Patent classifications
B29C59/002
SYSTEM AND METHODS FOR NANOIMPRINT LITHOGRAPHY
An imprint lithography system that pressurizes and depressurizes an air cavity behind a retained imprint template or substrate so as to deflect the template or substrate to aid in filling the template pattern with fluid resist and/or separating the template from the cured resist on the substrate. The system includes a controller, pressure sensors, and an impedance valve for modulating the air cavity pressure so as to reduce pressure wave oscillations within the cavity that otherwise negatively impact overlay accuracy control, fluid spread control and separation control.
IMPRINT APPARATUS, METHOD FOR MANUFACTURING ARTICLE, AND EXPOSURE APPARATUS
There is provided an imprint apparatus for forming a pattern of an imprint material on a substrate by using a mold, the imprint apparatus including a mold holding unit configured to hold the mold, and a substrate holding unit configured to hold the substrate, in which a particle is captured by generating a first region and a second region charged to different polarities in at least either one of a peripheral region of a region covered by the mold of the mold holding unit and a peripheral region of a region covered by the substrate of the substrate holding unit.
IDENTIFICATION DOCUMENTS WITH RADIATION CURABLE MATERIAL AND RELATED METHODS
Systems and methods wherein one or more processing operations on an identification document occur after a radiation curable material is applied to a surface of the identification document but before the radiation curable material is fully cured. The one or more processing operations can occur before any curing of the radiation curable material takes place. Alternatively, the one or more processing operations can occur after the radiation curable material has been partially cured, and before the radiation curable material is fully or completely cured.
Vented tooling belt for production of structured surfaces
Various geometries are described for forming retroreflective structures in polymeric sheets or films. The geometries enable venting of volatile gases that can otherwise become trapped between the embossing surface and the polymeric sheet or film. The geometries are incorporated in tooling belts or other pattern forming surfaces.
Nanostructure die, embossing roll, device and method for continuous embossing of nanostructures
A nanostructure die with a concavely curved nanostructured die surface for seamless embossing of at least one peripheral ring of a jacket surface of an embossing roll in a step-and-repeat process and an embossing roll for continuous embossing of nanostructures with an embossing layer, which has been applied on a body of revolution, with a jacket surface with at least one peripheral ring which is made seamless at least in the peripheral direction and which is embossed in the step-and-repeat process. Furthermore, the invention relates to a method and a device for producing such an embossing roll for continuous embossing of nanostructures as well as a method for producing such a nanostructure die and a method for producing an embossing substrate.
NANOPATTERNED MEDICAL DEVICE WITH ENHANCED CELLULAR INTERACTION
A medical device for delivering a drug compound through a stratum corneum includes a support having an aperture, an array of microneedles extending outwardly from the support, a plurality of nanostructures associated with each microneedle, and a reservoir wherein the drug compound is retained. At least one microneedle contains a shaft extending from the support. The shaft includes a tip configured to penetrate the stratum corneum. The shaft defines a channel extending from the support to the tip. The channel is in at least partial alignment with the aperture. At least some of the microneedles of the array of microneedles each have a cross-sectional dimension of from about 1 micrometer to about 1 millimeter. At least some of the nanostructures have a cross-sectional dimension less than about 500 nanometers and greater than about 5 nanometers and an aspect ratio of from about 0.2 to about 5.
SILICONE RUBBER ROLLER FOR EMBOSSING, PLASTIC FILM PRODUCTION METHOD, A PRODUCTION DEVICE USING SAME, AND SURFACE PROTECTION FILM
A silicone embossing rubber roller has no fine depression defects on the surface and, furthermore, is not liable to produce protrusions on an embossed plastic film surface. The silicone rubber roller is such that the silicone rubber layer on the surface contains spherical solid particles, and the spherical solid particles having a particle size of 0.8 μm or smaller and the spherical solid particles having a particle size of 30 μm or larger respectively occupy 1% or less of the volume of all the spherical solid particles.
Systems and Methods for Reducing Pressure While Shaping a Film
Systems and methods of shaping a patterned or planarized film layer. Which may include contacting formable material on a substrate with a template during a contacting period, Which may also include reducing, during the contacting period, a pressure in an environment beyond an edge of the substrate from a first pressure to a second pressure, while the template is contacting the formable material.
PATTERN FORMING METHOD, IMPRINT APPARATUS, AND ARTICLE MANUFACTURING METHOD
A pattern forming method of forming, with a mold, a pattern on a substrate held by a substrate holding unit capable of changing a holding force for each holding region includes setting, with a plurality of shot regions corresponding to a first holding region as a target for pattern formation, a first holding force in the first holding region smaller than a second holding force in a second holding region different from the first holding region, coating, with an imprint material, a region including the plurality of shot regions corresponding to the first holding region, and forming the pattern on the substrate by bringing the imprint material, with which the plurality of shot regions corresponding to the first holding region is coated, and the mold in contact with each other.
SIGNALING ARRANGEMENTS EMPLOYING MOLDED THERMOPLASTICS
A thermoplastic resin, such as PET, is molded to define a 2D code signal, such as a digital watermark pattern. The mold can comprise an array of hole or spike features, some of which are directly vented to atmospheric pressure. A network of channels can link the other features to the directly-vented features, so all features are vented. A mold comprising spike features can form a digital watermark pattern on an item such that the watermark payload is decodable both from the side of the item that contacted the mold, and also from the opposite, non-contact side of the item. To aid entry of viscous thermoplastic among the very fine elemental features of a mold representing a watermark signal pattern, the features can be overlapped, forming a connected binary mark having larger features. A variety of other improvements and arrangements are also detailed.