參數(shù)資料
型號: TPS65010RGZ
廠商: Texas Instruments, Inc.
英文描述: POWER AND BATTERY MANAGEMENT IC FOR Li-ION POWERED SYSTEMS
中文描述: 電源和電池管理集成電路鋰離子供電系統(tǒng)
文件頁數(shù): 47/50頁
文件大小: 1006K
代理商: TPS65010RGZ
www.ti.com
DESIGN PROCEDURE
Inductor Selection for the Main and the Core Converter
The main and the core converters in the TPS65010 typically use a 6.2-μH and a 10-μH output inductor
respectively. Larger or smaller inductor values can be used to optimize the performance of the device for specific
operation conditions. The selected inductor has to be rated for its dc resistance and saturation current. The dc
resistance of the inductance influences directly the efficiency of the converter. Therefore, an inductor with lowest
dc resistance is selected for highest efficiency.
IL
VO
1–
VO
VI
L
(3)
IL(max)
IO(max)
IL
2
(4)
Output Capacitor Selection
The advanced fast response voltage mode control scheme of the inductive converters implemented in the
TPS65010 allow the use of small ceramic capacitors with a typical value of 22 μF for the main converter and 10
μF for the core converter without having large output voltage under and overshoots during heavy load transients.
Ceramic capacitors having low ESR values have the lowest output voltage ripple and are recommended. If
required tantalum capacitors with an ESR < 100
R may be used as well.
Refer to Table 4 for recommended components.
TPS65010
SLVS149A–JUNE 2003–REVISED JANUARY 2004
Equation 3 calculates the maximum inductor current under static load conditions. The saturation current of the
inductor should be rated higher than the maximum inductor current as calculated with Equation 3. This is needed
because during heavy load transient, the inductor current rises above the value calculated under Equation 3.
with:
The highest inductor current occurs at maximum V
I
.
Open core inductors have a soft saturation characteristic and they can usually handle higher inductor currents
versus a comparable shielded inductor.
f = Switching Frequency (1.25 MHz typical)
L = Inductor Value
I
L
= Peak-to-peak inductor ripple current
I
Lmax
= Maximum inductor current
A more conservative approach is to select the inductor current rating just for the maximum switch current of the
TPS65010 (2 A for the main converter and 0.8 A for the core converter). Keep in mind that the core material from
inductor to inductor differs and has an impact on the efficiency especially at high switching frequencies.
Refer to Table 3 and the typical applications for possible inductors
Table 3. Tested Inductors
DEVICE
INDUCTOR VALUE
10 μH
10 μH
4.7 μH
4.7 μH
4.7 μH
5.3 μH
6.2 μH
6.0 μH
DIMENSIONS
6,0 mm
×
6,0 mm
×
2,0 mm
5,0 mm
×
5,0 mm
×
3.0 mm
5,5 mm
×
6,6 mm*1.0 mm
5,0 mm
×
5,0 mm
×
3.0 mm
5,2 mm
×
5.2 mm
×
2.5 mm
5,7 mm
×
5.7 mm
×
3.0 mm
5,7 mm
×
5.7 mm
×
3.0 mm
7.0 mm
×
7.0 mm
×
3.0 mm
COMPONENT SUPPLIER
Sumida CDRH5D18-100
Sumida CDRH4D28-100
Coilcraft LPO1704-472M
Sumida CDRH4D28C-4.7
Coiltronics SD25-4R7
Sumida CDRH5D28-5R3
Sumida CDRH5D28-6R2
Sumida CDRH6D28-6R0
Core converter
Main converter
47
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