Interactive tactile display for computer screen
First Claim
1. An apparatus for converting a visual image into a tactile image, comprising:
- imaging means for converting incident light from a displayed visual image into electrical signals that are proportional to the gray scale intensity of the incident light, wherein the incident light is not focused through an optical system;
a tactile display device having a two-dimensional array of variable height pixels, wherein the height of each pixel in the tactile display is dynamically variable in proportion to the electrical signals from the imaging means.
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Abstract
Apparatus for converting a visual image into a tactile image. The apparatus comprises imaging means for converting incident light from the visual image into electrical signals that are proportional to the gray scale intensity of the incident light. The apparatus also comprises a tactile display device having a two-dimensional array of variable height pixels, wherein the height of each pixel in the tactile display is dynamically variable in proportion to the electrical signals from the imaging means. Preferably, the height of each pixel is inversely proportional to the gray scale intensity of the incident light so that the maximum height of a pixel occurs when a corresponding pixel in the visual image is black.
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Citations
31 Claims
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1. An apparatus for converting a visual image into a tactile image, comprising:
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imaging means for converting incident light from a displayed visual image into electrical signals that are proportional to the gray scale intensity of the incident light, wherein the incident light is not focused through an optical system;
a tactile display device having a two-dimensional array of variable height pixels, wherein the height of each pixel in the tactile display is dynamically variable in proportion to the electrical signals from the imaging means. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15)
a plurality of individually controlled miniature motors oriented in a grid, wherein each motor is coupled to one of the electrical signals;
a plurality of miniature rack and pinion gear assemblies, each of which is operatively connected to one of the miniature motors so that rotational motion of a pinion connected to a shaft of a miniature motor is converted into linear motion of a rack; and
a plurality of rods, wherein each rod is connected to one of the racks so that the rods move linearly with the racks.
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8. The apparatus of claim 7, wherein the miniature motors move linearly in a Z dimension that is perpendicular to X and Y dimensions.
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9. The apparatus of claim 1, further comprising:
attachment means for attaching to imaging means in alignment with a display screen.
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10. The apparatus of claim 9, wherein the display screen is selected from a cathode ray tube, liquid crystal display, array of light emitting diodes, laser images, projections, and combinations thereof.
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11. The apparatus of claim 9, wherein the display screen is a computer monitor.
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12. The apparatus of claim 11, wherein the computer monitor forms part of a portable computer.
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13. The apparatus of claim 12, wherein the portable computer is a handheld computer.
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14. The apparatus of claim 13, wherein the handheld computer is a personal digital assistant.
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15. The apparatus of claim 7, the pixels further comprising a strain gauge for sensing applied pressure.
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16. An apparatus for converting a visual image into a tactile image, comprising:
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a two-dimensional array of variable height actuator pins;
a photometer formed in a first end of each of the actuator pins, wherein each photometer generates an electronic signal indicating the light intensity at the location of the photometer; and
a computing device for receiving the electronic signal from the photometer and providing a control signal to each actuator pin in proportion to the electronic signal received from a photometer in the same location. - View Dependent Claims (17)
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18. An apparatus for converting a visual image into a tactile image, comprising:
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imaging means for converting incident light from a visual image into electrical signals that are proportional to the gray scale intensity of the incident light;
a tactile display device having a two-dimensional array of variable height pixels, wherein the height of each pixel in the tactile display is dynamically variable in proportion to the electrical signals from the imaging means, and wherein the pixels of the tactile display are pressure-sensitive for allowing touch-screen input. - View Dependent Claims (19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31)
a plurality of individually controlled miniature motors oriented in a grid, wherein each motor is coupled to one of the electrical signals;
a plurality of miniature rack and pinion gear assemblies, each of which is operatively connected to one of the miniature motors so that rotational motion of a pinion connected to a shaft of a miniature motor is converted into linear motion of a rack; and
a plurality of rods, wherein each rod is connected to one of the racks so that the rods move linearly with the racks.
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24. The apparatus of claim 23, wherein the miniature motors move linearly in a Z dimension that is perpendicular to X and Y dimensions.
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25. The apparatus of claim 18, further comprising:
attachment means for attaching the imaging means in alignment with a display screen.
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26. The apparatus of claim 25, wherein the display screen is selected from a cathode ray tube, liquid crystal display, array of light emitting diodes, laser images, projections, and combinations thereof.
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27. The apparatus of claim 26, wherein the display screen is a computer monitor.
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28. The apparatus of claim 27, wherein the computer monitor forms part of a portable computer.
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29. The apparatus of claim 28, wherein the portable computer is a handheld computer.
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30. The apparatus of claim 29, wherein the handheld computer is a personal digital assistant.
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31. The apparatus of claim 23, the pixels further comprising a strain gauge for sensing applied pressure.
Specification