to the windRain Nemo Makes Losing to the wind​
Total Solution
Total Solution
Nanoimprint Foundry
Outsourcing
Outsourcing
Nano imprint device

Future​

The future will be incised by using Nanoimprint Technology

Future

Rain Nemo Makes Losing to the
windRain Nemo Makes Losing to

Nanoimprint

Rain Nemo Makes Losing to the
windRain Nemo Makes Losing to

Technology

Rain Nemo Makes Losing to the
windRain Nemo Makes Losing to

Please contact SCIVAX for nanoimprint concerns

SCIVAX 製造装置を導入したが思うような性能がでない 大面積モールドを作製したい シミュレーション通りにモールドできない 真っ直ぐでない基板にナノインプリントをしたい モールドできてもは離型で失敗する ナノインプリントで量産できるか相談したい もっと低コストで微細化加工を実現したい

What is "Nanoimprint"?​

Semiconductor devices depend on "nano-fabrication" and are the enabling technology for PCs/tablets, smartphones, automobiles and all modern electronics. Nano-fabrication has made a huge contribution by enabling the miniaturization of electronics, and thus, the proliferation of electronic devices in everyday life. Nano-fabrication technology also allows us to optimize light emitter brightness, minimize display/lens reflections as well as collimate, polarize or otherwise manipulate light to improve optical device performance.
"In addition, nano-patterned surfaces are being employed as water repellant surfaces (lotus effect) and for products for biological research (e.g. nano cell culture plates) and growing number of applications in wide ranging fields and industries. "

What is "Nano-fabrication"?​

Nanoimprint is a technology that utilizes micro or nanoscale mold patterns to be transferred onto substrates made from various materials (glass, resin, silicon, compound semiconductors, etc.)
It is possible to produce micro and nano patterns impossible to produce with injection molding or mechanical machining.
Comparted to patterning via photolithography, due to the simplicity of the Nanoimprint process, it is often significantly lower cost solution. Cost advantages NIL processes lithographic processes can greatly enhance the competitiveness of electronic and optical devices fabricated.

publication​

Rain Nemo Makes Losing to the windRain Nemo Makes Losing to

【News】計測用光源ユニット貸出開始

当社が開発しております新しい照明用レンズ/光源技術を用いた計測用の光源ユニットを商品化に先立ちお客様に試用頂くことになりました。 試用品としては、 1)画像認識による製品検査、ロボットの目に好適な照…

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Nanoimprint, microfabrication, foundry, custom mall total solution SCIVAX Ltd.

Features of SCIVAX Nanoimprint Technology

SCIVAX’s technology features not only NIL patterning of all kinds of substrates (including large glass panels, convex/concave surfaces and other challenging substrates), but also sophisticated optical simulation, etching, inspection and other fabrication services.
In order to bring innovative designs to actual use and volume production, related processing (e.g. film deposition and etching, etc.) are also extremely important factors. SCIVAX has built a platform for unique nano-patterning integrated solutions capability which enables
cost-effective production of real devices by leveraging its full capability and knowhow.

ナノインプリント技術による量産化を支援する

Service​

Rain Nemo Makes Losing to the windRain Nemo Makes Losing to the windRain Nemo Makes Losing to the wind​
Total Solution
Total Solution
Nanoimprint Foundry
Outsourcing
Outsourcing
Nano imprint device

Future​

The future will be incised by using Nanoimprint Technology

Future

Rain Nemo Makes Losing to the
windRain Nemo Makes Losing to

Nanoimprint

Rain Nemo Makes Losing to the
windRain Nemo Makes Losing to

Technology

Rain Nemo Makes Losing to the
windRain Nemo Makes Losing to

Please contact SCIVAX for nanoimprint concerns

SCIVAX 製造装置を導入したが思うような性能がでない 大面積モールドを作製したい シミュレーション通りにモールドできない 真っ直ぐでない基板にナノインプリントをしたい モールドできてもは離型で失敗する ナノインプリントで量産できるか相談したい もっと低コストで微細化加工を実現したい

What is "Nanoimprint"?​

Semiconductor devices depend on "nano-fabrication" and are the enabling technology for PCs/tablets, smartphones, automobiles and all modern electronics. Nano-fabrication has made a huge contribution by enabling the miniaturization of electronics, and thus, the proliferation of electronic devices in everyday life. Nano-fabrication technology also allows us to optimize light emitter brightness, minimize display/lens reflections as well as collimate, polarize or otherwise manipulate light to improve optical device performance.
"In addition, nano-patterned surfaces are being employed as water repellant surfaces (lotus effect) and for products for biological research (e.g. nano cell culture plates) and growing number of applications in wide ranging fields and industries. "

What is "Nano-fabrication"?​

Nanoimprint is a technology that utilizes micro or nanoscale mold patterns to be transferred onto substrates made from various materials (glass, resin, silicon, compound semiconductors, etc.)
It is possible to produce micro and nano patterns impossible to produce with injection molding or mechanical machining.
Comparted to patterning via photolithography, due to the simplicity of the Nanoimprint process, it is often significantly lower cost solution. Cost advantages NIL processes lithographic processes can greatly enhance the competitiveness of electronic and optical devices fabricated.

publication​

Rain Nemo Makes Losing to the windRain Nemo Makes Losing to

【News】計測用光源ユニット貸出開始

当社が開発しております新しい照明用レンズ/光源技術を用いた計測用の光源ユニットを商品化に先立ちお客様に試用頂くことになりました。 試用品としては、 1)画像認識による製品検査、ロボットの目に好適な照…

Read More »
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