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RT6310C/CH 数据表(PDF) 5 Page - Richtek Technology Corporation

部件名 RT6310C/CH
功能描述  10A, 23V Synchronous Step-Down Converter with 3.3V/5V LDO
PDF  54 Pages
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制造商  RICHTEK [Richtek Technology Corporation]
网页  http://www.richtek.com
标志 RICHTEK - Richtek Technology Corporation

RT6310C/CH 数据表(HTML) 5 Page - Richtek Technology Corporation

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RT6310
Copyright © 2023 Richtek Technology Corporation. All rights reserved.
is a registered trademark of Richtek Technology Corporation.
DS6310-04
August 2023
www.richtek.com
5
Pin No.
Pin Name
Pin Function
21
FB
(RT6310A/AH)
(RT6310D/DH)
Feedback voltage input. A resistor divider from VOUT to FB sets the desired VOUT
level. VOUT is regulated by FB tracking internal reference voltage 0.6V. Further, FB
is used to detect output voltage status for OVP, UVP or PGOOD. If FB voltage is
below 60% of internal reference 0.6V, the UVP is triggered. If FB voltage is greater
than 120% of internal reference 0.6V, the OVP is triggered. After soft-start is
completed, if FB voltage is greater than 90% of internal reference 0.6V, PGOOD is
pulled high. Conversely, if FB voltage is below 74% of internal reference 0.6V,
PGOOD is pulled low.
VCC_EXT
(RT6310B/BH)
External voltage input for VCC. If an external 5V supply voltage is applied to
VCC_EXT pin, VCC will be internally switchover to VCC_EXT pin and the internal
LDO of VCC will be disabled for further reducing the power consumption. Notice,
in order to avoid any noise disturbance including switching noise, an external 5V
supply voltage must be stable and constant. Hence, a RC filter (R = 1.1
/0603 and
C = 4.7
F/0603) is required between an external 5V supply voltage and the
VCC_EXT pin. It should be placed as close as possible to the VCC_EXT pin. Leave
the VCC_EXT pin floating if this pin is not used.
FF
(RT6310C/CH)
Output feedforward pin. FF pin is connected between internal divider resistors. A
proper feedforward capacitor connecting from VOUT pin to FF pin can enhance the
transient performance. Furthermore, FF pin is used to detect output voltage status
for OVP, UVP or PGOOD. If FF voltage is below 60% of internal reference 1.7V,
the UVP is triggered. If FF voltage is greater than 120% of internal reference 1.7V,
the OVP is triggered. After soft-start is completed, if FF voltage is greater than 90%
of internal reference 1.7V, PGOOD is pulled high. Conversely, if FF voltage is below
77% of internal reference 1.7V, PGOOD is pulled low.
22
VCC_EXT
(RT6310A/AH)
(RT6310D/DH)
External voltage input for VCC. If an external 5V supply voltage is applied to
VCC_EXT pin, VCC will be internally switchover to VCC_EXT pin and the internal
LDO of VCC will be disabled for further reducing the power consumption. Notice,
in order to avoid any noise disturbance including switching noise, an external 5V
supply voltage must be stable and constant. Hence, a RC filter (R = 1.1
/0603 and
C = 4.7
F/0603) is required between an external 5V supply voltage and the
VCC_EXT pin. It should be placed as close as possible to the VCC_EXT pin. Leave
the VCC_EXT pin floating if this pin is not used.
VOUT
(RT6310B/BH)
Output voltage sense pin. Connect to the output of buck converter. LDO3 (3.3V)
will be internally switchover to VOUT pin when the LDO bypass switch is turned on.
Furthermore, VOUT pin is used to detect output voltage status for OVP, UVP or
PGOOD. If output voltage is below 60% of fixed output voltage 3.3V, the UVP is
triggered. If output voltage is greater than 120% of fixed output voltage 3.3V, the
OVP is triggered. After soft-start is completed, if output voltage is greater than 90%
of fixed output voltage 3.3V, PGOOD is pulled high. Conversely, if output voltage is
below 77% of fixed output voltage 3.3V, PGOOD is pulled low.
VOUT
(RT6310C/CH)
Output voltage sense pin. Connect to the output of buck converter. LDO5 (5V) and
VCC will be internally switchover to VOUT pin when the VCC and LDO bypass
switches are turned on.



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