YNV12T10-0G POWER ONE, YNV12T10-0G Datasheet
YNV12T10-0G
Specifications of YNV12T10-0G
Related parts for YNV12T10-0G
YNV12T10-0G Summary of contents
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... Description Power-One’s point-of-load converters are recommended for use with regulated bus converters in an Intermediate Bus Architecture (IBA). The YNV12T10 non-isolated DC-DC converters deliver output current in an industry-standard through hole (SIP) package. The YNV12T10 converters operate from a 9.6–14 VDC input. These converters are ideal choices for Intermediate Bus Architectures where Point-of- Load power delivery is generally a requirement ...
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... Note that start-up time is the sum of turn-on delay time and rise time. 3. Converter ON/OFF pin is left open. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet NOTES Continuous By external resistor, See Trim Table 1 Full resistive load From Vin = Vin(min) to Vo=0.1* Vo(nom) From enable to Vo=0 ...
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... Turn-off Threshold Maximum Input Current Input Stand-by Current (Converter disabled) Input No Load Current (Converter enabled) i Input Reflected-Ripple Current - s Input Voltage Ripple Rejection MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet NOTES 10 ADC Out @ 9.6 VDC 5.0 VDC OUT V = 3.3 VDC OUT ...
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... OUT EFFICIENCY Note: 4. See attached waveforms for dynamic response and settling time for different output voltages. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet NOTES MIN Full resistive load From no load to full load Over line, load and temperature ...
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... VDC Input; 0.7525-5.5 VDC Programmable @ 10A Operation Input and Output Impedance The YNV12T10 converter should be connected via a low impedance to DC power source. In many applications, the inductance associated with the distribution from the power source to the input of the converter can affect the stability of the converter ...
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... R Required value of trim resistor [k] TRIM Desired (trimmed) output voltage [V] V REQ O MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Rw Vout Vin Rload 5 GND Rw Fig. C: Configuration for programming output voltage. Note that the tolerance of a trim resistor directly ...
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... After the converter has cooled to a safe operating temperature, it will automatically restart. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Safety Requirements The converter R 15K are International safety regulatory requirements per EXT UL60950 and EN60950 ...
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... PCB at the thermocouple location shown in Fig. D should not exceed 120 °C in order to operate inside the derating curves. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet and Fig. D: Location of the thermocouple for thermal testing. Efficiency Figure x.3 shows the efficiency vs. load current plot for ambient temperature of 25 º ...
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... Load Current [Adc] Fig. 5.0V.3: Efficiency vs. load current and input voltage for Vout = 5.0V converter mounted vertically with air flowing at a rate of 200 LFM (1 m/s) and Ta = 25C. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 5.0V.2: Available load current vs. ambient temperature and airflow rates for Vout = 5 ...
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... Bottom trace: load current (5A/div.). Co = 100μF ceramic. Time scale: 20μs/div. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 5.0V.6: Output voltage ripple (20mV/div.) at full rated load current into a resistive load with external capacitance 100μF ceramic and Vin = 12V for Vout = 5.0V . Time scale: 2μ ...
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... Load Current [Adc] Fig. 3.3V.3: Efficiency vs. load current and input voltage for Vout = 3.3V converter mounted vertically with air flowing at a rate of 200 LFM (1 m/s) and Ta = 25C. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 3.3V.2: Available load current vs. ambient temperature and airflow rates for Vout = 3 ...
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... Bottom trace: load current (5A/div.). Co = 100μF ceramic. Time scale: 20μs/div. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 3.3V.6: Output voltage ripple (20mV/div.) at full rated load current into a resistive load with external capacitance 100μF ceramic and Vin = 12V for Vout = 3.3V. Time scale: 2μ ...
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... Load Current [Adc] Fig. 2.5V.3: Efficiency vs. load current and input voltage for Vout = 2.5V converter mounted vertically with air flowing at a rate of 200 LFM (1 m/s) and Ta = 25C. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 2.5V.2: Available load current vs. ambient temperature and airflow rates for Vout = 2 ...
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... Bottom trace: load current (5A/div.). Co = 100μF ceramic. Time scale: 20μs/div. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 2.5V.6: Output voltage ripple (20mV/div.) at full rated load current into a resistive load with external capacitance 100μF ceramic and Vin = 12V for Vout = 2.5V. Time scale: 2μ ...
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... Load Current [Adc] Fig. 2.0V.3: Efficiency vs. load current and input voltage for Vout = 2.0V converter mounted vertically with air flowing at a rate of 200 LFM (1 m/s) and Ta = 25C. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 2.0V.2: Available load current vs. ambient temperature and airflow rates for Vout = 2 ...
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... Bottom trace: load current (5A/div.). Co = 100μF ceramic. Time scale: 20μs/div. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 2.0V.6: Output voltage ripple (20mV/div.) at full rated load current into a resistive load with external capacitance 100μF ceramic and Vin = 12V for Vout = 2.0V. Time scale: 2μ ...
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... Load Current [Adc] Fig. 1.8V.3: Efficiency vs. load current and input voltage for Vout = 1.8V converter mounted vertically with air flowing at a rate of 200 LFM (1 m/s) and Ta = 25C. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 1.8V.2: Available load current vs. ambient temperature and airflow rates for Vout = 1 ...
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... Bottom trace: load current (5A/div.). Co = 100μF ceramic. Time scale: 20μs/div. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 1.8V.6: Output voltage ripple (20mV/div.) at full rated load current into a resistive load with external capacitance 100μF ceramic and Vin = 12V for Vout = 1.8V. Time scale: 2μ ...
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... Load Current [Adc] Fig. 1.5V.3: Efficiency vs. load current and input voltage for Vout = 1.5V converter mounted vertically with air flowing at a rate of 200 LFM (1 m/s) and Ta = 25C. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 1.5V.2: Available load current vs. ambient temperature and airflow rates for Vout = 1 ...
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... Bottom trace: load current (5A/div.). Co = 100μF ceramic. Time scale: 20μs/div. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 1.5V.6: Output voltage ripple (20mV/div.) at full rated load current into a resistive load with external capacitance 100μF ceramic and Vin = 12V for Vout = 1.5V. Time scale: 2μ ...
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... Load Current [Adc] Fig. 1.2V.3: Efficiency vs. load current and input voltage for Vout = 1.2V converter mounted vertically with air flowing at a rate of 200 LFM (1 m/s) and Ta = 25C. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 1.2V.2: Available load current vs. ambient temperature and airflow rates for Vout = 1 ...
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... Bottom trace: load current (5A/div.). Co = 100μF ceramic. Time scale: 20μs/div. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 1.2V.6: Output voltage ripple (20mV/div.) at full rated load current into a resistive load with external capacitance 100μF ceramic and Vin = 12V for Vout = 1.2V. Time scale: 2μ ...
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... Load Current [Adc] Fig. 1.0V.3: Efficiency vs. load current and input voltage for Vout = 1.0V converter mounted vertically with air flowing at a rate of 200 LFM (1 m/s) and Ta = 25C. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 1.0V.2: Available load current vs. ambient temperature and airflow rates for Vout = 1 ...
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... Bottom trace: load current (5A/div.). Co = 100μF ceramic. Time scale: 20μs/div. MCD10202 Rev. 1.0, 24-Jun-10 YNV12T10 DC-DC Converter Data Sheet Fig. 1.0V.6: Output voltage ripple (20mV/div.) at full rated load current into a resistive load with external capacitance 100μF ceramic and Vin = 12V for Vout = 1.0V. Time scale: 2μ ...
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... Y-Series VDC The example above describes P/N YNV12T10-0: 9.6 V – input, thru-hole (SIP 0.7525 V to 5.5 V output, standard enable logic, and lead-solder-exempt RoHS feature. Please consult factory regarding availability of a specific version. NUCLEAR AND MEDICAL APPLICATIONS - Power-One products are not designed, intended for use in, or authorized for use as critical components in life support systems, equipment used in hazardous environments, or nuclear control systems without the express written consent of the respective divisional president of Power-One, Inc ...