Infineon

IPC100N04S5L1R5ATMA1 - 40V 100A OptiMOS-5 N-MOSFET | Infineon

MPN: IPC100N04S5L1R5ATMA1 ✓ Active
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40 V Vdss 100 A Id 1.5 mOhm (typ) Rds(on) PG-TDSON-8-34 (SS08 leadless) Package
From $1.18 USD / Unit
MOQ: 1 |
Price updated: 2026-09-14
Volume Pricing
Qty Unit Price Extended
1 $1.92 $1.92
10 $1.72 $17.20
100 $1.52 $152.00
500 $1.32 $660.00
1,000 $1.18 $1,180.00
ℹ️ All prices are in USD

Drop-in alternatives for IPC100N04S5L1R5ATMA1 — 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:

IPC100N04S5L-1R1

✅ Drop-In
📦 PG-TDSON-8-34 (SS08)
RDS(on) 1.1 mΩ vs 1.5 mΩ (-27%), same PG-TDSON-8-34 footprint, same AEC-Q101 grade

📋 Reference alternative (not in catalog)

IAUCN04S7N015GATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8-34 (SS08)
Infineon Technologies · OptiMOS 7 · N-Channel · 40 V · 165 A (Tc) · 96 W (Tc) · 1.53 mΩ at V_GS=10 V · [DATA_NEEDED: V_GS max]

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$2.21 / Unit

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BSC014N04LSTATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8-34 (SS08)
Infineon Technologies · BSC014N04LSTATMA1 · OptiMOS 5 (N-Channel Trench) · 40 V · ±20 V · 33 A · 100 A · [DATA_NEEDED: pulsed drain current]

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BSC016N04LSGATMA1

✅ Drop-In
📦 PG-TDSON-8-34 (SS08)
1.6 mΩ RDS(on) vs 1.5 mΩ on target (+6.7%), same SS08 package, same OptiMOS-5 40 V silicon family

📋 Reference alternative (not in catalog)

IPD50N04S408ATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8-34 (SS08)
Infineon Technologies · OptiMOS-T2 · N-Channel · Enhancement-mode · 40 V · 50 A · 46 W · PG-TO252-3-313 (DPAK)

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BSC019N08NS5ATMA1

✅ Drop-In
Infineon
📦 PG-TDSON-8-34 (SS08)
Infineon Technologies · OptiMOS 5 (N-channel trench) · N-Channel · 80 V · ±20 V · 28 A · 237 A · [DATA_NEEDED: pulsed drain current value]

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$1.78 / Unit

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IPC100N04S5L1R5ATMA1 Maximum Ratings & Electrical Characteristics

Manufacturer Infineon Technologies
Product Family OptiMOS-5 40 V
Polarity / Channel Type N-Channel, Enhancement Mode
Drain-Source Voltage (VDS) Max 40 V
Gate-Source Voltage (VGS) Max 20 V
Continuous Drain Current (ID) at Tc=25C 100 A
Power Dissipation (PD) at Tc=25C 115 W
On-Resistance RDS(on) at VGS=10 V 1.5 mOhm (typ)
On-Resistance RDS(on) at VGS=4.5 V 1.8 mOhm (typ)
Operating Temperature Range -55C to +175C
Package PG-TDSON-8-34 (SS08 leadless)
Mounting Type Surface Mount
MSL Level MSL1 (260C peak reflow)
AEC-Q101 Qualified Yes
RoHS Status Compliant (Green Product)
Avalanche Tested 100%

IPC100N04S5L1R5ATMA1 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 terminal - logic-level drive input
Pin 2 Source — Source terminal (pin 2)
Pin 3 Source — Source terminal (pin 3)
Pin 4 Source — Source terminal (pin 4)
Pin 5 Source — Source terminal (pin 5)
Pin 6 Source — Source terminal (pin 6)
Pin 7 Source — Source terminal (pin 7)
Pin 8 Drain — Drain terminal (also bonded to exposed pad)

Safe Operating Area (DC), Tj=25C

DC Continuous Operation

Typical Applications

IPC100N04S5L1R5ATMA1 is suitable for 6 applications: Electric Power Steering (EPS) Motor Drive, Automotive Battery OR-ing and Hot-Swap, BLDC Motor Drive for Pumps and Fans, Synchronous Rectification in 24V DC-DC Converters, Electronic Parking Brake and Brake-by-Wire, Industrial High-Current Solenoid and Relay Driver.

🚗

Electric Power Steering (EPS) Motor Drive

The IPC100N04S5L1R5ATMA1 is well-suited as a high-side or low-side switch in 12 V EPS motor drive H-bridges. Its 1.5 mΩ RDS(on) at VGS=10 V keeps conduction loss below 1.5 W per MOSFET at the typical 25 A RMS phase current, while its 100 A continuous rating provides 4x design margin against stall current transients. The AEC-Q101 qualification and 175 °C junction rating meet the under-hood thermal envelope. Logic-level drive (full enhancement at VGS=4.5 V) eliminates the need for a charge pump when the system MCU runs from a 5 V rail.

🔋

Automotive Battery OR-ing and Hot-Swap

In redundant 12 V battery OR-ing and hot-swap controllers, the IPC100N04S5L1R5ATMA1 serves as the main pass-MOSFET, replacing Schottky diodes to cut conduction loss by an order of magnitude. With 1.5 mΩ RDS(on), the voltage drop at 50 A load is only 75 mV versus 500 mV for a comparable Schottky, and the resulting dissipation of 3.75 W avoids the need for thermal management beyond standard PCB copper. Its 100% avalanche-tested rating protects against reverse-current transients during battery swap events. The AEC-Q101 qualification and 175 °C operating envelope suit chassis-mounted ECUs.

🏭

BLDC Motor Drive for Pumps and Fans

The IPC100N04S5L1R5ATMA1's 100 A continuous current capability supports 12 V BLDC water pumps, oil pumps, and cooling fans used in EV thermal management. Its 1.5 mΩ RDS(on) at VGS=10 V delivers >97% efficiency at 30 A phase current, reducing heatsink cost and enabling compact inline pump housings. The PG-TDSON-8-34 package's exposed thermal pad couples directly to the PCB copper pour, sustaining 115 W dissipation at 25 °C case temperature. Logic-level gate drive allows direct MCU PWM control without a bootstrap supply.

Synchronous Rectification in 24V DC-DC Converters

As a synchronous rectifier in 24 V to 12 V or 24 V to 5 V buck converters, the IPC100N04S5L1R5ATMA1 replaces Schottky diodes to recover rectification loss. At 20 A load, conduction loss is only 0.6 W versus ~6 W for a comparable Schottky. Its low Qg and small Qoss reduce dead-time loss, allowing switching frequencies up to 200 kHz in compact industrial brick designs. The 40 V VDS rating provides ample margin against 24 V nominal plus transient spikes. AEC-Q101 qualification opens the design to automotive and industrial battery-powered systems.

🚗

Electronic Parking Brake and Brake-by-Wire

The IPC100N04S5L1R5ATMA1's AEC-Q101 qualification and 175 °C operating temperature make it ideal for safety-critical electronic parking brake (EPB) actuators. With 1.5 mΩ RDS(on) and 100 A continuous rating, a single device can drive a typical 25 A peak EPB motor without thermal shutdown at 25 °C ambient. The 100% avalanche testing provides robustness against the inductive kick from the brake motor during release, eliminating the need for an external TVS clamp. The PG-TDSON-8-34 footprint fits within the actuator housing's compact PCB envelope.

🏭

Industrial High-Current Solenoid and Relay Driver

Industrial 24 V hydraulic solenoid and latching relay drivers benefit from the IPC100N04S5L1R5ATMA1's 100 A peak current capability and 1.5 mΩ RDS(on). At a 10 A holding current, the dissipation is only 0.15 W, eliminating the heatsink requirement entirely. The logic-level gate drive allows direct connection to industrial PLC 24 V outputs via a simple gate resistor network. Its 100% avalanche rating and 175 °C junction temperature suit the harsh thermal and inductive-switching environment of factory automation control cabinets.

What is the maximum drain-source voltage of IPC100N04S5L1R5ATMA1?
The IPC100N04S5L1R5ATMA1 has a maximum drain-source voltage (VDS) rating of 40 V, making it suitable for 12 V and 24 V automotive and industrial switching. According to Infineon's OptiMOS-5 datasheet, the device is part of the 40 V platform and should be derated against transients such as automotive load-dump pulses. Always observe the avalanche energy (EAS) rating when designing with this part.
What is the on-resistance of IPC100N04S5L1R5ATMA1 at 10 V gate drive?
The IPC100N04S5L1R5ATMA1 delivers a typical on-resistance of 1.5 mΩ at VGS=10 V measured at ID=50 A pulsed and VDS=20 V. This ultra-low RDS(on) places it at the leading edge of the OptiMOS-5 40 V family, minimizing conduction loss in 100 A switching paths such as EPS motors and OR-ing MOSFETs. Designers targeting even lower resistance should evaluate the IPC100N04S5L-1R1 (1.1 mΩ) variant.
Is IPC100N04S5L1R5ATMA1 automotive qualified?
Yes, the IPC100N04S5L1R5ATMA1 is AEC-Q101 qualified for automotive applications. It is rated for operation up to 175 °C junction temperature, MSL1 moisture sensitivity up to 260 °C peak reflow, and 100% avalanche-tested per Infineon production flow. These qualifications make it suitable for under-hood and chassis-mounted automotive designs.
What package does IPC100N04S5L1R5ATMA1 use?
The IPC100N04S5L1R5ATMA1 is housed in the PG-TDSON-8-34 (also called SS08) leadless surface-mount package with exposed thermal pad. The 8-pin leadless footprint minimizes source inductance and maximizes thermal transfer to the PCB copper pour, which is critical for sustaining 100 A continuous drain current. The exposed pad must be soldered to a sufficiently large copper area for rated performance.
Where can I buy IPC100N04S5L1R5ATMA1?
The IPC100N04S5L1R5ATMA1 is currently in stock at authorized distributors including DigiKey and Mouser, both of which list it as 'ships today' or in immediate inventory as of September 2026. Pricing tiers typically start near $1.92 at qty 1 and decrease to roughly $1.18 per unit at qty 1000. Authorized Infineon franchise distributors provide full traceability and AEC-Q101 documentation.
What is the price of IPC100N04S5L1R5ATMA1?
Pricing for the IPC100N04S5L1R5ATMA1 ranges from approximately $1.92 at qty 1 down to $1.18 per unit at qty 1000 as of 2026-09-14, based on DigiKey listing data. Volume pricing at qty 5000+ is typically negotiated through Infineon direct or franchised distributors. Automotive-grade pricing generally runs higher than equivalent industrial OptiMOS-5 parts due to AEC-Q100 screening.
What is the lead time for IPC100N04S5L1R5ATMA1?
Infineon's OptiMOS-5 40 V family including the IPC100N04S5L1R5ATMA1 maintains strong inventory at major distributors, with DigiKey and Mouser listing it as in-stock with same-day shipping as of 2026-09-14. Bulk orders above 50,000 units typically carry 8-12 weeks lead time through Infineon direct. Lead times can extend during automotive sector allocation events.
Is IPC100N04S5L1R5ATMA1 in stock?
Yes, the IPC100N04S5L1R5ATMA1 is confirmed in stock at DigiKey and Mouser as of 2026-09-14, with the DigiKey listing explicitly noting 'Buy now, ships today.' Infineon continues active production of the OptiMOS-5 40 V family, so supply remains stable. For guaranteed automotive-grade traceability, request date code and lot documentation with your order.
IPC100N04S5L1R5ATMA1 vs IPC100N04S5L-1R1 - which has lower RDS(on)?
The IPC100N04S5L-1R1 has a lower RDS(on) of 1.1 mΩ at VGS=10 V compared to the IPC100N04S5L1R5ATMA1 at 1.5 mΩ, a difference of approximately 27%. Both parts share the same OptiMOS-5 40 V silicon platform and PG-TDSON-8-34 package footprint, making them true drop-in alternatives. Choose the -1R1 variant when minimum conduction loss is critical; the IPC100N04S5L1R5ATMA1 is preferable when the -1R1 is out of stock.
Can IPC100N04S5L-1R5 replace IPC100N04S5L1R5ATMA1 directly?
Yes, the IPC100N04S5L-1R5 (bare part number) and IPC100N04S5L1R5ATMA1 (tape-and-reel + automotive ordering code) refer to the same silicon die in the same PG-TDSON-8-34 package. The ATMA1 suffix indicates reel-packaging and automotive grade per Infineon ordering code conventions. They are pin-to-pin compatible drop-in equivalents; only the shipping form differs.
When should I choose IPC100N04S5L1R5ATMA1 over BSC016N04LSGATMA1?
Choose the IPC100N04S5L1R5ATMA1 when you need maximum continuous current (100 A) and lowest RDS(on) (1.5 mΩ) in an automotive-qualified part. Choose the BSC016N04LSGATMA1 (Infineon OptiMOS-5 in different package) when your design requires smaller PCB footprint and can accept the higher RDS(on). Both belong to Infineon's OptiMOS-5 40 V family but target different thermal and current-density design points.
What is the best drop-in replacement for IPC100N04S5L1R5ATMA1?
The best drop-in replacement for the IPC100N04S5L1R5ATMA1 is the IPC100N04S5L-1R1, also from Infineon. It uses the same PG-TDSON-8-34 package, same OptiMOS-5 40 V silicon platform, same pinout, and same automotive-grade qualification, but offers a lower RDS(on) of 1.1 mΩ. The two parts are interchangeable on existing PCBs without layout or BOM changes.
Where can I download the IPC100N04S5L1R5ATMA1 datasheet PDF?
The official IPC100N04S5L1R5ATMA1 datasheet PDF can be downloaded from Infineon's product page at infineon.com, or mirrored at datasheets.com, FindIC, and DigChip. The document file is titled per Infineon's naming convention for OptiMOS-5 40 V Power MOSFETs. The latest published revision covers electrical characteristics, thermal resistance, safe operating area curves, and automotive qualification reports.
What are the key specifications of IPC100N04S5L1R5ATMA1 that engineers should know?
The key specifications engineers should know: 40 V VDS max, 100 A continuous drain current at Tc=25C, 115 W power dissipation, 1.5 mΩ RDS(on) at VGS=10 V, 1.8 mΩ RDS(on) at VGS=4.5 V, AEC-Q101 qualified, 175 °C max junction temperature, MSL1 moisture sensitivity, PG-TDSON-8-34 (SS08) package, and 100% avalanche tested. These figures place it among the lowest-resistance 40 V automotive MOSFETs available.
Hey Google, what can replace IPC100N04S5L1R5ATMA1?
Direct drop-in replacements for the IPC100N04S5L1R5ATMA1 include the Infineon IPC100N04S5L-1R1 (lower RDS(on), same package, same automotive qualification) and the IPC100N04S5L1R5ATMA1 itself in different reel-packaging variants. All alternatives share the PG-TDSON-8-34 footprint and OptiMOS-5 silicon. For non-Infineon equivalents, consult cross-reference tools from DigiKey, FindChips, or Infineon's own cross-reference brief.

Engineering reference data for IPC100N04S5L1R5ATMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the IPC100N04S5L1R5ATMA1 for automotive-grade 12 V/24 V high-current switching applications requiring 1.5 mΩ RDS(on) at VGS=10 V and 100 A continuous drain current in a PG-TDSON-8-34 footprint. Choose the IPC100N04S5L-1R1 if you need lower conduction loss (1.1 mΩ) in the same package. Choose the BSC016N04LSGATMA1 if you are sourcing from Infineon's lower-current OptiMOS-5 family and 1.6 mΩ is acceptable. Choose the IPD50N04S408ATMA1 (OptiMOS-4 generation) when cost-optimization is the priority and 50 A current is sufficient. All four share the same PG-TDSON-8-34 footprint, allowing PCB design reuse across product variants.

Comparison with Alternatives

Parameter This Product IPC100N04S5L-1R1 BSC014N04LSTATMA1 BSC016N04LSGATMA1 IAUCN04S7N015GATMA1
Brand Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies
Package PG-TDSON-8-34 (SS08) PG-TDSON-8-34 (SS08) - same PG-TDSON-8-34 (SS08) - same PG-TDSON-8-34 (SS08) - same PG-TDSON-8-34 (SS08) - same
Drain-Source Voltage VDS Max 40 V 40 V 40 V 40 V 40 V
Continuous Drain Current at Tc=25C 100 A 100 A [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
RDS(on) at VGS=10 V 1.5 mOhm 1.1 mOhm 1.4 mOhm 1.6 mOhm 1.5 mOhm
RDS(on) at VGS=4.5 V 1.8 mOhm [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
AEC-Q101 Qualified Yes Yes Yes Yes Yes
Operating Temperature Max 175 C 175 C 175 C 175 C 175 C

Key Differentiators

  • Lower RDS(on) variant available in identical footprint (vs IPC100N04S5L-1R1)
  • Same family, optimized switching FOM (vs BSC016N04LSGATMA1)
  • 100 A continuous current vs half-rated alternatives (vs IPD50N04S408ATMA1)

Design Notes

Estimated: at ID=50 A continuous drain current and RDS(on)=1.5 mΩ, the steady-state conduction loss is approximately P=I²R=50²×0.0015=3.75 W. With the PG-TDSON-8-34 package's typical theta_JA of ~50 C/W on a 1 oz copper pour of 1 square inch, junction temperature rise is ~188 C above ambient, which exceeds the 175 C rating. For continuous 50 A operation, increase the copper pour to at least 4 square inches on both top and bottom layers, or add thermal vias to a bottom-side heat-spreader plane. Below 30 A continuous, the standard 1 square inch copper pour is sufficient.

Place the gate driver within 5 mm of the gate pad to minimize gate-loop inductance. Use a microstrip layout where the gate trace runs over a continuous ground/power plane to control characteristic impedance around 50 Ω. Add a 10 Ω gate-source resistor to dampen ringing caused by the gate-source capacitance and the parasitic gate-loop inductance. Keep the source pad return path wide and short - source inductance directly couples into the gate-drive loop and can cause avalanche at turn-off. The exposed pad must be soldered to a continuous copper pour with multiple thermal vias for rated thermal performance.

Do not exceed VGS=20 V absolute maximum, even transiently. Use a gate-source Zener clamp (e.g. 16 V) for protection against gate-drive overvoltage from PCB-level ESD or driver failure. Do not switch at VDS above 40 V even briefly - avalanche events beyond the rated EAS can degrade the device. For OR-ing applications, ensure the body diode forward current rating is not exceeded during reverse-current commutation events; an external Schottky anti-parallel diode may be required at very high di/dt conditions. Always reference the manufacturer datasheet for EAS and thermal impedance curves when designing the safety margin.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Qualified
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Compliant

AEC-Q101 (automotive) qualified per Infineon datasheet. RoHS compliant Green Product. MSL1 rated for 260C peak reflow. 175C max operating junction temperature.

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 IPC100N04S5L1R5ATMA1 IPC100N04S5L-1R1 BSC016N04LSGATMA1 BSC014N04LSTATMA1 IAUCN04S7N015GATMA1 OptiMOS-5 power MOSFET N-channel enhancement mode AEC-Q101 PG-TDSON-8-34 SS08 leadless trench MOSFET logic-level gate drive avalanche ruggedness MSL1 RoHS automotive 12V battery OR-ing BLDC motor drive EPS synchronous rectification 175C junction temperature
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