參數(shù)資料
型號: TPS62260IDRVRQ1
廠商: TEXAS INSTRUMENTS INC
元件分類: 穩(wěn)壓器
英文描述: SWITCHING REGULATOR, PDSO6
封裝: 2 X 2 MM, 0.80 MM, GREEN, PLASTIC, SON-6
文件頁數(shù): 14/31頁
文件大?。?/td> 1228K
代理商: TPS62260IDRVRQ1
V
OUT + VREF
1 )
R
1
R
2
DIL + VOUT
1 *
V
OUT
V
IN
L
f
I
L max + Iout max )
DIL
2
www.ti.com
SLVSA16A – AUGUST 2009 – REVISED FEBRUARY 2010
OUTPUT VOLTAGE SETTING
The output voltage can be calculated to:
with an internal reference voltage VREF typical 0.6V.
To minimize the current through the feedback divider network, R2 should be 180 k or 360 k. The sum of R1
and R2 should not exceed ~1M, to keep the network robust against noise. An external feed forward capacitor
C1 is required for optimum load transient response. The value of C1 should be in the range between 22pF and
33pF.
Route the FB line away from noise sources, such as the inductor or the SW line.
OUTPUT FILTER DESIGN (INDUCTOR AND OUTPUT CAPACITOR)
The TPS6226x is designed to operate with inductors in the range of 1.5mH to 4.7mH and with output capacitors in
the range of 4.7mF to 22mF. The part is optimized for operation with a 2.2mH inductor and 10mF output capacitor.
Larger or smaller inductor values can be used to optimize the performance of the device for specific operation
conditions. For stable operation, the L and C values of the output filter may not fall below 1mH effective
inductance and 3.5mF effective capacitance.
Inductor Selection
The inductor value has a direct effect on the ripple current. The selected inductor has to be rated for its dc
resistance and saturation current. The inductor ripple current (
ΔIL) decreases with higher inductance and
increases with higher VI or VO.
The inductor selection has also impact on the output voltage ripple in PFM mode. Higher inductor values will lead
to lower output voltage ripple and higher PFM frequency, lower inductor values will lead to a higher output
voltage ripple but lower PFM frequency.
Equation 1 calculates the maximum inductor current in PWM mode under static load conditions. The saturation
current of the inductor should be rated higher than the maximum inductor current as calculated with Equation 2.
This is recommended because during heavy load transient the inductor current will rise above the calculated
value.
(1)
(2)
With:
f = Switching Frequency (2.25MHz typical)
L = Inductor Value
ΔIL = Peak to Peak inductor ripple current
ILmax = Maximum Inductor current
A more conservative approach is to select the inductor current rating just for the switch current limit ILIMF of the
converter.
Accepting larger values of ripple current allows the use of lower inductance values, but results in higher output
voltage ripple, greater core losses, and lower output current capability.
The total losses of the coil have a strong impact on the efficiency of the DC/DC conversion and consist of both
the losses in the dc resistance (R(DC)) and the following frequency-dependent components:
The losses in the core material (magnetic hysteresis loss, especially at high switching frequencies)
Additional losses in the conductor from the skin effect (current displacement at high frequencies)
Magnetic field losses of the neighboring windings (proximity effect)
Radiation losses
Copyright 2009–2010, Texas Instruments Incorporated
21
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