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DMT6004LPS-13 Equivalent & Substitute Parts
Part Overview
The DMT6004LPS-13 is an N-Channel MOSFET manufactured by Diodes Incorporated, rated for 60V drain-to-source voltage with 22A continuous drain current at 25°C (Ta) and 90A at case temperature (Tc). This device is housed in a PowerDI5060-8 surface mount package and is designed for power switching applications requiring low on-resistance and high current handling capability. The part maintains Active product status with full RoHS3 compliance and unlimited moisture sensitivity rating (MSL 1).
Substitute parts are identified when equivalent electrical performance can be achieved within the specified parameter ranges while maintaining surface mount compatibility and thermal performance characteristics.
Substiute Parts
Key Parameters
| Parameter | Value | Unit |
|---|---|---|
| Drain-to-Source Voltage (Vdss) | 60 | V |
| Continuous Drain Current @ 25°C (Ta) | 22 | A |
| Continuous Drain Current @ Case Temp (Tc) | 90 | A |
| On-Resistance (Rds On) @ 25A, 10V | 2.8 | mOhm |
| Gate Threshold Voltage (Vgs(th)) @ 250µA | 3 | V |
| Gate Charge (Qg) @ 10V | 96.3 | nC |
| Input Capacitance (Ciss) @ 30V | 4515 | pF |
| Power Dissipation @ 25°C (Ta) | 2.1 | W |
| Power Dissipation @ Case Temp (Tc) | 105 | W |
| Operating Temperature Range | -55 to 150 | °C |
| Package Type | 8-PowerTDFN | Surface Mount |
| FET Type | N-Channel | MOSFET |
Substitute Part Grouping Explanation
Substitute parts for the DMT6004LPS-13 are qualified based on the following electrical and mechanical criteria:
Primary Substitution Criteria:
- Drain-to-Source Voltage (Vdss) rating of 60V or higher
- Continuous drain current capability at 25°C of 22A or greater
- On-resistance (Rds On) performance compatible with 22A operation
- Gate threshold voltage within ±20V maximum rating
- Surface mount package configuration (8-pin PowerTDFN or equivalent)
- Operating temperature range spanning -55°C to 150°C
- RoHS3 compliance and MSL 1 rating
Substitution Logic: Parts are grouped as direct substitutes when they maintain the 60V Vdss rating with equivalent or superior current handling at the specified gate drive voltages. Parts with higher Vdss ratings (75V) are included as functional substitutes for applications where voltage derating is acceptable. All substitute candidates maintain the same thermal operating range and surface mount mounting type.
Parameter Comparison
| Parameter | DMT6004LPS-13 (Diodes) | CSD18532NQ5B (TI) | FDMS030N06B (onsemi) | FDMS037N08B (onsemi) | FDMS86540 (onsemi) |
|---|---|---|---|---|---|
| Manufacturer | Diodes Incorporated | Texas Instruments | onsemi | onsemi | onsemi |
| Vdss (V) | 60 | 60 | 60 | 75 | 60 |
| Id @ 25°C Ta (A) | 22 | 22 | 22.1 | — | 20 |
| Id @ Tc (A) | 90 | 100 | 100 | 100 | 50 |
| Rds On @ 10V (mOhm) | 2.8 @ 25A | 3.4 @ 25A | 3.0 @ 50A | 3.7 @ 50A | 3.4 @ 20A |
| Vgs(th) @ 250µA (V) | 3 | 3.4 | 4.5 | 4.5 | 4 |
| Gate Charge Qg @ 10V (nC) | 96.3 | 64 | 75 | 100 | 90 |
| Ciss @ 30V (pF) | 4515 | 5340 | 7560 | 5915 | 6435 |
| Power Dissipation Ta (W) | 2.1 | 3.2 | 2.5 | 0.83 | 2.5 |
| Power Dissipation Tc (W) | 105 | — | 104 | 104.2 | 96 |
| Operating Temperature (°C) | -55 to 150 | -55 to 150 | -55 to 150 | -55 to 150 | -55 to 150 |
| Package | 8-PowerTDFN | 8-VSON-CLIP (5x6) | 8-PQFN (5x6) | 8-PQFN (5x6) | 8-PQFN (5x6) |
| RoHS3 Status | Compliant | Compliant | Compliant | Compliant | Compliant |
| MSL Rating | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) |
Engineering Selection Recommendations
CSD18532NQ5B (Texas Instruments NexFET™ Series)
This part provides direct electrical equivalence to the DMT6004LPS-13 with matching 60V Vdss and 22A continuous drain current at 25°C. The CSD18532NQ5B delivers superior gate charge performance (64 nC versus 96.3 nC), resulting in faster switching characteristics. Package footprint compatibility requires verification as the 8-VSON-CLIP differs from PowerDI5060-8, though both are 8-pin surface mount configurations. All compliance certifications (RoHS3, MSL 1) are maintained. Active product status confirmed.
FDMS030N06B (onsemi PowerTrench® Series)
This substitute maintains 60V Vdss with 22.1A continuous drain current at 25°C, providing functional equivalence. On-resistance specification (3.0 mOhm @ 50A, 10V) is comparable to the main part. Gate charge (75 nC) is lower than the DMT6004LPS-13, supporting faster switching operation. The 8-PQFN (5x6) package requires PCB layout verification for pin compatibility. RoHS3 and MSL 1 compliance confirmed. Active product status.
FDMS037N08B (onsemi PowerTrench® Series)
This part operates at 75V Vdss, providing voltage derating margin beyond the 60V specification of the main part. Continuous drain current at case temperature reaches 100A, exceeding the DMT6004LPS-13 capability. This substitute is suitable for applications where higher voltage tolerance is beneficial. Gate charge (100 nC) is slightly elevated. The 8-PQFN (5x6) package requires footprint verification. RoHS3 and MSL 1 compliance confirmed. Active product status.
FDMS86540 (onsemi PowerTrench® Series)
This part maintains 60V Vdss but with reduced continuous drain current at 25°C (20A versus 22A). Case temperature current capability is limited to 50A compared to 90A for the main part. This substitute is applicable only in applications where the lower current rating is acceptable. On-resistance (3.4 mOhm @ 20A, 10V) is compatible with reduced current operation. The 8-PQFN (5x6) package requires footprint verification. RoHS3 and MSL 1 compliance confirmed. Active product status.
Frequently Asked Questions (FAQ)
Q: Can the CSD18532NQ5B replace the DMT6004LPS-13 in all applications?
A: The CSD18532NQ5B provides electrical equivalence with matching voltage and current ratings. However, the package type differs (8-VSON-CLIP versus PowerDI5060-8). PCB layout and thermal management characteristics may differ. Verify pin-to-pin compatibility and thermal performance requirements before implementation.
Q: What is the primary advantage of the FDMS030N06B substitute?
A: The FDMS030N06B delivers lower gate charge (75 nC versus 96.3 nC), enabling faster switching transitions and reduced gate drive power consumption. It maintains equivalent 60V Vdss and 22.1A continuous current ratings. Package footprint differs and requires verification.
Q: Why is the FDMS037N08B listed as a substitute if it has 75V Vdss instead of 60V?
A: The FDMS037N08B is a functional substitute for applications where higher voltage derating is acceptable or beneficial. The 75V rating provides additional safety margin in circuits designed for 60V operation. This part is not suitable for applications with strict 60V maximum voltage constraints.
Q: Is the FDMS86540 a direct replacement for the DMT6004LPS-13?
A: The FDMS86540 is not a direct replacement due to reduced continuous drain current at 25°C (20A versus 22A) and significantly lower case temperature current (50A versus 90A). This substitute is applicable only in applications where these lower current ratings meet system requirements.
Q: Are all substitute parts RoHS3 compliant?
A: Yes. All substitute parts listed (CSD18532NQ5B, FDMS030N06B, FDMS037N08B, FDMS86540) maintain RoHS3 compliance and MSL 1 (Unlimited) moisture sensitivity rating, matching the compliance profile of the DMT6004LPS-13.
Q: What package compatibility issues should be considered?
A: The DMT6004LPS-13 uses PowerDI5060-8 packaging. Substitute parts use either 8-VSON-CLIP (5x6) or 8-PQFN (5x6) packages. While all are 8-pin surface mount configurations, pin assignments, thermal pad dimensions, and PCB footprints differ. Verify schematic pin mapping and PCB layout compatibility before design implementation.
Q: Do all substitutes support the same operating temperature range?
A: Yes. All substitute parts operate across the -55°C to 150°C temperature range, matching the DMT6004LPS-13 specification.
Q: Which substitute offers the best on-resistance performance?
A: The DMT6004LPS-13 provides the lowest on-resistance at 2.8 mOhm (@ 25A, 10V). Among substitutes, the FDMS030N06B offers competitive performance at 3.0 mOhm (@ 50A, 10V). On-resistance comparisons require consideration of measurement conditions and current levels.
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