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TPS51200MDRCTEP Datasheet(PDF) 11 Page - Texas Instruments

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No. de pieza TPS51200MDRCTEP
Descripción Electrónicos  Sink and Source DDR Termination Regulator
Download  35 Pages
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Fabricante Electrónico  TI1 [Texas Instruments]
Página de inicio  http://www.ti.com
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TPS51200MDRCTEP Datasheet(HTML) 11 Page - Texas Instruments

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TPS51200-EP
www.ti.com
SLUSA48 – JUNE 2016
Product Folder Links: TPS51200-EP
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Copyright © 2016, Texas Instruments Incorporated
Feature Description (continued)
7.3.3 Reference Output (REFOUT Pin)
When it is configured for DDR termination applications, REFOUT generates the DDR VTT reference voltage for
the memory application. It is capable of supporting both a sourcing and sinking load of 10 mA. REFOUT
becomes active when REFIN voltage rises to 0.39 V and VIN is above the UVLO threshold. When REFOUT is
less than 0.375 V, it is disabled and subsequently discharges to GND through an internal 10-k
Ω MOSFET.
REFOUT is independent of the EN pin state.
7.3.4 Soft-Start Sequencing
A current clamp implements the soft-start function of the VO pin. The current clamp allows the output capacitors
to be charged with low and constant current, providing a linear ramp-up of the output voltage. When VO is
outside of the powergood (PGOOD) window, the current clamp level is one-half of the full overcurrent limit (OCL)
level. When VO rises or falls within the PGOOD window, the current clamp level switches to the full OCL level.
The soft-start function is completely symmetrical and the overcurrent limit works for both directions. The soft-start
function works not only from GND to the REFOUT voltage, but also from VLDOIN to the REFOUT voltage.
7.3.5 Enable Control (EN Pin)
When EN is driven high, the VO regulator begins normal operation. When the device drives EN low, VO
discharges to GND through an internal 18-
Ω MOSFET. REFOUT remains on when the device drives EN low.
Ensure that the EN pin voltage remains lower than or equal to VVIN at all times.
7.3.6 Powergood Function (PGOOD Pin)
The TPS51200-EP device provides an open-drain PGOOD output that goes high when the VO output is within
±20% of REFOUT. PGOOD de-asserts within 10 μs after the output exceeds the size of the PGOOD window.
During initial VO start-up, PGOOD asserts high 2 ms (typ) after the VO enters PGOOD window. Because
PGOOD is an open-drain output, a pull-up resistor with a value between 1 k
Ω and 100 kΩ, placed between
PGOOD and a stable active supply voltage rail, is required.
7.3.7
Current Protection (VO Pin)
The LDO has a constant overcurrent limit (OCL). The OCL level reduces by one-half when the output voltage is
not within the PGOOD window. This reduction is a non-latch protection.
7.3.8 UVLO Protection (VIN Pin)
For VIN undervoltage lockout (UVLO) protection, the TPS51200-EP monitors VIN voltage. When the VIN voltage
is lower than the UVLO threshold voltage, both the VO and REFOUT regulators are powered off. This shutdown
is a non-latch protection.
7.3.9 Thermal Shutdown
The TPS51200-EP monitors junction temperature. If the device junction temperature exceeds the threshold
value, (typically 150°C), the VO and REFOUT regulators both shut off, discharged by the internal discharge
MOSFETs. This shutdown is a non-latch protection.
7.3.10 Tracking Start-up and Shutdown
The TPS51200-EP also supports tracking start-up and shutdown when the EN pin is tied directly to the system
bus and not used to turn on or turn off the device. During tracking start-up, VO follows REFOUT once REFIN
voltage is greater than 0.39 V. REFIN follows the rise of VDDQ rail through a voltage divider. The typical soft-
start time (tSS) for the VDDQ rail is approximately 3 ms, however it may vary depending on the system
configuration. The soft-start time of the VO output no longer depends on the OCL setting, but it is a function of
the soft-start time of the VDDQ rail. PGOOD is asserted 2 ms after VVO is within ±20% of REFOUT. During
tracking shutdown, the VO pin voltage falls following REFOUT until REFOUT reaches 0.37 V. When REFOUT
falls below 0.37 V, the internal discharge MOSFETs turn on and quickly discharge both REFOUT and VO to
GND. PGOOD is deasserted once VO is beyond the ±20% range of REFOUT. Figure 18 shows the typical timing
diagram for an application that uses tracking start-up and shutdown.


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