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NCP5183 - High Voltage High Current High and Low Side …

Semiconductor Components Industries, LLC, 2017 April, 2019 Rev. 21 Publication Order Number: NCP5183 /DNCP5183, NCV5183 High Voltage High CurrentHigh and Low Side DriverThe NCP5183 is a High Voltage High Current Power MOSFETD river providing two outputs for direct drive of 2 N channel powerMOSFETs arranged in a half bridge (or any other high side +low side) uses the bootstrap technique to insure a proper drive of theHigh side power switch. The driver works with 2 independent inputsto accommodate any topology (including half bridge, asymmetricalhalf bridge, active clamp and full ).

Low Level Output Voltage IDRVL = 0 A VDRVLL 35 mV Low Level Output Voltage (HS Driver) IDRVH = 0 A VDRVHL 35 mV High Level Output Voltage IDRVL = 0 A, VDRVLH = VCC − VDRVL VDRVLH 35 mV High Level Output Voltage (HS Driver) IDRVH = 0 A, VDRVHH = VB – VDRVH VDRVHH 35 mV Output Positive Peak current VDRVL = 0 V, PW = 10 s IDRVLH 4.3 A

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Transcription of NCP5183 - High Voltage High Current High and Low Side …

1 Semiconductor Components Industries, LLC, 2017 April, 2019 Rev. 21 Publication Order Number: NCP5183 /DNCP5183, NCV5183 High Voltage High CurrentHigh and Low Side DriverThe NCP5183 is a High Voltage High Current Power MOSFETD river providing two outputs for direct drive of 2 N channel powerMOSFETs arranged in a half bridge (or any other high side +low side) uses the bootstrap technique to insure a proper drive of theHigh side power switch. The driver works with 2 independent inputsto accommodate any topology (including half bridge, asymmetricalhalf bridge, active clamp and full ).

2 Features Automotive Qualified to AEC Q100 Voltage Range: up to 600 V dV/dt Immunity 50 V/ns Gate Drive Supply Range from 9 V to 18 V Output Source / Sink Current Capability A / A V and 5 V Input Logic Compatible Extended Allowable Negative Bridge Pin Voltage Swing to 10 V Matched Propagation Delays between Both Channels Propagation Delay 120 ns typically Under VCC LockOut (UVLO) for Both Channels Pin to Pin Compatible with Industry Standards These are Pb free DevicesTypical Application Power Supplies for Telecom and Datacom Half Bridge and Full Bridge Converters Push Pull Converters High Voltage Synchronous Buck Converters Motor Controls Electric Power Steering Class D Audio INFORMATIOND evicePackageShipping NCP5183DR2 GSOIC 8(Pb Free)

3 2500 / Tape& ReelSOIC 8 NBCASE 751 07 MARKING DIAGRAM For information on tape and reel specifications,including part orientation and tape sizes, pleaserefer to our Tape and Reel Packaging SpecificationBrochure, BRD8011 CONNECTIONSHINLINGNDDRVLVCCDRVHVBHB18 NCx5183 ALYW G G18x= P or VA= Assembly LocationL= Wafer LotY= YearW= Work WeekG= Pb Free PackageNCV5183DR2 GSOIC 8(Pb Free)2500 / Tape& Reel(Note: Microdot may be in either location) NCP5183 , 1. Application SchematicCVccM1M2 CBOOT85671234 VBDRVHHBVCCHINLINGNDDRVLCONTROLLERVccVHV LOADDBOOTRBOOTF igure 2.

4 Simplified Block DiagramLevelShifterPulseTriggerSRQQUVD etectDRVHHBVBDRVLVCCHINVCCLINGNDDELAYUVD etectTable 1. PIN FUNCTION DESCRIPTIONPin No. (SOIC8)Pin NameDescription1 HINHigh Side Logic Input2 LINLow Side Logic Input3 GNDG round4 DRVLLow Side Gate Drive Output5 VCCMain Power Supply6 HBBootstrap Return or High Side Floating Supply Return7 DRVHHigh Side Gate Drive Output8 VBBootstrap Power SupplyNCP5183, 2. ABSOLUTE MAXIMUM RATINGSAll voltages are referenced to GND pinRatingSymbolValueUnitsInput Voltage RangeVCC to 18 VInput Voltage on LIN and HIN pinsVLIN, VHIN to 18 VHigh Side Boot pin VoltageVB(higher of {.)}

5 VCC }) to 618 VHigh Side Bridge pin VoltageVHBVB 18 to VB + Side Floating VoltageVB VHB to 18 VHigh Side Output VoltageVDRVHVHB to VB + Side Output VoltageVDRVL to VCC + output slew ratedVHB/dt50V/nsMaximum Operating Junction TemperatureTJ(max)150 CStorage Temperature RangeTSTG 55 to 150 CESD Capability, Human Body Model (Note 1)ESDHBM3kVESD Capability, Charged Device Model (Note 1)ESDCDM1kVLead Temperature Soldering Reflow (SMD Styles Only), Pb Free Versions (Note 2)TSLD260 CStresses exceeding those listed in the Maximum Ratings table may damage the device.

6 If any of these limits are exceeded, device functionalityshould not be assumed, damage may occur and reliability may be This device series incorporates ESD protection and is tested by the following methods:ESD Human Body Model tested per AEC Q100 002 (EIA/JESD22 A114)ESD Charged Device Model tested per AEC Q100 11 (EIA/JESD22 C101E)Latchup Current Maximum Rating: 150 mA per JEDEC standard: JESD782. For information, please refer to our Soldering and Mounting Techniques Reference Manual, SOLDERRM/DTable 3. THERMAL CHARACTERISTICSR atingSymbolValueUnitsThermal Characteristics SO8 (Note 3)Thermal Resistance, Junction to Air (Note 4)RqJA183 C/W3.

7 Refer to ELECTRICAL CHARACTERISTICS and APPLICATION INFORMATION for Safe Operating Values based on copper area of 645 mm2 (or 1 in2) of 1 oz copper thickness and FR4 PCB 4. RECOMMENDED OPERATING CONDITIONS (Note 5)All voltages are referenced to GND pinRatingSymbolMinMaxUnitsInput Voltage RangeVCC1017 VHigh Side Floating VoltageVB VHB1017 VHigh Side Bridge pin VoltageVHB 1580 VHigh Side Output VoltageVDRVHVHBVBVLow Side Output VoltageVDRVLGNDVCCVI nput Voltage on LIN and HIN pinsVLIN, VHINGNDVCC 2 VOperating Junction Temperature RangeTJ 40125 C5.

8 Refer to ELECTRICAL CHARACTERISTICS and APPLICATION INFORMATION for Safe Operating , 5. ELECTRICAL CHARACTERISTICS 40 C TJ 125 C, VCC = VB = 15 V, VHB = GND, outputs are not loaded, all voltages are referenced to GND; unless otherwise values are at TJ = +25 C. (Notes 6, 7)ParameterTest ConditionsSymbolMinTypMaxUnitsSupply SectionVCC UVLOVCC UVLOVB pin operating currentf = 20 kHz, CL = 1 nFICC1520700mAVB pin operating currentf = 20 kHz, CL = 1 nFIB1700800mAVCC pin quiescent currentVLIN = VHIN = 0 VICC295160mAVB pin quiescent currentVLIN = VHIN = 0 VIB265100mAVB to GND quiescent currentVB = VHB = 600 VIHS leak50mAInput SectionLogic High Input Low Input High Input CurrentVxIN = 5 VIxIN+2550mALogic Low Input CurrentVxIN = 0 VIxIN 1mAInput Pull Down ResistanceVxIN = 5 VRxIN100250kWOutput SectionLow Level Output VoltageIDRVL = 0 AVDRVLL35mVLow Level Output Voltage (HS Driver)

9 IDRVH = 0 AVDRVHL35mVHigh Level Output VoltageIDRVL = 0 A, VDRVLH = VCC VDRVLVDRVLH35mVHigh Level Output Voltage (HS Driver)IDRVH = 0 A, VDRVHH = VB VDRVHVDRVHH35mVOutput Positive Peak currentVDRVL = 0 V, PW = 10 Negative Peak currentVDRVL = 15 V, PW = 10 Positive Peak Current (HS Driver)VDRVH = 0 V, PW = 10 Negative Peak Current (HS Driver)VDRVH = 15 V, PW = 10 SectionTurn On Propagation DelaytON120200nsTurn Off Propagation DelaytOFF120200nsDelay MatchingPulse width = 1 mstMT050nsMinimum Positive Pulse WidthVxIN = 0 V to 5 VtminH150nsMinimum Negative Pulse WidthVxIN = 5 V to 0 VtminL100ns6.

10 Refer to ABSOLUTE MAXIMUM RATINGS and APPLICATION INFORMATION for Safe Operating Area7. Performance guaranteed over the indicated operating temperature range by design and/or characterization tested at TJ = TA = 25 C. Lowduty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possibleNCP5183, 5. ELECTRICAL CHARACTERISTICS 40 C TJ 125 C, VCC = VB = 15 V, VHB = GND, outputs are not loaded, all voltages are referenced to GND; unless otherwise values are at TJ = +25 C. (Notes 6, 7)ParameterUnitsMaxTypMinSymbolTest ConditionsSwitching ParametersOutput Voltage Rise Time10% to 90%, CL = 1 nFtr1240nsOutput Voltage Fall Time90% to 10%, CL = 1 nFtf1240nsNegative HB pin VoltagePW tON, VCC = VB = 10 VVHBneg 8 7V6.


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