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6-SO Stretched
Isolators

UCC23511QDWYQ1

LTB
Texas Instruments

AUTOMOTIVE 5.7KVRMS,1.5A/2A SINGLE-CHANNEL OPTO-COMPATIBLE ISOLATED GATE DRIVER WITH 12V UVLO

6-SO Stretched
Isolators

UCC23511QDWYQ1

LTB
Texas Instruments

AUTOMOTIVE 5.7KVRMS,1.5A/2A SINGLE-CHANNEL OPTO-COMPATIBLE ISOLATED GATE DRIVER WITH 12V UVLO

Technical Specifications

Parameters and characteristics for this part

SpecificationUCC23511QDWYQ1
Approval AgencyUL, VDE
Common Mode Transient Immunity (Min) [Min]150 kV/µs
Current - DC Forward (If) (Max) [Max]25 mA
Current - Output High, Low [custom]1 A
Current - Output High, Low [custom]1 A
Current - Peak Output1.5 A, 2 A
GradeAutomotive
Mounting TypeSurface Mount
Number of Channels1
Operating Temperature [Max]125 °C
Operating Temperature [Min]-40 °C
Package / Case6-SOIC
Package / Case [x]0.295 in
Package / Case [y]7.5 mm
Propagation Delay tpLH / tpHL (Max) [Max] [custom]105 ns
Propagation Delay tpLH / tpHL (Max) [Max] [custom]105 ns
Pulse Width Distortion (Max) [Max]35 ns
QualificationAEC-Q100
Rise / Fall Time (Typ)28 ns, 25 ns
Supplier Device Package6-SOIC
TechnologyCapacitive Coupling
Voltage - Forward (Vf) (Typ)2.1 V
Voltage - Isolation5700 Vrms
Voltage - Output Supply [Max]33 V
Voltage - Output Supply [Min]14 V

UCC23511-Q1 Series

Automotive 5.7kVrms,1.5A/2A single-channel opto-compatible isolated gate driver with 12V UVLO

PartCurrent - Output High, Low [custom]Current - Output High, Low [custom]Voltage - IsolationVoltage - Output Supply [Max]Voltage - Output Supply [Min]Number of ChannelsRise / Fall Time (Typ)Operating Temperature [Max]Operating Temperature [Min]Pulse Width Distortion (Max) [Max]Current - Peak OutputQualificationMounting TypeGradeSupplier Device PackageCurrent - DC Forward (If) (Max) [Max]Voltage - Forward (Vf) (Typ)Package / CasePackage / Case [x]Package / Case [y]Propagation Delay tpLH / tpHL (Max) [Max] [custom]Propagation Delay tpLH / tpHL (Max) [Max] [custom]TechnologyApproval AgencyCommon Mode Transient Immunity (Min) [Min]Current - Output High, LowRise / Fall Time (Typ) [custom]Rise / Fall Time (Typ) [custom]
6-SO Stretched
Texas Instruments
1 A
1 A
5700 Vrms
33 V
14 V
1
25 ns
28 ns
125 °C
-40 °C
35 ns
1.5 A
2 A
AEC-Q100
Surface Mount
Automotive
6-SOIC
25 mA
2.1 V
6-SOIC
0.295 in
7.5 mm
105 ns
105 ns
Capacitive Coupling
UL
VDE
150 kV/µs
6-SO Stretched
Texas Instruments
1 A
1 A
5700 Vrms
33 V
14 V
1
25 ns
28 ns
125 °C
-40 °C
35 ns
1.5 A
2 A
Surface Mount
6-SOIC
25 mA
2.1 V
6-SOIC
0.295 in
7.5 mm
105 ns
105 ns
Capacitive Coupling
CQC
UL
VDE
150 kV/µs
SOIC (DWY)
Texas Instruments
5700 Vrms
33 V
14 V
1
125 °C
-40 °C
35 ns
1.5 A
2 A
Surface Mount
6-SOIC
16 mA
2.1 V
6-SOIC
0.295 in
7.5 mm
105 ns
105 ns
Capacitive Coupling
CQC
UL
VDE
150 kV/µs
1.5 A
2 A
25 ns
28 ns
6-SO Stretched
Texas Instruments
1 A
1 A
5700 Vrms
33 V
14 V
1
25 ns
28 ns
125 °C
-40 °C
35 ns
1.5 A
2 A
AEC-Q100
Surface Mount
Automotive
6-SOIC
25 mA
2.1 V
6-SOIC
0.295 in
7.5 mm
105 ns
105 ns
Capacitive Coupling
CQC
UL
VDE
150 kV/µs

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTube 2500$ 1.59
Texas InstrumentsTUBE 1$ 2.95
100$ 2.44
250$ 1.75
1000$ 1.32

Description

General part information

UCC23511-Q1 Series

The UCC23511-Q1 is an Opto-compatible, single-channel, isolated gate driver for IGBTs, MOSFETs and SiC MOSFETs, with 1.5-A source and 2-A sink peak output current and 5.7-kVRMSreinforced isolation rating. The high supply voltage range of 33-V allows the use of bipolar supplies to effectively drive IGBTs and SiC power FETs. UCC23511-Q1 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 (ediode) which means long term reliability and excellent aging characteristics compared to traditional LEDs found in optocoupler gate drivers. It is offered in a stretched SO6 package with >8.5mm creepage and clearance, and a mold compound from material group I which has a comparative tracking index (CTI) >600V. UCC23511-Q1’s high performance and reliability makes it ideal for use in automotive motor drives such as the traction inverter, on-board chargers, DC charging stations, and automotive HVAC and heating systems. The higher operating temperature opens up opportunities for applications not previously able to be supported by traditional optocouplers.

The UCC23511-Q1 is an Opto-compatible, single-channel, isolated gate driver for IGBTs, MOSFETs and SiC MOSFETs, with 1.5-A source and 2-A sink peak output current and 5.7-kVRMSreinforced isolation rating. The high supply voltage range of 33-V allows the use of bipolar supplies to effectively drive IGBTs and SiC power FETs. UCC23511-Q1 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 (ediode) which means long term reliability and excellent aging characteristics compared to traditional LEDs found in optocoupler gate drivers. It is offered in a stretched SO6 package with >8.5mm creepage and clearance, and a mold compound from material group I which has a comparative tracking index (CTI) >600V. UCC23511-Q1’s high performance and reliability makes it ideal for use in automotive motor drives such as the traction inverter, on-board chargers, DC charging stations, and automotive HVAC and heating systems. The higher operating temperature opens up opportunities for applications not previously able to be supported by traditional optocouplers.