Device and method for analog-digital conversion

US11265005B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11265005-B2
Application numberUS-202017112466-A
CountryUS
Kind codeB2
Filing dateDec 4, 2020
Priority dateDec 27, 2019
Publication dateMar 1, 2022
Grant dateMar 1, 2022

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

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An analog-digital conversion apparatus may include a control unit configured for receiving an analog-digital (AD) conversion request from a plurality of processing modules; and an analog-digital converter (ADC) configured for performing analog-digital conversion according to the AD conversion request received from the control unit, in which the control unit is configured to integrate the AD conversion request according to periodicity of the AD conversion request and to transfer the integrated AD conversion request to the ADC.

First claim

Opening claim text (preview).

What is claimed is: 1. An analog-digital conversion apparatus comprising: a control unit configured for receiving an analog-digital (AD) conversion request from a plurality of processing modules; and an analog-digital converter (ADC) configured for performing AD conversion according to the AD conversion request received from the control unit, wherein the control unit is configured to integrate the AD conversion request according to periodicity of the AD conversion request and to transfer the integrated AD conversion request to the ADC. 2. The analog-digital conversion apparatus of claim 1 , wherein upon determining that the AD conversion request is periodic, the control unit is configured to transfer the AD conversion request to the ADC at a predetermined time interval. 3. The analog-digital conversion apparatus of claim 1 , wherein upon determining that the AD conversion request is an aperiodic AD conversion request, the control unit is configured to integrate a periodic AD conversion request to be performed after the aperiodic AD conversion request, and the aperiodic AD conversion request. 4. The analog-digital conversion apparatus of claim 3 , wherein in the aperiodic AD conversion request, a delay allowance time which is an allowable delay time for the AD conversion is set, and upon determining that the delay allowance time is equal to or greater than a time up to the periodic AD conversion request, the control unit is configured to integrate the aperiodic AD conversion request in the periodic AD conversion request. 5. The analog-digital conversion apparatus of claim 3 , wherein in the aperiodic AD conversion request, the delay allowance time which is the allowable delay time for the AD conversion is set, and upon determining that the delay allowance time is less than a time up to the periodic AD conversion request, the control unit processes the aperiodic AD conversion request separately from the periodic AD conversion request. 6. The analog-digital conversion apparatus of claim 5 , wherein upon determining that the aperiodic AD conversion request is separately processed from the periodic AD conversion request, aperiodic AD conversion requests are integrated and processed upon determining that another aperiodic AD conversion request is received within an AD conversion waiting time less than the delay allowance time. 7. The analog-digital conversion apparatus of claim 1 , wherein the control unit includes: a transmission/reception unit configured for transmitting and receiving a signal, a conversion information storing unit configured for storing information related to the plurality of processing modules requesting the AD conversion, and an AD conversion integrating unit configured for integrating and transferring the AD conversion request. 8. The analog-digital conversion apparatus of claim 7 , wherein the conversion information storing unit is configured to store, as conversion information, whether the AD conversion request is periodic, a delay allowance time upon determining that the AD conversion request is aperiodic, and channel information related to the ADC to be allocated for the AD conversion request. 9. The analog-digital conversion apparatus of claim 1 , further including: a multi-core microprocessor including, a first core, a second core, and a peripheral apparatus, wherein the plurality of processing modules and the control unit are provided in the first core, wherein the ADC is included in the peripheral apparatus, and wherein an input/output apparatus configured for receiving the AD conversion request in the control unit and transferring the AD conversion request to the ADC is provided in the second core. 10. The analog-digital conversion apparatus of claim 9 , wherein the peripheral apparatus includes a common memory configured for receiving the AD conversion request from the first core and for a predetermined time storing the AD conversion request and for a predetermined time storing an AD conversion result from the ADC. 11. A method of converting an analog signal into a digital signal in an analog-digital conversion apparatus, the method comprising: (a) receiving, by a control unit, an analog-digital (AD) conversion request from a plurality of processing modules; (b) determining, by the control unit, periodicity of the AD conversion request; and (c) upon determining that the AD conversion request is an aperiodic AD conversion request, performing, by the control unit, AD conversion by integrating a periodic AD conversion request to be performed after the aperiodic AD conversion request, and the aperiodic AD conversion request. 12. The method of claim 11 , wherein in the step (c), a delay allowance time of the aperiodic AD conversion request and a time up to the periodic AD conversion request to be performed after the aperiodic AD conversion request are compared with each other by the control unit and upon determining that the delay allowance time is equal to or greater than the time, the aperiodic AD conversion request is integrated with the periodic AD conversion request by the control unit. 13. The method of claim 11 , wherein in the step (c), the delay allowance time of the aperiodic AD conversion request and a time up to the periodic AD conversion request to be performed after the aperiodic AD conversion request are compared with each other by the control unit and upon determining that the delay allowance time is less than the time, the aperiodic AD conversion request is separately processed by the control unit from the periodic AD conversion request. 14. The method of claim 13 , wherein upon determining that the aperiodic AD conversion request is separately processed from the periodic AD conversion request, aperiodic AD conversion requests are integrated and processed upon determining that another aperiodic AD conversion request is received within an AD conversion waiting time less than the delay allowance time. 15. The method of claim 11 , wherein the analog-digital conversion apparatus includes: the control unit configured for receiving the AD conversion request from the plurality of processing modules; and an analog-digital converter (ADC) configured for performing the AD conversion according to the AD conversion request received from the control unit. 16. The method of claim 15 , wherein the control unit includes: a transmission/reception unit configured for transmitting and receiving a signal, a conversion information storing unit configured for storing information related to the plurality of processing modules requesting the AD conversion, and an AD conversion integrating unit configured for integrating and transferring the AD conversion request. 17. The method of claim 16 , wherein the conversion information storing unit is configured to store, as conversion information, whether the AD conversion request is periodic, a delay allowance time upon determining that the AD conversion request is aperiodic, and channel information related to the ADC to be allocated for the AD conversion request. 18. The method of claim 11 , further including: a multi-core microprocessor including, a first core, a second core, and a peripheral apparatus, wherein the plurality of processing modules and the control unit are provided in the first core, wherein the ADC is included in the peripheral apparatus, and wherein an input/output apparatus configured for receiving the AD conversion request in the control unit and transferring the AD conversion request to the ADC is provided in the second core. 19. T

Assignees

Inventors

Classifications

  • Sampling or signal conditioning arrangements specially adapted for A/D converters · CPC title

  • H03M1/122Primary

    Shared using a single converter or a part thereof for multiple channels, e.g. a residue amplifier for multiple stages · CPC title

  • Digital input using the sampling of an analogue quantity at regular intervals of time {, input from a/d converter or output to d/a converter} · CPC title

  • H03M1/12Primary

    Analogue/digital converters ({H03M1/001 – } H03M1/10 take precedence) · CPC title

  • with intermediate conversion to time interval (H03M1/64 takes precedence) · CPC title

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What does patent US11265005B2 cover?
An analog-digital conversion apparatus may include a control unit configured for receiving an analog-digital (AD) conversion request from a plurality of processing modules; and an analog-digital converter (ADC) configured for performing analog-digital conversion according to the AD conversion request received from the control unit, in which the control unit is configured to integrate the AD con…
Who is the assignee on this patent?
Hyundai Autoever Corp
What technology area does this patent fall under?
Primary CPC classification H03M1/122. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Mar 01 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 10 related publications on this page (citations in our corpus or others sharing the same primary CPC).