UCC28086

ACTIVE

Current mode push-pull PWM with prog. slope comp, 100µs soft start, 4.3/4.1 UVLO, -40°C to 85°C

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Product details

Parameters

Topology Half-Bridge, Push-Pull Control method Current VCC (Min) (V) 4.3 VCC (Max) (V) 15 Duty cycle (Max) (%) 50 UVLO thresholds on/off (V) 4.3/4.1 Frequency (Max) (kHz) 1000 Operating temperature range (C) -40 to 85 Gate drive (Typ) (A) 1 Features Current Limiting, Multi-topology, Programmable Slope Compensation, Soft Start Rating Catalog open-in-new Find other PWM controllers & resonant controllers

Package | Pins | Size

PDIP (P) 8 93 mm² 9.81 x 9.43 SOIC (D) 8 19 mm² 3.91 x 4.9 TSSOP (PW) 8 19 mm² 3 x 6.4 open-in-new Find other PWM controllers & resonant controllers

Features

  • Programmable Slope Compensation
  • Internal Soft-Start on the UCC38083/4
  • Cycle-by-Cycle Current Limiting
  • Low Start-Up Current of 120 µA and 1.5 mA Typical Run Current
  • Single External Component Oscillator Programmable from 50 kHz to 1 MHz
  • High-Current Totem-Pole Dual Output Stage Drives Push-Pull Configuration with 1-A Sink and 0.5-A Source Capability
  • Current Sense Discharge Transistor to Improve Dynamic Response
  • Internally Trimmed Bandgap Reference
  • Undervoltage Lockout with Hysteresis
  • APPLICATIONS
    • High-Efficiency Switch-Mode Power Supplies
    • Telecom dc-to-dc Converters
    • Point-of-Load or Point-of-Use Power Modules
    • Low-Cost Push-Pull and Half-Bridge Applications

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Description

The UCC38083/4/5/6 is a family of BiCMOS pulse width modulation (PWM) controllers for dc-to-dc or off-line fixed-frequency current-mode switching power supplies. The dual output stages are configured for the push-pull topology. Both outputs switch at half the oscillator frequency using a toggle flip-flop. The dead time between the two outputs is typically 110 ns, limiting each output’s duty cycle to less than 50%.

The new UCC3808x family is based on the UCC3808A architecture. The major differences include the addition of a programmable slope compensation ramp to the CS signal and the removal of the error amplifier. The current flowing out of the ISET pin through an external resistor is monitored internally to set the magnitude of the slope compensation function. This device also includes an internal discharge transistor from the CS pin to ground, which is activated at each clock cycle after the pulse is terminated. This discharges any filter capacitance on the CS pin during each cycle and helps minimize filter capacitor values and current sense delay.

The UCC38083 and the UCC38084 devices have a typical soft-start interval time of 3.5 ms while the UCC38085 and the UCC38086 has less than 100 µs for applications where internal soft-start is not desired.

The UCC38083 and the UCC38085 devices have the turn on/off thresholds of the 12.5 V / 8.3 V, while the UCC38084 and the UCC38086 has the turn on/off thresholds of 4.3 V / 4.1 V. Each device is offered in 8-pin TSSOP (PW), 8-pin SOIC (D) and 8-pin PDIP (P) packages.

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Technical documentation

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No results found. Please clear your search and try again. View all 4
Type Title Date
* Datasheet 8-Pin Current Mode Push-Pull PWM ControllersWith Programmable Slope Compensation datasheet (Rev. E) May 12, 2009
Application notes How to Specify the Current Sense Resistor in a Converter using the UCC28083 (Rev. A) Jul. 21, 2011
Application notes A New Synchronization Circuit for Power Converters (Rev. A) Apr. 21, 2010
Application notes Current Doubler Rectifier Offers Ripple Current Cancellation Sep. 21, 2004

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Reference designs

REFERENCE DESIGNS Download
Isolated 24VAC/DC Solid-State Relay Reference Design
PMP12072 — This isolated, bi-directional, solid-state switch can control current flow into both AC and DC loads. Rated for 24VAC, it can switch loads up to approximately 1Arms/4Apeak.
document-generic Schematic document-generic User guide

CAD/CAE symbols

Package Pins Download
PDIP (P) 8 View options
SOIC (D) 8 View options
TSSOP (PW) 8 View options

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