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TLP383
+BOMToshiba
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Nhà sản xuấtToshiba
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Ông. Phần #TLP383
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Description
If this is part of a fictional or proprietary system, please provide additional context or specify the field (like telecommunications, computing, etc.) to give more precise information. In general, introductions to technologies typically cover their purpose, key features, and potential applications or benefits.
Equivalent
1. Vishay CNY17 series (CNY17-1, CNY17-2, CNY17-3, etc.)
2. Fairchild/ON Semiconductor 4N35 series
3. Lite-On LTV-817 series
4. Renesas PS2501 series
These alternatives offer similar functionality and package styles for isolating electrical circuits. Always check the specific datasheets to ensure compatibility with your requirements.
Features
1. Isolation Voltage: It offers a high isolation voltage (typically around 5000 Vrms) to ensure safe separation between input and output circuits.
2. Compact Package: The device comes in a compact, surface-mount SOP4 package, making it suitable for space-constrained applications.
3. High-Speed Performance: The TLP383 provides fast switching speeds, typically with a propagation delay time of around 0.3 μs to 1 μs, supporting high-speed data transmission.
4. LED and Photodetector: It consists of a GaAs infrared LED on the input side and a photodetector on the output side, ensuring effective signal coupling.
5. Wide Operating Temperature Range: The device operates reliably over a broad temperature range, typically between -55°C to 110°C.
6. Low Input Current: Low forward current requirements for the LED make it efficient in power consumption.
These features make the TLP383 suitable for various applications, including digital communication interfaces, microprocessor system interfaces, and power supply isolation.
Pinout
1. Pin 1 (Anode): This pin is connected to the anode of the LED inside the photocoupler. It is used to provide the necessary forward current to activate the LED, which in turn illuminates the phototransistor.
2. Pin 2 (Cathode): This pin is the cathode of the LED. It is connected to the ground or negative supply voltage to complete the circuit for the LED.
3. Pin 3 (Emitter): This pin is the emitter of the phototransistor. It typically connects to the ground or lower potential in the output circuitry, serving as the output side of the isolation barrier.
4. Pin 4 (Collector): This pin is the collector of the phototransistor. It is connected to the positive supply voltage or load in the output circuitry, allowing current to flow when the phototransistor is activated by the LED.
The TLP383 is primarily used for electrical isolation between input and output, protecting sensitive components from voltage spikes and noise.
Manufacturer
Application
1. Switching Power Supplies: It provides isolation between the input and output, ensuring safety and noise reduction.
2. Industrial Control Systems: Offers isolation for signal transmission in environments with high electrical interference.
3. Microprocessor Systems: Used for isolating different parts of a system to prevent noise and faults.
4. Data Communications: Ensures data integrity by isolating digital signals.
5. Consumer Electronics: Provides safety and reliability in various electronic devices by isolating circuit components.
These applications leverage the TLP383's ability to transmit signals while providing electrical isolation.