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TLP152(TPL,E(T
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FabricanteToshibaCity name (optional, probably does not need a translation)
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Peça do Fabricante #TLP152(TPL,E(T
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Ficha Técnica TLP152(TPL,E(T DataSheet
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Especificações
| Atributo | Valor |
| EU RoHS | Compliant |
| ECCN (US) | EAR99 |
| Part Status | Active |
| HTS | 8541.49.80.00 |
| Automotive | No |
| PPAP | No |
| Minimum Operating Temperature (°C) | -40 |
| Maximum Operating Temperature (°C) | 100 |
| Mounting | Surface Mount |
| Package Width | 4.55 |
| Package Length | 3.7 |
| PCB changed | 5 |
| Standard Package Name | SO |
| Supplier Package | SO |
| Pin Count | 5 |
| Output Type | Totem-Pole |
| Number of Channels per Chip | 1 |
| Minimum Isolation Voltage (Vrms) | 3750 |
| Maximum Forward Voltage (V) | 1.8 |
| Maximum Power Dissipation (mW) | 260 |
| Minimum Forward Voltage (V) | 1.4 |
| Maximum Reverse Voltage (V) | 5 |
| Maximum Forward Current (mA) | 20 |
| Packaging | Tape and Reel |
| Package Height | 2.1 |
| Lead Shape | Gull-wing |
| Minimum Common Mode Rejection (kV/us) | 20 |
| Maximum Rise Time (ns) | 18(Typ) |
| Maximum Fall Time (ns) | 22(Typ) |
| Maximum Propagation Delay Time (tPLH) (ns) | 170 |
| Maximum Propagation Delay Time (tPHL) (ns) | 190 |
| Maximum Pulse Width Distortion (ns) | 50 |
| Common Mode Voltage (V) | 1000 |
| Maximum Operating Supply Voltage (V) | 30 |
| Minimum Peak Output Current (A) | 2 |
| Maximum Peak Output Current (A) | 2.5 |
Visão Geral
Description
The designations like TLP152(TPL,E(T might refer to specific packaging or specifications for this component, indicating variations in leads, environmental ratings, or other distinct characteristics as defined by the manufacturer, Toshiba. Such optocouplers are commonly used in applications like microcontroller interfaces, power supply circuits, and communication devices to protect sensitive components from high voltages or current spikes, ensuring reliable and efficient circuit operation. With features like high isolation voltage and fast response times, the TLP152 is a versatile and essential component in modern electronic design.
Equivalent
1. Broadcom: ACPL-P343 or ACPL-P341
2. Vishay: VO3120
3. Renesas: PS9552
4. ON Semiconductor: FOD3120
These alternatives offer similar functions, including gate driving capabilities for IGBTs and MOSFETs while providing electrical isolation. Always check datasheets for compatibility in terms of electrical specifications and application requirements.
Features
Key features of the TLP152 include:
1. Isolation Voltage: It offers a high isolation voltage, usually around 5000 VRMS, which is crucial for protecting sensitive electronics from high voltage surges.
2. Compact Package: Generally available in a small 4-pin SO6 package, making it suitable for compact circuit designs.
3. High-Speed Operation: Designed for fast response times, making it suitable for high-speed data transmission applications.
4. Wide Operating Temperature Range: Functions efficiently across a broad temperature range, making it versatile for various environments.
5. Low Input Current: Typically operates with low input current requirements, enhancing energy efficiency.
These features make the TLP152 ideal for applications like industrial equipment, consumer electronics, and various communication devices.
Pinout
This device typically comes in a small outline package, either SO-6 or SO-8, and contains a photodetector IC and an infrared light-emitting diode (LED) within the package. The pin count for the TLP152 is usually 5 to 6 pins, depending on the specific variant. Here's a general pin configuration for a 6-pin version:
1. Anode (LED)
2. Cathode (LED)
3. Not connected
4. GND (Ground for photodetector)
5. Vcc (Supply voltage for photodetector)
6. Output (Photodetector output)
The primary function of the TLP152 is to provide electrical isolation between input and output while transmitting data signals. It is commonly used in applications such as microprocessor system interfaces, digital logic ground isolation, and industrial control systems.
Manufacturer
Application
1. Industrial Automation: Used in motor control circuits and programmable logic controllers (PLCs) to ensure safe signal transmission.
2. Consumer Electronics: Provides isolation in power supplies and interfacing subsystems.
3. Telecommunications: Facilitates isolation in network equipment and transmission systems.
4. Power Systems: Helps in isolating control signals in inverter circuits and power converters.
5. Medical Equipment: Ensures patient safety by isolating high-voltage areas from control units.
These applications leverage the TLP152's ability to provide reliable isolation while maintaining signal integrity.