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MAX1246BCPE MAX1246BCPE 16432 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 16DIP 16-DIP (0.300", 7.62mm)
ADS42JB69IRGCR ADS42JB69IRGCR 5344 Texas Instruments IC ADC 16BIT PIPELINED 64VQFN 64-VFQFN Exposed Pad
MAX1245ACPP MAX1245ACPP 11128 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 20DIP 20-DIP (0.300", 7.62mm)
ADS54T04IZAYR ADS54T04IZAYR 9338 Texas Instruments IC ADC 12BIT PIPELINED 196NFBGA 196-LFBGA
MAX1246AEEE MAX1246AEEE 13076 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 16QSOP 16-SSOP (0.154", 3.90mm Width)
MAX1246AEPE MAX1246AEPE 4696 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 16DIP 16-DIP (0.300", 7.62mm)
MAX1247BEPE MAX1247BEPE 2737 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 16DIP 16-DIP (0.300", 7.62mm)
ADS5404IZAYR ADS5404IZAYR 2147 Texas Instruments IC ADC 12BIT PIPELINED 196NFBGA 196-LFBGA
MAX1242BCSA MAX1242BCSA 2568 Analog Devices Inc./Maxim Integrated IC ADC 10BIT SAR 8SOIC 8-SOIC (0.154", 3.90mm Width)
ADC12SJ800AAVT ADC12SJ800AAVT 1554 Texas Instruments IC ANALOG TO DIGITAL CONVERTER 144-FBGA, FCBGA
MAX1243BEPA MAX1243BEPA 17482 Analog Devices Inc./Maxim Integrated IC ADC 10BIT SAR 8DIP 8-DIP (0.300", 7.62mm)
ADC12DJ3200NWE/EM ADC12DJ3200NWE/EM 19518 Texas Instruments EVAL BOARD 196-BCPGA
MAX1247AEPE MAX1247AEPE 13154 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 16DIP 16-DIP (0.300", 7.62mm)
MAX1247BEEE MAX1247BEEE 2711 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 16QSOP 16-SSOP (0.154", 3.90mm Width)
MAX1243ACPA MAX1243ACPA 29956 Analog Devices Inc./Maxim Integrated IC ADC 10BIT SAR 8DIP 8-DIP (0.300", 7.62mm)
MAX1271ACAI MAX1271ACAI 21427 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 28SSOP 28-SSOP (0.209", 5.30mm Width)
ADC08D1000CIYB/NOPB ADC08D1000CIYB/NOPB 11238 Texas Instruments IC ADC 8BIT FOLD INTERP 128HLQFP 128-LQFP Exposed Pad
MAX1243ACSA MAX1243ACSA 22144 Analog Devices Inc./Maxim Integrated IC ADC 10BIT SAR 8SOIC 8-SOIC (0.154", 3.90mm Width)
ADC12SJ800AAV ADC12SJ800AAV 1750 Texas Instruments IC ANALOG TO DIGITAL CONVERTER 144-FBGA, FCBGA
MAX1245ACAP MAX1245ACAP 16431 Analog Devices Inc./Maxim Integrated IC ADC 12BIT SAR 20SSOP 20-SSOP (0.209", 5.30mm Width)

Analog to Digital Converters (ADC)

1. What are Analog to Digital Converters (ADC)?

‌Basic Definition

ADC (Analog-to-digital converter) is an electronic device that converts continuously changing analog signals (such as voltage and current) into discrete digital signals (binary code). It builds a bridge between the physical world (analog signal) and digital systems (processors, controllers).

 

‌Functional Significance

Digital systems (such as microprocessors) can only process binary signals (0/1), while the analog signals output by physical sensors (temperature, pressure, etc.) need to be converted into digital quantities through ADC before they can be recognized and processed by digital circuits.

 

2. How does Analog to Digital Converters (ADC) Work?

The conversion process of ADC includes four key steps:

‌Sampling‌: Collect the instantaneous value of the analog signal at fixed time intervals.

‌Holding‌: Hold the sampled value for a short time to ensure signal stability during conversion.

‌Quantization‌: Map the sampled value to a finite discrete level (determined by the resolution).

‌Encoding‌: Convert the quantized value to a binary digital output.

 

For example, a 4-bit ADC divides the analog voltage into 24=16 discrete levels and outputs a 4-bit binary code to represent the relative voltage value.

 

3. Key Performance Parameters of Analog to Digital Converters (ADC)

‌Resolution

The number of bits of the output digital quantity (such as 8 bits, or 12 bits) determines the minimum resolvable voltage (Vref/(2N−1)).

 

‌Sampling Rate

The number of samples per second (Hz), which must meet the Nyquist theorem (twice higher than the highest frequency of the signal).

 

‌Reference Voltage 

The reference standard for conversion, the output digital quantity represents the ratio of the input signal to the reference voltage.

 

4. What are Analog to Digital Converters (ADC) Used for?

‌Automotive electronics‌: temperature/pressure sensor signal conversion to ECU (electronic control unit).

‌Medical Equipment‌: digital acquisition of physiological signals (such as electrocardiogram, blood pressure).

‌Industrial Control‌: real-time monitoring of analog quantities (flow, displacement) and feedback to digital systems.

 

5. What are the Types of Analog to Digital Converters (ADC)?

ADC types are diverse, including:

‌Successive Approximation Register (SAR) ‌: balance speed and accuracy.

‌Σ-Δ Type‌: high-resolution audio processing.

‌Pipeline Type‌: high-speed communication system.

 

ADC is the core interface device of modern electronic systems, and its performance directly affects the accuracy and efficiency of data acquisition.

 

6. Analog to Digital Converters (ADC) FAQs

1)‌How to reduce ADC errors? ‌

Use an external high-stability reference voltage source (instead of an internal reference);

Add hardware filtering (such as RC low-pass filtering) to reduce noise;

Optimize PCB layout: shorten signal routing and keep away from high-frequency interference sources;

Software calibration of offset/gain errors.

 

2) ‌What to do if the input signal amplitude is too small? ‌

The pre-gain amplifier (PGA) amplifies the signal to the ADC range and improves the effective resolution.

 

3) ‌How to avoid interference when acquiring multiple channels? ‌

Configure a reasonable sampling time (allow the signal to stabilize);

Use differential input mode to suppress common-mode noise.

 

4) ‌How to choose an ADC model? ‌

Resolution: The more subtle the change in sensor output, the higher the bit number required (e.g. 12 bits for temperature monitoring, 16 bits or more for audio acquisition);

Sampling Rate: Dynamic signals (e.g. audio) require MHz level, and low-speed sensors can be reduced to kSPS35.

 

5) ‌What is the performance of the built-in ADC of MCUs such as STM32? ‌

Most of them meet general requirements: 12-bit resolution, 1MSPS sampling rate, support for multi-channel scanning and calibration functions, and better cost performance than external ADC chips.