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TLP112A
+Lista de MateriaisHigh Speed Optocouplers MFC-IC,DISCON(07-04)/PHASE-OUT(10-04)/OBSOLETE(10-07),
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FabricanteToshibaCity name (optional, probably does not need a translation)
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Peça do Fabricante #TLP112A
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Especificações
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Description
The TLP112A features a wide operating temperature range, typically from -55°C to 110°C, making it suitable for use in harsh environments. It offers high isolation voltage (usually around 5000 VRMS), ensuring effective separation between connected circuits, and has a low input current requirement, reducing power consumption. Additionally, the component provides a fast response time, making it ideal for high-speed applications.
Overall, the TLP112A is a reliable choice for designers needing a compact and efficient solution for galvanic isolation in electronic systems, ensuring both performance and safety.
Equivalent
Features
1. Isolation: Provides electrical isolation between input and output, enhancing safety and signal integrity.
2. Compact Package: Comes in a small 4-pin SO6 package, which is suitable for high-density mounting.
3. High-Speed Operation: Capable of high-speed data transfer, with a typical speed of 1 Mbps.
4. Wide Operating Temperature Range: Functions effectively in a variety of environments, typically between -55°C to 100°C.
5. Low Input Current: Requires low input current for operation, enhancing efficiency.
6. High Noise Immunity: Offers excellent noise rejection, ensuring reliable performance in noisy environments.
7. Compliance: Meets several industrial standards for safety, such as UL, cUL, and VDE.
8. Low Power Consumption: Designed for low power consumption, suitable for energy-efficient applications.
These features make the TLP112A suitable for use in applications like microprocessor system interfaces, data communications, and industrial equipment.
Pinout
The pin configuration for the TLP112A is generally as follows:
1. Anode (Input side)
2. Cathode (Input side)
3. Emitter (Output side)
4. Collector (Output side)
The input side of the TLP112A consists of an infrared LED, and the output side contains a phototransistor. When the LED is forward-biased, it emits infrared light that activates the phototransistor, allowing current to flow between the collector and emitter, thus transferring the signal with electrical isolation.