Infineon

IPD053N06NATMA1 - 60V 45A N-Ch OptiMOS 5 MOSFET | Infineon

MPN: IPD053N06NATMA1 βœ“ Active
In Stock Ships in 1-3 business days
60 V Vdss 45 A Id 5.3 mOhm @ VGS=10V Rds(on) PG-TO252-3 (DPAK-2), Surface Mount Package
From $0.52 USD / Unit
MOQ: 1 |
Price updated: 2026-09-14
Volume Pricing
Qty Unit Price Extended
1 $0.95 $0.95
10 $0.85 $8.50
100 $0.74 $74.00
500 $0.66 $330.00
1,000 $0.59 $590.00
2,500 $0.52 $1,300.00
ℹ️ All prices are in USD

IPD053N06NATMA1 Overview

The Infineon IPD053N06NATMA1 is an N-channel OptiMOS 5 power MOSFET rated for 60 V drain-source breakdown voltage and 45 A continuous drain current (Tc), housed in a surface-mount PG-TO252-3 (DPAK) package. Built on Infineon's OptiMOS 5 60 V platform, it is optimized for synchronous rectification in switched-mode power supplies (SMPS) and delivers a typical on-state resistance of 5.3 mOhm (max) with a Figure-of-Merit (RDS(on) x Qg) tailored for high-frequency operation. The device dissipates 3 W (Ta) and 83 W (Tc) under proper thermal management.

An N-channel power MOSFET is a voltage-controlled majority-carrier device used for fast switching and power conversion. It sits within the broader hierarchy: power MOSFET -> discrete semiconductor -> power management component. OptiMOS 5 represents Infineon's fifth-generation trench MOSFET technology, balancing low conduction loss, low gate charge, and rugged avalanche capability for high-efficiency, high-frequency converter designs.

Key differentiating features include a 60 V VDS rating suitable for 48 V bus and telecom rails, a +/-20 V gate-source voltage rating (VGS) for robust gate drive margin, and a low RDS(on) that minimizes conduction loss in the synchronous rectifier position. The technology combines a tightly controlled cell pitch with an optimized body diode for hard-commutated topologies.

Architecturally, OptiMOS 5 60V devices use a charge-balanced super-junction trench structure that achieves the lowest figure-of-merit in the 60 V class. Compared to older OptiMOS 2/3 generations, the part achieves roughly 30-40% lower RDS(on) at equivalent die size and substantially lower Qg for faster switching edges and reduced driver loss.

Typical applications include synchronous rectification in server, desktop, and tablet-charger SMPS, solar micro-inverters, fast-switching DC-DC converters, motor drive low-side switches, and hot-swap / e-fuse circuits where the 60 V rating provides ample margin on 48 V rails.

When designing with this part, ensure the gate driver provides >10 V VGS for full enhancement and that PCB copper area under the DPAK tab is sufficient to keep Tj below the 175 C maximum. Use a gate-source resistor (typically 10-100 ohm) to dampen ringing from package and PCB parasitics.

This page synthesizes distributor pricing from Mouser and DigiKey, drop-in DPAK alternatives, and practical design notes that go beyond what is in the bare datasheet.

Drop-in alternatives for IPD053N06NATMA1 β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Variants in this series

Same-series models that are drop-in compatible with IPD053N06NATMA1 (same form factor and footprint) β€” differing in Package, RoHS Status, Drain-Source Voltage (VDS), Operating Junction Temperature, Automotive Qualification.

Infineon
Package: PG-TDSON-8-56 (TDSON-8, 5 mm x 6 mm)
Drain-Source Voltage (VDS): 40 V
Operating Junction Temperature: -55 C to +175 C
Compare with IPD053N06NATMA1 β†’
Infineon
Package: PG-TDSON-8-34 (SS08 leadless)
RoHS Status: Compliant (Green Product)
Operating Junction Temperature: -55 Β°C to +175 Β°C
Compare with IPD053N06NATMA1 β†’
Infineon
Package: PG-TO252-3-11 (DPAK)
Operating Junction Temperature: -55 Β°C to +175 Β°C
Automotive Qualification: AEC-Q101
Compare with IPD053N06NATMA1 β†’

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

IPD025N06NATMA1

βœ… Drop-In
πŸ“¦ PG-TO252-3 (DPAK)
RDS(on) 2.5 mOhm vs 5.3 mOhm (-53%), same OptiMOS 5 60V DPAK die family

πŸ“‹ Reference alternative (not in catalog)

IPD50N06S409ATMA2

βœ… Drop-In
Infineon
πŸ“¦ PG-TO252-3 (DPAK)
N-Channel MOSFET (OptiMOS) Β· 60 V Β· 50 A Β· 9 mΞ© Β· 71 W

βœ“ In Stock

$0.49 / Unit

View Datasheet β†’

IPC100N04S51R7ATMA1

βœ… Drop-In
Infineon
πŸ“¦ PG-TO252-3 (DPAK)
Infineon Technologies Β· OptiMOS-5 Β· N-Channel MOSFET, Enhancement Mode Β· 40 V Β· 100 A (at TC)

βœ“ In Stock

$0.82 / Unit

View Datasheet β†’

IAUC60N04S6L030HATMA1

βœ… Drop-In
Infineon
πŸ“¦ PG-TO252-3 (DPAK)
Infineon Technologies Β· OptiMOS 6 Β· Half-Bridge (2 N-Channel) Β· 40 V Β· 60 A Β· 3.0 mOhm (typical) Β· 35 nC Β· 2.128 nF

βœ“ In Stock

$0.94 / Unit

View Datasheet β†’

BSC019N04LSGATMA1

βœ… Drop-In
πŸ“¦ PG-TO252-3 (DPAK)
40V vs 60V (-33%), 1.9 mOhm RDS(on), same DPAK footprint, lower voltage class

πŸ“‹ Reference alternative (not in catalog)

IPD053N06NATMA1 Maximum Ratings & Electrical Characteristics

Manufacturer Infineon Technologies
Product Series OptiMOS 5 60V
Transistor Polarity N-Channel
Drain-Source Voltage (VDS) 60 V
Gate-Source Voltage (VGS) +/- 20 V
Continuous Drain Current (ID, Tc) 45 A
Continuous Drain Current (ID, Ta) 18 A
On-State Resistance (RDS(on), max) 5.3 mOhm @ VGS=10V
Power Dissipation (Tc) 83 W
Power Dissipation (Ta) 3 W
Package PG-TO252-3 (DPAK-2), Surface Mount
Mounting Type Surface Mount
RoHS Status Compliant
Technology OptiMOS 5 trench MOSFET

IPD053N06NATMA1 Pin Configuration

DPAK (TO-252) Package Pinout Diagram DPAK TO-252 3-pin SMD power, JEDEC TO-252. Thermal tab. 1 2 3 DPAK (TO-252)
Pin 1 Gate β€” MOSFET gate drive input
Pin 2 Drain β€” MOSFET drain (electrically connected to metal tab)
Pin 3 Source β€” MOSFET source

Safe Operating Area (SOA) - DC

DC Continuous Operation

Typical Applications

IPD053N06NATMA1 is suitable for 7 applications: 48V Synchronous Rectification in Server SMPS, Solar Micro-Inverter DC-DC Stage, High-Frequency Isolated DC-DC Converters, Motor Drive Low-Side Switch, Hot-Swap / E-Fuse Circuits, USB-PD and Fast-Charger Power Stages, Industrial 24V Braking and Solenoid Drivers.

⚑

48V Synchronous Rectification in Server SMPS

The IPD053N06NATMA1 fits 48 V server and telecom SMPS synchronous rectifier positions because its 60 V VDS rating provides ample headroom above the nominal 48 V bus plus transient spikes, while its 5.3 mOhm max RDS(on) keeps conduction loss manageable at the typical 20-30 A secondary-side current. Used as the low-side FET in a half-bridge or full-bridge LLC/phase-shift converter, it complements a controller such as the Infineon XDPP1148100BXUMA1 digital PSU controller. The OptiMOS 5 Figure-of-Merit (RDS(on) x Qg) supports switching frequencies of 100-300 kHz, allowing compact magnetics in 80 PLUS Titanium-class server power supplies where every 0.5% efficiency gain matters for data-center operating cost.

πŸ’‘

Solar Micro-Inverter DC-DC Stage

The IPD053N06NATMA1 is well suited for solar micro-inverter boost and synchronous rectification stages handling the typical 36-42 V PV panel voltage with switching transients. Its 60 V VDS rating exceeds the panel Voc (open-circuit) including cold-weather margin, and its low Qg permits switching above 100 kHz to shrink the boost inductor and output filter. The 5.3 mOhm RDS(on) keeps full-load efficiency above 97% in sub-1 kW micro-inverters. Designers typically pair it with an Infineon EiceDRIVER gate driver such as the 2EDL5023U2DXTMA1 or 1EDN7136UXTSA1, and the PG-TO252-3 package's exposed tab enables direct PCB heatsinking without an external heatsink in most residential installations.

🏭

High-Frequency Isolated DC-DC Converters

In isolated bus converters and telecom DC-DC modules, the IPD053N06NATMA1 serves as a primary or secondary synchronous switch where its 60 V rating covers 36-48 V input buses and its OptiMOS 5 trench technology provides the speed needed for 200-500 kHz switching. The 5.3 mOhm RDS(on) limits conduction loss while the low Qg minimizes driver loss; together they enable >95% efficiency in quarter-brick and sixteenth-brick form factors. The PG-TO252-3 footprint is the industry-standard DPAK land pattern, allowing direct migration from legacy MOSFET designs to this part without PCB rework, which is critical when modernizing an installed base of power modules.

🏭

Motor Drive Low-Side Switch

IPD053N06NATMA1 works as a low-side switch in fractional-horsepower BLDC and stepper motor drives, particularly for 24-36 V battery-powered applications such as cordless tools, e-bikes, and small robotics. The 60 V VDS rating comfortably exceeds 36 V battery transients during regen braking, and the 45 A continuous ID rating supports inrush peaks. The 5.3 mOhm RDS(on) keeps the FET from limiting PWM duty-cycle accuracy at high currents. In 3-phase inverter legs, three IPD053N06NATMA1 (or complementary high-side P-MOSFETs) per phase enable compact 1-2 kW motor drives that fit inside tool housings.

πŸ–₯️

Hot-Swap / E-Fuse Circuits

Hot-swap and electronic-fuse circuits on 48 V distribution rails benefit from the IPD053N06NATMA1's 60 V rating and 45 A current handling. Used as the main pass element with a gate-controlled soft-start profile, it absorbs inrush transients when plugging live boards into a backplane, and the 5.3 mOhm RDS(on) minimizes steady-state voltage drop. Its avalanche rating (a hallmark of OptiMOS 5) provides robust SOA margin during fault conditions. The DPAK footprint is compatible with most hot-swap reference designs and simplifies thermal layout because the drain tab also serves as the heatsink interface.

⚑

USB-PD and Fast-Charger Power Stages

In USB-PD 3.1 and laptop fast-charger power stages operating from 19-28 V outputs, the IPD053N06NATMA1 functions as a synchronous rectifier on the secondary side of the flyback or active-clamp forward converter. Its 60 V VDS easily handles reflected voltage spikes from a 24 V output stage, and the low Qg enables QR/DCM operation at 65-130 kHz for compact 100-240 W GaN/Si hybrid chargers. Compared to older OptiMOS 2 parts, the 5.3 mOhm RDS(on) cuts secondary conduction loss by approximately 30%, contributing directly to the >93% efficiency required for DOE Level VI and EU CoC Tier 2 charger standards.

🏭

Industrial 24V Braking and Solenoid Drivers

The IPD053N06NATMA1 serves as a robust low-side switch for 24 V industrial solenoid valves, relay coils, and electromagnetic braking resistors. Its 60 V VDS gives 2.5x headroom over the 24 V nominal supply, easily absorbing flyback spikes from inductive loads without avalanche failure. The 45 A ID rating supports multiple parallel solenoids or large braking resistors in factory automation, and the 5.3 mOhm RDS(on) keeps dissipation low enough that the DPAK package can handle 5-10 A continuous duty without a heatsink. The -55 to +175 C Tj range covers factory-floor temperature extremes.

What is the drain-source breakdown voltage of IPD053N06NATMA1?
The IPD053N06NATMA1 has a drain-source breakdown voltage (VDS) of 60 V, per the Infineon OptiMOS 5 datasheet. This rating makes it suitable for 48 V telecom rails, 36-42 V solar micro-inverter stages, and 24 V industrial bus systems with adequate transient headroom. Designers should keep peak VDS below 48 V for derated operation.
What is the maximum continuous drain current of IPD053N06NATMA1?
The IPD053N06NATMA1 is rated for 45 A continuous drain current at case temperature (Tc) and 18 A at ambient (Ta), per the Infineon datasheet. The dual rating reflects package thermal limits; the 45 A figure requires a properly heatsinked PCB land pattern, while the 18 A figure applies to free-air operation on a standard 1 oz copper 2-layer board.
What is the RDS(on) of IPD053N06NATMA1 at 10V VGS?
The IPD053N06NATMA1 achieves a maximum on-state resistance of 5.3 mOhm at VGS=10V. According to Infineon's OptiMOS 5 datasheet, this low RDS(on) minimizes I^2R conduction loss in synchronous rectifier and low-side switch positions, enabling higher power-conversion efficiency in SMPS applications.
Where can I buy IPD053N06NATMA1 online?
IPD053N06NATMA1 is in stock at Mouser, DigiKey, and other authorized distributors as of 2026-09-15. Pricing starts around USD 0.95 at qty-1 with volume breaks to USD 0.52 at qty-2500. Authorized sourcing is recommended to avoid counterfeit risk on power MOSFETs.
What is the price of IPD053N06NATMA1 in 1000-piece quantity?
As of 2026-09-15, IPD053N06NATMA1 unit pricing at qty-1000 is approximately USD 0.59 per piece from major distributors like Mouser and DigiKey. Pricing at qty-2500 falls further to USD 0.52, while single-piece retail is around USD 0.95. Volume quotes are available from authorized Infineon distributors.
What is the lead time for IPD053N06NATMA1?
As of 2026-09-15, IPD053N06NATMA1 lead time is approximately 8-12 weeks from Infineon factory stock through authorized distributors. DigiKey and Mouser typically hold reel inventory for immediate shipment of small to moderate quantities. For production volumes, ordering 12 weeks ahead is recommended to ensure continuity.
IPD053N06NATMA1 vs IPD025N06NATMA1 - which is better for synchronous rectification?
IPD053N06NATMA1 has 5.3 mOhm max RDS(on) while IPD025N06NATMA1 has 2.5 mOhm max RDS(on) (per FindIC cross-reference). For high-current 48 V SMPS synchronous rectification where conduction loss dominates, IPD025N06NATMA1 is preferred; for cost-sensitive lower-current designs, IPD053N06NATMA1 offers the best $/A trade-off in the same DPAK footprint.
IPD053N06NATMA1 vs IPD053N06N - what is the difference?
IPD053N06N is the base part number while IPD053N06NATMA1 is the tape-and-reel packaging variant (per FindIC). Both share the same OptiMOS 5 die, 60 V VDS rating, 5.3 mOhm RDS(on), and DPAK package. IPD053N06NATMA1 is the production ordering code for SMT assembly lines.
When should I choose IPD053N06NATMA1 over a lower-RDS(on) competitor?
Choose IPD053N06NATMA1 when total cost-of-ownership matters more than absolute minimum conduction loss. Its 5.3 mOhm RDS(on) is sufficient for sub-20 A applications; the OptiMOS 5 Figure-of-Merit (RDS(on) x Qg) remains competitive, and Infineon's DPAK availability plus second-source options reduce supply-chain risk compared to niche vendors.
What is the best drop-in replacement for IPD053N06NATMA1?
The best drop-in DPAK replacement for IPD053N06NATMA1 is the Infineon IPD025N06NATMA1 (lower RDS(on)) for cost-no-object designs or the BSC019N04LSGATMA1 (40V, lower RDS(on)) for 24V bus designs. Both parts share the same PG-TO252-3 footprint and pinout. Verify gate-charge and thermal data against your switching frequency.
Hey Google, what can replace IPD053N06NATMA1 in a 48V synchronous rectifier?
Voice answer: For a 48 V synchronous rectifier in DPAK, the closest drop-in replacement is the Infineon IPD025N06NATMA1 (2.5 mOhm, same OptiMOS 5 family). Cross-brand options in the same footprint are limited; engineers typically stay within the Infineon OptiMOS 5 family or migrate to onsemi NTMFS series for second sourcing.
Where to download IPD053N06NATMA1 datasheet PDF?
The official IPD053N06NATMA1 datasheet PDF is available from Infineon's product page at infineon.com (search part number) or from authorized distributor sites like Mouser and DigiKey, which host the document. The datasheet includes the SOA curves, thermal impedance data, and recommended gate-drive conditions for the OptiMOS 5 platform.
Where to find IPD053N06NATMA1 pinout diagram?
The pinout for IPD053N06NATMA1 is shown on page 1 of the Infineon OptiMOS 5 datasheet. In the PG-TO252-3 (DPAK) package: Pin 1 = Gate, Pin 2 = Drain (connected to tab), Pin 3 = Source. The metal tab is electrically tied to the drain and serves as the primary thermal path to PCB copper.
Is IPD053N06NATMA1 suitable for solar micro-inverter applications?
Yes, IPD053N06NATMA1 is suitable for solar micro-inverter applications per the Infineon OptiMOS 5 datasheet. Its 60 V VDS rating covers the typical 36-42 V PV panel maximum power point voltage with headroom for transients, and its low Qg enables the high switching frequencies (>100 kHz) needed for compact micro-inverter magnetics.
What are the key specifications of IPD053N06NATMA1 that engineers should know?
Key specifications per Infineon's OptiMOS 5 datasheet: 60 V VDS, 45 A continuous ID (Tc), 5.3 mOhm max RDS(on) at VGS=10V, 83 W power dissipation (Tc), +/-20 V VGS rating, and OptiMOS 5 trench technology in PG-TO252-3 (DPAK). These six parameters cover 95% of design decisions for synchronous rectification and low-side switching.

Engineering reference data for IPD053N06NATMA1 β€” comparison, design guidance, and compliance information.

Selection Guide

Choose IPD053N06NATMA1 for 48 V SMPS synchronous rectification, solar micro-inverters, and motor-drive low-side switches where its 60 V VDS rating provides ample margin over typical 36-48 V bus voltages. Pick IPD025N06NATMA1 instead when conduction loss dominates the thermal budget (high-current converters above 25 A) and the same DPAK footprint is acceptable. Choose IAUC60N04S6L030HATMA1 when automotive AEC-Q101 qualification is mandatory. Choose IPD50N06S409ATMA2 only when second-source continuity with legacy OptiMOS 2 designs is required. For designs needing only 40 V rating on a 24 V bus, the BSC019N04LSGATMA1 offers 1.9 mOhm RDS(on) in the same DPAK land pattern.

Comparison with Alternatives

Parameter This Product IPD025N06NATMA1 IPD50N06S409ATMA2 IPC100N04S51R7ATMA1 IAUC60N04S6L030HATMA1 BSC019N04LSGATMA1
Package PG-TO252-3 (DPAK) PG-TO252-3 (DPAK) - same PG-TO252-3 (DPAK) - same PG-TO252-3 (DPAK) - same PG-TO252-3 (DPAK) - same PG-TO252-3 (DPAK) - same
Brand Infineon Infineon - same Infineon - same Infineon - same Infineon - same Infineon - same
Drain-Source Voltage (VDS) 60 V 60 V 60 V 40 V 40 V 40 V
On-State Resistance (RDS(on) max) 5.3 mOhm 2.5 mOhm (-53%) ~5.0 mOhm 1.7 mOhm (-68%) 3.0 mOhm (-43%) 1.9 mOhm (-64%)
Technology Generation OptiMOS 5 OptiMOS 5 - same OptiMOS 2 OptiMOS 5 OptiMOS 6 OptiMOS 5
Gate-Source Voltage (VGS) +/- 20 V +/- 20 V - same +/- 20 V - same +/- 20 V - same +/- 20 V - same +/- 20 V - same
Automotive Grade (AEC-Q101) No (industrial) No Yes No Yes No

Key Differentiators

  • OptiMOS 5 Figure-of-Merit balance (vs IPD50N06S409ATMA2 (OptiMOS 2))
  • 60V VDS with automotive-grade drop-in options (vs IAUC60N04S6L030HATMA1 (40V OptiMOS 6))
  • Same-footprint lower RDS(on) alternative exists (vs IPD025N06NATMA1 (OptiMOS 5, 2.5 mOhm))

Design Notes

Estimated: At ID=20 A continuous and RDS(on)=5.3 mOhm, conduction loss is approximately P=I^2*R = 400 * 0.0053 = 2.12 W. With the DPAK package's typical theta_JA of 50 C/W on 1 oz copper 2-layer board (1 sq-inch tab copper), junction temperature rise above 25 C ambient is approximately 2.12 * 50 = 106 C, leaving margin to the 175 C Tj maximum. For 30 A continuous operation, increase tab copper to 2-3 sq inches or add a top-side thermal pad to drop theta_JA below 30 C/W. Failure to provide adequate copper will cause thermal runaway under sustained high current.

Layout recommendations for the PG-TO252-3 (DPAK): (1) Place the drain tab pad with at least 1 sq inch of 2 oz copper for thermal spreading; (2) minimize source-inductance loop by placing gate-drive return (source) plane directly under the package; (3) keep the gate trace short and use a 10-100 ohm gate-source resistor to dampen parasitic-oscillation ringing; (4) via-fence the drain tab perimeter with 0.3 mm thermal vias on 1 mm pitch to inner-layer copper pours. Poor layout is the leading cause of MOSFET EMI/ringing failures in OptiMOS designs.

Common pitfalls with IPD053N06NATMA1: (1) Exceeding the +/-20 V VGS rating during transient ringing - add a 10 kohm gate-source pull-down and use a gate-driver with tight UVLO; (2) Operating above 60 V VDS during turn-off spikes - always verify worst-case spike under full load and lowest bus voltage; (3) Driving the gate below 8 V causes partial enhancement and excessive conduction loss - check driver pull-up voltage under load. For synchronous rectifier positions, the body-diode reverse-recovery behavior must be considered; OptiMOS 5 has improved body-diode dv/dt capability but a dead-time of 50-100 ns is still recommended.

Source-inductance optimization: In DPAK synchronous rectifier applications, source inductance causes VGS bounce that can momentarily turn off the FET during switching transitions. To minimize this, use a Kelvin-source connection where the gate-driver return is tied to a dedicated source-sense pin rather than the main source bond-wire. Since the standard PG-TO252-3 has only 3 pins (no Kelvin source), place a via-stitching array under the source pad and route the gate return through this stitching plane to minimize Ls.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Not Qualified
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Compliant

RoHS and REACH compliant per Infineon product page. Lead-free (Pb-free) reflow profile compatible. Not AEC-Q100/AEC-Q101 qualified - choose IAUC60N04S6L030HATMA1 for automotive designs. Halogen-free per Infineon OptiMOS 5 family datasheet.

Data verified on: 2026-09-15 β€” data verified and curated by XAIPART's component engineering team

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Related Components & Terms

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