Startseite Energiemanagement AC/DC- und DC/DC-Controller (externer FET)

UCC25702

AKTIV

Unsymmetrischer PWM-Controller, 15 V VCC, 1-A-Treiber, 700 KHz Spannungsmodus mit 9,6 V/8,8 V UVLO,

Produktdetails

Vin (max) (V) 15 Operating temperature range (°C) -40 to 85 Control mode Feedforward, Voltage Topology Boost, Flyback, Forward Rating Catalog Features Adjustable switching frequency, Current limiting, Multi-topology, Programmable max duty cycle, Soft start, Synchronization pin Duty cycle (max) (%) 99
Vin (max) (V) 15 Operating temperature range (°C) -40 to 85 Control mode Feedforward, Voltage Topology Boost, Flyback, Forward Rating Catalog Features Adjustable switching frequency, Current limiting, Multi-topology, Programmable max duty cycle, Soft start, Synchronization pin Duty cycle (max) (%) 99
PDIP (N) 14 181.42 mm² 19.3 x 9.4 SOIC (D) 14 51.9 mm² 8.65 x 6 TSSOP (PW) 14 32 mm² 5 x 6.4
  • 700kHz Operation
  • Integrated Oscillator/Voltage Feed Forward Compensation
  • Accurate Duty Cycle Limit
  • Accurate Volt-second Clamp
  • Optocoupler Interface
  • Fault Counting Shutdown
  • Fault Latch off or Automatic Shutdown
  • Soft Stop Optimized for Synchronous Rectification
  • 1A Peak Gate Drive Output
  • 130µA Start-up Current
  • 750µA Operating Current
  • 700kHz Operation
  • Integrated Oscillator/Voltage Feed Forward Compensation
  • Accurate Duty Cycle Limit
  • Accurate Volt-second Clamp
  • Optocoupler Interface
  • Fault Counting Shutdown
  • Fault Latch off or Automatic Shutdown
  • Soft Stop Optimized for Synchronous Rectification
  • 1A Peak Gate Drive Output
  • 130µA Start-up Current
  • 750µA Operating Current

The UCC35701/UCC35702 family of pulse width modulators is intended for isolated switching power supplies using primary side control. They can be used for both off-line applications and DC/DC converter designs such as in a distributed power system architecture or as a telecom power source.

The devices feature low startup current, allowing for efficient off-line starting, yet have sufficient output drive to switch power MOSFETs in excess of 500kHz.

Voltage feed forward compensation is operational over a 5:1 input range and provides fast and accurate response to input voltage changes over a 4:1 range. An accurate volt-second clamp and maximum duty cycle limit are also featured.

Fault protection is provided by pulse by pulse current limiting as well as the ability to latch off after a programmable number of repetitive faults has occurred.

Two UVLO options are offered. UCC35701 family has turn-on and turn-off thresholds of 13V/9V and UCC35702 family has thresholds of 9.6V/8.8V.

The UCC35701/2 and the UCC25701/2 are offered in the 14 pin SOIC (D), 14 pin PDIP (N) or in 14 pin TSSOP (PW) packages. The UCC15701/2 is offered in the 14 pin CDIP (J) package.

The UCC35701/UCC35702 family of pulse width modulators is intended for isolated switching power supplies using primary side control. They can be used for both off-line applications and DC/DC converter designs such as in a distributed power system architecture or as a telecom power source.

The devices feature low startup current, allowing for efficient off-line starting, yet have sufficient output drive to switch power MOSFETs in excess of 500kHz.

Voltage feed forward compensation is operational over a 5:1 input range and provides fast and accurate response to input voltage changes over a 4:1 range. An accurate volt-second clamp and maximum duty cycle limit are also featured.

Fault protection is provided by pulse by pulse current limiting as well as the ability to latch off after a programmable number of repetitive faults has occurred.

Two UVLO options are offered. UCC35701 family has turn-on and turn-off thresholds of 13V/9V and UCC35702 family has thresholds of 9.6V/8.8V.

The UCC35701/2 and the UCC25701/2 are offered in the 14 pin SOIC (D), 14 pin PDIP (N) or in 14 pin TSSOP (PW) packages. The UCC15701/2 is offered in the 14 pin CDIP (J) package.

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Typ Titel Datum
* Data sheet Advanced Voltage Mode Pulse Width Modulator datasheet (Rev. C) 17 Jun 2005

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