Claims
- 1) A method for measuring distance along a ruler comprising
a. encoding positional information within a cluster comprising a plurality of microfacets; b. applying a plurality of said clusters of microfacets along the length of said ruler; c. splitting a first beam of radiation impinging on said cluster of microfacets into two or more distinct second beams selectively according to said encoded positional information; d. detecting the presence of said second beams; e. decoding the pattern produced by the presence of said second beams to recover positional information.
- 2) A method as recited in claim 1 wherein said microfacets within said cluster are not contiguous;
- 3) A method as recited in claim 1 wherein said microfacets refract said radiation.
- 4) A method as recited in claim 1 wherein said microfacets reflect said radiation.
- 5) A method as recited in claim 1 wherein said cluster of microfacets comprises a plurality of subsets of said cluster of microfacets wherein said microfacets comprising each said subset have one or more properties in common.
- 6) A method as recited in claim 5 wherein at least one said property in common is a substantially alike spatial orientation.
- 7) A method as recited in claim 5 wherein at least one said property in common is a substantially alike refraction angle for incident radiation.
- 8) A method as recited in claim 5 wherein at least one said property in common is a substantially alike reflection angle for incident radiation.
- 9) A method as recited in claim 5 wherein the presence or absence of at least one said subset encodes positional information.
- 10) A method as recited in claim 1 wherein said radiation is visible light.
- 11) A method as recited in claim 1 wherein said radiation is infrared radiation.
- 12) A method for transmitting positional information as signals from a reader traveling along an encoded ruler to an external receiver comprising:
a. coupling said signals into said ruler from said reader; b. guiding said signals substantially through said ruler; c. coupling said signals out of said ruler into a detector.
- 13) A method as recited in claim 12 wherein said signals are acoustic signals.
- 14) A method as recited in claim 12 wherein said signals are visible light optical signals.
- 15) A method as recited in claim 12 wherein said signals are infrared light signals.
- 16) An apparatus for measuring distance along a ruler comprising:
a. a cluster of microfacets capable of splitting a first incident beam of radiation into two or more second beams in accordance with positional information encoded within said cluster of microfacets; b. a multiplicity of said clusters of microfacets emplaced sequentially along said ruler; c. a movable reader traveling along said ruler comprising:
i. one or more sources of radiation producing beams of radiation capable of illuminating said clusters of microfacets; ii. an array of radiation detectors within said reader to detect said second beams; iii. means for displaying the outputs from said radiation detectors as positional information.
- 17) An apparatus as recited in claim 16 wherein said ruler is a rod.
- 18) An apparatus as recited in claim 16 wherein said microfacets refract said first incident beam of radiation.
- 19) An apparatus as recited in claim 16 wherein said microfacets reflect said first incident beam of radiation.
- 20) An apparatus as recited in claim 16 wherein said radiation is visible light.
- 21) An apparatus as recited in claim 16 wherein said radiation is infrared radiation.
- 22) An apparatus for measuring liquid level comprising:
a. a vertical ruler comprising a sequence of clusters of microfacets emplaced along said ruler that encode height information; b. one or more floats that move substantially freely along said ruler; c. a means within said float for generating and directing one or more first beams of radiation onto said clusters whereby said microfacets comprising each said cluster divide each said first beam selectively into two or more second beams according to said encoded height information; d. a plurality of radiation detectors within said float to detect said second beams of radiation whereby said height information is decoded; e. a means for transmitting said height information from said float to an external device.
- 23) An apparatus as recited in claim 22 wherein said ruler is a rod.
- 24) An apparatus as recited in claim 22 wherein said means for transmitting said height information comprises:
a. a means for converting said height information from said radiation detectors into signals suitable for data transmission; b. a means for coupling said signals from said reader into said ruler; c. a means for coupling said signals out of said ruler into a detector.
- 25) An apparatus as recited in claim 22 wherein said signals are infrared light signals.
- 26) An apparatus as recited in claim 22 wherein said signals are visible light signals.
- 27) An apparatus as recited in claim 22 wherein said signals are acoustic signals.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is a continuation of Provisional Application No. 60/228,018 filed Aug. 24, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60228018 |
Aug 2000 |
US |