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UCC23513DWYR
Isolators

UCC23513DWYR

Active
Texas Instruments

5.7KVRMS, 4A/5A SINGLE-CHANNEL OPTO-COMPATIBLE ISOLATED GATE DRIVER WITH 8 & 12V UVLO OPTIONS

UCC23513DWYR
Isolators

UCC23513DWYR

Active
Texas Instruments

5.7KVRMS, 4A/5A SINGLE-CHANNEL OPTO-COMPATIBLE ISOLATED GATE DRIVER WITH 8 & 12V UVLO OPTIONS

Technical Specifications

Parameters and characteristics for this part

SpecificationUCC23513DWYR
Approval AgencyUL, CSA, CQC, TUV, VDE
Common Mode Transient Immunity (Min) [Min]100 V/ns
Current - DC Forward (If) (Max) [Max]25 mA
Current - Output High, Low [custom]4.5 A
Current - Output High, Low [custom]5.3 A
Current - Peak Output3 A
Mounting TypeSurface Mount
Number of Channels [custom]1
Operating Temperature [Max]130 °C
Operating Temperature [Min]-40 C
Package / Case6-SOIC (0.295", 7.50mm Width)
Propagation Delay tpLH / tpHL (Max)115 ns
Pulse Width Distortion (Max) [Max]35 ns
Rise / Fall Time (Typ)28 ns, 25 ns
Supplier Device Package6-SOIC
TechnologyCapacitive Coupling
Voltage - Forward (Vf) (Typ)2 V
Voltage - Output Supply [Max]33 V
Voltage - Output Supply [Min]13.2 V

UCC23513 Series

5.7kVrms, 4A/5A single-channel opto-compatible isolated gate driver with 8 & 12V UVLO options

PartCommon Mode Transient Immunity (Min) [Min]Rise / Fall Time (Typ)TechnologyMounting TypePackage / CaseVoltage - Output Supply [Min]Voltage - Output Supply [Max]Current - Output High, Low [custom]Current - Output High, Low [custom]Current - DC Forward (If) (Max) [Max]Propagation Delay tpLH / tpHL (Max)Pulse Width Distortion (Max) [Max]Number of Channels [custom]Approval AgencySupplier Device PackageCurrent - Peak OutputVoltage - Forward (Vf) (Typ)Operating Temperature [Max]Operating Temperature [Min]Propagation Delay tpLH / tpHL (Max) [Max] [custom]Propagation Delay tpLH / tpHL (Max) [Max] [custom]Voltage - IsolationQualificationGrade
UCC23513DWYR
Texas Instruments
100 V/ns
25 ns
28 ns
Capacitive Coupling
Surface Mount
6-SOIC (0.295"
7.50mm Width)
13.2 V
33 V
4.5 A
5.3 A
25 mA
115 ns
35 ns
1
CQC
CSA
TUV
UL
VDE
6-SOIC
3 A
2 V
130 °C
-40 C
6-SO Stretched
Texas Instruments
150 kV/µs
25 ns
28 ns
Capacitive Coupling
Surface Mount
6-SOIC (0.295"
7.50mm Width)
14 V
33 V
3 A
3.5 A
25 mA
35 ns
1
CQC
UL
VDE
6-SOIC
3 A
3.5 A
2.1 V
125 °C
-40 C
105 ns
105 ns
5700 Vrms
6-SO Stretched
Texas Instruments
150 kV/µs
25 ns
28 ns
Capacitive Coupling
Surface Mount
6-SOIC (0.295"
7.50mm Width)
10 V
33 V
3 A
3.5 A
25 mA
35 ns
1
UL
VDE
6-SOIC
4.5 A
5.3 A
2.1 V
125 °C
-40 C
105 ns
105 ns
5700 Vrms
AEC-Q100
Automotive
6-SO Stretched
Texas Instruments
150 kV/µs
25 ns
28 ns
Capacitive Coupling
Surface Mount
6-SOIC (0.295"
7.50mm Width)
10 V
33 V
4.5 A
5.3 A
25 mA
35 ns
1
CQC
UL
VDE
6-SOIC
4.5 A
5.3 A
2.1 V
125 °C
-40 C
105 ns
105 ns
5700 Vrms
SOIC (DWY)
Texas Instruments
150 kV/µs
25 ns
28 ns
Capacitive Coupling
Surface Mount
6-SOIC (0.295"
7.50mm Width)
10 V
33 V
4.5 A
5.3 A
25 mA
35 ns
1
CQC
UL
VDE
6-SOIC
4.5 A
5.3 A
2.1 V
125 °C
-40 C
105 ns
105 ns
5700 Vrms
6-SO Stretched
Texas Instruments
150 kV/µs
25 ns
28 ns
Capacitive Coupling
Surface Mount
6-SOIC (0.295"
7.50mm Width)
14 V
33 V
3 A
3.5 A
25 mA
35 ns
1
UL
VDE
6-SOIC
4.5 A
5.3 A
2.1 V
125 °C
-40 C
105 ns
105 ns
5700 Vrms
AEC-Q100
Automotive
6-SO Stretched
Texas Instruments
150 kV/µs
25 ns
28 ns
Capacitive Coupling
Surface Mount
6-SOIC (0.295"
7.50mm Width)
14 V
33 V
3 A
3.5 A
25 mA
35 ns
1
UL
VDE
6-SOIC
4.5 A
5.3 A
2.1 V
125 °C
-40 C
105 ns
105 ns
5700 Vrms
AEC-Q100
Automotive
SOIC (DWY)
Texas Instruments
150 kV/µs
25 ns
28 ns
Capacitive Coupling
Surface Mount
6-SOIC (0.295"
7.50mm Width)
14 V
33 V
3 A
3.5 A
25 mA
35 ns
1
UL
VDE
6-SOIC
4.5 A
5.3 A
2.1 V
125 °C
-40 C
105 ns
105 ns
5700 Vrms
AEC-Q100
Automotive

Pricing

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

DistributorPackageQuantity$
DigikeyN/A 1641$ 1.02
Texas InstrumentsLARGE T&R 1$ 0.57
100$ 0.44
250$ 0.32
1000$ 0.23

Description

General part information

UCC23513 Series

The 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 5.7-kVRMSisolation rating. The high supply voltage range of 33-V allows the use of bipolar supplies to effectively drive IGBTs and SiC power FETs. can drive both low side and high side power FETs bring significant performance and reliability upgrades over 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. igh performance and reliability makes ideal for use in all types of motor drives, . The higher operating temperature opens up opportunities for applications not supported by traditional optocouplers.

The 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 5.7-kVRMSisolation rating. The high supply voltage range of 33-V allows the use of bipolar supplies to effectively drive IGBTs and SiC power FETs. can drive both low side and high side power FETs bring significant performance and reliability upgrades over 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. igh performance and reliability makes ideal for use in all types of motor drives, . The higher operating temperature opens up opportunities for applications not supported by traditional optocouplers.

Documents

Technical documentation and resources

Interlocking gate drivers for improving the robustness of three-phase inverters

Technical article

以可靠且經濟實惠的隔離技術解決高電壓設計挑戰 (Rev. C)

White paper

Addressing High-Volt Design Challenges w/ Reliable and Affordable Isolation Tech (Rev. C)

White paper

UCC23513 Input Resistor Selection Guide (Rev. A)

Application note

UCC23513 CQC Certificate of Product Certification (Malaysia)

Certificate

VDE Certificate for Reinforced Isolation for DIN EN IEC 60747-17 (Rev. W)

Certificate

Isolation in AC Motor Drives: Understanding the IEC 61800-5-1 Safety Standard (Rev. A)

Functional safety information

Circuit Board Insulation Design According to IEC60664 for Motor Drive Apps

White paper

모터 드라이브의 옵토 호환 절연 게이트 드라이버 UCC23513용 개별 DESAT

Application note

External Gate Resistor Selection Guide (Rev. A)

Application brief

The Use and Benefits of Ferrite Beads in Gate Drive Circuits

Application brief

Misconceptions about EV charging

Technical article

Searching for the newest innovations in power? Find them at APEC

Technical article

UCC23513 4-A/5-A, 5.7-kVRMS Opto-Compatible Single Channel Isolated Gate Driver datasheet (Rev. E)

Data sheet

Understanding failure modes in isolators (Rev. B)

White paper

신뢰할 수 있는 합리적 가격대의 절연 기술 개발과 관련한 고전압 설계 문제의 해결 (Rev. C)

White paper

Diskrete DESAT für optokompatible isolierte Gate-Treiber UCC23513 in Motorantrieben

Application note

Impact of an isolated gate driver (Rev. A)

White paper

Understanding Peak IOH and IOL Currents (Rev. A)

Application brief

Solving lifetime and temperature challenges in AC motor drives with capacitive-bas

Technical article

FPPT2 - Nonoptical Isolating Devices UL 1577 Certificate of Compliance

Certificate

UCC23513 CQC Certificate of Product Certification

Certificate

How Capacitive Isolation Solves Key Challenges in AC Motor Drives

White paper

Discrete DESAT for Opto-Compatible Isolated Gate Driver UCC23513 in Motor Drives

Application note

Replace your aging optocoupler gate driver

Technical article

Using the UCC23513EVM-014

EVM User's guide