Data Acquisition - Digital to Analog Converters (DAC)

Image Part Number Description / PDF Quantity Rfq
DAC8811ICDGKT

DAC8811ICDGKT

Texas Instruments

IC DAC 16BIT A-OUT 8VSSOP

1430

DAC8832IBRGYR

DAC8832IBRGYR

Texas Instruments

DAC, SERIAL INPUT

6000

TLC7524IDR

TLC7524IDR

Texas Instruments

TLC7524 8-BIT, 0.1 US MDAC, PARA

62845

DAC3152IRGZT

DAC3152IRGZT

Texas Instruments

IC DAC 10BIT A-OUT 48VQFN

163

TLV5616CDG4

TLV5616CDG4

Texas Instruments

IC DAC 12BIT V-OUT 8SOIC

0

TLV5618AMDREP

TLV5618AMDREP

Texas Instruments

TLV5618A-EP ENHANCED PRODUCT DIG

8053

DAC2902Y/1K

DAC2902Y/1K

Texas Instruments

DAC2902 DUAL-CHANNEL, 12-BIT, 12

4847

TLV5638CDG4

TLV5638CDG4

Texas Instruments

IC DAC 12BIT V-OUT 8SOIC

0

DAC8830MCDREP

DAC8830MCDREP

Texas Instruments

IC DAC 16BIT V-OUT 8-SOIC

0

TLV5604CPWR

TLV5604CPWR

Texas Instruments

TLV5604 10-BIT, 3 US QUAD DAC, S

5450

DAC7564ICPWRG4

DAC7564ICPWRG4

Texas Instruments

IC DAC 12BIT V-OUT 16TSSOP

0

DAC37J84IAAV

DAC37J84IAAV

Texas Instruments

IC DAC 16BIT A-OUT 144FCBGA

162

DAC8164IAPW

DAC8164IAPW

Texas Instruments

DAC8164 14-BIT, QUAD CHANNEL, UL

490

TLV5618AIDG4

TLV5618AIDG4

Texas Instruments

IC DAC 12BIT V-OUT 8SOIC

0

DAC8564IAPWR

DAC8564IAPWR

Texas Instruments

IC DAC 16BIT V-OUT 16TSSOP

2117

DAC7624UB/1K

DAC7624UB/1K

Texas Instruments

DAC7624 12-BIT QUAD VOLTAGE OUTP

15832

TLV5614IYZT

TLV5614IYZT

Texas Instruments

DAC, SERIAL INPUT

1750

TLV5614IPWR

TLV5614IPWR

Texas Instruments

TLV5614 12-BIT, 3 US QUAD DAC, S

300

DAC716U-TI

DAC716U-TI

Texas Instruments

DAC, 1 FUNC, SERIAL INPUT LOADIN

180

TLV5638MDREP

TLV5638MDREP

Texas Instruments

IC DAC 12BIT V-OUT 8SOIC

2378

Data Acquisition - Digital to Analog Converters (DAC)

1. Overview

Digital-to-Analog Converters (DACs) are semiconductor devices that convert digital signals into analog voltages or currents. They serve as critical interfaces between digital systems and real-world analog environments. DACs are essential in applications requiring precise control of analog outputs, such as audio processing, industrial automation, and communication systems. Their performance directly impacts signal fidelity, system accuracy, and overall efficiency in data acquisition chains.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Current-Steering DACHigh-speed operation using switched current sourcesRF signal generation, high-speed test equipment
Voltage-Output DACDirect voltage generation with built-in amplifiersProcess control, sensor calibration
Multiplixing DACSupports variable reference inputs for signal modulationDigital gain control, programmable power supplies
Pipeline DACSegmented architecture for high sample ratesCommunication transmitters, video processing
Sigma-Delta ( - ) DACHigh-resolution with noise shaping techniquesAudio systems, precision measurement instruments

3. Structure and Components

A typical DAC IC comprises: - Digital Interface (SPI, I2C, or parallel bus) - Decoder Circuitry for binary/thermometer code conversion - Resistor/Capacitor Arrays for weighted signal summation - Switch Matrix controlling current/voltage paths - Output Amplifier conditioning the analog signal - Reference Voltage Source ensuring conversion stability Modern DACs often integrate calibration logic and temperature compensation circuits in QFN, TSSOP, or BGA packages.

4. Key Technical Specifications

ParameterSignificance
Resolution (bits)Determines the smallest analog change (e.g., 12-bit 4096 steps)
Sample Rate (SPS)Maximum conversion speed (up to 10 GSPS in RF DACs)
Integral Nonlinearity (INL)Measures deviation from ideal transfer function
Differential Nonlinearity (DNL)Indicates step size consistency
Settling TimeTime to stabilize output after digital input change
Power ConsumptionCrucial for portable/battery-powered systems

5. Application Areas

Main industries include: - Consumer Electronics: Smartphones (audio DACs), streaming devices - Industrial Automation: PLC systems, CNC machine control - Medical Equipment: MRI imaging systems, patient monitoring - Telecommunications: Optical modems, 5G base stations - Test & Measurement: Signal generators, oscilloscopes - Automotive: EV battery management, ADAS sensor calibration

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsDAC38J8416-bit, 2.5 GSPS RF DAC with JESD204B interface
Analog DevicesAD575516-channel, industrial voltage/current output DAC
Maxim IntegratedMAX513410-bit, 1.8V low-power video DAC
Nordic SemiconductornRF21540RF front-end with integrated DAC for IoT devices

7. Selection Guidelines

Key considerations: - Match resolution and speed requirements (e.g., audio vs. RF applications) - Evaluate output type (current/voltage) and drive capability - Assess linearity specifications (INL/DNL) for precision needs - Consider power budget and thermal management - Verify digital interface compatibility (SPI, I2C, etc.) - Temperature range and package type for environmental conditions - Calibration features for long-term stability

8. Industry Trends

Current development directions include: - Integration with ADCs and signal processors in SoC solutions - Advancements in R-2R ladder architectures for higher precision - Development of radiation-hardened DACs for aerospace applications - Energy-efficient designs for IoT edge devices - Expansion of AI-driven calibration algorithms - Adoption of advanced packaging (e.g., 3D stacking) for higher density Market growth is driven by 5G infrastructure, autonomous vehicles, and industrial IoT deployments requiring high-speed, high-accuracy signal conversion.

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