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By v, Volts. this connects c, If the voltage across c – Rainbow Electronics MAX1885 User Manual

Page 21: Plus a diode drop (v, Charge flows from c, Until the diode (d3) turns off

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MAX1778/MAX1880–MAX1885

Quad-Output TFT LCD DC-DC

Converters with Buffer

______________________________________________________________________________________

21

The switching waveforms will appear noisy and asyn-
chronous when light loading causes pulse-skipping
operation; this is a normal operating condition that
improves light-load efficiency.

Dual Charge-Pump Regulator (MAX1778/

MAX1880/MAX1881/MAX1882 Only)

The MAX1778/MAX1880/MAX1881/MAX1882 con-
trollers contain two independent low-power charge
pumps (Figure 4). One charge pump inverts the input
voltage and provides a regulated negative output volt-
age. The second charge pump doubles the input volt-
age and provides a regulated positive output voltage.
The controllers contain internal P-channel and N-chan-
nel MOSFETs to control the power transfer. The
internal MOSFETs switch at a constant frequency
(fCHP = fOSC/2).

Positive Charge Pump

During the first half-cycle, the N-channel MOSFET turns
on and charges flying capacitor C

X(POS)

(Figure 4).

This initial charge is controlled by the variable N-chan-
nel on-resistance. During the second half-cycle, the N-
channel MOSFET turns off and the P-channel MOSFET
turns on, level shifting C

X(POS)

by V

SUPP

volts. This

connects C

X(POS)

in parallel with the reservoir capaci-

tor C

OUT(POS)

. If the voltage across C

OUT(POS)

plus a

diode drop (V

POS

+ V

DIODE

) is smaller than the level-

shifted flying capacitor voltage (V

CX(POS)

+ V

SUPP

),

charge flows from C

X(POS)

to C

OUT(POS)

until the diode

(D3) turns off.

INDUCTOR CURRENT

I

LOAD

t

ON

t

OFF

TIME

I

PEAK

Figure 3. Discontinuous-to-Continuous Conduction Crossover
Point

MAX1778
MAX1880
MAX1881
MAX1882

V

NEG

= -

V

REF

V

REF

= 1.25V

( )

R5

R6

R5

R6

C

OUT(NEG)

C

X(NEG)

V

SUPN

2.7V TO 13V

OSC

REF

PGND

GND

SUPN

DRVN

FBN

SUPP

DRVP

FBP

D4

D5

V

POS

= 1 +

V

REF

V

REF

= 1.25V

R3

R4

( )

V

SUPP

2.7V TO 13V

V

SUPD

D2

D3

C

REF

0.22

µF

V

REF

1.25V

R4

C

X(POS)

C

OUT(POS)

V

POS

V

NEG

R3

Figure 4. Low-Power Charge Pump Block Diagram