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TPS54318EVM-512 - 

Evaluation Board for SWIFT™ Regulator, DC-DC Synchronous Buck Converter, 3A output

TPS54318EVM-512 - Evaluation Board for SWIFT™ Regulator, DC-DC Synchronous Buck Converter, 3A output

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製造商產品編號:
TPS54318EVM-512
訂購代碼:
2379507
庫存量 :
不再生產

產品訊息

:
No SVHC (27-Jun-2018)
:
Compensation Components are External to IC and External Divider for Adjustable Output Voltage
:
Texas Instruments
:
TPS54318
:
Power Management - Voltage Regulator
:
Synchronous Buck Converter
:
Eval Board TPS54318
:
-
:
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產品總覽

The TPS54318EVM-512 is an evaluation module for TPS54318 6V Input, 1.8V Output, 3A SWIFT Regulator. The TPS54318 dc/dc converter is designed to provide up to a 3A output from an input voltage source of 2.95V to 6V. This evaluation module is designed to demonstrate the small printed circuit board areas that may be achieved when designing with the TPS54318 regulator. The switching frequency is externally set at a nominal 1000KHz. The high side and low side MOSFETs are incorporated inside the TPS54318 package along with the gate drive circuitry. The low drain to source on resistance of the MOSFETs allow the TPS54318 to achieve high efficiencies and helps keep the junction temperature low at high output currents. The TPS54318 provides adjustable slow start and undervoltage lockout inputs. The absolute maximum input voltage is 7V for the evaluation module.
  • Two 30mR (typical) MOSFETs for high efficiency at 3A loads
  • 200KHz to 2MHz switching frequency
  • 0.8V ± 1% voltage reference over temperature
  • Synchronises to external clock
  • Adjustable slow start/sequencing
  • UV and OV power good output
  • Low operating and shutdown quiescent current
  • Safe start up into pre biased output
  • Thermally enhanced 3mm × 3mm 16 pin QFN

應用

Power Management, Embedded Design & Development, Signal Processing, Communications & Networking, Portable Devices, Consumer Electronics, Fibre Optics

警告

This EVM should be operated within the input range of 3V to 6V and the output current range of 0A to 3A. Exceeding the specified input range may cause damage to the EVM.

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