LTC4063 LINER [Linear Technology], LTC4063 Datasheet

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LTC4063

Manufacturer Part Number
LTC4063
Description
Standalone Linear Li-Ion Charger with Micropower Low Dropout Linear Regulator
Manufacturer
LINER [Linear Technology]
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LTC4063EDD
Manufacturer:
LT
Quantity:
10 000
Part Number:
LTC4063EDD
Manufacturer:
LTNEAR
Quantity:
20 000
Part Number:
LTC4063EDD#PBF
Manufacturer:
LINEAR/凌特
Quantity:
20 000
FEATURES
TYPICAL APPLICATIO
APPLICATIO S
4.3V TO 8V
Charge Current Programmable up to 1A
Integrated 100mA Adjustable Low Dropout Linear
Regulator
Charges Single Cell Li-Ion Batteries Directly from
USB Port
Preset Charge Voltage with ±0.35% Accuracy
No External MOSFET, Sense Resistor or Blocking
Diode Needed
Thermal Regulation Maximizes Charge Rate
Without Risk of Overheating*
Adjustable LDO Output Voltage Range:
1.2V to 4.2V
Programmable Charge Termination Timer
Programmable Charge Current Detection/Termination
SmartStart
Charge Status Output
35µA Charger Quiescent Current in Shutdown
15µA LDO Quiescent Current
Available in a Low Profile (0.75mm) 10-Lead
(3mm × 3mm) DFN Package
Handheld Computers
Portable MP3 Players
Digital Cameras
V
IN
Single Cell Li-Ion Battery Charger with Regulated 3V Output
1µF
TM
715Ω
Prolongs Battery Life
U
(C/10 Termination)
V
TIMER
PROG
IDET
CC
LTC4063
GND
OUT
BAT
U
FB
440k
160k
700mA
2.2µF
V
3V
4063 TA01a
OUT
+
4.2V
SINGLE CELL
Li-Ion BATTERY
Low Dropout Linear Regulator
DESCRIPTIO
The LTC
lithium-ion batteries with an adjustable low dropout linear
regulator (LDO). The adjustable LDO regulates an output
voltage between 1.2V to 4.2V at up to 100mA load current.
When the input supply (wall adapter or USB supply) is
removed, the LDO regulates the output voltage without
interruption. The battery charger and LDO regulator can be
enabled individually.
No external sense resistor or external blocking diode is
required for charging due to the internal MOSFET architec-
ture. Internal thermal feedback regulates the charge cur-
rent to maintain a constant die temperature during high
power operation or high ambient temperature conditions.
The float voltage is fixed at 4.2V and the charge current is
programmed with an external resistor. Charge termination
methods include minimum charge current or maximum
time. With power applied, the LTC4063 can be put into
shutdown mode to reduce the supply current to 35µA and
the battery drain current to less than 2µA.
Other features include smart recharge, undervoltage lock-
out, LDO current limiting and a charge status pin to
indicate when the charge cycle has completed.
SmartStart is a trademark of Linear Technology Corporation.
All other trademarks are the property of their respective owners.
*Protected by U.S. Patents including 6522118.
, LT, LTC and LTM are registered trademarks of Linear Technology Corporation.
Charger with Micropower
®
4063 is a standalone linear charger for single cell
Standalone Linear Li-Ion
600
500
300
200
800
700
400
100
Complete Charge Cycle (900mAh Battery)
0
0
CONSTANT CURRENT
V
T
CC
A
0.25
= 25°C
= 5V
0.50
U
0.75
TIME (HOURS)
1
1.25
1.50
CONSTANT
VOLTAGE
1.75
4063 TA01b
2
LTC4063
2.25
4.25
4.00
3.50
3.25
2.75
4.75
4.50
3.75
3.00
4063fb
1

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LTC4063 Summary of contents

Page 1

... The float voltage is fixed at 4.2V and the charge current is programmed with an external resistor. Charge termination methods include minimum charge current or maximum time. With power applied, the LTC4063 can be put into shutdown mode to reduce the supply current to 35µA and the battery drain current to less than 2µA. ...

Page 2

... BAT CHGEN Rising, 4.3V < V < Hysteresis V from High to Low TIMER Hysteresis V from Low to High TIMER Hysteresis U W INFORMATION ORDER PART TOP VIEW NUMBER LTC4063EDD 9 PROG 11 8 IDET 7 TIMER 6 CHRG DD PART MARKING DD PACKAGE LBHX = 40°C/W (NOTE 3) JA MIN TYP MAX ● 4.3 8 ● ...

Page 3

... Exposure to any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime. Note 2: The LTC4063EDD is guaranteed to meet performance specifica- tions from 0°C to 70°C. Specifications over the – 40°C to 85°C operating temperature range are assured by design, characterization and correlation with statistical process controls ...

Page 4

... LTC4063 TYPICAL PERFORMANCE CHARACTERISTICS Regulated Output (Float) Voltage vs Charge Current 4. 1.25k PROG 4.24 4.22 4.20 4.18 4.16 4.14 4.12 4.10 0 100 200 300 400 500 600 700 800 CHARGE CURRENT (mA) 4063 G01 Charge Current vs PROG Pin Voltage 900 1.25k 800 PROG TIMER 700 600 ...

Page 5

... A 800 T = 90°C A 799 T = –40° 115°C A 798 797 100 120 I (mA) OUT 4063 G17 LTC4063 Recharge Threshold Voltage vs Temperature 4.16 4.14 4. 4. 4.08 4.06 4.04 – 100 –25 TEMPERATURE (°C) 4063 G12 CHGEN Pin Threshold Voltage ...

Page 6

... LTC4063 TYPICAL PERFORMANCE CHARACTERISTICS LDO Regulator Dropout Voltage vs Temperature 200 OUT I = 100mA OUT 150 100 50 0 –50 – 100 TEMPERATURE (°C) 4063 G19 LDO Regulator Dropout Voltage vs Load Current 180 OUT 150 T = 115°C A 120 T = 90°C ...

Page 7

... This pin should be bypassed with a 1µF capacitor. Exposed Pad (Pin 11): Ground. This pin is the back of the Exposed Pad package and must be soldered to the PCB , to ground TIMER copper for minimal thermal resistance LTC4063 selects User set by con- DETECT , to ground set by the DET DETECT ...

Page 8

... LTC4063 W BLOCK DIAGRA – TO BAT C1 + 4.1V CHRG 6 STOP RECHRG LDOEN LDOEN 4 2MΩ LOGIC CHGEN CHGEN TERM 5 2MΩ SEL C2 + – COUNTER 0.1V OSCILLATOR TIMER 7 C TIMER 1× 1× – – 0. 3µA C3 – + 2.9V TO BAT IDET PROG DET PROG 1000× ...

Page 9

... BAT. If the BAT pin is below the recharge threshold of 4.1V (which corresponds to approximately 80% to 90% battery capacity), the LTC4063 enters charge mode and begins a full charge cycle. If the BAT pin is above 4.1V, the LTC4063 enters standby mode and does not begin charging. This feature reduces the number of unnecessary charge cycles, prolonging battery life ...

Page 10

... LTC4063 from excessive temperature and allows the user to push the limits of the power handling capability of a given circuit board without risk of damaging the LTC4063. The charge current can be set according to typical (not worst-case) ambient temperatures with the assurance that the charger will automatically reduce the current in worst-case conditions ...

Page 11

... The output voltage can be set U U APPLICATIO S I FOR ATIO Programming Charge Termination The LTC4063 terminates a charge cycle using several methods, allowing the designer considerable flexibility in choosing an ideal charge termination algorithm. Table 1 shows a brief description of the different termination methods and their behavior. ...

Page 12

... C 4063 F02 charges the battery until the internal timer reaches 1.5 hours. Figure 3 describes the operation of the LTC4063 charger when Charge Time Termination is used. FAULT MODE NO CHARGE CURRENT CHRG STATE: SQUARE WAVE ...

Page 13

... I terminates the charge cycle. The CHRG output is in its pull-down state when charging and in its high impedance state once charging has stopped. Figure 4 describes the operation of the LTC4063 charger when charge current termination is used. V User-Selectable Charge Termination ...

Page 14

... Figure 5. State Diagram of a Charger Cycle Using User Termination With User-Selectable Charge Termination, the SmartStart feature is disabled; when the charger is powered on or enabled, the LTC4063 automatically begins charging, re- gardless of the battery voltage. Figure 5 describes charger operation when User-Selectable Charge Termination is used. ...

Page 15

... Example: An LTC4063 operating from a 5V wall adapter is programmed to supply 800mA full-scale current to a discharged Li-Ion battery with a voltage of 3.3V. Assuming θ is 40°C/W (see Thermal Considerations), the ambient JA temperature at which the LTC4063 will begin to reduce the charge current is approximately 105°C – (5V – 3.3V) • (800mA) • 40°C ...

Page 16

... LTC4063 package is properly soldered to the PC board ground. Correctly soldered to a 2500mm double sided 1oz copper board, the LTC4063 has a ther- mal resistance of approximately 40°C/W. Failure to make thermal contact between the exposed pad on the backside of the package and the copper board will result in thermal resistances far greater than 40° ...

Page 17

... U APPLICATIO S I FOR ATIO USB and Wall Adapter Power The LTC4063 allows charging from both a wall adapter and a USB port. Figure 9 shows how to combine wall adapter and USB power inputs. A P-channel MOSFET, MP1, is used to prevent back conducting into the USB port ...

Page 18

... CHRG BAT LTC4063 2 7 TIMER OUT 9 PROG 340k 1.25k 8 3 IDET FB GND 0.1µF 625Ω 160k BAT CC + LTC4063 1µ TIMER PROG 8 IDET GND 800mA V OUT 2.5V + SINGLE CELL Li-Ion BATTERY 2.2µF 4063 TA02 Li-Ion CELL 2.5k 100mA/ 500mA 10k µ ...

Page 19

... ALL DIMENSIONS ARE IN MILLIMETERS 4. DIMENSIONS OF EXPOSED PAD ON BOTTOM OF PACKAGE DO NOT INCLUDE MOLD FLASH. MOLD FLASH, IF PRESENT, SHALL NOT EXCEED 0.15mm ON ANY SIDE 5. EXPOSED PAD SHALL BE SOLDER PLATED 6. SHADED AREA IS ONLY A REFERENCE FOR PIN 1 LOCATION ON THE TOP AND BOTTOM OF PACKAGE LTC4063 R = 0.115 0.38 ± 0.10 TYP 6 10 ...

Page 20

... LTC4063 RELATED PARTS PART NUMBER DESCRIPTION Battery Chargers LTC1733 Monolithic Lithium-Ion Linear Battery Charger LTC1734 Lithium-Ion Linear Battery Charger in ThinSOT LTC1734L Lithium-Ion Linear Battery Charger in ThinSOT LTC4002 Switch Mode Lithium-Ion Battery Charger LTC4050 Lithium-Ion Linear Battery Charger Controller LTC4052 Monolithic Lithium-Ion Battery Pulse Charger ...

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