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LT8686SJVPBF 数据表(PDF) 11 Page - Analog Devices

部件名 LT8686SJVPBF
功能描述  42V Quad, Gangable, Synchronous, Monolithic Step-Down Regulator
PDF  26 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

LT8686SJVPBF 数据表(HTML) 11 Page - Analog Devices

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LT8686S
11
Rev. 0
For more information www.analog.com
PIN FUNCTIONS
this pin to INTVCC to enable pulse-skipping mode with
spread-spectrum modulation. When this pin is driven by
an external clock source, the LT8686S will synchronize its
switching frequency to that of the external clock and oper-
ate in pulse-skipping mode. Channels 1–4 clock phases
default to 0°, 180°, 270°, and 90°, respectively when
operating independently. When combining channels, the
master channel determines the operating phase. See the
Applications Information section for more detail.
RT (Pin 13): Switching Frequency Program Pin. Connect
an external resistor from this pin to ground to program
the LT8686S switching frequency from 350kHz to 3MHz.
When using external clock synchronization, an RT resistor
must be selected to match the nominal incoming clock
frequency. See the Applications Information section for
more detail.
VIN3 (Pin 15): Channel 3 Power Supply Input. When driven
from another LT8686S channel, the required decoupling
capacitance for this pin is largely satisfied by the output
capacitance of the driving channel. In this scenario, a low
ESR capacitor of value 1μF or greater located close to the
VIN3 pin is generally sufficient. If driven from an external
source, this pin should be closely decoupled with a low
ESR capacitor of value 4.7μF or greater.
VIN4 (Pin 16): Channel 4 Power Supply Input. When driven
from another LT8686S channel, the required decoupling
capacitance for this pin is largely satisfied by the output
capacitance of the driving channel. In this scenario, a low
ESR capacitor of value 1μF or greater located close to the
VIN4 pin is generally sufficient. If driven from an external
source, this pin should be closely decoupled with a low
ESR capacitor of value 4.7μF or greater.
FB3 (Pin 17): Channel 3 Output Voltage Feedback Pin.
Channel 3 regulates this pin to a precision, internal,
0.8V reference voltage. Connect this pin to the appro-
priate resistor divider network to program the desired
output voltage.
FB4 (Pin 19): Channel 4 Output Voltage Feedback Pin.
Channel 4 regulates this pin to a precision, internal, 0.8V
reference voltage. Connect this pin to the appropriate
resistor divider network to program the desired output
voltage. When this pin is tied to INTVCC, channel 4 is com-
bined with channel 3 to create a single output channel with
increased output current capability. See the Applications
Information section for more detail.
INTVCC (Pin 28): Internal Regulator Output Pin. This reg-
ulator provides the supply current for the power MOSFET
driver circuits and internal control circuitry. This pin
should be decoupled to ground with a low ESR ceramic
capacitor of value 4.7μF. This capacitor should be placed
close to the INTVCC pin with a low impedance connection
to the exposed pad ground. This supply is not intended as
a power supply output. Do not connect external circuitry
to this pin.
BIAS (Pin 29): External Regulator Input Pin. The inter-
nal regulator, INTVCC, will draw current from this supply
instead of VIN1 when BIAS is tied to a voltage higher than
4.5V and VVIN1 is greater than VBIAS + 1V. Connecting
this pin to a high efficiency supply, such as an LT8686S
output channel regulating to 5V, improves overall effi-
ciency by reducing the on-chip power consumption that
would normally result when drawing current from VIN1.
When used, this pin should be decoupled to ground with
a low ESR ceramic capacitor of value 0.1μF or greater.
When driven by another LT8686S channel, the required
decoupling capacitance may be satisfied with the output
capacitance of the driving channel. When not used, tie
this pin to ground.
GND (Exposed Pad Pins 33–36): Ground Pins. These pins
must be soldered to the PCB to provide low impedance
electrical contact to ground and good thermal contact
to the PCB. See the Applications Information section for
more detail.
CORNER PINS: These pins are for mechanical support only
and can be tied anywhere on the PCB, typically ground.



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