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TLP620
+BOMOPTOISOLTR 5.3KV 1CH TRANS 4-DIP
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제조업체Isocom Components 2004 유한회사
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제조업체 부품 #TLP620
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재고7766
365 1일 품질 보증
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90-판매 후 1일 보증
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사양
| 속성 | 가치 |
| Series | TLP620 |
| Part Status | Active |
| Number of Channels | 1 |
| Voltage - Isolation | 5300Vrms |
| Current Transfer Ratio (Min) | 50% @ 5mA |
| Current Transfer Ratio (Max) | 600% @ 5mA |
| Rise / Fall Time (Typ) | 4µs, 3µs |
| Input Type | AC, DC |
| Output Type | Transistor |
| Voltage - Output (Max) | 55V |
| Current - Output / Channel | 50mA |
| Voltage - Forward (Vf) (Typ) | 1.15V |
| Current - DC Forward (If) (Max) | 50 mA |
| Vce Saturation (Max) | 400mV |
| Operating Temperature | -30°C ~ 100°C |
| Mounting Type | Through Hole |
| Package / Case | 4-DIP (0.300", 7.62mm) |
| Supplier Device Package | 4-DIP |
개요
Description
The TLP620 consists of a light-emitting diode (LED) on the input side and a phototransistor on the output side, encapsulated in a 4-pin DIP package. When the input LED is activated by a voltage, it emits light, which is detected by the phototransistor, allowing current to flow through the output circuit.
Key specifications include a high isolation voltage (usually around 5,000 Vrms), a CTR (Current Transfer Ratio) in the range of typically 50% to 600%, and a wide operating temperature range. The TLP620 is suitable for digital and analog signal isolation, interfaces, and microprocessor input-output isolation in various electronic devices and systems.
Equivalent
1. PC817 - by Sharp, widely used and has similar functionality.
2. 4N35 - a popular optocoupler with similar specifications.
3. HCPL-817 - by Broadcom (Avago), offering similar isolation capabilities.
4. MOC3020 - another alternative with similar traits.
5. SFH615A - by Vishay, suitable for similar applications.
Ensure to check the specific requirements and pin configurations, as there could be slight differences.
Features
1. Type: Phototransistor Optocoupler.
2. Input Type: Infrared LED.
3. Output Type: Phototransistor.
4. Isolation Voltage: Provides a high isolation voltage of typically 5000 Vrms, which helps in protecting components from high voltage surges.
5. Current Transfer Ratio (CTR): Typically ranges from 50% to 600%, ensuring efficient signal coupling.
6. Collector-Emitter Voltage: It can handle a collector-emitter voltage up to 80V.
7. Operating Temperature Range: Operates reliably in a wide temperature range from -55°C to 100°C.
8. Package Type: Available in a DIP-4 package, which is suitable for through-hole mounting.
9. Applications: Commonly used in power supply circuits, microprocessor input/output switching, and signal isolation in various electronic devices.
These features make the TLP620 a versatile component for enhancing safety and signal integrity in electronic systems.
Pinout
Here's a brief overview of its pin functions:
1. Pin 1 - Anode: This is the positive side of the input LED.
2. Pin 2 - Cathode: This is the negative side of the input LED.
3. Pin 3 - NC (No Connection): This pin is not electrically connected.
4. Pin 4 - Emitter: This is the emitter terminal of the phototransistor.
5. Pin 5 - Collector: This is the collector terminal of the phototransistor.
6. Pin 6 - Base: This is the base terminal of the phototransistor, which is typically left unconnected but can be used for additional biasing.
The TLP620 is used in applications requiring electrical isolation and signal transmission, including microprocessor system interfaces, power supply feedback control, and data communications.
Manufacturer
Application
1. Switching Power Supplies: Provides isolation between high and low voltage sections.
2. Microprocessor System Interfaces: Ensures safe communication between microprocessors and peripheral devices.
3. Industrial Automation: Used in motor control and automation equipment for isolation and signal integrity.
4. Communication Systems: Facilitates the transfer of signals while maintaining electrical separation.
5. Consumer Electronics: Used in devices like televisions and audio equipment to isolate different circuit segments.
6. Data Acquisition Systems: Protects data integrity by isolating the input and output sections.
Its ability to provide reliable isolation and signal fidelity makes it versatile in various electronic applications.