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BLE18PS080SN1 데이터시트(PDF) 22 Page - Texas Instruments

부품명 BLE18PS080SN1
상세설명  TPS6291x 3-V to 17-V, 2-A/3-A Low Noise and Low Ripple Buck Converter with Integrated Ferrite Bead Filter Compensation
PDF  36 Pages
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제조업체  TI [Texas Instruments]
홈페이지  http://www.ti.com
Logo TI - Texas Instruments

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The WEBENCH Power Designer provides a customized schematic along with a list of materials with real-time
pricing and component availability.
In most cases, these actions are available:
• Run electrical simulations to see important waveforms and circuit performance
• Export customized schematic and layout into popular CAD formats
• Print PDF reports for the design, and share the design with colleagues
Get more information about WEBENCH tools at www.ti.com/WEBENCH.
8.2.2.2 External Component Selection
8.2.2.2.1 Switching Frequency Selection
The switching frequency can be chosen to optimize efficiency (1 MHz) or ripple/noise (2.2 MHz). Using the 2.2-
MHz setting increases the gain of the feedback loop and can result in lower output noise. However, additional
considerations for minimum on-time and duty cycle must also be considered. First, calculate the duty cycle using
Equation 3. Higher efficiency results in a shorter on-time, so a conservative approach is to use a higher
efficiency than expected in the application.
OUT
IN
V
D
V
K
u
(3)
where:
• η = estimated efficiency (use the value from the efficiency curves or 0.9 as an conservative assumption)
Then, calculate the on-time with both 1 MHz and 2.2 MHz using Equation 4. The on-time must always remain
above the minimum on-time of 70 nsec. Use the maximum input voltage and maximum efficiency to determine
the minimum duty cycle, Dmin. Use the maximum switching frequency for fSW.
min
_ min
_ max
ON
SW
D
t
f
(4)
then
• If tON_min min < 70 ns with 2.2 MHz, use 1 MHz.
• If tON_min min < 70 ns with 1 MHz, reduce the maximum input voltage.
• If tON_min min ≥ 70 ns for both cases, use 1 MHz for highest efficiency, or 2.2 MHz for lowest noise and ripple.
8.2.2.2.2 Inductor Selection for the First L-C Filter
The inductor selection is dependent on the selected switching frequency and the duty cycle. When using the 2.2-
MHz frequency, only use a 2.2-µH inductor. When using the 1-MHz frequency, calculate the maximum duty cycle
using the minimum input voltage. If Dmax is above 45%, only use a 4.7-µH inductor. If Dmax is below 45% and the
output voltage is 2 V or less, use only a 2.2-µH inductor. If Dmax is below 45% and the output voltage is above 2
V, use a 4.7-µH inductor to achieve the full output current or a 2.2-µH inductor for higher efficiency with a
reduced maximum output current.
The inductor also has to be rated for the appropriate saturation current. Equation 5 and Equation 6 calculate the
maximum inductor current under static load conditions. The formula takes the converter efficiency into account.
The calculation must be done for the maximum input voltage where the peak switch current is highest.
1
OUT
OUT
IN
L
SW
V
V
V
I
f
L
K
K
§
·
¸
u
©
¹
'
u
(5)
TPS62912, TPS62913
SLVSFP4 – AUGUST 2020
www.ti.com
22
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Copyright © 2020 Texas Instruments Incorporated
Product Folder Links: TPS62912 TPS62913



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