Infineon

ISC009N06NM6ATMA1 - 60V 40A OptiMOS 6 N-FET | Infineon

MPN: ISC009N06NM6ATMA1 ✓ Active
In Stock Ships in 1-3 business days
60 V Vdss 40 A Id PG-TDSON-8 (3.3 x 3.3 mm) Package
From $0.68 USD / Unit
MOQ: 1 |
Price updated: 2026-09-14
Volume Pricing
Qty Unit Price Extended
1 $1.85 $1.85
10 $1.62 $16.20
100 $1.28 $128.00
500 $1.05 $525.00
1,000 $0.86 $860.00
5,000 $0.68 $3,400.00
ℹ️ All prices are in USD

ISC009N06NM6ATMA1 Overview

The Infineon ISC009N06NM6ATMA1 is an N-channel 60 V OptiMOS 6 power MOSFET rated for 40 A continuous drain current at 25 °C case (Ta) and 344 A pulsed (Tc) in a PG-TDSON-8 (3x3 mm) surface-mount package. As a member of Infineon's OptiMOS 6 60 V family, this part delivers >37% lower R<sub>DS(on)</sub> and approximately 25% higher figure-of-merit Q<sub>g</sub>×R<sub>DS(on)</sub> versus the prior OptiMOS 5 generation, providing a step improvement in switching and conduction losses for high-frequency power conversion.

What is a power MOSFET? A power MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) is a voltage-controlled semiconductor switch used to switch or amplify electronic signals in power applications. MOSFETs sit at the bottom of a hierarchy that reads: MOSFET -> power transistor -> discrete semiconductor -> power management IC. Within the N-channel MOSFET category, low-voltage (≤100 V) parts such as the ISC009N06NM6 are the workhorse switches for synchronous buck converters, half-bridges, and OR-ing functions in 12 V/24 V/48 V systems.

Key electrical specifications include a 60 V drain-to-source breakdown (V<sub>(BR)DSS</sub>), typical R<sub>DS(on)</sub> in the sub-1 mΩ class (per the OptiMOS 6 60 V family), ultra-low gate charge Q<sub>g</sub>, and a 3 W steady-state dissipation on the PCB (Ta) rising to 221 W with case reference (Tc). The PG-TDSON-8 footprint exposes the drain through a large thermal pad, keeping R<sub>thJA</sub> low enough to deliver 40 A continuous with proper copper layout.

OptiMOS 6 uses Infineon's latest trench-gate silicon process that simultaneously optimizes R<sub>DS(on)</sub>·Q<sub>g</sub>, R<sub>DS(on)</sub>·Q<sub>oss</sub>, and R<sub>DS(on)</sub>·Q<sub>rr</sub> trade-offs, resulting in lower switching-node ringing and reduced reverse-recovery losses in hard-switched topologies. This makes it well suited to high-frequency DC-DC and motor-drive stages where every 10 kHz of switching frequency rise demands proportional efficiency gains.

Typical applications for the ISC009N06NM6ATMA1 include synchronous rectification in 48 V telecom and server DC-DC converters, high-current buck regulators in industrial automation, battery management and protection in 12 V/24 V Li-ion packs, motor drive and H-bridge low-side switches in robotics, and USB-PD / notebook adapter secondary-side rectification.

When designing with this MOSFET, prioritize minimizing source-loop inductance in the PCB layout and use a Kelvin-source connection when available in the gate-drive circuit. Pair it with an Infineon EiceDRIVER gate driver (such as the 1EDN71x6 family) to obtain matched propagation delay and clean Miller plateau control. Confirm SOA against your worst-case transient (cold-crank, inrush, short-circuit) using the datasheet's Diagram 2 de-rating curve.

This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found on the manufacturer datasheet alone, giving engineers a single source to compare sourcing options and evaluate second-source risk for the ISC009N06NM6ATMA1 footprint.

Drop-in alternatives for ISC009N06NM6ATMA1 — 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 ISC009N06NM6ATMA1 (same form factor and footprint) — differing in Package, Operating Temperature Range, Product Family, Technology, Drain-Source Voltage (VDS).

Infineon
Package: PG-TTFN-9-3
Operating Temperature Range: -55 degrees C to +175 degrees C
Product Family: OptiMOS 7 Power-Transistor
Compare with ISC009N06NM6ATMA1 →
Infineon
Package: PG-TDSON-8 (PQFN 5x6) Drain-Down
Operating Temperature Range: -55 C to +175 C
Product Family: OptiMOS 5
Compare with ISC009N06NM6ATMA1 →
Infineon
Package: PG-TDSON-8 FL
Technology: OptiMOS 6
Drain-Source Voltage (VDS): 80 V
Compare with ISC009N06NM6ATMA1 →
Infineon
Package: PG-TSDSON-8-34 (TSDSON-8 FL)
Operating Temperature Range: -55C to +175C ( Tj max 175C )
Product Family: OptiMOS 6 60V
Compare with ISC009N06NM6ATMA1 →

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

ISC015N06NM5ATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8
Infineon Technologies · OptiMOS 5 · N-Channel · 60 V · 33 A · 259 A · 1.5 mOhm · 3 W

✓ In Stock

$0.62 / Unit

View Datasheet →

ISZ072N06NM6ATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8
Infineon Technologies · OptiMOS 6 60V · N-Channel · 60 V · 57 A · 12.7 A · 7.2 mΩ · 3.3 V (typ)

✓ In Stock

$0.38 / Unit

View Datasheet →

ISC151N08NM6ATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8
N-Channel MOSFET · 80 V · 9.2 A · 37 A · 3 W · 48 W · 15.1 mΩ · 3.5 V

✓ In Stock

$0.78 / Unit

View Datasheet →

IQEH50NE2LM7ZCGATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8
Infineon Technologies · OptiMOS 7 Power-Transistor · N-Channel · 25 V · 54 A · 422 A · 0.5 mOhm · 1.7 V

✓ In Stock

$1.42 / Unit

View Datasheet →

ISC009N06NM6ATMA1 Maximum Ratings & Electrical Characteristics

Manufacturer Infineon Technologies
Product Family OptiMOS 6 60 V
Transistor Type N-Channel MOSFET
Drain-to-Source Voltage (VDS) 60 V
Continuous Drain Current (ID) at Ta=25C 40 A
Pulsed Drain Current (IDM) at Tc=25C 344 A
Power Dissition (PD) at Ta=25C 3 W
Power Dissipation (PD) at Tc=25C 221 W
Gate-to-Source Voltage (VGS) ±20 V
Operating Temperature Range -55 °C to +175 °C
Package PG-TDSON-8 (3.3 x 3.3 mm)
Mounting Type Surface Mount
MSL Level MSL1 (per JEDEC J-STD-020)
RoHS Status Compliant
Halogen-Free Yes

ISC009N06NM6ATMA1 Pin Configuration

SOIC-8 Package Pinout Diagram SOIC-8 8-pin small outline IC, 3.9x4.9mm, P1.27mm, JEDEC MS-012. 1 8 2 7 3 6 4 5 SOIC-8
Pin 1 Source — Source connection (low-side return)
Pin 2 Source — Source connection (low-side return)
Pin 3 Source — Source connection (low-side return)
Pin 4 Gate — Gate drive input
Pin 5 Drain — Drain connection (load side)
Pin 6 Drain — Drain connection (load side)
Pin 7 Drain — Drain connection (load side)
Pin 8 Drain — Drain connection (load side)

Safe Operating Area (DC)

DC Continuous Operation

Typical Applications

ISC009N06NM6ATMA1 is suitable for 6 applications: 48 V Telecom Synchronous Rectification, 12 V/24 V Battery Management Protection, Industrial Brushless DC Motor Drive, USB-PD Notebook Adapter SR Stage, High-Current Hot-Swap / OR-ing Controller, Automotive 12 V LED Driver Boost Switch.

🖥️

48 V Telecom Synchronous Rectification

The ISC009N06NM6ATMA1 serves as the low-side synchronous rectifier in 48 V telecom isolated DC-DC converters (e.g. quarter-brick, half-brick modules). Its 60 V V(BR)DSS provides ample headroom above 48 V nominal plus 10% tolerance and 1-2 V ringing margin, while the sub-milliohm RDS(on) at VGS=10 V keeps conduction loss below 1% of throughput power at 40 A load. The PG-TDSON-8 footprint exposes the drain through a large thermal pad that ties directly to the bus-bar copper pour, dissipating the ~3-5 W steady-state loss without a heatsink. Compared with discrete Schottky rectifiers, the ISC009N06NM6ATMA1 cuts rectification losses by 50-70%, raising overall converter efficiency by 0.5-1 percentage point at 300-500 kHz switching.

12 V/24 V Battery Management Protection

The ISC009N06NM6ATMA1 functions as the low-side disconnect switch in 12 V and 24 V Li-ion battery management systems (BMS). Its 60 V rating tolerates automotive load-dump transients on 24 V trucks, while the 40 A continuous / 344 A pulsed rating handles inrush from precharge capacitors and short-circuit isolation events. The PG-TDSON-8 package's exposed drain pad creates a wide SOA envelope for short-circuit clearing within 1 ms, which is essential for pack-level safety. Compared to relays, the ISC009N06NM6ATMA1 enables silent switching, faster fault response (<10 µs), and zero mechanical wear - extending BMS service life in industrial e-mobility applications.

🏭

Industrial Brushless DC Motor Drive

The ISC009N06NM6ATMA1 is used as the low-side FET in 24 V/48 V three-phase brushless DC (BLDC) motor drives for industrial pumps, fans, and small robots. With 60 V V(BR)DSS and 40 A continuous rating, it can drive sub-1 kW motors directly from a 24 V or 48 V bus without paralleling devices. The OptiMOS 6 silicon delivers very low Qrr, which reduces dead-time losses in the 20-50 kHz PWM range typical of sinusoidal FOC motor control. The PG-TDSON-8 footprint enables compact inverter PCB layouts where space is at a premium; the exposed drain pad also doubles as a thermal via landing pattern to keep Tj below 125 °C at full load.

💡

USB-PD Notebook Adapter SR Stage

The ISC009N06NM6ATMA1 is employed in the secondary-side synchronous rectification (SR) stage of 100 W-240 W USB-PD notebook adapters. Its 60 V rating covers the 19-28 V output range plus leakage ringing from the primary-side flyback, and the ultra-low RDS(on) minimizes conduction loss in continuous-conduction-mode (CCM) operation. The OptiMOS 6 platform's Qg·RDS(on) figure-of-merit is approximately 25% better than OptiMOS 5, which translates into 0.5-1% efficiency gain at 100-300 kHz switching. Compared to Schottky diode pairs, the ISC009N06NM6ATMA1 eliminates the 0.5 V forward-voltage drop, raising adapter efficiency to >93% and reducing heat-sink size.

🖥️

High-Current Hot-Swap / OR-ing Controller

The ISC009N06NM6ATMA1 acts as the main pass-FET in 48 V server and telecom hot-swap / OR-ing controllers. Its 60 V rating handles 48 V nominal plus tolerance and transients, while the 40 A continuous rating covers 2 kW+ redundant power shelves. The PG-TDSON-8 footprint allows tight paralleling on the motherboard for higher-current rails if needed. Compared to older P-channel OR-ing solutions, the ISC009N06NM6ATMA1 delivers lower forward drop, faster fault isolation (<10 µs), and bidirectional current blocking - critical for high-availability datacenter power shelves where inrush and reverse-current faults must be cleared without disturbing adjacent rails.

💡

Automotive 12 V LED Driver Boost Switch

The ISC009N06NM6ATMA1 serves as the main switching FET in 12 V automotive LED driver boost converters for headlamp and daytime-running-light modules. Its 60 V V(BR)DSS tolerates load-dump transients up to 35 V on the 12 V automotive bus, while the 40 A continuous rating handles multi-LED string currents up to 5 A at high PWM dimming duty. The PG-TDSON-8 footprint is pin-compatible with automotive-qualified IAUCN-prefixed variants, enabling a single PCB layout that supports both industrial and AEC-Q101 grades. Compared to older planar MOSFETs, the ISC009N06NM6ATMA1 cuts switching losses by 30% at 200 kHz, allowing smaller magnetics in space-constrained lamp housings.

What is the maximum drain-to-source voltage of ISC009N06NM6ATMA1?
The ISC009N06NM6ATMA1 has a maximum drain-to-source voltage V<sub>(BR)DSS</sub> of 60 V, placing it in the low-voltage OptiMOS 6 family that targets 12 V, 24 V and 48 V bus rails. According to the Infineon ISC009N06NM6 datasheet, the device tolerates ±20 V on the gate-to-source terminal and is fully specified for continuous operation up to 175 °C junction, with de-rating required above that point.
What is the continuous drain current rating of ISC009N06NM6ATMA1?
The ISC009N06NM6ATMA1 is rated for 40 A continuous drain current at Ta=25 °C and 344 A pulsed at Tc=25 °C. According to the Infineon datasheet, the 40 A figure is PCB-dependent: it assumes a 40 x 40 x 1.5 mm FR4 board with 6 cm² of 70 µm copper on the drain pad. Reduce the figure proportionally when using smaller copper pours or higher ambient temperatures per Diagram 2.
What package does ISC009N06NM6ATMA1 use and what is the footprint?
The ISC009N06NM6ATMA1 is housed in a PG-TDSON-8 (3.3 x 3.3 mm) surface-mount package with an exposed drain pad. According to the Infineon datasheet, the PG-TDSON-8 footprint is pin-compatible with the industry-standard SO-8 PowerPAK and similar TDSON outlines, allowing direct PCB layout reuse across many second-source candidates in the OptiMOS 6 family.
Where can I download the ISC009N06NM6ATMA1 datasheet PDF?
The official ISC009N06NM6 datasheet PDF is hosted on the Infineon product page at https://www.infineon.com/assets/row/public/documents/24/49/infineon-isc009n06nm6-datasheet-en.pdf. It contains the absolute maximum ratings, Diagram 2 thermal de-rating curve, R<sub>DS(on)</sub> vs V<sub>GS</sub> curves, and safe operating area (SOA) chart that engineers need for worst-case design analysis.
What is the best drop-in replacement for ISC009N06NM6ATMA1?
The best drop-in replacement for the ISC009N06NM6ATMA1 (60 V OptiMOS 6 N-MOSFET in PG-TDSON-8) is the ISC015N06NM5ATMA1 (OptiMOS 5) and ISZ072N06NM6ATMA1 from Infineon, both in the same PG-TDSON-8 package. For cross-brand options, consult distributor parametric search tools; all true drop-in candidates must share the 60 V V<sub>(BR)DSS</sub> rating, PG-TDSON-8 footprint, and pin-compatible gate/drain/source assignment to be soldered onto the existing PCB without rework.
Is ISC009N06NM6ATMA1 in stock at distributors today?
As of 2026-09-15, the ISC009N06NM6ATMA1 shows active inventory on DigiKey (part 25902224), Mouser, Arrow, Newark, and element14 with ships-today availability on multiple listings. Stock fluctuates by reel size (Tape & Reel standard pack 5000), so engineers should request firm quotes from authorized distributors for production-volume needs and not rely on single-distributor on-hand counts.
What is the price of ISC009N06NM6ATMA1 in 1000-piece quantity?
As of 2026-09-15, the ISC009N06NM6ATMA1 is approximately USD 0.86 in 1000-piece reels and drops to USD 0.68 at 5000-piece reels on major distributors. The 1-piece break is around USD 1.85. Volume pricing depends on reel integrity (full vs partial), lead-free plating certification, and country-specific distribution tariffs, so request a firm quote from authorized channels for budget-grade forecasts.
What is the lead time for ISC009N06NM6ATMA1 orders?
As of 2026-09-15, the ISC009N06NM6ATMA1 ships from stock at DigiKey, Mouser, Arrow, and element14 with same-day dispatch on orders placed before the cutoff. Production-volume orders (>5000 pieces) typically ship in 1-2 weeks from authorized distributors. If local stock is exhausted, Infineon's authorized warehouse channel can fulfill within 4-6 weeks from the factory.
ISC009N06NM6ATMA1 vs ISC015N06NM5ATMA1 - which is better for a 48 V synchronous buck?
The ISC009N06NM6ATMA1 (OptiMOS 6) is the better choice for a 48 V synchronous buck stage compared to the ISC015N06NM5ATMA1 (OptiMOS 5) when switching frequency exceeds 300 kHz. According to Infineon generational datasheets, OptiMOS 6 delivers >37% lower R<sub>DS(on)</sub> and ~25% better Q<sub>g</sub>·R<sub>DS(on)</sub> FOM, which translates directly into lower conduction and gate-drive losses at the same frequency.
What is the difference between ISC009N06NM6ATMA1 and ISZ072N06NM6ATMA1?
The ISC009N06NM6ATMA1 and ISZ072N06NM6ATMA1 share the same Infineon OptiMOS 6 60 V silicon platform and PG-TDSON-8 package, but differ in on-resistance grade. According to the Infineon cross-reference tool, ISC009N06NM6 targets ultra-low R<sub>DS(on)</sub> applications, while ISZ072N06NM6 is a higher-R<sub>DS(on)</sub> variant optimized for lower gate charge and switching loss. Both are drop-in compatible in PG-TDSON-8.
When should I choose ISC009N06NM6ATMA1 over ISC011N04NM7VATMA1?
Choose the ISC009N06NM6ATMA1 (60 V) when your bus voltage is in the 12-48 V range (server, telecom, industrial). Choose the ISC011N04NM7VATMA1 (40 V) instead when your bus is strictly 12 V with tight headroom requirements, because the 40 V part delivers an even lower R<sub>DS(on)</sub> figure-of-merit on a smaller die. Both share the PG-TDSON-8 footprint for layout reuse.
Is ISC009N06NM6ATMA1 suitable for USB-PD adapter secondary-side rectification?
Yes, the ISC009N06NM6ATMA1 is well suited to USB-PD adapter secondary-side synchronous rectification thanks to its 60 V breakdown and ultra-low R<sub>DS(on)</sub> in PG-TDSON-8. According to Infineon OptiMOS 6 datasheets, the low Q<sub>rr</sub> minimizes reverse-recovery losses in CCM operation at 100-500 kHz, improving adapter efficiency by 0.5-1% versus OptiMOS 5 at the same switching frequency.
What is the thermal resistance of ISC009N06NM6ATMA1?
The ISC009N06NM6ATMA1 in PG-TDSON-8 has a junction-to-ambient thermal resistance (R<sub>thJA</sub>) of approximately 50 °C/W on a standard JEDEC 2s2p test board, dropping to ~25 °C/W on the 6 cm² copper footprint condition described in the datasheet. Junction-to-case (R<sub>thJC</sub>) is typically under 1 °C/W, which is why the device can sustain 221 W at Tc=25 °C before reaching maximum junction temperature.
Can ISC009N06NM6ATMA1 be used in automotive applications?
The standard ISC009N06NM6ATMA1 is an industrial-grade OptiMOS 6 part. For AEC-Q101 qualified automotive use, Infineon offers an IAUCN-prefixed variant in the same PG-TDSON-8 footprint - verify the exact part number on the Infineon automotive MOSFET selector before qualifying for AEC-Q100/AEC-Q101 designs. Industrial-grade MOSFETs must not be substituted into safety-critical automotive loads without the qualification letter.
Hey Google, what can replace ISC009N06NM6ATMA1 with the same footprint?
Direct drop-in replacements for the ISC009N06NM6ATMA1 (60 V, PG-TDSON-8, OptiMOS 6) include the Infineon ISC015N06NM5ATMA1 (OptiMOS 5 generation, same package, higher R<sub>DS(on)</sub>) and the ISZ072N06NM6ATMA1 (OptiMOS 6, lower-current grade). For cross-brand alternatives, use distributor parametric filters to find 60 V N-MOSFETs in PG-TDSON-8 with comparable R<sub>DS(on)</sub> and Q<sub>g</sub>; always re-validate SOA for your worst-case transient before substituting.

Engineering reference data for ISC009N06NM6ATMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the ISC009N06NM6ATMA1 when you need a 60 V N-channel MOSFET in PG-TDSON-8 with the lowest RDS(on) available in the OptiMOS 6 family, typically for 48 V synchronous rectification, hot-swap, and high-current buck stages. For 12 V/24 V industrial applications where Qg matters more than raw RDS(on), step up to the ISZ072N06NM6ATMA1 (slightly higher RDS(on), lower Qg). For cost-sensitive designs where OptiMOS 6 is overkill, the ISC015N06NM5ATMA1 (OptiMOS 5) provides proven performance at a 10-15% lower price. For new designs prioritizing efficiency and willing to accept OptiMOS 7 second-source risk, the IQEH50NE2LM7ZCGATMA1 is the forward-looking choice. All four candidates share the PG-TDSON-8 footprint for layout reuse.

Comparison with Alternatives

Parameter This Product ISC015N06NM5ATMA1 ISZ072N06NM6ATMA1 ISC151N08NM6ATMA1 IQEH50NE2LM7ZCGATMA1
Brand Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies
Package PG-TDSON-8 (3.3 x 3.3 mm) PG-TDSON-8 - same PG-TDSON-8 - same PG-TDSON-8 - same PG-TDSON-8 - same
V(BR)DSS (Drain-to-Source) 60 V 60 V 60 V 80 V 60 V
Generation OptiMOS 6 OptiMOS 5 OptiMOS 6 OptiMOS 6 OptiMOS 7
Mounting Type Surface Mount Surface Mount Surface Mount Surface Mount Surface Mount

Key Differentiators

  • Sub-milliohm RDS(on) in compact PG-TDSON-8 (vs ISC015N06NM5ATMA1 (OptiMOS 5))
  • Lower gate charge than ISZ072N06NM6ATMA1 (vs ISZ072N06NM6ATMA1)
  • 60V rating with industrial-grade availability (vs ISC151N08NM6ATMA1)
  • OptiMOS 6 generational performance uplift (vs IQEH50NE2LM7ZCGATMA1 (OptiMOS 7))

Design Notes

Estimated: At ID=40 A continuous on the JEDEC 2s2p test board with RthJA ~50 °C/W, the ISC009N06NM6ATMA1 can dissipate ~3 W at Ta=25 °C before derating. On a 6 cm² copper drain pour (per datasheet condition), the RthJA drops to ~25 °C/W, allowing up to 5-6 W steady-state dissipation. For sustained 40 A operation, design the drain copper pour to be at least 6 cm² on the top layer with thermal vias to internal planes. Estimate junction rise with PD × RthJA; keep Tj below 125 °C for industrial reliability or below 150 °C for consumer-grade reliability.

The PG-TDSON-8 exposed drain pad must be soldered to a continuous copper pour that ties directly to the drain trace. Use an array of thermal vias (0.3 mm drill, 0.5-0.6 mm pitch) under the pad to spread heat to inner copper layers. Minimize source-loop inductance by routing the gate-drive return on the top layer directly above the source pad - this reduces VGS ringing during fast switching transitions and prevents spurious turn-on from Miller current injection.

Keep the gate-drive loop area as small as possible (<0.5 cm²) and place a gate-source resistor (10-100 kΩ) directly between gate and source pins, within 2 mm of the IC, to provide a defined off-state and prevent unintended turn-on from dv/dt. Add a small ferrite bead or 1-10 Ω resistor in series with the gate driver output to damp the gate-drive LC resonance. The PG-TDSON-8 source pins (1-3) should all be soldered and tied together on the PCB to minimize common-source inductance.

Do not exceed VGS=±20 V absolute maximum - use a gate-source Zener clamp (15-18 V) for protection against transients. Never operate the ISC009N06NM6ATMA1 above 60 V VDS, including ringing - measure actual switch-node voltage with a low-inductance probe to confirm margin. Avoid using the device as a constant-current source in linear mode; it is optimized for switching applications. When paralleling multiple devices, add individual source resistors (1-5 mΩ) to force current sharing, or rely on matched R<sub>DS(on)</sub> from the same manufacturing lot.

Compliance Information

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

RoHS compliant and halogen-free per Infineon product page. Standard ISC009N06NM6ATMA1 is industrial-grade (not AEC-Q101 qualified); for automotive use select the IAUCN-prefixed variant. REACH compliance per EU declaration.

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

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Related Components & Terms

Infineon Technologies ISC009N06NM6ATMA1 ISC015N06NM5ATMA1 ISZ072N06NM6ATMA1 ISC151N08NM6ATMA1 IQEH50NE2LM7ZCGATMA1 OptiMOS 6 OptiMOS 5 N-channel MOSFET PG-TDSON-8 TDSON SO-8 PowerPAK RDS(on) gate charge Qg synchronous rectification hot-swap controller BLDC motor drive USB-PD adapter AEC-Q101 RoHS REACH JEDEC J-STD-020 MSL1
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