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Documents Q13. Where can I find a full and workable sample code for AD4111/AD4112/AD4114/AD4115 for a ST processor?
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AD4114 Recommended for New Designs
The AD4114 is a low power, low noise, 24-bit, sigma-delta (Σ-Δ) analog-to-digital converter (ADC) that integrates an analog front end (AFE) for eight...
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AD4112 Recommended for New Designs
The AD4112 is a low power, low noise, 24-bit, sigma-delta (Σ-Δ) analog-to-digital converter (ADC) that integrates an analog front end (AFE) for fully...
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AD4111 Recommended for New Designs
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AD4115 Recommended for New Designs
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Table of Contents
  • +Documents
  • +General: FAQ
  • +AD1139: FAQ
  • +AD7091R Conversion Result Change
  • +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
    • Q1. What is the difference between the AD4111/AD4112/AD4114/AD4115?
    • Q10. On the AD4111/AD4112/AD4114/AD4115 what’s the equivalent TUE (total uncompensated error) spec across different input voltage ranges for example ±10V, ±5V, ±2.5V or 0-10V, 0-5V, 0-2.5V?
    • Q11. What is the difference in output data rate between multiple channel configuration and single channel configurations for AD4111/AD4112/AD4114/AD4115?
    • Q12. What is the SPI mode of operation of the AD4111/AD4112/AD4114/AD4115, what polarity do I need to consider?
    • Q13. Where can I find a full and workable sample code for AD4111/AD4112/AD4114/AD4115 for a ST processor?
    • Q14. What is the recommended initialization and register configuration sequence for AD4111/AD4112/AD4114/AD4115?
    • Q15. How many data registers does the AD4111/AD4112/AD4114/AD4115 have to store conversion results for each channel?
    • Q16. What are the General Purpose Input voltage threshold for AD4114, AD4115?
    • Q2. On the AD4111/AD4112/AD4114/AD4115 can I detect if the input signals are floating due to faulty wiring?
    • Q3. What is the recommended anti-aliasing filter required for the AD4111/AD4112/AD4114/AD4115?
    • Q4. Will the same anti alias filter work for both voltage and current inputs of AD4111/AD4112?
    • Q5. Why are the onboard Analog input buffers not required for current measurements AD4111/AD4112?
    • Q6. Can the AD4111/AD41112 current channels accept a bipolar (±20mA) inputs?
    • Q7. What is the AD4111/AD41112 current channel's common-mode input?
    • Q8. Why are the Analog input buffers required for voltage measurements AD4111/AD4112/AD4114/AD4115?
    • Q9. What’s the equivalent input impedance for a pair of voltage input pins of AD4111/AD4112/AD4114/AD4115?
  • +AD5940: FAQ
  • +AD598: FAQ
  • +AD650: FAQ
  • +AD652: FAQ
  • +AD654: FAQ
  • +AD7091: FAQ
  • +AD7091R-X: FAQ
  • +AD711: FAQ
  • +AD7124-4: FAQ
  • +AD7124-8: FAQ
  • +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
  • +AD7192: FAQ
  • +AD7193: FAQ
  • +AD7195: FAQ
  • +AD719x: FAQ
  • +AD7265: FAQ
  • +AD7266: FAQ
  • +AD7280: FAQ
  • +AD7291: FAQ
  • +AD7298: FAQ
  • +AD7305: FAQ
  • +AD7321: FAQ
  • +AD7323: FAQ
  • +AD7328: FAQ
  • +AD7366-5: FAQ
  • +AD7367: FAQ
  • +AD736ARZ: FAQ
  • +AD737: FAQ
  • +AD738x : FAQ
  • +AD7398: FAQ
  • +AD7400A: FAQ
  • +AD7401: FAQ
  • +AD7403: FAQ
  • +AD74111: FAQ
  • +AD7415: FAQ
  • +AD7416: FAQ
  • +AD7417: FAQ
  • +AD7418: FAQ
  • +AD7450: FAQ
  • +AD7475: FAQ
  • +AD7484: FAQ
  • +AD7490: FAQ
  • +AD7492: FAQ
  • +AD75019: FAQ
  • +AD7503: FAQ
  • +AD7541A: FAQ
  • +AD7546: FAQ
  • AD7547: FAQ
  • +AD7568: FAQ
  • +AD7578: FAQ
  • +AD7606-4: FAQ
  • +AD7606: FAQ
  • +AD7606B: FAQ
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  • +AD7740: FAQ
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  • +AD7745: FAQ
  • +AD7746: FAQ
  • +AD7747: FAQ
  • +AD7760: FAQ
  • +AD7763: FAQ
  • +AD7766: FAQ
  • +AD7768: FAQ
  • +AD777x: FAQ
  • +AD7780: FAQ
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  • +AD7787: FAQ
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  • +AD7887: FAQ
  • +AD7888: FAQ
  • +AD7891-1: FAQ
  • +AD7891: FAQ
  • +AD7893-2: FAQ
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  • +AD7896: FAQ
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  • +AD7921: FAQ
  • +AD7924: FAQ
  • +AD7927: FAQ
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  • +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
  • +AD4030-24: FAQ
  • +AD4114: FAQ
  • +AD4116: FAQ
  • +AD4130-8 FAQ
  • +AD4131-8: FAQ
  • +AD4134 FAQ
  • +AD4170: FAQ
  • +AD4858
  • +AD674BBD: FAQ
  • +AD7172-2: FAQ
  • +AD7175-8: FAQ
  • +AD7191: FAQ
  • AD73360: FAQ
  • +AD73360AR: FAQ
  • +AD73360L: FAQ
  • +AD7357: FAQ
  • +AD7386-4: FAQ
  • +AD738x-4: FAQ
  • AD7398 SPI Voltage vs VCC
  • +AD7457: FAQ
  • +AD7606C-16: FAQ
  • +AD7609: FAQ
  • +AD7656-1: FAQ
  • AD7660: FAQ
  • +AD7665: FAQ
  • +AD7680: FAQ
  • +AD7686: FAQ
  • +AD7764: FAQ
  • +AD7778: FAQ
  • AD7892: FAQ
  • +AD7980SRMZ-EP: FAQ
  • +AD7991: FAQ
  • +AD9243: FAQ
  • +AD9260: FAQ
  • +AD9261: FAQ
  • +AD9262: FAQ
  • +AD974: FAQ
  • +AD976A: FAQ
  • +AD977A: FAQ
  • +ADAQ4003: FAQ
  • +ADAQ7768-1: FAQ
  • +ADAQ8092 FAQ
  • +DC590, DC2026, QuikEval: FAQs
  • +EVAL-AD7768-4FMCZ: FAQ
  • +Legacy LTC - Sigma Delta ADCs FAQ
  • +LTC2408: FAQ
  • +LTC2497: FAQ
  • +MAX1028: FAQ
  • +MAX1036: FAQ
  • +MAX1037EKA+: FAQ
  • +MAX11040GUU+: FAQ
  • +MAX11043: FAQ
  • +MAX11045: FAQ
  • +MAX11046 16-BIT AD: FAQ
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  • +MAX11192EVKIT#: FAQ
  • +MAX11200: FAQ
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  • +MAX11259PMB#: FAQ
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Q13. Where can I find a full and workable sample code for AD4111/AD4112/AD4114/AD4115 for a ST processor?

Q13. Where can I find a full and workable sample code for AD4111/AD4112/AD4114/AD4115 for a ST processor?

We have firmware example code with SDP-K1 EVAL board available on the link below.

ad717x_ad411x_mbed_example

The firmware provides a basic user-interface for interacting with the evaluation-board as it waits for user input over serial interface (UART). All the main functionality of the AD411x is provided in the application-code in abstracted form and the user is free to customize the software to suit their own needs for working with the AD411x.

Tags: AD4115 AD4111 AD4114 code st processor firmware example code ad4112 Show More
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  • Q10. Where can I find a full and workable sample codes for AD4116 for a ST processor?
    JCCillion
    We have firmware example code with SDP-K1 EVAL board available on the link below. ad717x_ad411x_mbed_example The firmware provides a basic user-interface for interacting with the evaluation-board as...
  • AD411x: FAQ
    GenevaC
    Q1. What is the difference between the AD4111/AD4112/AD4114/AD4115? AD4111 and AD4112 are pin compatible and have an almost identical feature set except the AD4111 has a unique solution for open wire...
  • Q3. What is the recommended anti-aliasing filter required for the AD4111/AD4112/AD4114/AD4115?
    andreialejandro
    Q3. What is the recommended anti-aliasing filter required for the AD4111/AD4112/AD4114/AD4115? For the AD4111/ AD4112/AD4114/AD4115 the recommend anti-aliasing is 4.7nF/180Ω as this combination will...
 
Related Content
  • Q10. Where can I find a full and workable sample codes for AD4116 for a ST processor?
    JCCillion
    We have firmware example code with SDP-K1 EVAL board available on the link below. ad717x_ad411x_mbed_example The firmware provides a basic user-interface for interacting with the evaluation-board as...
  • AD411x: FAQ
    GenevaC
    Q1. What is the difference between the AD4111/AD4112/AD4114/AD4115? AD4111 and AD4112 are pin compatible and have an almost identical feature set except the AD4111 has a unique solution for open wire...
  • Q3. What is the recommended anti-aliasing filter required for the AD4111/AD4112/AD4114/AD4115?
    andreialejandro
    Q3. What is the recommended anti-aliasing filter required for the AD4111/AD4112/AD4114/AD4115? For the AD4111/ AD4112/AD4114/AD4115 the recommend anti-aliasing is 4.7nF/180Ω as this combination will...
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