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MAX1809 데이터 시트보기 (PDF) - Maxim Integrated

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MAX1809 Datasheet PDF : 17 Pages
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3A, 1MHz, DDR Memory Termination Supply
where C = 2.5nF and fSW is the switching frequency.
Resistive losses in the two power switches are approxi-
mated by:
PD(RES) = IOUT2 RPMOS
where RPMOS is the on-resistance of the PMOS switch.
The junction-to-ambient thermal resistance required to
dissipate this amount of power is calculated by:
θJA = (TJ,MAX - TA,MAX) / (PD(CAP) + PD(RES))
where:
θJA = junction-to-ambient thermal resistance
TJ,MAX = maximum junction temperature
TA,MAX = maximum ambient temperature
Design Procedure
For typical applications, use the recommended compo-
nent values in Figure 1. For other applications, take the
following steps:
1) Select the desired PWM-mode switching frequency.
See Figure 4 for maximum operating frequency.
2) Select the constant off-time as a function of input
voltage, output voltage, and switching frequency.
3) Select RTOFF as a function of off-time.
4) Select the inductor as a function of output voltage,
off-time, and peak-to-peak inductor current.
Setting the Output Voltage
The output voltage of the MAX1809 is set by an external
voltage applied to the EXTREF pin. This can come directly
from another voltage source or external reference.
As an active termination supply in DDR applications
(see Active Bus Termination in the Applications
Information section), the output of the MAX1809 is reg-
ulated at half the DDR supply voltage. In mobile sys-
tems, the DDR supply voltage is 2.5V, and the
termination voltage is 1.25V ±40mV. To regulate to
1.25V, an external divide-by-2 resistor network is
placed across the DDR supply voltage to generate
1.25V. This 1.25V is connected to EXTREF, which sets
the output voltage of the MAX1809. When FB is directly
tied to the output (Figure 5), the output voltage range is
limited by the external references input voltage limits
(see EC table). External reference may not be set within
1.7V of the minimum supply voltage. VEXTREF should
be limited to less than 1.4V for 3.3V input voltage.
Failure to comply can cause the part to operate abnor-
mally and may cause part damage.
Alternatively, the output can be adjusted up to VIN by
connecting FB to a resistor-divider between the output
voltage and ground (Figure 6). Use 50kfor R1. R2 is
given by:
R2
=
R1

VOUT
VEXTREF
1
VIN
VCC
2.2µF
EXTREF
SHDN
REF
1µF
0.01µF
SS
MAX1809
CURRENT
SENSE
PWM LOGIC
AND
DRIVERS
REF
GND
TIMER
RTOFF
PGND
FB
VIN
IN
(3.0V TO 5.5V)
CIN
CERAMIC
L
LX
COUT
Figure 2. Functional Diagram
8 _______________________________________________________________________________________

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