Data Acquisition - ADCs/DACs - Special Purpose

Image Part Number Description / PDF Quantity Rfq
MSC1214Y4PAGR

MSC1214Y4PAGR

Texas Instruments

IC ADC/DAC 1K 64TQFP

0

MSC1213Y4PAGRG4

MSC1213Y4PAGRG4

Texas Instruments

IC ADC/DAC 1K 64TQFP

0

TLV320DAC23IPWG4

TLV320DAC23IPWG4

Texas Instruments

IC DAC/AUD 24BIT 8K-96K 28TSSOP

0

MSC1213Y3PAGRG4

MSC1213Y3PAGRG4

Texas Instruments

IC ADC/DAC 1K 64TQFP

0

PCM1704U/2K

PCM1704U/2K

Texas Instruments

IC DAC/AUDIO 24BIT 96K 20SO

0

PCM56P

PCM56P

Texas Instruments

IC DAC/AUDIO 16BIT 16DIP

0

LDC1000EPWRQ1

LDC1000EPWRQ1

Texas Instruments

IC IND TO DGTL 24BIT 5M 16TSSOP

0

PCM1730E/2KG4

PCM1730E/2KG4

Texas Instruments

IC DAC/AUDIO 24BIT 200K 28SSOP

0

PCM1719E/2K

PCM1719E/2K

Texas Instruments

IC DAC/AUDIO 18BIT 48K 28SSOP

0

ADC12441CIJ

ADC12441CIJ

Texas Instruments

IC ADC 12BIT 55K 28DIP

0

PCM1604PTG4

PCM1604PTG4

Texas Instruments

IC DAC/AUDIO 24BIT 200K 48LQFP

0

MSC1200Y3PFBRG4

MSC1200Y3PFBRG4

Texas Instruments

IC ADC/DAC 1K 48TQFP

0

PCM1605Y

PCM1605Y

Texas Instruments

IC DAC/AUDIO 24BIT 200K 48MQFP

0

PCM1750U/1KG4

PCM1750U/1KG4

Texas Instruments

IC ADC/AUDIO 18BIT 28SOIC

0

ICL7135CNG4

ICL7135CNG4

Texas Instruments

IC DISPLAY DRIVR 4.5DIGIT 28DIP

0

MSC1213Y4PAGR

MSC1213Y4PAGR

Texas Instruments

IC ADC/DAC 1K 64TQFP

0

PCM69AU-K

PCM69AU-K

Texas Instruments

IC DAC/AUDIO 18BIT 20SOIC

0

DSD1794DBR

DSD1794DBR

Texas Instruments

IC DAC/AUDIO 24BIT 200K 28SSOP

0

PCM55HP/1K

PCM55HP/1K

Texas Instruments

IC DAC/AUDIO 16BIT 24SOIC

0

PCM2702EG/2K

PCM2702EG/2K

Texas Instruments

IC AUDIO 16BIT 48K 28SSOP

0

Data Acquisition - ADCs/DACs - Special Purpose

1. Overview

Special Purpose Analog-to-Digital Converters (ADCs) and Digital-to-Analog Converters (DACs) are integrated circuits designed for specific data acquisition tasks requiring tailored performance characteristics. These ICs enable precise signal conversion in specialized applications where standard converters cannot meet unique requirements such as ultra-high speed, extreme accuracy, isolation, or environmental robustness. They are critical in advanced industrial control systems, medical instrumentation, aerospace electronics, and high-frequency communication systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
High-Speed ADCsSampling rates >1 GSPS, low latency, wide bandwidthRadar systems, 5G transceivers
High-Precision ADCs24-bit resolution, 2ppm linearity, low noiseMedical imaging, precision test equipment
Isolated ADCsGalvanic isolation up to 5kVRMS, CMTI >100kV/ sIndustrial motor drives, grid-tied inverters
Multi-Channel DACsSynchronized channels, crosstalk < -100dBAutomotive LiDAR beam steering
Radiation-Hardened ADCsLatch-up immunity, TID tolerance >100kradSatellite payloads, nuclear instrumentation

3. Structure and Components

Typical architecture includes:

  • Input conditioning stage (PGA, anti-aliasing filter)
  • Sampling-and-Hold circuit with <10ps jitter
  • Conversion core (SAR, Delta-Sigma, Pipeline architecture)
  • Digital interface (SPI, JESD204B, LVDS)
  • Calibration engine for offset/linearity correction
  • Thermal management structures (exposed pads, thermal vias)

4. Key Technical Specifications

ParameterDescriptionImportance
Effective Number of Bits (ENOB)Actual resolution considering noise/distortionSystem accuracy benchmark
Signal-to-Noise and Distortion (SINAD)Dynamic range measurementDetermines minimum detectable signal
Integral Nonlinearity (INL)Deviation from ideal transfer functionEssential for precision measurements
Power Supply Rejection Ratio (PSRR)Noise immunity from power railsSystem stability in varying conditions
Operating Temperature Range-55 C to +150 C for automotive/military gradesEnvironmental reliability

5. Application Fields

  • Industrial Automation: Programmable Logic Controllers (PLCs) with 16-channel analog inputs
  • Medical Imaging: MRI scanners requiring 24-bit ADCs with 10nV/ Hz noise density
  • Aerospace: Avionics data acquisition with radiation-hardened DACs
  • Test & Measurement: Oscilloscopes using 8GS/s ADCs for 2GHz bandwidth
  • Energy Systems: Grid monitoring devices with 0.01% accurate voltage measurement

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Specifications
Analog DevicesAD7124-824-bit - ADC, 0.001% linearity, TUE <0.1%
TI SemiconductorADS54J6016-bit, 1GSPS ADC with 74dB SNR
Maxim IntegratedMAX1115616-channel, 18-bit SAR ADC, 0.1LSB INL
STMicroelectronicsLTC2380-2424-bit, 2Msps ADC with 2ppm INL
NXP SemiconductorsMC12DX10808-channel DAC with 12.5ps jitter for LiDAR

7. Selection Guidelines

Key selection criteria:

  1. Match sampling rate and bandwidth to signal requirements
  2. Verify temperature stability and long-term drift specifications
  3. Consider digital interface compatibility (e.g. JESD204C for high-speed links)
  4. Evaluate power consumption vs. performance trade-offs
  5. Example: For vibration analysis in jet engines, select ADC with 200dB dynamic range and -55 C to +125 C rating

Industry Trends

Emerging trends include:

  • 3D-stacked ICs integrating ADCs with AI acceleration cores
  • Time-interleaved ADCs breaking 10 GSPS barriers
  • Self-calibrating DACs with embedded temperature sensors
  • Photonics-enabled converters for THz-range sampling
  • Energy-harvesting optimized ADCs with sub- W operation modes

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