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DS8813D Datasheet, PDF (17/23 Pages) Richtek Technology Corporation – Multi-Phase PWM Controller with PWM-VID Reference
RT8813D
Power Good Output (PGOOD)
The PGOOD pin is an open drain output, and it requires a
pull-up resistor. During soft-start, the PGOOD is held low
and is allowed to be pulled high after VOUT achieved over
UVP threshold and under OVP threshold. In additional, if
any protection is triggered during operation, the PGOOD
will be pulled low immediately.
PWM VID and Dynamic Output Voltage Control
The RT8813D features a PWM VID input for dynamic output
voltage control as shown in Figure 9, which reduces the
number of device pin and enables a wide dynamic voltage
range. The output voltage is determined by the applied
voltage on the REFIN pin. The PWM duty cycle determines
the variable output voltage at REFIN.
PWM IN
VID
VREF
RREF1
RREFADJ REFADJ
CREFADJ
RBOOT
RGND
Buffer
RGND
REFIN
RSTANDBY
RREF2
CREFIN
Standby
Q1
Mode Control
RGND
RGND
RGND
Figure 9. PWM VID Analog Circuit Diagram
With the external circuit and VID control signal, the
controller provides three operation modes shown as Figure
10.
VREF
REFIN
PWM VID
BOOT
MODE
NORMAL
MODE
BOOT
MODE STANDBY
MODE
STANDBY
CONTROL
Figure 10. PWM VID Time Diagram
Boot Mode
VID is not driven, and the buffer output is tri-state. At this
time, turn off the switch Q1 and connect a resistor divider
as shown in Figure 9 that can set the REFIN voltage to be
VBOOT as the following equation :
VBOOT
=
VVREF


RREF1

RREF2
RREF2

RBOOT

Where VVREF = 2V (typ.)
Choose RREF2 to be approximately 10kΩ, and the RREF1
and RBOOT can be calculated by the following equations :
  RREF1  RBOOT
 RREF2 
VVREF  VBOOT
VBOOT
  RREF1  RREF2 
VVREF  VBOOT
VBOOT
 RBOOT
  RBOOT
 RREF2 
VVREF  VBOOT
VBOOT
 RREF1
Standby Mode
An external control can provide a very low voltage to meet
VOUT operating in standby mode. If the VID pin is floating
and switch Q1 is enabled as shown in Figure 9, the REFIN
pin can be set for standby voltage according to the
calculation below :
VSTANDBY = VVREF

RREF1

RREF2 // RSTANDBY
RBOOT  (RREF2 // RSTANDBY
)
By choosing RREF1, RREF2, and RBOOT, the RSTANDBY can
be calculated by the following equation :
RSTANDBY 
RREF2  RREF1  RBOOT   VSTANDBY
  RREF2  VREF  VSTANDBY  RREF1  RREF2  RBOOT
RREF1
Copyright ©2016 Richtek Technology Corporation. All rights reserved.
DS8813D-00 September 2016
is a registered trademark of Richtek Technology Corporation.
www.richtek.com
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