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LM5002

AKTIV

Boost-, Flyback-, Sepic-Wandler, großer Eingangsspannungsbereich von 3,1-75 V, 0,5 A, Strommodus

Eine neuere Version dieses Produkts ist verfügbar

Selbe Funktionalität wie der verglichene Baustein bei abweichender Anschlussbelegung
LM51581 AKTIV Aufwärts-, Flyback- & SEPIC-Wandler, 1,5 A, 85 V, 2,2 MHz, großer VIN-Bereich, mit Dual-Random-Sprea Newer device with higher Vout capability and higher switch current

Produktdetails

Rating Catalog Topology Boost, Flyback, Forward, SEPIC Vin (max) (V) 75 Vin (min) (V) 3.1 Vout (max) (V) 75 Vout (min) (V) 1.26 Switch current limit (typ) (A) 0.5 Features Enable, Frequency synchronization, Nonsynchronous rectification Operating temperature range (°C) -40 to 125 Iq (typ) (A) 0.0031 Duty cycle (max) (%) 85
Rating Catalog Topology Boost, Flyback, Forward, SEPIC Vin (max) (V) 75 Vin (min) (V) 3.1 Vout (max) (V) 75 Vout (min) (V) 1.26 Switch current limit (typ) (A) 0.5 Features Enable, Frequency synchronization, Nonsynchronous rectification Operating temperature range (°C) -40 to 125 Iq (typ) (A) 0.0031 Duty cycle (max) (%) 85
SOIC (D) 8 29.4 mm² 4.9 x 6 WSON (NGT) 8 16 mm² 4 x 4
  • Integrated 75-V N-channel MOSFET
  • Ultra-wide input voltage range from 3.1 V to 75 V
  • Integrated high voltage bias regulator
  • Adjustable output voltage
  • 1.5% output voltage accuracy
  • Current mode control with selectable compensation
  • Wide bandwidth error amplifier
  • Integrated current sensing and limiting
  • Integrated slope compensation
  • 85% maximum duty cycle limit
  • Single resistor oscillator programming
  • Oscillator synchronization capability
  • Enable and undervoltage lockout (UVLO) pin
  • 8-pin SOIC package
  • 8-pin WSON package
  • Thermal shutdown with hysteresis
  • Integrated 75-V N-channel MOSFET
  • Ultra-wide input voltage range from 3.1 V to 75 V
  • Integrated high voltage bias regulator
  • Adjustable output voltage
  • 1.5% output voltage accuracy
  • Current mode control with selectable compensation
  • Wide bandwidth error amplifier
  • Integrated current sensing and limiting
  • Integrated slope compensation
  • 85% maximum duty cycle limit
  • Single resistor oscillator programming
  • Oscillator synchronization capability
  • Enable and undervoltage lockout (UVLO) pin
  • 8-pin SOIC package
  • 8-pin WSON package
  • Thermal shutdown with hysteresis

The LM5002 high voltage switch mode regulator features all of the functions necessary to implement efficient high voltage boost, flyback, SEPIC and forward converters, using few external components. This easy to use regulator integrates a 75-V N-Channel MOSFET with a 0.5-A peak current limit. Current mode control provides inherently simple loop compensation and line-voltage feed-forward for superior rejection of input transients. The switching frequency is set with a single resistor and is programmable up to 1.5 MHz. The oscillator can also be synchronized to an external clock. Additional protection features include: current limit, thermal shutdown, undervoltage lockout and remote shutdown capability. The device is available in both 8-pin SOIC and 8-pin WSON packages. To create a custom regulator design, use the LM5002 with WEBENCH® Power Designer.

The LM5002 high voltage switch mode regulator features all of the functions necessary to implement efficient high voltage boost, flyback, SEPIC and forward converters, using few external components. This easy to use regulator integrates a 75-V N-Channel MOSFET with a 0.5-A peak current limit. Current mode control provides inherently simple loop compensation and line-voltage feed-forward for superior rejection of input transients. The switching frequency is set with a single resistor and is programmable up to 1.5 MHz. The oscillator can also be synchronized to an external clock. Additional protection features include: current limit, thermal shutdown, undervoltage lockout and remote shutdown capability. The device is available in both 8-pin SOIC and 8-pin WSON packages. To create a custom regulator design, use the LM5002 with WEBENCH® Power Designer.

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