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LTC7103 bảng dữ liệu(PDF) 21 Page - Analog Devices

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LTC7871
21
Rev. 0
For more information www.analog.com
provides better efficiency at heavy loads. To maintain a
good signal-to-noise ratio for the current sense signal,
use a minimum of 10mV between SNSA+ and SNS– pins
or the equivalent of 2mV ripple on the current sense signal
for duty cycles less than 40%. The actual ripple voltage
across SNSA+ and SNS– pins will be determined by the
following equation:
∆VSENSE =
VLOW
VHIGH
•
VHIGH – VLOW
R1• C1• fOSC
Figure 3.
LTC7871
7871 F03
R1
C2
R2
SNS–
SNSD+
SNSA+
L
SW
C1
+
VLOW
Inductor DCR Sensing
Sensing Using an RSENSE Resistor
The LTC7871 can be used with an external RSENSE resis-
tor to sense current accurately. The external components
required to accomplish this are shown in Figure 4. The
SNSD+ pin senses directly across the RS resistor through
R3 and C3 network. The R1, R2, and C1 network provide
the current signal path to the SNSA+ pin. Internally the
signals from the AC and DC paths are combined for accu-
rate current sensing and low jitter performance. Resistor
R2 is used to divide down the DC component of the signal
seen by SNSA+ due to the DCR of the inductor. As a rule
of thumb, R2 needs to be 10 times smaller than R1 so
the DCR value can be safely ignored.
Figure 4.
LTC7871
7871 F04
R1
C1
SNSD+
SNS–
SNSA+
R3
L
SW
C2
RS
+
VLOW
R2
RSENSE Resistor Sensing
constant matched to L/DCR of the inductor. For a specific
output requirement, choose the inductor with the DCR
that satisfies the maximum desired sense voltage, and
uses the relationship of the sense pin filters to output
inductor characteristics as depicted below.
DCR
=
VSENSE(MAX)
IMAX +
∆IL
2
L
DCR
= 5 • R1• C1= R2 • C2
where:
VSENSE(MAX) is the maximum sense voltage for a given
ILIM threshold
∆IL is the Inductor ripple current
L and DCR are the output inductor characteristics
R1 • C1 is the filter time constant of the SNSA+ pin
R2 • C2 is the filter time constant of the SNSD+ pin
To ensure that the load current will be delivered over the
full operating temperature range, the temperature coef-
ficient of DCR resistance, approximately 0.4%/°C, should
be taken into account.
Typically, C1 and C2 are selected in the range of 0.047μF
to 0.47μF. If C1 and C2 are chosen to be 0.1μF, and an
inductor of 10μH with 2mΩ DCR is selected, R1 and R2
will be 10k and 49.9k, respectively. The bias current at
SNSD+ and SNSA+ is less than 1μA, and it introduces a
small error to the sense signal.
There will be some power loss in R1 that relates to the
duty cycle, and will be the most in continuous mode at
the maximum VHIGH voltage:
PLOSS R
( ) =
VHIGH(MAX) – VLOW
(
)• VLOW
R
Ensure that R1 has a power rating higher than this value.
Care has to be taken for voltage coefficients of these resis-
tors at high VHIGH voltages. Multiple resistors can be used
in series to minimize this effect. However, DCR sensing
eliminates the conduction loss of a sense resistor; it also
APPLICATIONS INFORMATION



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