1 series & parallel two-channel output, Figure 17. tapped buck parallel output model, Figure 18. flyback series output model – Cirrus Logic CS1631 User Manual

Page 17: Figure 19. buck series output model

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CS1630/31

DS954F3

17

The buck stage is controlled by measuring current in the buck
inductor and voltage on the auxiliary winding. Quasi-resonant
operation is achieved by detecting buck inductor
demagnetization using an auxiliary winding. The digital control
algorithm rejects line-frequency ripple created on the second
stage input by the front-end boost stage, resulting in the
highest possible LED efficiency and long LED life.
The tapped buck stage operates similar to a buck stage. The
tapped buck topology provides minimum turn-on time and
improves conversion efficiency when large input-to-output
voltage ratio is present. The tapped buck inductor behaves as
a transformer for voltage conversion and is controlled by
measuring current in the tapped inductor and voltage on the
auxiliary winding. Quasi-resonant operation is achieved by
detecting tapped inductor demagnetization using an auxiliary
winding.

5.8.1 Series & Parallel Two-Channel Output

The CS1630/31 is designed to be programmed to support
series or parallel two-channel output configurations using one
set of power magnetics. Series or parallel configuration is set
by bit STRING and bit LED_ARG in the Config3 register (see
"Configuration 3 (Config3) – Address 35" on page 32). A
parallel connection for a flyback stage and buck stage are
connected differently: an NMOS switch is used in flyback
configuration, and a PMOS switch is used in buck/tapped
buck configuration (see Figures 15, 16, and 17).

Similarly, a series connection in a flyback stage and buck
stage use an NMOS switch and a PMOS switch, respectively,
as shown in Figures 18 and 19.

R13

R11

R14

Q4

L3

CS1630 /31

FBAUX

GND

13

GD

FBSENSE

15

12

11

D8

V

B S T

R12

D9

C9

C11

C12

D11

R15 D10

Q5

R16
C10

Z3

IGND

LED2+

LED1+

LED1-

LED 2-

D

GND

_

Q

V CC

Figure 17. Tapped Buck Parallel Output Model

D7

R13

Z2

R11

R14

Q4

CS1630 /31

FBAUX

GND

13

GD

FBSENSE

15

12

11

T1

V

B S T

R12

D9

C9

D8

R15 D10

R16

C10

Z3

D

GND

_

Q

V CC

Q5

IGND

C12

LED 2+

LED2-

C11

LED 1+

LED 1-

D11

Figure 18. Flyback Series Output Model

R13

R11

R14

Q4

L3

CS1630 /31

FBAUX

GND

13

GD

FBSENSE

15

12

11

V

B S T

R12

D9

C9

R15

D10

R16
C10

Z3

D

GND

_
Q

V CC

Q5

IGND

D11

D8

C12

LED1+

LED1-

C11

LED2+

LED 2-

Figure 19. Buck Series Output Model

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