Analog-digital converter and method
US-2024333293-A1 · Oct 3, 2024 · US
US9255950B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9255950-B2 |
| Application number | US-201113814365-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 27, 2011 |
| Priority date | Sep 29, 2010 |
| Publication date | Feb 9, 2016 |
| Grant date | Feb 9, 2016 |
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In a method for determining a frequency of an input signal, a first count value is determined by counting clock edges of a reference clock signal while the input signal corresponds to a first level value. Further, a second count value is determined by counting clock edges of the reference clock signal while the input signal corresponds to a second level value. The frequency of the input signal is determined as a function of the first and the second count value.
Opening claim text (preview).
What is claimed is: 1. An arrangement for determining frequency, comprising: an input ( 1 ) for feeding in an input signal (IN); a first counter ( 40 ) for counting clock edges of a reference clock signal (CLK) while the input signal (IN) corresponds to a first level value (L 1 ); a second counter ( 50 ) for counting clock edges of the reference clock signal (CLK) while the input signal (IN) corresponds to a second level value (L 2 ); and an evaluation unit ( 60 ) that is coupled to the first and the second counter ( 40 , 50 ), in order to determine a first and a second count value (N 1 , N 2 ), and is set up to determine a frequency of the input signal (IN) as a function of the first and the second count value (N 1 , N 2 ); wherein the evaluation unit ( 60 ) is set up to determine the frequency of the input signal (IN) as a function of the sum of the first and second count values of one or more successive measuring periods in the input signal (IN); and wherein the evaluation unit ( 60 ) is set up to determine the frequency of the input signal (IN) after the sum of the first and second count values of one or more successive measuring periods in the input signal (IN) exceeds a minimum number of counted clock edges in the reference clock signal. 2. An arrangement for determining frequency, comprising: an input ( 1 ) for feeding in an input signal (IN); a first counter ( 40 ) for counting clock edges of a reference clock signal (CLK) while the input signal (IN) corresponds to a first level value (L 1 ); a second counter ( 50 ) for counting clock edges of the reference clock signal (CLK) while the input signal (IN) corresponds to a second level value (L 2 ); and an evaluation unit ( 60 ) that is coupled to the first and the second counter ( 40 , 50 ), in order to determine a first and a second count value (N 1 , N 2 ), and is set up to determine a frequency of the input signal (IN) as a function of the first and the second count value (N 1 , N 2 ); wherein the evaluation unit ( 60 ) is set up to determine the first and the second count value (N 1 , N 2 ) in such a way that the first count value (N 1 ) is determined by a counter result of the first counter ( 40 ) when the input signal (IN) no longer corresponds to the first level value (L 1 ) and the second count value (N 2 ) is determined by a counter result of the second counter ( 50 ) when the input signal (IN) no longer corresponds to the second level value (L 2 ); and wherein the second count value (N 2 ) is determined by an instantaneous counter status of the second counter ( 50 ) when the input signal (IN) corresponds to the second level value (L 2 ) and this instantaneous counter status exceeds a predefined comparison value, so that the actual frequency can be determined earlier. 3. The arrangement as claimed in claim 2 , wherein the evaluation unit ( 60 ) is set up to determine the frequency of the input signal (IN) as a function of the sum of the first and the second count value (N 1 , N 2 ). 4. The arrangement as claimed in claim 2 , wherein the comparison value is given as a function of at least one of the following: the first count value (N 1 ); the second count value (N 2 ) of a previous determination of the frequency of the input signal (IN).
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