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BLE18PS080SN1 데이터시트(PDF) 21 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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switching frequency. In this case, the output voltage ripple doubles compared to the use of a 4.7-µH inductor,
which is typically acceptable when powering high speed ADCs. Optimization for powering clock and PLL circuits
that need a 3.3-V output use a 2.2-µH inductor with 2.2-MHz switching frequency, minimizing output voltage
ripple and low frequency noise.
For the application cases that are not found in Table 8-2, there are two methods to design the TPS6291x circuit.
Section 8.2.2.1 uses Webench to design the circuit automatically or the calculations in Section 8.2.2.2 can be
used instead.
Table 8-2. Typical Single L-C Filter Design Recommendations
DESIGN GOAL
VIN
VOUT
FSW
INDUCTOR
(2)
OUTPUT
CAPACITORS
(3)
Typical
12 V
(1)
≤ 2.0 V
(1)
1 MHz
2.2 µH
3 x 22 µF, 10 V, 0805
Typical
12 V
2.0 V < VOUT ≤ 3.3 V 1 MHz
4.7 µH
3 x 22 µF, 10 V, 0805
Typical
12 V
> 3.3 V
2.2 MHz
2.2 µH
1 x 47 µF, 1210 and 2
x 22 µF, 10 V, 0805
Higher Efficiency
(with higher ripple and
noise)
12 V
2.0 V < VOUT ≤ 3.3 V 1 MHz
2.2 µH
(4)
3 x 22 µF, 10 V, 0805
Low ripple/noise PLL
and Clock Supply
12 V
2.6 V ≤ VOUT ≤ 3.3 V 2.2 MHz
2.2 µH
3 x 22 µF, 10V, 0805
Typical
5 V
≤ 3.3 V
2.2 MHz
2.2 µH
3 x 22 µF, 10 V, 0805
Typical
5 V
> 3.3V
2.2 MHz
2.2 µH
1 x 47 µF, 1210 and 2
x 22 µF, 10 V, 0805
(1)
The maximum input to output voltage difference is limited by the device maximum minimum on-time of 70ns. This is especially
important for input voltages above 12 V or output voltages below 1 V. See Section 8.2.2.2.1.
(2)
For inductor part numbers, see Table 8-4.
(3)
For output capacitor part numbers, see Table 8-5.
(4)
The TPS62913 requires a 4.7-µH inductor when using the 1-MHz switching frequency to supply more than 2.5-A load current when the
output voltage is greater than 2.0 V.
The second stage L-C filter is optional, as the device can be used without this filter to achieve below 20-μVRMS
noise typically. A second stage filter is added to provide additional attenuation of the output ripple voltage. The
output voltage is sensed after the second L-C filter by connecting the FB resistors to the second stage L-C filter
capacitor. This provides remote sense, minimizing output voltage drop due to the ferrite bead. Refer to Table 8-3
for second stage L-C filter recommendations based on the output voltage.
Table 8-3. Second Stage L-C (Ferrite Bead) Filter Design Recommendations
VOUT (V)
FERRITE BEAD IMPEDANCE (AT 100 MHZ)
(2)
OUTPUT CAPACITORS
(1)
≤ 3.3 V
8 to 20 Ω
2 x 22 µF, 10 V, 0805
> 3.3 V
8 to 20 Ω
3 x 22 µF, 10 V, 0805
(1)
For output capacitor part numbers, see Table 8-5.
(2)
For second stage L-C filter part numbers, see Table 8-6.
8.2.2 Detailed Design Procedure
If the specific design is not found in Table 8-2, WEBENCH is recommended to generate the design. Alternatively,
the manual design procedure in External Component Selection can be followed.
8.2.2.1 Custom Design With WEBENCH® Tools
Click here to create a custom design using the TPS6291x device with the WEBENCH® Power Designer.
1. Start by entering the input voltage (VIN), output voltage (VOUT), and output current (IOUT) requirements.
2. Optimize the design for key parameters such as efficiency, footprint, and cost.
3. Open the advanced tab to optimize for output voltage ripple.
4. Once in a TPS6291x design, you can enable the second stage L-C filter and change other settings from the
drop-down on the left.
www.ti.com
TPS62912, TPS62913
SLVSFP4 – AUGUST 2020
Copyright © 2020 Texas Instruments Incorporated
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Product Folder Links: TPS62912 TPS62913



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