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MAX742C/D 查看數據表(PDF) - Maxim Integrated

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MAX742C/D Datasheet PDF : 12 Pages
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Switch-Mode Regulator with
+5V to ±12V or ±15V Dual Output
______________________________________________________________Pin Description
PIN
NAME
FUNCTION
1
FB+
Step-Up Feedback Input
2
CC+
Step-Up Compensation Capacitor
3
AGND
Analog Ground
4
AV+
Analog Supply Voltage Input (+5V)
5
100/200
Selects oscillator frequency. Ground for 200kHz, or tie to V+ for 100kHz.
6
12/15
Selects VOUT. Ground for ±15V, or tie to V+ for ±12V.
7
VREF
Reference Voltage Output (+2.00V). Force to GND or V+ to disable chip.
8
SS
Soft-Start Timing Capacitor (sources 5µA)
9
CC-
Inverting Compensation Capacitor
10
FB-
Inverting Section Feedback Input
11
CSL-
Current-Sense Low (inverting section)
12
CSH-
Current-Sense High (inverting section)
13
V+
Supply Voltage Input (+5V)
14
EXT-
Push-Pull Output—drives external P-channel MOSFET.
15
PDRV
Voltage Input—negative supply for P-channel MOSFET driver.
16
PUMP
Charge-Pump Driver—clock output at 1/2 oscillator frequency.
17
EXT+
Push-Pull Output—drives external logic-level N-channel MOSFET.
18
GND
High-Current Ground
19
CSL+
Current-Sense Low (step-up section)
20
CSH+
Current-Sense High (step-up section)
________________Operating Principle
Each current-mode controller consists of a summing
amplifier that adds three signals: the current waveform
from the power switch FET, an output-voltage error sig-
nal, and a ramp signal for AC compensation generated
by the oscillator. The output of the summing amplifier
resets a flip-flop, which in turn activates the power FET
driver stage (Figure 1).
Both external transistor switches are synchronized to
the oscillator and turn on simultaneously when the flip-
flop is set. The switches turn off individually when their
source currents reach a trip threshold determined by
the output-voltage error signal. This creates a duty-
cycle modulated pulse train at the oscillator frequency,
where the on time is proportional to both the output-
voltage error signal and the peak inductor current. Low
peak currents or high output-voltage error signals result
in a high duty cycle (up to 90% maximum).
AC stability is enhanced by the internal ramp signal
applied to the error amplifier. This scheme eliminates
regenerative “staircasing” of the inductor current, which
is otherwise a problem when in continuous current
mode with greater than 50% duty cycle.
6 _______________________________________________________________________________________

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