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3-CH, 18V, Synchronous Step-Down Converter

EVB_RT7273GQW

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The RT7273 features three synchronous wide input range high efficiency Buck converters. The converters are designed to simplify its application while giving the designer the option to optimize their usage according to the target application. The converters can operate in 5V, 9V or 12V systems and have integrated power transistors. The output voltage can be set externally using a resistor divider to any value between 0.8V and the input supply minus 1V. Each converter features an enable pin that allows a delayed start-up for sequencing purposes, a soft-start pin that allows adjustable soft-start time by choosing the softstart capacitor, and a current limit pin (RLIMx) to adjust current limit by selecting an external resistor. The COMP pin allows optimizing transient versus dc accuracy response with a simple RC compensation. The switching frequency of the converters can either be set with an external resistor connected to ROSC pin or be synchronized to an external clock connected to SYNC pin if needed. The switching converters are designed to operate from 300kHz to 2.2MHz. The converters operate with 180° phase between CH 1 and CH 2, CH 3 (CH 2 and CH 3 ran in phase) to minimize the input filter requirements. The RT7273 also features a low power mode enabled by an external signal, which allows for a reduction on the input power supplied to the system when the host processor is in stand-by (low activity) mode.

Purpose

The RT7273 features three synchronous wide input range high efficiency Buck converters. The converters are designed to simplify its application while giving the designer the option to optimize their usage according to the target application. This document explains the function and use of the RT7273 evaluation board (EVB), and provides information to enable operation, modification of the evaluation board and circuit to suit individual requirements.


Introduction

General Product Information

The RT7273 features three synchronous wide input range high efficiency Buck converters. The converters are designed to simplify its application while giving the designer the option to optimize their usage according to the target application. The converters can operate in 5V, 9V or 12V systems and have integrated power transistors. The output voltage can be set externally using a resistor divider to any value between 0.8V and the input supply minus 1V. Each converter features an enable pin that allows a delayed start-up for sequencing purposes, a soft-start pin that allows adjustable soft-start time by choosing the softstart capacitor, and a current limit pin (RLIMx) to adjust current limit by selecting an external resistor. The COMP pin allows optimizing transient versus dc accuracy response with a simple RC compensation. The switching frequency of the converters can either be set with an external resistor connected to ROSC pin or be synchronized to an external clock connected to SYNC pin if needed. The switching converters are designed to operate from 300kHz to 2.2MHz. The converters operate with 180° phase between CH 1 and CH 2, CH 3 (CH 2 and CH 3 ran in phase) to minimize the input filter requirements. The RT7273 also features a low power mode enabled by an external signal, which allows for a reduction on the input power supplied to the system when the host processor is in stand-by (low activity) mode.


Product Feature

  • Wide Input Supply Voltage Range : 4.5V to 18V
  • Output Range : 0.8V to (VIN - 1V)
  • Fully Integrated Triple-Buck
  • ►Maximum Current 3.5A/2.5A/2.5A
    ►Continuous Operation 3A/2A/2A
  • High Efficiency
  • Switching Frequency
  • ►300kHz to 2.2MHz Set by External Resistor
  • External Synchronization Pin for Oscillator
  • External Enable/Sequencing Pins
  • Adjustable Cycle-By-Cycle Current Limit Set by External Resistor
  • Soft-Start
  • Current Mode Control with Simple Compensation Circuit
  • Power Good Indicator
  • Discontinuous Operating Mode at Light Load when LOWP = High

 

Key Performance Summary Table

Key Features

Evaluation Board Number : PCB068_V1

Input Voltage Range

4.5V to 18V

Max Output Current (CH1/CH2/CH3)

3.5A/2.5A/2.5A

Default Output Voltage (CH1/CH2/CH3)

1.2V/1.8V/3.3V

Default Marking & Package Type

RT7273GQW, WQFN-40L 6x6

Operation Frequency

Set by resistor connected with ROSC pin, with 383kΩ setting for 500kHz switching frequency.



Bench Test Setup Conditions

Headers Description and Placement

Technical Document Image Preview

Please carefully inspect the EVB IC and external components, comparing them to the following Bill of Materials, to ensure that all components are installed and undamaged. If any components are missing or damaged during transportation, please contact the distributor or send e-mail to evb_service@richtek.com.



Test Points

The EVB is provided with the test points and pin names listed in the table below.

Test point/

Pin name

Signal

Comment (expected waveforms or voltage levels on test points)

VIN

Input voltage

Power input.

EN

Enable test point

Externally pulled high to enable and pulled low to disable this chip. It is internally pulled up to high when the pin is floating.

GND

Ground

The exposed pad must be soldered to a large PCB and connected to GND for maximum power dissipation.

VINR

Internal Control Circuit Power

Supply Voltage Input for Internal Control Circuit.

PVCC

5V Internal Regulator Output

Connect a capacitor 10µF between this pin and GND.

VCC

4.6V Internal Regulator Output

Connect a capacitor 3.3µF between this pin and GND.

SS

Soft-Start Control

Connect an external capacitor between this pin and GND to set the soft-start time.

PG

Power good test point

Output of power good indicator.

LOWP

Discontinuous Operation Mode Input

Discontinuous Operating Mode at Light Load when LOWP = High (Active High).

VLX

Switch node test point

Switch Output for CH 1/2/3.

SYNC

Synchronous Clock Input

Connect to GND if not used.



Power-up & Measurement Procedure

1. Apply a 12V nominal input power supply (4.5< VIN < 18V) to the VIN and GND terminals.

2. Set the jumper at JP2/JP3/JP4 to connect terminals to H pin, connecting EN to enable operation.

3. Set the jumper at JP1 to short with GND, disable the frequency synchronous function.

4. Verify the output voltage (VOUT1 = 1.2V, VOUT2 = 1.8V, VOUT3 = 3.3V).


Output Voltage Setting

Set the output voltage with the resistive divider between VOUT and GND with the midpoint connected to FB. The output is set by the following formula :

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Technical Document Image Preview

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Schematic, Bill of Materials & Board Layout

EVB Schematic Diagram

Technical Document Image Preview



Bill of Materials

Reference

Qty

Part Number

Description

Package

Manufacture

U1

1

RT7273GQW

DC/DC Converter

WQFN-40L 6x6

RICHTEK

C1, C2, C3, C4, C5, C6, C25, C28, C29

9

0603B472K500

4.7nF/50V/X7R

C0603

WALSIN

C7, C24, C31

3

C1608X7R1H104KT000N

0.1µF/50V/X7R

C0603

TDK

C9, C10, C17, C26, C30

5

GRM31CR71E106KA12L

10µF/25V/X7R

C-1206

muRata

C11, C12, C16, C18, C21, C22, C23

7

GRM32ER61C226KE20L

22µF/16V/X5R

C-1210

muRata

C13, C15, C32

3

0603B471K200

470pF/50V/X7R

C0603

WALSIN

C14, C19, C20

3

NC

C0603

C27

1

C2012X5R1A335KT000N

3.3µF/10V/X5R

C-0805

TDK

L1, L2, L3

3

NR8040T4R7N

4.7µH/4.1A

8 x 8 x 4 mm

TAIYO YUDEN

R1

1

51k

R-0603

R3, R5, R17

3

20k

R-0603

R4

1

82k

R-0603

R7

1

383k

R-0603

R9, R11, R20

3

40.2k

R-0603

R12

1

80.8k

R-0603

R13

1

12.7k

R-0603

R15

1

32.4k

R-0603

R16

1

75k

R-0603

R18

1

100k

R-0603

R1

1

51k

R-0603

R3, R5, R17

3

20k

R-0603



PCB Layout

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Top View (1st layer)

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PCB Layout—Inner Side (2nd Layer)

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PCB Layout—Inner Side (3rd Layer)

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Bottom View (4th Layer)

Title Last Update Share Download
Evaluation Board User Guide 2016/05/11
Bill of Materials 2016/05/11
Gerber File 2016/05/11
Schematic 2016/05/11
RT7273
RT7273

The RT7273 features three synchronous wide input range high efficiency Buck converters. The converters are designed to simplify its application while giving the designer the option to optimize their usage according to the target application.

The converters can operate in 5V, 9V or 12V systems and have integrated power transistors. The output voltage can be set externally using a resistor divider to any value between 0.8V and the input supply minus 1V. Each converter features an enable pin that allows a delayed start-up for sequencing purposes, a soft-start pin that allows adjustable soft-start time by choosing the soft-start capacitor, and a current limit pin (RLIMx) to adjust current limit by selecting an external resistor. The COMP pin allows optimizing transient versus dc accuracy response with a simple RC compensation.

The switching frequency of the converters can either be set with an external resistor connected to ROSC pin or be synchronized to an external clock connected to SYNC pin if needed. The switching converters are designed to operate from 300kHz to 2.2MHz. The converters operate with 180° phase between CH 1 and CH 2, CH 3 (CH 2 and CH 3 ran in phase) to minimize the input filter requirements.

The RT7273 also features a low power mode enabled by an external signal, which allows for a reduction on the input power supplied to the system when the host processor is in stand-by (low activity) mode.

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