Optoisolators - Transistor, Photovoltaic Output

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WL-OCPT OPTOCOUPLER PHOTOTRANSIS

2970

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51

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1500

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100

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693

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100

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3000

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90

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1500

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325

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1500

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100

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2995

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98

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70

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140816144100

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WL-OCPT OPTOCOUPLER PHOTOTRANSIS

1475

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140816140410

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68

140817140110

140817140110

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100

Optoisolators - Transistor, Photovoltaic Output

1. Overview

Photovoltaic output transistor optoisolators are semiconductor devices that use light to transfer electrical signals between isolated circuits. They consist of a light-emitting diode (LED) and a photovoltaic transistor, which are separated by an isolation barrier. These devices enable galvanic isolation while maintaining signal integrity, making them critical for safety and noise reduction in high-voltage applications. Their importance spans industries like industrial automation, renewable energy systems, and medical electronics.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Single-Channel PhototransistorBasic isolation with 1:1 signal transfer ratioGeneral-purpose logic isolation
High-Voltage PhotovoltaicCapable of >5000V isolation with stacked photodiodesPower supply feedback circuits
High-Speed PhototransistorResponse time <10 s with optimized junction designCommunication interface isolation
Dual-Direction PhotocellBidirectional current control with complementary outputsMotor driver protection circuits

3. Structure and Composition

Typical construction includes:

  • GaAlAs LED emitter with blue-shifted wavelength
  • NPN/PNP phototransistor with textured light-trapping surface
  • Dielectric isolation layer (usually SiO2 or polyimide) rated for 8000V/ m
  • Dual in-line package (DIP) or surface-mount (SMD) housing with IEC 60664-1 certification

4. Key Technical Specifications

ParameterSignificanceTypical Values
Isolation Voltage (Viorm)Determines maximum voltage separation capability2500-8000Vrms
Current Transfer Ratio (CTR)Measures efficiency of signal conversion50-600%
Rise/Fall TimeDefines maximum operational speed2-50 s
Dark Current (ICEX)Leakage current under no-light conditions<100nA
Operating TemperatureDetermines thermal stability range-55 C to +125 C

5. Application Fields

Key application areas include:

  • Industrial automation (PLC I/O modules, motor controllers)
  • Renewable energy (solar inverters, battery management systems)
  • Medical equipment (patient monitoring isolation barriers)
  • Telecom infrastructure (optical network transceivers)
  • Smart grid systems (voltage regulator control circuits)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Specifications
Avago TechnologiesHCPL-31201500V isolation, 100ns response time
Vishay SemiconductorsCNY17-3CTR 100-200%, 5300V isolation
ON SemiconductorFOD8175000Vrms, 80-160% CTR
Toshiba ElectronicsTLP5212500V, 50-600% CTR range

7. Selection Recommendations

Consider these factors:

  • Match isolation voltage rating with system's maximum transient voltage
  • Select CTR range based on driver circuit capability
  • For high-speed applications, prioritize devices with integrated base resistors
  • Medical applications require reinforced insulation and low leakage current
  • Consider temperature derating for automotive/power electronics use
Case Study: In solar inverters, ON Semiconductor's FOD817 provides reliable 5000V isolation between control and power stages while maintaining 100kHz switching capability.

8. Industry Trends

Current trends include:

  • Development of UV-enhanced photovoltaic cells for higher efficiency
  • Integration with on-chip isolation capacitors for hybrid isolation solutions
  • Miniaturization for EV battery management systems (package sizes <5mm )
  • Increased adoption of SiC/GaN compatible optoisolators for wide-bandgap power devices
  • Advancements in reliability testing standards (e.g., 60 years@150 C operation)

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