Datasheet
Table Of Contents
- 1 Introduction
- 2 TPS54386EVM Electrical Performance Specifications
- 3 Schematic
- 3.1 Sequencing Jump (JP3)
- 3.2 Enable Jumpers (JP1 and JP2)
- 3.3 Test Point Descriptions
- 3.3.1 Input Voltage Monitoring (TP1 and TP2)
- 3.3.2 Channel 1 Output Voltage Monitoring (TP3 and TP4)
- 3.3.3 Channel 1 Loop Analysis (TP5, TP6, TP7 and TP8)
- 3.3.4 Channel 1 Switching Waveforms (TP9 and TP10)
- 3.3.5 TPS54386 Device Ground (TP11)
- 3.3.6 Channel 2 Switching Waveforms (TP12 and TP13)
- 3.3.7 Channel 2 Loop Analysis (TP14, TP15, TP16 and TP17)
- 3.3.8 Output Voltage Monitoring (TP18 and TP19)
- 4 4 Test Set Up
- 5 TPS54386EVM Typical Performance Data and Characteristic Curves
- 6 EVM Assembly Drawings and Layout
- 7 List of Materials

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2 TPS54386EVM Electrical Performance Specifications
TPS54386EVM Electrical Performance Specifications
Table 1. Electrical Performance Specifications
SYMBOL PARAMETER MIN TYP MAX UNITS
Input Characterstics
V
IN
Input coltage 9.6 12 13.2 V
I
IN
Input current V
IN
= nom, I
OUT
= max - 1.6 2.0 A
No load input current V
IN
= nom, I
OUT
= 0 A - 12 20 mA
V
IN_UVLO
Input UVLO I
OUT
= min to max 4.0 4.2 4.4 V
Output Characterstics
V
OUT1
Output voltage 1 V
IN
= nom, I
OUT
= nom 4.85 5.0 5.15
V
V
OUT2
Output voltage 2 V
IN
= nom, I
OUT
= nom 3.20 3.3 3.40
Line regulation V
IN
= min to max - - 1%
Load regulation IOUT = min to max - - 1%
V
OUT_ripple
Output voltage ripple V
IN
= nom, I
OUT
= max - - 30 mV
pp
I
OUT1
Output current 1 V
IN
= min to max 0 2.0
I
OUT2
Output current 2 V
IN
= min to max 0 2.0
Output over current
A
I
OCP1
V
IN
= nom, V
OUT
= V
OUT1
- 5% 3.1 3.7 4.5
Channel 1
Output over current
I
OCP2
V
IN
= nom, V
OUT
= V
OUT2
- 5% 3.1 3.7 4.5
Channel 2
Systems Characterstics
F
SW
Switching frequency 510 630 750 kHz
η pk Peak efficiency V
IN
= nom - 90% -
η Full load efficiency V
IN
= nom, I
OUT
= max - 85% -
Operating temperature ° C
Top V
IN
= min to max, I
OUT
= min to max 0 25 60
range
4 A 12-V Input, 5.0-V and 3.3-V Output, 2-A Non-Synchronous Buck Converter SLUU286 – March 2008
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