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LP87702 датащи(PDF) 79 Page - Texas Instruments

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номер детали LP87702
подробное описание детали  LP87702 Dual Buck Converter and 5-V Boost With Diagnostic Functions
PDF  98 Pages
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производитель  TI [Texas Instruments]
домашняя страница  http://www.ti.com
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LP87702 датащи(HTML) 79 Page - Texas Instruments

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8.2.2.1 Application Components
8.2.2.1.1 Inductor Selection
Section 8.2 shows the inductors L0, L1, and L2. The inductor's inductance and DCR affects the buck and boost
converter's control loop. Table 8-2 lists the recommended inductors, or similar ones, that should be used. Pay
attention to the inductor's saturation current and temperature rise current. Check that the saturation current
is higher than the peak current limit and the temperature rise current is higher than the maximum expected
rms output current. Section 6 shows the minimum effective inductance that ensures good performance. The
inductor's DC resistance should be less than 0.05 Ω for good efficiency at high-current condition. The inductor
AC loss (resistance) also affects conversion efficiency. Higher Q factor at switching frequency usually gives
better efficiency at light load to middle load. Shielded inductors are preferred as they radiate less noise.
Table 8-2. Recommended Inductors for Buck Converters
MANUFACTURER
PART NUMBER
VALUE
DIMENSIONS
L × W x× H (mm)
RATED DC CURRENT,
ISAT max / ITEMP max (A)
DCR typ / max
(mΩ)
MURATA
DFE20162E-R47M
0.47 µH (20%)
2 × 1.6 × 1.2
5.5 / 4.5(1)
- / 26
MURATA
DFE252012F-R47M
0.47 µH (20%)
2.5 × 2 × 1.2
6.7 / 4.9(1)
- / 23
(1)
Operating temperature range is up to 125°C including self temperature rise.
Table 8-3. Recommended Inductor for Boost Converters
MANUFACTURER
PART NUMBER
VALUE
DIMENSIONS
L × W x× H (mm)
RATED DC CURRENT,
ISAT max / ITEMP max (A)
DCR typ / max
(mΩ)
MURATA
DFE201612E-1R0M
1 µH (20%)
2 × 1.6 × 1.2
4.0 / 2.9 (1)
- / 42
MURATA
DFE252012F-1R0M
1 µH (20%)
2.5 × 2 × 1.2
4.2 / 3.3 (1)
- / 40
8.2.2.1.2 Buck Input Capacitor Selection
Section 8.2 shows the input capacitors CIN0 and CIN1. A ceramic input bypass capacitor of 10 μF is required
for both converters. Place the input capacitor as close as possible to the device's VIN_Bx pin and PGND_Bx
pin. A larger value or higher voltage rating improves the input voltage filtering. Use X7R type of capacitors, not
Y5V or F. The capacitor's DC bias characteristics must also be considered. Minimum effective input capacitance
to ensure good performance is 1.9 μF per buck input at the maximum input voltage including tolerances and
ambient temperature range. In addition, Table 8-4 shows how there must be at least 22 μF of additional
capacitance common for all the power input pins on the system power rail.
The input filter capacitor supplies current to the high-side FET switch in the first half of each cycle and reduces
the voltage ripple imposed on the input power source. A ceramic capacitor's low ESR provides the best noise
filtering of the input voltage spikes due to this rapidly changing current. Select an input filter capacitor with
sufficient ripple current rating. In addition, ferrite can be used in front of the input capacitor to reduce the EMI.
Table 8-4. Recommended Buck Input Capacitors (X7R Dielectric)
MANUFACTURER
PART NUMBER
VALUE
CASE SIZE
DIMENSIONS LxWxH
(mm)
VOLTAGE RATING
Murata
GRM21BR71A06KA73
10 µF (10%)
0805
2 × 1.25 × 1.25
10 V
TDK
C2012X7R1A106K125AC
10 µF (10%)
0805
2 × 1.25 × 1.25
10 V
www.ti.com
LP87702
SNVSBU3 – MARCH 2021
Copyright © 2021 Texas Instruments Incorporated
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