Details
BUY SI8244BB-D-IS1 https://www.utsource.net/itm/p/12607010.html
| Parameter | Description | Value | Unit |
|---|---|---|---|
| Supply Voltage (VDD) | Operating supply voltage range | 1.8 to 5.5 | V |
| Output Current | Continuous output current | 卤200 | mA |
| Peak Output Current | Peak output current | 卤400 | mA |
| Thermal Shutdown | Temperature at which thermal shutdown occurs | 160 | 掳C |
| Operating Temperature | Ambient operating temperature range | -40 to +125 | 掳C |
| Package Type | Package type | SOIC-8 | |
| Isolation Voltage | Maximum isolation voltage | 5000 | Vrms |
| Propagation Delay | Typical propagation delay time | 30 | ns |
| Power Dissipation | Maximum power dissipation | 710 | mW |
Instructions for SI8244BB-D-IS1
Power Supply Connection:
- Connect the VDD pin to a stable power supply within the range of 1.8V to 5.5V.
- Ensure the GND pin is connected to a common ground.
Signal Input:
- Apply digital input signals to the IN+ and IN- pins as required by your application.
- These inputs control the switching of the output stage.
Output Configuration:
- The OUT+ and OUT- pins provide differential outputs suitable for driving loads up to 卤200mA continuously, with peak currents up to 卤400mA.
- Ensure that the load impedance is appropriate for the current ratings.
Thermal Considerations:
- Monitor the device temperature to avoid exceeding the maximum operating temperature of 125掳C.
- If the device temperature reaches 160掳C, it will automatically enter thermal shutdown to protect itself.
Isolation:
- The device provides galvanic isolation up to 5000Vrms, ensuring safe operation in high-voltage environments.
Propagation Delay:
- Expect a typical propagation delay of 30ns between input signal changes and corresponding output changes.
Power Dissipation:
- Keep the total power dissipation below 710mW to maintain reliable operation.
Handling Precautions:
- Handle the device with care to avoid damage from electrostatic discharge (ESD).
- Follow proper soldering techniques and ensure adequate cooling if operating near the upper limits of power dissipation.
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