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LTM4686BEVPBF 数据表(PDF) 53 Page - Analog Devices

部件名 LTM4686BEVPBF
功能描述  Ultrathin Dual 14A or Single 28A 關Module Regulator with Digital Power System Management
PDF  130 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

LTM4686BEVPBF 数据表(HTML) 53 Page - Analog Devices

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LTM4686B
53
Rev. 0
For more information www.analog.com
APPLICATIONS INFORMATION
If the TON_MAX_FAULT_LIMITn is set to a value greater
than 0 and the TON_MAX_FAULT_RESPONSEn is set to
ignore (0x00), the servo begins:
1. After the TON_RISEn sequence is complete
2. After the TON_MAX_FAULT_LIMITn time is reached;
and
3. After the VOUT_UV_FAULT_LIMITn has been exceed
or the IOUT_OC_FAULT_LIMITn is no longer active.
If the TON_MAX_FAULT_LIMITn is set to a value greater
than 0 and the TON_MAX_FAULT_RESPONSEn is not set
to ignore (0X00), the servo begins:
1. After the TON_RISEn sequence is complete;
2. After the TON_MAX_FAULT_LIMITn time has expired
and both VOUT_UV_FAULTn and IOUT_OC_FAULTn
are not present.
The maximum rise time is limited to 1.3 seconds.
In a PolyPhase configuration it is recommended only one
of the control loops have the digital servo mode enabled.
This will assure the various loops do not work against each
other due to slight differences in the reference circuits.
SOFT OFF (SEQUENCED OFF)
In addition to a controlled start-up, the LTM4686B also
supports controlled turn-off. The TOFF_DELAYn and TOFF_
FALLn functions are shown in Figure 3. TOFF_FALLn is
processed when the RUNn pin goes low or if the module is
commanded off. If the module faults off or GPIOn is pulled
low externally and the module is programmed to respond
to this (MFR_GPIO_RESPONSEn = 0xC0), the output three-
states (becomes high impedance) rather than exhibiting a
controlled ramp. The output then decays as a function of
the load.
The output voltage operates as shown in Figure 3 so
long as the part is in forced continuous mode and the
TOFF_FALLn time is sufficiently slow that the power stage
can achieve the desired slope. The TOFF_FALLn time can
only be met if the power stage and controller can sink
sufficient current to assure the output is at zero volts
by the end of the fall time interval. If the TOFF_FALLn
time is set shorter than the time required to discharge
the load capacitance, the output will not reach the desired
zero volt state. At the end of TOFF_FALLn, the controller
ceases to sink current and VOUTn decays at the natural rate
determined by the load impedance. If the controller is in
discontinuous mode, the controller does not pull negative
current and the output becomes pulled low by the load,
not the power stage. The maximum fail time is limited to
1.3 seconds. The number of steps in the ramp is equal to
TOFF_FALL/0.1ms.Therefore, the shorter the TOFF_FALLn
setting, the more jagged the TOFF_FALLn ramp appears.
TOFF_FALLn
TOFF_DELAYn
TIME
4686B F03
VOUTn
RUNn
Figure 3. TOFF_DELAYn and TOFF_FALLn
UNDERVOLTAGE LOCKOUT
The LTM4686B is initialized by an internal threshold-
based UVLO where SVIN must be approximately 4V and
INTVCC, VDD33, VDD25 must be within approximately
20% of the regulated values. In addition, VDD33 must
be within approximately 7% of the targeted value before
the LTM4686B releases its RUNn pins. After the part has
initialized, an additional comparator monitors SVIN. The
VIN_ON threshold must be exceeded before the power
sequencing can begin. When SVIN drops below the VIN_
OFF threshold, the LTM4686B ceases PWM action and
SVIN must increase above the VIN_ON threshold before
the controller will restart. The normal start-up sequence
will be allowed after the VIN_ON threshold is crossed.
It is possible to program the contents of the NVM in the
application if the VDD33 supply is externally driven. This
activates the digital portion of the LTM4686B without
engaging the high voltage sections. PMBus communica-
tions are valid in this supply configuration. If SVIN has not
been applied to the LTM4686B, MFR_COMMON[3] will



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