LTC3789 LINER [Linear Technology], LTC3789 Datasheet - Page 17

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LTC3789

Manufacturer Part Number
LTC3789
Description
High Voltage High Current Controller for Battery Charging and Power Management
Manufacturer
LINER [Linear Technology]
Datasheet

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applicaTions inForMaTion
Input Ideal Diode PMOS Selection
The input external PMOS is selected based on the expected
maximum current, power dissipation and reverse volt-
age drop. The PMOS must be able to withstand a gate to
source voltage greater than V
the maximum regulated voltage at the IID pin, whichever
is less. A few appropriate external PMOS for a number of
different requirements are shown at Table 1.
Table 1. PMOS
PART NUMBER
SiA923EDJ
Si9407BDY
Si4401BDY
Si4435DDY
SUD19P06-60
Si7135DP
Note that in general the larger the capacitance seen on
the IGATE pin, the slower the response of the ideal diode
driver. The fast turn off and turn on current is limited to
–0.5mA and 0.7mA typical respectively (I
I
sudden increase in load current, most of the extra current
is delivered through the body diode of the external PMOS.
This increases the power dissipation momentarily. It is
important to ensure that the PMOS is able to withstand
this momentary increase in power dissipation.
Input Current Limit Setting and Monitoring
The regulated input current limit is set using a resistor at
the IL pin according to the following formula:
where V
pulled up with an accurate current source of 50µA. Therefore
an equivalent formula to obtain the input current limit is:
IGATE(FASTON)
R
R
IS
IL
=
=
IL
I
20 • I
LIM
is the voltage on the IL pin. The IL pin is internally
2.5µA
V
IL
). If the driver can not react fast enough to a
• R
ILIM
R
V
DS(ON)
GS
0.054
0.120
0.014
0.024
0.060
0.004
IS
(Ω)
= 10V
⇒ I
AT
ILIM
MAX ID
10.5
11.4
18.3
(A)
4.5
4.7
60
=
IGATE(ON)
R
R
IL
IS
MAX VDS
• 2.5µA
–20
–60
–40
–30
–60
–30
(V)
(15V maximum) or
IGATE(FASTOFF)
MANUFACTURER
Vishay
Vishay
Vishay
Vishay
Vishay
Vishay
and
The input current through the sense resistor is available
for monitoring through the IIMON pin. The voltage on
the IIMON pin varies with the current through the sense
resistor as follows:
The regulation voltage level at the IIMON pin is clamped
at 1V with an accurate internal reference. At 1V on the
IIMON pin, the input current limit is regulated at the fol-
lowing value:
When this maximum current limit is desired, leave the IL
pin open or set it to a voltage >1.05V such that amplifier
A4 can regulate the IIMON voltage accurately to the internal
reference of 1V.
If the input current is noisy, add a filter capacitor to the
CLN pin to reduce the AC content. For example, when us-
ing a buck DC/DC converter, the use of a C
is strongly recommended. Where the highest accuracy is
important, pick the value of C
is less than or equal to 50% of the average voltage across
the sense resistor.
The voltage on the IIMON pin can be filtered further by
putting a capacitor on the pin (C
IIMON pin is also the feedback input to the input current
regulation error amplifier. Any capacitor connected to
this pin places a pole in the input current regulation loop.
Therefore, this filter capacitor should NOT be arbitrarily
large as it will slow down the overall compensated loop.
For details on loop compensation please refer to the
Compensation section.
I
V
ILIM(MAX)
IIMON
= 20 • I
(A) =
RIS
0.050V
R
IS
• R
(Ω)
IS
= 20 • V
CLN
IIMON
(
such that the AC content
IN
). The voltage on the
– V
LTC4000
CLN
CLN
)
capacitor
17
4000f

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