SLUUCF8 March   2021 TPS53676

 

  1.   Trademarks
  2. Introduction
  3. Features
  4. Applications
  5. System Description
    1. 4.1 Phase configuration selection
    2. 4.2 Jumper details
    3. 4.3 On-board load transient
  6. Test Equipment
  7. Test Procedure
    1. 6.1 Start-up Test
    2. 6.2 Shut down Test
    3. 6.3 Steady-state Test
    4. 6.4 Load Transient Test
    5. 6.5 Efficiency Plot
    6. 6.6 Bode plot
  8. Fusion GUI
  9. Evaluation Module (EVM) Hardware
  10. Schematic and Bill of Materials
  11. 10Read This First
    1. 10.1 About This Manual
    2. 10.2 Glossary
    3. 10.3 Related Documentation
    4. 10.4 Support Resources

Test Equipment

Table 5-1 Required Test Equipment
Voltage sourcesOnly one DC input voltage source is needed (VIN). Choose a VIN input voltage source with a range between 0 V and 14 V and a variable DC source capable of supplying 40 A (dc). Connect VIN to terminals J6 and J7 as shown in Figure 5-1. For greater control during testing, remove jumpers from J2 and J4 to bypass the onboard 5-V power supply. Limit this external supply to 1 A (dc).
MultimetersRecommended to use two separate multimeters, one meter to measure VIN and the other to measure VOUT.
Output LoadAn electronic load is recommended for the test setup shown in Figure 5-1. To observe the Rail A at full load, ensure that the electronic load is capable of sinking 250 A at 0.88-V (Rail B, 50 A at 0.8 V)
OscilloscopeUse an oscilloscope to measure output noise and ripple. Use a coaxial cable to measure output ripple across J15 (VOUTA) and J16 (VOUTB)
USB-to-GPIO Interface AdapterA communications adapter is required between the EVM and the host computer. This EVM is designed to use the Texas Instruments USB-to-GPIO adapter connected to J12. To purchase this adapter, visit the TI USB-to_GPIO tool page
Fan During prolonged operation at high load (More than 300 A), it is necessary to provide forced air cooling with a small fan aimed at the EVM. Maintain the temperature of the devices on the EVM under115°C
GUID-4D0AB3EC-D48B-4B4E-8EE9-66F30AD021CA-low.jpgFigure 5-1 EVM Test Setup Showing the Power Supply, Load, and Oscilloscope Connections
Table 5-2 Recommended Wire Size
VOLTAGE (V)CONNECTRECOMMENDED WIRE SIZEMAXIMUM TOTAL WIRE LENGTH (FEET)
RETURNINPUTOUTPUT
12VIN to T1, GND to T22 × AWG #822n/a
5 (if J2 open)5VIN to J12 × AWG #1822n/a
0.88(RAILA)Load+ to T3, T4, and T5, Load- to T7, T8, and T96 × AWG #43n/a3
1(RAILB)Load+ to T10, Load- to T9 and T122 × AWG #81n/a1