Skip to main content
UCC27526DSDT

UCC27526DSDT Low-Side Gate Driver, 5A Peak, 7ns Rise, 8-SON

MPNUCC27526DSDT
Active

Texas Instruments UCC27526DSDT, dual low-side gate driver, 5A peak source/sink, 7ns rise/6ns fall, 4.5V~18V supply, inverting/non-inverting inputs, 8-WDFN exposed pad, -40°C~140°C junction.

$1.9100Ref. price · indicative, final on quote
Independent supplier — new & surplus stockAuthenticity-screened · ESD-safe packingListing updated Jul 2026

Specifications

UCC27526DSDT specifications
ParameterValue
Gate typeIGBT, N-Channel MOSFET
Input typeInverting, Non-Inverting
Channel typeIndependent
MountingSurface Mount
Supply voltage4.5V ~ 18V
Logic voltage - VIL, VIH1V, 2.3V
Current - peak output (Source, sink)5A, 5A
Operating temperature-40°C~140°C(TJ)
PackageTape & Reel (TR); Cut Tape (CT)
Case8-WDFN Exposed Pad
Number of drivers2
Driven configurationLow-Side
Rise (Fall time)7ns, 6ns

Product details

Dual 5 A gate driver for IGBT and MOSFET switching

The independent channel inputs accept both inverting and non-inverting logic, giving flexibility for half-bridge or parallel-drive topologies.

Package and thermal footprint

The junction temperature rating of -40°C to 140°C allows operation in industrial enclosures and under-hood automotive environments, provided the board copper area keeps the junction below the limit at full 5 A switching.

For new designs or ongoing BOM lines, there is no near-term obsolescence risk.

Frequently asked questions

Can UCC27526DSDT drive both IGBT and N-channel MOSFET?

Yes, the gate type is specified for both IGBT and N-channel MOSFET. The 5 A peak source and sink current with 7 ns rise and 6 ns fall times provides fast gate charging for both device types.

What is the difference between UCC27526DSDT and UCC27524?

The UCC27526DSDT is a dual low-side driver with 5 A peak output and independent inverting/non-inverting inputs, while the UCC27524 is a dual low-side driver with 5 A peak output but with dual non-inverting inputs only. The UCC27526DSDT offers more input logic flexibility for designs needing both polarities.