Rainbow Electronics MAX5083 User Manual

Page 9

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MAX5082/MAX5083

1.5A, 40V, MAXPower Step-Down

DC-DC Converters

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9

Soft-Start and Reference (SS)

SS is the 1.23V reference bypass connection for the
MAX5082/MAX5083 and also controls the soft-start
period. At startup, after V

IN

is applied and the internal

and external UVLO thresholds are reached, the device
enters soft-start. During soft-start, 15µA is sourced into
the capacitor (C

SS

) connected from SS to SGND caus-

ing the reference voltage to ramp up slowly. When V

SS

reaches 1.23V the output becomes fully active. Set the
soft-start time (t

SS

) using the following equation:

where t

SS

is in seconds and C

SS

is in Farads.

Internal Charge Pump (MAX5082)

The MAX5082 features an internal charge pump to
enhance the turn-on of the internal MOSFET, allowing
for operation with input voltages down to 4.5V. Connect
a flying capacitor (C

F

) between C+ and C-, a boost

diode from C+ to BST, as well as a bootstrap capacitor
(C

BST

) between BST and LX to provide the gate-drive

voltage for the high-side n-channel DMOS switch.
During the on-time, the flying capacitor is charged to
V

DVREG

. During the off-time, the positive terminal of the

flying capacitor (C+) is pumped to two times V

DVREG

and charge is dumped onto C

BST

to provide twice the

regulator voltage across the high-side DMOS driver.
Use a ceramic capacitor of at least 0.1µF for C

BST

and

C

F

located as close to the device as possible.

For applications that do not require a 4.5V minimum
input, use the MAX5083. In this device, the charge

t

V

C

A

SS

SS

=

×

1 23

15

.

µ

MAX5083

1.23V

1.23V

ON/OFF

LDO

EN

IN

REG

SS

FB

THERMAL

SHDN

REF

IN

0.3V

CLK

ILIM

1.23V

REGOK

EN

V

REF

V

REF

I

SS

>1.23V ON

<1.11V OFF

COMP

SYNC

E/A

SSA

CPWM

RAMP

LOGIC

EN

OSC

BOOTSTRAP

CONTROL

PCLK

BST

IN

SGND

LX

DVREG

PGND

SCLK

HIGH-SIDE

CURRENT

SENSE

REF_PFM

PFM

REF_ILIM

ILIM

OVERL

CLK

ILIM

OVERLOAD

MANAGEMENT

Figure 2. MAX5083 Simplified Block Diagram

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