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LT7184SRVPBF Arkusz danych(PDF) 31 Page - Analog Devices

Numer części LT7184SRVPBF
Szczegółowy opis  Dual Channel 9A, 16V PolyPhase Step-Down Silent Switcher 2 with Digital Power System Management
PDF  52 Pages
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Data Sheet
LT7184S
analog.com
Rev. 0
31 of 52
6
The SYNC pin is a clock output when the MFR_SYNC_CONFIG_LT7184S Bit 0 is set to 1.
7
The NVM default for MFR_PWM_MODE_LT7184S bits [13:11] is 0b001, which corresponds to gMEA = 1250μs for high-
performance low-VOUT mode and gMEA = 310μs for standard mode, regardless of internal or external compensation.
8
The PWM_CFG resistor selection is performed with a table lookup function within the device on power-up. Use
only 1% resistors for the PWM_CFG resistor selection as shown in Table 9, or program the devices using the PMBus
commands and NVM.
PolyPhase Load Sharing
Multiple LT7184S channels can be connected in parallel to provide a balanced PolyPhase load-share solution. The
analog current mode control architecture of the LT7184S ensures that load-sharing remains balanced among the
PolyPhase channels.
The corresponding ITHN, FAULTN, PVIN, VSENSENP, and VSENSENN pins must be connected among all PolyPhase channels,
and the SYNC and SHARE_CLK pins must be connected among all PolyPhase devices. The PWM switching phases
should be separated by 360°/n degrees, where n is the number of phases in the PolyPhase array. In PolyPhase, exactly
one device, either an LT7184S or an external clock source, must be configured to drive a clock on the common SYNC
node.
In a PolyPhase array, exactly one LT7184S channel must be configured as a leader (MFR_CHAN_CONFIG_LT7184S
Bit 8 set to 0), and all other PolyPhase channels must be configured as followers (Bit 8 set to 1).
The PolyPhase mode can be selected by connecting a 5.6kΩ ±10% resistor from PWM_CFG to GND if
MFR_CONFIG_ALL_LT7184S Bit 6 is not set to ignore CFG pins. Resistor configuration options are available to support
2, 3, 4, or 6-phase PolyPhase solutions. When a 5.6kΩ resistor is connected on PWM_CFG, VOUT_COMMAND for
Channel 1 is set to the same value as Channel 0 based on the VOUT0_CFG resistor, and the VOUT1_CFG resistor selects the
PolyPhase configuration as shown in Table 10. For 2, 4, or 6-phase operation, the PWM_CFG pins of up to three
LT7184S devices may be connected to a single 5.6k resistor. Figure 34 illustrates two LT7184S devices configured for
4-phase operation. Separate PWM_CFG configuration resistors are required, as shown in Typical Applications, for
PolyPhase arrays with 8 phases. PMBus programming is required for at least some of the devices in arrays with more
than 6 phases: to set PolyPhase follower mode (MFR_CHAN_CONFIG_LT7184S Bit 8) and select the appropriate phase
(MFR_PWM_PHASE_LT7814S) for every Channel in a large PolyPhase array.
Figure 34.4-Phase PolyPhase 1.2V/36A Regulator
BOOST0
LT7184S
PWM_CFG
VOUT1_CFG
PHASE 0° AND 180°
PVIN0
PVIN1
SHARE_CLK
FAULT0
ITH0
FAULT1
ITH1
VSENSE0P
VSENSE1P
VSENSE0N
VSENSE1N
VOUT0_CFG
1.2kΩ
80.6kΩ
5.6kΩ
SW1
SW0
(SELECTS
POLYPHASE)
(SELECTS
1MHz,
0° TO 180°,
LEADER/FOLLOWER,
SYNC OUTPUT)
LT7184S
PWM_CFG
VOUT1_CFG
PHASE 90° AND 270°
PVIN0
PVIN1
SHARE_CLK
FAULT0
ITH0
FAULT1
ITH1
VSENSE0P
VSENSE1P
VSENSE0N
VSENSE1N
VOUT0_CFG
SW1
SW0
51.1kΩ
60.4kΩ
(SELECTS
VOUT = 1.2V)
(SELECTS
1MHz,
90° TO 270°
FOLLOWER/FOLLOWER,
SYNC INPUT)
6.8kΩ
51.1kΩ
PVIN
4.5V TO 15V
VOUT
(1.2V, 36A)
6.8kΩ
4.7nF
RUN0
RUN1
SYNC (OUTPUT)
SYNC (INPUT)
SGND
SGND
2.4mF
DRVCC
INTVCC
INTVCC
BOOST1
BOOST1
BOOST0
10µF
10µF
10µF
RUN0
RUN1
DRVCC
VDD18
4.7µF
VDD18
4.7µF
100nF
100nF
100nF
100nF
330nH
330nH
330nH
330nH
10µF
10µF
10µF
ASEL
WP
ASEL
WP
PGOOD0
PGOOD1
PGOOD0
PGOOD1
10µF
10µF
(SELECTS
VOUT = 1.2V)
LOAD



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