TRANSPONDER, READER, METHOD OF OPERATING A TRANSPONDER, AND METHOD OF OPERATING A READER
In a method of operating a transponder ( 1, 51 ) a parallel digital data stream comprised of a plurality of digital data sequences ( 23 - 25 ) is generated by the transponder ( 1, 51 ). Then, a plurality of modulated signals ( 42 - 44 ) by modulating each of the digital data sequences ( 23 - 25 ) with a dedicated carrier/subcarrier of a plurality of carriers/subcarriers ( 26 - 28 ) is generated. The modulated signals ( 42 - 44 ) are orthogonal to each other.
1 . A transponder, comprising:
a device for generating a parallel digital data stream comprised of a plurality of digital data sequences; and
a device for generating a plurality of modulated signals by modulating each of the digital data sequences with a dedicated carrier/subcarrier of a plurality of carriers/subcarriers, wherein the modulated signals are orthogonal to each other.
2 . The transponder of claim 1 , comprising an antenna and a plurality of load modulators; each load modulator being controlled by a dedicated modulated signal of the plurality of modulated signals and the antenna and the load modulators being connected in parallel.
3 . The transponder of claim 1 , comprising a combining device for generating a resulting modulated signal by combining the plurality of modulated signals.
4 . The transponder of claim 3 , comprising an antenna and a plurality of load modulators, wherein the combining device is a summation device which generates the resulting modulated by adding the modulated signals ( 42 - 44 ) and the resulting modulated signal ( 48 ) controls the plurality of load modulators; the load modulators and the antenna being connected in parallel.
5 . The transponder of claim 3 , wherein the modulated signals are digital signals and the combining device generates the resulting modulated signal by performing an OR disjunction of the modulated signals.
6 . The transponder of claim 5 , comprising an antenna and a single load modulator connected in parallel; the resulting modulated signal controlling the single load modulator.
7 . The transponder of claim 1 , comprising an antenna and a single load modulator connected in parallel, wherein each of the modulated signals is a digital signal having first and second states; the single load modulator being activated if at least one of the modulated signals has its first state and being deactivated if all modulated signals have their second state or the single load modulator being deactivated if at least one of the modulated signals has its first state and being activated if all modulated signals have their second state.
8 . The transponder of claim 1 , wherein the device for generating a parallel digital data stream is a device for converting a serial data stream into the parallel data stream.
9 . A reader for a transponder, comprising:
a device for generating a parallel digital data stream comprised of a plurality of digital data sequences; and
a device for generating a plurality of modulated signals by modulating each of the digital data sequences with a dedicated carrier/subcarrier of a plurality of carriers/subcarriers, wherein the modulated signals are orthogonal to each other.
10 . The reader of claim 9 , wherein the modulated signals are digital signals; the reader comprising a device for generating a resulting modulated signal by combining the plurality of modulated signals such that the resulting modulated signal is an OR disjunction of the modulated signals.
11 . A method of operating a transponder, comprising the steps of:
generating a parallel digital data stream comprised of a plurality of digital data sequences with a transponder; and
generating a plurality of modulated signals by modulating each of the digital data sequences with a dedicated carrier/subcarrier of a plurality of carriers/subcarriers, wherein the modulated signals are orthogonal to each other.
12 . A method of operating a reader that can communicate with a transponder, comprising the steps of:
generating a parallel digital data stream comprised of a plurality of digital data sequences; and
generating a plurality of modulated signals by modulating each of the digital data sequences with a dedicated carrier/subcarrier of a plurality of carriers/subcarriers, wherein the modulated signals are orthogonal to each other.