Texas Instruments LM25088 Скачать руководство пользователя страница 2

Powering and Loading Considerations

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2.1

Quick Setup Procedure

1. Set the power supply current limit to 10A. Turn off the power supply. Connect the power supply to the

VIN terminals.

2. Connect the load, with a 7A capability, to the VOUT terminals.

3. Slowly increase the load while monitoring the output, VOUT should be in regulation with a nominal 5V

output.

4. Slowly sweep the input voltage from 5.5V to 36V, VOUT should remain in regulation with a nominal 5V

output

5. Temporarily short the EN pin to check the shutdown function, Also, EN pin can be set between 0.4V

and 1.2V, for example, by shorting EN pin to ground with a diode, to check the standby function.

6. Increase the load beyond the rated current to check the current limiting. The output current should limit

at approximately 10A. The LM25088-1 board will enter cycle-by-cycle current limiting, while LM25088-2
is configured for a hiccup mode restart. Cooling is critical in this step.

2.2

Air Flow

Prolonged operation with high input voltage (>24V) at full load will cause the LM25088 and MOSFETs to
overheat and could potentially result in thermal shutdown. A fan with a minimum of 100LFM should always
be used to cool the LM25088 evaluation board.

2.3

Powering Up

It is suggested that the load be kept low during the first power up. Set the current limit of the source
supply to provide about 1.5 times the anticipated wattage of the load. A quick efficiency check is the best
way to confirm that everything is operating properly. If something is amiss one can be reasonably sure
that it will affect the efficiency adversely. Few parameters can be correct in a switching power supply
without creating losses and potentially damaging heat.

2.4

Over Current Protection

The LM25088-1 and LM25088-2 evaluation boards are both configured with over-current protection
schemes. The LM25088-1 employs a cycle-by-cycle current limiting, while the LM25088-2 is configured for
a hiccup mode restart. Please refer the LM25088/LM25088Q Wide Input Range Non-Synchronous Buck
Controller 
(

SNVS609

) data sheet for more information on RES pin.

2.5

Synchronization

A Sync pin has been provided on the evaluation board. This pin can be used to synchronize the LM25088
to an external clock. It is recommended not to exceed 500 kHz while synchronizing. Refer the LM25088
datasheet for complete information.

2.6

Active Loads

When using electronic load, it is strongly recommended to power up the evaluation board at light load and
then slowly increase the load. This is necessary as most of the electronic loads do not draw any current till
the output reaches an internally set point; this can result in soft-start function to not work as desired and
can trip the current sense comparator. Electronic loads, in general, are best suited for monitoring steady
state waveforms. If it is desired to power up the evaluation board at maximum load, resistor banks can be
used. This will ensure a soft-start and evaluation board will perform as desired. Ensure that there is
sufficient cooling for both the resistor banks and the LM25088 evaluation board, while running at full load.

2

AN-1931 LM25088 Evaluation Board

SNVA383D – November 2008 – Revised April 2013

Submit Documentation Feedback

Copyright © 2008–2013, Texas Instruments Incorporated

Содержание LM25088

Страница 1: ...or silkscreen The printed circuit board consists of two layers 2 ounce of copper top and bottom and the board size is 2 55x1 5x0 5 inches Specification LM25088 1 LM25088 2 Input Voltage Range 5 5V to 36V 5 5V to 36V Output Voltage 5 0V 5 0V Max Average Load Current 7A 7A Load Regulation 2 2 Current Limit Type Cycle by cycle current limit Hiccup Mode Restart Frequency 250 kHz 5 Oscillator Dithering...

Страница 2: ...onably sure that it will affect the efficiency adversely Few parameters can be correct in a switching power supply without creating losses and potentially damaging heat 2 4 Over Current Protection The LM25088 1 and LM25088 2 evaluation boards are both configured with over current protection schemes The LM25088 1 employs a cycle by cycle current limiting while the LM25088 2 is configured for a hicc...

Страница 3: ...oards Conditions Input Voltage 24VDC Output Current 4A to 7A Bandwidth Limit 20 MHz Traces Bottom Trace Output Current Amps div 2A Top Trace Output Voltage response Volts div 100 mV Horizontal Resolution 500 µs div Figure 3 Transient Response 3 SNVA383D November 2008 Revised April 2013 AN 1931 LM25088 Evaluation Board Submit Documentation Feedback Copyright 2008 2013 Texas Instruments Incorporated...

Страница 4: ...Input Voltage 24VDC Output Current 7A Bandwidth Limit 20 MHz Trace Output Ripple Volts div 50 mV Horizontal Resolution 5 0 µs div Figure 5 Output Voltage Ripple Figure 6 Conducted Emissions Measured at the Input of a LM25088 1 Evaluation Board 4 AN 1931 LM25088 Evaluation Board SNVA383D November 2008 Revised April 2013 Submit Documentation Feedback Copyright 2008 2013 Texas Instruments Incorporate...

Страница 5: ...5088 2 Evaluation Boards Figure 7 LM25088 1 W Dithering Schematic Figure 8 LM25088 2 W Restart Schematic 5 SNVA383D November 2008 Revised April 2013 AN 1931 LM25088 Evaluation Board Submit Documentation Feedback Copyright 2008 2013 Texas Instruments Incorporated ...

Страница 6: ...rata GRM188R72A104KA35D CAP CER 1 µF 100V X7R 0603 LM25088 1 C14 0 022 µF C0603 Murata GRM188R71C223KA01D CAP CER 22000 pF 16V 10 X7R LM25088 0603 2 D1 Schottky D2PAK On Semi MBRB1545CT Schottky Rectifiers 15A 45V Diode D2 NU SOD123 NU NU NU L1 6 8 µH HC9 series Coiltronics HC9 6R8 R INDUCTOR HIGH CURRENT 6 8 µH Q1 MOSFET SO 8 Vishay IR SI7848DP MOSFET N CH 40V PWR PAK SO8 R1 54 9 kΩ R0805 Rohm MC...

Страница 7: ...e 9 LM25088 1 and LM25088 2 Top Layer Figure 10 LM25088 1 and LM25088 2 Bottom Layer 7 SNVA383D November 2008 Revised April 2013 AN 1931 LM25088 Evaluation Board Submit Documentation Feedback Copyright 2008 2013 Texas Instruments Incorporated ...

Страница 8: ... Figure 11 LM25088 2 Silk Screen Figure 12 LM25088 1 Silk Screen 8 AN 1931 LM25088 Evaluation Board SNVA383D November 2008 Revised April 2013 Submit Documentation Feedback Copyright 2008 2013 Texas Instruments Incorporated ...

Страница 9: ...esponsible for compliance with all legal regulatory and safety related requirements concerning its products and any use of TI components in its applications notwithstanding any applications related information or support that may be provided by TI Buyer represents and agrees that it has all the necessary expertise to create and implement safeguards which anticipate dangerous consequences of failur...

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