Infineon

ISC015N06NM5LF2ATMA1 - 60V 1.5mΩ OptiMOS 5 Linear FET | Infineon

MPN: ISC015N06NM5LF2ATMA1 ✓ Active
In Stock Ships in 1-3 business days
60 V Vdss 32 A Id 1.55 mΩ Rds(on) PG-TDSON-8 FL (5x6 mm) Package
From $2.21 USD / Unit
MOQ: 1 |
Price updated: 2026-09-14
Volume Pricing
Qty Unit Price Extended
1 $3.85 $3.85
10 $3.46 $34.60
100 $3.08 $308.00
500 $2.77 $1,385.00
1,000 $2.46 $2,460.00
5,000 $2.21 $11,050.00
ℹ️ All prices are in USD

Drop-in alternatives for ISC015N06NM5LF2ATMA1 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

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

ISC017N06NM5LF2ATMA1

✅ Drop-In ⚠️ 参数待验证
📦 PG-TDSON-8 FL (5x6 mm)
Same PG-TDSON-8 FL footprint, ~13% higher RDS(on) (~1.75 mΩ vs 1.55 mΩ max), 28 A vs 32 A ID continuous - otherwise identical OptiMOS 5 Linear FET 2 die family

📋 Reference alternative (not in catalog)

IPT008N06NM5LFATMA1

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-TDSON-8 FL (5x6 mm)
Infineon Technologies · OptiMOS 5 / Linear FET · N-Channel MOSFET · 60 V · 454 A · [DATA_NEEDED: pulsed ID] · 0.8 mΩ · 3.6 V (typ, 250 µA test)

✓ In Stock

$5.4 / Unit

View Datasheet →

ISC015N06NM5LF2-VB

✅ Drop-In
📦 DFN8 (5x6 mm)
Cross-brand equivalent in same DFN8 5x6 footprint, 1.3 mΩ RDS(on) at 10 V VGS, 60 V VDS, 200 A continuous - sourced from VBsemi product listing

📋 Reference alternative (not in catalog)

ISC017N06NM5LF2ATMA1

✅ Drop-In ⚠️ 参数待验证
📦 PG-TDSON-8 FL (5x6 mm)
Lower-RDS(on) OptiMOS 5 Linear FET 2 sibling in same footprint - '011' grade has tighter ~1.3 mΩ spec but reduced continuous current

📋 Reference alternative (not in catalog)

IPT015N10NF2SATMA1

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-TDSON-8 FL
N-Channel · 100 V · 315 A · 35 A · 1.5 mΩ · 3.8 V at 267 µA · 3.8 W · 300 W

✓ In Stock

$3.1 / Unit

View Datasheet →

ISC015N06NM5LF2ATMA1 Maximum Ratings & Electrical Characteristics

Technology OptiMOS 5 Linear FET 2 (N-Channel)
Drain-Source Voltage (VDS) 60 V
Continuous Drain Current (ID) at Ta 32 A
Pulsed Drain Current (IDM) at Tc 275 A
Power Dissipation (PD) at Ta 3 W
Power Dissipation (PD) at Tc 217 W
On-Resistance RDS(on) max at VGS=10V 1.55 mΩ
On-Resistance RDS(on) at VGS=10V (typ) 1.3 mΩ
Gate Threshold Voltage (VGS(th)) 3 V
Gate-Source Voltage Rating ±20 V
Reverse Recovery Charge (Qrr) 1.3 nC
Input Capacitance (Ciss) 6.9 nF
Output Capacitance (Coss) 1.3 nF
Reverse Transfer Capacitance (Crss) 55 pF
Total Gate Charge (Qg) 90 nC
Operating Junction Temperature -55 °C to +175 °C
Package PG-TDSON-8 FL (5x6 mm)
Mounting Type Surface Mount
RoHS Compliant

ISC015N06NM5LF2ATMA1 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 — MOSFET gate input
Pin 2 Source — Source connection (tied to pin 3 and pin 4)
Pin 3 Source — Source connection
Pin 4 Source — Source connection
Pin 5 Drain — Drain connection (tied to exposed flap)
Pin 6 Drain — Drain connection
Pin 7 Drain — Drain connection
Pin 8 Source Sense — Kelvin source sense for gate drive return

Safe Operating Area (DC)

DC Continuous Operation

Typical Applications

ISC015N06NM5LF2ATMA1 is suitable for 7 applications: Server 48 V Hot-Swap and OR-ing, Telecom 48 V e-Fuse Protection, Battery Management System (BMS) Charge/Discharge FET, USB-PD Sink Protection Switch, Industrial Motor Drive Half-Bridge (Low-Side), Solar Charge Controller Load Switch, Automotive 12 V/24 V Load Switching.

🖥️

Server 48 V Hot-Swap and OR-ing

The ISC015N06NM5LF2ATMA1's wide linear-mode SOA makes it ideal for 48 V server backplane hot-swap and OR-ing functions. During board insertion, the FET absorbs inrush current that charges bulk output capacitors - typically tens of amps for 10-100 ms. The part's 1.55 mΩ RDS(on) at 10 V VGS keeps conduction losses to roughly 1.5 W at 32 A continuous load, while the 60 V VDS rating provides 12 V margin above the 48 V nominal rail. Combined with the 5x6 mm PG-TDSON-8 FL footprint, it enables compact, single-FET-per-rail designs without paralleling.

🌐

Telecom 48 V e-Fuse Protection

In 48 V telecom and PoE+ systems, the ISC015N06NM5LF2ATMA1 serves as the linear-mode pass element of an e-fuse that protects downstream DC-DC converters from short circuits. The device's 217 W power dissipation at Tc and ±20 V VGS rating handle repetitive fault events of tens of amps for milliseconds - a regime that would destroy standard 60 V logic-level MOSFETs. Its 1.3 nC Qrr minimizes switching losses during fault-current interruption, while the PG-TDSON-8 FL exposed-flap leadless package delivers thermal resistance suitable for 30+ A continuous pass-through current.

🔋

Battery Management System (BMS) Charge/Discharge FET

The ISC015N06NM5LF2ATMA1 is well suited as a charge/discharge FET in 12 V/24 V lithium-ion battery management systems where its linear-mode capability lets it absorb back-EMF transients during relay switching. With 60 V VDS, the part handles 12 V lead-acid and 24 V LiFePO4 packs with ample transient margin. Its 32 A continuous current at Ta supports typical 1-2 kW battery packs, and the PG-TDSON-8 FL footprint enables compact cell-monitoring PCBs. The 1.55 mΩ on-resistance keeps conduction losses under 50 mW at 10 A discharge current.

📱

USB-PD Sink Protection Switch

USB Power Delivery sink designs benefit from the ISC015N06NM5LF2ATMA1's wide SOA when protecting downstream loads from over-current and over-voltage events on the VBUS rail. The 60 V VDS rating exceeds USB-PD 3.1 EPR's 28 V / 36 V / 48 V fixed PDOs with adequate transient margin. During inrush (when a sink's bulk capacitors charge), the FET's linear-mode operation sustains peak currents of 5-10 A for tens of milliseconds without tripping thermal protection. Its low 1.3 nC Qrr minimizes switching losses and EMI during fast PD role-swap events.

🏭

Industrial Motor Drive Half-Bridge (Low-Side)

In low-voltage industrial motor drives (24-48 V brushless DC), the ISC015N06NM5LF2ATMA1 functions as a low-side switch with safe avalanche behavior during inductive freewheeling. The 217 W power dissipation at Tc supports pulse currents during motor start-up, while 60 V VDS gives 12 V margin on 48 V bus rails. Its 1.55 mΩ RDS(on) at 10 V VGS reduces conduction loss in PWM-switched half-bridge configurations. The PG-TDSON-8 FL package handles the 175 °C maximum junction temperature needed for sealed motor-drive enclosures.

💡

Solar Charge Controller Load Switch

The ISC015N06NM5LF2ATMA1 is appropriate as a load disconnect switch in MPPT solar charge controllers where its 60 V VDS handles 24 V battery panels with surge margin. The linear-mode SOA allows the FET to absorb reverse-current transients from inductive loads when disconnect occurs at high solar irradiance. With 32 A continuous current at Ta, a single FET can switch 1 kW of solar panel power, and the PG-TDSON-8 FL package dissipates ~3 W at Ta without external heatsinking in well-ventilated enclosures. Its 90 nC Qg keeps gate-driver losses low at typical 25 kHz switching frequencies.

🚗

Automotive 12 V/24 V Load Switching

The ISC015N06NM5LF2ATMA1's wide operating temperature range (-55 °C to +175 °C junction) makes it suitable for automotive 12 V/24 V body and chassis load switching. Its 60 V VDS withstands load-dump transients of 40 V typical, and the 1.55 mΩ RDS(on) at 10 V VGS delivers efficient power distribution to high-current loads like seat heaters and radiator fans. While not AEC-Q100 qualified itself, this OptiMOS 5 Linear FET 2 is widely used in non-safety automotive subsystems. The PG-TDSON-8 FL footprint enables compact under-hood and cabin-mounted electronic control units.

What is the maximum drain-source voltage of ISC015N06NM5LF2ATMA1?
The ISC015N06NM5LF2ATMA1 is rated for 60 V maximum drain-source voltage (VDS). According to the Infineon OptiMOS 5 Linear FET 2 datasheet, this 60 V rating makes the part suitable for 48 V telecom buses, 12 V/24 V automotive rails, USB-PD and standard hot-swap applications below 48 V nominal. Designers should keep transient VDS peaks below 60 V including avalanche margin to avoid device destruction.
What is the RDS(on) of ISC015N06NM5LF2ATMA1 at 10V gate drive?
The ISC015N06NM5LF2ATMA1 datasheet specifies a maximum RDS(on) of 1.55 mΩ at VGS = 10 V, with typical values around 1.3 mΩ. This ultra-low on-resistance keeps conduction losses minimal, so a 30 A load drops roughly 47 mV across the FET at full enhancement. The part achieves this rating inside the PG-TDSON-8 FL (5x6 mm) package using Infineon's latest OptiMOS 5 trench process.
Where can I buy ISC015N06NM5LF2ATMA1 online?
The ISC015N06NM5LF2ATMA1 is in stock today at DigiKey (SKU 22157619-ND) and Mouser, with on-order availability through Arrow, TME and JLCPCB. Pricing for a single unit is approximately $3.85 as of 2026-09-14, dropping to about $2.46 per piece at 1,000-piece reels and $2.21 at 5,000 pieces. The Infineon part ships in 5,000-piece tape-and-reel packaging for OEM volumes.
What is the lead time for ISC015N06NM5LF2ATMA1?
The lead time for ISC015N06NM5LF2ATMA1 is 0 days at DigiKey and Mouser (in stock, ships same day) as of 2026-09-14. Larger production volumes (5,000+ reels) typically ship from Infineon authorized distributors within 4-6 weeks. For long-lead or EOL scenarios, consult Infineon's product page for the latest factory backlog indicators.
ISC015N06NM5LF2ATMA1 vs IPT008N06NM5LFATMA1 - which is better for hot-swap?
The ISC015N06NM5LF2ATMA1 has RDS(on) max of 1.55 mΩ at 32 A continuous current, while the IPT008N06NM5LFATMA1 in the same PG-TDSON-8 FL footprint offers a higher RDS(on) around 0.8 mΩ max at lower current. For 48 V hot-swap with inrush peaks of 30-50 A the ISC015N06NM5LF2ATMA1's wider linear SOA is preferable; for 12 V battery OR-ing the IPT008N06NM5LFATMA1 may be more cost-effective. Both are pin-compatible in the same 8-lead TDSON package.
What is the difference between ISC015N06NM5LF2 and ISC017N06NM5LF2?
Both ISC015N06NM5LF2 and ISC017N06NM5LF2 belong to the Infineon OptiMOS 5 Linear FET 2 family and share the 60 V PG-TDSON-8 FL footprint. The '015' variant has lower maximum RDS(on) (1.55 mΩ vs ~1.75 mΩ for '017') and supports higher continuous drain current (32 A vs ~28 A). Both are drop-in pin-compatible, so swapping is a one-line BOM change.
Is ISC015N06NM5LF2ATMA1 suitable for hot-swap controllers?
Yes, the ISC015N06NM5LF2ATMA1 is specifically engineered for hot-swap, e-fuse and OR-ing applications. Its wide linear-mode Safe Operating Area lets it dissipate tens of watts during inrush events that would destroy a standard logic-level MOSFET. Combined with 60 V VDS, ±20 V VGS rating, and 1.3 nC Qrr, the part is well suited to 48 V server backplanes and telecom secondary-side protection circuits.
What is the best drop-in replacement for ISC015N06NM5LF2ATMA1?
Within the Infineon OptiMOS 5 Linear FET 2 family, the ISC017N06NM5LF2ATMA1 and ISC011N06NM5LF2ATMA1 share the same PG-TDSON-8 FL footprint and pinout, and are drop-in replacements offering slightly different RDS(on)/current trade-offs. For a true cross-brand drop-in, the VBsemi ISC015N06NM5LF2ATMA1-VB (DFN8 5x6) shares the same footprint and on-resistance specification, although Infineon remains the recommended second source.
Where can I download the ISC015N06NM5LF2ATMA1 datasheet PDF?
The official ISC015N06NM5LF2ATMA1 datasheet is hosted on Infineon's product page at https://www.infineon.com/assets/row/public/documents/24/49/infineon-isc015n06nm5lf2-datasheet-en.pdf. DigiKey, Mouser, Arrow, Octopart and alldatasheet.com also host mirror copies. The datasheet contains thermal SOA curves, gate-charge characteristics, and the mechanical PG-TDSON-8 FL drawing with pin assignments.
What is the pinout of the ISC015N06NM5LF2ATMA1 PG-TDSON-8 FL package?
The ISC015N06NM5LF2ATMA1 uses the Infineon PG-TDSON-8 FL package where pin 1 is the Gate, pin 2-4 are Source, pin 5-7 are Drain (tied to the exposed flap), and pin 8 is Source sense. The exposed thermal pad beneath the die is connected to the Drain. Always consult the official Infineon datasheet for the exact land pattern, since PG-TDSON-8 FL differs from the JEDEC-standard SO-8 footprint.
Hey Google, what can replace an ISC015N06NM5LF2ATMA1 in a 48V hot-swap design?
The ISC015N06NM5LF2ATMA1 can be replaced in a 48 V hot-swap design by the ISC017N06NM5LF2ATMA1 (slightly higher RDS(on), same PG-TDSON-8 FL footprint) or the ISC011N06NM5LF2ATMA1 (lower RDS(on), larger SOA). All three parts are Infineon OptiMOS 5 Linear FET 2 devices with identical pinout, so they swap onto the same PCB land pattern with no rework.
Is the ISC015N06NM5LF2ATMA1 the same as the ISC015N06NM5LF2?
The ISC015N06NM5LF2ATMA1 is the same die as the ISC015N06NM5LF2; the trailing 'ATMA1' suffix is the Infineon ordering code for tape-and-reel (5,000 pieces per reel) with a specific date code. The bare ISC015N06NM5LF2 refers to the product family, while ISC015N06NM5LF2ATMA1 specifies the reel pack and is what distributors order.
What are the key specifications of ISC015N06NM5LF2ATMA1 that engineers should know?
Engineers using the ISC015N06NM5LF2ATMA1 should focus on five core parameters: 60 V VDS, 1.55 mΩ max RDS(on) at 10 V VGS, 32 A continuous drain current at Ta, 217 W power dissipation at Tc, and a wide linear-mode Safe Operating Area. The part is a 60 V N-channel OptiMOS 5 Linear FET 2 housed in a 5x6 mm PG-TDSON-8 FL package, with ±20 V VGS rating and 90 nC total gate charge.
Can BSC098N10NS5ATMA1 replace ISC015N06NM5LF2ATMA1?
No, the BSC098N10NS5ATMA1 is not a drop-in replacement for the ISC015N06NM5LF2ATMA1. The BSC098N10NS5ATMA1 is rated 100 V instead of 60 V and uses a different TOLL package, while the ISC015N06NM5LF2ATMA1 uses PG-TDSON-8 FL. The two are not pin-compatible and the higher VDS rating of the BSC098N10NS5ATMA1 does not translate to the same linear-mode SOA, so it is NOT listed as a drop-in alternative.
What is the price of ISC015N06NM5LF2ATMA1?
The ISC015N06NM5LF2ATMA1 is priced at approximately $3.85 per piece at quantity 1, dropping to about $3.46 at 10 pieces, $3.08 at 100 pieces, $2.77 at 500 pieces, $2.46 at 1,000 pieces and $2.21 at 5,000 pieces, as of 2026-09-14 from DigiKey and Mouser. Volume pricing for OEM reels (5,000-piece standard pack) typically drops below $2.00 per piece through Infineon's direct sales channel.

Engineering reference data for ISC015N06NM5LF2ATMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the ISC015N06NM5LF2ATMA1 when you need a 60 V MOSFET with a wide linear-mode Safe Operating Area for hot-swap, e-fuse or OR-ing applications in server, telecom, or industrial 48 V systems. Its 1.55 mΩ RDS(on) at 10 V VGS, 32 A continuous current and 217 W power dissipation make it the highest-current grade in Infineon's OptiMOS 5 Linear FET 2 family in the same PG-TDSON-8 FL footprint. If your application requires lower conduction loss at the expense of some linear-mode ruggedness, select the IPT008N06NM5LFATMA1 (0.8 mΩ RDS(on), same footprint, reduced SOA). For higher voltage margin above 48 V rails, choose the 100 V IPT015N10NF2SATMA1 in the same package. The VBsemi ISC015N06NM5LF2-VB is a third-party DFN8 alternative but lacks automotive traceability. Avoid standard switching MOSFETs like the BSC097N06NSATMA1 for linear-mode service - their narrow SOA will cause thermal runaway within milliseconds of inrush.

Comparison with Alternatives

Parameter This Product ISC017N06NM5LF2ATMA1 IPT008N06NM5LFATMA1 ISC015N06NM5LF2-VB IPT015N10NF2SATMA1
Package PG-TDSON-8 FL (5x6 mm) PG-TDSON-8 FL (5x6 mm) - same PG-TDSON-8 FL (5x6 mm) - same DFN8 (5x6 mm) - same footprint PG-TDSON-8 FL - same
Brand Infineon Technologies Infineon Technologies Infineon Technologies VBsemi Infineon Technologies
VDS Rating 60 V 60 V 60 V 60 V 100 V
RDS(on) max @ 10V 1.55 mΩ 1.75 mΩ 0.8 mΩ 1.3 mΩ (typ) 1.5 mΩ
Continuous ID at Ta 32 A 28 A 30 A 200 A 180 A (Tc)
Power Dissipation (Tc) 217 W 195 W 167 W [DATA_NEEDED] 300 W
Technology Family OptiMOS 5 Linear FET 2 OptiMOS 5 Linear FET 2 OptiMOS 5 Linear FET SGT OptiMOS 5
Linear-Mode SOA Wide (Linear FET optimized) Wide (Linear FET optimized) Reduced (Standard switching) Standard Standard
1k Price (USD) $2.46 [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • Engineered linear-mode Safe Operating Area (vs IPT008N06NM5LFATMA1)
  • Lowest RDS(on) in same PG-TDSON-8 FL footprint (vs ISC017N06NM5LF2ATMA1)
  • Proven Infineon automotive supply chain (vs ISC015N06NM5LF2-VB (VBsemi))
  • Lower Qrr for reduced switching loss (vs BSC097N06NSATMA1 (standard OptiMOS 5))

Design Notes

Estimated: At VDS = 30 V (in the linear region) and ID = 5 A during a hot-swap inrush event, the device dissipates P = VDS × ID = 150 W. The PG-TDSON-8 FL package has theta_JC ≈ 0.7 °C/W, so the die temperature rises by 105 °C above the case - placing junction temperature near the 175 °C maximum if the case is already at 70 °C. Engineers must keep linear-mode operating points well inside the datasheet SOA curve; consider the ISC017N06NM5LF2ATMA1 for higher inrush or reduce inrush duration with a larger gate RC.

The PG-TDSON-8 FL exposed flap must be soldered to the PCB drain copper pour for thermal and electrical performance. Use at least 1 oz copper on top and bottom layers, stitched with thermal vias (0.3 mm pitch, 12+ vias) under the flap. The Source Sense pin (pin 8) provides a Kelvin connection for the gate driver - route the gate-drive return path directly to pin 8 rather than the main source pads to avoid dv/dt-induced turn-on.

Do not use the ISC015N06NM5LF2ATMA1 in continuous DC linear operation at full rated current - the linear-mode SOA derates rapidly with VDS. Always include a gate-source pull-down resistor (10-100 kΩ) to keep the FET off during controller power-up, and add a TVS diode from gate to source to clamp below ±20 V during drain-voltage transients. For repetitive pulsed operation, consult the datasheet's pulsed SOA curves rather than the DC curve.

Keep the gate-drive loop area minimal: place the gate resistor and gate-source pull-down within 5 mm of pins 1 and 8. Route the high-current drain-source loop directly under the FET using wide copper pours (≥ 4 mm wide on outer layers, ≥ 8 mm wide with internal planes). For 48 V hot-swap, add an RC snubber (10 Ω + 1 nF) from drain to source within 10 mm of the FET to damp VDS ringing during turn-off.

The 6.9 nF Ciss and 90 nC Qg of the ISC015N06NM5LF2ATMA1 require a gate driver capable of sourcing/sinking at least 1 A peak for sub-microsecond switching transitions. A standard CMOS gate driver like the IRS2104STRPBF is adequate; for higher switching speeds, a UCC27531-class 4 A driver reduces switching losses. Add a small ferrite bead or 10 Ω gate resistor to control dv/dt-related ringing in 48 V applications.

Compliance Information

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

RoHS compliant per Infineon product page. Not AEC-Q100 qualified for automotive safety applications - select automotive-grade Infineon parts if required. Halogen-free status not stated in available data.

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 ISC015N06NM5LF2ATMA1 ISC015N06NM5LF2 ISC017N06NM5LF2ATMA1 IPT008N06NM5LFATMA1 IPT015N10NF2SATMA1 ISC015N06NM5LF2-VB VBsemi OptiMOS 5 Linear FET 2 N-channel MOSFET power MOSFET discrete semiconductor Linear FET Safe Operating Area RDS(on) PG-TDSON-8 FL TDSON DFN8 SGT technology trench MOSFET RoHS hot-swap controller e-fuse OR-ing USB Power Delivery battery management system MPPT solar charge controller 48V telecom bus Kelvin source sense gate driver
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