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CXLD140 PDF预览

CXLD140

更新时间: 2022-12-21 13:00:11
品牌 Logo 应用领域
美信 - MAXIM 转换器
页数 文件大小 规格书
12页 276K
描述
16μA IQ, 1.2A PWM Step-Down DC-DC Converters

CXLD140 数据手册

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16µA I , 1.2A PWM DC-DC  
Q
Step-Down Converters  
Pin Description  
PIN  
1
NAME  
IN  
FUNCTION  
Supply Voltage Input. Connect to a 2.6V to 5.5V source.  
Ground. Connect to PGND.  
2
GND  
Soft-Start Control. Connect a 1000pF capacitor (C ) from SS to GND to eliminate input-current  
SS  
overshoot during startup. C is required for normal operation of the MAX1556/MAX1557. For greater  
SS  
3
SS  
than 22µF total output capacitance, increase C to C  
SS  
/ 22,000 for soft-start. SS is internally  
OUT  
discharged through 200to GND in shutdown.  
Output Sense Input. Connect to the output of the regulator. D1 and D2 select the desired output  
voltage through an internal feedback resistor-divider. The internal feedback resistor-divider remains  
connected in shutdown.  
4
5
OUT  
Shutdown Input. Drive SHDN low to enable low-power shutdown mode. Drive high or connect to IN  
for normal operation.  
SHDN  
6
7
D2  
OUT Voltage-Select Input. See Table 1.  
Power Ground. Connect to GND.  
PGND  
Inductor Connection. Connected to the drains of the internal power MOSFETs. High impedance in  
shutdown mode.  
8
LX  
Supply Voltage, High-Current Input. Connect to a 2.6V to 5.5V source. Bypass with a 10µF ceramic  
capacitor to PGND.  
9
INP  
D1  
EP  
10  
OUT Voltage-Select Input. See Table 1.  
Exposed Paddle. Connect to ground plane. EP also functions as a heatsink. Solder to circuit-board  
ground plane to maximize thermal dissipation.  
Control Scheme  
Table 1. Output-Voltage-Select Truth Table  
During PWM operation the converters use a fixed-fre-  
quency, current-mode control scheme. The heart of the  
current-mode PWM controller is an open-loop, multiple-  
input comparator that compares the error-amp voltage  
feedback signal against the sum of the amplified cur-  
rent-sense signal and the slope-compensation ramp. At  
the beginning of each clock cycle, the internal high-side  
p-channel MOSFET turns on until the PWM comparator  
trips. During this time the current in the inductor ramps  
up, sourcing current to the output and storing energy in  
the inductor’s magnetic field. When the p-channel turns  
off, the internal low-side n-channel MOSFET turns on.  
Now the inductor releases the stored energy while the  
current ramps down, still providing current to the output.  
The output capacitor stores charge when the inductor  
current exceeds the load and discharges when the  
inductor current is lower than the load. Under overload  
conditions, when the inductor current exceeds the cur-  
rent limit, the high-side MOSFET is turned off and the  
low-side MOSFET remains on until the next clock cycle.  
6/MAX157  
MAX1556  
MAX1556A  
MAX1557  
D1  
D2  
V
OUT  
V
OUT  
V
OUT  
Adjustable  
Adjustable  
(V = 0.75)  
FB  
from 0.75V to  
(V = 0.75)  
FB  
from 0.75V to  
0
0
3.3V  
V
V
IN  
IN  
0
1
1
1
0
1
3.3V  
2.5V  
1.8V  
1.5V  
1.2V  
2.5V  
1.5V  
1.3V  
1.0V  
A zero represents D_ being driven low or connected to GND.  
A 1 represents D_ being driven high or connected to IN.  
Detailed Description  
The MAX1556/MAX1557 synchronous step-down con-  
verters deliver a guaranteed 1.2A/600mA at output volt-  
ages from 0.75V to V . They use a 1MHz PWM  
IN  
current-mode control scheme with internal compensation,  
allowing for tiny external components and a fast transient  
response. At light loads the MAX1556/MAX1557 automat-  
ically switch to pulse-skipping mode to keep the quies-  
cent supply current as low as 16µA. Figures 2 and 3  
show the typical application circuits.  
6
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