Digital Isolators

Image Part Number Description / PDF Quantity Rfq
ISO7142CCDBQR

ISO7142CCDBQR

Texas Instruments

DGTL ISO 2500VRMS 4CH GP 16SSOP

4741

ISO7710FQDQ1

ISO7710FQDQ1

Texas Instruments

DGTL ISO 3000VRMS 1CH 8SOIC

542

ISO7720QDQ1

ISO7720QDQ1

Texas Instruments

DGTL ISO 3000VRMS 2CH 8SOIC

320

ISO3086TDWR

ISO3086TDWR

Texas Instruments

ISO RS485 W/ TRANSFORMER DRIVER

7171

ISO3080DWR

ISO3080DWR

Texas Instruments

ISO RS485/422 0.2MBPS 2.5KVRMS

0

ISO1176DWG4

ISO1176DWG4

Texas Instruments

ISO RS485/422 PROFIBUS 2.5KVRMS

0

ISO7841DWW

ISO7841DWW

Texas Instruments

DGTL ISO 5700VRMS 4CH GP 16SOIC

0

ISO7821DWW

ISO7821DWW

Texas Instruments

DGTL ISO 5700VRMS 2CH GP 16SOIC

98

ISO7341FCDWR

ISO7341FCDWR

Texas Instruments

DGTL ISO 3000VRMS 4CH GP 16SOIC

323

ISO7321CQDQ1

ISO7321CQDQ1

Texas Instruments

DGTL ISO 3000VRMS 2CH 8SOIC

0

ISO7731QDWRQ1

ISO7731QDWRQ1

Texas Instruments

DGTL ISO 5000VRMS 3CH 16SOIC

373

ISO7342FCDW

ISO7342FCDW

Texas Instruments

DGTL ISO 3000VRMS 4CH GP 16SOIC

0

ISO7730FQDBQQ1

ISO7730FQDBQQ1

Texas Instruments

DGTL ISO 3000VRMS 3CH 16SSOP

1483

ISO7761DBQ

ISO7761DBQ

Texas Instruments

DGTL ISO 3000VRMS 6CH GP 16SSOP

144

ISO7760FQDBQRQ1

ISO7760FQDBQRQ1

Texas Instruments

DGTL ISO 3000VRMS 6CH 16SSOP

0

ISO7142CCQDBQRQ1

ISO7142CCQDBQRQ1

Texas Instruments

DGTL ISO 2500VRMS 4CH 16SSOP

1712

ISO7810DW

ISO7810DW

Texas Instruments

DGTL ISO 5700VRMS 1CH GP 16SOIC

147

ISO7721DW

ISO7721DW

Texas Instruments

DGTL ISO 5000VRMS 2CH GP 16SOIC

160

ISO7830FDWWR

ISO7830FDWWR

Texas Instruments

DGTL ISO 5700VRMS 3CH GP 16SOIC

0

ISO7763DWR

ISO7763DWR

Texas Instruments

DGTL ISO 5000VRMS 6CH GP 16SOIC

543

Digital Isolators

1. Overview

Digital isolators are electronic components that enable signal transmission between circuits or systems with different voltage levels while maintaining electrical isolation. They utilize semiconductor technologies (e.g., capacitive, inductive, or optical coupling) to replace traditional optocouplers. These devices are critical in modern systems for ensuring safety, reducing noise interference, and enabling communication in high-voltage environments.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Capacitive IsolatorsUse high-frequency capacitive coupling for signal transfer. Low power consumption, supports high data rates.Industrial motor drives, PLC systems
Inductive (Magnetic) IsolatorsUtilize miniature transformers for isolation. High noise immunity, supports bidirectional communication.Automotive BMS, battery chargers
Optocoupler-Based Digital IsolatorsHybrid design combining LED and CMOS detectors. Low cost, moderate speed.Consumer electronics, home appliances
Multi-Channel IsolatorsIntegrate multiple isolation channels in one package. Supports complex signal routing.Data acquisition systems, industrial IoT gateways

3. Structure and Components

A typical digital isolator consists of: (1) Input circuit with signal conditioning; (2) Isolation barrier (e.g., SiO2 capacitive layer or micro-transformer core); (3) Output circuit with amplification/reconstruction; (4) Dual-die packaging with reinforced insulation. Advanced products integrate signal and power isolation in single chips.

4. Key Technical Specifications

ParameterUnitImportance
Isolation Voltage (Viso)VrmsDetermines safety level (e.g., 2500-5000Vrms for industrial use)
Data RateMbpsDefines maximum signal transmission speed (1-150 Mbps)
Propagation DelaynsImpacts system timing accuracy (Typ. 10-50 ns)
Power ConsumptionmWCrucial for battery-powered devices
Operating Temperature CSpecifies environmental tolerance (-40 to +125 C)

5. Application Fields

  • Industrial automation (PLC, motor drives)
  • Medical equipment (ECG machines, patient monitors)
  • Automotive systems (BMS, OBC for EVs)
  • Renewable energy (solar inverters, grid-tied systems)
  • Telecommunications (5G base stations, optical transceivers)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Specifications
Analog DevicesADN4654150Mbps, 5kVrms isolation, 4-channel
Texas InstrumentsISO7841100Mbps, 8kV CMTI, quad-channel
Silicon LabsSI8640150Mbps, 2.5kVrms, 4-channel
InfineonBDx183100Mbps, reinforced isolation, automotive-grade

7. Selection Guidelines

  1. Define isolation voltage and safety certification (e.g., UL, VDE)
  2. Match data rate with system requirements
  3. Consider channel count and directionality
  4. Evaluate power budget and PCB space constraints
  5. Check environmental specifications (temperature, vibration)

8. Industry Trends

Future development focuses on: (1) Integration of isolation and level-shifting functions; (2) 3D packaging for miniaturization; (3) Enhanced immunity to electromagnetic interference (EMI < 150 V/m); (4) System-level isolation solutions combining signal/power transfer. The market is projected to grow at 12% CAGR until 2028, driven by EV and industrial IoT adoption.

Application Case

In electric vehicles, digital isolators like TI's ISO7741 are used in battery management systems to isolate high-voltage battery packs (up to 1000V) from low-voltage control circuits, enabling safe CAN bus communication with 50kV/ s common-mode transient immunity (CMTI).

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