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Body
Christophe Body, Baileau Armenonville FR
| Patent application number | Description | Published |
|---|---|---|
| 20090273549 | IMPROVEMENTS TO BISTABLE NEMATIC LIQUID CRYSTAL DISPLAYS - A method for addressing a bistable nematic matrix LCD having two stable textures without any applied electric field. Pixel addressing is of the passive multiplex type. The method includes selecting the value of the electrical voltage applied between the substrates so that an average value of the voltage, preferably the average quadratic value, since the initial command for image display up to the time immediately preceding switching, has a predetermined value independent of the information to be displayed, which is the same for all the pixels of the image. | 11-05-2009 |
Danah Michele Body, Boston, MA US
Peter J. Body, Pottstown, PA US
| Patent application number | Description | Published |
|---|---|---|
| 20090024738 | REMOTE RADIO SPECTRUM INFORMATION ACQUISITION - A scanner system provides real-time remote acquisition of a scanner's audio signals and visual display, and real-time remote control of scanner operations, including settings and functions. The scanner system may be used to gather information in a regional market by listening to geographically distant broadcasts available on radio spectrum frequencies. By synchronizing multi-spectrum monitoring, audio delivery, visual cueing, and control of spectrum reception, geographically independent persons can process scanner information as if they were physically present in the market. Thus, operators can gather information from public agencies and radio broadcasts from a remote market as if they were present in the market. The scanner audio signals may be used to produce traffic reports. | 01-22-2009 |
Thomas Peter Body, Pittsburgh, PA US
| Patent application number | Description | Published |
|---|---|---|
| 20100095885 | Shadow Mask Deposition Of Materials Using Reconfigurable Shadow Masks - A shadow mask deposition system includes a plurality of identical shadow masks arranged in a number of stacks to form a like number of compound shadow masks, each of which is disposed in a deposition vacuum vessel along with a material deposition source. Materials from the material deposition sources are deposited on the substrate via openings in corresponding compound shadow masks, each opening being formed by the whole or partial alignment of apertures in the shadow masks forming the compound shadow mask, to form an array of electronic elements on the substrate. | 04-22-2010 |
