SNS15A-5-1R5(H) |
DC-DC Converter > SNS-series > SNS15A-5-1R5(H) |
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1 |
3.0 - 5.5V |
1.5V@15.00A |
22.50W |
40mVp-p |
88% |
SNS15A-5-1R5(H) |
Non-Isolated DC-DC POL Converter
Input voltages : 5V, 12V
Outputs : Single Output
- Delivers 15A of Output Current
- High Efficiency
- Compact Footprint / Low Profile
- Single-in-Line SMT/SIP Package
- Cost-Efficient Open Frame Design
- Remote On / Off Control (CNT) (Active Low)
- Remote Sense
- Trimmable Output Voltage via External Resistor
- Low Output Ripple / Noise
- Over Current Protection (OCP)
- Over Temperature Protection (OTP)
- 3 Year Warranty
- Operating Temperature Range .................... -40℃~85℃
- Storage Temperature Range ........................ -40℃~125℃
- Lead Temperature (Soldering, 10sec) ....... +300℃
- Thermal Shutdown ......................................... +135℃
- MTBF (MIL-HDBK-217F) ................................ - 8.0 x 105hrs (5V Input)
- 7.6 x 105hrs (12V Input)
SNS15A - 5 Packages SNS15A - 12 Packages
- Input Range ............................. DC 5V(3.0V - 5.5V) - Input Range ........................... DC 12V (10V - 14V)
4.5V - 5.5V (Only Output 3.3V)
- Efficiency .................................. 94% @3.3V - Efficiency ................................ 94% @ 5.0V
- Remote On / Off Control ........ - On : Open, 0-1.0V - Remote On / Off Control ..... - On : Open, 0-1.0V
- Off : +1.2V to +Vin - Off : +1.2V to +Vin
- Output Voltage ......................... 1.0 - 3.3V - Output Voltage ....................... 1.0 - 5.0V
- Output Voltage Tolerance ..... ±2.0% - Output Voltages Tolerance . ±2.0%
- Line Regulation ...................... ±0.3% Max. - Line Regulation .................... ±0.3% Max.
- Load Regulation ..................... ±0.4% Max. - Load Regulation ................... ±0.4% Max.
- Switching Frequency .............. 300kHz - Switching Frequency ............ 300kHz
- *Ripple and Noise .................. 40mVp-p (@3.3V) - *Ripple and Noise .................60mVp-p (@5.0V)
* Ripple & Noise is tested / Specified over a 20MHz bandwidth and may be reduced with external filtering
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