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Description
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AD7730BR-REEL AD7730BR-REEL 71599 Analog Devices Inc. IC AFE 1 CHAN 24BIT 24SOIC 24-SOIC (0.295", 7.50mm Width)
AD73411BB-80 AD73411BB-80 68806 Analog Devices Inc. IC ANALOG FRONT END W/DSP 119BGA 119-BBGA
AD7730BRU-REEL AD7730BRU-REEL 32400 Analog Devices Inc. IC AFE 1 CHAN 24BIT 24TSSOP 24-TSSOP (0.173", 4.40mm Width)
AD7730LBRU-REEL7 AD7730LBRU-REEL7 55324 Analog Devices Inc. IC AFE 1 CHAN 24BIT 24TSSOP 24-TSSOP (0.173", 4.40mm Width)
AD7730LBR-REEL7 AD7730LBR-REEL7 76886 Analog Devices Inc. IC AFE 1 CHAN 24BIT 24SOIC 24-SOIC (0.295", 7.50mm Width)
AD73360LAR AD73360LAR 49802 Analog Devices Inc. IC ANALOG FRONT END 6CH 28-SOIC 28-SOIC (0.295", 7.50mm Width)
AD7730LBRU-REEL AD7730LBRU-REEL 52792 Analog Devices Inc. IC AFE 1 CHAN 24BIT 24TSSOP 24-TSSOP (0.173", 4.40mm Width)
AD7730LBR AD7730LBR 45556 Analog Devices Inc. IC AFE 1 CHAN 24BIT 24SOIC 24-SOIC (0.295", 7.50mm Width)
AD9878BSTZ AD9878BSTZ 88075 Analog Devices Inc. IC AFE 4 CHAN 12BIT 100LQFP 100-LQFP
VSP5611RSHR VSP5611RSHR 33375 Texas Instruments IC AFE 4 CHAN 16BIT 56VQFN 56-VFQFN Exposed Pad
LMP91050MME/NOPB LMP91050MME/NOPB 25504 Texas Instruments IC AFE 1 CHAN 10VSSOP 10-TFSOP, 10-MSOP (0.118", 3.00mm Width)
ADS1194CPAGR ADS1194CPAGR 28216 Texas Instruments IC AFE 4 CHAN 16BIT 64TQFP 64-TQFP
ADS1194CZXGR ADS1194CZXGR 97016 Texas Instruments IC AFE 4 CHAN 16BIT 64NFBGA 64-LFBGA
AFE44I31YZR AFE44I31YZR 28955 Texas Instruments IC ANALOG FRONT END 30-XFBGA, DSBGA
AD9849KST AD9849KST 29294 Analog Devices Inc. 12-BIT CCD SIGNAL PROCESSOR 48-LQFP
TLV990-28PFB TLV990-28PFB 65474 Texas Instruments IC AFE 1 CHAN 10BIT 48TQFP 48-TQFP
LMP90080QMHX/NOPB LMP90080QMHX/NOPB 74856 Texas Instruments IC AFE 1 CHAN 16BIT 28HTSSOP 28-PowerTSSOP (0.173", 4.40mm Width)
AFE44I30YZR AFE44I30YZR 95019 Texas Instruments AFE4430 WITH I2C 30-XFBGA, DSBGA
TLV990-13PFB TLV990-13PFB 90010 Texas Instruments IC AFE 1 CHAN 10BIT 48TQFP 48-TQFP
AFE4950YBGT AFE4950YBGT 23641 Texas Instruments IC ANALOG FRONT END 36-XFBGA, DSBGA

Analog Front End (AFE)

‌1. What is Analog Front End (AFE)?‌

‌Analog Front End (AFE)‌ is a key component for processing analog signals in electronic systems. It is located between the sensor/signal source and the digital processor and is responsible for converting the original analog signal into a high-quality, processable digital signal. Its core function is to solve the problems of analog signals being susceptible to noise interference and low amplitude, and to provide a reliable input basis for digital systems.

 

2. What are the Core Functions of Analog Front End (AFE)?‌

1) ‌Signal Conditioning‌

‌Amplification‌: Increase the amplitude of weak analog signals and enhance system sensitivity.

‌Filtering‌: Eliminate noise and interference through hardware or digital filtering to improve the signal-to-noise ratio.

 

2) ‌Analog-to-Digital Conversion (ADC)‌

Built-in high-precision ADC discretizes the conditioned analog signal into a digital signal. The sampling rate directly affects the accuracy of signal restoration.

 

3) ‌Preprocessing‌

Some AFEs integrate simple digital processing units (such as FFT and baseline correction) to reduce the burden on the main processor.

 

3. What are the Structural Features of Analog Front End (AFE)?‌

‌Highly Integrated‌

Amplifiers, filters, ADCs, reference voltage sources, excitation circuits, and other modules are integrated into a single chip to simplify system design.

 

‌Mixed Signal Architecture‌

Based on analog circuits, supplemented by a small amount of digital control logic (such as multiplexers and state machines).

 

‌Flexible Interface‌

Supports digital interfaces such as I²C and SPI (such as ISO-SPI for BMS daisy chain communication), compatible with various MCUs or processors.

 

‌4. What are Analog Front End (AFE) Used for?‌

Battery management system (BMS)‌

Collect cell voltage/temperature, and the accuracy directly affects SOC estimation.

 

Built-in passive balancing circuit to balance the battery pack through resistor discharge.

‌High-speed Communication Interface‌

Processes high-speed signal transmission and reception in protocols such as PCIe, and integrates equalizer (Equalizer) and clock data recovery (CDR) modules.

 

‌Precision Measurement System‌

Used in industrial sensors, medical equipment, etc., to achieve high-resolution acquisition of weak analog signals.

 

‌5. Key Parameters Selection for Analog Front End (AFE)‌‌

‌Parameter

‌Description

‌Resolution

The number of ADC bits (such as 16bit), which determines the signal quantization accuracy

‌Sampling Rate

Affects the signal restoration capability and must meet the Nyquist theorem

‌Power Consumption

Especially critical for portable devices, related to the ADC architecture (Δ-Σ/pipeline type)

‌Integrated Functions

Such as built-in PGA (programmable gain amplifier), temperature sensor, reference source, etc.

 

‌6. Development Trend of Analog Front End (AFE)‌

The new generation of AFE continues to evolve towards higher integration (such as MCU integration), lower power consumption (suitable for IoT devices), and intelligent signal processing (embedded AI pre-processing) to meet the needs of complex application scenarios.