TPS61041-Q1

AKTIV

1,8 V bis 6 V-Eingangsbereich, 250-mA-Aufwärtswandler, AEC-Q100-qualifiziert

Produktdetails

Vin (min) (V) 1.8 Vin (max) (V) 6 Topology Boost Type Converter Switching frequency (min) (kHz) 50 Switching frequency (max) (kHz) 1000 Features Enable, Nonsynchronous Vout (min) (V) 1.8 Vout (max) (V) 28 Rating Automotive Operating temperature range (°C) -40 to 125 Iq (typ) (A) 0.000028
Vin (min) (V) 1.8 Vin (max) (V) 6 Topology Boost Type Converter Switching frequency (min) (kHz) 50 Switching frequency (max) (kHz) 1000 Features Enable, Nonsynchronous Vout (min) (V) 1.8 Vout (max) (V) 28 Rating Automotive Operating temperature range (°C) -40 to 125 Iq (typ) (A) 0.000028
SOT-23 (DBV) 5 8.12 mm² 2.9 x 2.8
  • Qualified for Automotive Applications
  • 1.8-V to 6-V Input Voltage Range
  • Adjustable Output Voltage Range Up to 28 V
  • 400-mA (TPS61040-Q1) and 250-mA (TPS61041-Q1) Internal Switch Current
  • Up to 1-MHz Switching Frequency
  • 28-µA Typical No Load Quiescent Current
  • 1-µA Typical Shutdown Current
  • Internal Soft Start
  • Space-Saving, 5-Pin SOT-23 Package
  • Qualified for Automotive Applications
  • 1.8-V to 6-V Input Voltage Range
  • Adjustable Output Voltage Range Up to 28 V
  • 400-mA (TPS61040-Q1) and 250-mA (TPS61041-Q1) Internal Switch Current
  • Up to 1-MHz Switching Frequency
  • 28-µA Typical No Load Quiescent Current
  • 1-µA Typical Shutdown Current
  • Internal Soft Start
  • Space-Saving, 5-Pin SOT-23 Package

The TPS6104x-Q1 devices are high-frequency boost converters for automotive applications. The devices are ideal for generating output voltages up to 28 V from a pre-regulated low voltage rail, dual-cell NiMH/NiCd or a single-cell Li-Ion battery, supporting input voltages from 1.8 V to 6 V.

The TPS6104x-Q1 devices operate with a switching frequency up to 1 MHz, allowing the use of small external components such as ceramic as well as tantalum output capacitors. Combined with the space-saving, 5-pin SOT-23 package, the TPS6104x-Q1 devices accomplish a small overall solution size. The TPS61040-Q1 device has an internal 400-mA switch current limit, while the TPS61041-Q1 device has a 250-mA switch current limit, offering lower output voltage ripple and allowing the use of a smaller form factor inductor for lower-power applications.

The TPS6104x-Q1 devices operate in a pulse frequency modulation (PFM) scheme with constant peak current control. The combination of low quiescent current (28 µA typical) and the optimized control scheme enable operation of the devices at high efficiencies over the entire load current range.

The TPS6104x-Q1 devices are high-frequency boost converters for automotive applications. The devices are ideal for generating output voltages up to 28 V from a pre-regulated low voltage rail, dual-cell NiMH/NiCd or a single-cell Li-Ion battery, supporting input voltages from 1.8 V to 6 V.

The TPS6104x-Q1 devices operate with a switching frequency up to 1 MHz, allowing the use of small external components such as ceramic as well as tantalum output capacitors. Combined with the space-saving, 5-pin SOT-23 package, the TPS6104x-Q1 devices accomplish a small overall solution size. The TPS61040-Q1 device has an internal 400-mA switch current limit, while the TPS61041-Q1 device has a 250-mA switch current limit, offering lower output voltage ripple and allowing the use of a smaller form factor inductor for lower-power applications.

The TPS6104x-Q1 devices operate in a pulse frequency modulation (PFM) scheme with constant peak current control. The combination of low quiescent current (28 µA typical) and the optimized control scheme enable operation of the devices at high efficiencies over the entire load current range.

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Technische Dokumentation

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Typ Titel Datum
* Data sheet TPS6104x-Q1 Low-Power DC-DC Boost Converter in SOT-23 Package datasheet (Rev. D) PDF | HTML 25 Jan 2016
Application brief High-Side MOSFET Driver Power Supply Using the TPS61041-Q1 PDF | HTML 18 Apr 2022
Functional safety information TPS6104x-Q1 Functional Safety, FIT Rate, and Failure Mode Distribution 22 Mai 2020
Application note Performing Accurate PFM Mode Efficiency Measurements (Rev. A) 11 Dez 2018
Application note Optimizing Transient Response of Internally Compensated DC-DC Converters (Rev. B) 29 Nov 2017
Application note Extending the Soft Start Time Without a Soft Start Pin (Rev. B) 15 Jun 2017
Analog Design Journal Design considerations for a resistive feedback divider in a DC/DC converter 26 Apr 2012

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Evaluierungsplatine

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Referenzdesigns

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Design guide: PDF
Schaltplan: PDF
Gehäuse Pins Herunterladen
SOT-23 (DBV) 5 Optionen anzeigen

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