Texas Instruments BQ24450EVM User Manual Download Page 2

Introduction

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1

Introduction

1.1

EVM Features

Evaluation module for bq24450 (HPA691)

Charge controller for lead-acid batteries

Constant current and constant voltage modes

Accommodates external transistor in DPAK or TO-220 package

Programmable charge current

Pre-Charge for deeply discharged batteries

1.2

General Description

The bq24450 contains all the necessary circuitry to optimally control the charging of lead-acid batteries.
The IC controls the charging current as well as the charging voltage to safely and efficiently charge the
battery, maximizing battery capacity and life. Depending on the application, the IC can be configured as a
simple constant-voltage float charge controller or a dual-voltage float-cum-boost charge controller.

The built-in precision voltage reference is especially temperature-compensated to track the characteristics
of lead-acid cells, and maintains optimum charging voltage over an extended temperature range without
using any external components. The low current consumption of the IC allows for accurate temperature
monitoring by minimizing self-heating effects.

The IC can support a wide range of battery capacities and charging currents, limited only by the selection
of the external pass transistor. The versatile driver for the external pass transistor provides at least 25mA
of base drive.

In addition to the voltage- and current-regulating amplifiers, the IC features comparators that monitor the
charging voltage and current. These comparators feed into an internal state machine that sequences the
charge cycle. Some of these comparator outputs are made available as status signals at external pins of
the IC. These status and control pins can be connected to a processor, or they can be connected up in
flexible ways for standalone applications.

1.3

I/O Description and Jumper Functions

Table 1. I/O Description

Header

Description

J1 – Vin

Power Supply Positive

J2 – GND

Power Supply Negative

J3 – GND

Ground

J4 – Vout

Connected to Battery/System Load

J5 – GND

Ground

spacer

Jumper Description

See

Functions and Features

section for more information.

JP1

Connects I

SNSM

for current sense for I

TAPER

. It can connect I

SNSM

to either side of the sense

resistor, R4.

JP2

Connects I

FB

for current sense for I

MAX.

It can connect I

FB

to either side of the sense resistor, R4.

JP3

Selects the topology for the external transistor. The external transistor can be configured for
either Common-Emitter topology or Quasi-Darlington topology.

2

bq24450EVM

SLUU464 – November 2010

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© 2010, Texas Instruments Incorporated

Summary of Contents for BQ24450EVM

Page 1: ...harge 4 4 2 Max Charge 4 4 3 Charge Termination 4 4 4 Re Charge 4 5 Functions and Features 5 5 1 Changing Output Voltage and Charge Current 5 5 2 Options for External Transistor 6 5 3 Other Options 6...

Page 2: ...ents limited only by the selection of the external pass transistor The versatile driver for the external pass transistor provides at least 25mA of base drive In addition to the voltage and current reg...

Page 3: ...2 3 Meters Three Fluke 75 DMMs equivalent or better 3 Equipment Setup The original test setup of HPA691 is shown in Figure 1 1 Set the PS 1 for 10V 1A current limit and then turn off supply Connect P...

Page 4: ...s is the pre charge current 4 2 Max Charge Adjust PS 2 such that VM 2 shows 6 VDC Using VM 3 measure the voltage across the current sense resistor on Load 1 Multiply this value by a conversion factor...

Page 5: ...on board resistors R7 R8 R9 R11 R12 See the bq24450 datasheet for information on how to size these resistors If Vout is changed Vin must also be changed Vin should be high enough to allow for the nece...

Page 6: ...JP3 such that it connects Pin 15 of the IC to the collector of Q1 2 Remove R6 and replace with Rp as calculated on page 13 of the data sheet 5 3 Other Options Disabling Pre Charge Mode The EVM is pop...

Page 7: ...pen Resistor Chip 1 16W 1 603 Std Std R15 R2 0 56 Resistor Chip 1 2W 1 2010 STD STD R3 R6 0 Resistor Chip 1 16W 603 Std Std R4 0 Resistor Chip 1 2W 2010 CRCW20100000Z0EF Vishay R7 475k Resistor Chip 1...

Page 8: ...ials Board Layouts and Schematic www ti com 7 2 Board Layout Figure 4 Top Assembly Layer Figure 5 Top PCB Layer 8 bq24450EVM SLUU464 November 2010 Submit Documentation Feedback 2010 Texas Instruments...

Page 9: ...l of Materials Board Layouts and Schematic Figure 6 Bottom PCB Layer 7 3 Schematic Figure 7 bq24450 EVM Schematic 9 SLUU464 November 2010 bq24450EVM Submit Documentation Feedback 2010 Texas Instrument...

Page 10: ...uct This notice contains important safety information about temperatures and voltages For additional information on TI s environmental and or safety programs please contact the TI application engineer...

Page 11: ...h statements TI products are not authorized for use in safety critical applications such as life support where a failure of the TI product would reasonably be expected to cause severe personal injury...

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