IR3502MTRPBF International Rectifier, IR3502MTRPBF Datasheet - Page 23

IC XPHASE3 CONTROLLER 32-MLPQ

IR3502MTRPBF

Manufacturer Part Number
IR3502MTRPBF
Description
IC XPHASE3 CONTROLLER 32-MLPQ
Manufacturer
International Rectifier
Series
XPhase3™r
Datasheet

Specifications of IR3502MTRPBF

Applications
Processor
Current - Supply
8mA
Voltage - Supply
8 V ~ 16 V
Operating Temperature
0°C ~ 100°C
Mounting Type
Surface Mount
Package / Case
32-MLPQ
Package
32-Lead MLPQ
Circuit
X-Phase Control IC
Switch Freq (khz)
250kHz to 1.5MHz
Pbf
PbF Option Available
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
IR3502MTRPBFTR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IR3502MTRPBF
Manufacturer:
QFN
Quantity:
20 000
VID Fault Codes
VID codes of 0000000X and 1111111X for VR11 will set the fault latch and disable the error amplifier. A 1.3us delay
is provided to prevent a fault condition from occurring during Dynamic VID changes. A VID FAULT condition is
latched for VR 11 with boot voltage and can only be cleared by cycling power to VCCL or re-issuing ENABLE.
Voltage Regulator Ready (VRRDY)
The VRRDY pin is an open-collector output and should be pulled up to a voltage source through a resistor. After the
soft start completion cycle, the VRRDY remains high until the output voltage is in regulation and SS/DEL is above
3.92V. The VRRDY pin becomes low if the fault latch, over voltage latch, open sense line latch, or open daisy chain
In the event of a high side MOSFET short before power up, the OVP flag is activated with as little supply voltage as
possible, as shown in Figure 14. The VOSEN+ pin is compared against a fixed voltage of 1.73V (typical) for OVP
conditions at power-up. The ROSC/OVP pin will be pulled higher than 1.6V with VCCLDRV voltage as low as 1.8V.
An external MOSFET or comparator should be used to disable the silver box, activate a crowbar, or turn off the supply
source. The 1.8V threshold is used to prevent false over-voltage triggering caused by pre-charging of output
capacitors.
Pre-charging of converter may trigger OVP. If the converter output is pre-charged above 1.73V as shown in Figure 15,
ROSC/OVP pin voltage will be higher than 1.6V when VCCLDRV voltage reaches 1.8V. ROSC/OVP pin voltage will
be VCCLDRV-1V and rise with VCCLDRV voltage until VCCL is above UVLO threshold, after which ROSC/OVP pin
voltage will be VCCL-1V. The converter cannot start unless the over voltage condition stops and VCCL is cycled. If
the converter output is pre-charged 130mV above VDAC but lower than 1.73V, as shown in Figure 16, the converter
will soft start until SS/DEL voltage is above 3.92V (4.0V-0.08V). Then, over voltage comparator is activated and fault
latch is set.
During dynamic VID down, OVP may be triggered when output voltage can not follow VDAC voltage change at light
load with large output capacitance. Therefore, over-voltage threshold is raised to 1.73V from VDAC+130mV
whenever dynamic VID is detected and the difference between output voltage and VDAC is more than 50mV, as
shown in Figure 19. The over-voltage threshold is changed back to VDAC+130mV if the difference is smaller than
50mV.
Page 23 of 39
OV
THRESHOLD
OUTPUT
VOLTAGE
(VO)
VID
(FAST
VDAC)
VDAC
NORMAL
OPERATION
Figure 17 Over-voltage protection during dynamic VID
VDAC
VID DOWN
50mV
LOW VID
50mV
VID UP
NORMAL
OPERATION
1.73V
VDAC + 130mV
July 28, 2009
IR3502

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