Details
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Parameter | VIPER12A | VIPER12ADIP-E |
---|---|---|
Package | SO-8 | DIP-8 |
Input Voltage Range (V) | 70 - 400 | 70 - 400 |
Output Power (W) | 12 | 12 |
Switching Frequency (kHz) | 65 | 65 |
Quiescent Current (mA) | 0.5 | 0.5 |
Maximum Output Current (mA) | 200 | 200 |
Thermal Shutdown Temperature (°C) | 150 | 150 |
Protection Features | Overload, Overvoltage, Short-Circuit | Overload, Overvoltage, Short-Circuit |
Operating Temperature Range (°C) | -40 to 125 | -40 to 125 |
Storage Temperature Range (°C) | -65 to 150 | -65 to 150 |
Instructions for Use:
General Guidelines:
- Power Supply Connection: Ensure the input voltage is within the specified range (70 - 400V). Connect the input voltage to the appropriate pins.
- Output Configuration: Set up the output circuit according to the desired output power and voltage. Use external components like resistors and capacitors as specified in the datasheet.
- Thermal Management: Ensure adequate heat dissipation, especially for high-power applications. Use a heatsink if necessary.
- Protection Circuits: The VIPER12A and VIPER12ADIP-E include built-in protection features. Do not bypass these unless you have a specific reason and understand the implications.
Specific Instructions:
VIPER12A (SO-8 Package):
- Pin Configuration:
- Pin 1: Vcc
- Pin 2: GND
- Pin 3: Feedback
- Pin 4: NC (No Connect)
- Pin 5: Drain
- Pin 6: Source
- Pin 7: NC (No Connect)
- Pin 8: NC (No Connect)
- Mounting: Solder the SO-8 package onto the PCB with proper alignment and soldering techniques. Ensure all pins are securely connected.
- Pin Configuration:
VIPER12ADIP-E (DIP-8 Package):
- Pin Configuration:
- Pin 1: Vcc
- Pin 2: GND
- Pin 3: Feedback
- Pin 4: NC (No Connect)
- Pin 5: Drain
- Pin 6: Source
- Pin 7: NC (No Connect)
- Pin 8: NC (No Connect)
- Mounting: Insert the DIP-8 package into the socket or solder it directly onto the PCB. Ensure all pins are aligned correctly before soldering.
- Pin Configuration:
Troubleshooting:
- No Output: Check input voltage, connections, and external components.
- Overheating: Verify thermal management and ensure the device is not overloaded.
- Oscillation: Check feedback loop and ensure proper decoupling capacitors are used.
For detailed application circuits and further information, refer to the official datasheets provided by STMicroelectronics.
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