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TPS51113 датащи(PDF) 16 Page - Texas Instruments |
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TPS51113 датащи(HTML) 16 Page - Texas Instruments |
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16 / 26 page ![]() Layout Considerations TPS51113 Design Example TPS51113, TPS51163 SLUS864 – MAY 2009........................................................................................................................................................................................................ www.ti.com For the grounding and circuit layout, certain points need to be considered. • It is important that the signal ground and power ground properly use separate copper planes to prevent the noise of power ground from influencing the signal ground. The impedance of each ground is minimized by using its copper plane. Sensitive nodes, such as the FB resistor divider and VOS resistor divider, should be connected to the signal ground plane, which is also connected with the GND pin of the device. The high power noisy circuits, such as synchronous rectifier, MOSFET driver decoupling capacitors, the input capacitors and the output capacitors should be connected to the power ground plane. Finally, the two separate ground planes should be strongly connected together near the device by using a single path/trace. • A minimum of 0.1-µF ceramic capacitor must be placed as close to VDD pin and GND pin as possible with a trace at least 20 mils wide, from the bypass capacitor to the GND. Usually a capacitance value of 1 µF is recommended for the bypass capacitor. • The PowerPAD should be electrically connected to GND. • A parallel pair of trace (with at least 15 mils wide) connects the regulated voltage back to the chip. The trace should be away from the switching components. The bias resistor of the resistor divider should be connected to the FB pin and GND pin as close as possible. • The component placement of the power stage should ensure minimized loop areas to suppress the radiated emissions. The input current loop is consisted of the input capacitors, the main switching MOSFET, the inductor, the output capacitors and the ground path back to the input capacitors. The SR MOSFET, the inductor, the output capacitors and the ground path back to the source of the SR MOSFET consists of the output current loop. The connection/trace should be as short as possible to reduce the parasitic inductance. • Connections from the drivers to the respective gate of the high-side or the low-side MOSFET should be as short as possible to reduce stray inductance. A trace of 25 mils or wider is recommended. • Connect the overcurrent setting resistor from LDRV_OC to GND close to the device. The following example illustrates the design process and component selection for a single output synchronous buck converter using the TPS51113. The schematic of a design example is shown in Figure 9. The specification of the converter is listed in Table 1. Table 1. Specification of the Single Output Synchronous Buck Converter PARAMETER TEST CONDITION MIN TYP MAX UNIT VIN Input voltage 10.8 12 13.2 V VOUT Output voltage 1.6 V VRIPPLE Output ripple IOUT = 10 A 2% of VOUT V IOUT Output current 10 V fSW Switching frequency 300 kHz 16 Submit Documentation Feedback Copyright © 2009, Texas Instruments Incorporated Product Folder Link(s) :TPS51113 TPS51163 |
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