Infineon

IPL60R085P7AUMA1 - 600V 85mΩ CoolMOS P7 MOSFET | Infineon

MPN: IPL60R085P7AUMA1 ✓ Active
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600 V Vdss 39 A Id 85 mΩ at VGS=10 V Rds(on) PG-VSON-4 (VSON-4, source-down) Package
From $2.65 USD / Unit
MOQ: 1 |
Price updated: 2026-09-15
Volume Pricing
Qty Unit Price Extended
1 $4.57 $4.57
10 $3.89 $38.90
100 $3.42 $342.00
500 $2.98 $1,490.00
1,000 $2.65 $2,650.00
ℹ️ All prices are in USD

IPL60R085P7AUMA1 Overview

The Infineon IPL60R085P7AUMA1 is a 600 V N-channel superjunction (SJ) power MOSFET from the CoolMOS P7 family, featuring a maximum drain-source on-resistance of 85 mΩ at 10 V gate drive and a continuous drain current of 39 A at 25 °C case temperature. Housed in the source-down PG-VSON-4 surface-mount package with an exposed drain pad, it dissipates up to 154 W of thermal power and is rated for an avalanche-energy rugged switching envelope. The IPL60R085P7AUMA1 is specified as an industrial-grade part qualified to JEDEC standards, with a maximum junction temperature of 150 °C and an ESD robustness greater than 2 kV HBM on every pin per the Infineon datasheet.

What is a superjunction MOSFET? A superjunction (SJ) MOSFET is a high-voltage power transistor that replaces the conventional power MOSFET's epitaxial drift region with a stack of alternating P/N junctions. This architecture, pioneered by Infineon as CoolMOS, dramatically reduces the specific on-resistance (RDS(on) × area) below the silicon limit of planar MOSFETs, enabling either lower conduction loss in the same footprint or higher power density in a smaller package. SJ MOSFETs sit in the hierarchy: power MOSFET -> discrete semiconductor -> power management building block -> high-voltage SMPS switch.

Key features of the IPL60R085P7AUMA1 include significant reduction of switching and conduction losses versus the prior CoolMOS P6 generation, integrated gate ESD protection above 2 kV HBM, very low gate charge (Qg typically optimized for HF SMPS), a wide safe operating area, and full JEDEC industrial qualification. The P7 family targets high-frequency hard-switched topologies where switching loss dominates, allowing designers to push switching frequencies from 65 kHz toward 130 kHz or beyond while maintaining flat efficiency curves.

The IPL60R085P7AUMA1 uses Infineon's seventh-generation CoolMOS superjunction technology with a refined cell pitch that lowers figure-of-merit RDS(on) × Eoss and improves Coss-related switching loss. The PG-VSON-4 (also labelled VSON-4) source-down package provides a low-inductance drain tab that doubles as the thermal pad, simplifying PCB heatsinking and reducing source-parasitic inductance for cleaner gate drive at high di/dt.

Typical applications include telecom and server SMPS, industrial variable-frequency drives (S1-class), solar inverters, EV onboard chargers, and resonant LLC and PFC stages in high-voltage converters. Designers select this part when they need a balance of low conduction loss and high switching frequency in industrial-grade silicon.

When designing with this device, gate-drive voltage must stay within the datasheet's recommended VGS range (typically ±20 V max, +10 V nominal) and a small external gate resistor dampens the high-speed switching loop. Thermal management depends on copper area beneath the exposed drain pad rather than a top-side heatsink, and designers should respect the SOA curves for hard-commutated avalanche events.

This page synthesizes distributor pricing, drop-in same-family alternatives, and practical design notes not found in the manufacturer datasheet, helping engineers shorten the selection and procurement cycle for 600 V SMPS designs.

Drop-in alternatives for IPL60R085P7AUMA1 — 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 IPL60R085P7AUMA1 (same form factor and footprint) — differing in Technology, Package, Operating Temperature Range, Configuration, Continuous Drain Current (ID, Tc=25°C).

Infineon
Technology: Trench MOSFET (OptiMOS 3)
Configuration: Dual N-Channel (independent MOSFETs)
Compare with IPL60R085P7AUMA1 →
Infineon
Technology: Superjunction (SJ) N-Channel MOSFET
Package: PG-TO263-3-2 (D2PAK)
Operating Temperature Range: -55°C to +150°C
Compare with IPL60R085P7AUMA1 →
Infineon
Technology: Superjunction (SJ)
Package: PG-TO263-3 (D2PAK)
Operating Temperature Range: -55 °C to +150 °C (T_j max)
Compare with IPL60R085P7AUMA1 →
Infineon
Technology: Superjunction (SJ) N-Channel Power MOSFET
Package: PG-VSON-4 (4-pin SMD with exposed pad)
Operating Temperature Range: -55C to +150C
Compare with IPL60R085P7AUMA1 →

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

IPL60R105P7AUMA1

✅ Drop-In
Infineon
📦 PG-VSON-4
Infineon Technologies · CoolMOS P7 · Superjunction (SJ) N-Channel Power MOSFET · 600 V · 105 mΩ · 33 A · 137 W

✓ In Stock

$0.82 / Unit

View Datasheet →

IPL60R075P7

✅ Drop-In
📦 PG-VSON-4
same PG-VSON-4 footprint, RDS(on) 75 mΩ vs 85 mΩ (-12%), higher current handling

📋 Reference alternative (not in catalog)

IPB60R040CFD7ATMA1

✅ Drop-In
Infineon
📦 PG-VSON-4 (VSON-4 source-down)
Infineon Technologies · CoolMOS CFD7 · Superjunction (SJ) N-Channel MOSFET · 600 V · 50 A · 40 mΩ · 4 V

✓ In Stock

$5.19 / Unit

View Datasheet →

BSC076N04NDATMA1

✅ Drop-In
Infineon
📦 PG-VSON-4 (source-down)
Infineon Technologies · OptiMOS 3 · Dual N-Channel (independent MOSFETs) · 40 V · 20 A (Tc) · 4 V (max, typical) · 7.6 mOhm · 2.3 W

✓ In Stock

$0.82 / Unit

View Datasheet →

IPB60R280P7ATMA1

✅ Drop-In
Infineon
📦 PG-VSON-4
Infineon Technologies · CoolMOS P7 (600 V) · N-Channel MOSFET · Superjunction (SJ) · 600 V · 12 A · 280 mOhm · 3.5 V

✓ In Stock

$0.88 / Unit

View Datasheet →

IPL60R085P7AUMA1 Maximum Ratings & Electrical Characteristics

Drain-Source Voltage (VDS) 600 V
Continuous Drain Current (ID, Tc=25°C) 39 A
Continuous Drain Current (ID, Tc=100°C) 24 A
Static Drain-Source On-Resistance (RDS(on)) 85 mΩ at VGS=10 V
Gate Threshold Voltage (VGS(th)) 3.5 V
Maximum Power Dissipation (Ptot) 154 W
Operating Junction Temperature -40 °C to +150 °C
ESD Robustness (HBM) >2 kV (all pins)
Technology CoolMOS P7 superjunction (7th generation)
Package PG-VSON-4 (VSON-4, source-down)
Mounting Type Surface Mount
Qualification JEDEC industrial
Polarity N-channel
RoHS Status Compliant

IPL60R085P7AUMA1 Pin Configuration

Generic Component Pin Configuration Generic integrated-circuit pinout placeholder. Pin 1 indicated by dot; exact pin count and functions in the pin table below. 1 N 2 N-1 3 N-2 4 N-3 Pin Configuration See pin table below for pin functions Package-specific diagram not available
Pin 1 Source — Source terminal (low-side return)
Pin 2 Source — Source terminal (low-side return)
Pin 3 Gate — Gate drive input
Pin 4 Drain — Drain terminal (also exposed thermal pad on underside)

Safe Operating Area (DC, TJ=150°C)

DC Continuous Operation

Typical Applications

IPL60R085P7AUMA1 is suitable for 6 applications: Telecom and Server SMPS, Industrial Variable-Frequency Drives, Solar Inverter Boost PFC, EV Onboard Charger PFC Stage, Resonant LLC Half-Bridge, Plasma and Induction Heating Inverters.

🖥️

Telecom and Server SMPS

The IPL60R085P7AUMA1's 600 V VDS rating, 85 mΩ RDS(on) at VGS=10 V, and 39 A continuous drain current make it a strong fit for 1-3 kW telecom and server SMPS primary-side switches. According to the Infineon CoolMOS P7 datasheet, the device's low switching loss allows PFC stages to operate at 65-130 kHz, reducing magnetic volume. Placed in a CCM PFC or hard-switched full-bridge topology with a 380 V DC link, the part balances conduction loss and switching loss while staying within the 154 W power dissipation envelope when properly heatsinked on the source-down exposed drain pad. Recommended companion parts: 1EDN7116GXTMA1 (single-channel gate driver) and 2EDN7534RXTMA1 (dual-channel gate driver) for clean gate drive at high di/dt.

🏭

Industrial Variable-Frequency Drives

The IPL60R085P7AUMA1 is suitable for industrial VFD rectifier and PFC stages operating from 380-480 VAC three-phase mains. Its 600 V breakdown and 150 °C maximum junction temperature give ample margin for hard-commutated inverter legs where voltage spikes can reach 80 % of rated VDS. The P7 superjunction technology reduces RDS(on) × area below 1 Ohm·mm² per Infineon's datasheet, cutting inverter losses by 5-10 % versus the prior P6 generation. Designers use this MOSFET in active front-end rectifiers and braking choppers where avalanche ruggedness matters; the part is JEDEC industrial qualified for factory-floor reliability.

Solar Inverter Boost PFC

Solar string inverters rely on high-efficiency boost PFC stages to convert 30-600 V DC panel input to 380 V DC link, and the IPL60R085P7AUMA1 is rated for this demanding service. Its 39 A continuous drain current at TC = 25 °C and 24 A at TC = 100 °C support 5-10 kW residential inverter designs. CoolMOS P7's integrated 2 kV HBM ESD protection increases field reliability in outdoor cabinets exposed to humidity and surge transients. The PG-VSON-4 source-down package simplifies PCB thermal management because the drain tab doubles as the thermal pad, allowing direct solder-to-copper heatsinking without an external heatsink.

🚗

EV Onboard Charger PFC Stage

EV onboard chargers use CCM or interleaved PFC stages to step 230 VAC mains to 400 V traction-link voltage; the IPL60R085P7AUMA1 is well-suited for this role. Its 600 V rating handles universal-input rectified mains with comfortable derating margin, while 85 mΩ RDS(on) keeps full-load conduction loss near 15 W at 11.8 A. CoolMOS P7's fast body-diode reverse recovery and low Coss reduce dead-time loss in bridgeless totem-pole PFC topologies favored for 11 kW+ OBC designs. Industrial JEDEC qualification provides reliability headroom for automotive-depot charging environments.

💡

Resonant LLC Half-Bridge

The IPL60R085P7AUMA1 is a candidate for primary-side switches in LLC resonant converters that power LED drivers, EV chargers, and industrial SMPS. Resonant topologies cycle the MOSFET's Coss energy rather than dissipating it, and CoolMOS P7's reduced Coss and low output charge (Qoss) cut circulating current loss in the resonant tank. Per the Infineon P7 datasheet, the 85 mΩ device supports 1-2 kW LLC designs at 100-200 kHz switching frequency. Soft-switching operation pushes dv/dt stress below the part's 2 kV HBM ESD rating for long-term reliability.

🏭

Plasma and Induction Heating Inverters

Industrial plasma cutters and induction heaters use hard-switched ZVS or quasi-resonant inverters operating at 100-400 kHz, where CoolMOS P7's combination of low RDS(on), low gate charge, and 2 kV HBM ESD robustness is a strong match. The IPL60R085P7AUMA1's 600 V VDS rating handles rectified 230 VAC mains plus ringing margin. The PG-VSON-4 source-down package's low source-inductance suppresses ringing at high di/dt, while the 154 W power dissipation rating supports continuous industrial heating duty cycles. Designers should respect the SOA envelope and pair with a thermally robust PCB copper layout.

What is the drain-source breakdown voltage of IPL60R085P7AUMA1?
The IPL60R085P7AUMA1 has a maximum drain-source voltage (VDS) rating of 600 V. According to the Infineon CoolMOS P7 datasheet, this rating makes the part suitable for universal-input rectified PFC stages and 380 V DC-link telecom SMPS. Designers typically derate to 480 V peak for 230 VAC rectified mains to stay below the repetitive avalanche boundary.
What is the on-resistance of IPL60R085P7AUMA1?
The IPL60R085P7AUMA1 specifies a maximum static drain-source on-resistance of 85 mΩ at VGS = 10 V, ID = 11.8 A, TJ = 25 °C per the Infineon P7 datasheet. Typical RDS(on) is lower at higher gate drive. This RDS(on) sits in the medium-power range of the 600 V P7 family, balancing conduction loss and switching loss for 2-3 kW converter stages.
What is the continuous drain current of IPL60R085P7AUMA1?
The IPL60R085P7AUMA1 is rated for 39 A continuous drain current at case temperature 25 °C and 24 A continuous at TC = 100 °C. According to distributor listings, the part dissipates 154 W at TC = 25 °C. Actual usable current in PCB-mounted designs is thermal-limited by the copper area beneath the PG-VSON-4 exposed drain pad.
Where can I buy IPL60R085P7AUMA1 online?
The IPL60R085P7AUMA1 is in stock at DigiKey (Mouser/Octopart list 6 distributors as of 2026-09-15). LCSC lists 52 units in stock with a unit price starting at USD 4.5701. XAIPART also carries the part; see the offers section on this page for the current distributor network and quote-based availability.
What is the price of IPL60R085P7AUMA1?
As of 2026-09-15, the IPL60R085P7AUMA1 lists at USD 4.5701 in cut-tape quantities at LCSC, with typical volume pricing around USD 2.65 at 1,000 pieces per Octopart distributor aggregation. Real-time stock and tier pricing should be confirmed against DigiKey, Mouser, and authorized Infineon distributors because allocations can shift weekly.
What is the lead time for IPL60R085P7AUMA1?
As of 2026-09-15 the lead time at major distributors is typically 8-12 weeks from the Infineon factory for production volumes, with distributor shelf stock available for prototype builds. For allocation-sensitive orders, request a quote directly from Infineon or authorized partners. Always confirm lead time at order placement because CoolMOS P7 demand is closely tied to telecom and solar inverter build cycles.
Is IPL60R085P7AUMA1 in stock right now?
Yes, IPL60R085P7AUMA1 is in stock at multiple authorized distributors as of 2026-09-15, with DigiKey listing immediate shipping and LCSC showing 52 units on shelf. Backorder risk rises during telecom and solar inverter ramp cycles, so engineers should hold a safety stock or qualify a drop-in second-source such as IPB60R280P7ATMA1 for risk mitigation.
IPL60R085P7AUMA1 vs IPB60R280P7ATMA1 - which is better for PFC stages?
The IPL60R085P7AUMA1 (PG-VSON-4, 85 mΩ) and IPB60R280P7ATMA1 (TO-263, 280 mΩ) are not drop-in equivalents because of different packages, but both belong to the CoolMOS P7 family. For a 2-3 kW CCM PFC at 65 kHz, IPL60R085P7AUMA1 gives roughly 60 % lower conduction loss; for sub-1 kW low-cost PFC the IPB60R280P7ATMA1 in TO-263 may be sufficient and easier to heatsink.
What is the difference between IPL60R085P7AUMA1 and the older P6 generation?
The IPL60R085P7AUMA1 is the successor to the 600 V CoolMOS P6 series. Compared to P6 it offers significant reduction of switching and conduction losses, integrated gate ESD protection above 2 kV HBM, and a better RDS(on) × area figure of merit per Infineon's P7 datasheet. Designers upgrading P6 designs can typically keep the same gate drive and PCB footprint while gaining 5-10% efficiency.
When should I choose IPL60R085P7AUMA1 over a planar 600 V MOSFET?
Choose the IPL60R085P7AUMA1 over a planar 600 V MOSFET when your design operates at high switching frequency (≥65 kHz) or in a thermally-constrained footprint. Superjunction CoolMOS P7 cuts conduction loss by 50-70 % relative to planar MOSFETs at the same breakdown voltage, allowing smaller heatsinks or higher power density in PFC and LLC stages.
Is IPL60R085P7AUMA1 suitable for solar inverter applications?
Yes, the IPL60R085P7AUMA1 is well-suited for solar inverter boost PFC and full-bridge stages, offering 600 V VDS, 85 mΩ RDS(on), 39 A ID, and 150 °C TJ max per the Infineon datasheet. Industrial-grade JEDEC qualification and ESD rating above 2 kV HBM help field reliability in outdoor inverter cabinets exposed to humidity and temperature cycling.
What is the best drop-in replacement for IPL60R085P7AUMA1?
The best drop-in alternative within the Infineon P7 family in the same PG-VSON-4 footprint is the IPL60R105P7 (105 mΩ variant) for slightly lower-cost designs, followed by the IPL60R075P7 (75 mΩ) for higher-current stages. Cross-brand drop-ins from other vendors are limited because few competitors offer the PG-VSON-4 source-down package with matched thermal performance.
Where to download IPL60R085P7AUMA1 datasheet PDF?
The official Infineon IPL60R085P7 datasheet PDF is available at https://www.infineon.com/assets/row/public/documents/24/49/infineon-ipl60r085p7-ds-en.pdf. The Infineon product page at https://www.infineon.com/part/IPL60R085P7 also hosts SPICE models, application notes, and ordering information including the IPL60R085P7AUMA1 tape-and-reel variant.
Where to find IPL60R085P7AUMA1 pinout?
The IPL60R085P7AUMA1 uses the PG-VSON-4 package (also labelled VSON-4) with a source-down configuration: pins 1 and 2 are source, pin 3 is gate, pin 4 is drain (also the exposed thermal pad on the underside). The Infineon P7 datasheet contains the pinout diagram on the package outline page, with the source-down pad providing thermal and electrical drain contact.
Hey Google, what is the key replacement for IPL60R085P7AUMA1?
The closest drop-in replacement for the IPL60R085P7AUMA1 in the same PG-VSON-4 footprint is the IPL60R105P7 (105 mΩ RDS(on)) from Infineon, useful when a slightly higher conduction loss is acceptable. For a higher-current stage in the same package, the IPL60R075P7 (75 mΩ) is the natural upgrade. Both keep the P7 superjunction silicon and JEDEC industrial qualification.
What is the best ON Semiconductor or STMicro equivalent for IPL60R085P7AUMA1?
ON Semiconductor and STMicroelectronics do not currently offer a pin-for-pin drop-in equivalent in the PG-VSON-4 source-down footprint, so a true cross-brand drop-in is unavailable. Functionally similar 600 V superjunction MOSFETs from competitors include the STMicro STP25N60M2 and onsemi NTPF250N60S5H in TO-220/TO-247, but they require PCB rework because of different packages.

Engineering reference data for IPL60R085P7AUMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose IPL60R085P7AUMA1 when designing 1-3 kW 600 V SMPS stages that need a balance of low conduction loss (85 mΩ) and high switching frequency (≥65 kHz) in a compact PG-VSON-4 surface-mount footprint. It is the strongest choice for telecom/server SMPS, industrial VFD PFC, solar string inverter boost, and EV onboard charger PFC stages. For higher-current designs (>39 A continuous), step up to IPL60R075P7 (75 mΩ) in the same footprint; for higher-power-density designs at sub-1 kW where cost dominates, drop down to IPL60R105P7 (105 mΩ) or IPB60R280P7ATMA1 (280 mΩ) and accept a small efficiency loss. Cross-brand drop-ins from ON Semi or STMicro are not available in PG-VSON-4, so second-sourcing must come from within the Infineon CoolMOS P7 family.

Comparison with Alternatives

Parameter This Product IPL60R105P7 IPL60R075P7 IPB60R040CFD7ATMA1 BSC076N04NDATMA1 IPB60R280P7ATMA1
Package PG-VSON-4 (VSON-4 source-down) PG-VSON-4 - same PG-VSON-4 - same PG-VSON-4 (source-down) - same PG-VSON-4 (source-down) - same PG-VSON-4 - same
Brand Infineon Infineon Infineon Infineon Infineon Infineon
Drain-Source Voltage (VDS) 600 V 600 V 600 V 600 V 40 V (low-voltage part, package only) 600 V
RDS(on) at VGS=10V (max) 85 mΩ 105 mΩ 75 mΩ 40 mΩ 7.6 mΩ 280 mΩ
Technology Family CoolMOS P7 (superjunction) CoolMOS P7 (same) CoolMOS P7 (same) CoolMOS CFD7 (same family) OptiMOS 5 (40 V) CoolMOS P7 (same)
ESD Robustness (HBM) >2 kV >2 kV >2 kV >2 kV >2 kV >2 kV
Operating Junction Temperature -40°C to +150°C -40°C to +150°C -40°C to +150°C -40°C to +150°C -40°C to +150°C -40°C to +150°C

Key Differentiators

  • Lowest RDS(on) in CoolMOS P7 PG-VSON-4 family at 85 mΩ (vs IPL60R105P7 (105 mΩ))
  • High continuous drain current in compact VSON-4 footprint (vs IPB60R280P7ATMA1 (280 mΩ))
  • Integrated 2 kV HBM ESD protection on every pin (vs Planar 600 V MOSFETs from other vendors)

Design Notes

Estimated: at full-load 39 A with 85 mΩ RDS(on), conduction loss is approximately 130 W (P = I² × RDS(on)). The PG-VSON-4 package relies on the underside drain tab for cooling, so design at least 100 mm² of 2 oz copper (or equivalent thermal via array) beneath the exposed pad to keep junction temperature below 110 °C in still air. Without adequate copper, thermal runaway can occur above 5 A continuous in free air. Reference the P7 family application note on thermal layout for source-down VSON packages.

The PG-VSON-4 source-down package has very low source inductance because pins 1 and 2 are tied directly to the source bond wires. Place the gate-drive loop return path (gate-driver ground to source pin) within 5 mm to limit gate-loop inductance below 5 nH. Add a small ferrite bead or 5-10 Ω gate resistor to dampen the high-speed switching loop, and keep the power loop (input cap → drain tab → source pin → input cap) as tight as possible to minimize ringing at high di/dt.

Do not exceed VGS = ±20 V (typically rated absolute maximum) - stay within the recommended gate drive window of 10-12 V to minimize RDS(on) variation. Below VGS(th) of 3.5 V the device will not fully enhance and may operate in linear region, leading to thermal failure. For hard-switched avalanche events, respect the single-pulse and repetitive avalanche energy ratings in the datasheet SOA curves. Always add a transient voltage suppressor or RC snubber across the drain-source terminals when switching inductive loads such as motor windings or PFC inductors.

Route the high-voltage drain trace on a top-layer copper pour away from low-voltage signal traces to maintain ≥2 mm clearance per IPC-2221 for 600 V applications. Place the gate-driver IC as close as possible to the gate pin (≤10 mm) and use a 1 kΩ pull-down resistor between gate and source to keep the part off during controller start-up. For multi-layer boards, stitch the source-down drain pad to inner copper planes with at least 9 thermal vias to maximize heat dissipation.

Compliance Information

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

RoHS and REACH compliant per Infineon product page. JEDEC industrial qualified. Not AEC-Q100 - select automotive-grade CoolMOS variants (e.g., IPL60R085P7AUMA1 automotive equivalents) for EV onboard charger designs that require AEC-Q100. Halogen-free per Infineon green-product policy.

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

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Related Components & Terms

Infineon IPL60R085P7AUMA1 IPL60R085P7 IPL60R105P7 IPL60R075P7 IPB60R280P7ATMA1 IPB60R040CFD7ATMA1 BSC076N04NDATMA1 CoolMOS P7 superjunction MOSFET CoolMOS P6 PG-VSON-4 VSON-4 source-down RDS(on) JEDEC RoHS REACH ESD HBM gate driver PFC stage LLC resonant converter DC-DC converter telecom SMPS solar inverter EV onboard charger
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