Optoisolators - Logic Output

Image Part Number Description / PDF Quantity Rfq
HCPL-J456-300E

HCPL-J456-300E

Broadcom

OPTOISO 3.75KV OPEN COLL 8DIP GW

0

ACPL-M61T-500E

ACPL-M61T-500E

Broadcom

OPTOISO 4KV OPN COLLECTOR 5SO

1216

ACSL-6420-00TE

ACSL-6420-00TE

Broadcom

OPTOISO 2.5KV 4CH OPEN COLL 16SO

0

HCPL-0201#500

HCPL-0201#500

Broadcom

OPTOISO 3.75KV PUSH PULL 8SO

0

8102805PC

8102805PC

Broadcom

OPTOISO 2.5KV 2CH OPEN COLL 8DIP

0

HCPL-0466-560E

HCPL-0466-560E

Broadcom

OPTOISO 3.75KV OPN COLLECTOR 8SO

0

HCPL-2411

HCPL-2411

Broadcom

OPTOISO 2.5KV TRI-STATE 8DIP

0

ACSL-6210-50RE

ACSL-6210-50RE

Broadcom

OPTOISO 2.5KV 2CH OPEN COLL 8SO

3000

ACPL-K75T-060E

ACPL-K75T-060E

Broadcom

OPTOISO 5KV 2CH PUSH PULL 8SO

0

HCPL-0600

HCPL-0600

Broadcom

OPTOISO 3.75KV OPN COLLECTOR 8SO

2925

ACPL-K72T-560E

ACPL-K72T-560E

Broadcom

OPTOISO 5KV PUSH PULL 8SO

0

HCPL-193K

HCPL-193K

Broadcom

OPTOISO 1.5KV 2CH OPEN COL 16DIP

0

HCPL-2202-060E

HCPL-2202-060E

Broadcom

OPTOISO 3.75KV PUSH PULL 8DIP

0

HCNW2611-300E

HCNW2611-300E

Broadcom

OPTOISO 5KV OPEN COLL 8DIP GW

2314

ACFL-6211T-560E

ACFL-6211T-560E

Broadcom

OPTOISO 5KV 2CH PSH PULL SO12

0

HCPL-7720-060E

HCPL-7720-060E

Broadcom

OPTOISO 3.75KV PUSH PULL 8DIP

0

HCPL-2630-500E

HCPL-2630-500E

Broadcom

OPTOISO 3.75KV OPEN COLL 8DIP GW

1667

6N137#060

6N137#060

Broadcom

OPTOISO 3.75KV 1CH OPN COLL 8DIP

0

HCPL-0600-000E

HCPL-0600-000E

Broadcom

OPTOISO 3.75KV OPN COLLECTOR 8SO

5203

ACPL-W483-500E

ACPL-W483-500E

Broadcom

OPTOISO 5KV PUSH PULL 6SO

1732

Optoisolators - Logic Output

1. Overview

Optoisolators (or optical isolators) with logic output are electronic components that transfer electrical signals between circuits while maintaining electrical isolation. They utilize light to transmit signals across an isolation barrier, preventing direct electrical contact. These devices are critical in modern systems for protecting sensitive electronics from high voltages, eliminating ground loops, and ensuring noise immunity in harsh environments.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Single-Channel Logic OutputBasic isolation with one input/output pairGeneral-purpose signal isolation in consumer electronics
Multi-ChannelMultiple isolated channels in a single packageIndustrial automation systems requiring parallel signal routing
High-Speed Logic OutputTransmission rates >10 Mbps with fast rise/fall timesCommunication interfaces (RS-485, CAN bus)
Low-Power ConsumptionOperating current <1 mA for energy-efficient designsBattery-powered IoT devices

3. Structure and Composition

A typical logic output optoisolator consists of:

  • Light-Emitting Diode (LED): Converts electrical input to optical signal
  • Photoelectric Sensor: Integrated photodiode or phototransistor with logic output driver
  • Isolation Barrier: Dielectric material (e.g., silicon dioxide) with high dielectric strength
  • Packaging: Standard DIP/SMD plastic housing with creepage distance 5mm

4. Key Technical Specifications

ParameterDescription and Importance
Isolation Voltage (VIORM)Up to 5000 V RMS - Determines safety rating and insulation capability
Propagation Delay10-100 ns range - Critical for timing-sensitive applications
Current Transfer Ratio (CTR)50-600% - Affects signal strength and reliability
Operating Temperature-40 C to +125 C - Ensures stability in industrial environments

5. Application Fields

Key industries include:

  • Industrial automation (PLCs, motor drives)
  • Telecommunications (optical transceivers, base stations)
  • Medical equipment (patient monitoring devices)
  • Automotive electronics (battery management systems)
Example: Used in solar inverters to isolate control circuits from high-voltage DC buses while maintaining signal integrity.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Avago TechnologiesHCPL-263150 MBd speed, 3750 V isolation, industrial temperature range
Vishay SemiconductorsVO617AHigh CTR (800%), DIP-4 package, cost-effective
STMicroelectronicsSTO602Double insulation, AEC-Q100 automotive qualification

7. Selection Guidelines

Key considerations:

  • Determine required isolation level (functional vs. safety isolation)
  • Match CTR with driving circuit capabilities
  • Verify temperature ratings for specific environments
  • Check packaging compatibility with PCB layout
Case Study: For factory automation systems, select models with >5000 V isolation and ESD immunity to withstand industrial electrical noise.

8. Industry Trends

Future developments include:

  • Integration with digital interfaces (I2C, SPI)
  • Adoption of wide-bandgap materials (GaN/SiC) for higher voltage handling
  • Miniaturization through 3D packaging technology
  • Growing demand in EV charging infrastructure (ISO 26262 compliance)

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