SYSTEM AND METHOD FOR BACKGROUND CALIBRATION OF TIME INTERLEAVED ADC
20210159908 · 2021-05-27
Assignee
Inventors
- Pratap Narayan Singh (Greater Noida, IN)
- Ashish Kumar Sharma (Greater Noida, IN)
- Chinmaya Dash (Greater Noida, IN)
Cpc classification
H03M1/1033
ELECTRICITY
International classification
Abstract
The present invention discloses a method of calibrating time interleaved analog to digital converter comprising: sampling a common input signal, said sampling is performed by an array of sub analog to digital converters, each generating individual digital analog equivalent outputs with sampling time errors, said digital outputs are fed to sampling time error estimation circuitry to calculate a digital output proportional to sampling time error between two consecutive channels, without any restriction on input signal or ADC channel design, said timing skew estimator circuitry composed of generating a delayed output of one of the two consecutive ADC channels, channel first and channel second and subtracting the said delayed output with digital output of the said second channel and producing the first subtracted output and output of said second channel subtracted with said first channel output delayed by sampling delay between the two consecutive channels and producing the second subtracted delayed output, absolute value of the said first subtracted output and said second subtracted delayed output is monitored for peak value of both for a fixed time duration and then subtracted values of the said peak values are the estimation of sampling time error between the said two consecutive channels, same process is repeated to each consecutive ADC channels of the said ADC array.
Claims
1. A system and method for Background Calibration of Time Interleaved ADC comprising: sampling a common input signal, said sampling is performed by an array of sub analog to digital converters, each generating individual digital analog equivalent outputs with sampling time errors, said digital outputs are fed to sampling time error estimation circuitry to calculate a digital output proportional to sampling time error between two consecutive channels, without any restriction on input signal or ADC channel design, said timing skew estimator circuitry composed of generating a delayed output of one of the two consecutive ADC channels, channel first and channel second and subtracting the said delayed output with digital output of the said second channel and producing the first subtracted output and output of said second channel subtracted with said first channel output delayed by sampling delay between the two consecutive channels and producing the second subtracted delayed output, absolute value of the said first subtracted output and said second subtracted delayed output is monitored for peak value of both for a fixed time duration and then subtracted values of the said peak values are the estimation of sampling time error between the said two consecutive channels, same process is repeated to each consecutive ADC channels of the said ADC array.
2. The method of claim 1/as claimed in claim 1 further comprising a relative error calculator from first ADC channel to last the last ADC channel in the array
3. The method of claim 1/as claimed in claim 1 further comprising a feedback to the sampling time generation circuitry in the order to reduce said sampling time errors and process is continued until said timing error is reduced to acceptable range.
4. The method of claim 2/as claimed in claim 2 further comprising a digitally controlled delay element associated with each ADC channel in the array to modify the sampling time in proportion to the said estimated skew along with sign from the reference sampling point.
5. The method of claim 1/as claimed in claim 1 further comprising the complete estimation calibration operation being performed in background without interrupting the ADC conversion process
Description
BRIEF DESCRIPTION OF FIGURES
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DETAILED DESCRIPTION OF INVENTION
[0018] In the following description, the terms are used to describe on possible implemented but there are different derivative possible using direct, indirect electrical connections or by changing the place and order of the described blocks and components as well as the analog or digital functionally equivalent system blocks and forthcoming details should be interpreted with the meaning of including but not limited to kind of implementation and claims.
[0019] The method of calibration and compensation of timing errors in the process of sampling of the applied input signal without having the knowledge and type of the signal using circuits and method shown in the
e=MAX(∥X[n+1]−Y[n]∥−∥X[n−Y[n]∥). (1)
[0020]
[0021] While the invention has been particularly described with references to preferred embodiments thereof, it will be understood by those skilled in the art that various changes may be made therein without departing from the scope of the invention encompassed by the appended claims.