参数资料
型号: MAX15118EVKIT#
厂商: Maxim Integrated Products
文件页数: 14/23页
文件大小: 0K
描述: EVAL KIT STEP-DOWN 18A MAX15118
产品培训模块: Obsolescence Mitigation Program
标准包装: 1
主要目的: DC/DC,步降
输出及类型: 1,非隔离
功率 - 输出: 27W
输出电压: 1.5V
电流 - 输出: 18A
输入电压: 2.7 V ~ 5.5 V
稳压器拓扑结构: 降压
频率 - 开关: 1MHz
板类型: 完全填充
已供物品:
已用 IC / 零件: MAX15118
MAX15118
High-Efficiency, 18A, Current-Mode Synchronous
Step-Down Regulator with Integrated Switches
Applications Information
=
I L_PK I LOAD +
1
2
? I L(P-P) < min (24A, I L_SAT )
? I L(P-P) =
Setting the Output Voltage
The MAX15118 output voltage is adjustable from 0.6V
up to 94% of V IN by connecting FB to the center tap of
a resistor-divider between the output and GND (see the
Typical Operating Circuits ). Choose R1 and R2 values
where:
( V IN ? V OUT ) x
L x f SW
V OUT
V IN
× OUT
I LOAD V
so that the DC errors due to the FB input bias current
( Q 500nA) do not affect the output voltage accuracy.
With lower value resistors, the DC error is reduced, but
the amount of power consumed in the resistor-divider
increases. R2 values between 1k I and 20k I are accept-
able (see Table 1 for typical values). Once R2 is chosen,
calculate R1 using:
R1=R2 × ? ? ( V OUT /V FB ) - 1 ? ?
where the feedback threshold voltage V FB = 0.6V (typ).
When regulating for an output of 0.6V in skip mode, short
FB to OUT and keep R2 connected from FB to GND.
Input Capacitor Selection
For a step-down converter, the input capacitor, C IN ,
helps to keep the DC input voltage steady, in spite of
discontinuous input AC current. Use low-ESR capacitors
to minimize the voltage ripple due to ESR.
Size C IN using the following formula:
C IN
=
f SW × ? V IN_RIPPLE V IN
where D V IN_RIPPLE is the maximum-allowed input-ripple
voltage across the input capacitors and is recommend-
Inductor Selection
f SW is the switching frequency (1MHz), and I LOAD is the
current, leading to a reduced output-ripple voltage.
However, a high-valued inductor results in either a larger
physical size or a high series resistance (DCR) and a
lower saturation current rating. Typically, choose an
inductor value to produce a current ripple, D I L , equal to
V OUT
-1 2 ?
? ? V
× ? 1- OUT ?
OUT IN OUT ) ?
× ( V - V
=
= ? ? ?
? × I
f SW × LIR × I LOAD ? V IN ? I RMS LOAD
V IN
? ?
addition, the peak inductor current, I L_PK , must always
ed to be less than 2% of the minimum input voltage,
A high-valued inductor results in reduced inductor-ripple
output load. The impedance of the input capacitor at
the switching frequency should be less than that of the
input source so high-frequency switching currents do not
pass through the input source, but are instead shunted
through the input capacitor.
30% of load current. Choose the inductor with the follow- Ensure that the input capacitor can accommodate the
ing formula: input-ripple current requirement imposed by the switch-
ing currents. The RMS input-ripple current is given by:
? V ?
L
? ?
where f SW is the fixed 1MHz switching frequency, and
LIR is the desired inductor current ratio (typically 0.3). In
where I RMS is the input RMS ripple current.
be below the high-side current-limit and the inductor Use multiple capacitors in parallel to meet the RMS cur-
saturation current rating, I L_SAT . Ensure that the following rent rating requirement.
relationship is satisfied:
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