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Erik D.
Erik D. Andrulis, Shaker Heights, OH US
| Patent application number | Description | Published |
|---|---|---|
| 20100184961 | METHODS AND COMPOSITIONS RELATED TO CHROMATIN-ASSOCIATED PROTEINS AND OTHER FACTORS - Chromatin-associated proteins and other factors and their related methods and compositions are isolated and identified. | 07-22-2010 |
Erik D. Spoerke, Albuquerque, NM US
| Patent application number | Description | Published |
|---|---|---|
| 20120100571 | METHODS AND MATERIALS FOR NANOCRYSTALLINE SURFACE COATINGS AND ATTACHMENT OF PEPTIDE AMPHIPHILE NANOFIBERS THEREON - Biocompatible composites comprising peptide amphiphiles and surface modified substrates and related methods for attachment thereon. | 04-26-2012 |
Erik D. Torniainen, Albany, OR US
| Patent application number | Description | Published |
|---|---|---|
| 20110205303 | FLUID EJECTOR STRUCTURE - In one embodiment, a fluid ejector structure includes: a chamber; a bridge spanning at least part of the chamber; a channel through which fluid may enter the chamber; a fluid ejector element on the bridge; and an outlet through which fluid may be ejected from the chamber at the urging of the fluid ejector element. The outlet is disposed opposite the fluid ejector element across a depth of the chamber and the chamber, ejector element and outlet are configured with respect to one another such that substantially all of the fluid in the chamber is ejected through the outlet upon actuation of the ejector element. | 08-25-2011 |
| 20110227987 | THERMAL INKJET PRINTHEAD FEED TRANSITION CHAMBER AND METHOD OF COOLING USING SAME - A thermal inkjet printhead and a method of cooling convectively cool the printhead with ink passing through a feed transition chamber. The thermal inkjet printhead includes a bridge beam and feed channels adjacent to the bridge beam. The printhead further includes a feed transition chamber between inputs to the feed channels and an ink reservoir. The ink flows through the feed transition chamber between the ink reservoir and the feed channels to convectively cool. The method of cooling includes providing the feed transition chamber and flowing ink through the feed transition chamber from the ink reservoir to the feed channels. The flowing ink establishes a temperature gradient between walls of the feed transition chamber and the ink. The temperature gradient facilitates convective cooling of the printhead. | 09-22-2011 |
| 20120092421 | Printhead For Generating Ink Drops With Reduced Tails - A printhead ( | 04-19-2012 |
Erik D. Torniainen, Redmond, WA US
| Patent application number | Description | Published |
|---|---|---|
| 20110286493 | MICROCALORIMETER SYSTEMS - In one embodiment, a microcalorimeter system includes a first microfluidic channel coupling a calorimeter with a sample chamber. A second microfluidic channel couples the calorimeter with a waste chamber. An inertial pump includes a fluid actuator integrated asymmetrically within the first microfluidic channel, and the fluid actuator is capable of selective activation to pump fluid from the sample chamber to the calorimeter and from the calorimeter to the waste chamber through the first and second microfluidic channels, respectively. | 11-24-2011 |
