STK615N4F8AG Power MOSFET Datasheet
STM32MP251C Documentation Datasheet - STM32MP251C/F STM32MP253C/F STM32MP255C/F STM32MP257C/F
Datasheet
STK615N4F8AG – 6 - December 2025
Datasheet

Automotive STK615N‑channel 40 V, 0.48 mΩ max., 672 A STripFET F8 Power MOSFET in a PowerLeaded 8x8 package

6 - December 2025
DS14222_STK615N4F8AG

Features

Order codeVDS RDS(on) max.ID
STK615N4F8AG40 V0.48 mΩ at 10 V672 A

  • AEC-Q101 qualified
  • MSL1 grade
  • 175 °C maximum operating junction temperature
  • 100% avalanche tested
  • Low gate charge Qg

Applications

  • Automotive motor control
  • Body and convenience
  • Chassis and safety
  • Power train for ICE

Description

The STK615N4F8AG is a 40 V N-channel enhancement mode Power MOSFET designed in STripFET F8 technology featuring an enhanced trench gate structure.

It ensures a state-of-the-art of figure of merit for very low on-state resistance while reducing internal capacitances and gate charge for faster and more efficient switching.





Product status link
STK615N4F8AG

Product summary
Order codeSTK615N4F8AG
Marking1615N4F8
PackagePowerLeaded 8x8
PackingTape and reel
1 Engineering samples are clearly identified with a dedicated special symbol in the marking of each unit.

Electrical ratings

Table 1. Absolute maximum ratings (at TC = 25 °C unless otherwise specified)
SymbolParameterValueUnit
VDSDrain-source voltage40V
VGSGate-source voltage±20V
ID1Drain current (continuous) at TC = 25 °C2672A
Drain current (continuous) at TC = 100 °C2475
Drain current (continuous) at TC = 25 °C3200
IDM124Drain current (pulsed), tp = 10 µs2688A
PTOTTotal power dissipation at TC = 25 °C390W
IASSingle pulse avalanche current (pulse width limited by TJ max.)90A
EASSingle pulse avalanche energy (starting TJ = 25 °C, ID = 90 A, RGmin = 25 Ω)1779mJ
TJOperating junction temperature range-55 to 175°C
TstgStorage temperature range°C
Table 2. Thermal data
SymbolParameterValueUnit
RthJA5Thermal resistance, junction-to-ambient (on 2s2p FR-4 board vertical in still area)13.8°C/W
RthJCThermal resistance, junction-to-case0.39°C/W
1 Specified by design, not tested in production.
2 This is the theoretical current value only related to the silicon.
3 This current value is limited by package.
4 Pulse width is limited by safe operating area.
5 Defined according to JEDEC standards (JESD51-5, -7).

Electrical characteristics

TJ = 25 °C unless otherwise specified.

Table 3. On/off states
SymbolParameterTest conditionsMin.Typ.Max.Unit
V(BR)DSS Drain-source breakdown voltageVGS = 0 V, ID = 1 mA40--V
IDSS

Zero gate voltage drain current

VDS = 40 V, VGS = 0 V

--1µA

VDS = 40 V, VGS = 0 V,

TJ = 125°C1

--100
IGSS

Gate-body leakage current

VGS = 20 V, VDS = 0 V

--100nA
VGS(th) Gate threshold voltageVDS = VGS, ID = 250 μA2-4V
RDS(on)

Static drain-source

on-resistance

VGS = 10 V, ID = 90 A-0.350.48mΩ
Table 4. Dynamic
SymbolParameterTest conditionsMin.Typ.Max.Unit
Ciss2Input capacitanceVDS = 25 V, f = 1 MHz, VGS = 0 V-13000-pF
Coss2Output capacitance-3400-pF
Crss2Reverse transfer capacitance-85-pF
Qg2Total gate chargeVDD = 20 V, ID = 180 A, VGS = 0 to 10 V-162-nC
Qgs2Gate-source charge-62-nC
Qgd2Gate-drain charge-20-nC
Table 5. Switching times
SymbolParameterTest conditionsMin.Typ.Max.Unit
td(on)3Turn-on delay time

VDD = 20 V, ID = 90 A,

RG = 4.7 Ω, VGS = 10 V

-36-ns
tr3Rise time-21-ns
td(off)3Turn-off delay time-93-ns
tf3Fall time-30-ns
Table 6. Source-drain diode
SymbolParameterTest conditionsMin.Typ.Max.Unit
ISD4 Forward on current (continuous)TC = 25 °C-240A
VSD Forward on voltageISD = 90 A, VGS = 0 V-1.1V
trr4Reverse recovery timeID = 90 A, di/dt = 100 A/µs, VDD = 32 V-84ns
Qrr4Reverse recovery charge-143nC
IRRM4Reverse recovery current-3.4A
1 Specified by design and evaluated by characterization, not tested in production.
2 Specified by design and evaluated by characterization, not tested in production.
3 Specified by design and evaluated by characterization, not tested in production.
4 Specified by design and evaluated by characterization, not tested in production.

Electrical characteristics (curves)

Figure 1. Total power dissipation
Figure 2. Drain current vs case temperature
Figure 3. Safe operating area
Figure 4. Normalized transient thermal impedance
Figure 5. Typical output characteristics
Figure 6. Typical transfer characteristics
Figure 7. Typical on-resistance vs gate-source voltage
Figure 8. Typical gate charge characteristics
Figure 9. Typical capacitance characteristics
Figure 10. Avalanche characteristics
Figure 11. Avalanche energy
Figure 12. Typical drain-source on-resistance
Figure 13. Normalized gate threshold voltage vs temperature
Figure 14. Typical reverse diode forward characteristics
Figure 15. Normalized V(BR)DSS vs temperature
Figure 16. Normalized on-resistance vs temperature

Package information

To meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance. ECOPACK specifications, grade definitions, and product status are available at: www.st.com. ECOPACK is an ST trademark.

PowerLeaded 8x8 package information

Figure 17. PowerLeaded 8x8 package outline
Figure 18. Section details
Table 7. PowerLeaded 8x8 mechanical data
Dim.mm
Min.Typ.Max.
A1.85
A10.000.080.15
A21.501.601.70
A30.600.700.80
b0.901.001.10
c0.200.25
c10.190.200.21
c20.490.56
c30.480.500.52
D6.106.206.30
D14.754.905.05
D23.503.653.80
D30.650.750.85
D40.20
D52.903.103.30
E7.908.008.10
E16.957.107.25
E26.706.806.90
E32.502.602.70
E40.650.800.95
E51.501.701.90
e1.902.002.10
H7.858.008.15
K0.450.550.65
K11.751.902.05
L1.001.201.30
L10.600.700.80
L20.23BSC
R0.20REF
Ɵ0°8°
Ɵ16°10°14°
Figure 19. PowerLeaded 8x8 recommended footprint (dimensions are in mm)

PowerLeaded 8x8 marking information

Figure 20. PowerLeaded 8x8 marking information
Note: Engineering Samples: these samples can be clearly identified by a dedicated special symbol in the marking of each unit. These samples are intended to be used for electrical compatibility evaluation only; usage for any other purpose may be agreed only upon written authorization by ST. ST is not liable for any customer usage in production and/or in reliability qualification trials.

Commercial Samples: fully qualified parts from ST standard production with no usage restrictions.

Revision history

Table 8. Document revision history
DateRevisionChanges
17-Jan-20231Initial release.
16-Oct-20242

Modified title, Features, Applications and Description.

Added schematic on cover page.

Modified Section 1: Electrical ratings, Section 2: Electrical characteristics.

Added Section 2.1: Electrical characteristics (curves).

Added Section 3.1.1: PowerLeaded 8x8 marking information.

Minor text changes

08-Nov-20243Document classification changed from ST restricted to public.

Modified Figure 3. Safe operating area and Figure 7. Typical on-resistance vs gate-source voltage.

09-Jan-20254

Updated Figure 6. Typical transfer characteristics.

Minor text changes.

14-Mar-20255Updated Figure 6 Typical transfer characteristics.
17-Dec-20256Updated Figure 6 Typical transfer characteristics.

List of tables

List of figures

IMPORTANT NOTICE – READ CAREFULLY

STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, enhancements, modifications, and improvements to ST products and/or to this document at any time without notice.

In the event of any conflict between the provisions of this document and the provisions of any contractual arrangement in force between the purchasers and ST, the provisions of such contractual arrangement shall prevail.

The purchasers should obtain the latest relevant information on ST products before placing orders. ST products are sold pursuant to ST’s terms and conditions of sale in place at the time of order acknowledgment.

The purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of the purchasers’ products.

No license, express or implied, to any intellectual property right is granted by ST herein.

Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product.

If the purchasers identify an ST product that meets their functional and performance requirements but that is not designated for the purchasers' market segment, the purchasers shall contact ST for more information.

ST and the ST logo are trademarks of ST. For additional information about ST trademarks, refer to www.st.com/trademarks. All other product or service names are the property of their respective owners.

Information in this document supersedes and replaces information previously supplied in any prior versions of this document.

© 2025 STMicroelectronics – All rights reserved

STK615N4F8AG Power MOSFET Datasheet
STM32MP251C Documentation Datasheet - STM32MP251C/F STM32MP253C/F STM32MP255C/F STM32MP257C/F
Datasheet
STK615N4F8AG – 6 - December 2025
Datasheet

Automotive STK615N‑channel 40 V, 0.48 mΩ max., 672 A STripFET F8 Power MOSFET in a PowerLeaded 8x8 package

6 - December 2025
DS14222_STK615N4F8AG

Features

Order codeVDS RDS(on) max.ID
STK615N4F8AG40 V0.48 mΩ at 10 V672 A

  • AEC-Q101 qualified
  • MSL1 grade
  • 175 °C maximum operating junction temperature
  • 100% avalanche tested
  • Low gate charge Qg

Applications

  • Automotive motor control
  • Body and convenience
  • Chassis and safety
  • Power train for ICE

Description

The STK615N4F8AG is a 40 V N-channel enhancement mode Power MOSFET designed in STripFET F8 technology featuring an enhanced trench gate structure.

It ensures a state-of-the-art of figure of merit for very low on-state resistance while reducing internal capacitances and gate charge for faster and more efficient switching.





Product status link
STK615N4F8AG

Product summary
Order codeSTK615N4F8AG
Marking1615N4F8
PackagePowerLeaded 8x8
PackingTape and reel
1 Engineering samples are clearly identified with a dedicated special symbol in the marking of each unit.

Electrical ratings

Table 1. Absolute maximum ratings (at TC = 25 °C unless otherwise specified)
SymbolParameterValueUnit
VDSDrain-source voltage40V
VGSGate-source voltage±20V
ID1Drain current (continuous) at TC = 25 °C2672A
Drain current (continuous) at TC = 100 °C2475
Drain current (continuous) at TC = 25 °C3200
IDM124Drain current (pulsed), tp = 10 µs2688A
PTOTTotal power dissipation at TC = 25 °C390W
IASSingle pulse avalanche current (pulse width limited by TJ max.)90A
EASSingle pulse avalanche energy (starting TJ = 25 °C, ID = 90 A, RGmin = 25 Ω)1779mJ
TJOperating junction temperature range-55 to 175°C
TstgStorage temperature range°C
Table 2. Thermal data
SymbolParameterValueUnit
RthJA5Thermal resistance, junction-to-ambient (on 2s2p FR-4 board vertical in still area)13.8°C/W
RthJCThermal resistance, junction-to-case0.39°C/W
1 Specified by design, not tested in production.
2 This is the theoretical current value only related to the silicon.
3 This current value is limited by package.
4 Pulse width is limited by safe operating area.
5 Defined according to JEDEC standards (JESD51-5, -7).

Electrical characteristics

TJ = 25 °C unless otherwise specified.

Table 3. On/off states
SymbolParameterTest conditionsMin.Typ.Max.Unit
V(BR)DSS Drain-source breakdown voltageVGS = 0 V, ID = 1 mA40--V
IDSS

Zero gate voltage drain current

VDS = 40 V, VGS = 0 V

--1µA

VDS = 40 V, VGS = 0 V,

TJ = 125°C1

--100
IGSS

Gate-body leakage current

VGS = 20 V, VDS = 0 V

--100nA
VGS(th) Gate threshold voltageVDS = VGS, ID = 250 μA2-4V
RDS(on)

Static drain-source

on-resistance

VGS = 10 V, ID = 90 A-0.350.48mΩ
Table 4. Dynamic
SymbolParameterTest conditionsMin.Typ.Max.Unit
Ciss2Input capacitanceVDS = 25 V, f = 1 MHz, VGS = 0 V-13000-pF
Coss2Output capacitance-3400-pF
Crss2Reverse transfer capacitance-85-pF
Qg2Total gate chargeVDD = 20 V, ID = 180 A, VGS = 0 to 10 V-162-nC
Qgs2Gate-source charge-62-nC
Qgd2Gate-drain charge-20-nC
Table 5. Switching times
SymbolParameterTest conditionsMin.Typ.Max.Unit
td(on)3Turn-on delay time

VDD = 20 V, ID = 90 A,

RG = 4.7 Ω, VGS = 10 V

-36-ns
tr3Rise time-21-ns
td(off)3Turn-off delay time-93-ns
tf3Fall time-30-ns
Table 6. Source-drain diode
SymbolParameterTest conditionsMin.Typ.Max.Unit
ISD4 Forward on current (continuous)TC = 25 °C-240A
VSD Forward on voltageISD = 90 A, VGS = 0 V-1.1V
trr4Reverse recovery timeID = 90 A, di/dt = 100 A/µs, VDD = 32 V-84ns
Qrr4Reverse recovery charge-143nC
IRRM4Reverse recovery current-3.4A
1 Specified by design and evaluated by characterization, not tested in production.
2 Specified by design and evaluated by characterization, not tested in production.
3 Specified by design and evaluated by characterization, not tested in production.
4 Specified by design and evaluated by characterization, not tested in production.

Electrical characteristics (curves)

Figure 1. Total power dissipation
Figure 2. Drain current vs case temperature
Figure 3. Safe operating area
Figure 4. Normalized transient thermal impedance
Figure 5. Typical output characteristics
Figure 6. Typical transfer characteristics
Figure 7. Typical on-resistance vs gate-source voltage
Figure 8. Typical gate charge characteristics
Figure 9. Typical capacitance characteristics
Figure 10. Avalanche characteristics
Figure 11. Avalanche energy
Figure 12. Typical drain-source on-resistance
Figure 13. Normalized gate threshold voltage vs temperature
Figure 14. Typical reverse diode forward characteristics
Figure 15. Normalized V(BR)DSS vs temperature
Figure 16. Normalized on-resistance vs temperature

Package information

To meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance. ECOPACK specifications, grade definitions, and product status are available at: www.st.com. ECOPACK is an ST trademark.

PowerLeaded 8x8 package information

Figure 17. PowerLeaded 8x8 package outline
Figure 18. Section details
Table 7. PowerLeaded 8x8 mechanical data
Dim.mm
Min.Typ.Max.
A1.85
A10.000.080.15
A21.501.601.70
A30.600.700.80
b0.901.001.10
c0.200.25
c10.190.200.21
c20.490.56
c30.480.500.52
D6.106.206.30
D14.754.905.05
D23.503.653.80
D30.650.750.85
D40.20
D52.903.103.30
E7.908.008.10
E16.957.107.25
E26.706.806.90
E32.502.602.70
E40.650.800.95
E51.501.701.90
e1.902.002.10
H7.858.008.15
K0.450.550.65
K11.751.902.05
L1.001.201.30
L10.600.700.80
L20.23BSC
R0.20REF
Ɵ0°8°
Ɵ16°10°14°
Figure 19. PowerLeaded 8x8 recommended footprint (dimensions are in mm)

PowerLeaded 8x8 marking information

Figure 20. PowerLeaded 8x8 marking information
Note: Engineering Samples: these samples can be clearly identified by a dedicated special symbol in the marking of each unit. These samples are intended to be used for electrical compatibility evaluation only; usage for any other purpose may be agreed only upon written authorization by ST. ST is not liable for any customer usage in production and/or in reliability qualification trials.

Commercial Samples: fully qualified parts from ST standard production with no usage restrictions.

Revision history

Table 8. Document revision history
DateRevisionChanges
17-Jan-20231Initial release.
16-Oct-20242

Modified title, Features, Applications and Description.

Added schematic on cover page.

Modified Section 1: Electrical ratings, Section 2: Electrical characteristics.

Added Section 2.1: Electrical characteristics (curves).

Added Section 3.1.1: PowerLeaded 8x8 marking information.

Minor text changes

08-Nov-20243Document classification changed from ST restricted to public.

Modified Figure 3. Safe operating area and Figure 7. Typical on-resistance vs gate-source voltage.

09-Jan-20254

Updated Figure 6. Typical transfer characteristics.

Minor text changes.

14-Mar-20255Updated Figure 6 Typical transfer characteristics.
17-Dec-20256Updated Figure 6 Typical transfer characteristics.

List of tables

List of figures

IMPORTANT NOTICE – READ CAREFULLY

STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, enhancements, modifications, and improvements to ST products and/or to this document at any time without notice.

In the event of any conflict between the provisions of this document and the provisions of any contractual arrangement in force between the purchasers and ST, the provisions of such contractual arrangement shall prevail.

The purchasers should obtain the latest relevant information on ST products before placing orders. ST products are sold pursuant to ST’s terms and conditions of sale in place at the time of order acknowledgment.

The purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of the purchasers’ products.

No license, express or implied, to any intellectual property right is granted by ST herein.

Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product.

If the purchasers identify an ST product that meets their functional and performance requirements but that is not designated for the purchasers' market segment, the purchasers shall contact ST for more information.

ST and the ST logo are trademarks of ST. For additional information about ST trademarks, refer to www.st.com/trademarks. All other product or service names are the property of their respective owners.

Information in this document supersedes and replaces information previously supplied in any prior versions of this document.

© 2025 STMicroelectronics – All rights reserved