Texas Instruments UCC53x0/UCC53x0-Q1 Isolated Gate Drivers

Texas Instruments UCC53x0/UCC53x0-Q1 Single-Channel Isolated Gate Drivers designed for use with IGBT, SiC, and MOSFETs. These drivers have superior isolation ratings and variants for pinout configuration and drive strength. The UCC53x0/UCC53x0-Q1 is available in an 8-pin SOIC (D) package. This package has a creepage and clearance of 4mm and can support isolation voltage up to 3kVRMS, which is suitable for applications where fundamental isolation is needed. With these various options and a wide power range, the UCC53x0/UCC53x0-Q1 family is a good fit for motor drives and industrial power supplies. 

The UCC53x0S option provides a split output that can control the driver's rise and fall times. The UCC53x0M option connects the gate of the transistor to an internal clamp to prevent false turn-on caused by the Miller current. The UCC53x0E option has its UVLO2 referenced to GND2, which facilitates bipolar supplies. The UCC53x0-Q1 devices are AEC-Q100 qualified for automotive applications.

Features

  • Feature options
    • Split outputs (UCC53x0S)
    • UVLO Referenced to GND2 (UCC53x0E)
    • Miller clamp option (UCC53x0M)
  • 8-pin D (4mm creepage) and DWV (9mm creepage) package (UCC5390EC)
  • 60ns (Typical) propagation delay
  • 100kV/µs Minimum CMTI
  • Isolation barrier life >40 years
  • 3V to 15V Input supply voltage
  • Up to 33V Driver supply voltage
    • 8V and 12V UVLO Options
  • Negative 5V handling capability on input pins
  • Safety-related certifications
    • 7000VPK Isolation (DWV) and 4242VPK isolation (D) per DIN V VDE V 0884-11:2017-01
    • 5000VRMS (DWV) and 3000VRMS (D) Isolation rating for 1 minute per UL 1577
    • CQC Certification per GB4943.1-2011
  • CMOS Inputs
  • –40°C to +125°C Operating temperature

Applications

  • Motor drives
  • High voltage DC-to-DC converters
  • UPS and PSU
  • HEV and EV Power modules
  • Solar inverters

Videos

Functional Block Diagram

Block Diagram - Texas Instruments UCC53x0/UCC53x0-Q1 Isolated Gate Drivers
Published: 2017-10-24 | Updated: 2025-06-12