DMT2004UPS-13 Equivalent & Substitute Parts

Part Overview

The DMT2004UPS-13 is an N-Channel MOSFET manufactured by Diodes Incorporated, rated for 24V drain-to-source voltage with 80A continuous drain current at case temperature (Tc). This device is housed in a PowerDI5060-8 surface mount package and is qualified to AEC-Q101 automotive standards. The part is currently in Active product status with 2000 pieces in stock.

Substitute parts become necessary when the primary part reaches end-of-life status, inventory constraints occur, or design requirements necessitate alternative electrical or thermal characteristics. The following equivalent devices maintain functional compatibility within specified electrical and mechanical parameters while offering alternative sourcing options.

Substiute Parts

DMT2004UPS-13
Diodes IncorporatedIn Stock: 2059DMT2004UPS-13 Datasheet
DMT2004UPS-13
Current Part
BSC046N02KSGAUMA1
Infineon TechnologiesIn Stock: 4376BSC046N02KSGAUMA1 Datasheet
BSC046N02KSGAUMA1
MFR Recommended
CSD16408Q5
Texas InstrumentsIn Stock: 2491CSD16408Q5 Datasheet
CSD16408Q5
MFR Recommended
CSD16413Q5A
Texas InstrumentsIn Stock: 9328CSD16413Q5A Datasheet
CSD16413Q5A
MFR Recommended

Key Parameters

Parameter Value Unit
FET Type N-Channel
Technology MOSFET (Metal Oxide)
Drain to Source Voltage (Vdss) 24 V V
Continuous Drain Current @ 25°C (Tc) 80 A A
Rds On (Max) @ Id, Vgs 5 mOhm @ 20A, 10V mOhm
Gate Threshold Voltage Vgs(th) (Max) 1.45 V @ 250µA V
Power Dissipation (Max) @ Ta 3 W W
Operating Temperature Range -55°C to 150°C (TJ) °C
Mounting Type Surface Mount
Package / Case 8-PowerTDFN
RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Grade Automotive
Qualification AEC-Q101

Substitute Part Grouping Explanation

Substitution eligibility for the DMT2004UPS-13 is determined by the following critical parameters:

Electrical Compatibility Criteria:

  • FET Type: N-Channel topology required
  • Technology: MOSFET (Metal Oxide) construction
  • Drain to Source Voltage (Vdss): Minimum 24V rating (equal or higher acceptable)
  • Continuous Drain Current (Id @ Tc): Minimum 80A at case temperature (equal or higher acceptable)
  • Operating Temperature Range: -55°C to 150°C (TJ) minimum
  • Gate Voltage (Vgs Max): ±12V or greater range

Mechanical & Packaging Criteria:

  • Mounting Type: Surface Mount required
  • Package / Case: 8-PowerTDFN form factor
  • RoHS Compliance: ROHS3 Compliant required
  • Environmental Classification: Automotive grade preferred

Regulatory & Compliance Criteria:

  • REACH Status: REACH Unaffected
  • ECCN: EAR99
  • HTSUS: 8541.29.0095

The three substitute parts listed below meet these criteria with variations in specific electrical performance characteristics, inventory availability, and product lifecycle status.

Parameter Comparison

Parameter DMT2004UPS-13 (Diodes) BSC046N02KSGAUMA1 (Infineon) CSD16408Q5 (TI) CSD16413Q5A (TI)
Manufacturer Diodes Incorporated Infineon Technologies Texas Instruments Texas Instruments
FET Type N-Channel N-Channel N-Channel N-Channel
Technology MOSFET (Metal Oxide) MOSFET (Metal Oxide) MOSFET (Metal Oxide) MOSFET (Metal Oxide)
Vdss (V) 24 20 25 25
Id @ Tc (A) 80 80 113 100
Rds On (Max) @ Id, Vgs (mOhm) 5 @ 20A, 10V 4.6 @ 50A, 4.5V 4.5 @ 25A, 10V 3.9 @ 24A, 10V
Vgs(th) (Max) @ Id (V) 1.45 @ 250µA 1.2 @ 110µA 2.1 @ 250µA 1.9 @ 250µA
Gate Charge Qg (Max) @ Vgs (nC) 53.7 @ 10V 27.6 @ 4.5V 8.9 @ 4.5V 11.7 @ 4.5V
Input Capacitance Ciss (Max) @ Vds (pF) 1683 @ 15V 4100 @ 10V 1300 @ 12.5V 1780 @ 12.5V
Power Dissipation (Max) @ Ta (W) 3 2.8 3.1 3.1
Operating Temperature (TJ) (°C) -55 to 150 -55 to 150 -55 to 150 -55 to 150
Mounting Type Surface Mount Surface Mount Surface Mount Surface Mount
Package / Case 8-PowerTDFN 8-PowerTDFN 8-PowerTDFN 8-PowerTDFN
RoHS Status ROHS3 Compliant ROHS3 Compliant ROHS3 Compliant ROHS3 Compliant
MSL 1 (Unlimited) 3 (168 Hours) 1 (Unlimited) 1 (Unlimited)
Product Status Active Last Time Buy Active Active
Inventory (Pcs) 2000 4300 2398 9253

Engineering Selection Recommendations

CSD16413Q5A (Texas Instruments) – Primary Substitute

The CSD16413Q5A is the preferred substitute for the DMT2004UPS-13. This device exceeds the minimum electrical requirements with a 25V Vdss rating (4% higher than the primary part) and 100A continuous drain current at case temperature (25% higher than required). The on-resistance specification of 3.9 mOhm at 24A, 10V is superior to the primary part's 5 mOhm specification, resulting in lower power dissipation during operation. The device maintains Active product status with the highest inventory availability (9253 pieces) among all substitutes. Moisture sensitivity level remains at MSL 1 (Unlimited), matching the primary part. All regulatory compliance markers (ROHS3, REACH Unaffected, EAR99) align with the original specification.

CSD16408Q5 (Texas Instruments) – Secondary Substitute

The CSD16408Q5 provides an alternative with 25V Vdss and 113A continuous drain current at case temperature, exceeding primary part requirements. The on-resistance of 4.5 mOhm at 25A, 10V is comparable to the primary specification. This device maintains Active product status with 2398 pieces in inventory. MSL rating of 1 (Unlimited) matches the primary part. All regulatory compliance requirements are satisfied.

BSC046N02KSGAUMA1 (Infineon Technologies) – Tertiary Substitute

The BSC046N02KSGAUMA1 meets the 80A continuous drain current requirement at case temperature but operates at a reduced Vdss rating of 20V (17% lower than the primary part). This voltage reduction may limit applicability in circuits requiring the full 24V margin. The device exhibits superior on-resistance performance at 4.6 mOhm at 50A, 4.5V. However, this part carries Last Time Buy product status, indicating discontinued manufacturing. Moisture sensitivity level is MSL 3 (168 Hours), requiring controlled storage conditions compared to the primary part's MSL 1 (Unlimited). Inventory availability is 4300 pieces. This substitute is suitable only for applications where the 20V Vdss rating is acceptable and where long-term availability is not a concern.

Frequently Asked Questions (FAQ)

Q: Can the CSD16413Q5A directly replace the DMT2004UPS-13 without circuit modifications?

A: The CSD16413Q5A is electrically compatible within the 8-PowerTDFN package footprint. The 25V Vdss rating provides margin above the 24V requirement. The 100A continuous drain current at case temperature exceeds the 80A specification. Pin configuration and package dimensions are identical. No circuit modifications are required for direct substitution in applications operating within the original design parameters.

Q: What is the significance of the Vdss voltage difference between the primary part (24V) and the Infineon substitute (20V)?

A: The Vdss rating represents the maximum drain-to-source voltage the device can withstand. The primary part is rated for 24V, while the Infineon BSC046N02KSGAUMA1 is rated for 20V. In circuits operating at or near 24V, the Infineon device provides only 20V margin before exceeding its absolute maximum rating. This 4V reduction may be insufficient for applications with voltage transients or supply variations. The Texas Instruments substitutes (CSD16408Q5 and CSD16413Q5A) both maintain 25V Vdss ratings, providing adequate margin.

Q: Why does the BSC046N02KSGAUMA1 have a higher moisture sensitivity level (MSL 3) compared to the primary part (MSL 1)?

A: Moisture sensitivity level (MSL) indicates the maximum time a component can be exposed to ambient conditions (typically 30°C, 85% relative humidity) before baking is required. MSL 1 (Unlimited) allows indefinite storage without moisture absorption concerns. MSL 3 (168 Hours) limits storage to 168 hours before the component must be baked to remove absorbed moisture. This difference reflects different manufacturing processes and material compositions. For applications with extended shelf storage or high-humidity environments, the primary part or the Texas Instruments substitutes (both MSL 1) are preferable.

Q: What does "Last Time Buy" product status mean for the Infineon BSC046N02KSGAUMA1?

A: Last Time Buy status indicates that the manufacturer has announced discontinuation of this product. A final purchase window is available, after which the part will no longer be manufactured or available from distributors. While 4300 pieces are currently in inventory, this supply is finite and will eventually deplete. For new designs or long-term production requirements, the Texas Instruments substitutes with Active product status are recommended to ensure sustained availability.

Q: Are all substitute parts qualified to the same automotive standards as the primary part?

A: The primary part (DMT2004UPS-13) carries AEC-Q101 automotive qualification. The substitute parts provided do not explicitly list AEC-Q101 qualification in the input parameters. All substitutes are ROHS3 compliant and REACH Unaffected, matching the primary part's environmental compliance. For applications requiring explicit AEC-Q101 qualification, verification with the respective manufacturers (Infineon and Texas Instruments) is necessary to confirm automotive-grade certification status.

Q: How do the gate charge specifications differ among the parts, and what is the practical impact?

A: Gate charge (Qg) represents the total charge required to switch the MOSFET from off to on state. The primary part specifies 53.7 nC at 10V, while the Texas Instruments substitutes specify significantly lower values: 8.9 nC (CSD16408Q5) and 11.7 nC (CSD16413Q5A) at 4.5V. Lower gate charge reduces switching losses and allows faster switching speeds with lower gate drive current requirements. The Infineon substitute specifies 27.6 nC at 4.5V, intermediate between the primary part and the Texas Instruments devices. In high-frequency switching applications, the lower gate charge of the Texas Instruments devices provides efficiency advantages.

Q: What packaging considerations apply when substituting these parts?

A: All parts listed (primary and substitutes) use the 8-PowerTDFN package form factor with identical pin configurations and PCB footprints. Surface mount assembly equipment and reflow soldering processes require no modification. The physical dimensions and thermal interface characteristics are equivalent across all devices. Moisture sensitivity level differences (MSL 1 versus MSL 3) affect storage and handling procedures but not PCB assembly compatibility.

Request Quote (Ships tomorrow)