参数资料
型号: TPS40131RHBTG4
厂商: TEXAS INSTRUMENTS INC
元件分类: 稳压器
英文描述: SWITCHING CONTROLLER, 1200 kHz SWITCHING FREQ-MAX, PQCC32
封装: GREEN, PLASTIC, QFN-32
文件页数: 3/40页
文件大小: 940K
代理商: TPS40131RHBTG4
www.ti.com
Current Sensing and Balancing (U1, U9 and U18)
Hiccup Mode
PowerGood
Soft-Start
t
SS +
0.7
C
SS
5
10*6
(1)
Overcurrent Protection
(
)
ILIM
CS
PH max
V
3.75
I
R
=
(2)
I
PH(max) +
I
OUT
2
)
V
IN * VOUT
V
OUT
2
L
OUT
f
SW
V
IN
(3)
SLVS635 – FEBRUARY 2007
FUNCTIONAL DESCRIPTION (continued)
The controller employs peak current mode control scheme, thus naturally provides certain degree of current
balancing. With current mode, the level of current feedback should comply with certain guidelines depending on
duty factor known as “slope compensation” to avoid the sub-harmonic instability. This requirement can prohibit
achieving a higher degree of phase current balance. To avoid the controversy, a separate current loop that
forces phase currents to match is added to the proprietary control scheme. This effectively provides high degree
of current sharing independent of the controller’s small signal response and is implemented in U9, ICTLR. The
useable range of the controller bandwidth is also extended.
High bandwidth current amplifiers, U1 and U18 can accept as an input voltage either the voltage drop across
dedicated precise current sense resistors, or inductor’s DCR voltage derived by an RC network. The wide range
of current sense arrangements ease the cost/complexity constraints and provides superior performance
compared to controllers utilizing the low-side MOSFET current sensing. See the Inductor DCR Current Sense
section for more information on selecting component values for the R-C network.
Hiccup mode is a feature that is invoked when certain faults are detected. Hiccup mode allows a time for a fault
to clear itself,for instance, a momentary short circuit on the output. The hiccup mode consists of 7 cycles of
charging and discharging the soft-start capacitor and then attempting a re-start. If the fault has been cleared, the
re-start will cause the output to come up in regulation. If the fault has not been cleared, Hiccup mode is initiated
again and another restart will occure after another 7 soft-start cycles.
The PGOOD pin indicates when the inputs and output are within their specified ranges of operation. Also
monitored are the EN/SYNC and SS pins. PGOOD has high impedance when indicating inputs and outputs are
within specified limits and is pulled low to indicate an out-of-limits condition. .
A capacitor connected to the soft start pin (SS) sets the power-up time. When EN is high and POR is cleared,
the calibrated current source starts charging the external soft start capacitor. The PGOOD pin is held low during
the start up. The rising voltage across the capacitor serves as a reference for the error amplifier, U12. When the
soft-start voltage reaches the level of the reference voltage, the converter’s output reaches the regulation point
and further voltage rise of the soft start voltage has no effect on the output. When the soft start voltage reaches
1.0 V, the power good (PGOOD) function is cleared to be reported on the PGOOD pin. Normally the PGOOD
pin goes high at this time. Equation 1 is used to calculate the value of the soft-start capacitor.
The overcurrent function, U19, monitors the output of current sense amplifiers U1 and U18. These currents are
converted to voltages and compared to the voltage on the ILIM pin. The relationship between the maximum
phase current and the current sense resistance is given in the following equation. In case a threshold of
VILIM/3.75 is exceeded the PWM cycle on the associated phase is terminated. The overcurrent threshold,
IPH(max), and the voltage to set on the ILIM pin is determined by Equation 2 and Equation 3.
where
I
PH(max) is a maximum value of the phase current allowed
I
OUT is the total maximum DC output current
R
CS is a value of the current sense resistor used or the DCR value of the output inductor, LOUT
11
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