Overview
The TLP291(BLL-TP,SE) is an optoisolator produced by Toshiba Semiconductor and Storage, designed to provide reliable data transmission in noisy environments. This device is part of the TLP291 series and is housed in a compact SOIC-4 package, making it suitable for high-density surface mounting applications. It features high isolation voltage, low power consumption, and a wide operating temperature range, making it ideal for various industrial and consumer electronics applications.
Key Specifications
Parameter | Value | Unit |
---|---|---|
Manufacturer Part # | TLP291(BLL-TP,SE) | |
Package/Case | SOIC-4 | |
Number of Channels | 1 Channel | |
Isolation Voltage | 3750 Vrms | Vrms |
Output Type | Phototransistor | |
Current Transfer Ratio - Min | 200 % | % |
Current Transfer Ratio - Max | 400 % | % |
If - Forward Current | 50 mA | mA |
Vf - Forward Voltage | 1.4 V | V |
Maximum Collector Emitter Voltage | 80 V | V |
Maximum Collector Current | 50 mA | mA |
Maximum Collector Emitter Saturation Voltage | 300 mV | mV |
Rise Time | 2 us | us |
Fall Time | 3 us | us |
Minimum Operating Temperature | -55 C | C |
Maximum Operating Temperature | +110 C | C |
Key Features
- High isolation voltage of 3750 Vrms, ensuring reliable data transmission in noisy environments.
- Low power consumption, suitable for applications requiring energy efficiency.
- Compact SOIC-4 package, ideal for high-density surface mounting applications.
- Wide operating temperature range from -55°C to +110°C, making it versatile for various environments.
- Current transfer ratio ranging from 200% to 400%, providing reliable signal transmission.
- Maximum collector current of 50 mA and maximum collector emitter voltage of 80 V.
Applications
- Industrial Automation: Ideal for industrial automation systems requiring low power consumption and high isolation voltage.
- Home Automation: Used in home automation systems where compact designs and reliable data transmission are necessary.
- Consumer Electronics: Suitable for consumer electronics applications such as smart devices and gaming consoles.
- Data Acquisition Systems: Used in data acquisition systems where reliable signal transmission is crucial.
- Machine Control Systems: Applied in machine control systems for reliable and efficient operation.
- Sensors and Actuators: Used in sensors and actuators for precise control and data transmission.
- Industrial Control Panels: Integrated into industrial control panels for reliable operation.
Q & A
- Q: What is the maximum isolation voltage supported by the TLP291(BLL-TP,SE)?
A: The TLP291(BLL-TP,SE supports a maximum isolation voltage of 3750 Vrms.
- Q: Can the TLP291(BLL-TP,SE be used in automotive applications?
A: Yes, the TLP291(BLL-TP,SE is suitable for automotive applications where high isolation voltage and low power consumption are necessary, but consult the datasheet for specific requirements and limitations.
- Q: What is the package type of the TLP291(BLL-TP,SE?
A: The TLP291(BLL-TP,SE is housed in an SOIC-4 package.
- Q: What is the current transfer ratio range of the TLP291(BLL-TP,SE?
A: The current transfer ratio of the TLP291(BLL-TP,SE ranges from 200% to 400%.
- Q: What is the maximum collector current of the TLP291(BLL-TP,SE?
A: The maximum collector current of the TLP291(BLL-TP,SE is 50 mA.
- Q: What is the operating temperature range of the TLP291(BLL-TP,SE?
A: The operating temperature range of the TLP291(BLL-TP,SE is from -55°C to +110°C.
- Q: What are the typical rise and fall times of the TLP291(BLL-TP,SE?
A: The typical rise time is 2 us and the typical fall time is 3 us.
- Q: Is the TLP291(BLL-TP,SE RoHS compliant?
A: Yes, the TLP291(BLL-TP,SE is RoHS compliant.
- Q: What are some common applications of the TLP291(BLL-TP,SE?
A: Common applications include industrial automation, home automation, consumer electronics, data acquisition systems, machine control systems, sensors and actuators, and industrial control panels.
- Q: How do I use the TLP291(BLL-TP,SE effectively?
A: To use the TLP291(BLL-TP,SE effectively, connect the input signal to pin A or B, apply a suitable voltage level to the input signal, and monitor the output signal at pin C. Refer to the datasheet for detailed usage instructions.