參數(shù)資料
型號(hào): MAX1742-MAX1842
廠商: Maxim Integrated Products, Inc.
元件分類: 數(shù)字信號(hào)處理
英文描述: Replaced by TMS320C6410 : Digital Signal Processor 40-PDIP 0 to 0
中文描述: 1A/2.7A的1MHz,降壓型同步整流和內(nèi)部開(kāi)關(guān)穩(wěn)壓器
文件頁(yè)數(shù): 14/16頁(yè)
文件大?。?/td> 597K
代理商: MAX1742-MAX1842
M
1A/2.7A, 1MHz, Step-Down Regulators with
Synchronous Rectification and Internal Switches
14
______________________________________________________________________________________
The constant-current source stops charging once the
voltage across the soft-start capacitor reaches 1.8V
(Figure 5).
Extended Current Limit (MAX1842)
For applications requiring occasional short bursts of
high output current (up to 2.7A), the MAX1842 provides
a higher current-limit threshold. When using the
MAX1842, choose external components capable of
withstanding its higher peak current limit.
The MAX1842 is capable of delivering large output cur-
rents for limited durations, and its thermal characteris-
tics allow it to operate at continuously higher output
currents. Figure 6 shows its maximum recommended
continuous output current versus ambient temperature.
Figure 7 shows the maximum recommended burst cur-
rent versus the output current duty cycle at high tem-
peratures.
Figure 7 assumes that the output current is a square
wave with a 100Hz frequency. The duty cycle is
defined as the duration of the burst current divided by
the period of the square wave. This figure shows the
limitations for continuous bursts of output current.
Note that if the thermal limitations of the MAX1842 are
exceeded, it will enter thermal shutdown to prevent
destructive failure.
Frequency Variation with Output Current
The operating frequency of the MAX1742/MAX1842 is
determined primarily by t
OFF
(set by R
TOFF
), V
IN
, and
V
OUT
as shown in the following formula:
f
PWM
= (V
IN
- V
OUT
- V
PMOS
) / [t
OFF
(V
IN
- V
PMOS
+
V
NMOS
)]
However, as the output current increases, the voltage
drop across the NMOS and PMOS switches increases
and the voltage across the inductor decreases. This
causes the frequency to drop. The change in frequency
can be approximated with the following formula:
f
PWM
= -I
OUT
x R
PMOS
/ (V
IN
x t
OFF
)
where R
PMOS
is the resistance of the internal MOSFETs
(90m
typ).
Circuit Layout and Grounding
Good layout is necessary to achieve the MAX1742/
MAX1842s
intended output power level, high efficiency,
and low noise. Good layout includes the use of a ground
plane, careful component placement, and correct rout-
ing of traces using appropriate trace widths. The follow-
ing points are in order of decreasing importance:
1) Minimize switched-current and high-current ground
loops. Connect the input capacitor
s ground, the out-
put capacitor
s ground, and PGND. Connect the
resulting island to GND at only one point.
2) Connect the input filter capacitor less than 5mm
away from IN. The connecting copper trace carries
large currents and must be at least 1mm wide,
preferably 2.5mm.
2.30
2.35
2.40
2.45
2.50
2.55
2.60
2.65
2.70
25
45
TEMPERATURE (
°
C)
35
55
65
75
85
MAX1842
MAXIMUM RECOMMENDED CONTINUOUS
OUTPUT CURRENT vs. TEMPERATURE
M
O
Figure 6. MAX1842 Maximum Recommended Continuous
Output Current vs.Temperature
2.2
2.3
2.5
2.4
2.6
2.7
0
40
20
60
80
100
MAXIMUM RECOMMENDED BURST CURRENT
vs. BURST CURRENT DUTY CYCLE
M
DUTY CYCLE (%)
B
T
A
= +55
°
C
T
A
= +85
°
C
I
OUT
IS A 100Hz SQUARE WAVE
FROM 1A TO THE BURST CURRENT
Figure 7. MAX1842 Maximum Recommended Burst Current vs.
Burst Current Duty Cycle
相關(guān)PDF資料
PDF描述
MAX1742EEE Replaced by TMS320C6410 :
MAX1843 2.7A, 1MHz, Low-Voltage, Step-Down Regulator with Internal Synchronous Rectification in QFN Package
MAX1843EGI 2.7A, 1MHz, Low-Voltage, Step-Down Regulator with Internal Synchronous Rectification in QFN Package
MAX1845 Dual, High-Efficiency, Step-Down Controller with Accurate Current Limit
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