LM5165 Synchronous Buck Converters

Texas Instruments offers its LM5165 3 V to 65 V, 150 mA synchronous buck converters with ultra-low IQ

Image of Texas Instruments' LM5165 Synchronous Buck ConvertersTexas Instruments' LM5165 converters are compact, easy-to-use, 3 V to 65 V, ultra-low IQ synchronous buck converters with high efficiency over wide input voltage and load current ranges. With integrated high-side and low-side power MOSFETs, up to 150 mA of output current can be delivered at fixed output voltages of 3.3 V or 5 V, or at an adjustable output. The converters are designed to simplify implementation while providing options to optimize the performance of the target application. Pulse frequency modulation (PFM) mode is selected for optimal light-load efficiency or constant on-time (COT) control for nearly constant operating frequency. Neither control scheme requires loop compensation while still providing excellent line and load transient response and short PWM on-time for large step-down conversion ratios.

The high-side P-channel MOSFET can operate at 100% duty cycle for lowest dropout voltage and does not require a bootstrap capacitor for gate drive. Also, the current limit set point is adjustable to optimize inductor selection for a particular output current requirement. Selectable/adjustable startup timing options include minimum delay (no soft start), internally fixed (900 µs), and externally programmable soft start via an external capacitor. An open-drain PGOOD indicator can be used for sequencing and output voltage monitoring. The LM5165 converters are qualified to automotive AEC-Q100 Grade 1 and are available in a VSON-10 package with 0.5 mm pin pitch.

Features
  • Wide input voltage range of 3 V to 65 V
  • Fixed (3.3 V, 5 V) or adjustable output voltages
  • Maximum output current as high as 150 mA
  • 10.5 µA no load quiescent current
  • -40°C to 150°C junction temperature range
  • Selectable PFM or COT mode operation
  • Switching frequency as high as 600 kHz
  • Diode emulation mode and pulse skipping for ultra-high light-load efficiency performance
  • Integrated 2 Ω PMOS buck switch
    • Supports 100% duty cycle for low dropout
  • Integrated 1 Ω NMOS synchronous rectifier
    • Eliminates external rectifier diode

LM5165 Synchronous Buck Converters

ImageManufacturer Part NumberDescriptionVoltage - Input (Min)Current - OutputAvailable QuantityPriceView Details
IC REG BUCK ADJ 150MA 10VSONLM5165QDRCTQ1IC REG BUCK ADJ 150MA 10VSON3V150mA21705 - Immediate$4.13View Details
IC REG BUCK 5V 150MA 10VSONLM5165XQDRCTQ1IC REG BUCK 5V 150MA 10VSON3V150mA264 - Immediate$4.13View Details
IC REG BUCK 3.3V 150MA 10VSONLM5165YQDRCTQ1IC REG BUCK 3.3V 150MA 10VSON3V150mA4502 - Immediate$4.13View Details
IC REG BUCK ADJ 150MA 10VSONLM5165DRCTIC REG BUCK ADJ 150MA 10VSON3V150mA5740 - Immediate$3.65View Details
IC REG BUCK 5V 150MA 10VSONLM5165XDRCTIC REG BUCK 5V 150MA 10VSON3V150mA3615 - Immediate$3.65View Details
IC REG BUCK 3.3V 150MA 10VSONLM5165YDRCTIC REG BUCK 3.3V 150MA 10VSON3V150mA2500 - Immediate$3.65View Details
IC REG BUCK ADJ 150MA 10VSONLM5165DRCRIC REG BUCK ADJ 150MA 10VSON3V150mA4713 - Immediate$3.12View Details
IC REG BUCK ADJ 150MA 10VSONLM5165QDRCRQ1IC REG BUCK ADJ 150MA 10VSON3V150mA7258 - Immediate$3.60View Details
IC REG BUCK 5V 150MA 10VSONLM5165XDRCRIC REG BUCK 5V 150MA 10VSON3V150mA7926 - Immediate$3.12View Details
IC REG BUCK 5V 150MA 10VSONLM5165XQDRCRQ1IC REG BUCK 5V 150MA 10VSON3V150mA0 - Immediate$3.33View Details
IC REG BUCK 3.3V 150MA 10VSONLM5165YDRCRIC REG BUCK 3.3V 150MA 10VSON3V150mA3319 - Immediate$3.12View Details
IC REG BUCK 3.3V 150MA 10VSONLM5165YQDRCRQ1IC REG BUCK 3.3V 150MA 10VSON3V150mA0 - Immediate$3.33View Details

Evaluation Boards

ImageManufacturer Part NumberDescriptionOutputs and TypePower - OutputAvailable QuantityPriceView Details
EVAL BOARD FOR LM5165LM5165EVM-HD-C50XEVAL BOARD FOR LM51651 Non-Isolated Output-1 - Immediate$50.79View Details
EVAL BOARD FOR LM5165LM5165EVM-HD-P50AEVAL BOARD FOR LM51651 Non-Isolated Output-1 - Immediate$50.79View Details
Published: 2016-05-04