| 전자부품 데이터시트 검색엔진 |
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PIFE32251B-R47MS 데이터시트(PDF) 36 Page - Texas Instruments |
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PIFE32251B-R47MS 데이터시트(HTML) 36 Page - Texas Instruments |
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36 / 96 page ![]() Bandgap Min. ON Time Min. OFF Time Gate Driver Anti Shoot-Through Current Limit Comparator LXx Limit High Side Limit Low Side FBx EN MODE PVINx PGND/Thermal Pad VIN Integrated Feed Back Network VREF FB Error Comparator Zero/Negative Current Limit Comparator Control Logic NMOS NMOS MODE / EN VREF 0.40 V Softstart PMIC Internal Signals External Inputs/Outputs Copyright © 2016, Texas Instruments Incorporated 36 TPS65094 SWCS133C – SEPTEMBER 2015 – REVISED FEBRUARY 2019 www.ti.com Submit Documentation Feedback Product Folder Links: TPS65094 Detailed Description Copyright © 2015–2019, Texas Instruments Incorporated 6.3.3.2 Converter Overview The PMIC synchronous step-down DC-DC converters include a unique hysteretic PWM control scheme which enables a high switching frequency converter, excellent transient and AC load regulation, as well as operation with cost-competitive external components. The controller topology supports forced PWM mode as well as power-save mode operation. Power-save mode operation, or PFM mode, reduces the quiescent current consumption and ensures high conversion efficiency at light loads by skipping switch pulses. In forced PWM mode, the device operates on a quasi-fixed frequency, avoids pulse skipping, and allows filtering of the switch noise by external filter components. The PMIC device offers fixed output voltage options featuring smallest solution size by using only three external components per converter. A significant advantage of PMIC compared to other hysteretic PWM controller topologies is the excellent capability of the AC load transient regulation. When the output voltage falls below the threshold of the error comparator, a switch pulse is initiated, and the high-side switch is turned on. The high-side switch remains turned on until a minimum ON-time of tONmin expires and the output voltage trips the threshold of the error comparator or the inductor current reaches the high-side switch current limit. When the high-side switch turns off, the low-side switch rectifier is turned on and the inductor current ramps down until the high-side switch turns on again or the inductor current reaches zero. In forced PWM mode operation, negative inductor current is allowed to enable continuous conduction mode even at no load condition. Figure 6-4. Converter Block Diagram |
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