Texas Instruments TPS54334EVM-722 User Manual Download Page 2

Introduction

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1

Introduction

This user's guide contains background information for the TPS54334 as well as support documentation for
the TPS54334EVM-722 evaluation module (PWR722-001). Also included are the performance
specifications, the schematic, and the bill of materials for the TPS54334EVM-722.

1.1

Background

The TPS54334 dc/dc converter is designed to provide up to a 3-A output from an input voltage source of
4.2 V to 28 V. Rated input voltage and output current range for the evaluation module are given in

Table 1

. This evaluation module is designed to demonstrate the small printed-circuit-board areas that may

be achieved when designing with the TPS54334 regulator. The switching frequency is externally set at a
nominal 570 kHz. The high-side and low-side MOSFETs are incorporated inside the TPS54334 package
along with the gate-drive circuitry. The low drain-to-source on resistance of the MOSFETs allow the
TPS54334 to achieve high efficiencies and helps keep the junction temperature low at high output
currents. The compensation components are external to the integrated circuit (IC), and an external divider
allows for an adjustable output voltage. Additionally, the TPS54334 provides an adjustable undervoltage
lockout input. The absolute maximum input voltage is 30 V for the TPS54334EVM-722.

Table 1. Input Voltage and Output Current Summary

EVM

INPUT VOLTAGE RANGE

OUTPUT CURRENT RANGE

TPS54334EVM-722

VIN = 4.2 V to 28 V

0 A to 3 A

1.2

Performance Specification Summary

A summary of the TPS54334EVM-722 performance specifications is provided in

Table 2

Specifications

are given for an input voltage of V

IN

= 24 V and an output voltage of 5.0 V, unless otherwise specified. The

TPS54334EVM-722 is designed and tested for V

IN

= 4.2 V to 28 V. The ambient temperature is 25°C for

all measurements, unless otherwise noted.

Table 2. TPS54334EVM-722 Performance Specification Summary

Specification

Test Conditions

MIN

TYP

MAX

Unit

V

IN

operating voltage range

4.2

24

28

V

V

IN

start voltage

4.1

V

V

IN

stop voltage

3.9

V

Output voltage set point

3.3

V

Output current range

(1)

V

IN

= 4.2 V to 28 V

0

3

A

Line regulation

I

O

= 1.5 A, V

IN

= 4.2 V to 28 V

±0.05%

Load regulation

V

IN

= 12 V, I

O

= 0 A to 3 A

±0.2%

Voltage change

–190

mV

I

O

= 0.75 A to 2.25 A

Recovery time

150

μ

s

Load transient response

Voltage change

190

mV

I

O

= 2.25 A to 0.75 A

Recovery time

150

μ

s

Loop bandwidth

V

IN

= 24 V, I

O

= 1.5 A

54.26

kHz

Phase margin

V

IN

= 24 V , I

O

= 1.5 A

82

°

Input ripple voltage

I

O

= 3 A

400

mV

PP

Output ripple voltage

I

O

= 3 A

<30

mV

PP

Output rise time

2

ms

Operating frequency

570

kHz

Maximum Efficiency

TPS54334EVM-722, V

IN

= 12 V, I

O

= 1 A

91.38%

(1)

When V

IN

= 4.2 V, maximum I

OUT

is 2 A.

2

TPS54334EVM-722 3-A Regulator Evaluation Module

SLVUAH4 – August 2015

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Copyright © 2015, Texas Instruments Incorporated

Summary of Contents for TPS54334EVM-722

Page 1: ...esponse 7 7 TPS54334EVM 722 Output Ripple IOUT 3 A 8 8 TPS54334EVM 722 Output Ripple IOUT 200 mA 8 9 TPS54334EVM 722 Output Ripple IOUT 0 A 8 10 TPS54334EVM 722 Input Ripple 9 11 TPS54334EVM 722 Start...

Page 2: ...the TPS54334EVM 722 Table 1 Input Voltage and Output Current Summary EVM INPUT VOLTAGE RANGE OUTPUT CURRENT RANGE TPS54334EVM 722 VIN 4 2 V to 28 V 0 A to 3 A 1 2 Performance Specification Summary A s...

Page 3: ...on output voltages Note that VIN must be in a range so that the minimum on time is greater than 145 ns and the maximum duty cycle is less than 100 The values given in Table 3 are standard values not t...

Page 4: ...res Test point TP1 provides a place to monitor the VIN input voltages with TP2 providing a convenient ground reference TP6 is used to monitor the output voltage with TP7 as the ground reference Table...

Page 5: ...shows the efficiency for the TPS54334EVM 722 at an ambient temperature of 25 C Figure 1 TPS54334EVM 722 Efficiency Figure 2 shows the efficiency for the TPS54334EVM 722 on a semi log scale to better...

Page 6: ...3 Output Voltage Load Regulation Figure 3 shows the load regulation for the TPS54334EVM 722 Figure 3 TPS54334EVM 722 Load Regulation Measurements are given for an ambient temperature of 25 C 2 4 Outpu...

Page 7: ...at 12 V input Total peak to peak voltage variation is as shown including ripple and noise on the output Figure 5 TPS54334EVM 722 Transient Response 2 6 Loop Characteristics Figure 6 shows the TPS5433...

Page 8: ...e ripple for full load light load and skip mode operation VIN 12 V The output The ripple voltage is measured directly across the output capacitors Figure 7 TPS54334EVM 722 Output Ripple IOUT 3 A Figur...

Page 9: ...put voltage ripple The output current is the rated full load of 3 A and VIN 12 V The ripple voltage is measured directly across the input capacitors Figure 10 TPS54334EVM 722 Input Ripple 9 SLVUAH4 Au...

Page 10: ...age is initially applied and the output is inhibited by using a jumper at JP1 to tie EN to GND When the jumper is removed EN is released When the EN voltage reaches the enable threshold voltage the st...

Page 11: ...e input voltage falls below the UVLO stop threshold as set by the R1 and R2 resistor divider network In Figure 14 the output is inhibited by using a jumper at JP1 to tie EN to GND The input voltage fo...

Page 12: ...a copper fill area for VPHASE an etch run to connect the upper resistor of the voltage set point divider to the regulation point at the J2 output connector and a trace to connect the upper resistor o...

Page 13: ...16 TPS54334EVM 722 Top Side Layout 3 Figure 17 TPS54334EVM 722 Bottom Side Layout 13 SLVUAH4 August 2015 TPS54334EVM 722 3 A Regulator Evaluation Module Submit Documentation Feedback Copyright 2015 T...

Page 14: ...VIN 1 VSENSE 6 EN 8 PGOOD 10 GND 3 COMP 7 PH 2 BOOT 9 PAD 11 GND 4 GND 5 U1 TPS54334DRCR L1 6 8uH TP10 JP2 VOUT Schematic and Bill of Materials www ti com 4 Schematic and Bill of Materials This secti...

Page 15: ...1 W 0603 0603 CRCW060384K5FKEA Vishay Dale R3 1 2 05k RES 2 05 k 1 0 1 W 0603 0603 CRCW06032K05FKEA Vishay Dale R4 1 51 1 RES 51 1 ohm 1 0 1W 0603 0603 CRCW060351R1FKEA Vishay Dale R5 1 31 6k RES 31 6...

Page 16: ...ing the warranty period to the address designated by TI and that are determined by TI not to conform to such warranty If TI elects to repair or replace such EVM TI shall have a reasonable time to repa...

Page 17: ...transmitter has been approved by Industry Canada to operate with the antenna types listed in the user guide with the maximum permissible gain and required antenna impedance for each antenna type indic...

Page 18: ...ified allowable ranges some circuit components may have elevated case temperatures These components include but are not limited to linear regulators switching transistors pass transistors current sens...

Page 19: ...REMOVAL OR REINSTALLATION ANCILLARY COSTS TO THE PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES RETESTING OUTSIDE COMPUTER TIME LABOR COSTS LOSS OF GOODWILL LOSS OF PROFITS LOSS OF SAVINGS LOSS OF USE L...

Page 20: ...sponsible for compliance with all legal regulatory and safety related requirements concerning its products and any use of TI components in its applications notwithstanding any applications related inf...

Page 21: ...Mouser Electronics Authorized Distributor Click to View Pricing Inventory Delivery Lifecycle Information Texas Instruments TPS54334EVM 722...

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