Probe configuration data protocol and transmission method
First Claim
1. A method of transmitting probe configuration data, comprising:
- providing a frame comprising a time based string of data, said frame being subdivided into slots of predetermined duration;
utilizing sub-slots with fixed inter-pulse timing within at least one of the slots within the frame to represent at least one of various states of digital data; and
transmitting said probe configuration data at least partially represented in said at least one of the slots, a particular one of said at least one of various states of digital data being represented by a respective time interval location of said fixed inter-pulse timing within said at least one of the slots.
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Abstract
Transmission of probe configuration data is initiated upon recognition by the probe of a prescribed condition. Probe configuration data protocol includes a data frame, subdivided into a desired number of time slots. Unlike measurement data protocol, where inter-pulse pair timing within a slot varies based on a magnet position or temperature sensor resistance, configuration data protocol in accordance with the invention uses fixed inter-pulse timing to represent the various states of digital data. In such manner, at least a portion of the time slots making up the particular data frame can be used for containing data sent from the probe, and which can then be interpreted by the receiving processing device as at least one bit of binary code allocated to each individual slot of the portion of time slots.
6 Citations
20 Claims
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1. A method of transmitting probe configuration data, comprising:
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providing a frame comprising a time based string of data, said frame being subdivided into slots of predetermined duration; utilizing sub-slots with fixed inter-pulse timing within at least one of the slots within the frame to represent at least one of various states of digital data; and transmitting said probe configuration data at least partially represented in said at least one of the slots, a particular one of said at least one of various states of digital data being represented by a respective time interval location of said fixed inter-pulse timing within said at least one of the slots. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. A data protocol, comprising:
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a frame comprising a time based string of data, said frame being subdivided into slots of predetermined duration; and at least one slot of said slots being divided into sub-slots comprised of fixed inter-pulse timing which are each used to represent a particular state of digital data, the particular state of digital data being represented by a respective time interval location of said fixed inter-pulse timing within said at least one slot. - View Dependent Claims (9, 10, 11)
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12. A method of transmitting data, comprising:
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providing a frame comprising a time based string of data, said frame being subdivided into slots of predetermined duration; utilizing sub-slots with fixed inter-pulse timing within at least one of the slots within the frame to represent at least one of various states of digital data; and transmitting said data at least partially in said at least one of the slots, a particular one of said at least one of various states of digital data being represented by a respective time interval location of said fixed inter-pulse timing within said at least one of the slots. - View Dependent Claims (13, 14, 15, 16, 17, 18)
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19. A method of representing data, comprising:
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providing at least one slot of known duration; dividing each of said at least one slot into sub-slots each defining a known time interval within said known duration; and identifying a discrete state of digital data by noting a pulse appearing at a location corresponding to a start of a particular said known time interval.
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20. A system for use in conjunction with a measurement probe for transmission of probe-specific set-up data, the system comprising:
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a probe structurally configured to output data in a form of at least one slot of predetermined duration, said at least one slot being divided into n+1 sub-slots each of a known time interval, wherein n represents a number of digital states, said data being represented by a pulse being output at a start of a particular one of said n+1 sub-slots; and a measurement device configured to receive said data and to recognize position of said pulse at the start of said particular one of said n+1 time slots.
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Specification