IR3832WMTR1PBF International Rectifier, IR3832WMTR1PBF Datasheet

IC REG SYNC BUCK 4A DDR 15-QFN

IR3832WMTR1PBF

Manufacturer Part Number
IR3832WMTR1PBF
Description
IC REG SYNC BUCK 4A DDR 15-QFN
Manufacturer
International Rectifier
Series
SupIRBuck™r
Datasheet

Specifications of IR3832WMTR1PBF

Applications
Converter, DDR
Voltage - Input
1.5 ~ 16 V
Number Of Outputs
1
Voltage - Output
0.6 ~ 14.4 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
15-PowerVQFN
Part Status
Preferred
Package
PQFN / 5 x 6
Circuit
Single Output
Iout (a)
4
Switch Freq (khz)
250 - 1500
Input Range (v)
1.5 - 16
Output Range (v)
0.7 - 0.9*Vin
Ocp Otp Uvlo Pre-bias Soft Start And
PGOOD + EN + OVD + DDR Tracking
Server Storage
Yes
Routers Switches
Yes
Base Station Telecom
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
IR3832WMTR1PBFTR
SYNCHRONOUS BUCK REGULATOR FOR DDR APPLICATIONS
SupIRBuck
Features
Applications
Rev 4.0
Wide Input Voltage Range 1.0V to 16V
Wide Output Voltage Range 0.6V to 0.9*Vin
Continuous 4A Load Capability
Integrated Bootstrap-diode
High Bandwidth E/A for excellent transient
performance
Programmable Switching Frequency up to 1.5 MHz
Programmable Over Current Protection
PGood output
Hiccup Current Limit
Programmable Soft-Start
Enable Input with Voltage Monitoring Capability
Enhanced Pre-Bias Start-up
Vp input for DDR Tracking applications
-40
Thermal Protection
5mm x 6mm Power QFN Package, 0.9 mm height
Halogen Free, Lead Free and RoHS Compliant
Server Applications
Storage Applications
Embedded Telecom Systems
o
C to 125
VDDQ
1.0V <Vin<16V
4.5V <Vcc<5.5V
PGood
o
C operating junction temperature
TM
Vcc
Vp
Rt
SS/ SD
PGood
Fig. 1. Typical application diagram
Enable
Gnd
HIGHLY EFFICIENT INTEGRATED
Vin
PGnd
OCSet
Comp
Description
The IR3832W SupIRBuck
fully
regulator. The MOSFETS co-packaged with the
on-chip PWM controller make IR3832W a space-
efficient
delivery for DDR memory applications.
IR3832W is configured to generate termination
voltage (VTT) for DDR memory applications.
IR3832W offers programmability of start up time,
switching frequency and current limit while
operating in wide input and output voltage range.
The switching frequency is programmable from
250kHz to 1.5MHz for an optimum solution.
It also features important protection functions,
such as Pre-Bias startup, hiccup current limit and
thermal shutdown to give required system level
security in the event of fault conditions.
Boot
SW
Fb
Distributed Point of Load Power Architectures
Netcom Applications
integrated
solution,
IR3832WMPbF
and
providing
highly
TM
is an easy-to-use,
efficient
accurate
PD-97508
Vo
DC/DC
power
1

Related parts for IR3832WMTR1PBF

IR3832WMTR1PBF Summary of contents

Page 1

SupIRBuck TM SYNCHRONOUS BUCK REGULATOR FOR DDR APPLICATIONS Features • Wide Input Voltage Range 1.0V to 16V • Wide Output Voltage Range 0.6V to 0.9*Vin • Continuous 4A Load Capability • Integrated Bootstrap-diode • High Bandwidth E/A for excellent transient ...

Page 2

... These are stress ratings only and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications are not implied. PACKAGE INFORMATION 5mm x 6mm POWER QFN V IN Boot Enable ORDERING INFORMATION PACKAGE DESIGNATOR M M IR3832WMTR1PbF Rev 4 Gnd ...

Page 3

Block Diagram Fig. 2. Simplified block diagram of the IR3832W Rev 4.0 PD-97508 IR3832WMPbF 3 ...

Page 4

Pin Description Pin Name Track pin. Use External resistors from VDDQ rail. The Vp voltage can set to 0.9V for DDR2 application and 0.75 or 0.6V for DDR3 application. Inverting input to the error amplifier. This pin ...

Page 5

Recommended Operating Conditions Symbol Definition V Input Voltage in V Supply Voltage cc Boot to SW Supply Voltage V Output Voltage o I Output Current o Fs Switching Frequency T Junction Temperature j Electrical Specifications Unless otherwise specified, these specification ...

Page 6

Electrical Specifications (continued) Unless otherwise specified, these specification apply over 4.5V< C<T < 125 C. Typical values are specified Parameter Symbol Oscillator Rt Voltage Frequency F S Ramp Amplitude Vramp Ramp Offset Ramp ...

Page 7

Electrical Specifications (continued) Unless otherwise specified, these specification apply over 4.5V< C<T < 125 C. Typical values are specified Parameter SYM Thermal Shutdown Thermal Shutdown Hysteresis Power Good Power Good upper VPG(upper) Threshold ...

Page 8

TYPICAL OPERATING CHARACTERISTICS (-40 Icc(Standby) 290 270 250 230 210 190 170 150 -40 - Temp[ C] FREQUENCY 550 540 530 520 510 500 490 480 470 460 450 -40 - ...

Page 9

Rdson of MOSFETs Over Temperature at Vcc= -40 -20 0 Rev 4 Temperature [°C] Sync-FET Ctrl-FET PD-97508 IR3832WMPbF 100 120 140 9 ...

Page 10

Typical Efficiency and Power Loss Curves Vin=12V, Vcc=5V, Vo=0.75V, Io=0.5A-4A, F Temperature, No Air Flow 0.5 1.0 0.55 0.50 0.45 0.40 0.35 0.30 0.25 0.20 0.15 0.10 0.05 0.5 1.0 Rev ...

Page 11

Typical Efficiency and Power Loss Curves Vin=5V, Vcc=5V, Vo=0.75V, Io=0.5A-4A, F Temperature, No Air Flow 0.5 1.0 0.50 0.45 0.40 0.35 0.30 0.25 0.20 0.15 0.10 0.05 0.5 1.0 Rev 4.0 =400kHz, L=1.5uH ...

Page 12

Circuit Description THEORY OF OPERATION Introduction The IR3832W uses a PWM voltage mode control scheme with external compensation to provide good noise immunity and maximum flexibility in selecting inductor values and capacitor types. The switching frequency is programmable from 250kHz ...

Page 13

Figure 3c. shows the recommended startup sequence for tracking operation of IR3832W with Enable used as logic input. Fig. 3c. Recommended startup sequence, Sequenced operation Pre-Bias Startup IR3832W is able to start up into pre-charged output, which prevents oscillation disturbances ...

Page 14

Operating Frequency The switching frequency can be programmed between 250kHz – 1500kHz by connecting an external resistor from R pin to Gnd. Table 1 t tabulates the oscillator frequency versus R Table 1. Switching Frequency and I External Resistor (R ...

Page 15

Thermal Shutdown Temperature sensing is provided IR3832W. The trip threshold is typically set to o 140 C. When trip threshold is exceeded, thermal shutdown turns off both MOSFETs discharges the soft start capacitor. Automatic restart is initiated when the sensed ...

Page 16

Minimum on time Considerations The minimum ON time is the shortest amount of time for which the Control FET may be reliably turned on, and this depends on the internal timing delays. For the IR3832W, the typical minimum on-time is ...

Page 17

Application Information Design Example: The following example is a typical application for IR3832W. The application circuit is shown on page 23 13.2V max 0. ≤ ...

Page 18

Bootstrap Capacitor Selection To drive the Control FET necessary to supply a gate voltage at least 4V greater than the voltage at the SW pin, which is connected the source of the Control FET . This is achieved ...

Page 19

Output Capacitor Selection The voltage ripple and transient requirements determine the output capacitors type and values. The criteria is normally based on the value of the Effective Series Resistance (ESR). However the : actual capacitance value and the Equivalent Series ...

Page 20

V Z OUT E REF Gain(dB) H( Fig. 13. Type II compensation network and its asymptotic gain plot The transfer function ( given by: e ...

Page 21

V OUT E REF Gain(dB) H( Fig.14. Type III Compensation network and its asymptotic gain plot The ...

Page 22

Detailed calculation of compensation TypeIII Θ Desired Phase Margin 70 − Θ 1 sin = = F F 10.58 kHz Θ 1 sin + Θ 1 sin = = F F 340.28 kHz P ...

Page 23

... X7R, 10% Panasonic Thick Film, 0603,1/10W,1% Rohm Thick Film, 0603,1/10W,1% Rohm 0603, 50V, X7R, 10% Panasonic 0603, 50V, X7R, 10% Panasonic 0603, 16V, X5R, 20% Panasonic SupIRBuck, 4A, PQFN 5x6mm International Rectifier PD-97508 IR3832WMPbF Part Number EEV-FK1E331P C3216X5R1E106M ECJ-1VB1E104K MPO104-1R5 ECJ-2FB0J226ML MCR03EZPFX4992 MCR03EZPFX7501 MCR03EZPFX3572 MCR03EZPFX2741 ...

Page 24

TYPICAL OPERATING WAVEFORMS Vin=12.0V, Vcc=5V, Vo=0.75V, Io=0- ±4A, Room Temperature, No Air Flow Fig. 16: Start up at 4A, sourcing current Ch :PGood out 3 DDQ Fig. 18: Inductor node at ...

Page 25

TYPICAL OPERATING WAVEFORMS Vin=12V, Vcc=5V, Vo=0.75V, Room Temperature, No Air Flow Fig. 22: Tracking 4A, sourcing current :PGood 2 out 3 DDQ 4 Fig. 24: Transient Response, 1A/us -0.5A to +0.5A load , ...

Page 26

TYPICAL OPERATING WAVEFORMS Vin=12V, Vcc=5V, Vo=0.75V, Io=+4A, Room Temperature, No Air Flow Fig.25: Bode Plot at 4A load (sourcing current) shows a bandwidth of 65kHz and phase margin of Rev 4.0 IR3832WMPbF 60 degrees PD-97508 26 ...

Page 27

Layout Considerations The layout is very important when designing high frequency switching converters. Layout will affect noise pickup and can cause a good design to perform with less than expected results. Make all the connections for components in the top ...

Page 28

Feedback trace should be kept away form noise sources Fig. 26b. IR3832W layout considerations – Bottom Layer Analog Ground plane Single point connection between AGND & PGND, should be close to the SupIRBuck, kept away from noise sources. Fig. 26c. ...

Page 29

PCB Metal and Components Placement Lead lands (the 11 IC pins) width should be equal to nominal part lead width. The minimum lead to lead spacing should be ≥ 0.2mm to minimize shorting. Lead land length should be equal to ...

Page 30

Solder Resist It is recommended that the lead lands are Non Solder Mask Defined (NSMD). The solder resist should be pulled away from the metal lead lands by a minimum of 0.025mm to ensure NSMD pads. The land pad should ...

Page 31

Stencil Design • The Stencil apertures for the lead lands should be approximately 80% of the area of the lead lads. Reducing the amount of solder deposited will minimize the occurrences of lead shorts. If too much solder is deposited ...

Page 32

IR WORLD HEADQUARTERS: This product has been designed and qualified for the Consumer market Rev 4.0 IR3832WMPbF BOTTOM VIEW 233 Kansas St., El Segundo, California 90245, USA Tel: (320) 252-7105 Visit us at www.irf.com for sales contact information Data and ...

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