LM2743MTC National Semiconductor, LM2743MTC Datasheet

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LM2743MTC

Manufacturer Part Number
LM2743MTC
Description
SYNC SW CONTROL, 3V:6V, POWERWISE
Manufacturer
National Semiconductor
Datasheet

Specifications of LM2743MTC

Primary Input Voltage
16V
No. Of Outputs
1
Output Voltage
13.5V
Output Current
20A
Voltage Regulator Case Style
TSSOP
No. Of Pins
14
Operating Temperature Range
-40°C To +125°C
Svhc
No SVHC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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© 2004 National Semiconductor Corporation
LM2743
N-Channel FET Synchronous Buck Regulator Controller
for Conversion from 3.3V
General Description
The LM2743 is a high-speed, N-Channel synchronous buck
regulator controller with a 2%, 0.6V feedback reference volt-
age intended to make down conversion from 3.3V to as low
as 0.6V easy. A fixed-frequency voltage-mode PWM control
architecture is used, that is adjustable from 50kHz to 2MHz
through an external resistor. This wide range of PWM fre-
quencies gives the power supply designer the flexibility to
make tradeoffs among component size, cost, noise and
efficiency. The power MOSFETs can run on a separate 1V to
16V (Input Voltage, V
biased from a 3V to 6V (IC Input Voltage, V
power-good flag, precision shutdown threshold and soft start
features make power supply tracking and sequencing easy.
The LM2743 employs output under-voltage and over-voltage
flag, and current limit. Current limit is achieved by monitoring
the voltage drop across the on resistance of the low-side
MOSFET. The adaptive non-overlapping MOSFET gate driv-
ers help avoid potential shoot-through problems while main-
taining high efficiency. Both high-side and low-side MOS-
FETs are the lower cost N-Channel type, and the IC can
accept a bootstrap structure to saturate the high-side MOS-
FET for highest efficiency.
Typical Application
IN
) (Note 2) rail while the regulator is
DS200952
CC
), 2mA rail. A
Features
n MOSFET input voltage (V
n IC input voltage (V
n Output voltage adjustable down to 0.6V
n Power good flag and output enable
n Output over-voltage and under-voltage flag
n FB voltage: 2% over temperature
n Current limit without series sense resistor
n Adjustable soft start
n Tracking and sequencing with shutdown and soft start
n Switching frequency from 50 kHz to 2 MHz
n TSSOP-14 package
Applications
n 3.3V Buck Regulation
n Set-Top Boxes/ Home Gateways
n Core Logic Regulators
n High-Efficiency Buck Regulation
pins
CC
) from 3V to 6V
IN
) from 1V to 16V (Note 2)
20095201
www.national.com
April 2004

Related parts for LM2743MTC

LM2743MTC Summary of contents

Page 1

... Both high-side and low-side MOS- FETs are the lower cost N-Channel type, and the IC can accept a bootstrap structure to saturate the high-side MOS- FET for highest efficiency. Typical Application © 2004 National Semiconductor Corporation Features n MOSFET input voltage ( input voltage (V n Output voltage adjustable down to 0.6V ...

Page 2

Connection Diagram Pin Description BOOT (Pin 1) - Supply rail for the N-channel MOSFET gate drive. The voltage should be at least one gate threshold (V ) above the regulator input voltage (V GS(th) turn on the high-side FET. LG ...

Page 3

... Absolute Maximum Ratings If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications BOOT Voltage All other pins Junction Temperature Storage Temperature Soldering Information Electrical Characteristics V = 3.3V unless otherwise indicated. Typicals and limits appearing in plain type apply for T CC boldface type apply over full Operating Temperature Range ...

Page 4

Electrical Characteristics V = 3.3V unless otherwise indicated. Typicals and limits appearing in plain type apply for T CC boldface type apply over full Operating Temperature Range. Datasheet min/max specification limits are guaranteed by design, test, or statistical analysis. Symbol ...

Page 5

Typical Performance Characteristics Efficiency (V = 1.2V) OUT V = 3.3V 300kHz CC SW Efficiency (V = 3.3V) OUT 300kHz Operating Current plus BOOT Current vs Frequency CC FDS689A FET ...

Page 6

Typical Performance Characteristics BOOT Pin Current vs Temperature for BOOT Voltage = 300kHz, FDS689A FET, No-Load SW Internal Reference Voltage vs Temperature Frequency vs Temperature www.national.com (Continued) BOOT Pin Current vs Temperature for BOOT Voltage = 12V ...

Page 7

Typical Performance Characteristics Switch Waveforms (HG Rising 3.3V 5V OUT 12nF, F OUT SS SW Start-Up (No-Load 3.3V 5V OUT I ...

Page 8

Typical Performance Characteristics Load Transient Response ( 3.3V 5V 12nF 300kHz SS SW Line Transient Response ( 3.3V OUT 300kHz ...

Page 9

Block Diagram Application Information THEORY OF OPERATION The LM2743 is a voltage-mode, high-speed synchronous buck regulator with a PWM control scheme designed for use in set-top boxes, thin clients, DSL/Cable modems, and other applications that require high efficiency ...

Page 10

Application Information FIGURE 1. Start-Up Behavior NORMAL OPERATION While in normal operation mode, the LM2743 regulates the output voltage by controlling the duty cycle of the high side and low side FETs. The equation governing output voltage is: The PWM ...

Page 11

Application Information *(R /(R FB OUT2 FB2 FB1 Since =0.6V, then SS FB Tracking Equation The total value of the track resistor divider (Figure 3 should be set below 10kΩ for ...

Page 12

Application Information FIGURE 8. Timing Behavior of Case 3 If the tracking through SS/TRACK pin is not used, a capaci- tor to ground is needed to limit the inrush current. MOSFET GATE DRIVERS The LM2743 has two gate drivers designed ...

Page 13

Application Information FIGURE 11. Bootstrap Configuration input voltage of 3V both, the high and low, side FETs are driven with about 4.5V. The decision on which configuration to use depends on the desired output current and operating ...

Page 14

Application Information Input Capacitor The input capacitors in a Buck switching converter are sub- jected to high stress due to the input current square wave- form. Hence input capacitors are selected for their ripple current capability and their ability to ...

Page 15

Application Information In this example, in order to maintain a 2% peak-to-peak output voltage ripple and a 40% peak-to-peak inductor cur- rent ripple, the required maximum ESR is 15mΩ.The Sanyo 4SP560M aluminum electrolytic capacitor will give an equivalent ESR of ...

Page 16

Example Circuits PART PART NUMBER U LM2743 1 Q FDS6898A 1 D MBR0520LTI 1 L DO3316P-472 16SP100M 6SP220M VJ1206Y104KXXA CC BOOT VJ805Y332KXXA C3 ...

Page 17

Example Circuits (Continued) PART PART NUMBER U LM2743 1 Q FDS6898A 1 D MBR0520LTI 1 L DO3316P-682 16SP100M 10SP56M VJ1206Y104KXXA CC BOOT VJ0805A182KXAA ...

Page 18

Example Circuits (Continued) PART PART NUMBER U LM2743 1 Q FDS6898A 1 D MBR0520LTI 1 L DO3316P-332 16SP100M 6SP220M VJ1206Y104KXXA CC BOOT VJ805Y222KXXA ...

Page 19

Evaluation Board Schematic PART PART NUMBER U LM2743 1 Q FDS6898A 1 D MBR0520LTI 1 L DO3316P-222 1 J NOT USED 1 C12 20SP120M C16 4SP560M C4,C5,C10, VJ1206Y104KXXA C13,C19 C11 VJ805Y332KXXA C7 VJ0805Y123KXXA FIGURE 15. 3.3V to 1.2V @ 4A, ...

Page 20

Evaluation Board Schematic PART PART NUMBER C8 VJ1206Y122KXXA C9 VJ0805A270KXAA C1, C2, C3, C6, NOT USED C14, C15, C17, C18, C20 R6 CRCW08051002F R7 CRCW08051002F R2 CRCW08051103F R5 CRCW08052551F R4 CRCW08051501F R1 CRCW080510R0F R3 CRCW08054022F R11 CRCW08050R00F R8 CRCW08051003J PCB ...

Page 21

PCB Layout for the Evaluation Board (Continued) Top Copper Bottom Silkscreen 21 20095237 20095238 www.national.com ...

Page 22

PCB Layout for the Evaluation Board www.national.com (Continued) Bottom Copper 22 20095239 ...

Page 23

... BANNED SUBSTANCE COMPLIANCE National Semiconductor certifies that the products and packing materials meet the provisions of the Customer Products Stewardship Specification (CSP-9-111C2) and the Banned Substances and Materials of Interest Specification (CSP-9-111S2) and contain no ‘‘Banned Substances’’ as defined in CSP-9-111S2. ...

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