IRF7416TRPBF - P-Ch 30V 10A HEXFET MOSFET | Infineon
MPN: IRF7416TRPBF ✓ Active| 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 |
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📋 Reference alternative (not in catalog)
IRF7416TRPBF-1
✅ Drop-In ⚠️ 参数待验证📋 Reference alternative (not in catalog)
IRF7306TRPBF
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$0.55 / Unit
View Datasheet →IRFH5020TRPBF
✅ Drop-In✓ In Stock
$0.36 / Unit
View Datasheet →IRLR9343TRPBF
✅ Drop-In✓ In Stock
$0.47 / Unit
View Datasheet →IRLH5030TRPBF
✅ Drop-In✓ 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
| 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
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.
Recommended
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.
Recommended
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.
Recommended
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.
Recommended
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.
Recommended
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.
Recommended
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.
Recommended
Recommended Products Summary
Engineering reference data for IRF7416TRPBF — comparison, design guidance, and compliance information.
Selection Guide
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 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.