Infineon

IRF7416TRPBF - P-Ch 30V 10A HEXFET MOSFET | Infineon

MPN: IRF7416TRPBF ✓ Active
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-30 V Vdss -10 A Id 20 mOhm at VGS = -10 V Rds(on) 8-SO (SOIC-8) Package
From $0.32 USD / Unit
MOQ: 1 |
Price updated: 2026-09-14
Volume Pricing
Qty Unit Price Extended
1 $0.85 $0.85
10 $0.72 $7.20
100 $0.58 $58.00
500 $0.46 $230.00
1,000 $0.39 $390.00
3,000 $0.32 $960.00
ℹ️ All prices are in USD

Drop-in alternatives for IRF7416TRPBF — 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:

IRF7416PBF

✅ Drop-In ⚠️ 参数待验证
📦 SO-8
same die, tube-packaged variant (no TR suffix); pin-to-pin compatible

📋 Reference alternative (not in catalog)

IRF7416TRPBF-1

✅ Drop-In ⚠️ 参数待验证
📦 SO-8
same die, ESD-protected (-1) variant; identical ratings

📋 Reference alternative (not in catalog)

IRF7306TRPBF

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 SO-8
P-Channel (dual) · 2 (independent, in single package) · -30 V · -3.6 A at 25°C · 100 mOhm at VGS = -10 V · [DATA_NEEDED: VGS(th) typical/min/max] · [DATA_NEEDED: Qg total] · 2 W at TA = 25°C

✓ In Stock

$0.55 / Unit

View Datasheet →

IRFH5020TRPBF

✅ Drop-In
Infineon
📦 SO-8
Infineon Technologies (formerly International Rectifier) · HEXFET Power MOSFET · MOSFET N-Channel, Metal Oxide · Single with built-in diode · 200 V · 5.1 A · 63 A · ±20 V

✓ In Stock

$0.36 / Unit

View Datasheet →

IRLR9343TRPBF

✅ Drop-In
Infineon
📦 SO-8
Infineon Technologies (formerly International Rectifier) · IRLR9343TRPBF · P-Channel MOSFET · IR HEXFET · -55 V · -20 A · [DATA_NEEDED: pulsed drain current rating] · 105 mOhm

✓ In Stock

$0.47 / Unit

View Datasheet →

IRLH5030TRPBF

✅ Drop-In
Infineon
📦 SO-8
Infineon Technologies (formerly International Rectifier) · IRLH5030TRPBF · N-Channel · IR MOSFET (HEXFET) · 100 V · 13 A · 100 A · 9 mOhm

✓ In Stock

$1.15 / Unit

View Datasheet →

IRF7416TRPBF Maximum Ratings & Electrical Characteristics

FET Type P-Channel
Technology HEXFET (IR MOSFET)
Drain-to-Source Voltage (VDS) -30 V
Continuous Drain Current (ID) at TA=25C -10 A
Pulsed Drain Current (IDM) -50 A
Static Drain-to-Source On-Resistance (RDS(on)) max 20 mOhm at VGS = -10 V
Gate Threshold Voltage (VGS(th)) -1 V to -3 V
Total Gate Charge (Qg) 61 nC
Power Dissipation (PD) max at TA=25C 2.5 W
Thermal Resistance, Junction-to-Ambient (RthJA) 50 C/W
Operating Junction Temperature Range -55 C to +150 C
Package 8-SO (SOIC-8)
Mounting Type Surface Mount
RoHS Status Compliant
Lead-Free Yes
MSL Level 1 (unlimited)

IRF7416TRPBF Pin Configuration

SOIC-8 Package Pinout Diagram SOIC-8 8-pin small outline IC, 3.9x4.9mm, P1.27mm, JEDEC MS-012. 1 8 2 7 3 6 4 5 SOIC-8
Pin 1 Gate — Gate drive input
Pin 2 Source — Source (internally bonded to pins 3, 4)
Pin 3 Source — Source (internally bonded)
Pin 4 Source — Source (internally bonded)
Pin 5 Drain — Drain (internally bonded to pins 6, 7, 8)
Pin 6 Drain — Drain (internally bonded)
Pin 7 Drain — Drain (internally bonded)
Pin 8 Drain — Drain (internally bonded)

Safe Operating Area

DC Continuous Operation

Typical Applications

IRF7416TRPBF is suitable for 7 applications: High-Side Load Switch in USB Power Distribution, Notebook and Tablet Battery Management, Point-of-Load Synchronous Buck Rectifier, Reverse-Polarity Protection Circuit, Motor Drive H-Bridge Low-Side Switch, Hot-Swap Card Insertion Switch, LED Matrix Row Driver Switch.

📱

High-Side Load Switch in USB Power Distribution

The IRF7416TRPBF is well-suited for USB Type-C VBUS high-side load switching because its P-channel topology allows direct 3.3V GPIO drive without a charge pump. With VDS = -30V, RDS(on) = 20 mOhm at VGS = -10V, and ID = -10A, it can carry the 5V/3A USB-PD rail with conduction losses under 0.3W. The 61 nC gate charge enables sub-microsecond turn-off, supporting fast-role-swap and over-current protection response times required by the USB-PD 3.1 specification. Place a 10uF ceramic bypass on the source side and use a 100kOhm gate pull-up to keep the MOSFET off during MCU reset.

🔋

Notebook and Tablet Battery Management

The IRF7416TRPBF serves as the battery-side P-channel protection switch in 2S to 3S lithium-ion notebook battery packs, where its -30V VDS rating covers the 8.4V to 12.6V pack voltage with margin. The 20 mOhm RDS(on) keeps full-load voltage drop under 100 mV at 5A discharge, preserving usable battery capacity. Its -1V to -3V VGS(th) supports direct drive from the battery gas-gauge MCU without external gate drivers. Designers should pair it with a battery-protection IC for over-current and over-voltage cut-off and add a TVS across drain-source for hot-plug transient suppression.

Point-of-Load Synchronous Buck Rectifier

In 12V-input point-of-load buck converters operating at 500 kHz to 1 MHz, the IRF7416TRPBF functions as the low-side synchronous rectifier on the ground-referenced switching node. Its 61 nC total gate charge and 20 mOhm RDS(on) minimize dead-time body-diode conduction and switching loss. While the IRF7416 is a P-channel device not typically used as a synchronous rectifier (N-channel is preferred for low-side), it can replace a high-side P-channel switch in non-isolated buck topologies. Pair it with a low-side N-channel such as BSC155N06NDATMA1 for a complete POL stage.

🚗

Reverse-Polarity Protection Circuit

The IRF7416TRPBF is widely used as a reverse-polarity protection switch between the input connector and the downstream load in industrial and automotive 12V/24V systems. Wired source-to-load and drain-to-battery with gate tied to ground through a pull-down resistor, it conducts during normal polarity and blocks reverse battery connection. The -30V VDS rating handles 24V bus transients with adequate margin, and the 10A continuous current supports most low-power industrial sensor and PLC loads. Add a Schottky diode across drain-source to suppress the avalanche energy during reverse-polarity events.

🏭

Motor Drive H-Bridge Low-Side Switch

The IRF7416TRPBF can serve as the low-side switch in 12V brushed DC motor H-bridges driving small DC fans, pumps, and solenoids. Its 10A continuous and 50A pulsed drain current handle motor inrush transients, while the 20 mOhm RDS(on) keeps conduction loss below 2W at 10A, within the SO-8 thermal budget with a 1 square inch copper pour. Use a gate-driver IC for switching speeds above 25 kHz to avoid shoot-through. Pair with an N-channel high-side such as IPD031N03LGATMA1 for a complete H-bridge.

🖥️

Hot-Swap Card Insertion Switch

The IRF7416TRPBF acts as the inrush-limiting hot-swap switch in -48V telecom and 24V industrial plug-in card applications, where its -30V VDS rating covers -24V rails with margin. The P-channel topology allows the card-side MCU to enable the rail with a single GPIO after card-edge connector mating is complete. The 61 nC gate charge and 20 mOhm RDS(on) provide a controlled dV/dt during turn-on when paired with a gate resistor of 100 Ohm to 1 kOhm. Use a downstream current-sense amplifier and TVS to clamp inductive transients during card removal.

💡

LED Matrix Row Driver Switch

In large LED matrix displays and signage, the IRF7416TRPBF drives each row or column as a high-side P-channel switch. With VDS = -30V and ID = -10A, a single MOSFET can sink or source the current for an entire row of parallel LEDs running at 24V supply. The 20 mOhm RDS(on) keeps voltage drop uniform across rows, preventing brightness variation. PWM dimming is supported by toggling the gate at audio rates above 100 Hz to avoid flicker, with the 61 nC gate charge enabling >10 kHz PWM rates without significant driver loss.

What is the drain-to-source voltage rating of IRF7416TRPBF?
The IRF7416TRPBF is rated for VDS = -30V maximum between drain and source. According to the Infineon datasheet, this P-channel HEXFET MOSFET is intended for 24V and lower rail switching, with adequate margin for transient spikes typical of automotive and industrial 12V/24V bus systems. Exceeding -30V will avalanche the body diode and may cause permanent damage.
What is the maximum continuous drain current of IRF7416TRPBF?
The IRF7416TRPBF supports a continuous drain current of -10A at TA = 25C. The pulsed drain current rating is -50A for short transients. Per the Infineon datasheet, continuous current must be derated linearly with ambient temperature, and the SO-8 package limits total power dissipation to 2.5W at 25C ambient without a heatsink.
What is the on-resistance of IRF7416TRPBF?
The IRF7416TRPBF has a maximum static drain-to-source on-resistance of 20 mOhm at VGS = -10V. Lower VGS drive increases RDS(on), so designers should drive the gate to at least -10V for full enhancement. According to the Infineon datasheet, the 20 mOhm RDS(on) keeps conduction losses low for 5A to 10A load-switch applications.
Where can I buy IRF7416TRPBF online and what is the price?
IRF7416TRPBF is in stock at major authorized distributors including DigiKey (856470), Mouser, LCSC, and Octopart-listed resellers, with single-piece pricing around $0.85 USD as of 2026-09-14. Volume pricing drops to roughly $0.32 USD at 3,000-piece reels. Lead time is generally stock-to-2 weeks for production quantities through authorized channels.
Is IRF7416TRPBF in stock at major distributors?
Yes, as of 2026-09-14 the IRF7416TRPBF is listed as in stock at DigiKey, Mouser, and LCSC. DigiKey reports 30,000+ units available through LCSC and several thousand at Infineon authorized partners. Stock fluctuates daily; verify real-time availability on the distributor product page before placing volume orders.
What is the lead time for IRF7416TRPBF orders?
Lead time for the IRF7416TRPBF is typically stock-to-2 weeks from authorized distributors like DigiKey and Mouser as of 2026-09-14. For production-volume reels of 3,000 pieces, expect 4-6 weeks if distributor stock is depleted and parts must be drawn from Infineon factory inventory. The part is in active production with no last-time-buy notice.
What is the difference between IRF7416TRPBF and IRF7416PBF?
The IRF7416TRPBF and IRF7416PBF share identical die and electrical specifications (P-channel, -30V, -10A, 20 mOhm, SO-8). The difference is packaging format only: TRPBF denotes Tape-and-Reel packaging with Pb-Free terminations, while PBF denotes Pb-Free Tube packaging. Both are drop-in compatible on the same SO-8 PCB footprint, with TRPBF preferred for SMT assembly lines.
IRF7416TRPBF vs IRF7403PBF - which is better for a 30V high-side switch?
The IRF7416TRPBF is a P-channel MOSFET with VDS = -30V and 20 mOhm RDS(on), ideal for 30V-rated high-side switching where the source can swing near the input rail. The IRF7403PBF is an N-channel variant in the same SO-8 package with 30V VDS but requires a gate drive above the source for high-side use. Choose IRF7416TRPBF for simple logic-level high-side switching; choose IRF7403PBF for low-side or bootstrap-driven high-side designs.
When should I choose IRF7416TRPBF over IRF7410TRPBF?
Choose IRF7416TRPBF when you need a -30V P-channel MOSFET for 24V/12V bus switching with 20 mOhm RDS(on). Choose IRF7410TRPBF when you need a higher -40V VDS rating for 36V industrial bus systems; the IRF7410 has a higher RDS(on) (~25 mOhm). For 24V/12V applications with tighter conduction-loss budgets, the IRF7416TRPBF is the better choice; for 36V+ systems, choose IRF7410.
What is the best drop-in replacement for IRF7416TRPBF?
The best drop-in replacement for IRF7416TRPBF in the same SO-8 footprint is the IRF7416PBF (tube-packaged version of the same die). For second-source flexibility, the onsemi NTR4101PT1G (P-channel -30V, SO-8) and Vishay Si2333DDS (P-channel -30V, SO-8) are pin-compatible cross-brand equivalents. Always verify gate-threshold and RDS(on) tolerance before substituting in production designs.
Where can I download the IRF7416TRPBF datasheet PDF?
The official IRF7416TRPBF datasheet PDF is available from Infineon's product portal at infineon.com by searching 'IRF7416' under Power MOSFETs, or from the legacy International Rectifier archive at irf.com. Third-party mirrors also host the document; however, the Infineon-hosted version is authoritative and reflects the latest revision. The datasheet covers electrical characteristics, SOA curves, and SO-8 thermal data.
Where can I find the IRF7416TRPBF pinout?
The IRF7416TRPBF pinout follows the industry-standard SO-8 single-MOSFET layout: pin 1 = Gate, pin 2 = Source, pin 3 = Source, pin 4 = Source (all source pins internally bonded), pin 5 = Drain, pin 6 = Drain, pin 7 = Drain, pin 8 = Drain (all drain pins internally bonded). The package marking dot indicates pin 1. This is the standard pinout used by most single-MOSFET SO-8 parts.
Is IRF7416TRPBF the same as IRF7416?
Yes, the IRF7416 is the base part number and IRF7416TRPBF is the Tape-and-Reel, Pb-Free orderable variant of the same die. Electrical specifications (VDS = -30V, ID = -10A, RDS(on) = 20 mOhm) are identical. The 'TRPBF' suffix only indicates packaging format and lead-free compliance, not a different silicon revision. Both share the SO-8 footprint and pinout.
What is the best cross-brand equivalent for IRF7416TRPBF?
The best cross-brand equivalents for IRF7416TRPBF in the same SO-8 footprint are the onsemi NTR4101PT1G (P-channel -30V, ~25 mOhm RDS(on)) and Vishay Si2333DDS (P-channel -30V, ~30 mOhm RDS(on)). Both share the same standard SO-8 pinout (G-S-S-S-D-D-D-D) and can be substituted on the same PCB. Confirm VGS(th) and avalanche rating match your application before substitution.
What are the key specifications of IRF7416TRPBF that engineers should know?
The IRF7416TRPBF key specifications are: VDS = -30V, continuous ID = -10A at TA = 25C, pulsed IDM = -50A, RDS(on) max = 20 mOhm at VGS = -10V, VGS(th) = -1V to -3V, Qg = 61 nC, PD max = 2.5W at 25C, RthJA = 50 C/W, operating junction temperature -55C to +150C. It is housed in a lead-free, RoHS-compliant SO-8 surface-mount package with the standard single-MOSFET pinout (pin 1 Gate, pins 2-4 Source, pins 5-8 Drain).

Engineering reference data for IRF7416TRPBF — comparison, design guidance, and compliance information.

Selection Guide

Choose the IRF7416TRPBF when you need a P-channel MOSFET for 12V to 24V high-side switching with logic-level gate drive and 10A continuous current in a SO-8 footprint. It is ideal for USB power-distribution switches, notebook battery management, and reverse-polarity protection. If you need the same part in tube packaging, choose IRF7416PBF. If your design requires -48V or 36V industrial bus voltage, choose IRLR9343TRPBF (-55V) instead. If you need a dual P-channel SO-8 for space-constrained full-bridge designs, consider IRF7306TRPBF. For N-channel high-side switching with bootstrap drive, choose IRFH5020TRPBF. For higher continuous current above 30A, evaluate IRLH5030TRPBF in the same SO-8 footprint.

Comparison with Alternatives

Parameter This Product IRF7416PBF IRF7416TRPBF-1 IRF7306TRPBF IRFH5020TRPBF IRLR9343TRPBF IRLH5030TRPBF
Package SO-8 SO-8 SO-8 SO-8 (dual P-ch) SO-8 SO-8 SO-8
Brand Infineon Infineon Infineon Infineon Infineon Infineon Infineon
FET Type / Polarity P-Channel P-Channel P-Channel Dual P-Channel N-Channel P-Channel N-Channel
Drain-to-Source Voltage (VDS) -30 V -30 V -30 V -30 V 200 V (N-ch) -55 V 100 V (N-ch)
Continuous Drain Current (ID) at TA=25C -10 A -10 A -10 A -3.6 A (per channel) 11 A (N-ch) -20 A 33 A (N-ch)
RDS(on) max at VGS=10V 20 mOhm 20 mOhm 20 mOhm 50 mOhm 50 mOhm 39 mOhm 5.4 mOhm
Total Gate Charge (Qg) 61 nC 61 nC 61 nC 30 nC 38 nC 110 nC 78 nC
Power Dissipation (PD) max at TA=25C 2.5 W 2.5 W 2.5 W 2.0 W 2.5 W 2.5 W 3.1 W
Automotive Grade (AEC-Q101) No (Industrial) No No No Yes Yes Yes

Key Differentiators

  • Industry-standard SO-8 single-MOSFET pinout (vs IRF7306TRPBF (dual P-channel SO-8))
  • Infineon HEXFET process technology (vs IRFH5020TRPBF (N-channel 200V))
  • Logic-level VGS(th) supports 3.3V GPIO drive (vs IRLR9343TRPBF (-55V P-channel))

Design Notes

Estimated: at TA = 25C with 1 square inch of copper-pour heatsinking, the SO-8 package RthJA is approximately 50 C/W, limiting continuous power dissipation to 2.5W. At 5A load with RDS(on) = 20 mOhm, conduction loss is about 0.5W and junction temperature rises 25C above ambient - safe for industrial environments. For 8A to 10A loads, conduction loss approaches 1.6W to 2W, requiring either forced-air cooling or larger copper pours of at least 2 square inches. Designers should never operate the SO-8 package continuously at the 2.5W absolute maximum without thermal verification.

Minimize the source-lead PCB loop inductance by placing the gate driver and gate-source pull-down resistor within 5mm of pins 1-4. Use a 4-layer PCB with a solid ground plane on layer 2 directly under the SO-8 footprint to provide a low-inductance thermal and electrical return path. Avoid routing noisy switching signals across the drain tab (pins 5-8) to prevent capacitive coupling into the gate. Solder the thermal pad (drain tab) to a copper pour of at least 1 square inch for adequate heat spreading.

Do not exceed the -30V VDS rating during inductive switching transients - always add a TVS diode or Schottky snubber across drain-source when driving relays, solenoids, or motors. Do not leave the gate floating: an undriven gate can charge through the Miller capacitance and cause unintended turn-on. Always include a 10kOhm to 100kOhm gate-source pull-down resistor. The VGS(th) range of -1V to -3V means the device can partially enhance at 3.3V logic levels; drive the gate to -10V for full enhancement and minimum RDS(on).

For P-channel high-side switching, place the MOSFET between the input voltage rail and the load, with source at the rail and drain at the load. This orientation allows the gate pull-up resistor to tie to the source rail, ensuring the MOSFET is off by default when the MCU GPIO is high-impedance during reset. Add a 100 Ohm gate resistor to limit dV/dt during turn-on, especially when driving large gate-charge loads at high switching frequencies above 100 kHz.

Compliance Information

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

RoHS and REACH compliant per Infineon product page; lead-free (Pb-free) terminations confirmed by 'PBF' suffix. Not AEC-Q100/AEC-Q101 qualified - the standard IRF7416TRPBF is rated for industrial use; choose IRF7416TRPBF-1 for ESD-enhanced variants if needed.

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

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Related Components & Terms

Infineon IRF7416TRPBF IRF7416PBF IRF7416TRPBF-1 IRF7306TRPBF IRFH5020TRPBF IRLR9343TRPBF IRLH5030TRPBF HEXFET MOSFET P-channel MOSFET power MOSFET HEXFET Power MOSFET SO-8 SOIC-8 surface mount SMD RoHS REACH lead-free Pb-free AEC-Q101 JEDEC JESD22 drain-to-source voltage on-resistance gate charge logic-level gate drive high-side switch load switch USB power distribution battery management reverse-polarity protection synchronous buck converter
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