MAX1715EEI Maxim Integrated Products, MAX1715EEI Datasheet - Page 10

IC CTRLR DC DUAL STPDWN 28-QSOP

MAX1715EEI

Manufacturer Part Number
MAX1715EEI
Description
IC CTRLR DC DUAL STPDWN 28-QSOP
Manufacturer
Maxim Integrated Products
Type
Step-Down (Buck)r
Datasheet

Specifications of MAX1715EEI

Internal Switch(s)
No
Synchronous Rectifier
Yes
Number Of Outputs
2
Voltage - Output
1V, 1.8V, 2.5V, 3.3V, Adj
Current - Output
8A
Frequency - Switching
200kHz, 300kHz, 420kHz, 540kHz
Voltage - Input
2 ~ 28 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
28-QSOP
Power - Output
640mW
Output Voltage
1 V to 5.5 V, 3.3 V, 2.5 V
Output Current
8 A
Input Voltage
2 V to 28 V
Mounting Style
SMD/SMT
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Case
SSOP
Dc
05+
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Ultra-High Efficiency, Dual Step-Down
Controller for Notebook Computers
10
Figure 1. Standard Application Circuit
The standard application circuit (Figure 1) generates
two low-voltage rails for general-purpose use in note-
book computers (I/O supply, fixed CPU core supply,
DRAM supply). This DC-DC converter steps down a
battery or AC adapter voltage to voltages from 1.0V to
5.5V with high efficiency and accuracy.
See Table 1 for a list of components for common appli-
cations. Table 2 lists component manufacturers.
The MAX1715 buck controller is designed for low-volt-
age power supplies for notebook computers. Maxim’s
proprietary Quick-PWM pulse-width modulator in the
MAX1715 (Figure 2) is specifically designed for han-
dling fast load steps while maintaining a relatively con-
stant operating frequency and inductor operating point
______________________________________________________________________________________
V
BIAS SUPPLY
PINS 15, 23, 28 = N.C.
4.7μF
DD
C9
= 5V
Standard Application Circuit
1μF
C8
C11
1μF
C3
OUTPUT1
1.8V
Detailed Description
R1
20Ω
L1
C1
D1
0.22μF
N1
N2
C7
0.1μF
C5
20
21
12
25
26
27
24
3
5
1
9
2
8
V
V
ILIM1
ILIM2
ON1
BST1
DH1
LX1
DL1
TON
OUT1
REF
FB1
AGND
DD
CC
MAX1715
over a wide range of input voltages. The Quick-PWM
architecture circumvents the poor load-transient timing
problems of fixed-frequency current-mode PWMs while
also avoiding the problems caused by widely varying
switching frequencies in conventional constant-on-time
and constant-off-time PWM schemes.
The MAX1715 requires an external +5V bias supply in
addition to the battery. Typically, this +5V bias supply
is the notebook’s 95% efficient +5V system supply.
Keeping the bias supply external to the IC improves
efficiency and eliminates the cost associated with the
+5V linear regulator that would otherwise be needed to
supply the PWM circuit and gate drivers. If stand-alone
capability is needed, the +5V supply can be generated
with an external linear regulator such as the MAX1615.
V+
4
PGOOD
D3
CMPSH-3A
PGND
OUT2
BST2
SKIP
ON1
ON2
DH2
LX2
DL2
FB2
10
11
18
17
16
19
22
14
6
13
7
C6
0.1μF
+5V Bias Supply (V
+5V
100k
N3
N4
D2
V
4.5V TO 28V
C2
IN
L2
POWER-GOOD
INDICATOR
ON/OFF
CONTROLS
OUTPUT2
CC
C4
2.5V
and V
DD
)

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