Datasheet

BOOT
VIN
EN
SS/TR
RT/CLK
PH
GND
COMP
VSENSE
PWRGD
Input
Bypass
Capacitor
UVLO
Adjust
Resistors
SlowStart
Capacitor
Frequency
SetResistor
Compensation
Network
Resistor
Divider
Output
Inductor
Output
Capacitor
Vout
Vin
Topside
Ground
Area
Catch
Diode
RouteBootCapacitor
Traceonanotherlayerto
providewidepathfor
topsideground
ThermalVIA
SignalVIA
TPS54140A
SLVSB55B MAY 2012REVISED JANUARY 2014
www.ti.com
Layout
Layout is a critical portion of good power supply design. There are several signals paths that conduct fast
changing currents or voltages that can interact with stray inductance or parasitic capacitance to generate noise
or degrade the power supplies performance. To help eliminate these problems, the VIN pin should be bypassed
to ground with a low ESR ceramic bypass capacitor with X5R or X7R dielectric. Care should be taken to
minimize the loop area formed by the bypass capacitor connections, the VIN pin, and the anode of the catch
diode. See Figure 65 for a PCB layout example. The GND pin should be tied directly to the power pad under the
IC and the power pad.
The power pad should be connected to any internal PCB ground planes using multiple vias directly under the IC.
The PH pin should be routed to the cathode of the catch diode and to the output inductor. Since the PH
connection is the switching node, the catch diode and output inductor should be located very close to the PH
pins, and the area of the PCB conductor minimized to prevent excessive capacitive coupling. For operation at full
rated load, the top side ground area must provide adequate heat dissipating area. The RT/CLK pin is sensitive to
noise so the RT resistor should be located as close as possible to the IC and routed with minimal lengths of
trace. The additional external components can be placed approximately as shown. It may be possible to obtain
acceptable performance with alternate PCB layouts, however this layout has been shown to produce good
results and is meant as a guideline.
Figure 65. PCB Layout Example
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