lm2619atl National Semiconductor Corporation, lm2619atl Datasheet

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lm2619atl

Manufacturer Part Number
lm2619atl
Description
500ma Sub-miniature Step-down Dc-dc Converter
Manufacturer
National Semiconductor Corporation
Datasheet

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© 2003 National Semiconductor Corporation
LM2619
500mA Sub-Miniature Step-Down DC-DC Converter
General Description
The LM2619 step down DC-DC converter is optimized for
powering circuits from a single Lithium-Ion cell. It steps down
an input voltage of 2.8V to 5.5V to an output of 1.5V to 3.6V
at up to 500mA. Output voltage is set using resistor feedback
dividers.
The device offers three modes for mobile phones and similar
portable applications. Fixed-frequency PWM mode mini-
mizes RF interference. A SYNC input allows synchronizing
the switching frequency in a range of 500kHz to 1MHz. Low
current hysteretic PFM mode reduces quiescent current to
160µA (typ.). Shutdown mode turns the device off and re-
duces battery consumption to 0.02µA (typ.).
Current limit and thermal shutdown features protect the de-
vice and system during fault conditions.
The LM2619 is available in a 10 bump micro SMD package.
This packaging uses National’s chip-scale micro SMD tech-
nology and offers the smallest possible size. A high switching
frequency (600kHz) allows use of tiny surface-mount com-
ponents.
The device features external compensation to tailor the re-
sponse to a wide range of operating conditions.
DS200574
Key Specifications
n Operates from a single LiION cell (2.8V to 5.5V)
n Output voltage (1.5V to 3.6V)
n
n 500mA maximum load capability
n 600µA typ PWM mode quiescent current
n 0.02µA typ shutdown current
n 600kHz PWM switching frequency
n SYNC input for PWM mode frequency synchronization
n High efficiency (96% typ at 3.9V
n 100% Maximum Duty Cycle for Lowest Dropout
Features
n Sub-miniature 10-bump thin micro SMD package
n Uses small ceramic capacitors
n 5mV typ PWM mode output voltage ripple(C
n Internal soft start
n Current overload protection
n Thermal Shutdown
n External compensation
Applications
n Mobile Phones
n Hand-Held Radios
n RF PC Cards
n Wireless LAN Cards
from 500kHz to 1MHz
in PWM mode from internal synchronous rectification
±
1% DC feedback voltage precision
IN
, 3.6V
OUT
October 2003
www.national.com
OUT
and 200mA)
= 22µF)

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lm2619atl Summary of contents

Page 1

... A high switching frequency (600kHz) allows use of tiny surface-mount com- ponents. The device features external compensation to tailor the re- sponse to a wide range of operating conditions. © 2003 National Semiconductor Corporation Key Specifications n Operates from a single LiION cell (2.8V to 5.5V) n Output voltage (1.5V to 3.6V) ± ...

Page 2

Typical Application Circuits www.national.com FIGURE 1. Typical Circuit for 1.8V Output Voltage FIGURE 2. Typical Circuit for 2.5V Output Voltage FIGURE 3. Typical Circuit for 1.5V Output Voltage 2 20057401 20057402 20057403 ...

Page 3

... Ordering Information Order Number Package Type LM2619ATL 10-bump Wafer Level Chip Scale (micro SMD) LM2619ATLX (*) XY - denotes the date code marking (2 digit) in production (*) TT - refers to die run/lot traceability for production (*) S - product line designator Package markings may change over the course of production. Pin Description ...

Page 4

Absolute Maximum Ratings If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. PVIN, VDD to SGND PGND to SGND, PVIN to VDD EN, EAOUT, EANEG, SYNC/MODE to SGND FB, SW Electrical ...

Page 5

... Quiescent Supply Current vs Supply Voltage Output Voltage vs Supply Voltage (V = 1.5V, PWM MODE) OUT Output Voltage vs Output Current (V = 1.5V, PWM MODE) OUT LM2619ATL, Circuit of Figure 3, V Shutdown Quiescent Current vs Temperature (Circuit in Figure 3) 20057408 Output Voltage vs Supply Voltage (V OUT 20057409 Output Voltage vs Output Current (V ...

Page 6

... Typical Performance Characteristics otherwise noted. (Continued) Output Voltage vs Output Current (V = 3.6V, PWM MODE) OUT (Circuit in Figure 4) Switching Frequency vs Temperature (Circuit in Figure 3, PWM MODE) www.national.com LM2619ATL, Circuit of Figure 3, V Dropout Voltage vs Output Current (V OUT (Circuit in Figure 4) 20057432 Feedback Bias Current vs Temperature (Circuit in Figure 3) 20057423 6 = 3.6V 25˚ ...

Page 7

... Fixed-frequency PWM operation offers full output current capability at high efficiency while minimiz- ing interference with sensitive IF and data acquisition cir- cuits. During standby operation, hysteretic PFM mode re- LM2619ATL, Circuit of Figure 3, V Efficiency vs Output Current (V = 1.5V, PWM MODE, with Diode) OUT ...

Page 8

Device Information (Continued) external components. Board area required for implementa tion is only 0.58in (375mm ). Use of a micro-SMD package requires special design con- siderations for implementation. (See Micro SMD Package FIGURE 4. Typical Operating Circuit for ...

Page 9

Device Information (Continued) PWM OPERATION While in PWM (Pulse Width Modulation) mode, the output voltage is regulated by switching at a constant frequency and then modulating the energy per cycle to control power to the load. Energy per cycle is ...

Page 10

Device Information (Continued) PFM Mode Switching Waveform A: Inductor Current, 500mA/div B: SW Pin, 2V/div 50mV/div, AC Coupled OUT FIGURE 7. PFM OPERATION Connecting the SYNC/MODE to SGND sets the LM2619 to hysteretic PFM operation. While in ...

Page 11

Device Information (Continued) less than the 2.8V minimum operating voltage. The LM2619 is designed for compact portable applications, such as mo- bile phones. In such applications, the system controller de- termines power supply sequencing. Although the LM2619 is typically well ...

Page 12

Application Information SETTING THE OUTPUT VOLTAGE The LM2619 can be used with external feedback resistors to set the output voltage.Select the value allow atleast 100 times the feedback pin bias current to flow through it ...

Page 13

Application Information The input filter capacitor supplies current to the PFET switch of the LM2619 in the first part of each cycle and reduces voltage ripple imposed on the input power source. The out- put filter capacitor smoothes out current ...

Page 14

Application Information 7. Place noise sensitive circuitry, such as radio IF blocks, away from the DC-DC converter, CMOS digital blocks and other noisy circuitry. Interference with noise- sensitive circuitry in the system can be reduced through distance. In mobile phones, ...

Page 15

... NATIONAL’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT AND GENERAL COUNSEL OF NATIONAL SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant ...

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