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ST1S32 bảng dữ liệu(PDF) 20 Page - STMicroelectronics

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Giải thích chi tiết về linh kiện  4 A DC step-down switching regulator
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nhà sản xuất  STMICROELECTRONICS [STMicroelectronics]
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ST1S32 bảng dữ liệu(HTML) 20 Page - STMicroelectronics

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Application information
ST1S32
20/29
Doc ID 023246 Rev 1
Figure 8.
Switching losses
5.5
Layout considerations
The PC board layout of the switching DC/DC regulator is very important to minimize the
noise injected in high impedance nodes, to reduce interference generated by the high
switching current loops and to optimize the reliability of the device.
In order to avoid EMC problems, the high switching current loops must be as short as
possible. In the buck converter there are two high switching current loops: during the ON-
time, the pulsed current flows through the input capacitor, the high-side power switch, the
inductor and the output capacitor; during the OFF-time, through the low-side power switch,
the inductor and the output capacitor.
The input capacitor connected to VINSW must be placed as close as possible to the device,
to avoid spikes on VINSW due to the stray inductance and the pulsed input current.
In order to prevent dynamic unbalance between VINSW and VINA, the trace connecting the
VINA pin to the input must be derived from VINSW.
The feedback pin (FB) connection to the external resistor divider is a high impedance node,
so interference can be minimized by routing the feedback node with a very short trace and
as far as possible from the high current paths.
A single point connection from signal ground to power ground is suggested.
Thanks to the exposed pad of the device, the ground plane helps to reduce the thermal
resistance junction-to-ambient; so a large ground plane, soldered to the exposed pad,
enhances the thermal performance of the converter allowing high power conversion.
V
SW
I
SW,HS
V
IN
V
DS,HS
P
COND,HS
P
COND,LS
P
SW
T
FALL
T
RISE
AM11422v1



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