参数资料
型号: LTC3604IUD#TRPBF
厂商: LINEAR TECHNOLOGY CORP
元件分类: 稳压器
英文描述: SWITCHING REGULATOR, PQCC16
封装: 3 X 3 MM, LEAD FREE, PLASTIC, MO-220WEED-2, QFN-16
文件页数: 7/24页
文件大小: 277K
代理商: LTC3604IUD#TRPBF
LTC3604
15
3604f
APPLICATIONS INFORMATION
a soft-start function by connecting a capacitor from the
TRACK/SS pin to ground. The relationship between output
rise time and TRACK/SS capacitance is given by:
tSS = 430,000 × CTRACK/SS
A default internal soft-start timer forces a minimum soft-
start time of 400μs by overriding the TRACK/SS pin input
during this time period. Hence, capacitance values less
than approximately 1000pF will not signicantly affect
soft-start behavior.
When using the TRACK/SS pin, the regulator defaults to
Burst Mode operation until the output exceeds 80% of
its nal value (VFB > 0.48V). Once the output reaches this
voltage, the operating mode of the regulator switches to
the mode selected by the MODE/SYNC pin as described
above. During normal operation, if the output drops below
10% of its nal value (as it may when tracking down, for
instance), the regulator will automatically switch to Burst
Mode operation to prevent inductor saturation and improve
TRACK/SS pin accuracy.
Output Power Good
The PGOOD output of the LTC3604 is driven by a 15Ω
(typical) open-drain pull-down device. This device will
be turned off once the output voltage is within ±5% (typi-
cal) of the target regulation point allowing the voltage at
PGOOD to rise via an external pull-up resistor (100k typi-
cal). If the output voltage exits a ±8% (typical) regulation
window around the target regulation point the open-drain
output will pull down with 15Ω output resistance to
ground, thus dropping the PGOOD pin voltage. A lter
time of 40μs (typical) acts to prevent unwanted PGOOD
output changes during VOUT transient events. As a result,
the output voltage must be within the target regulation
window of ±5% for 40μs before the PGOOD pin is pulled
high. Conversely, the output voltage must exit the ±8%
regulation window for 40μs before the PGOOD pin pulls
to ground (see Figure 4).
Efciency Considerations
The percent efciency of a switching regulator is equal to
the output power divided by the input power times 100%.
It is often useful to analyze individual losses to determine
what is limiting the efciency and which change would
produce the most improvement. Percent efciency can
be expressed as:
% Efciency = 100% – (L1 + L2 + L3 +…)
where L1, L2, etc. are the individual loss terms as a per-
centage of input power.
Although all dissipative elements in the circuit produce
losses, three main sources account for the majority of the
losses in the LTC3604: 1) I2R loss, 2) switching losses
and quiescent current loss, 3) transition losses and other
system losses.
1. I2R loss is calculated from the DC resistances of the
internal switches, RSW, and external inductor, RL. In
continuous mode, the average output current will
ow through inductor L but is “chopped” between the
internal top and bottom power MOSFETs. Thus, the
series resistance looking into the SW pin is a function
of both the top and bottom MOSFET’s RDS(ON) and the
duty cycle (DC) as follows:
RSW = (RDS(ON)TOP)(DC) + (RDS(ON)BOT)(1 – DC)
The RDS(ON)forboththetopandbottomMOSFETscanbe
obtained from the Typical Performance Characteristics
curves. Thus to obtain I2R loss:
“I2R LOSS” = IOUT2 (RSW + RL)
2. The internal LDO supplies the power to the INTVCC rail.
The total power loss here is the sum of the switching
losses and quiescent current losses from the control
circuitry.
PGOOD
VOLTAGE
VOUT
–8%
–5%
5%
8%
3604 F04
0%
NOMINAL OUTPUT
Figure 4. PGOOD Pin Behavior
相关PDF资料
PDF描述
LTC3604IUD#PBF SWITCHING REGULATOR, PQCC16
LTC3604EMSE#PBF SWITCHING REGULATOR, PDSO16
LTC3604EMSE#TRPBF SWITCHING REGULATOR, PDSO16
LTC3604IMSE#TRPBF SWITCHING REGULATOR, PDSO16
LTC3775EMSE#TRPBF SWITCHING CONTROLLER, 575 kHz SWITCHING FREQ-MAX, PDSO16
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