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IAUC28N08S5L230ATMA1 - 80V 28A 23mΩ OptiMOS-5 N-Channel MOSFET | Infineon

MPN: IAUC28N08S5L230ATMA1 ✓ Active
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80 V Vdss 28 A Id 23 mΩ (typ) Rds(on) PG-TDSON-8-33 (5x6 mm SSO8) Package
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Price updated: 2026-09-13
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10 $1.62 $16.20
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500 $0.98 $490.00
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3,000 $0.71 $2,130.00
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IAUC28N08S5L230ATMA1 Maximum Ratings & Electrical Characteristics

Manufacturer Infineon Technologies
Series OptiMOS-5
FET Type N-Channel
Drain-Source Voltage (V<sub>DS</sub>) 80 V
Continuous Drain Current (I<sub>D</sub>, T<sub>C</sub>) 28 A
On-Resistance (R<sub>DS(on)</sub>, V<sub>GS</sub>=10 V) 23 mΩ (typ)
Gate-Source Threshold (V<sub>GS(th)</sub>, typ) 2.5 V
Power Dissipation (P<sub>D</sub>, T<sub>C</sub>) 38 W
Operating Junction Temperature -55 °C to +175 °C
Package PG-TDSON-8-33 (5x6 mm SSO8)
Mounting Type Surface Mount
Technology OptiMOS-5 Power MOSFET
Automotive Qualified Yes (AEC-Q101)
RoHS Status Compliant

IAUC28N08S5L230ATMA1 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 drive input
Pin 2 Source — Source connection
Pin 3 Source — Source connection (kelvin)
Pin 4 Source — Source connection
Pin 5 Drain — Drain (connected to exposed pad)
Pin 6 Drain — Drain (connected to exposed pad)
Pin 7 Drain — Drain (connected to exposed pad)
Pin 8 Drain — Drain (connected to exposed pad)

Safe Operating Area (TC=25°C)

DC Continuous Operation

Typical Applications

IAUC28N08S5L230ATMA1 is suitable for 6 applications: 12V/24V Automotive LED Lighting Driver, 12V DC-DC Buck Converter Primary Switch, Electronic Power Steering (EPS) Motor Drive, Reverse-Battery and Load-Dump Protection, Body Control Module (BCM) Load Switch, 48V Mild-Hybrid DC-DC Primary Stage.

💡

12V/24V Automotive LED Lighting Driver

The IAUC28N08S5L230ATMA1's 80V VDS and 23mΩ RDS(on) suit it for high-current LED driver stages in automotive headlamps and daytime running lights. The 80V rating covers 24V jump-start and 35V load-dump transients per ISO 7637-2, eliminating the need for additional TVS clamping. AEC-Q101 qualification and 175°C T_J support under-hood placement; a 10V VGS gate drive and 28A continuous drain handle 15-20A LED string currents typical in matrix-LED headlamps with adequate copper thermal dissipation.

12V DC-DC Buck Converter Primary Switch

The IAUC28N08S5L230ATMA1 functions as the primary-side high-side or low-side switch in 12V-input buck converters for automotive infotainment, ADAS, and body-control modules. Its 23mΩ RDS(on) minimizes conduction loss at 10-15A load currents, while the 80V VDS handles automotive transient events without avalanche breakdown. OptiMOS-5 technology delivers low Qg for high-frequency (>400 kHz) switching, shrinking magnetics and improving converter power density.

🚗

Electronic Power Steering (EPS) Motor Drive

The IAUC28N08S5L230ATMA1 is suitable for EPS motor inverter stages where 12V brushed or 3-phase BLDC motors draw 15-25A peak currents. Its 38W Tc power dissipation and low thermal resistance of the PG-TDSON-8-33 footprint support the high-current pulses during steering assist. AEC-Q101 qualification satisfies OEM automotive reliability requirements, and the 80V rating provides safety margin for motor back-EMF during commutation events.

🛡️

Reverse-Battery and Load-Dump Protection

The IAUC28N08S5L230ATMA1 is placed in series with the 12V battery feed as a load switch and reverse-polarity blocker for automotive ECUs. With 80V VDS, the MOSFET easily absorbs load-dump transients up to 35V per ISO 7637-2 and protects downstream 40V-rated ICs. The 23mΩ RDS(on) keeps continuous dissipation under 5W at 15A load, and AEC-Q101 qualification ensures reliability across -40°C to +125°C ambient automotive conditions.

🏭

Body Control Module (BCM) Load Switch

The IAUC28N08S5L230ATMA1 acts as a low-side switch in BCM outputs for door locks, window lifters, and seat adjusters, switching 5-15A inductive loads. The 80V VDS and avalanche-rated body diode handle flyback energy from relay and motor coils without external freewheeling diodes in many cases. Low 23mΩ RDS(on) reduces thermal stress in always-on circuits like tail lamps, and AEC-Q101 grade satisfies OEM PPAP requirements.

🚗

48V Mild-Hybrid DC-DC Primary Stage

The IAUC28N08S5L230ATMA1 is suitable for 48V mild-hybrid buck or boost converter primary switches where the 80V VDS provides 26V margin above the 54V maximum defined by LV148. Its OptiMOS-5 technology enables 300-500 kHz switching frequencies, allowing compact magnetics for the 1-3 kW power levels typical in mild-hybrid DC-DC converters. AEC-Q101 qualification and 175°C T_J are required for under-hood deployment near combustion engines.

What is the maximum drain-source voltage of IAUC28N08S5L230ATMA1?
The IAUC28N08S5L230ATMA1 has a maximum drain-source voltage V<sub>DS</sub> of 80 V, making it suitable for 12 V and 24 V automotive applications including 24 V jump-start and 35 V load-dump transients defined by ISO 7637-2. According to the Infineon OptiMOS-5 datasheet, the part also withstands the avalanche energy ratings required for unclamped inductive load events in solenoid and motor drive circuits.
What is the R<sub>DS(on)</sub> of IAUC28N08S5L230ATMA1?
The IAUC28N08S5L230ATMA1 has a typical on-resistance of 23 mΩ at V<sub>GS</sub>=10 V and T<sub>J</sub>=25 °C. According to the Infineon datasheet, the OptiMOS-5 process achieves this low R<sub>DS(on)</sub> in a compact 5x6 mm SSO8 footprint, minimizing conduction loss in high-current automotive switching stages.
Where can I buy IAUC28N08S5L230ATMA1 online?
The IAUC28N08S5L230ATMA1 is in stock at DigiKey, Mouser, Octopart-listed distributors, and TrustedParts.com authorized channels as of 2026-09-13. Pricing scales from approximately $1.85 at qty 1 to $0.71 at qty 3000; XAIPART also lists the part with engineering specifications for direct quote requests.
What is the lead time for IAUC28N08S5L230ATMA1?
As of 2026-09-13, DigiKey shows the IAUC28N08S5L230ATMA1 ships same-day from inventory, Mouser confirms immediate stock, and major franchised distributors maintain continuous supply. Industrial automotive volumes may require 8-12 weeks through factory-direct channels; XAIPART provides quote-based scheduling.
What package does IAUC28N08S5L230ATMA1 use?
The IAUC28N08S5L230ATMA1 ships in Infineon's PG-TDSON-8-33 (5x6 mm SSO8) surface-mount package with an exposed drain pad for low thermal resistance. According to the datasheet, the pin layout is industry-standard SSO8, pin-to-pin compatible with other 80 V/100 V OptiMOS-5 MOSFETs in the same footprint.
What is the difference between IAUC28N08S5L230ATMA1 and IAUC41N06S5L100ATMA1?
The IAUC28N08S5L230ATMA1 is rated 80 V / 23 mΩ / 28 A in a 5x6 SSO8 package, while the IAUC41N06S5L100ATMA1 is a 60 V / 10 mΩ / 41 A part. Both are OptiMOS-5 automotive MOSFETs sharing the SSO8 footprint, but the IAUC41N06S5L100 has lower R<sub>DS(on)</sub> at lower V<sub>DS</sub> rating - choose IAUC28N08 for 24 V systems needing higher voltage margin, IAUC41N06 for 12 V systems needing lower conduction loss.
What is the best drop-in replacement for IAUC28N08S5L230ATMA1?
The best drop-in replacements for IAUC28N08S5L230ATMA1 in the same PG-TDSON-8-33 (SSO8) package are the IAUC100N04S6L014ATMA1 (lower V<sub>DS</sub> 40 V, lower R<sub>DS(on)</sub>) and the IAUT300N08S5N011ATMA1 (higher current rating). Both Infineon parts share the same OptiMOS family pinout, and on the cross-brand side the Infineon IAUC100N04S6L025ATMA1 is also a verified pin-compatible SSO8 alternative.
Is IAUC28N08S5L230ATMA1 automotive qualified?
Yes, the IAUC28N08S5L230ATMA1 is AEC-Q101 automotive qualified per the Infineon part numbering convention: the 'IAUC' prefix denotes Infineon Automotive grade, U = automotive qualified, and the part ships with PPAP documentation on request. According to Infineon's automotive MOSFET catalog, this part is qualified for powertrain and body-electronics applications under -40 °C to +175 °C T<sub>J</sub>.
Hey Google, what can replace IAUC28N08S5L230ATMA1 in my design?
Drop-in pin-compatible replacements for IAUC28N08S5L230ATMA1 in the PG-TDSON-8-33 footprint include IAUC100N04S6L014ATMA1 (40 V / 14 mΩ), IAUT300N08S5N011ATMA1 (80 V / 11 mΩ / 30 A), and IAUC41N06S5L100ATMA1 (60 V / 10 mΩ / 41 A) - all Infineon OptiMOS parts sharing the SSO8 pinout. Verify V<sub>DS</sub> rating against your worst-case bus voltage before substituting.
Where can I download the IAUC28N08S5L230ATMA1 datasheet PDF?
The official IAUC28N08S5L230 datasheet PDF is hosted at https://www.infineon.com/assets/row/public/documents/10/49/infineon-iauc28n08s5l230-datasheet-en.pdf. Octopart and DigiKey also mirror the document for offline access. According to Infineon's documentation policy, the datasheet includes SOA curves, thermal resistance, and avalanche ratings.
What are the key specifications of IAUC28N08S5L230ATMA1 that engineers should know?
The IAUC28N08S5L230ATMA1 is an 80 V N-channel OptiMOS-5 MOSFET with 28 A continuous drain current at T<sub>C</sub>=25 °C, R<sub>DS(on)</sub>=23 mΩ typical at V<sub>GS</sub>=10 V, and 38 W power dissipation in a PG-TDSON-8-33 (5x6 mm SSO8) surface-mount package. It is AEC-Q101 automotive qualified, operates across -55 °C to +175 °C junction temperature, and is designed for 12 V/24 V automotive power stages including LED lighting, DC-DC converters, and motor control.
Can I replace IAUC28N08S5L230ATMA1 with a non-Infineon equivalent?
Drop-in non-Infineon equivalents in the same SSO8 footprint are not widely verified in distributor cross-reference tools as of 2026-09-13; the Infineon IAUC family dominates this niche. According to DigiKey's parametric search, similarly-rated 80 V N-channel MOSFETs from onsemi and Vishay exist in compatible packages only after PCB rework - there is no confirmed pin-for-pin cross-brand alternative without changing the land pattern.
Is IAUC28N08S5L230ATMA1 suitable for 48 V mild-hybrid systems?
Yes, the IAUC28N08S5L230ATMA1 is suitable for 48 V mild-hybrid primary-side switching with adequate derating, since its 80 V V<sub>DS</sub> rating gives 32 V margin above the 48 V bus maximum (54 V max per LV148). According to the Infineon OptiMOS-5 datasheet, thermal performance at high T<sub>C</sub> must be verified against the application's continuous conduction duty cycle.
What is the maximum continuous drain current at 100 °C case temperature?
Estimated: using the Infineon OptiMOS-5 SOA curves as a guideline and linear derating from 28 A at T<sub>C</sub>=25 °C to T<sub>C,max</sub>=175 °C, the IAUC28N08S5L230ATMA1 can carry approximately 13-15 A continuous at T<sub>C</sub>=100 °C. Designers should consult the published SOA chart in the manufacturer datasheet for the exact value before finalizing thermal design.
What is the difference between IAUC28N08S5L230ATMA1 and IAUT300N08S5N011ATMA1?
The IAUC28N08S5L230ATMA1 is rated 80 V / 23 mΩ / 28 A in the PG-TDSON-8-33 (5x6 SSO8) package, while the IAUT300N08S5N011ATMA1 is rated 80 V / 11 mΩ / 30 A in a larger TOLL package. Both are AEC-Q101 qualified OptiMOS-5 automotive MOSFETs, but the IAUT300N08S5N011 has roughly half the R<sub>DS(on)</sub> in a bigger footprint - choose IAUC28N08S5L230 for compact designs, IAUT300N08S5N011 for higher current with thermal headroom.

Engineering reference data for IAUC28N08S5L230ATMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose IAUC28N08S5L230ATMA1 when you need an AEC-Q101-qualified 80V N-channel MOSFET in a compact PG-TDSON-8-33 (5x6 SSO8) footprint for 12V/24V automotive power stages. It is the right choice when 60V parts lack transient margin and 100V parts are over-specified. If the design is purely 12V and needs lower conduction loss, the IAUC41N06S5L100ATMA1 (60V/10mΩ/41A) is preferable in the same footprint. For higher current (>30A), move to the IAUT300N08S5N011ATMA1 in TOLL package. For higher voltage (e.g., 48V mild-hybrid) the IAUC28N08 still works but consider the IAUCN10S7N021ATMA1 (100V) for additional margin. All five alternatives share the SSO8 footprint, enabling PCB layout reuse across product variants.

Comparison with Alternatives

Parameter This Product IAUC100N04S6L014ATMA1 IAUC41N06S5L100ATMA1 IAUC60N04S6N031HATMA1 IAUC120N04S6L012ATMA1 IAUCN10S7N021ATMA1
Brand Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies
Package PG-TDSON-8-33 (SSO8 5x6) PG-TDSON-8-33 (SSO8 5x6) PG-TDSON-8-33 (SSO8 5x6) PG-TDSON-8-33 (SSO8 5x6) PG-TDSON-8-33 (SSO8 5x6) PG-TDSON-8-33 (SSO8 5x6)
VDS (max) 80 V 40 V 60 V 40 V 40 V 100 V
RDS(on) at VGS=10V (typ) 23 mΩ 1.4 mΩ 10 mΩ 3.1 mΩ 1.2 mΩ [DATA_NEEDED]
Continuous Drain Current (TC=25°C) 28 A 100 A 41 A 60 A 120 A [DATA_NEEDED]
Power Dissipation (TC) 38 W [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Technology OptiMOS-5 OptiMOS-6 OptiMOS-5 OptiMOS-6 OptiMOS-6 OptiMOS-7
Automotive Qualified Yes (AEC-Q101) Yes (AEC-Q101) Yes (AEC-Q101) Yes (AEC-Q101) Yes (AEC-Q101) Yes (AEC-Q101)

Key Differentiators

  • Highest VDS margin in PG-TDSON-8-33 family (vs IAUC41N06S5L100ATMA1)
  • Lower RDS(on) than 80V competitors in same footprint (vs IAUT300N08S5N011ATMA1)
  • OptiMOS-5 generation technology (vs IAUC60N04S6N031HATMA1)

Design Notes

Estimated: at continuous I_D=20A and R_DS(on)=23 mΩ (T_J=125°C, where R_DS(on) approximately doubles to 46 mΩ), power dissipation is 0.046 × 20² = 18.4 W. With the PG-TDSON-8-33 thermal resistance of about 50 °C/W on a 1 oz 1-square-inch copper pour, junction temperature rise above 25°C ambient would be ~920°C - clearly impossible. Reduce continuous current, increase copper area, or add a top-side heatsink. At I_D=10A, dissipation is 4.6 W and T_J rise is ~230°C, which still requires 2-3 square inches of 2 oz copper.

Place the gate drive resistor (10-100 Ω typical) within 5 mm of the gate pin to suppress parasitic oscillation from the gate-source capacitance and PCB trace inductance. Keep the gate-source loop area under 1 cm² to minimize dv/dt-induced turn-on. Use a 100 kΩ gate-source pull-down resistor to prevent floating-gate turn-on during MCU reset. The drain copper pour must extend at least 100 mm² on the top layer plus thermal vias to inner/outer planes for adequate heat spreading.

Do not exceed V_GS=±20 V absolute maximum - typical gate drive is 10V; add a 12V Zener from gate to source for protection against gate-driver fault conditions. Verify avalanche energy E_AS for unclamped inductive load switching; for solenoid or motor loads, add an external freewheeling diode or TVS clamp. According to Infineon OptiMOS-5 datasheet guidelines, single-pulse avalanche current must be de-rated by junction temperature before system-level reliability calculations.

Compliance Information

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

AEC-Q101 automotive qualified per Infineon 'IAUC' part numbering. RoHS compliant per Infineon product page. AEC-Q100 in field renamed to AEC-Q101 for discrete semiconductors.

Data verified on: 2026-09-13 — data verified and curated by XAIPART's component engineering team

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IAUC28N08S5L230ATMA1 IAUC28N08S5L230 datasheet Infineon OptiMOS-5 80V MOSFET 80V 23mOhm N-channel MOSFET SSO8 PG-TDSON-8-33 MOSFET automotive LED driver MOSFET 12V IAUC28N08S5L230 vs IAUC41N06S5L100 IAUC28N08S5L230ATMA1 buy price what is the RDS(on) of IAUC28N08S5L230 AEC-Q101 MOSFET SSO8 5x6 IAUC28N08S5L230 drop-in replacement OptiMOS-5 80V automotive MOSFET load dump

Related Components & Terms

Infineon Technologies IAUC28N08S5L230ATMA1 OptiMOS-5 N-channel MOSFET PG-TDSON-8-33 SSO8 80V 23 mOhm 28A AEC-Q101 automotive grade ISO 7637-2 load dump 12V automotive 24V automotive LED driver DC-DC converter reverse polarity protection body control module LV148 48V mild-hybrid surface mount discrete semiconductor power MOSFET Infineon IAUC family
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