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RT3606BC 데이터시트(PDF) 39 Page - Richtek Technology Corporation

부품명 RT3606BC
상세설명  Dual Channel PWM Controller
PDF  72 Pages
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제조업체  RICHTEK [Richtek Technology Corporation]
홈페이지  http://www.richtek.com
Logo RICHTEK - Richtek Technology Corporation

RT3606BC 데이터시트(HTML) 39 Page - Richtek Technology Corporation

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RT3606BC
DS3606BC-04 June 2016
www.richtek.com
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Copyright 2016 Richtek Technology Corporation. All rights reserved.
is a registered trademark of Richtek Technology Corporation.
Dynamic VID (DVID) Compensation
When VID transition event occurs, a charger current will be generated in the loop to cause DVID performance. However,
the DVID performance will be deteriorated by this induced charger current, this phenomenon is called droop effect. The
droop effect is shown in Figure 18, when VID up transition occurs, the output capacitor will be charged by inductor
current. Since current signal is sensed in inductor, an induced charge current will appear in control loop. The induced
charge current will produce a voltage drop in R1 to cause output voltage to have a droop effect. Due to this, VID transition
performance will be deteriorated.
VIN
Gate
Driver
Q1
Q2
L
RESR
CO2
CPU
C2
Charge current
Induced charge
current signal
CO1
Ai
R1
R2
C1
+
-
EA
+
-
COMP
CCRCOT
tON
VID Transition
IDROOP
VID
Output voltage
VIN
VID
Figure 18. Droop Effect in VID transition
RT3606BC provide a DVID compensation function. A virtual charge current signal can be established by the SET1/SET2
pins to cancel the real induced charge current signal and the virtual charge current signal is defined in Figure 19. Figure
20 shows the operation of canceling droop effect. A virtual charge current signal is established first and then VID signal
plus virtual charge current signal to be generated on the FB pin. Hence, an induced charge current signal flows to R1
and is cancelled to reduce droop effect.
Figure 19. Definition of Virtual Charge Current Signal
DVID_Threshold
(SET1)
DVID_Width
(SET2)



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