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MAX1887 Ver la hoja de datos (PDF) - Maxim Integrated

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MAX1887 Datasheet PDF : 33 Pages
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PIN
MAX1887 MAX1897
12
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18
Quick-PWM Slave Controllers for
Multiphase, Step-Down Supplies
NAME
DH
LX
BST
V+
LIMIT
Pin Description (continued)
DESCRIPTION
High-Side Gate-Driver Output. DH swings from LX to BST.
Inductor Connection. Connect LX to the switched side of the inductor. LX serves as
the lower supply rail for the DH high-side gate driver.
Boost Flying-Capacitor Connection. Connect to an external capacitor and diode
according to the Standard Application Circuit (Figure 1). An optional resistor in
series with BST allows DH pullup current to be adjusted.
Battery Voltage Sense Connection. Connect V+ to the input power source. V+ is
used only for PWM one-shot timing (see the On-Time Control and Active Current
Balancing section).
Open-Drain Current-Limit Output. Connect to the master controllers adjustable current-
limit input (ILIM) according to the Standard Application Circuit (Figure 1). When the
voltage across the master controllers current-sense resistor (VCM+ - VCM-) exceeds the
current-limit threshold (VILIM/10), the MAX1887/MAX1897 pulls LIMIT low.
Table 1. Component Selection for Standard
Applications
COMPONENT
Output Voltage
Input Voltage Range
Maximum Load Current
Inductor (each phase)
Frequency
High-Side MOSFET
(NH, each phase)
Low-Side MOSFET
(NL, each phase)
CIRCUIT OF FIGURE 1
0.6V to 1.75V
7V to 24V
40A
0.6µH
Sumida CDEP134H-0R6 or
Panasonic ETQP6F0R6BFA
300kHz (TON = float)
International Rectifier
(2) IRF7811W
International Rectifier
(2) IRF7822 or
Fairchild (3) FDS7764A or
Input Capacitor (CIN)
Output Capacitor (COUT)
Current-Sense Resistors
(RCS and RCM)
Voltage Positioning Gain
(AVPS)
(6) 10µF 25V
Taiyo Yuden
TMK432BJ106KM or
TDK C4532X5R1E106M
(8) 270µF 2V
Panasonic EEFUE0E271R
1.5m
2
Detailed Description
The MAX1887/MAX1897 step-down slave controllers
are intended for low-voltage, high-current, multiphase
DC-to-DC applications. The MAX1887/MAX1897 slave
controllers can be combined with any of Maxims
Quick-PWM step-down controllers to form a multiphase
DC-to-DC converter. When compared to single-phase
operation, multiphase conversion lowers the peak
inductor current by distributing the load current
between parallel power paths. This simplifies compo-
nent selection, power distribution to the load, and ther-
mal layout. Existing Quick-PWM controllers, such as the
MAX1718, function as the master controller, providing
accurate output voltage regulation, fast transient
response, and multiple fault protection features.
Synchronized to the masters low-side gate driver, the
MAX1887/MAX1897 include a constant on-time con-
troller, synchronous rectifier gate drive, active current
balancing, and precision current-limit circuitry.
On-Time Control and Active
Current Balancing
The MAX1887/MAX1897 slave controller uses a con-
stant on-time, voltage feed-forward architecture similar
to Maxims Quick-PWM controllers (Figure 2). The con-
trol algorithm is simple: the high-side switch on-time is
determined solely by a one-shot whose period is
inversely proportional to input voltage and directly pro-
portional to the compensation voltage (VCOMP).
Another one-shot sets a minimum off-time (130ns typi-
cal). The on-time one-shot is triggered when the follow-
ing conditions are satisfied: The slave detects a
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