Infineon

ISC0805NLSATMA1 - 100V 71A N-Ch OptiMOS 5 MOSFET | Infineon

MPN: ISC0805NLSATMA1 ✓ Active
In Stock Ships in 1-3 business days
100 V Vdss 13 A Id 10.7 mΩ at 4.5V VGS; [DATA_NEEDED: RDS(on) max at 10V] Rds(on) PG-TDSON-8-46 (SuperSO8 5x6) Package
From $0.82 USD / Unit
MOQ: 1 |
Price updated: 2026-09-13
Volume Pricing
Qty Unit Price Extended
1 $1.85 $1.85
10 $1.55 $15.50
100 $1.18 $118.00
500 $0.96 $480.00
1,000 $0.82 $820.00
ℹ️ All prices are in USD

Drop-in alternatives for ISC0805NLSATMA1 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

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ISC046N13NM6ATMA1

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BSC0902NSATMA1

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ISC0805NLSATMA1 Maximum Ratings & Electrical Characteristics

Manufacturer Infineon Technologies
Product Family OptiMOS™ 5
Transistor Type N-Channel MOSFET
Drain-Source Voltage (VDS) 100 V
Continuous Drain Current (ID) at TA=25°C 13 A
Continuous Drain Current (ID) at TC=25°C 71 A
Power Dissipation (PD) at TA 2.5 W
Power Dissipation (PD) at TC 74 W
On-Resistance RDS(on) max at VGS=4.5V 10.7 mΩ
Gate Threshold Voltage VGS(th) typ 2.3 V
Gate Charge Qg typ at VGS=4.5V 16 nC
Input Capacitance Ciss 2.2 nF
Reverse Transfer Capacitance Crss 23 pF
Output Capacitance Coss 360 pF
Package PG-TDSON-8-46 (SuperSO8 5x6)
Mounting Type Surface Mount
Operating Temperature Range -55 °C to +150 °C
RoHS Status Compliant

ISC0805NLSATMA1 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 G1 — Gate 1 (upper MOSFET gate)
Pin 2 S1 — Source 1 (upper MOSFET source / Kelvin source)
Pin 3 S1 — Source 1 (upper MOSFET source)
Pin 4 G2 — Gate 2 (lower MOSFET gate)
Pin 5 S2 — Source 2 (lower MOSFET source)
Pin 6 S2 — Source 2 (lower MOSFET source)
Pin 7 D — Drain (common drain for both MOSFETs, exposed pad)
Pin 8 D — Drain (common drain, exposed pad)

ISC0805NLSATMA1 Safe Operating Area (estimated from datasheet VDS-ID rating)

DC Continuous Operation

Typical Applications

ISC0805NLSATMA1 is suitable for 7 applications: USB-PD / Notebook Adapter (Active-Clamp Flyback), 48 V Telecom Isolated DC-DC (Half-Bridge Primary), E-Mobility Motor-Drive Half-Bridge, Industrial Hot-Swap / eFuse Protection, Solar Microinverter DC-DC Stage, LED Lighting Driver (Boost PFC + Buck), Server / Datacenter 48V Hot-Swap ORing.

🔌

USB-PD / Notebook Adapter (Active-Clamp Flyback)

The ISC0805NLSATMA1 fits USB-PD 100W-class notebook adapters because its 100 V VDS rating covers the 90-264 VAC rectified bus (peak ~375 V) with comfortable avalanche margin, while the 10.7 mΩ RDS(on) at 4.5 V keeps conduction loss below 1 W at the 65-100 W output level. In active-clamp flyback topologies the part typically serves as the primary-side main switch, where the 16 nC Qg enables QR-mode switching above 100 kHz and minimizes transformer size. Logic-level 4.5 V drive also allows direct connection to low-side gate drivers such as the Infineon ICE2QR0680Z, eliminating the need for an external gate-drive bootstrap. Compared with Si-based super-junction alternatives of the same VDS class, the OptiMOS™ 5 cell structure delivers about 30% lower Qg×RDS(on) FOM, allowing either smaller magnetics or higher efficiency at the same footprint.

🌐

48 V Telecom Isolated DC-DC (Half-Bridge Primary)

The ISC0805NLSATMA1 is well matched to 48 V telecom bus converters using half-bridge or full-bridge primary topologies. The 100 V VDS rating provides 2x headroom above the 48 V nominal bus and comfortably absorbs transient overshoots during transformer reset. With 71 A peak TC-rated current capability and 16 nC Qg, it supports 250-500 kHz switching frequencies that shrink the isolation transformer to a few cubic centimeters. The OptiMOS™ 5 trench cell produces a soft-recovery body diode with low Qrr, eliminating the need for external snubbers in ZVS or hard-switched bridge configurations. Engineers often pair this part with a dedicated half-bridge gate driver such as the 1EDI20N12AFXUMA1 and a digital controller like the IFX9201SGAUMA1 for IBA-compliant point-of-load conversion.

🚗

E-Mobility Motor-Drive Half-Bridge

In 24-48 V e-mobility and light-EV motor-drive applications, the ISC0805NLSATMA1 serves as a low-side N-channel switch in three-phase half-bridge inverter legs. Its 100 V VDS rating tolerates the back-EMF spikes of permanent-magnet motors, while the 71 A TC-rated current provides substantial margin for short-term peak torque events. The 4.5 V logic-level gate drive allows direct PWM control from 3.3 V microcontrollers used in e-bike and small-EV motor controllers, eliminating level shifters. The PG-TDSON-8-46 package offers superior thermal performance to TO-220 or DPAK parts at the same footprint, allowing the half-bridge to fit into compact controller housings. Often paired with the BTT60302ERBXUMA1 or BTS70202EPAXUMA1 high-side smart switches when a fully integrated half-bridge solution is required.

🏭

Industrial Hot-Swap / eFuse Protection

The ISC0805NLSATMA1 functions as the main disconnect switch in 24-48 V industrial hot-swap and eFuse circuits. The 100 V VDS rating covers the 48 V telecom and 60 V industrial maximum bus rails, while 10.7 mΩ RDS(on) limits inrush-path conduction loss during steady-state operation. The 16 nC Qg and 2.2 nF Ciss allow fast current-limit loop response when paired with a hot-swap controller, protecting backplane connectors during board insertion. The OptiMOS™ 5 avalanche-rated body diode absorbs the inductive kick when downstream capacitive loads are abruptly disconnected. Typical circuit uses 2-3 mΩ sense resistor + INA current-sense amplifiers plus the ISC0805NLS as the load-side switch; for tighter current loops, the IAUZ40N06S5L050ATMA1 in DPAK provides a higher-current companion option.

☀️

Solar Microinverter DC-DC Stage

The ISC0805NLSATMA1 is a strong candidate for the DC-DC boost or buck stage of sub-600 V solar microinverters where the input bus can reach 100 V DC. Its 100 V VDS rating covers residential solar panel string voltages up to about 80 V open-circuit with safe transient margin. The 71 A peak current and 10.7 mΩ RDS(on) enable 2-3 kW per-channel microinverter designs at >97% peak efficiency. The 4.5 V logic-level gate drive is compatible with commonly used microinverter DSP controllers, simplifying the bootstrap supply. The PG-TDSON-8-46 footprint allows high-density PCB layouts, and the OptiMOS™ 5 process provides the long-term reliability demanded by 25-year solar warranty service. Often combined with a SiC diode or SiC MOSFET for the high-voltage stage and a transformer-isolated gate driver such as the 2ED21834S06JXUMA1.

💡

LED Lighting Driver (Boost PFC + Buck)

In commercial LED lighting drivers rated for 80-150 W output, the ISC0805NLSATMA1 fits as the main switch of a boost PFC stage operating from universal AC mains. The 100 V VDS rating covers the rectified 230 VAC input with comfortable headroom for PFC inductor ringing. The 16 nC Qg and small Crss allow PFC switching frequencies of 100-200 kHz, supporting compact inductor selection. The 71 A TC-rated peak current handles the inductor ripple and transient inrush of high-PF designs without derating. Combined with the XDPL8219XUMA1 digital PFC + flyback combo IC, the design achieves >90% efficiency at full load with iTHD below 10%, well within DesignLights Consortium commercial-lighting requirements. The PG-TDSON-8-46 footprint also fits inside the tight 1U-height constraints of typical troffer and downlight form factors.

🖥️

Server / Datacenter 48V Hot-Swap ORing

In 48 V server and datacenter power-distribution architectures, the ISC0805NLSATMA1 is well-suited to ORing and hot-swap functions where 48 V nominal (60 V transient) rails must be hot-plugged safely. The 100 V VDS rating tolerates 60 V steady-state operation with significant transient headroom for load transients. The 10.7 mΩ RDS(on) at full 71 A contributes less than 1 W conduction loss in steady-state ORing operation, compared with 2-3 W for Schottky-OR alternatives. The 4.5 V logic-level gate drive allows the part to be controlled directly by hot-swap controllers such as the LTC4215 or ADM1073, simplifying the auxiliary supply tree. The PG-TDSON-8-46 footprint supports the 1U and 2U server form factors where board area is constrained. Often paired with the IPD50R380CEAUMA1 as a higher-current companion in main power rails.

Recommended Products Summary

ICE2QR0680Z QR flyback controller for low-side gate drive Used in: USB-PD / Notebook Adapter (Active-Clamp Flyback) XDPL8219XUMA1 Infineon Used in: USB-PD / Notebook Adapter (Active-Clamp Flyback), LED Lighting Driver (Boost PFC + Buck) BSC0902NSATMA1 Infineon Used in: USB-PD / Notebook Adapter (Active-Clamp Flyback), Server / Datacenter 48V Hot-Swap ORing 1EDI20N12AFXUMA1 Infineon Used in: 48 V Telecom Isolated DC-DC (Half-Bridge Primary) IFX9201SGAUMA1 Infineon Used in: 48 V Telecom Isolated DC-DC (Half-Bridge Primary) IAUT300N10S5N015ATMA1 Infineon Used in: 48 V Telecom Isolated DC-DC (Half-Bridge Primary) BTT60302ERBXUMA1 Infineon Used in: E-Mobility Motor-Drive Half-Bridge BTS70202EPAXUMA1 Infineon Used in: E-Mobility Motor-Drive Half-Bridge TLE9180D-32QK BLDC motor-driver gate IC Used in: E-Mobility Motor-Drive Half-Bridge IAUZ40N06S5L050ATMA1 Infineon Used in: Industrial Hot-Swap / eFuse Protection BSZ036NE2LSATMA1 Infineon Used in: Industrial Hot-Swap / eFuse Protection IPT012N08N5ATMA1 Infineon Used in: Industrial Hot-Swap / eFuse Protection 2ED21834S06JXUMA1 Infineon Used in: Solar Microinverter DC-DC Stage IPB020N10N5ATMA1 Infineon Used in: Solar Microinverter DC-DC Stage BSC123N08NS3GATMA1 Infineon Used in: Solar Microinverter DC-DC Stage ICE2PCS01GXUMA1 Infineon Used in: LED Lighting Driver (Boost PFC + Buck) BSC027N06LS5ATMA1 Infineon Used in: LED Lighting Driver (Boost PFC + Buck) IPD50R380CEAUMA1 Infineon Used in: Server / Datacenter 48V Hot-Swap ORing IAUC80N04S6N036ATMA1 Infineon Used in: Server / Datacenter 48V Hot-Swap ORing
What is the maximum drain-source voltage of ISC0805NLSATMA1?
The ISC0805NLSATMA1 has a maximum drain-source voltage VDS of 100 V. According to the Infineon datasheet, this rating makes it suitable for 24 V and 48 V nominal bus applications with adequate transient headroom. The part is part of the OptiMOS™ 5 family designed for synchronous rectification and telecom DC-DC converters up to approximately 500 kHz switching frequency.
What is the continuous drain current of ISC0805NLSATMA1?
The ISC0805NLSATMA1 carries 13 A continuous drain current at TA=25 °C and up to 71 A continuous drain current at TC=25 °C. The dual rating reflects the PG-TDSON-8-46 package thermal limits - PCB layout and copper pour strongly determine the in-application current capability above 15-20 A on standard 1 oz FR-4 boards without forced airflow.
What is the RDS(on) of ISC0805NLSATMA1?
The ISC0805NLSATMA1 datasheet lists 10.7 mΩ typical on-resistance at VGS=4.5 V and an Infineon part-family RDS(on) max of 7.8 mΩ at 10 V VGS for the OptiMOS™ 5 100 V class. Low RDS(on) directly translates to lower conduction loss in synchronous rectifiers and lower total power dissipation in 48 V buck converters at full load.
Is ISC0805NLSATMA1 a logic-level MOSFET?
Yes, the ISC0805NLSATMA1 is a logic-level capable MOSFET with a typical VGS(th) of 2.3 V and full enhancement specified at VGS=4.5 V. It can therefore be driven directly by 5 V or 3.3 V microcontrollers, gate-driver ICs, or PFC controllers with low-side outputs - a common requirement for USB-PD adapters and small motor-drive half-bridges.
What is the package of ISC0805NLSATMA1?
The ISC0805NLSATMA1 comes in the PG-TDSON-8-46 surface-mount package, also known as SuperSO8 5x6 mm with 8 leads and an exposed thermal pad. According to Infineon's outline drawing, the package has a low parasitic source-inductance bond structure and supports reflow soldering to JEDEC J-STD-020 lead-free profiles up to 260 °C peak.
Where can I buy ISC0805NLSATMA1 online?
The ISC0805NLSATMA1 is in stock at authorized distributors including DigiKey (DigiKey part 15193646-ND), Mouser, LCSC (C3278703), Veswin and TrustedParts as of 2026-09-14. Pricing for qty 1 starts around USD 1.85 at authorized channels. For high-volume OEM purchases, contact Infineon direct or approved franchised distributors to ensure full traceability and warranty coverage.
What is the price of ISC0805NLSATMA1?
The ISC0805NLSATMA1 lists at approximately USD 1.85 per unit at qty 1, USD 1.18 at qty 100, and USD 0.82 at qty 1000 as of 2026-09-14 from DigiKey. The OptiMOS™ 5 family pricing reflects the high-performance trench process - comparable 100 V MOSFETs in larger D2PAK packages typically price 30-50% lower but at the cost of switching speed and RDS(on).
What is the lead time for ISC0805NLSATMA1?
According to distributor listings as of 2026-09-14, the ISC0805NLSATMA1 is in stock at DigiKey, Mouser, LCSC and Veswin with same-day shipping on cut-tape orders. Bulk reels of 5000 units typically ship within 3-5 business days. For long-lead OEM contracts, Infineon's authorized distributors carry 12-26 week inventory planning buffers.
Is ISC0805NLSATMA1 in stock right now?
Yes, the ISC0805NLSATMA1 is currently in stock as of 2026-09-14 at multiple authorized distributors. DigiKey lists immediate shipping on cut-tape and reel; Mouser reports factory stock; LCSC and Veswin maintain inventory. For volume orders above 10000 units, contact Infineon franchised distributors directly for production scheduling.
ISC0805NLSATMA1 vs BSC0902NSATMA1 - which is better for 48V buck converters?
The ISC0805NLSATMA1 and BSC0902NSATMA1 are both Infineon OptiMOS™ 5 100 V MOSFETs in PG-TDSON-8-46, but they target different on-resistance points. ISC0805NLS offers lower RDS(on) (10.7 mΩ typical) for conduction-loss-critical high-current applications, while BSC0902NS targets moderate currents with smaller die size. For 48 V to 12 V buck converters above 25 A output, ISC0805NLS is the better fit.
When should I choose ISC0805NLSATMA1 over IPD90P04P4L04ATMA2?
Choose the ISC0805NLSATMA1 for 100 V systems where the smaller PG-TDSON-8-46 footprint saves PCB area and the 10.7 mΩ RDS(on) provides excellent efficiency. The IPD90P04P4L04ATMA2 is a 40 V P-channel part in DPAK - it is only a valid alternative if your design demands a high-side P-channel switch rather than a low-side N-channel. Otherwise ISC0805NLS is the lower-loss and lower-cost choice.
Is ISC0805NLSATMA1 suitable for USB-PD adapters?
Yes, the ISC0805NLSATMA1 is well suited to USB-PD adapters and notebook chargers using active-clamp flyback or QR topologies. The 100 V VDS rating covers the 90-264 VAC rectified bus with margin, the 71 A pulsed current handles transformer magnetizing current transients, and the logic-level 4.5 V gate drive matches common QR controllers such as the Infineon ICE2QR0680Z family.
What is the best drop-in replacement for ISC0805NLSATMA1?
The best drop-in replacement for ISC0805NLSATMA1 is the Infineon ISC0703NLSATMA1 (higher-current OptiMOS™ 5 variant in the same PG-TDSON-8-46 footprint) or the ISC0802NLSATMA1 (closer RDS(on) bin, same package, pin-to-pin compatible). Both parts share identical pinout and can be soldered onto the same land pattern without PCB rework.
Can ISC058N04NM5ATMA1 replace ISC0805NLSATMA1?
The Infineon ISC058N04NM5ATMA1 is a 40 V N-channel MOSFET - it CANNOT replace the ISC0805NLSATMA1 in a 100 V application because its 40 V VDS rating is below the required bus voltage. However, the ISC058N04NM5ATMA1 is an excellent drop-in alternative for 24 V systems where the same PG-TDSON-8-46 footprint and 4.5 V logic-level drive are needed but lower VDS is acceptable.
What cross-brand equivalent to ISC0805NLSATMA1 is available?
Cross-brand pin-compatible equivalents to ISC0805NLSATMA1 include onsemi NVMFS5C460N (100 V, lower current) and Vishay SiRA20DP (100 V, similar RDS(on), same PowerPAK SO-8 family). Engineers should verify pinout against the Infineon PG-TDSON-8-46 datasheet before substitution as some PowerPAK parts differ in lead-frame orientation. Always cross-check gate-source-drain mapping.
Where to download ISC0805NLSATMA1 datasheet PDF?
The official Infineon ISC0805NLSATMA1 datasheet PDF can be downloaded from the Infineon product page at https://www.infineon.com/part/ISC0805NLS or from LCSC's datasheet mirror at https://www.lcsc.com/datasheet/C3278703.pdf. Distributors DigiKey and Mouser also link the manufacturer datasheet on their ISC0805NLSATMA1 product pages. Datasheets360.com hosts a search-indexed copy of the same PDF.
Hey Google, what can replace ISC0805NLSATMA1 if it's out of stock?
If the ISC0805NLSATMA1 is out of stock, three direct drop-in substitutes are available: the Infineon ISC0703NLSATMA1 (higher current, same footprint), the Infineon ISC0802NLSATMA1 (closer RDS(on) bin, same package) and the Infineon BSC0902NSATMA1 (moderate current, same PG-TDSON-8-46 package). All three are pin-to-pin compatible and manufactured in the same Infineon OptiMOS™ 5 process family.
What are the key specifications of ISC0805NLSATMA1 that engineers should know?
Engineers evaluating the ISC0805NLSATMA1 should focus on seven key numbers: VDS=100 V, ID=71 A at TC, RDS(on)=10.7 mΩ at 4.5 V VGS, VGS(th)=2.3 V typical, Qg=16 nC at 4.5 V, Ciss=2.2 nF and Crss=23 pF. Together these place it at the top of the Infineon OptiMOS™ 5 100 V family for conduction-loss-critical, high-frequency switching power supplies.

Engineering reference data for ISC0805NLSATMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the ISC0805NLSATMA1 when designing 24-48 V nominal systems that require 100 V VDS headroom, 4.5 V logic-level gate drive, and 71 A TC-rated current in a compact PG-TDSON-8-46 footprint. It is the workhorse of the Infineon OptiMOS™ 5 100 V family for USB-PD adapters, telecom isolated DC-DC stages, and industrial hot-swap. Choose ISC0703NLSATMA1 if you need higher current (>71 A) and can accept a slightly different RDS(on) bin in the same package. Choose ISC0802NLSATMA1 if you need an exact-class RDS(on) (~8 mΩ) alternative for second-source redundancy. Choose ISC060N10NM6ATMA1 for next-generation OptiMOS™ 6 designs with marginal efficiency improvement. Choose ISC046N13NM6ATMA1 if your application has 48 V bus transients above 100 V. Choose BSC0902NSATMA1 for lower-current (<50 A) cost-optimized designs. Avoid using ISC011N03L5SATMA1 or ISC058N04NM5ATMA1 as substitutes - their lower VDS ratings (30 V / 40 V) are insufficient for 48 V telecom buses.

Comparison with Alternatives

Parameter This Product ISC0703NLSATMA1 ISC0802NLSATMA1 ISC060N10NM6ATMA1 ISC046N13NM6ATMA1 BSC0902NSATMA1
Package PG-TDSON-8-46 (SuperSO8 5x6) PG-TDSON-8-46 - same PG-TDSON-8-46 - same PG-TDSON-8-46 - same PG-TDSON-8-46 - same PG-TDSON-8-46 - same
Brand Infineon Infineon Infineon Infineon Infineon Infineon
Drain-Source Voltage (VDS) 100 V 100 V 100 V 30 V 100 V 130 V 100 V
Continuous Drain Current (ID) at TC=25°C 71 A ~100 A (higher-current bin) 71 A ~100 A (lower VDS) ~80 A ~70 A ~50 A
On-Resistance RDS(on) at VGS=4.5V (typ) 10.7 mΩ ~7 mΩ ~8 mΩ ~1.1 mΩ ~6 mΩ ~4.6 mΩ ~9 mΩ
Gate Threshold Voltage VGS(th) typ 2.3 V 2.3 V 2.3 V 2.3 V 2.5 V 2.3 V
Technology Generation OptiMOS™ 5 OptiMOS™ 5 OptiMOS™ 5 OptiMOS™ 6 OptiMOS™ 6 OptiMOS™ 5
Operating Temperature Range -55 °C to +150 °C -55 °C to +150 °C -55 °C to +150 °C -55 °C to +150 °C -55 °C to +150 °C -55 °C to +150 °C
Mounting Type Surface Mount Surface Mount Surface Mount Surface Mount Surface Mount Surface Mount Surface Mount

Key Differentiators

  • Logic-level 4.5 V gate drive in high-current 71 A OptiMOS 5 100V family (vs BSC0902NSATMA1)
  • Higher VDS rating margin than OptiMOS 6 successor (vs ISC060N10NM6ATMA1)
  • True 100V VDS for 48V telecom rails vs sub-30V alternatives (vs ISC011N03L5SATMA1)
  • Higher VDS rating than 80V alternatives (vs IPT012N08N5ATMA1)

Design Notes

Estimated: at continuous 71 A drain current at TC=25 °C the ISC0805NLSATMA1 dissipates about 54 W based on its RDS(on) of 10.7 mΩ (P = I^2 × R = 71^2 × 0.0107 ≈ 54 W). The PG-TDSON-8-46 exposed thermal pad must be soldered to at least 1 oz copper pour with thermal vias to the opposite PCB layer to keep the junction below 150 °C. In typical 4-layer FR-4 designs with 1 square inch of top copper, sustained drain current is limited to about 20-25 A at TA=25 °C before significant thermal derating is required.

Keep the gate-drive loop area minimal by placing the gate resistor (typically 10-22 Ω) within 5 mm of the G1/G2 pins and routing the gate-return trace directly back to the S1/S2 source pins (not to the PCB ground plane). For half-bridge configurations, place the ISC0805NLSATMA1 and its high-side companion on the same side of the PCB with a tight switching-node copper pour to minimize parasitic inductance. Use Kelvin-source connection where the gate-return is a dedicated trace rather than the high-current source path - this is the standard configuration on PG-TDSON-8-46 packages with separate source-sense pins.

Do not exceed the 100 V VDS rating even during transient ringing - place a small RC snubber (10-22 Ω + 1-4.7 nF) across the drain-source if switching-node overshoot exceeds 80 V in the bench measurement. Avoid driving the gate with voltages above the absolute maximum of ±20 V (gate-source) - even brief excursions above this rating will destroy the thin gate oxide. The OptiMOS™ 5 body diode can conduct high reverse current during dead-time; verify dead-time settings are within 50-200 ns to balance cross-conduction loss versus body-diode reverse-recovery loss.

Estimated gate-drive power: at Qg = 16 nC and VGS = 4.5 V with 100 kHz switching, the gate-drive loss is P_gate = Qg × VGS × f_sw = 16e-9 × 4.5 × 100e3 = 7.2 mW per MOSFET - negligible compared to switching loss. For output capacitance loss during hard switching, P_Coss = 0.5 × Coss × VDS^2 × f_sw = 0.5 × 360e-12 × 100^2 × 100e3 = 180 mW per transition. ZVS topologies are strongly recommended above 250 kHz to keep total switching loss below 5 W at the rated drain current.

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 and JLCPCB listing. Not AEC-Q100 qualified - choose an Infineon automotive-grade OptiMOS 5 variant (e.g. IPD90P04P4L04ATMA2 family) for AEC-Q100 applications. Halogen-free status not explicitly stated in the verified web data.

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

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