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Description

1.1

Applications

1.2

Features

Description

The TPS40130EVM-001 is designed to use a regulated 12-V (10-V to 14-V) bus to produce a high current,
regulated 1.5-V output at up to 40 A of load current. The TPS40130EVM-001 uses a number of advanced
technologies to improve its performance. Lossless DCR current sensing eliminates the need for a current
sense resistor, reduces losses, and improves efficiency. A unity gain amplifier provides accurate,
integrated remote sense capabilities for highly accurate, point of load regulated output voltages.
Independent, programmable overvoltage protection (OVP) provides accurate overvoltage protection, even
as the user adjusts the output voltage, or accidentally shorts the feedback pin to ground.

Nonisolated High Current Point of Load and Low Voltage Bus Converters

Video Graphic Adaptors

Internet Servers

Networking Equipment

Telecommunications Equipment

DC Power Distributed Systems

91% Peak and 89% Full Load Efficiency at 10-V Input

10-V to 14-V Input Range

1.5-V Fixed Output, Adjustable with Single Resistor

40-Adc Steady State Output Current

330-kHz per Phase Operation (660-kHz Output Ripple)

Single Main Switch MOSFET and Dual Synchronous Rectifier MOSFET for Each Phase

Single Component Side, Surface Mount Design (4.5"

×

4.0”)

Current Mode Control with Forced Current Sharing

Four Layer PCB with all Components on Top Side

Convenient Test Points for Probing Critical Waveforms and Noninvasive Loop Response Testing

5-V LDO for Single Supply Operation

Space for the TPS40120 Digitally Controlled Resistor Network for 6-Bit VID Control (Not Populated)

12-V Input, 1.5-V Output, 40-A Two Phase Synchronous Buck Converter Using the TPS40130

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SLUU208 – October 2004

Summary of Contents for TPS40130EVM-001

Page 1: ...Recommended Test Setup 9 4 TPS40130EVM 001 Efficiency V12V_IN 10 V to 14 V V1V5_OUT 1 5 V I1V5_OUT 4 A to 40 A 10 5 TPS40130EVM 001 Line Regulation I1V5_OUT 20 A 10 6 TPS40130EVM 001 Load Regulation...

Page 2: ...lated High Current Point of Load and Low Voltage Bus Converters Video Graphic Adaptors Internet Servers Networking Equipment Telecommunications Equipment DC Power Distributed Systems 91 Peak and 89 Fu...

Page 3: ...voltage regulation Line regulation 10 V VIN 14 V IOUT 20 A 1 Load regulation 0 A IOUT 40 A VIN 12 V 1 Output voltage ripple VIN 14 V IOUT 40 A 30 mVpp Output load current 0 40 A Output overcurrent Li...

Page 4: ...www ti com 3 Schematics Schematics Figure 1 TPS40130EVM 001 Power Stage Control Schematic 12 V Input 1 5 V Output 40 A Two Phase Synchronous Buck Converter Using the TPS40130 4 SLUU208 October 2004...

Page 5: ...www ti com Schematics Figure 2 TPS40130EVM 001 Support Circuitry Schematic 12 V Input 1 5 V Output 40 A Two Phase Synchronous Buck Converter Using the TPS40130 SLUU208 October 2004 5...

Page 6: ...Initially set for 3 5 V to allow the user to adjust the output voltage from 1 2 V to 3 3 V the OVP set point can be adjusted to be closer to the output voltage by changing R1 The output overvoltage s...

Page 7: ...hown in Figure 1 4 1 2 Meters A1 0 Adc to 10 Adc ammeter V1 V12V_IN 0 V to 15 V voltmeter V2 V1V5_OUT VOUT 0 V to 5 V voltmeter 4 1 3 Loads LOAD1 The output load LOAD1 should be an electronic constant...

Page 8: ...ons should remain separate as shown in Figure 3 4 2 1 Procedure 1 Working at an ESD workstation make sure that any wrist straps bootstraps or mats are connected referencing the user to earth ground be...

Page 9: ...12V to 1 5V 40A FAN V12V_IN 4 3 Startup Shutdown Procedure Test Setup 4 2 2 Diagram Figure 3 TPS40130EVM 001 Recommended Test Setup 1 Increase V12V_IN V1 from 0 Vdc to 10 Vdc 2 Vary LOAD1 from 0 Adc...

Page 10: ...1 Shut down oscilloscope 2 Shut down LOAD1 3 Shut down V12V_IN 4 Shut down fan Figure 4 Figure 5 Figure 6 and Figure 7 present typical performance curves for the TPS40130EVM 001 Since actual performan...

Page 11: ...PS40130EVM 001 Typical Performance Data and Characteristic Curves Figure 6 TPS40130EVM 001 Load Regulation 5 4 1 Positive Transient Figure 7 TPS40130EVM 001 5 A to 55 A Transient Response 5 A to 55 A...

Page 12: ...01 printed circuit board The EVM has been designed using a 4 layer 2 oz copper clad circuit board 4 5 4 0 with all components on the top side to allow the user to easily view probe and evaluate the TP...

Page 13: ...awings and Layout Figure 9 TPS40130EVM 001 Component Placement Top View Figure 10 TPS40130EVM 001 Silkscreen Top View 12 V Input 1 5 V Output 40 A Two Phase Synchronous Buck Converter Using the TPS401...

Page 14: ...Drawings and Layout Figure 11 TPS40130EVM 001 Top Copper Top View Figure 12 TPS40130EVM 001 Layer 2 X Ray Top View 12 V Input 1 5 V Output 40 A Two Phase Synchronous Buck Converter Using the TPS40130...

Page 15: ...gs and Layout Figure 13 TPS40130EVM 001 Layer 3 X Ray Top View Figure 14 TPS40130EVM 001 Bottom Copper X Ray Bottom View 12 V Input 1 5 V Output 40 A Two Phase Synchronous Buck Converter Using the TPS...

Page 16: ...227 2 L1 L2 Inductor SMT 0 68 H 30 A 0 9 m 0 524 x 0 492 Wurth S0410124A 4 Q1 Q2 Q5 MOSFET N channel 30 V 55 A 2 5 m LFPAK Renesas HAT2165H Q6 2 Q3 Q4 MOSFET N channel 30 V 20 A 6 m LFPAK Renesas HAT2...

Page 17: ...st point white 0 40 hole 0 050 loop 0 100 Keystone 5002 TP4 TP7 TP10 TP11 TP13 TP15 TP17 TP19 TP20 0 TP21 TP22 Test point white 0 40 hole 0 050 loop 0 100 Keystone 5002 3 TP2 TP9 Test point red thru h...

Page 18: ...ute a license from TI to use such products or services or a warranty or endorsement thereof Use of such information may require a license from a third party under the patents or other intellectual pro...

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