`
`INNOLUX CORPORATION V. PATENT OF SEMICONDUCTOR ENERGY
`
`LABORATORY CO., LTD.
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`|PR2013—00066
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`
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`Technology | SIJTechnology, Inc. of super—fine inkjet technology
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`3!: WTWMDMEY. lmi
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`' Contact
`-Catalag Download 8’1
`
`Technology
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`
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`SlJTechnology, Inc. is engaged in the research and development of super-fine inkjet technology based on the research results developed by the
`National Institute of Advanced Industrial Science and Technology (AIST).
`
`I Features of super-fine inkjet technology
`The super—fine inkjet technology developed by the Nanotechnology Research Institute of AIST allows the ejection of super-fine droplets much
`smaller than the conventional droplets ejected by a conventional lnkjet printer—less than 1/10 the size and less than 1/1000 the volume of
`conventional droplets.
`
`Manet
`less than moor;
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`Droplets elected 1mm
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`Droplets elected tram
`the super-line inlg‘et
`print-head
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`I Awards
`March 8, 2002
`Nano—Tech Award (on Nano Fabrication Technology) at the 1st International Nanotechnology Exhibition and Conference, nano tech 2002.
`April 1, 2004
`AIST President Award 2004 (Real Research Award).
`June 20, 2004
`Nippon Keidanren Chairman‘s Award of the Conference for the Promotion of Collaboration among Industry, Academia and Government.
`April 19, 2006
`A paper, "Fine Pitch Micro—bumps and Micro-wires Printed by Super lnkjet Technology,” published in ICEP2005 won the best-paper award.
`October 27, 2006
`Special Award of the 2nd Tsukuba Venture Award (Tsukuba High-Tech Award).
`April 4, 2012
`Super lnkjet Head Unit won an Excellence Award at 24th Small and Medium Enterprise New technology/Product Award.
`August 9, 2012
`Our advertisements on “nature" won the Award of “Honoring Advertising Excellence".
`November 20, 2012
`Superfine lnkjet printer won the Excellence prize of the Tokyo Venture Technology Award.
`February 1, 2013
`Printable Electronics Award (Originality Award) at the Printable EIectronicsZOtS.
`June 12, 2013
`We won the technology award with development of Super lnkjet technology from the Imaging Society of Japan.
`
`I Precision placement of nano-materials
`Critical to the implementation of nanotechnology is a deposition methodology that allows novel materials to be precisely added to conventional
`CMOS components in a scalable manner. Out super-fine inkjet technology enables the precise arrangement of various nanomaterials on a any
`type substrate.
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`Technology | SIJTechnology, Inc. of super—fine inkjet technology
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`- Functional ceramics
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`- Electro-conductive polymer
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`
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`
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`- Carbon nanotube
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`IMaskless precision patterning
`
`
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`I Using nanopaste to Vclra'wra super-fine wiring pattern
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`Photo credits
`Dr. Takashi lijima
`Research institute of instrumentation Frontier
`The National institute of Advanced industrial
`Science and Technology
`
`Photo credits
`Dr. Wataru Mizutani
`Nanotechnology Research institute
`The National institute of Advanced industrial
`Science and Technology
`
`Photo credits
`Associate Prof. Hiroki Ago
`Institute for Materials Chemistry and Engineering
`Kyushu University
`
`With traditional patterning method satisfactory
`liquid placements is a challenge as bulges may
`develop due to the surface tension of the liquid
`The effect is exacerbated as feature sizes
`approach 10 microns and lower‘ Our super~fine
`inkjet technology effectively avoids this problem by
`accelerating the drying of a line, thus minimizing
`the disruption in a pattem formed in a liquid state.
`
`An interesting aspect to metals is that for particles
`smaller than 20 nm in diameter. the effective
`melting point decreases dramatically. For example,
`the melting point of a super—fine silver particle may
`be as low as room temperature, whereas 3 micron
`sized particle of silver melts at 961°C! Using a
`solution with these nano-size particles as ink, with
`out novel printer, enables maskiess patterning with
`a line width of several microns, which is
`comparable to the photolithographic methods, but
`at room temperature and normal atmospheric
`pressure!
`
`Because super—fine liquid droplets dry very quickly,
`the droplets can be accumulated to form a three—
`dimensional structure by shooting them at a fixed
`target.
`
`Copyright © 2005-2013 SiJTechnoiogy, inc.Ail Rights Reserved
`
`
`
`Products | SIJ Technology, Inc. of super-fine inkjet technology
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`Products
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` Products
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`I Super inkjet printer
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`atmospheric pressure.
`
`Out super-fine inkjet system is compact and can be placed
`on a desktop. The system allows single micron scale
`patterns comparable to the photolithographic methods to be
`drawn directly under normal temperature and normal
`
`
`
`please contact for more details.
`Tel:029-855-7057
`
`Email:info@siitechnologytcom
`
`I Features
`
`ODroplet volume:0.1fl (femtoliter)~10pl (picoliter), Line width 0.5pm ~ several dozen um.
`OViscosity range :0.5~10,000cps (non—heated).
`OLarge variety of usable fluids:Conductive ink, insulating ink, Resist ink, UV ink, Solvent ink, Protein
`material, etc.
`OSoftware : Easily programmable for printing.
`ONozzle:Disposable, Low cost, easily-exchangeable.
`OCamera : Real-time observation, You can see what's going on the substrate.
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`I Example of Application
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`
`
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`Silver ink
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`.
`.
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`Line.3pm
`Distance:15pm
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`.
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`Gold ink
`Circuit pattern
`.
`.
`line-under10 m
`IIne.5um
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`Pitch:50um u ‘
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`Products | 81]Technology, Inc. of super-fine inkjet technology
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`Protein material
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`(albumin)
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`Microlens(resin ink)
`Diameterzlopm
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`Micro QRcode
`Size:D250pm
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`-LED
`-Touch panels
`-Solar—cells
`OAdvanced technology -Printable electronics
`OAlternative technology
`-Partia|platings
`-Resists coating -Bumps forming -Dispenserdevices
`OOpticstechnology
`-Photomasks
`-Microlenses
`-Microfilters
`OBiotechnology
`-Pipetting device ofprotein material
`-Cell scaffolds
`
`-Microarrays
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`Copyright © 2005-2013 SlJTechnology, lnc.All Rights Reserved
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