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LM3530 датащи(PDF) 38 Page - Texas Instruments

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номер детали LM3530
подробное описание детали  High-Efficiency White-LED Driver
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LM3530 датащи(HTML) 38 Page - Texas Instruments

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SW
ILED
GND
LM3530
Up to 40V
L
D1
Paracitic
Circuit Board
Inductances
Current through
inductor
Pulsed voltage at SW
Voltage Spike
LCD Display
SDA
SCL
IN
OVP
COUT
Current through
Schottky Diode and COUT
2.7V to 5.5V
10 k:
10 k:
Affected Node
due to capacitive
coupling
Cp1
Lp1
Lp2
Lp3
VLOGIC
IAVE = IIN
IPEAK
VOUT + VF Schottky
LM3530
SNVS606L – JUNE 2009 – REVISED DECEMBER 2014
www.ti.com
10 Power Supply Recommendations
The LM3530 operates from a 2.7-V to 5.5-V input voltage. The 500-kHz switching frequency for the boost can
lead to ripple voltage on the input voltage rail. To minimize this, the input to the inductor should be well bypassed
with a 1-µF (min) ceramic bypass capacitor (see Output Capacitor Selection).
11 Layout
11.1 Layout Guidelines
The LM3530 contains an inductive boost converter which detects a high switched voltage (up to 40 V) at the SW
pin, and a step current (up to 900 mA) through the Schottky diode and output capacitor each switching cycle.
The high switching voltage can create interference into nearby nodes due to electric field coupling (I = CdV/dt).
The large step current through the diode and the output capacitor can cause a large voltage spike at the SW pin
and the OVP pin due to parasitic inductance in the step current conducting path (V = Ldi/dt). Board layout
guidelines are geared towards minimizing this electric field coupling and conducted noise. Figure 56 highlights
these two noise generating components.
Figure 56. LM3530 Boost Converter Showing Pulsed Voltage At SW (High Dv/Dt) and
Current Through Schottky and COUT (High Di/Dt)
38
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Product Folder Links: LM3530



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