LM5022LEDEVAL National Semiconductor, LM5022LEDEVAL Datasheet

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LM5022LEDEVAL

Manufacturer Part Number
LM5022LEDEVAL
Description
BOARD EVALUATION FOR LM5022
Manufacturer
National Semiconductor
Series
PowerWise®r
Datasheets

Specifications of LM5022LEDEVAL

Current - Output / Channel
1A
Outputs And Type
1, Non-Isolated
Voltage - Output
40V
Features
Dimmable
Voltage - Input
10 ~ 14V
Utilized Ic / Part
LM5022
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
© 2007 National Semiconductor Corporation
LM5022 Boost LED Driver
Evaluation Board
Specifications Of The Board
This evaluation board has been designed to demonstrate the
LM5022 low-side controller as a step-up (boost) regulator for
delivering constant current to an array of high power LEDs. A
Example Circuit
The example circuit which comes on the evaluation board
powers ten series-connected white LEDs at a forward current,
I
F
, of 1A ±10% from an input of 10V to 14V. White LEDs based
300133
FIGURE 1. Circuit Schematic
FIGURE 2. Efficiency
National Semiconductor
Application Note 1605
Chris Richardson
October 2007
complete schematic for all the components is shown in Figure
1. The board is two layers with components and power paths
in 2oz. copper. The board is 62mil FR4 laminate and the Bill
of Materials table lists all the components used in the example
circuit.
on InGaN technology have a forward voltage, V
4.0V, so the expected total output voltage is therefore 30V to
40V. The switching frequency is 300 kHz. Efficiency for the
converter is 93% at an input voltage of 12.0V and an output
current of 1.0A.
30013302
www.national.com
F
, of 3.0V to
30013301

Related parts for LM5022LEDEVAL

LM5022LEDEVAL Summary of contents

Page 1

... The example circuit which comes on the evaluation board powers ten series-connected white LEDs at a forward current ±10% from an input of 10V to 14V. White LEDs based F © 2007 National Semiconductor Corporation National Semiconductor Application Note 1605 Chris Richardson October 2007 complete schematic for all the components is shown in Figure 1 ...

Page 2

Powering The Converter The input voltage should be connected between the VIN and GND terminals on the left side of the board. The series-con- nected chain of LEDs should be connected between the LED Enabling The Converter Once the input ...

Page 3

Testing The Converter Figure 5 shows a block diagram of connections for making measurements of efficiency. The wires used for making con- nections at the input should be rated to at least 5A of contin- uous current and should be ...

Page 4

Typical Performance Characteristics (T = 25°C and V = 12V unless noted Output Current Vs. Input Voltage Switch Node Voltage Dimming Response (I www.national.com 30013306 30013308 Rising) F 30013310 4 Output Current Vs. Temperature 30013307 Output Current Ripple ...

Page 5

Bill of Materials ID Part Number U1 LM5022 U2 Not Used Q1 Si4850EY Q2 DMMT5401 Q3 TN0200K D1 CMSH2-60 D2 CMDZ47L L1 PF0552.223NL Cin1 Cin2 C3225X7R1E685M Co C4532X7R1H475M Cf C3216X7R1E105K Cinx Cox C2012X7R2A104M C1 VJ0805Y181KXXAT C2 VJ0805Y182KXXAT Css VJ0805Y222KXXAT Csns ...

Page 6

PC Board Layout www.national.com PCB Top Layer and Top Overlay 6 30013312 ...

Page 7

PCB Bottom Layer 7 30013313 www.national.com ...

Page 8

... National Semiconductor and the National Semiconductor logo are registered trademarks of National Semiconductor Corporation. All other brand or product names may be trademarks or registered trademarks of their respective holders. ...

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