摘要:
An injection-compression molding die capable of maintaining the position of an injection-compression molded article inside a molding space (30) after the injection-compression molded article is molded. A second die (2) is provided with a compression block (12) for reducing the volume of the molding space (30) and compressing a molding resin (31) loaded therein, and an external peripheral plate (11) positioned in the external periphery of the compression block (12). The positional relationship between the compression block (12) and the external peripheral plate (11) can be varied without changing the positional relationship between the external peripheral plate (11) and an ejector pin (24) for ejecting the injection-compression molded article from the second die (2).
摘要:
Provided are a narrow frame touch input sheet, manufacturing method of the same, and conductive sheet used in the narrow frame touch input sheet, which are suitable for a capacitive touch sensor having a narrow frame and two layers of transparent conductive film patterns. The method uses the conductive sheet including one or more transparent base sheets stacked into a layer, transparent conductive films, light-excluding conductive electrode films, and first resist layers, which are layered sequentially on the uppermost and lowermost surfaces thereof. The first resist layers are exposed simultaneously on the both surfaces, and after development, the transparent conductive films and the light-excluding conductive electrode films are simultaneously etched, the first resist layers are stripped away, then second resist layers are formed as coating on the both surfaces in an outer edge portion, so that the light-excluding conductive electrode films are etched only in the central window portions. Thus, circuit patterns of the transparent conductive films are exposed.
摘要:
Problem Solved To protect a plurality of microneedles on a microneedle sheet. Solution A microneedle-sheet packaging body 1 includes a microneedle sheet 5, a forming sheet 3, and a support body 7. The microneedle sheet 5 includes a substrate 10, and a plurality of microneedles 11 formed on a lower surface of the substrate 10. The forming sheet 3 is tightly adhered to the lower surface of the substrate 10. The forming sheet 3 incudes a plurality of micro-recess parts 13 in which the plurality of microneedles 11 are housed. The support body 7 is fixed to an upper surface of the substrate 10 of the microneedle sheet 5 and is further fixed to the forming sheet 3 around the substrate 10.
摘要:
To protect a plurality of conical projections of a conical-projections sheet. A method of manufacturing a conical-projections-sheet packaging body 1 including: a step of forming a plurality of conical-recess parts 34b on a conical-projections forming sheet 34; a step of forming, by supplying a conical-projections material to the conical-projections forming sheet 34, a conical-projections sheet 23 including a base sheet 23a and a plurality of conical projections 23b formed on a surface of the base sheet 23a and disposed inside the plurality of conical-recess parts 34b; a step of forming a plurality of sets of the conical-projections forming sheets 34 and the conical-projections sheets 23 by punching out the conical-projections forming sheets 34 and the conical-projections sheets 23; and a step of using a package member 5 to package a set of the conical-projections sheets 23 and the conical-projections forming sheets 34 tightly adhered to one another.
摘要:
A conical-projections-sheet packaging body (1) includes a conical-projections sheet (23), a conical-projections forming sheet (7), and a sealing sheet (9). The conical-projections sheet (23) includes a substrate (23a) and a plurality of conical projections (23b) formed on a surface (23c) of the substrate (23a). The conical-projections forming sheet (7) has a plurality of conical-recess parts (33a), which is used to form the plurality of conical projections (23b) and wherein the plurality of conical projections (23b) is disposed. The conical-projections forming sheet (7) protects the conical projections (23b) in a state wherein the plurality of conical projections (23b) is tightly adhered to the surface (23c) of the substrate (23a). The sealing sheet (9), by being fixed to the conical-projections forming sheet (7), seals the conical-projections sheet (23) between the conical-projections forming sheet (7) and the sealing sheet (9).
摘要:
Methods and devices for the measurement of molecular binding interactions. Preferred embodiments provide real-time measurements of kinetic binding and disassociation of molecules including binding and disassociation of protein molecules with other protein molecules and with other molecules. In preferred embodiments ligands are immobilized within pores of a porous silicon interaction region produced in a silicon substrate, after which analytes suspended in a fluid are flowed over the porous silicon region. Binding reactions occur when analyte molecules diffuse closely enough to the ligands to become bound. Preferably the binding and subsequent disassociation reactions are observed utilizing a white light source and thin film interference techniques with spectrometers arranged to detect changes in indices of refraction in the region where the binding and disassociation reactions occur. In preferred embodiments both ligands and analytes are delivered by computer controlled robotic fluid flow control techniques to the porous silicon interaction regions through microfluidic flow channels.