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TLP293(GB-TPL,E(T
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Peça do Fabricante #TLP293(GB-TPL,E(T
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Ficha Técnica TLP293(GB-TPL,E(T DataSheet
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Especificações
| Atributo | Valor |
| EU Ro HS | Compliant |
| ECCN (US) | EAR99 |
| Part Status | Active |
| HTS | 8541.49.80.00 |
| Automotive | No |
| PPAP | No |
| Minimum Operating Temperature (°C) | -55 |
| Maximum Operating Temperature (°C) | 125 |
| Mounting Type | Surface Mount |
| Package Height | 2.1 mm |
| Package Width | 4.55 mm |
| Package Length | 2.6 mm |
| PCB changed | 4 |
| Package / Case | SO |
| Supplier Device Package | SO |
| Pin Count | 4 |
| Packaging | Tape and Reel |
| Output Type | DC |
| Input Type | DC |
| Output Device | Transistor |
| Minimum Isolation Voltage (Vrms) | 3750 |
| Maximum Forward Voltage (V) | 1.4 |
| Maximum Collector - Emitter Voltage (V) | 80 |
| Maximum Current Transfer Ratio (%) | 600 |
| Maximum Collector Current (m A) | 50 |
| Maximum Collector - Emitter Saturation Voltage (m V) | 300 |
| Maximum Power Dissipation (m W) | 200 |
| Maximum Reverse Voltage (V) | 5 |
| Typical Forward Voltage (V) | 1.25 |
| Maximum Forward Current (m A) | 50 |
| Minimum Current Transfer Ratio (%) | 100 |
| Current Transfer Ratio Test Current (m A) | 5 |
| Typical Rise Time (us) | 2 |
| Typical Fall Time (us) | 3 |
| Lead Shape | Gull-wing |
| Number of Channels per Chip | 1 |
| Standard | CSA|cUL|UL |
| Minimum Forward Voltage (V) | 1.1 |
Visão Geral
Description
Equivalent
1. Vishay CNY17-1 - Similar optocoupler with comparable isolation voltage.
2. Avago (Broadcom) HCPL-817 - Another widely used optocoupler with similar specifications.
3. Lite-On LTV-817 - Offers similar functionality and package type.
Always check the specific parameters to ensure compatibility for your application.
Features
1. Isolation Voltage: Offers a high isolation voltage, typically around 5000 Vrms, which helps protect electronic components from high voltage surges.
2. Compact Package: Comes in a 4-pin SO4 package, allowing for space-saving in circuit designs.
3. High Data Transfer Speed: Suitable for applications requiring fast data transmission.
4. Temperature Range: Operates efficiently within a wide temperature range, typically from -55°C to +110°C.
5. Input and Output: Consists of an infrared LED on the input side and a phototransistor on the output side for efficient signal transmission.
6. Low Input Current: Designed to operate with low input current requirements, enhancing energy efficiency.
7. Applications: Commonly used in microprocessor system interfaces, switching power supplies, and other industrial control systems.
This component is ideal for applications requiring signal isolation and data integrity.
Pinout
The TLP293 comes in a 4-pin DIP (Dual In-line Package) configuration. Here is a brief overview of the pin functions:
1. Anode (Pin 1): This is the input side of the photocoupler where the positive voltage is applied to the LED inside the package.
2. Cathode (Pin 2): This pin is connected to the negative side of the LED. Current flows through the LED from the anode to the cathode.
3. Collector (Pin 3): This pin is part of the phototransistor on the output side and is connected to the positive side of the output circuit.
4. Emitter (Pin 4): This pin is connected to the GND or negative side of the output circuit.
Overall, the TLP293 is designed for applications that require electrical isolation and signal coupling, such as microcontroller interfacing, power supply regulation, and communication between different voltage domains.
Manufacturer
Application
1. Switching Power Supplies: Provides isolation between the control circuit and output.
2. Industrial Automation: Used for signal isolation and noise reduction in control systems.
3. Telecommunications: Offers isolation in modems and other communication devices.
4. Microprocessor System Interfaces: Facilitates interfacing and isolation between microcontrollers and high-voltage components.
5. Consumer Electronics: Ensures safety and performance in devices like TVs and home appliances.
6. Medical Equipment: Maintains safety standards by isolating patient-connected devices from power sources.