PMIC - Voltage Reference

Image Part Number Description / PDF Quantity Rfq
MAX6143BASA33+T

MAX6143BASA33+T

Maxim Integrated

IC VREF SERIES 0.1% 8SOIC

0

MAX8515AEXK+T

MAX8515AEXK+T

Maxim Integrated

IC VREF SHUNT 18V 0.5% SC70-5

23232500

MAX6018AEUR16+T

MAX6018AEUR16+T

Maxim Integrated

IC VREF SERIES 0.2% SOT23-3

1491

MAX675ESA+

MAX675ESA+

Maxim Integrated

IC VREF SERIES 0.15% 8SOIC

1415200

MAX6050AEUR+T

MAX6050AEUR+T

Maxim Integrated

IC VREF SERIES 0.2% SOT23-3

299417500

LM4040CEX3-3.3+T

LM4040CEX3-3.3+T

Maxim Integrated

IC VREF SHUNT 0.5% SC70-3

10000

MAX6193AESA+

MAX6193AESA+

Maxim Integrated

IC VREF SERIES 0.07% 8SOIC

28300

MAX6143AASA10+

MAX6143AASA10+

Maxim Integrated

IC VREF SERIES 0.05% 8SOIC

1173400

MAX6126A28+

MAX6126A28+

Maxim Integrated

IC VREF SERIES 0.06% 8UMAX

172

MAX6138AEXR21+T

MAX6138AEXR21+T

Maxim Integrated

IC VREF SHUNT 0.1% SC70-3

1185000

MAX6250ACPA+

MAX6250ACPA+

Maxim Integrated

IC VREF SERIES 0.02% 8DIP

27200

MAX6071BAUT33+T

MAX6071BAUT33+T

Maxim Integrated

IC VREF SERIES 0.08% SOT23-6

1397

MAX6133AASA50+

MAX6133AASA50+

Maxim Integrated

IC VREF SERIES 0.04% 8SOIC

1452300

MAX6341EPA+

MAX6341EPA+

Maxim Integrated

IC VREF SERIES 0.02% 8DIP

0

MAX6006AEUR+T

MAX6006AEUR+T

Maxim Integrated

IC VREF SHUNT 0.2% SOT23-3

5774

LM4050CEM3-5.0/V+T

LM4050CEM3-5.0/V+T

Maxim Integrated

IC VREF SHUNT 0.5% SOT23-3

130000

MAX6125EUR+T

MAX6125EUR+T

Maxim Integrated

IC VREF SERIES 1% SOT23-3

2169

MAX6126A50+T

MAX6126A50+T

Maxim Integrated

IC VREF SERIES 0.06% 8UMAX

8732

MAX6341CPA+

MAX6341CPA+

Maxim Integrated

IC VREF SERIES 0.02% 8DIP

452200

REF01CESA+T

REF01CESA+T

Maxim Integrated

IC VREF SERIES 1% 8SOIC

0

PMIC - Voltage Reference

1. Overview

Voltage references are precision analog circuits that generate stable and accurate DC voltage levels. As critical components in Power Management Integrated Circuits (PMICs), they serve as calibration standards for analog-to-digital converters (ADCs), digital-to-analog converters (DACs), and power monitoring systems. Their stability against temperature variations, process shifts, and supply voltage fluctuations ensures measurement accuracy and system reliability in modern electronics.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Bandgap ReferenceTemperature-compensated design using bipolar transistor characteristicsGeneral-purpose ADC/DAC calibration
Zener ReferenceHigh-voltage stability through reverse breakdown characteristicsIndustrial power supplies, test equipment
LDO Voltage ReferenceLow dropout voltage with high PSRR performanceBattery-powered devices, portable instruments
High-Precision ReferenceSub-0.1% initial accuracy with ppm-level temperature driftMedical imaging systems, precision sensors
Programmable ReferenceDigital control of output voltage via I2C/SPI interfacesAdaptive power systems, FPGA voltage scaling

3. Structure and Composition

Typical voltage reference architecture includes: - Primary reference source (bandgap or Zener diode) - Operational amplifier for voltage buffering - Temperature compensation circuitry - Output driver stage - Protective elements (ESD protection, current limiting) Fabricated using CMOS/BiCMOS processes, housed in SC70, SOT23, or TSSOP packages with 3-8 pins. Advanced designs integrate digital calibration registers and thermal shutdown functions.

4. Key Technical Specifications

ParameterDescriptionImportance
Initial AccuracyVoltage deviation at 25 C ( 0.02% to 1%)Determines system calibration baseline
Temperature CoefficientDrift rate over temperature range (1-100ppm/ C)Affects measurement stability
Output NoiseRMS noise voltage in 0.1-10Hz band (5 V to 100 V)Impacts ADC/DAC resolution
Load RegulationVoltage change with load current (0.01%/mA)Ensures stability under dynamic loads
Line RegulationVoltage change with supply voltage (0.05%/V)Maintains accuracy with supply variations

5. Application Areas

  • Communication: 5G base stations, optical transceivers, RF test equipment
  • Consumer: Smartphones, wearables, battery management systems
  • Industrial: Process control sensors, PLC modules, precision instrumentation
  • Automotive: Battery management systems (BMS), ADAS sensors, engine controllers
  • Medical: MRI systems, portable diagnostic devices, patient monitors

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
TILM4040/LM40500.1% accuracy, 50ppm/ C tempco, 50mA output
Analog DevicesADR45xx0.02% initial accuracy, 3ppm/ C drift
Maxim IntegratedMAX6126Series voltage reference with enable pin
STMicroelectronicsLN3480Low-power consumption (380nA IQ)
ON SemiconductorNCP100Cost-effective solution for 12-bit ADCs

7. Selection Guidelines

Key selection criteria: - Required accuracy class (0.02% vs 1%) - Operating temperature range (-55 C to +125 C) - Power supply constraints (voltage headroom, quiescent current) - Package size and thermal dissipation capability - Long-term stability requirements (aging effects) - Cost vs performance trade-offs (e.g., programmable vs fixed) Example: For a 16-bit industrial ADC system, select a reference with <5ppm/ C tempco and <1 Vpp noise.

8. Industry Trends

  • Nanometer process integration enabling sub-1V references
  • Development of chopper-stabilized references for ultra-low drift
  • Increase in digital programmable references with I2C interfaces
  • Advancements in radiation-hardened references for aerospace
  • Reduced package sizes (0.65mm x 1.0mm WLCSP)
  • AI-enhanced self-calibration algorithms in smart references
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