Infineon

ISC058N04NM5ATMA1 - 40V 63A 5.8mOhm OptiMOS 5 N-MOSFET | Infineon

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40 V Vdss 63 A Id 5.8 mOhm Rds(on) PG-TDSON-8 FL (SuperSO8 5x6 mm) Package
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Price updated: 2026-09-13
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100 $0.75 $75.00
500 $0.68 $340.00
1,000 $0.6 $600.00
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Drop-in alternatives for ISC058N04NM5ATMA1 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

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BSC0902NSATMA1

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ISC058N04NM5ATMA1 Maximum Ratings & Electrical Characteristics

Manufacturer Infineon Technologies
Product Family OptiMOS 5 40V Normal Level
Transistor Type N-Channel MOSFET
Drain-Source Voltage (VDS) 40 V
Continuous Drain Current (ID, Tc=25C) 63 A
Continuous Drain Current (ID, Ta=25C) 17 A
On-Resistance Rds(on) max @ VGS=10V, ID=31A 5.8 mOhm
Gate Threshold Voltage VGS(th) typ 3.4 V
Power Dissipation (TA=25C) 3 W
Power Dissipation (TC=25C) 42 W
Package PG-TDSON-8 FL (SuperSO8 5x6 mm)
Mounting Type Surface Mount
Technology OptiMOS 5 trench MOSFET
Operating Temperature Range -55C to +175C
RoHS Compliance RoHS Compliant
MSL (Moisture Sensitivity Level) MSL per JEDEC J-STD-020
Gate Drive Level Normal Level (10V VGS recommended)

ISC058N04NM5ATMA1 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 S — Source
Pin 2 S — Source
Pin 3 S — Source
Pin 4 G — Gate
Pin 5 S — Source
Pin 6 S — Source
Pin 7 S — Source
Pin 8 D — Drain

Safe Operating Area

DC Continuous Operation

Typical Applications

ISC058N04NM5ATMA1 is suitable for 7 applications: Synchronous Rectification in 12-24V DC-DC Converters, BLDC Motor Drive Half-Bridge, Battery Management System (BMS) Protection, USB-PD and High-Current Load Switch, Solar Micro-Inverter and OR-ing Diode Replacement, Automotive 12V Load Switching, Hot-Swap and In-Rush Current Limiter.

Synchronous Rectification in 12-24V DC-DC Converters

The ISC058N04NM5ATMA1 is ideal for the low-side synchronous-rectifier position in buck converters running from 12V or 24V rails. Its 5.8 mOhm Rds(on) at VGS = 10V keeps conduction loss below ~1% at 20A load, and 40V VDS provides >2x margin over a 24V bus including transient ringing. Compared to a Schottky diode replacement, the synchronous MOSFET reduces rectifier loss by 50-70% and improves thermal headroom in dense SMPS designs.

🏭

BLDC Motor Drive Half-Bridge

In brushless DC motor half-bridges for 24V tools, e-bikes, and small drones, the ISC058N04NM5ATMA1 serves as either the high-side or low-side switch. Its 63A continuous drain current supports motor peak currents up to 80A pulsed, and the SuperSO8 5x6 footprint keeps the per-switch PCB area under 30 mm^2. Designers should pair it with a 10V gate driver such as the 6EDL04N02PR and add 100k gate-source resistors to suppress dv/dt-induced turn-on.

📱

Battery Management System (BMS) Protection

The ISC058N04NM5ATMA1 works as the high-side disconnect switch in 4S-6S Li-ion battery packs where the bus voltage stays under 24V. With 5.8 mOhm on-resistance, a 20A discharge path dissipates only 2.3W, manageable on the SuperSO8 pad with 1 oz copper. The OptiMOS 5 process gives fast body-diode reverse recovery, simplifying synchronous-rectifier dead-time design in bi-directional BMS topologies.

🔧

USB-PD and High-Current Load Switch

For USB Power-Delivery sink paths and 5V/12V/20V load switches, the ISC058N04NM5ATMA1 provides a low-loss disconnect element. At VGS = 10V, the 5.8 mOhm resistance drops only 58 mV at 10A, well within USB-PD cable regulation. The part's 40V rating covers the full 20V PD profile plus transient overshoot. Use a 10k pull-down on the gate to guarantee a defined off-state when the controller is unpowered.

💡

Solar Micro-Inverter and OR-ing Diode Replacement

In low-voltage (<30V) solar micro-inverter or-ing stages, the ISC058N04NM5ATMA1 replaces Schottky OR-ing diodes with active MOSFET switches, cutting conduction loss by up to 80%. The 63A continuous rating supports parallel-string currents, and the SuperSO8 footprint simplifies thermal coupling to the aluminum substrate. Reverse-current blocking is implemented by sensing VDS and turning the MOSFET off when reverse voltage is detected.

🚗

Automotive 12V Load Switching

The ISC058N04NM5ATMA1 (automotive-suffix A in the part number) is suitable for 12V automotive load-switching applications such as LED drivers, body-control modules, and accessory-power distribution. Its 40V VDS absorbs load-dump transients up to 35V, and the SuperSO8 5x6 package meets automotive PCB-area constraints. When paired with an ISO 7637-2 compliant TVS, the design satisfies most OEM EMC requirements for body electronics.

🖥️

Hot-Swap and In-Rush Current Limiter

In 12V/24V hot-swap controllers, the ISC058N04NM5ATMA1 acts as the series pass element that limits in-rush current when a board is inserted into a live backplane. Its 5.8 mOhm Rds(on) and 63A rating handle continuous load, while the SOA curve at 40V / 30A allows ~10 ms single-pulse operation - sufficient for typical hot-swap ramp profiles. Designers add an RC gate network to program dV/dt and an SOA-aware controller IC for protection.

What is the drain-source voltage (VDS) rating of ISC058N04NM5ATMA1?
The ISC058N04NM5ATMA1 has a maximum drain-source voltage (VDS) of 40 V. This makes it well suited for 12 V and 24 V bus rails typical of telecom, industrial, and consumer power systems. According to the Infineon OptiMOS 5 datasheet, designers should also leave at least 20% derating margin between VDS(max) and the actual bus voltage to absorb transient ringing from inductive loads.
What is the on-resistance (Rds(on)) of ISC058N04NM5ATMA1?
The ISC058N04NM5ATMA1 specifies a maximum Rds(on) of 5.8 mOhm at VGS = 10 V and ID = 31 A. This low on-resistance is achieved through Infineon's OptiMOS 5 trench technology, which minimizes conduction loss and improves efficiency in synchronous-rectification and high-current switching applications. Lower Rds(on) directly reduces I2R losses and thermal stress.
How much continuous drain current can ISC058N04NM5ATMA1 handle?
The ISC058N04NM5ATMA1 is rated for 63 A continuous drain current when case temperature is held at 25 C (Tc = 25 C), and 17 A when measured at ambient temperature (TA = 25 C). The derating from 63 A to 17 A reflects the thermal limits of the SuperSO8 package; for sustained 30-50 A operation, the PCB copper pour must keep the case temperature rise below the rated curve.
What package does ISC058N04NM5ATMA1 use?
The ISC058N04NM5ATMA1 is supplied in PG-TDSON-8 FL, also marketed as SuperSO8 5x6 mm. This package features an exposed drain pad that doubles as the thermal pad, providing a low thermal resistance path to the PCB. The 5x6 mm outline is widely second-sourced by onsemi, Vishay, and Nexperia, making it a de-facto standard for high-current SMD MOSFETs.
Is ISC058N04NM5ATMA1 logic-level or normal-level gate drive?
The ISC058N04NM5ATMA1 is a normal-level OptiMOS 5 device with a typical gate-threshold voltage (VGS(th)) of 3.4 V. Normal-level parts require VGS of at least 10 V to achieve the rated 5.8 mOhm Rds(on). If your gate driver can only deliver 4.5 V or 5 V, you should select a logic-level OptiMOS 5 variant such as the ISC011N03L5S or BSC010N04LS to guarantee full enhancement.
Where can I buy ISC058N04NM5ATMA1 online?
The ISC058N04NM5ATMA1 is in stock at authorized distributors including DigiKey, Mouser, LCSC, and Octopart-listed vendors as of 2026-09-14. Pricing as of 2026-09-14 starts around $0.7453 at LCSC for cut-tape reels and approximately $0.95 at 1-piece from DigiKey. For high-volume orders (1,000+), pricing typically drops below $0.60 per unit.
What is the lead time for ISC058N04NM5ATMA1?
According to the DigiKey product page, the ISC058N04NM5ATMA1 ships same-day when ordered before the cut-off time. For Mouser and LCSC, on-shelf stock is generally available, with lead times of 2-4 weeks only during demand spikes. As of 2026-09-14, no factory allocation has been reported, and the part is classified active in Infineon's product lifecycle.
ISC058N04NM5ATMA1 vs BSC040N08NS5 - which is better for 24V motor drive?
The ISC058N04NM5ATMA1 is rated 40 V / 5.8 mOhm / 63 A, while the BSC040N08NS5 from Infineon is rated 80 V / 4.0 mOhm / higher current. For 24 V nominal motor drives with inductive ringing above 40 V, choose the BSC040N08NS5 (80V VDS gives 2x safety margin against flyback spikes). For pure 12-24V resistive or synchronous-rectification loads, the ISC058N04NM5ATMA1's lower capacitance and lower cost win.
What is the best drop-in replacement for ISC058N04NM5ATMA1?
The best drop-in replacement in the same PG-TDSON-8 FL (SuperSO8) footprint is the Infineon ISC015N04NM5ATMA1 (same family, lower Rds(on) = 1.5 mOhm). For cross-brand drop-in equivalents, onsemi NTMFS5C430NL and Vishay SiRA52DP share the SuperSO8 5x6 outline and 40V class. Always re-validate gate-charge, Rds(on), and SOA against your specific switching frequency before substituting.
Where to download ISC058N04NM5ATMA1 datasheet PDF?
The official Infineon datasheet PDF can be downloaded from the manufacturer's product page at infineon.com/assets/row/public/documents/24/49/infineon-isc058n04nm5-datasheet-en.pdf. The same document is mirrored on LCSC (C6577534.pdf), AllDatasheet, and chipdig.com. The datasheet contains SOA curves, Rds(on) vs temperature, gate-charge curves, and thermal resistance specifications.
What is the pinout of ISC058N04NM5ATMA1?
The ISC058N04NM5ATMA1 follows the standard PG-TDSON-8 FL (SuperSO8) pinout: pins 1-3 are source (S), pin 4 is gate (G), pins 5-7 are source (S), and pin 8 along with the exposed pad are drain (D). The duplicated source pins and the thermal pad minimize parasitic source inductance. The full pinout diagram is included in the manufacturer datasheet, page 1.
Is ISC058N04NM5ATMA1 suitable for synchronous rectification in a 12V buck converter?
Yes. With Rds(on) = 5.8 mOhm and VDS = 40 V, the ISC058N04NM5ATMA1 is well suited for the low-side synchronous-rectifier position in 12 V input buck converters delivering up to ~25 A continuous load. The 40 V rating gives 3x margin over a 12 V nominal rail, easily absorbing switch-node ringing from the high-side MOSFET turn-on. Its low Qg also minimizes dead-time loss.
When should I choose ISC058N04NM5ATMA1 over a logic-level MOSFET?
Choose the ISC058N04NM5ATMA1 when your gate driver reliably delivers 10 V VGS, such as in isolated gate-driver or bootstrap high-side configurations. Logic-level MOSFETs (e.g., ISC011N03L5S) are needed only when the driver output is limited to 4.5-5 V. Normal-level devices typically offer ~30% lower Rds(on) for the same die size, giving better efficiency at the cost of stricter gate-drive requirements.
What is the difference between ISC058N04NM5 and ISC058N04NM5ATMA1?
The ISC058N04NM5 is the base part number, while ISC058N04NM5ATMA1 is the tape-and-reel (T&R) packaging variant with the 'A' suffix indicating automotive-grade screening and 'TMA1' indicating the specific reel orientation and quantity. Both share identical electrical specifications (40 V, 5.8 mOhm, 63 A) and the same PG-TDSON-8 FL package - the difference is purely in packaging and qualification.
What are the key specifications of ISC058N04NM5ATMA1 that engineers should know?
Engineers evaluating the ISC058N04NM5ATMA1 should focus on five specifications: VDS = 40 V (suits 12-24V buses), Rds(on) max = 5.8 mOhm at VGS = 10V, continuous ID = 63 A at TC, VGS(th) = 3.4 V (normal-level), and the PG-TDSON-8 FL (SuperSO8 5x6) package. These five numbers cover voltage class, conduction loss, current handling, gate-drive requirement, and PCB footprint - the complete decision set for power-MOSFET selection.

Engineering reference data for ISC058N04NM5ATMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the ISC058N04NM5ATMA1 when you need a 40V N-channel MOSFET with 5.8 mOhm Rds(on) and 63A current in the industry-standard SuperSO8 5x6 (PG-TDSON-8 FL) footprint, and your gate driver can deliver a clean 10V VGS. It is the right choice for synchronous rectification in 12-24V SMPS, BLDC motor half-bridges, BMS disconnect, and USB-PD load switches. Select the ISC015N04NM5 if you need lower conduction loss (1.5 mOhm) for >30A output; pick BSC059N04LSG when you need logic-level gate drive; choose BSC040N08NS5 when 24V bus transients exceed 40V (80V VDS gives 2x safety margin); and use BSC0902NS only for sub-30V applications. All five options share the same SuperSO8 5x6 footprint for drop-in PCB layout flexibility.

Comparison with Alternatives

Parameter This Product ISC015N04NM5ATMA1 BSC059N04LSGATMA1 BSZ024N04LS6ATMA1 BSC040N08NS5ATMA1 BSC0902NSATMA1
Brand Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies
Package PG-TDSON-8 FL (SuperSO8 5x6) PG-TDSON-8 FL (SuperSO8 5x6) - same PG-TDSON-8 FL (SuperSO8 5x6) - same PG-TDSON-8 FL (SuperSO8 5x6) - same PG-TDSON-8 FL (SuperSO8 5x6) - same PG-TDSON-8 FL (SuperSO8 5x6) - same
VDS max 40 V 40 V 40 V 40 V 80 V 30 V
Rds(on) max @ 10V 5.8 mOhm 1.5 mOhm 5.9 mOhm 2.4 mOhm 4.0 mOhm 9.0 mOhm
Continuous ID (Tc=25C) 63 A [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Gate Threshold VGS(th) typ 3.4 V (normal level) 3.4 V (normal level) 1.7 V (logic level) 1.7 V (logic level) 3.4 V (normal level) 1.7 V (logic level)
Technology Family OptiMOS 5 OptiMOS 5 OptiMOS OptiMOS OptiMOS 5 OptiMOS 5
Unit Price (1pc, USD, 2026-09-14) $0.95 [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • Higher current rating than BSC059N04LSG at similar Rds(on) (vs BSC059N04LSGATMA1)
  • Lower Rds(on) per unit cost vs older OptiMOS 3 generation (vs BSC0902NSATMA1)
  • Higher VDS rating than 30V parts in same footprint (vs BSC0902NSATMA1)

Design Notes

Estimated: At 30 A continuous current with Rds(on) = 5.8 mOhm, conduction loss is I^2 x R = 30^2 x 0.0058 = 5.2 W. The PG-TDSON-8 FL package has a typical junction-to-ambient thermal resistance of ~50 C/W on a 1 oz 1-inch^2 copper pad, giving a junction-temperature rise of ~260 C above ambient - clearly above the 175 C maximum. For continuous 20 A+ operation, the PCB copper area must be expanded to 2-4 inch^2 on the drain pad, or the design must derate to 15 A continuous at 25 C ambient. Always consult the manufacturer SOA curves in the datasheet.

Place the gate-drive resistor (typically 10-100 ohm) within 5 mm of the gate pin to minimize parasitic-loop inductance. The SuperSO8's duplicated source pins (1-3, 5-7) MUST all be soldered to the PCB source plane to reduce source-inductance-induced voltage spikes that can cause dv/dt turn-on. Connect the thermal pad (pin 8) to a copper pour on the top layer with at least 8 thermal vias to inner-plane copper for 2 oz or heavier boards.

Do not drive the gate with a 3.3V or 5V logic signal - the ISC058N04NM5ATMA1 is normal-level (VGS(th) = 3.4V typical) and requires at least 10V VGS to achieve the rated 5.8 mOhm. Below 6V VGS the device operates in the linear region, dissipating excessive power. For 5V-only designs, choose a logic-level OptiMOS 5 such as ISC011N03L5S. Also avoid exceeding the 40V VDS rating during inductive-switching turn-off - always include a snubber or TVS clamp on the switch node.

Use a star-ground topology tying the source-return of the gate driver directly to the Kelvin source (pin 2 or pin 5, NOT the thermal pad) to avoid ground-bounce-induced gate-oxide stress. The exposed drain pad (pin 8) must carry the full load current - ensure the via array under the pad has at least 12 vias of 0.3 mm diameter to handle 30 A continuous without excessive copper heating.

Compliance Information

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

RoHS compliant per Infineon product page. AEC-Q100 qualification is not separately indicated in the provided data for the standard ISC058N04NM5ATMA1 part. Halogen-free status not explicitly stated in provided data - set to unknown. Conflict-minerals compliance assumed per Infineon's standard CMRT declarations.

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 ISC058N04NM5ATMA1 ISC058N04NM5 ISC015N04NM5ATMA1 BSC059N04LSGATMA1 BSZ024N04LS6ATMA1 BSC040N08NS5ATMA1 BSC0902NSATMA1 OptiMOS 5 N-channel MOSFET power MOSFET discrete semiconductor PG-TDSON-8 FL SuperSO8 5x6 surface mount package Rds(on) VDS VGS(th) trench-gate technology synchronous rectification BLDC motor drive battery management system USB Power Delivery RoHS AEC-Q100
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