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TLP550
+БОМHigh Speed Optocouplers 2500Vrms 1Mbit/s High Speed
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ПроизводительТошиба
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Мфр. Часть #TLP550
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Лист данных TLP550 DataSheet
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В наличии13114
365 Дни гарантии качества
7*24 часы обслуживания каранти
90-гарантия послепродажного дня
Гарантия подлинного продукта
Спецификации
| Атрибут | Ценность |
| Packaging | Bulk |
| Standard Pack Qty | 10000 |
Обзор
Description
Key features of the TLP550 include high isolation voltage, high common-mode transient immunity, and fast switching speeds. It is commonly utilized in applications such as power supply circuits, microprocessor systems, and signal isolation to prevent high voltages from affecting the system being protected.
The TLP550 is well-suited for environments where electrical noise can interfere with signal transmission, providing reliable performance in industrial and consumer electronics. Its compact design allows easy integration into various circuit boards, making it a versatile choice for engineers and designers seeking efficient isolation solutions.
Equivalent
1. Fairchild/ON Semiconductor: HCPL4503
2. Vishay: IL450
3. Broadcom/Avago: HCPL4503
4. ISOCOM: IS450
These alternatives offer similar electrical characteristics and functionality, such as high output current, voltage isolation, and fast switching speeds, making them suitable replacements in similar applications. Always check the specific datasheet for compatibility in your application.
Features
1. Isolation Voltage: It provides high isolation voltage of up to 5,000 Vrms, which ensures safe separation between high and low voltage circuits.
2. Phototransistor Output: Utilizes a phototransistor as the output element for switching and amplification.
3. Current Transfer Ratio (CTR): Offers a CTR range typically between 50% to 600%, depending on the operating conditions, which indicates the efficiency of the input-to-output current transfer.
4. Operating Temperature: Suitable for a wide operating temperature range from -55°C to 100°C, making it versatile for various applications.
5. Input Current: Requires a low input current, generally around 1.2 mA, for efficient operation.
6. Compact Package: Comes in a DIP package, which is standard for ease of integration into circuit boards.
7. Applications: Commonly used in power supply circuits, microprocessor input/output isolation, and data communication systems to prevent electrical interference and ensure signal integrity.
These features make the TLP550 a reliable choice for isolation in electronic circuits.
Pinout
The TLP550 typically comes in a 6-pin DIP (Dual In-line Package) configuration. Here's a brief overview of the pin functions:
1. Pin 1 (Anode): Connects to the positive side of the input LED.
2. Pin 2 (Cathode): Connects to the negative side of the input LED.
3. Pin 3 (NC or Not Connected): This pin is not typically used in the circuit.
4. Pin 4 (GND): Ground reference for the output side.
5. Pin 5 (Output): Output pin where the transistor's collector is connected, providing the isolated signal.
6. Pin 6 (Vcc): Supply voltage for the output side of the optoisolator.
The device uses an LED to emit light when the input signal is applied, which is then detected by a photodetector (usually a phototransistor) on the output side. This configuration allows the TLP550 to effectively isolate the input and output circuits while still allowing signal transmission.
Manufacturer
Application
1. Industrial Automation: Provides isolation and signal transfer in PLCs and motor controllers.
2. Switching Power Supplies: Offers feedback control while ensuring safety and reliability.
3. Microprocessor Systems: Protects microcontrollers from high voltage transients and noise.
4. Consumer Electronics: Used in applications like home appliances for isolating control signals.
5. Data Communication Systems: Ensures data integrity and isolation in communication interfaces.
6. Renewable Energy Systems: Facilitates safe operation in solar inverters and battery management systems.
These applications benefit from TLP550's ability to protect sensitive components from high voltage while allowing efficient signal transmission.