UCC23514

ACTIVE

5kVrms 4A/5A, single-channel opto-compatible isolated gate driver w/ clamp & split output options

Product details

Operating temperature range (°C) -40 to 125 Rating Catalog Isolation rating Reinforced Number of channels 1
Operating temperature range (°C) -40 to 125 Rating Catalog Isolation rating Reinforced Number of channels 1
SOIC (DWV) 8 67.275 mm² 5.85 x 11.5
  • 5.0-kVRMS single channel isolated gate driver with opto-compatible input
  • Pin-to-pin, drop in upgrade for opto-isolated gate drivers
  • 4.5-A source, 5.3-A sink, peak output current
  • 12-V to 33-V output driver supply voltage
  • Rail-to-rail output
  • 105-ns (maximum) propagation delay
  • 25-ns (maximum) part-to-part delay matching
  • 35-ns (maximum) pulse width distortion
  • 150-kV/µs (minimum) common-mode transient immunity (CMTI)
  • Isolation barrier life > 50 Years
  • 13-V reverse polarity voltage handling capability on input stage
  • DWV package with 8.5 mm creepage
  • Operating junction temperature, TJ: –40°C to +150°C
  • Safety-related certifications (Planned):
    • 7000-VPK reinforced isolation per DIN V VDE V0884-11: 2017-01
    • 5.0-kVRMS isolation for 1 minute per UL 1577
    • CQC certification per GB4943.1-2011
  • 5.0-kVRMS single channel isolated gate driver with opto-compatible input
  • Pin-to-pin, drop in upgrade for opto-isolated gate drivers
  • 4.5-A source, 5.3-A sink, peak output current
  • 12-V to 33-V output driver supply voltage
  • Rail-to-rail output
  • 105-ns (maximum) propagation delay
  • 25-ns (maximum) part-to-part delay matching
  • 35-ns (maximum) pulse width distortion
  • 150-kV/µs (minimum) common-mode transient immunity (CMTI)
  • Isolation barrier life > 50 Years
  • 13-V reverse polarity voltage handling capability on input stage
  • DWV package with 8.5 mm creepage
  • Operating junction temperature, TJ: –40°C to +150°C
  • Safety-related certifications (Planned):
    • 7000-VPK reinforced isolation per DIN V VDE V0884-11: 2017-01
    • 5.0-kVRMS isolation for 1 minute per UL 1577
    • CQC certification per GB4943.1-2011

The UCC23514 is an Opto-compatible, single-channel, isolated gate driver for IGBTs, MOSFETs and SiC MOSFETs, with 4.5-A source and 5.3-A sink peak output current and 5.0-kVRMS reinforced isolation rating. The high supply voltage range of 33-V allows the use of bipolar supplies to effectively drive IGBTs and SiC power FETs. UCC23514 can drive both low side and high side power FETs. Key features and characteristics bring significant performance and reliability upgrades over standard opto-coupler based gate drivers while maintaining pin-to-pin compatibility in both schematic and layout design. Performance highlights include high common mode transient immunity (CMTI), low propagation delay, and small pulse width distortion.

Tight process control results in small part-to-part skew. The input stage is an emulated diode (e-diode) which means long term reliability and excellent aging characteristics compared to traditional LEDs. It is offered in an 8-Pin surface mount 7.5 mm x 5.85 mm (typical) SOIC package, with creepage and clearance ≥ 8.5 mm, and a mold compound from material group I which has a comparative tracking index (CTI) > 600 V. UCC23514’s high performance and reliability makes it ideal for use in all types of motor drives, solar inverters, industrial power supplies, and appliances. The higher operating temperature opens up opportunities for applications not previously able to be supported by traditional opto-couplers.

The UCC23514V option provides the gate drive output on a single terminal. For applications requiring split gate drive output, the UCC23514S version provides two separate output pins, OUTH and OUTL. The UCC23514E version suits applications requiring an UVLO referenced to a separate COM pin, which facilitates bipolar gate drive supply applications. The UCC23514M option connects the gate of the transistor to an internal clamp to prevent false turn-on caused by Miller current.

The UCC23514 is an Opto-compatible, single-channel, isolated gate driver for IGBTs, MOSFETs and SiC MOSFETs, with 4.5-A source and 5.3-A sink peak output current and 5.0-kVRMS reinforced isolation rating. The high supply voltage range of 33-V allows the use of bipolar supplies to effectively drive IGBTs and SiC power FETs. UCC23514 can drive both low side and high side power FETs. Key features and characteristics bring significant performance and reliability upgrades over standard opto-coupler based gate drivers while maintaining pin-to-pin compatibility in both schematic and layout design. Performance highlights include high common mode transient immunity (CMTI), low propagation delay, and small pulse width distortion.

Tight process control results in small part-to-part skew. The input stage is an emulated diode (e-diode) which means long term reliability and excellent aging characteristics compared to traditional LEDs. It is offered in an 8-Pin surface mount 7.5 mm x 5.85 mm (typical) SOIC package, with creepage and clearance ≥ 8.5 mm, and a mold compound from material group I which has a comparative tracking index (CTI) > 600 V. UCC23514’s high performance and reliability makes it ideal for use in all types of motor drives, solar inverters, industrial power supplies, and appliances. The higher operating temperature opens up opportunities for applications not previously able to be supported by traditional opto-couplers.

The UCC23514V option provides the gate drive output on a single terminal. For applications requiring split gate drive output, the UCC23514S version provides two separate output pins, OUTH and OUTL. The UCC23514E version suits applications requiring an UVLO referenced to a separate COM pin, which facilitates bipolar gate drive supply applications. The UCC23514M option connects the gate of the transistor to an internal clamp to prevent false turn-on caused by Miller current.

Download View video with transcript Video

Technical documentation

star =Top documentation for this product selected by TI
No results found. Please clear your search and try again.
View all 6
Type Title Date
* Data sheet UCC23514 4-A/5-A , 5.0-kVRMS Opto-Compatible Single Channel Isolated Gate Driver datasheet (Rev. A) 23 Oct 2020
Certificate UCC23514EVM EU Declaration of Conformity (DoC) 05 Mar 2024
Application brief The Use and Benefits of Ferrite Beads in Gate Drive Circuits PDF | HTML 16 Dec 2021
Certificate FPPT2 - Nonoptical Isolating Devices UL 1577 Certificate of Compliance 26 Oct 2021
Technical article The impact of an isolated gate driver’s input stage for motor-drive applications PDF | HTML 29 Sep 2020
EVM User's guide Using the UCC23514EVM-040 05 Feb 2020

Design & development

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

Evaluation board

UCC23514EVM — UCC23514 5.7-KVrms, 4.5-A single-channel isolated gate driver with opto compatible input EVM

UCC23514EVM is designed for evaluating UCC23514, which is an isolated single-channel gate driver with 4.5-A source and 5.3-A sink peak current capability. This EVM serves as a reference design for driving power MOSFETs and IGBTs with up to 33-V drive voltage, and can be configured via jumpers for (...)
User guide: PDF
Not available on TI.com
Simulation model

UCC23514E SIMPLIS model

SLUM753.ZIP (20 KB) - SIMPLIS Model
Simulation model

UCC23514M SIMPLIS model

SLUM752.ZIP (22 KB) - SIMPLIS Model
Simulation model

UCC23514S SIMPLIS Model

SLUM754.ZIP (20 KB) - SIMPLIS Model
Simulation model

UCC23514V SIMPLIS model

SLUM755.ZIP (20 KB) - SIMPLIS Model
Package Pins Download
SOIC (DWV) 8 View options

Ordering & quality

Information included:
  • RoHS
  • REACH
  • Device marking
  • Lead finish/Ball material
  • MSL rating/Peak reflow
  • MTBF/FIT estimates
  • Material content
  • Qualification summary
  • Ongoing reliability monitoring
Information included:
  • Fab location
  • Assembly location

Support & training

TI E2E™ forums with technical support from TI engineers

Content is provided "as is" by TI and community contributors and does not constitute TI specifications. See terms of use.

If you have questions about quality, packaging or ordering TI products, see TI support. ​​​​​​​​​​​​​​

Videos