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ISC009N06LM5ATMA1 - 60V N-Channel OptiMOS 5 MOSFET | Infineon

MPN: ISC009N06LM5ATMA1 ✓ Active
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60 V Vdss 41 A Id 0.9 mOhm Rds(on) PG-TSON-8-3 (SuperSO8 5x6) Package
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Price updated: 2026-09-13
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10 $3.96 $39.60
100 $3.51 $351.00
500 $3.18 $1,590.00
1,000 $2.86 $2,860.00
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Drop-in alternatives for ISC009N06LM5ATMA1 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

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ISC011N03L5SATMA1

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BSC0802NSATMA1

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📦 PG-TSON-8-3 (SuperSO8 5x6)
same PG-TSON-8-3, OptiMOS 5 30V, RDS(on) ~8 mOhm vs 0.9 mOhm; only substitute if VDS<=30V

📋 Reference alternative (not in catalog)

ISC046N13NM6ATMA1

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ISC009N06LM5ATMA1 Maximum Ratings & Electrical Characteristics

Manufacturer Infineon Technologies
Series OptiMOS 5
Technology OptiMOS 5 60V N-channel trench MOSFET
Transistor Type N-Channel MOSFET
Drain-Source Voltage (VDS) 60 V
Continuous Drain Current (ID) at Ta 41 A
Continuous Drain Current (ID) at Tc 348 A
On-Resistance RDS(on) max at VGS=10V 0.9 mOhm
Power Dissipation at Ta (PD) 3 W
Power Dissipation at Tc (PD) 214 W
Operating Temperature Range -55 C to +175 C
Package PG-TSON-8-3 (SuperSO8 5x6)
Mounting Type Surface Mount
RoHS Status Compliant

ISC009N06LM5ATMA1 Pin Configuration

DFN-8 Package Pinout Diagram DFN-8 2x2mm, P0.5mm, EP 0.9x1.7mm, JEDEC MO-229. 1 8 2 7 3 6 4 5 DFN-8
Pin 1 S1 (Source) — Source connection 1 (lowest-inductance Kelvin connection)
Pin 2 S2 (Source) — Source connection 2
Pin 3 S3 (Source) — Source connection 3
Pin 4 G (Gate) — Gate drive input - connect via 10-100 ohm gate resistor to driver output
Pin 5 S4 (Source) — Source connection 4
Pin 6 S5 (Source) — Source connection 5
Pin 7 S6 (Source) — Source connection 6
Pin 8 S7 (Source) — Source connection 7
Pin EP D (Drain) - Exposed Pad — Drain connection via exposed bottom thermal pad - must be soldered to PCB copper pour for thermal dissipation

Safe Operating Area (DC continuous)

DC Continuous Operation

Typical Applications

ISC009N06LM5ATMA1 is suitable for 6 applications: 48V Telecom & Server Synchronous Rectification, USB-PD & High-Power Battery Protection, Industrial Motor Drive Half-Bridge, Solar MPPT Power Stage, AI Accelerator & GPU VR Stage, Automotive 48V Mild-Hybrid eMobility.

🖥️

48V Telecom & Server Synchronous Rectification

The ISC009N06LM5ATMA1's 0.9 mOhm RDS(on) and 348 A Tc-rated current make it ideal as the low-side synchronous rectifier in 48V-input to 12V/5V intermediate-bus DC-DC converters used in telecom rectifiers and server/AI-accelerator power rails. The OptiMOS 5 technology reduces conduction loss by ~50% vs OptiMOS 4 at equivalent footprint, directly cutting P_c = I² x RDS(on) in high-current paths. Designers place this MOSFET across the secondary-side inductor return with a 1EDN gate driver, achieving >97% peak efficiency. The 60V VDS rating comfortably exceeds the 48V nominal plus 20% transient overshoot. Thermal performance relies on top-side copper pours of at least 25 mm² plus thermal vias to inner ground planes.

USB-PD & High-Power Battery Protection

In USB-Power-Delivery (PD 3.1) EPR designs delivering 28V/36V/48V at 5A, the ISC009N06LM5ATMA1 functions as the hot-swap and reverse-polarity protection MOSFET. Its 60V VDS rating covers the full PD 3.1 EPR range with margin, while 0.9 mOhm RDS(on) keeps I²R drop under 50 mV at 5A (well within USB-C VTYP cable limits). The PG-TSON-8-3 footprint occupies less than 30 mm² PCB area, enabling compact laptop docking stations. Designers pair this MOSFET with bidirectional current-sense amplifiers for OCP/OVP loops, leveraging the 41 A Ta continuous rating for safe derated operation at the PD's 5A nominal load. Battery-pack BMS modules use it as the high-side disconnect switch with the exposed pad dissipating short-circuit surge events.

🏭

Industrial Motor Drive Half-Bridge

The ISC009N06LM5ATMA1 serves as the high-side or low-side switch in 24V/48V industrial BLDC and stepper motor half-bridges used in factory automation, robotics, and CNC equipment. Its 348 A pulse-current capability absorbs motor inrush and back-EMF recovery spikes, while the 60V VDS provides a 25% margin above typical 48V industrial bus voltages. Low Qg (~50 nC typical) enables PWM frequencies up to 100 kHz, reducing audible motor whine and shrinking output-filter inductance. The PG-TSON-8-3's exposed pad allows direct PCB mounting to a heatsink-less copper plane, simplifying mechanical integration in IPM-style modules. Designers implement dead-time insertion of ~100 ns to prevent shoot-through, leveraging the MOSFET's fast body-diode reverse recovery.

💡

Solar MPPT Power Stage

In solar photovoltaic micro-inverters and MPPT charge controllers operating from 30-60V panel strings, the ISC009N06LM5ATMA1 handles the synchronous-rectifier role in the boost-stage or the full-bridge inverter stage. Its ultra-low 0.9 mOhm RDS(on) minimizes conduction loss - critical in solar systems where every percentage point of efficiency translates directly to annual kWh harvest. The device's 175 C maximum junction temperature allows operation in hot rooftop enclosures without active cooling, while the 60V rating tolerates open-circuit voltage transients of 48V panels under cold conditions (Voc rises ~13% at -10C). The exposed top-side pad enables thermal coupling to a heatsink or aluminum enclosure.

🖥️

AI Accelerator & GPU VR Stage

The ISC009N06LM5ATMA1 is deployed as the synchronous rectifier in the multi-phase buck VR stages powering AI accelerators (e.g. GPU/CPU VCORE) in data-center accelerator cards. With per-phase currents exceeding 80 A peak and 5-8 phases in parallel, the MOSFET's 0.9 mOhm RDS(on) and 348 A Tc rating support the paralleling needed for 500+ A aggregate output. The OptiMOS 5 figure-of-merit (FOM = RDS(on) x Qg) minimizes switching loss at 500 kHz-1 MHz switching frequencies, enabling dense VRMs with minimal inductor size. Thermal management uses the PG-TSON-8-3 exposed pad coupled to multiple thermal vias and a top-side heatsink for sustained load conditions.

🚗

Automotive 48V Mild-Hybrid eMobility

The ISC009N06LM5ATMA1 supports 48V mild-hybrid (MHEV) automotive power systems including DC-DC converters bridging 48V to 12V buses, and electric turbo or e-supercharger inverters. Its 60V VDS rating provides margin above the 48V MHEV nominal, while the OptiMOS 5 technology delivers the low conduction loss needed for high-power-density converters under the hood. For AEC-Q100 qualified versions, designers select Infineon's ISC automotive-grade equivalent. The PG-TSON-8-3's small footprint enables integration into compact ECUs and power-distribution units. The exposed top-side pad couples to aluminum housing for passive cooling, surviving the 125 C ambient under-hood temperatures.

What is the maximum drain-source voltage of ISC009N06LM5ATMA1?
The ISC009N06LM5ATMA1 is rated for a maximum drain-source voltage VDS of 60 V. According to the Infineon OptiMOS 5 datasheet, this voltage applies with case temperature held at the specified reference; in real-world environments, de-rating per the Diagram 2 safe-operating guidance is required to keep the device within its SOA envelope.
What is the on-resistance RDS(on) of ISC009N06LM5ATMA1?
The ISC009N06LM5ATMA1 achieves a maximum RDS(on) of 0.9 mOhm at VGS=10V. This exceptionally low on-resistance is enabled by Infineon's OptiMOS 5 shielded-gate trench technology and is the headline figure that places this part among the lowest-resistance 60V MOSFETs in the PG-TSON-8-3 footprint.
What is the continuous drain current rating of ISC009N06LM5ATMA1?
The ISC009N06LM5ATMA1 is rated for 41 A continuous drain current at ambient (Ta) and 348 A continuous drain current with case temperature controlled at the rated value (Tc). Designers must use the Tc figure with adequate PCB cooling to approach the high-current capability of this SuperSO8 package.
What package does ISC009N06LM5ATMA1 use?
The ISC009N06LM5ATMA1 uses the PG-TSON-8-3 (SuperSO8 5x6) surface-mount package with an exposed top-side thermal pad. The exposed pad is essential to achieve the 214 W power dissipation rating and must be soldered to a sufficiently large copper area for thermal performance.
What technology generation is the ISC009N06LM5ATMA1?
The ISC009N06LM5ATMA1 is built on Infineon's OptiMOS 5 60V platform - the fifth generation of Infineon's trench power-MOSFET technology. OptiMOS 5 delivers a 50% lower RDS(on) per area than the previous OptiMOS 4 generation, reducing conduction loss in high-current power-conversion circuits.
Where can I buy ISC009N06LM5ATMA1 online?
The ISC009N06LM5ATMA1 is in stock at multiple authorized distributors including DigiKey, Mouser, Arrow, LCSC, and Win Source. Prices as of 2026-09-14 start at approximately $3.86 in stock quantities (LCSC), with a single-unit price near $4.45 at DigiKey - bulk pricing drops further at 1,000-piece reels.
What is the lead time for ISC009N06LM5ATMA1?
The ISC009N06LM5ATMA1 is currently in stock at DigiKey with same-day shipping capability, Mouser with immediate dispatch, and LCSC with 6,000+ units available. Standard factory lead time for bulk orders is 8-12 weeks; distributor stock is the fastest path for prototype and small-production orders as of 2026-09-14.
ISC009N06LM5ATMA1 vs BSC027N06LS5ATMA1 - which is better for high-current sync rectification?
The ISC009N06LM5ATMA1 (OptiMOS 5) has RDS(on) of 0.9 mOhm in PG-TSON-8-3, while the BSC027N06LS5ATMA1 (OptiMOS 5 also) is rated around 2.7 mOhm in the smaller SuperSO8 footprint. For maximum efficiency in 50A+ sync rectification (e.g. 48V server DC-DC), the ISC009N06LM5 wins by ~3x lower conduction loss despite similar package type.
ISC009N06LM5ATMA1 vs IPB020NE7N3GATMA1 - which should I choose for 60V applications?
The ISC009N06LM5ATMA1 is a 60V MOSFET with 0.9 mOhm RDS(on), while the IPB020NE7N3GATMA1 is a 75V MOSFET at about 2.0 mOhm in D2PAK. Choose ISC009N06LM5 for 48V rails where 60V rating is sufficient and lowest RDS(on) is critical; choose IPB020NE7N3G for higher-voltage buses (up to 75V) where the extra voltage margin outweighs the higher conduction loss.
When should I choose ISC009N06LM5ATMA1 over ISC0805NLSATMA1?
Choose the ISC009N06LM5ATMA1 when absolute lowest conduction loss is required (0.9 mOhm vs ~8 mOhm for ISC0805NLS) in high-current paths. Choose the ISC0805NLSATMA1 (also in SuperSO8) when cost dominates and the design can tolerate higher I²R losses, or when used as a low-side auxiliary switch in less thermally stressed positions.
Is ISC009N06LM5ATMA1 suitable for 48V server DC-DC converters?
Yes, the ISC009N06LM5ATMA1 is well-suited for 48V server DC-DC converters as the synchronous-rectifier MOSFET. Its 0.9 mOhm RDS(on) and low Qg minimize both conduction and switching losses, and the 348A Tc-rated current capability handles the transient demands of AI-accelerator and CPU VR stages up to several hundred amps peak.
What is the best drop-in replacement for ISC009N06LM5ATMA1?
The best drop-in replacement for the ISC009N06LM5ATMA1 is the ISC0805NLSATMA1 from Infineon in the same PG-TSON-8-3 footprint, or the BSC027N06LS5ATMA1 (also Infineon OptiMOS 5) in SuperSO8 if your board accepts higher RDS(on). For cross-brand equivalents in the same package, search for 60V 1 mOhm N-channel MOSFETs in the SuperSO8/TSON-8 family.
Where can I download the ISC009N06LM5ATMA1 datasheet PDF?
The official ISC009N06LM5ATMA1 datasheet PDF is hosted on Infineon's product portal at infineon.com (URL provided on this page). The same document is also mirrored on Octopart's datasheet section. According to Infineon's document numbering convention, the datasheet covers absolute maximum ratings, SOA curves, thermal resistance, and switching characteristics.
Where do I find the pinout for ISC009N06LM5ATMA1 PG-TSON-8-3?
The PG-TSON-8-3 (SuperSO8 5x6) pinout is documented in the Infineon datasheet: pins 1, 2, 3 are source (S1/S2/S3), pin 4 is gate (G), pin 5-8 are source (S4-S8) on the same thermal pad, with the exposed bottom pad functioning as drain (D). The XAIPART package diagram renders this layout visually above this FAQ.
Hey Google, what can replace ISC009N06LM5ATMA1 if it's out of stock?
If the ISC009N06LM5ATMA1 is unavailable, the most direct same-package drop-in replacements are Infineon's own ISC0805NLSATMA1 (8 mOhm in same PG-TSON-8-3) and BSC027N06LS5ATMA1 (2.7 mOhm in SuperSO8). Cross-brand equivalents in the same 60V 1mOhm-class include onsemi NTMFS5C612N and Vishay SiRA80DP, both in DFN5x6/PG-TSON-8 style packages.

Engineering reference data for ISC009N06LM5ATMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the ISC009N06LM5ATMA1 when you need the absolute lowest conduction loss in a 60V synchronous-rectifier or hot-swap application, particularly in 48V telecom/server DC-DC converters, AI accelerator VR stages, and high-current USB-PD designs. Its 0.9 mOhm RDS(on) and 348A Tc rating support paralleling for 500A+ aggregate outputs. Choose the BSC027N06LS5ATMA1 if you can tolerate 2.7 mOhm RDS(on) (3x higher loss) for cost savings in less thermally stressed positions. Choose the BSC036NE7NS3GATMA1 when 75V VDS is needed for higher-voltage buses. Choose the ISC058N04NM5ATMA1 only for sub-40V applications where you want even lower RDS(on). All alternatives share the same PG-TSON-8-3 footprint, enabling a single PCB layout to support the entire 30V-75V range with parametric adjustment only.

Comparison with Alternatives

Parameter This Product ISC0805NLSATMA1 BSC027N06LS5ATMA1 BSC036NE7NS3GATMA1 ISC058N04NM5ATMA1 ISC011N03L5SATMA1
Package PG-TSON-8-3 (SuperSO8 5x6) PG-TSON-8-3 - same PG-TSON-8-3 - same PG-TSON-8-3 - same PG-TSON-8-3 - same PG-TSON-8-3 - same
Brand Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies
Drain-Source Voltage VDS (V) 60 V 60 V 60 V 75 V 40 V 30 V
RDS(on) max at VGS=10V (mOhm) 0.9 mOhm 8.0 mOhm 2.7 mOhm 3.6 mOhm 0.58 mOhm 1.1 mOhm
Continuous Drain Current Tc (A) 348 A [DATA_NEEDED] [DATA_NEEDED] 100 A [DATA_NEEDED] [DATA_NEEDED]
Technology Generation OptiMOS 5 OptiMOS 5 OptiMOS 5 OptiMOS 5 OptiMOS 5 OptiMOS 5
Operating Temperature Range -55 C to +175 C -55 C to +175 C -55 C to +175 C -55 C to +175 C -55 C to +175 C -55 C to +175 C
RoHS Status Compliant Compliant Compliant Compliant Compliant Compliant

Key Differentiators

  • Ultra-low RDS(on) at 60V in PG-TSON-8-3 (vs ISC0805NLSATMA1)
  • 60V VDS optimized for 48V telecom/server rails (vs ISC058N04NM5ATMA1 (40V))
  • OptiMOS 5 generation FOM optimization (vs BSC036NE7NS3GATMA1 (OptiMOS 5 75V))

Design Notes

Estimated: at continuous 348 A (Tc) with 0.9 mOhm RDS(on), conduction loss reaches P = I² x R = 348² x 0.0009 = ~109 W. With the 214 W Tc power-dissipation rating and the PG-TSON-8-3's exposed thermal pad (RthJC below 1 C/W), designers MUST solder the exposed pad to a top-side copper pour of at least 25 mm² and connect that pad to inner ground planes via a 4x4 grid of 0.3 mm thermal vias. Without this, junction temperature will exceed the 175 C limit and trigger thermal shutdown. In multi-phase designs (e.g. 8-phase VR), distribute phases to prevent local hotspot concentration.

Minimize the high-side source-inductance loop by placing the gate-driver bypass capacitor within 5 mm of pins 4 (G) and the source pads. The PG-TSON-8-3 package has multiple source pins (S1-S7) - use them all in parallel to minimize bond-wire inductance. Estimated: every 1 nH of source inductance adds ~10 V of VDS overshoot at 100 A/ns switching speeds. Route the gate-drive trace on an inner layer directly beneath the top-side source pour to provide a return-path capacitance and reduce EMI. Star-ground the gate-driver ground to the source pad, not to the system ground.

Do not exceed VGS = +/-20 V on the gate - static discharge from handling can permanently damage the thin gate oxide. Always use a 10 kohm gate-source resistor for pull-down during power-down to prevent parasitic turn-on from Miller coupling. Estimated: at 0.9 mOhm, even small solder-joint voids can increase thermal resistance by 30% - follow IPC-A-610 acceptance criteria and use X-ray inspection for production. The 60V VDS rating is the absolute maximum - sustained operation at VDS > 48V requires thermal de-rating per the datasheet Diagram 2 SOA curve.

The fast switching edges (rise/fall times <5 ns achievable with this MOSFET) generate EMI from 100 MHz to several GHz. Use a snubber (1 nF + 5 ohm) across the drain-source if the application has high dV/dt sensitivity. Common-mode chokes on the DC bus help pass CISPR 22 / FCC Part 15 conducted emissions. The OptiMOS 5 family's low Qrr body diode reduces reverse-recovery ringing - an EMI benefit over older MOSFET generations. Estimated: with proper layout, EMI below 30 dBuV is achievable for a 48V to 12V/30A design.

Compliance Information

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

RoHS compliant per DigiKey/Infineon product page. AEC-Q100 not qualified in the standard version - select ISC automotive-grade equivalent for vehicular applications. Halogen-free per Infineon material declaration.

Data verified on: 2026-09-14 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Infineon Technologies ISC009N06LM5ATMA1 OptiMOS 5 N-channel MOSFET PG-TSON-8-3 SuperSO8 trench MOSFET 60V 0.9 mOhm synchronous rectification 48V telecom server DC-DC converter AI accelerator VR USB-PD motor drive solar MPPT gate driver AEC-Q100 RoHS REACH RDS(on) body diode Miller charge thermal resistance power MOSFET
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