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Original Optocoupler IC CHIP TLP3616 Electronic components DIP7

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Signal Isolation: The TLP3616 optocoupler IC provides galvanic isolation between input and output circuits, enabling safe signal transmission in electrically separated systems.
  • High-Speed Operation: Designed for digital signal transmission with fast response times, ideal for real-time control applications.

Key features

  • 1. Material Technology

  • With corrosion-resistant gold-plated metal pins, ensure reliable electrical contact and durability in harsh environments compared to models with tin-only pins*.

  • 2. Interactive Design

  • With the DIP7 package, easily integrate into PCBs for prototyping and testing, offering a user-friendly alternative to surface-mount components requiring specialized tools*.

  • 3. Performance Parameters

  • With high-speed signal isolation capabilities, achieve faster data transmission than traditional optocouplers*, enabling reliable operation in high-noise environments.

  • 4. Scenario Solutions

  • With versatile design compatibility, adapt to a wide range of applications including industrial control systems, consumer electronics, and automotive circuits, ensuring broad applicability.

  • 5. Certification Standards

  • With compliance to international safety and reliability standards (e.g., ISO/IEC), ensure safe and consistent performance in critical systems*.

Product details

Original Optocoupler IC CHIP TLP3616 Electronic components DIP7

The Original Optocoupler IC CHIP TLP3616 is a 7-pin DIP-packaged optocoupler designed for reliable signal isolation in electronic circuits. Its compact DIP7 form factor enables easy integration into PCBs for applications requiring electrical isolation, such as industrial control systems, power supplies, and telecommunications.

Technical specifications

FeatureSpecificationBenefit
Package TypeDIP7 (Dual In-line Package)Easy PCB mounting and prototyping
Pin Count7 pinsSupports standard optocoupler configurations
SemiconductorSilicon-basedHigh reliability and thermal stability
Isolation Voltage5000 Vrms (TLP3616)Ensures robust protection against surges
Response Time15 µs (typical)Fast signal transmission for real-time apps
Operating Temp-40°C to +105°CWide-temperature reliability

Customization guide

Adjustable parameters include isolation voltage ratings (up to 8000 Vrms) and response time optimization (down to 10 µs) to meet specialized needs in high-voltage or high-speed applications.

Get inspired

Ideal for isolating digital signals in industrial automation, medical devices, or renewable energy systems. With its compact DIP7 design, you can simplify circuit design while maintaining critical safety margins.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Isolation Voltage2500 Vrms+100% (5000 Vrms)+200% (7500 Vrms)
Response Time20 µs-25% (15 µs)-50% (10 µs)
Operating Temp-25°C to +85°C-40°C to +105°C-55°C to +125°C

Supplier's note

  1. Technical Breakthroughs:

    • 5000 Vrms Isolation: Triple the industry standard for harsh industrial environments.
    • 15 µs Response Time: 20% faster than traditional optocouplers for real-time control.
    • -40°C to +105°C Range: Enables operation in extreme temperatures without performance loss.
  2. Optimal Version Selection:

    • Base Model: Suitable for basic consumer electronics or low-voltage systems (e.g., home appliances).
    • Advanced Model: Ideal for industrial automation and power supplies requiring mid-range isolation and speed.
    • Pro Model: Best for aerospace or oil/gas applications needing extreme voltage and thermal resilience. With its 7500 Vrms rating, you can safely handle high-voltage surges while maintaining signal integrity.

Frequently asked questions

  • Which optocoupler IC suits small electronics projects like prototyping?

  • How to clean the pins of TLP3616 DIP7 to maintain conductivity?

  • Plastic vs. ceramic packaging for optocouplers – which is better for cost-sensitive projects?

  • Can TLP3616 be customized for specific circuit requirements?

  • Is TLP3616 optocoupler RoHS-compliant for industrial use?

  • What applications is TLP3616 optocoupler best suited for?

  • What is the pin configuration of TLP3616 DIP7 for proper PCB integration?

  • What isolation voltage does TLP3616 offer for safety-critical systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Insulation VoltageIndustrial Control SystemsInsulation Voltage (IEC 60747-5-5): 2.5kVrms (Base) ▲5kVrms (Advanced) (Industry standard: 2kVrms)Enhanced safety in high-voltage applications (e.g., motor control)Advanced version requires thicker insulation, increasing cost (▲ indicates 100% improvement over Base)
Propagation DelayHigh-Speed Data CommunicationPropagation Delay (Typ): 10ns (Base) ▲5ns (Advanced) (Industry standard: 15ns)Faster signal transmission for real-time systems (▲ halves latency vs Base)Advanced may need matched impedance circuits for optimal performance (▲ indicates 50% reduction vs Base)
Current Transfer RatioSensor Signal AmplificationCTR (Min @ 5mA): 100% (Base) ▲150% (Advanced) (Industry standard: 50%)Stronger output signal for weak inputs (▲ improves sensitivity by 50% vs Base)Higher CTR may require more precise current control (▲ indicates doubled performance vs Base)
Operating TemperatureAutomotive ElectronicsOperating Temp Range: -40°C to +105°C (Base) ▲-55°C to +125°C (Advanced) (Industry standard: -20°C to +70°C)Reliable operation in engine compartments (▲ extends range by 15°C colder/20°C hotter)Advanced version may have higher thermal resistance, affecting heat dissipation (▲ indicates expanded range)
Noise ImmunityIndustrial AutomationNoise Immunity: 40dB (Base) ▲50dB (Advanced) (Industry standard: 30dB)Reduced interference in electrically noisy environments (▲ improves by 25% vs Base)Advanced requires additional shielding for optimal performance (▲ indicates enhanced resistance)
Package TypeCompact Consumer ElectronicsPackage Type: DIP-8 (Base) ▲SMT (Advanced) (Industry standard: Through-hole DIP)SMT allows denser PCB layouts (▲ reduces footprint by 40% vs Base)Base easier for prototyping; Advanced needs specialized assembly (▲ indicates form factor improvement)

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