DMP6180SK3Q

Document overview

  • Manufacturer or author: Diodes Incorporated
  • PDF pages: 7

Technical content

Document number: DS39320 Rev. 2 - 2 1 of 7 www.diodes.com January 2026 © 2026 Copyright Diodes Incorporated. All Rights Reserved. DMP6180SK3Q 60V P-CHANNEL ENHANCEMENT MODE MOSFET Product Summary BVDSS RDS(ON) Max ID TC = +25°C -60V 110mΩ @ VGS = -10V -14A 140mΩ @ VGS = -4.5V -12A Description and Applications This MOSFET is designed to meet the stringent requirements of automotive applications. It is qualified to AEC -Q101, supported by a PPAP and is ideal for use in:

  • DC-DC converters
  • Power-management functions
  • Analog switches Features and Benefits
  • Low On-Resistance
  • Low Input Capacitance
  • Totally Lead-Free & Fully RoHS Compliant (Note 1 & 2)
  • Halogen and Antimony Free. “Green” Device (Note 3)
  • The DMP6180SK3Q is suitable for automotive applications requiring specific change control; this part is AEC-Q101 qualified, PPAP capable, and manufactured in IATF 16949 certified facilities. https://www.diodes.com/quality/product-definitions/ Mechanical Data
  • Package: TO252
  • Package Material: Molded Plastic, “Green” Molding Compound. UL Flammability Classification Rating 94V-0
  • Moisture Sensitivity: Level 1 per J-STD-020
  • Terminal Connections: See Diagram
  • Terminals: Finish – Matte Tin Annealed over Copper Leadframe. Solderable per MIL-STD-202, Method 208
  • Weight: 0.33 grams (Approximate) Ordering Information (Note 4) Orderable Part Number Package Packing Qty. Carrier DMP6180SK3Q-13 TO252 (DPAK) 2,500 Tape & Reel Notes: 1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS), 2011/65/EU (RoHS 2) & 2015/863/EU (RoHS 3) compliant. 2. See https://www.diodes.com/quality/lead-free/ for more information about Diodes Incorporated’s definitions of Halogen - and Antimony-free, "Green" and Lead-free. 3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and <1000ppm antimony compounds. 4. For packaging details, go to our website at https://www.diodes.com/design/support/packaging/diodes -packaging/. Marking Information Internal Schematic G S D DTop View Pin Out Top View TO252 (DPAK) YYWW P618SK = Manufacturer’s Marking P618SK = Product Type Marking Code YYWW = Date Code Marking YY = Year (ex: 26 = 2026) WW = Week (01 to 53)

Document number: DS39320 Rev. 2 - 2 2 of 7 www.diodes.com January 2026 © 2026 Copyright Diodes Incorporated. All Rights Reserved. DMP6180SK3Q Maximum Ratings (@TA = +25°C, unless otherwise specified.) Characteristic Symbol Value Unit Drain-Source Voltage VDSS -60 V Gate-Source Voltage VGSS ±20 V Continuous Drain Current (Note 5) VGS = -10V Steady State TC = +25°C TC = +100°C ID -14 -10 A Maximum Body Diode Forward Current (Note 5) IS 4.1 A Pulsed Drain Current (10µs Pulse, Duty Cycle = 1%) IDM 25 A Thermal Characteristics (@TA = +25°C, unless otherwise specified.) Characteristic Symbol Value Unit Total Power Dissipation (Note 6) TA = +25°C PD 1.7 W TA = +70°C 1.0 Thermal Resistance, Junction to Ambient (Note 6) Steady State RθJA 76 °C/W t < 10s 33 Total Power Dissipation (Note 5) TA = +25°C PD 2.7 W TA = +70°C 1.5 Thermal Resistance, Junction to Ambient (Note 5) Steady State RθJA 50 °C/W t < 10s 24 Total Power Dissipation (Note 5) TC = +25°C PD 40 W TC = +100°C 16 Thermal Resistance, Junction to Case (Note 5) Steady State RθJC 3.1 °C/W Operating and Storage Temperature Range TJ, TSTG -55 to +150 °C Electrical Characteristics (@TA = +25°C, unless otherwise specified.) Characteristic Symbol Min Typ Max Unit Test Condition OFF CHARACTERISTICS (Note 7) Drain-Source Breakdown Voltage BVDSS -60 ⎯ ⎯ V VGS = 0, ID = -250µA Zero Gate Voltage Drain Current IDSS ⎯ ⎯ -1 µA VDS = -48V, VGS = 0 Gate-Source Leakage IGSS ⎯ ⎯ 100 nA VGS = ±20V, VDS = 0 ON CHARACTERISTICS (Note 7) Gate Threshold Voltage VGS(TH) -1.2 ⎯ -2.7 V VDS = VGS, ID = -250µA Static Drain-Source On-Resistance RDS(ON) ⎯ 60 110 mΩ VGS = -10V, ID = -12A ⎯ 80 140 VGS = -4.5V, ID = -8A Forward Transfer Admittance |YFS| ⎯ 15 ⎯ S VDS = -5V, ID = -12A Diode Forward Voltage VSD ⎯ -0.7 -1.0 V VGS = 0, IS = -1A DYNAMIC CHARACTERISTICS (Note 8) Input Capacitance CISS ⎯ 984.7 ⎯ pF VDS = -30V, VGS = 0, f = 1.0MHz Output Capacitance COSS ⎯ 58 ⎯ Reverse Transfer Capacitance CRSS ⎯ 45.5 ⎯ Gate Resistance RG ⎯ 12.9 ⎯ Ω VDS = 0, VGS = 0, f = 1.0MHz Total Gate Charge (VGS = -4.5V) QG ⎯ 8.1 ⎯ nC VDS = -30V, ID = -12A Total Gate Charge (VGS = -10V) QG ⎯ 17.1 ⎯ Gate-Source Charge QGS ⎯ 3.2 ⎯ Gate-Drain Charge QGD ⎯ 3.9 ⎯ Turn-On Delay Time tD(ON) ⎯ 5.9 ⎯ ns VGS = -10V, VDS = -30V, RGEN = 3Ω, RL = 2.5Ω Turn-On Rise Time tR ⎯ 21.2 ⎯ Turn-Off Delay Time tD(OFF) ⎯ 30.9 ⎯ Turn-Off Fall Time tF ⎯ 39.1 ⎯ Body Diode Reverse-Recovery Time tRR ⎯ 19.9 ⎯ ns IS = -12A, di/dt = 100A/μs Body Diode Reverse-Recovery Charge QRR ⎯ 1.7 ⎯ nC IS = -12A, di/dt = 100A/μs Notes: 5. Device mounted on FR-4 substrate PC board, 2oz copper, with 1-inch square copper pad layout. 6. Device mounted on FR-4 substrate PC board, 2oz copper, with minimum recommended pad layout . 7. Short duration pulse test used to minimize self-heating effect 8. Guaranteed by design. Not subject to production testing

Document number: DS39320 Rev. 2 - 2 5 of 7 www.diodes.com January 2026 © 2026 Copyright Diodes Incorporated. All Rights Reserved. DMP6180SK3Q t1, PULSE DURATION TIMES (sec) Figure 12 Transient Thermal Resistance 0.001r(t), TRANSIENT THERMAL RESISTANCE R (t) = r(t) * R R = 68 蚓/W Duty Cycle, D = t1/ t2 JA JA JA 0.01 0.1 D = 0.7 D = 0.9 D = 0.5 D = 0.3 D = 0.1 D = 0.05 D = 0.02 D = 0.01 D = 0.005 Single Pulse 68°C/W TIME (sec)

Document number: DS39320 Rev. 2 - 2 6 of 7 www.diodes.com January 2026 © 2026 Copyright Diodes Incorporated. All Rights Reserved. DMP6180SK3Q Package Outline Dimensions Please see http://www.diodes.com/package-outlines.html for the latest version. TO252 (DPAK) TO252 (DPAK) Dim Min Max Typ A 2.19 2.39 2.29 A1 0.00 0.13 0.08 A2 0.97 1.17 1.07 b 0.64 0.88 0.783 b2 0.76 1.14 0.95 b3 5.21 5.50 5.33 c 0.45 0.58 0.531 D 6.00 6.20 6.10 D1 5.21 -- -- e 2.286 BSC E 6.45 6.70 6.58 E1 4.32 -- -- H 9.40 10.41 9.91 L 1.40 1.78 1.59 L3 0.88 1.27 1.08 L4 0.64 1.02 0.83 a 0° 10° -- All Dimensions in mm Suggested Pad Layout Please see http://www.diodes.com/package-outlines.html for the latest version. TO252 (DPAK) Dimensions Value (in mm) C 4.572 X 1.060 X1 5.632 Y 2.600 Y1 5.700 Y2 10.700 E D b2(2x) b(3x) e c A 7°± 1° H Seating Plane Gauge Plane a 0.508 L 2.74REF X Y C

Document number: DS39320 Rev. 2 - 2 7 of 7 www.diodes.com January 2026 © 2026 Copyright Diodes Incorporated. All Rights Reserved. DMP6180SK3Q IMPORTANT NOTICE 1. DIODES INCORPORATED (Diodes) AND ITS SUBSIDIARIES MAKE NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARDS TO ANY INFORMATION CONTAINED IN THIS DOCUMENT, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICUL AR PURPOSE OR NON -INFRINGEMENT OF THIRD PARTY INTELLECTUAL PROPERTY RIGHTS (AND THEIR EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION). 2. The Information contained herein is for informational purpose only and is provided only to illustrate the operation of Diodes ’ products described herein and application examples. Diodes does not assume any liability arising out of the application or use of this document or any product described herein. This document is intended for skilled and technically trained engineering customers and users who design with Diodes’ products. Diodes’ products may be used to facilitate safety-related applications; however, in all instances customers and users are responsible for (a) selecting the appropriate Diodes products for their applications, (b) evaluating the suitability of Diodes’ products for their intended applications, (c) ensuring their applications, which inco rporate Diodes’ products, comply the applicable legal and regulatory requirements as well as safety and functional - safety related standards, and (d) ensuring they design with appropriate safeguards (including testing, validation, quality co ntrol techniques , redundancy, malfunction prevention, and appropriate treatment for aging degradation) to minimize the risks associated with their applications. 3. Diodes assumes no liability for any application-related information, support, assistance or feedback that may be provided by Diodes from time to time. 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