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Precision ADCs
  • Data Converters
Precision ADCs
Documents FAQ: How to convert the AD7124-4/AD7124-8 data output Code to equivalent analog input voltage?
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Precision ADCs requires membership for participation - click to join
  • +Documents
  • +General: FAQ
  • +AD1139: FAQ
  • +AD1556: FAQ
  • +AD1580: FAQ
  • +AD1582: FAQ
  • +AD2S1200: FAQ
  • +AD2S1205: FAQ
  • +AD2S1210: FAQ
  • +AD2S75: FAQ
  • +AD2S80: FAQ
  • +AD2S80A: FAQ
  • +AD2S82A: FAQ
  • +AD2S83: FAQ
  • +AD2S90: FAQ
  • +AD2S99: FAQ
  • +AD4110-1: FAQ
  • +AD411x: FAQ
  • +AD5940: FAQ
  • +AD598: FAQ
  • +AD650: FAQ
  • +AD652: FAQ
  • +AD654: FAQ
  • +AD7091: FAQ
  • +AD7091r: FAQ
  • +AD711: FAQ
  • +AD7124-4: FAQ
  • -AD7124-8: FAQ
    • AD7124: Input Offset
    • AD7124-4/AD7124-8: Internal reference Long term drift?
    • AD7124-4/AD7124-8 FAQs
    • There are three power modes in AD7124-8. Which power mode should I use?
    • FAQ: After performing AD7124-4/AD7124-8 calibrations, do I need to use the offset and gain coefficients in my data output code calculations?
    • FAQ: AD7124-4/8 Standard Silicon versus B-grade
    • FAQ: How are the offset and gain coefficients applied to the data conversion of AD7124-4/AD7124-8?
    • Is an IBIS model available for the AD7124-8?
    • In AD7124-8, When single conversion mode is used, can /CS be taken high after the single conversion is initiated?
    • In AD7124-8, Is the serial interface reset when /CS is taken high?
    • FAQ: How to convert the AD7124-4/AD7124-8 data output Code to equivalent analog input voltage?
    • FAQ: What is the equation for calculating Internal Temperature Sensor for AD7124-4/AD7124-8 in unipolar mode?
    • AD7124-8: Should an anti-alias filter be used with the ADC?
    • AD7124-8 Is the serial interface reset when   is taken high?
    • AD7124-8 Should an anti-alias filter be used with the ADC?
    • AD7124-8 What is the benefit of the post filters versus the standard sinc filters?
    • AD7124-8 When single conversion mode is used, can   be taken high after the single conversion is initiated?
    • What is the ESD rating of the AD7124-8?
    • AD7124-8 Which power mode should I use?
    • What are the tradeoffs in performance between the three power modes of AD7124-8?
    • AD7124-8 How do I interface to multiple ADCs over the same serial interface?
    • AD7124-8: What is the benefit of the post filters versus the standard sinc filters?
    • AD7124-8 What are the tradeoffs in performance between the three power modes?
    • How do I interface to multiple ADCs over the same serial interface?
    • AD7124-4/AD7124-8: FAQs
    • I am not designing a system for functional safety. Are the diagnostics in AD7124-8 still useful?
    • I am not designing a system for functional safety. Are the diagnostics still useful?
  • +AD7134: FAQ
  • +AD713: FAQ
  • +AD7142: FAQ
  • +AD7147: FAQ
  • +AD7148: FAQ
  • +AD7150: FAQ
  • +AD7151: FAQ
  • +AD7175-2: FAQ
  • +AD7176-2: FAQ
  • +AD7176: FAQ
  • +AD717x: FAQ
  • +AD7190: FAQ
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  • +AD7366-5: FAQ
  • +AD7367: FAQ
  • +AD736ARZ: FAQ
  • +AD737: FAQ
  • +AD7380 : FAQ
  • +AD7398: FAQ
  • +AD7400A: FAQ
  • +AD7401: FAQ
  • +AD7403: FAQ
  • +AD74111: FAQ
  • +AD7415: FAQ
  • +AD7416: FAQ
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  • +AD7450: FAQ
  • +AD7475: FAQ
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  • +AD7492: FAQ
  • +AD75019: FAQ
  • +AD7503: FAQ
  • +AD7541A: FAQ
  • +AD7546: FAQ
  • +AD7547: FAQ
  • +AD7568: FAQ
  • +AD7578: FAQ
  • +AD7606-4: FAQ
  • +AD7606: FAQ
  • +AD7606B: FAQ
  • +AD7606C: FAQ
  • +AD7608: FAQ
  • +AD7616 FAQ
  • +AD7616-P: FAQ
  • +AD7621: FAQ
  • +AD7625: FAQ
  • +AD7626: FAQ
  • +AD7631: FAQ
  • +AD7653: FAQ
  • +AD7654: FAQ
  • +AD7655: FAQ
  • +AD7656: FAQ
  • +AD7657-1: FAQ
  • +AD7663: FAQ
  • +AD7674: FAQ
  • +AD7675: FAQ
  • +AD7678: FAQ
  • +AD7682: FAQ
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  • +AD7684: FAQ
  • +AD7685: FAQ
  • +AD7688: FAQ
  • +AD7689: FAQ
  • +AD7690: FAQ
  • +AD7691: FAQ
  • +AD7705: FAQ
  • +AD7706: FAQ
  • +AD7707: FAQ
  • +AD7708: FAQ
  • +AD7709: FAQ
  • +AD7710: FAQ
  • +AD7711A: FAQ
  • +AD7712: FAQ
  • +AD7713: FAQ
  • +AD7714: FAQ
  • +AD7714YN: FAQ
  • +AD7715: FAQ
  • +AD7716: FAQ
  • +AD7718: FAQ
  • +AD7719: FAQ
  • +AD7720: FAQ
  • +AD7722: FAQ
  • +AD7725: FAQ
  • +AD7730: FAQ
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  • +AD7732: FAQ
  • +AD7738: FAQ
  • +AD7740: FAQ
  • +AD7741: FAQ
  • +AD7745: FAQ
  • +AD7746: FAQ
  • +AD7747: FAQ
  • +AD7760: FAQ
  • +AD7763: FAQ
  • +AD7766: FAQ
  • +AD7768: FAQ
  • +AD777x: FAQ
  • +AD7780: FAQ
  • +AD7785: FAQ
  • +AD7787: FAQ
  • +AD7788: FAQ
  • +AD7790: FAQ
  • +AD7792: FAQ
  • +AD7793: FAQ
  • +AD7794: FAQ
  • +AD7795: FAQ
  • +AD7798: FAQ
  • +AD7799: FAQ
  • +AD7805: FAQ
  • +AD7808: FAQ
  • +AD7809: FAQ
  • +AD780: FAQ
  • +AD7811: FAQ
  • +AD7812: FAQ
  • +AD7817: FAQ
  • +AD7819: FAQ
  • +AD7821: FAQ
  • +AD7825: FAQ
  • +AD7829: FAQ
  • +AD7835: FAQ
  • +AD7849: FAQ
  • +AD7851: FAQ
  • +AD7854: FAQ
  • +AD7856: FAQ
  • +AD7858: FAQ
  • +AD7859: FAQ
  • +AD7864: FAQ
  • +AD7865 : FAQ
  • +AD7872: FAQ
  • +AD7874: FAQ
  • +AD7879: FAQ
  • +AD7887: FAQ
  • +AD7888: FAQ
  • +AD7891-1: FAQ
  • +AD7891: FAQ
  • +AD7893-2: FAQ
  • +AD7895: FAQ
  • +AD7896: FAQ
  • +AD7899: FAQ
  • +AD7912: FAQ
  • +AD7921: FAQ
  • +AD7924: FAQ
  • +AD7927: FAQ
  • +AD7938: FAQ
  • +AD7942: FAQ
  • +AD7949: FAQ
  • +AD7960: FAQ
  • +AD7961: FAQ
  • +AD797: FAQ
  • +AD7980: FAQ
  • +AD7982: FAQ
  • +AD7984: FAQ
  • +AD7986: FAQ
  • +AD7988-1: FAQ
  • +AD7993: FAQ
  • +AD7994: FAQ
  • +AD7997: FAQ
  • +AD7998: FAQ
  • +ADA2200: FAQ
  • +ADAS1000: FAQ
  • +ADAS3022: FAQ
  • +ADAS3023: FAQ
  • +ADC: FAQ
  • +ADVFC32: FAQ
  • +EVAL-AD7719-EB: FAQ
  • +EVAL-ADAS3022EDZ: FAQ
  • +RDC1740: FAQ
  • +Precision Technology Learning Modules

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FAQ: How to convert the AD7124-4/AD7124-8 data output Code to equivalent analog input voltage?

As discussed in What is the data output coding format used in AD7124-4/AD7124-8?  the ADCs operate in unipolar or bipolar coding modes.

When unipolar mode is selected the ADC output code for any analog input voltage applied to the analog inputs can be calculated using the following formula as:

 

 

Code = (2^N × AIN x Gain)/VREF

·        where AIN is the applied differential input voltage

·        VREF is the reference applied to the ADC.

·        N = 24 (number of data output bits)

·        Gain is the PGA settings

 

Example: AIN = 1V, VREF=2.5V, PGA = 1. The equivalent code in unipolar mode is

Code = (2^N × AIN xGain)/VREF = (2^24 x 1V x 1)/2.5V = 6710886

When bipolar mode is selected the ADC output code for any analog input voltage applied to the analog inputs can be calculated using the following formula as:

 

 

Code = 2^ (N – 1) × [(AIN x Gain/VREF) + 1]

 

·        where AIN is the applied differential input voltage

·        VREF is the reference applied to the ADC.

·        N = 24 (number of data output bits)

·        Gain is the PGA settings

 

Example: AIN = 1V, VREF=2.5V, PGA=1. The equivalent code in bipolar mode is

Code = 2^ (N – 1) × [(AIN/VREF) + 1] = 2^ (24 – 1) × [(1V x 1/2.5V) + 1] = 11744051

 
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