Abstract:
A signal processing means (40) outputs a signal (41) representing a number when a combination of at least two imagers (11), (12) detects a spatial arrangement of a plurality of code portions of a coded data source (60)—where the spatial arrangement of the plurality of code portions represents the number, and where imager combinations can comprise spatial, temporal, and light property combinations.
Abstract:
A position control product uses a signal from an electomagnetic field sensor 11 to cause a positioning sub-system 31 to keep at least a first target coordinate 121 in a preplanned relationship with at least a first reference coordinate 111, the product being especially useful in radiation oncology where it is important to keep a target volume 71 in a body 81 in a preplanned relationship with a radiation beam, the product being useful also in other cases where the position of a reference coordinate relative to a target coordinate can not be determined by other means.
Abstract:
The apparatus uses retro-reflected light, having a fixed component (41) and a variable component (37) varied by a person, from a retro reflector (31) connected to a person to input data (37A) to an information system (13) and does this for each of several persons in the same time interval.
Abstract:
The privacy product—used with an information system which has a data processor (71) signal connected (72) to a display device (81) and has an input device (51, 51A) signal connected (52, 52A) to the data processor with the input device being manipulated (21) by a person to control cursor motions—comprises a computer readable signal bearing medium (11) signal connected (14) to the data processor with the medium having a chaff component (12) which causes the data processor to cause the display device to display (82) a chaff path (31A) which is indistinguishable from the cursor path (31) by a sequent person.
Abstract:
A workstation with multiple, functionally related displays clustered under and controlled by a common transparent overlay control device. The position of a hand-held stylus is sensed by the overlay control device and is used as a system input to control system operations, system communications and input, manipulation and editing of images displayed on the displays. Control of certain workstation operations is achieved by directing the stylus towards function symbols which are affixed to the overlay surface. Actuators or other adjustment mechanisms are provided for adjustment of the height and pitch of the workstation for the comfort of the operator. Further, the workstation provides integrated data audio communication over ordinary narrow-band telephone lines or high speed data lines with other linked workstations.
Abstract:
A metallurgical process involves providing an ingredient enclosure and placing a plurality of granules of a first material in the ingredient enclosure. The first material contains a first ingredient in a metallurgical process. A metallurgical process furnace having a chamber in which ingredients for the metallurgical process are added is provided and the ingredient enclosure and the first material are added to the chamber. The chamber is heated after the addition of the ingredient enclosure and the first material to the chamber, although it may also be heated prior to such addition. In one form, the granules comprise mill scale and the metallurgical process furnace is a blast furnace.
Abstract:
A temperature-indicating target length (15) of an expanding fluid thermometer (11) imbedded inside an object (91) moving in the flow (81) is achieved at a target point (21) along a flow and is measured by a measuring means at a location outside of the flow; where the measuring means can be radiating energy (31) projecting an image (32) of the target length outside the flow, and the measuring means can be causing the fluid length to be locked at the target length, removing the object from the flow, and measuring the target length outside the flow.
Abstract:
The annotating product adapted for use with an information system and with an exhibit having a plurality of objects has an imager (11) which is signal connected to the information system (91) and has codes (31) representing (33) objects (81) from the plurality of objects, the imager detecting light (32) from several codes together and sending an indicate signal (12) which represents at least one of the several objects to the information system which then sends an annotate signal (22) to cause a display (21) to output data about objects represented by the indicate signal.
Abstract:
Working with an information system operating an application—are an imager, a coded data source, and a computer-readable signal-bearing medium signal (FIG. 1, 11, 12, 13, 14, 15, 16, 17, 18, 21, 22, 23, 24, 25, 26, 27, 31, 32, 33, 41, 42, 43, 44, 45, 51, 52, 53, 54, 55, 91, 92, 93) connected to the information system where light from the data source—which represents data—is detected by the imager which inputs a signal—which represents the light—to the information system; where a use component of the medium causes the data to be made available to the application with the application being specified by the data; and where: the image can be from a plurality of imagers signal connected to the information system; the coded data source can be from a plurality of coded data sources; the application can be from a plurality of applications operated by the information system; and the medium can have a plurality of components which cause uses of data, management of imagers, and output signals.