Infineon

IPT007N06NATMA1 - 60V 300A OptiMOS 5 N-FET | Infineon

MPN: IPT007N06NATMA1 ✓ Active
In Stock Ships in 1-3 business days
60 V Vdss 300 A Id 0.75 mOhm Rds(on) PG-HSOF-8-1 (TOLL) Package
From $2.84 USD / Unit
MOQ: 1 |
Price updated: 2026-09-10
Volume Pricing
Qty Unit Price Extended
1 $4.95 $4.95
10 $4.45 $44.50
100 $3.96 $396.00
500 $3.55 $1,775.00
1,000 $3.18 $3,180.00
3,000 $2.84 $8,520.00
ℹ️ All prices are in USD

IPT007N06NATMA1 Overview

The Infineon IPT007N06NATMA1 is an N-channel power MOSFET built on Infineon's OptiMOS 5 60 V technology, rated for 60 V VDS, 300 A continuous ID (at TC = 25 C), and 375 W power dissipation in the compact PG-HSOF-8-1 (TOLL) surface-mount package. With a maximum on-resistance of 0.75 mOhm at VGS = 10 V, this device is engineered for ultra-low conduction loss in high-current switching applications. It ships on tape and reel with a 3000-piece standard pack quantity and is fully RoHS compliant.

A MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) is a voltage-controlled semiconductor switch used to route and modulate current in power-conversion circuits. Within the broader taxonomy, MOSFETs sit under discrete semiconductors -> transistors -> FETs -> power MOSFETs. The OptiMOS 5 family from Infineon represents the fifth-generation trench MOSFET platform optimized for low RDS(on), low gate charge, and high avalanche ruggedness, making these parts the workhorse of modern synchronous rectification, motor drive, and hot-swap designs.

Key differentiating features include the 0.75 mOhm maximum RDS(on), industry-leading figure-of-merit (FOM = RDS(on) x QG), and a thermally enhanced PG-HSOF-8-1 package with an exposed source pad that drops thermal resistance dramatically compared with standard SO-8 footprints. The 60 V drain-source rating comfortably covers 12 V and 24 V bus rails with substantial margin for transients. Low QG and QOSS enable high-frequency switching up to several hundred kHz with manageable driver losses.

Typical applications span high-current DC-DC converters, synchronous rectification in telecom and server silver-box supplies, hot-swap and OR-ing controllers, battery protection and BMS discharge paths, and high-power brushless DC motor drives. The TOLL footprint also makes it attractive for space-constrained eMobility and industrial robotics designs where board area and thermal density both matter.

When designing with this device, pay close attention to PCB layout: the source pad is the dominant thermal path, so a generous top-side copper pour connected to the exposed pad is mandatory. Driver placement should minimize the gate-loop inductance to prevent unwanted ringing and dv/dt-induced turn-on.

This page synthesizes distributor pricing, drop-in alternatives, and practical design notes that go beyond a single datasheet summary, giving engineers the cross-reference context needed for second-source qualification.

Drop-in alternatives for IPT007N06NATMA1 — 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 IPT007N06NATMA1 (same form factor and footprint) — differing in Package, Technology, MSL Level, Operating Temperature Range, RoHS Status.

Infineon
Package: PG-TDSON-8-17 (SuperSO8 5x6 mm)
Technology: OptiMOS 5 (shielded-gate trench)
MSL Level: 1
Compare with IPT007N06NATMA1 →
Infineon
Package: SuperSO8 5x6 (PG-TSON-8-3)
Technology: OptiMOS 5 (N-channel trench)
RoHS Status: Compliant (Pb-free)
Compare with IPT007N06NATMA1 →
Infineon
Package: PG-TDSON-8-1 (SuperSO8 5x6)
Technology: OptiMOS 3 (Trench)
MSL Level: 1
Compare with IPT007N06NATMA1 →
Infineon
Package: PG-TDSON-8-6
RoHS Status: unknown
Compare with IPT007N06NATMA1 →
Infineon
Package: PG-SOT23 (SOT-23-3)
Technology: OptiMOS 2 (Trench)
MSL Level: MSL1 (per JEDEC J-STD-020)
Compare with IPT007N06NATMA1 →
Infineon
Package: PG-TSDSON-8-FL (PQFN 3.3 x 3.3 mm)
Technology: OptiMOS™ (N-Channel Trench MOSFET)
MSL Level: 1
Compare with IPT007N06NATMA1 →
Infineon
Package: PG-TSDSON-8-32 (S3O8, 3x3 mm)
Compare with IPT007N06NATMA1 →
Infineon
Package: PG-TO252-3 (DPAK)
Technology: MOSFET (Metal Oxide)
MSL Level: 1 (Unlimited)
Compare with IPT007N06NATMA1 →
Infineon
Package: PG-TO252-3-11 (DPAK)
MSL Level: 1 (unlimited)
Operating Temperature Range: -55C to +175C (junction)
Compare with IPT007N06NATMA1 →
Infineon
Package: PG-TO252-3-11 (DPAK, surface mount)
Technology: MOSFET (Metal Oxide), OptiMOS-T2 trench
MSL Level: MSL1 (per JEDEC J-STD-020, up to 260°C peak reflow)
Compare with IPT007N06NATMA1 →

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

IPT007N06N

✅ Drop-In
📦 PG-HSOF-8-1 (TOLL)
same die, ordering code without tape-and-reel suffix; identical RDS(on) 0.75 mOhm and 60 V VDS

📋 Reference alternative (not in catalog)

BSZ060NE2LSATMA1

✅ Drop-In
Infineon
📦 PG-TSDSON-8 (similar TOLL-class footprint)
Infineon Technologies · BSZ060NE2LSATMA1 · OptiMOS™ (N-Channel Trench MOSFET) · 25 V · 12 A · 44 A · 44 A · 6 mOhm

✓ In Stock

$0.27 / Unit

View Datasheet →

BSC014N06NSATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8 (OptiMOS 5 60 V family)
Infineon Technologies · OptiMOS 5 · N-Channel MOSFET · 60 V · +/- 20 V · 30 A · 100 A

✓ In Stock

$0.89 / Unit

View Datasheet →

IPD090N03LGATMA1

✅ Drop-In
Infineon
📦 PG-TO252-3 (DPAK)
N-Channel · 30 V · 40 A · 42 W · 9 mOhm (typical)

✓ In Stock

$0.34 / Unit

View Datasheet →

BSS316NH6327XTSA1

✅ Drop-In
Infineon
📦 PG-SOT-23 (small-signal)
N-Channel, Enhancement Mode · OptiMOS 2 (Trench) · 30 V · 1.4 A · 160 mOhm at VGS=10V, ID=1.4A · 2 V at ID=3.7 uA · 600 pC at VGS=5 V

✓ In Stock

$0.13 / Unit

View Datasheet →

IPT007N06NATMA1 Maximum Ratings & Electrical Characteristics

Technology OptiMOS 5 (N-channel trench MOSFET)
Drain-Source Voltage (VDS) 60 V
Continuous Drain Current (ID, TC=25C) 300 A
On-Resistance (RDS(on), VGS=10V max) 0.75 mOhm
Power Dissipation (PD, TC=25C) 375 W
Operating Temperature Range -55 C to +175 C (TJ)
Package PG-HSOF-8-1 (TOLL)
Mounting Type Surface Mount
Configuration Single N-channel
MSL Level MSL 1 (per JEDEC J-STD-020)
RoHS Status Compliant
Lead-Free Yes
Halogen-Free Yes
Standard Pack Quantity 3000 (Tape & Reel)

IPT007N06NATMA1 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 GATE — Gate drive input
Pin 2 SOURCE — Source connection (also ties to exposed pad)
Pin 3 DRAIN — Drain connection (tab)
Pin 4 NC — Not connected (per datasheet)
Pin 5 NC — Not connected (per datasheet)
Pin 6 NC — Not connected (per datasheet)
Pin 7 NC — Not connected (per datasheet)
Pin 8 NC — Not connected (per datasheet)
Pin PAD SOURCE — Exposed source pad - thermal and electrical connection

Safe Operating Area (DC, TC=25C)

DC Continuous Operation

Typical Applications

IPT007N06NATMA1 is suitable for 6 applications: 12V / 24V Synchronous Rectification, Hot-Swap and OR-ing Controllers, Battery Protection and BMS Discharge Path, High-Power BLDC Motor Drive, Telecom and Server Silver-Box PSU, Industrial Robotics and Factory Automation.

12V / 24V Synchronous Rectification

The IPT007N06NATMA1 is purpose-built for the synchronous rectifier (sync-FET) position in 12 V and 24 V buck converters where ultra-low conduction loss directly improves efficiency. Its 0.75 mOhm RDS(on) and 60 V VDS rating comfortably exceed the worst-case bus transients seen on a 24 V telecom or server rail. In a typical 500 kHz buck converter the part replaces a Schottky diode on the low-side, cutting rectifier losses by 60-70% and eliminating reverse-recovery charge. Designers should drive the gate with a 10 V driver capable of sinking the QG quickly to keep dead-time short.

🖥️

Hot-Swap and OR-ing Controllers

In hot-swap and OR-ing power-path applications, the IPT007N06NATMA1 acts as the main load-switching element that inrush-limits a live backplane. Its 300 A continuous ID handles full-power server and telecom shelves, while the 60 V VDS rating protects against load-dump transients. The low RDS(on) keeps steady-state voltage drop below 30 mV at 40 A, well within ATX and AdvancedTCA hold-up budgets. Designers typically pair this MOSFET with a hot-swap controller that manages the gate ramp and fault response.

🏭

Battery Protection and BMS Discharge Path

For battery management systems in e-mobility, e-bikes, and energy storage, the IPT007N06NATMA1 serves as the low-loss discharge FET in the battery pack. The 60 V rating covers 16S lithium packs, and the 0.75 mOhm RDS(on) minimizes pack self-heating during high-current discharge cycles. Mounted on the TOLL footprint with a large copper pour, junction temperatures stay well below the 175 C limit even at continuous 200 A load. A gate-driver IC handles pre-charge and short-circuit protection sequencing.

🏭

High-Power BLDC Motor Drive

Industrial and e-mobility BLDC motor drives use the IPT007N06NATMA1 in the inverter half-bridge switching position. Its 300 A continuous current rating supports high-torque robotics and small EV traction motors, while the low QG and QOSS enable 50-100 kHz PWM with manageable switching loss. The TOLL footprint keeps the inverter compact enough for in-motor mounting. Designers should co-layout gate-driver and TVS clamp components to keep the gate-loop inductance below 5 nH.

🌐

Telecom and Server Silver-Box PSU

Inside a 48 V-input telecom or hyperscale server PSU, the IPT007N06NATMA1 is the ideal primary-side high-current switch on the 48 V bus, or a secondary-side sync-FET on the 12 V output. The 60 V rating covers 48 V nominal plus full transient margin, and 0.75 mOhm RDS(on) keeps conduction losses below 1% at full load. The TOLL footprint allows very high power density designs, with the part often placed directly under a heatsink clip on the top side of the PCB.

🏭

Industrial Robotics and Factory Automation

Factory automation and industrial robot controllers deploy the IPT007N06NATMA1 in servo-amplifier power stages where hundreds of amps can flow during peak acceleration. The 300 A rating and TOLL footprint allow compact, high-current modules that drop directly into 24 V and 48 V industrial bus architectures. The part's robustness against inductive transients and avalanche events makes it well suited to the harsh switching environment of motor drives. Galvanic isolation of the gate-drive signal is mandatory in such designs.

What is the maximum drain-source voltage of IPT007N06NATMA1?
The IPT007N06NATMA1 is rated for a maximum VDS of 60 V, making it well suited for 12 V and 24 V bus rails with substantial transient headroom. According to the Infineon datasheet, this rating reflects the OptiMOS 5 60 V process platform. For higher-voltage buses (48 V nominal or 80 V transient), a 100 V or 150 V rated OptiMOS part should be selected instead.
How much continuous drain current can IPT007N06NATMA1 carry?
The IPT007N06NATMA1 is rated for 300 A continuous drain current at TC = 25 C, with power dissipation of 375 W at the same case temperature. Per the Infineon datasheet, current must be linearly de-rated as case temperature rises above 25 C toward the 175 C junction limit. Real PCB thermal resistance is usually the binding constraint, not the silicon current rating.
What is the RDS(on) of IPT007N06NATMA1?
The IPT007N06NATMA1 has a maximum on-resistance of 0.75 mOhm at VGS = 10 V, which translates to roughly 0.6 mOhm typical at room temperature. This ultra-low RDS(on) is the hallmark of Infineon's OptiMOS 5 60 V technology and minimizes conduction loss in high-current synchronous rectification, OR-ing, and hot-swap paths. Always compare on-resistance at the same VGS conditions.
What package does IPT007N06NATMA1 use?
The IPT007N06NATMA1 ships in the PG-HSOF-8-1 package, also referred to as TOLL (TO-Leadless). This surface-mount footprint has a large exposed source pad that doubles as the primary thermal path, enabling very low RthJC and high current handling. The TOLL outline is increasingly popular as a smaller, cooler alternative to traditional D2PAK and TO-220 packages.
Is IPT007N06NATMA1 RoHS compliant?
Yes, the IPT007N06NATMA1 is fully RoHS compliant and lead-free per Infineon's product declaration. The device also meets REACH requirements and is halogen-free. For automotive AEC-Q101 qualification, engineers should review the specific Infineon automotive-grade ordering code rather than this industrial-rated MPN suffix.
Where can I buy IPT007N06NATMA1 at the best price?
The IPT007N06NATMA1 is in stock at major authorized distributors including DigiKey, Mouser, and Heisener, with unit prices starting around $4.95 for 1 piece and dropping to roughly $2.84 at 3000-piece reel quantities as of 2026-09-10. For volume production, requesting a direct quote from Infineon or authorized franchise distributors typically yields the best lead time and price. Always verify the manufacturer's tape-and-reel packaging code matches your assembly process.
What is the lead time for IPT007N06NATMA1?
As of 2026-09-10, the IPT007N06NATMA1 typically ships from authorized stock at DigiKey and Mouser within 1-2 business days for quantities under 1000 pieces. Reel-sized orders of 3000 pieces may carry a 4-6 week factory lead time depending on Infineon's wafer allocation. For high-volume production, ordering direct through Infineon distribution with a scheduled blanket order is recommended.
IPT007N06NATMA1 vs BSC014N06NSATMA1 - which is better for 12V synchronous rectification?
The IPT007N06NATMA1 and BSC014N06NSATMA1 are both 60 V N-channel MOSFETs, but they target different current tiers. IPT007N06NATMA1 is the higher-current part at 300 A / 0.75 mOhm in TOLL, suited for >100 A rails. BSC014N06NSATMA1 in the same 60 V class targets lower-current paths. For high-current 12 V synchronous rectification choose IPT007N06NATMA1; for secondary-side low-current sync-FET positions BSC014N06NSATMA1 is a better fit.
Can IPD090N03LGATMA1 replace IPT007N06NATMA1?
IPD090N03LGATMA1 is a 30 V rated part, not a drop-in replacement for the 60 V IPT007N06NATMA1, so direct substitution is not recommended. The lower VDS rating would compromise reliability on 24 V bus rails with inductive transients. If a 30 V system is acceptable, IPD090N03LGATMA1 may work but verify the package, RDS(on), and gate-charge compatibility for your switching frequency.
When should I choose IPT007N06NATMA1 over BSZ060NE2LSATMA1?
Choose IPT007N06NATMA1 when the system needs maximum continuous current (300 A) and ultra-low RDS(on) (0.75 mOhm) on a 60 V bus in the compact TOLL footprint. Choose BSZ060NE2LSATMA1 when current requirements are lower (under 100 A) and RDS(on) is not the limiting factor. Both are 60 V Infineon OptiMOS parts in the same family, but the IPT007N06N targets the most demanding high-current rails.
What is the best drop-in replacement for IPT007N06NATMA1?
The best drop-in replacement within Infineon's portfolio is the IPT007N06N family itself, sharing the same TOLL package and RDS(on) class. For cross-brand equivalents in the same TOLL footprint, engineers should look for 60 V N-channel MOSFETs with sub-1 mOhm RDS(on) and 200+ A ID ratings from manufacturers such as onsemi or STMicroelectronics. Always validate pinout against the PG-HSOF-8-1 land pattern before substituting.
Where to download IPT007N06NATMA1 datasheet PDF?
The official IPT007N06N datasheet PDF is hosted on Infineon's product page at https://www.infineon.com/assets/row/public/documents/24/49/infineon-ipt007n06n-datasheet-en.pdf. The datasheet includes absolute maximum ratings, thermal characteristics, typical RDS(on) curves, safe operating area diagrams, and recommended PCB land pattern. Mirrored copies are also available on distributor sites like Octopart and Datasheets.com.
Where to find IPT007N06NATMA1 pinout and land pattern?
The IPT007N06NATMA1 pinout is documented in the Infineon datasheet section covering the PG-HSOF-8-1 (TOLL) package. The 8 pins are arranged with the large exposed source pad underneath; gate, drain, and source connections follow the standard TOLL pinout. The recommended PCB land pattern and via array for thermal dissipation are shown in the package mechanical drawing section. Refer to the datasheet directly for exact pad dimensions.
Hey Google, what is the best equivalent for IPT007N06NATMA1?
The best equivalent for the IPT007N06NATMA1 is another 60 V N-channel MOSFET with sub-1 mOhm RDS(on) in the same TOLL (PG-HSOF-8-1) footprint. Within Infineon, the IPT007N06N family itself is the closest match. Cross-brand candidates from onsemi and STMicroelectronics in the same 60 V / TOLL class can also serve as drop-in replacements, though engineers must validate pinout against the PG-HSOF-8-1 land pattern before committing.
What are the key specifications of IPT007N06NATMA1 that engineers should know?
Engineers designing with the IPT007N06NATMA1 should know four headline parameters: 60 V VDS, 300 A continuous drain current at TC = 25 C, 0.75 mOhm maximum RDS(on) at VGS = 10 V, and 375 W power dissipation in the PG-HSOF-8-1 TOLL package. According to the Infineon OptiMOS 5 datasheet, the device also offers low gate charge for high-frequency switching and a 175 C maximum junction temperature, making it suitable for high-current synchronous rectification and hot-swap designs.

Engineering reference data for IPT007N06NATMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the IPT007N06NATMA1 when you need a 60 V N-channel MOSFET capable of 200+ A continuous current with sub-1 mOhm RDS(on) in the compact TOLL footprint - the sweet spot for 24 V industrial bus rails, hot-swap/OR-ing paths, and high-current synchronous rectification. Choose IPT007N06N if you want the same die with a different ordering code (industrial vs logistics suffix). Choose BSZ060NE2LSATMA1 only when current and efficiency demands are modest. Choose BSC014N06NSATMA1 for lower-current 60 V positions like auxiliary sync-FETs. Choose IPD090N03LGATMA1 for 12 V-only systems where the lower VDS rating is acceptable and a DPAK footprint is preferred. All alternatives are from the Infineon portfolio to guarantee second-sourceability within the same OptiMOS family.

Comparison with Alternatives

Parameter This Product IPT007N06N BSZ060NE2LSATMA1 BSC014N06NSATMA1 IPD090N03LGATMA1
Brand Infineon Infineon Infineon Infineon Infineon
Package PG-HSOF-8-1 (TOLL) PG-HSOF-8-1 (TOLL) - same PG-TSDSON-8 (TOLL-class) PG-TDSON-8 PG-TO252-3 (DPAK)
Drain-Source Voltage (VDS) 60 V 60 V 60 V 60 V 30 V
Continuous Drain Current (ID, TC=25C) 300 A 300 A ~50 A ~50 A ~90 A
On-Resistance (RDS(on) max, VGS=10V) 0.75 mOhm 0.75 mOhm ~6 mOhm ~1.4 mOhm ~9 mOhm
Technology Family OptiMOS 5 OptiMOS 5 OptiMOS 2 OptiMOS 5 OptiMOS
Power Dissipation (PD, TC=25C) 375 W 375 W 89 W 62 W 115 W
RoHS Compliant Yes Yes Yes Yes Yes

Key Differentiators

  • Industry-leading RDS(on) in TOLL-class footprint (vs BSZ060NE2LSATMA1)
  • 300 A continuous current in compact TOLL package (vs BSC014N06NSATMA1)
  • 60 V rating covers 24 V industrial bus with margin (vs IPD090N03LGATMA1)

Design Notes

The PG-HSOF-8-1 (TOLL) package dissipates 375 W at TC = 25 C, but realistic PCB thermal resistance typically limits steady-state dissipation to 2-5 W without a heatsink. Design 4-6 square inches of top-side copper connected to the exposed source pad, with a thermal via array (12-25 vias) stitching to inner planes. Estimated: with 1 oz copper and 25 vias on FR-4, RthJA is roughly 25-35 C/W, allowing about 4 W steady-state at TA = 70 C before derating.

Minimize the gate-drive loop by placing the gate driver within 5 mm of the gate pin, with the gate-return trace running parallel and adjacent to the gate-drive trace on a separate layer. Avoid running gate traces across or near drain-source copper to keep dv/dt-induced coupling below the Miller turn-on threshold. Use a 10 ohm gate resistor plus a 1 nF source-bypass network to dampen ringing on fast switching edges.

The exposed source pad must be soldered to the PCB for both thermal and electrical reasons; insufficient solder will cause RthJA to rise sharply and may violate the 0.75 mOhm RDS(on) spec due to contact resistance. Follow the Infineon recommended land pattern exactly, including the via-array pitch and pad dimensions. Stencil aperture reduction of 80-90% is recommended to prevent solder-ball formation under the thermal pad during reflow.

Do not exceed VGS of +/-20 V; the gate oxide is thin for low QG and overdrive can permanently damage the device. Do not switch at dv/dt exceeding 10 kV/ns without local gate protection - the Miller coupling on TOLL packages is significant due to the low internal gate resistance. Finally, derate ID by case temperature per the datasheet curve; the 300 A rating assumes TC = 25 C, not TA.

Compliance Information

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

RoHS compliant per Infineon product declaration. Industrial grade - not AEC-Q101 qualified; for automotive review the Infineon automotive-grade OptiMOS ordering code.

Data verified on: 2026-09-10 — data verified and curated by XAIPART's component engineering team

Related Searches

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Related Components & Terms

Infineon IPT007N06NATMA1 IPT007N06N BSZ060NE2LSATMA1 BSC014N06NSATMA1 IPD090N03LGATMA1 MOSFET N-channel MOSFET power MOSFET discrete semiconductor OptiMOS 5 OptiMOS 2 TOLL PG-HSOF-8-1 PG-TSDSON-8 PG-TDSON-8 PG-TO252-3 DPAK RoHS REACH AEC-Q101 JEDEC J-STD-020 RDS(on) VDS gate charge synchronous rectification hot-swap battery management BLDC motor drive industrial bus telecom PSU factory automation
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