MAX1586CETM+ Maxim Integrated Products, MAX1586CETM+ Datasheet - Page 9

IC POWER MANAGEMENT 48-TQFN

MAX1586CETM+

Manufacturer Part Number
MAX1586CETM+
Description
IC POWER MANAGEMENT 48-TQFN
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX1586CETM+

Applications
Handheld/Mobile Devices
Voltage - Supply
2.6 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
48-TQFN Exposed Pad
Output Voltage Range
0.7 V to 5.5 V
Output Current
1.2 A
Input Voltage Range
2.6 V to 5.5 V
Input Current
60 uA
Power Dissipation
2105 mW
Operating Temperature Range
- 40 C to + 85 C
Mounting Style
SMD/SMT
Input Voltage
5.5V
No. Of Outputs
1
Power Dissipation Pd
2.105W
Supply Voltage Range
2.6V To 5.5V
No. Of Pins
48
Filter Terminals
SMD
Rohs Compliant
Yes
Frequency
1MHz
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Supply
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
ELECTRICAL CHARACTERISTICS (continued)
Note 1: Dropout voltage is guaranteed by the p-channel switch resistance and assumes a maximum inductor resistance of 45mΩ.
Note 2: The PWM-skip-mode transition has approximately 10mA of hysteresis.
Note 3: The maximum output current is guaranteed by the following equation:
Note 4: POK only indicates the status of supplies that are enabled (except V7). When a supply is turned off, POK does not trigger
Note 5: Specifications to -40°C are guaranteed by design, not production tested.
where:
and
low. When a supply is turned on, POK immediately goes low until that supply reaches regulation. POK is forced low when all
supplies (except V7) are disabled.
Dynamic Core for PDAs and Smart Phones
R
R
R
I
f = operating frequency minimum
L = external inductor value
I
small relative to the absolute value.
OUT(MAX)
LIM
N
P
L
= p-channel power switch R
= external inductor ESR
_______________________________________________________________________________________
= n-channel synchronous rectifier R
can be substituted for I
= maximum required load current
High-Efficiency, Low-I
I
OUT MAX
D
OUT(MAX)
=
(
DS(ON)
V
V
OUT
IN
)
(desired) when solving for D. This assumes that the inductor ripple current is
+
=
+
DS(ON)
I
1
OUT MAX
I
OUT MAX
+
I
LIM
(
(
(
R
N
)
)
(
+
R
(
V
R
N
R
OUT
2
N
L
)
+
x f x L
R
2 2 x f x L
R
P
(
1
(
L
)
1
)
D
D
)
)
Q
PMICs with
9

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