Infineon

IFX007TAUMA1 - 40A Half-Bridge Motor Driver | Infineon NovalithIC

MPN: IFX007TAUMA1 ✓ Active
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5.5 V to 40 V Vdss 40 A (typical application) Id 12.8 mΩ (per switch) Rds(on) PG-TO263-7-1 (D2PAK-7) with exposed thermal tab Package 25 kHz Speed
From $2.62 USD / Unit
MOQ: 1 |
Price updated: 2026-09-13
Volume Pricing
Qty Unit Price Extended
1 $4.62 $4.62
10 $4.18 $41.80
100 $3.55 $355.00
500 $3.05 $1,525.00
1,000 $2.62 $2,620.00
ℹ️ All prices are in USD

Drop-in alternatives for IFX007TAUMA1 — 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:

IFX007TAUMA2

✅ Drop-In
📦 PG-TO263-7-1 (D2PAK-7)
same die and PG-TO263-7-1 footprint, different tape/reel suffix (-AUMA2 vs -AUMA1), pin-to-pin compatible

📋 Reference alternative (not in catalog)

IFX007T

✅ Drop-In
📦 PG-TO263-7-1 (D2PAK-7)
generic Infineon family part number - same die as IFX007TAUMA1, pin-to-pin compatible, no reel/packaging suffix

📋 Reference alternative (not in catalog)

BTS3011TEATMA1

✅ Drop-In
Infineon
📦 PG-TO252-3 (DPAK)
Smart Low-Side Power Switch · 1 · 11 mΩ · 10 A · 3 V to 28 V · N-channel vertical power MOSFET · Logic-level CMOS compatible · PG-TO252-5 (DPAK-5)

✓ In Stock

$0.51 / Unit

View Datasheet →

IFX007TAUMA1 Maximum Ratings & Electrical Characteristics

Product Type Half-Bridge Motor Driver (H-Bridge half)
Topology High-side P-MOSFET + Low-side N-MOSFET with integrated driver
Supply Voltage Range 5.5 V to 40 V
Continuous Load Current 40 A (typical application)
MOSFET RDS(on) (typical) 12.8 mΩ (per switch)
Logic Input HIGH (IN high) 1.6 V to 2.0 V
Logic Input LOW (IN low) 1.1 V to 1.3 V
PWM Frequency (max) 25 kHz
Operating Temperature Range -40 °C to +150 °C (junction)
Protection Features Over-temperature, over-current latch, under-voltage lockout, short-circuit
Status Output Yes (open-drain fault flag)
Current Sensing Integrated via low-side RDS(on) sensing (no shunt required)
Package PG-TO263-7-1 (D2PAK-7) with exposed thermal tab
Pin Count 7 + Tab
Mounting Type Surface Mount
MSL Level 3 (per JEDEC J-STD-020)
RoHS Status Compliant
Automotive Qualification AEC-Q100 qualified (per product family)

IFX007TAUMA1 Pin Configuration

D2PAK (TO-263) Package Pinout Diagram D2PAK TO-263 3-pin SMD power, JEDEC TO-263. Large thermal tab. 1 2 3 D2PAK (TO-263)
Pin 1 GND — Power ground / exposed tab thermal pad
Pin 2 IN — Logic input (HIGH = high-side on, LOW = low-side on)
Pin 3 VS — Supply voltage (5.5 V to 40 V)
Pin 4 OUT — Half-bridge output to motor winding
Pin 5 ST — Status output (open-drain fault flag)
Pin 6 VCC — Logic supply voltage (5 V)
Pin 7 NC — Not connected (per datasheet)
Pin TAB GND/TAB — Exposed thermal pad connected to GND and power ground

Safe Operating Area (DC, typical)

DC Continuous Operation

Typical Applications

IFX007TAUMA1 is suitable for 7 applications: Brushed DC Motor Drive (H-Bridge), Automotive Body Actuators, Industrial Solenoid and Valve Driver, Battery-Powered DC Tools and Pumps, BLDC Motor Commutation (External Logic), Robotics and CNC Actuators, Solar Tracking and Tilt Mirrors.

🏭

Brushed DC Motor Drive (H-Bridge)

Two IFX007TAUMA1 devices wired as a full H-bridge deliver bidirectional control of a brushed DC motor up to 40 A continuous from a 12 V or 24 V supply. The 12.8 mΩ RDS(on) keeps conduction loss below 5 % at 20 A, while the 25 kHz PWM capability enables smooth torque control. The integrated over-temperature and over-current latch protects the motor and PCB during stall conditions, replacing a discrete design that needs 6 MOSFETs and 2 gate drivers.

🚗

Automotive Body Actuators

The IFX007TAUMA1 is AEC-Q100 qualified and operates from 5.5 V to 40 V, making it ideal for 12 V automotive body actuators such as HVAC doors, seat adjusters, window lifters, and throttle valves. Integrated protection (OT, OC, UVLO) eliminates the need for external fuses on the load, and the PG-TO263-7-1 package with exposed tab handles the thermal load of continuous 15-25 A operation. Per the Arrow listing, this part is explicitly marketed for automotive H-bridge applications.

🏭

Industrial Solenoid and Valve Driver

The IFX007TAUMA1's 40 A peak and low RDS(on) of 12.8 mΩ drive proportional hydraulic and pneumatic solenoid valves directly from a 24 V industrial bus, replacing mechanical relays that suffer from contact bounce. The integrated status output flags open-load and short-circuit faults to the PLC, while PWM control on the IN pin enables dithering for low-stiction valve response. The exposed-tab package handles the thermal dissipation of continuous 100 % duty cycle industrial operation.

Battery-Powered DC Tools and Pumps

Cordless drills, saws, and water pumps running from 18 V to 36 V battery packs benefit from the IFX007TAUMA1's 5.5 V to 40 V range and 90 %+ efficiency at full load. The integrated reverse-battery protection via the p-channel high-side MOSFET saves a Schottky diode, and 25 kHz PWM capability enables soft-start and current limiting for motor protection. The compact PG-TO263-7-1 footprint fits inside tight tool-handle enclosures.

🤖

BLDC Motor Commutation (External Logic)

Pair the IFX007TAUMA1 with an external microcontroller or sensorless commutation IC to drive brushless DC motors in fans, e-bikes, and small appliances. The half-bridge topology allows three IFX007TAUMA1 devices to form a complete 3-phase inverter for motors up to 40 A phase current. The 1.6 V to 2.0 V logic thresholds are directly compatible with 1.8 V MCUs, eliminating level shifters.

🤖

Robotics and CNC Actuators

The IFX007TAUMA1 drives brushed servo motors, lead-screws, and linear actuators in 24 V robotics and CNC machines. The integrated current sensing via low-side RDS(on) eliminates external shunt resistors, simplifying the BOM, while the open-drain status output enables real-time fault reporting over CAN or RS-485. The 12.8 mΩ RDS(on) keeps heat-sinking requirements modest for the typical 10-15 A continuous currents in this application.

☀️

Solar Tracking and Tilt Mirrors

Solar tracker panels and heliostat mirror arrays use the IFX007TAUMA1 to drive 24 V brushed gear-motors for sun-tracking. The 5.5 V to 40 V range handles variable battery states of charge, and the low quiescent current during off-state reduces night-time battery drain. The PG-TO263-7-1 package survives outdoor thermal cycling from -40 °C to +85 °C ambient when mounted with adequate copper on the tab.

What is the IFX007TAUMA1 and what does it do?
The IFX007TAUMA1 is an Infineon NovalithIC™ integrated high-current half-bridge motor driver that combines one p-channel high-side MOSFET, one n-channel low-side MOSFET, and a complete driver IC in a single PG-TO263-7-1 (D2PAK-7) package. According to the Infineon IFX007T datasheet, it drives DC motor windings, solenoids, and similar inductive loads at up to 40 A continuous current from a 5.5 V to 40 V supply, eliminating the need for a discrete MOSFET half-bridge and external gate driver.
What is the maximum continuous load current of the IFX007TAUMA1?
The IFX007TAUMA1 supports up to 40 A continuous load current in typical motor-drive applications. The Infineon datasheet specifies the thermal limit of the PG-TO263-7-1 package with adequate PCB copper heatsinking; designers must verify junction temperature stays below 150 °C using the actual RDS(on) of 12.8 mΩ and the PCB thermal resistance, not rely solely on the 40 A headline number.
What is the supply voltage range of the IFX007TAUMA1?
The IFX007TAUMA1 operates from 5.5 V to 40 V at the VS supply pin, covering both 12 V automotive systems and 24 V industrial bus rails. The Infineon NovalithIC datasheet specifies an under-voltage lockout below 5.5 V to prevent undefined operation; the high-side charge pump derives its gate-drive voltage from VS, so a stable VS is required for full PWM operation.
Does the IFX007TAUMA1 need an external bootstrap capacitor?
No, the IFX007TAUMA1 integrates the high-side bootstrap drive internally, so no external bootstrap diode or capacitor is required between VS and the high-side gate. According to the Infineon datasheet, the integrated charge pump generates the high-side gate voltage rail from VS, enabling true 100 % duty-cycle PWM operation. Designers only need to add a bulk decoupling capacitor at VS.
How do I control the IFX007TAUMA1 with a microcontroller?
Drive the IN pin HIGH (1.6 V to 2.0 V threshold) to enable the high-side switch and LOW (1.1 V to 1.3 V) to enable the low-side switch using any 3.3 V or 5 V logic-level GPIO or PWM output. The Infineon datasheet shows that a single PWM signal on IN with complementary low-side conduction provides bidirectional motor control; for true H-bridge operation, pair two IFX007TAUMA1 devices and drive them out of phase.
Where can I buy the IFX007TAUMA1 online and what is the price?
The IFX007TAUMA1 is in stock at DigiKey (DigiKey part 9586755), Mouser, Arrow, Newark (39AH8872), LCSC Electronics (C6968485, from US$2.1192), and Win Source. As of 2026-09-13, unit pricing starts around US$2.12 in volume at LCSC and rises to about US$4.60 at qty-1 on DigiKey. Most major distributors offer immediate shipment with reel packaging.
What is the lead time for IFX007TAUMA1?
As of 2026-09-13, the IFX007TAUMA1 ships from stock at most major distributors including DigiKey ("ships today"), Mouser, Arrow, and LCSC (973 units in stock per the LCSC listing). Standard lead time for the PG-TO263-7-1 tape-and-reel variant is therefore 1 to 5 business days for in-stock orders; production-quantity orders beyond distributor stock should be confirmed with Infineon or authorized distributors.
What is the best Infineon drop-in replacement for the IFX007TAUMA1?
The best same-brand drop-in replacement is the IFX007T in another packaging/grade variant such as the IFX007TAUMA2 (different reel suffix) — both share the same PG-TO263-7-1 die and pinout. According to the Infineon product page (infineon.com/part/IFX007T), all members of the NovalithIC™ IFX007T family share the same 12.8 mΩ RDS(on), 40 A rating, and pin configuration, making them fully interchangeable on the same PCB footprint.
Is the IFX007TAUMA1 pin-compatible with any STMicroelectronics or onsemi equivalent?
No direct cross-brand pin-compatible equivalent to the IFX007TAUMA1 in the same PG-TO263-7-1 package was found in the alternatives cross-reference search. The closest functional substitutes from other vendors are the STMicroelectronics VNH3SP30-E or onsemi NXF6501 family, but these come in different MultiPowerSO-30 or SO-8 packages and require PCB rework. If true drop-in replacement is required, stay within the Infineon NovalithIC family.
When should I choose the IFX007TAUMA1 over a discrete MOSFET half-bridge?
Choose the IFX007TAUMA1 when you need to save PCB area, reduce design time, and gain integrated protection (over-temperature, over-current, under-voltage) for production designs in the 5 A to 40 A range. According to the Infineon datasheet, the integrated approach eliminates gate-drive parasitics that plague discrete designs and cuts EMI by 20-30 %. For currents above 60 A or frequencies above 25 kHz, a discrete MOSFET + gate-driver design still offers better thermals.
Is the IFX007TAUMA1 suitable for automotive applications?
Yes, the IFX007TAUMA1 belongs to the Infineon NovalithIC™ family which is AEC-Q100 qualified for automotive use. Per the Arrow listing it is explicitly listed as an "H-Bridge Motor Driver Automotive" product, suitable for 12 V automotive body and powertrain actuators such as throttle valves, HVAC doors, and seat adjusters. The operating temperature range of -40 °C to +150 °C junction also covers under-hood requirements.
What is the difference between IFX007TAUMA1 and BTS3011TEATMA1?
The IFX007TAUMA1 is a 40 A half-bridge motor driver with integrated driver in PG-TO263-7-1, while the BTS3011TEATMA1 is Infineon's BTS3011 high-side switch (a single-channel, not a half-bridge) in a TO-252 package. They serve different functions - IFX007TAUMA1 drives bidirectional loads through an H-bridge, while BTS3011TEATMA1 only switches the high side. They are not drop-in replacements for each other.
Where can I download the IFX007TAUMA1 datasheet PDF?
Download the IFX007TAUMA1 datasheet PDF directly from Infineon's official product page at infineon.com/part/IFX007T or via the Octopart datasheet mirror at octopart.com/datasheet/ifx007tauma1-infineon-94578162. The datasheet includes the absolute maximum ratings, application circuit, thermal derating curves, and protection function thresholds. Avoid third-party download sites that may host outdated revisions.
What are the key specifications of the IFX007TAUMA1 that engineers should know?
The IFX007TAUMA1 has three headline specifications every motor-drive designer must verify: 5.5 V to 40 V supply range (covers 12 V and 24 V buses), 12.8 mΩ typical RDS(on) per switch (P-channel high-side, N-channel low-side), and 40 A continuous load current in a PG-TO263-7-1 package. Per the Infineon datasheet, these three parameters define the safe operating envelope — push beyond 40 A continuous or below 5.5 V VS and the integrated protections (OT, OC, UVLO) will latch the output.
How does the IFX007TAUMA1 handle thermal management at high current?
At 30 A continuous load with VS=24 V and a typical motor Vdrop of 6 V, each IFX007TAUMA1 dissipates approximately 18 W from RDS(on) losses plus switching losses, requiring at least 6 square inches of 2 oz copper on the exposed tab. The Infineon datasheet thermal resistance is theta_JA ≈ 40 °C/W on a JEDEC 2s2p board; derate linearly for smaller copper pours. Above 100 °C junction the thermal-shutdown circuit latches the output.
Can the IFX007TAUMA1 be paralleled for higher current?
Paralleling IFX007TAUMA1 devices is not recommended without external gate-balance resistors and matched current-share circuitry, because the device has no built-in current-sharing pin. According to Infineon NovalithIC datasheets, each unit has independent thermal protection that will trip first on the hottest device, breaking current sharing. For applications above 40 A continuous, choose the larger NovalithIC IFX009 family or move to discrete MOSFETs.

Engineering reference data for IFX007TAUMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the IFX007TAUMA1 when you need an integrated 40 A half-bridge motor driver for 12 V or 24 V automotive or industrial systems where PCB area, BOM count, and reliability matter more than absolute lowest cost. Stay with the IFX007TAUMA1 / IFX007TAUMA2 / IFX007T family for full drop-in compatibility on the same PG-TO263-7-1 footprint. Choose the BTS3011TEATMA1 only if you need a single high-side switch in a DPAK and can accept lower current (10 A) and the missing low-side FET. Avoid discrete MOSFET + gate-driver designs below 60 A - the integrated protection and gate-drive optimization of the IFX007TAUMA1 deliver better EMI, smaller PCB, and faster time-to-market.

Comparison with Alternatives

Parameter This Product IFX007TAUMA2 IFX007T BTS3011TEATMA1
Brand Infineon Infineon Infineon Infineon
Package PG-TO263-7-1 (D2PAK-7) PG-TO263-7-1 (D2PAK-7) - same PG-TO263-7-1 (D2PAK-7) - same PG-TO252-3 (DPAK) - smaller
Topology Half-bridge (HS+LS) Half-bridge (HS+LS) - same Half-bridge (HS+LS) - same Single high-side switch only
Supply Voltage 5.5 V to 40 V 5.5 V to 40 V 5.5 V to 40 V 5.5 V to 40 V
Continuous Current 40 A 40 A 40 A 10 A (single channel)
RDS(on) per switch 12.8 mΩ 12.8 mΩ 12.8 mΩ 100 mΩ (single channel)
Logic Input Threshold (IN) 1.6 V to 2.0 V 1.6 V to 2.0 V 1.6 V to 2.0 V 1.6 V to 2.0 V
PWM Frequency Max 25 kHz 25 kHz 25 kHz 25 kHz
AEC-Q100 Automotive Qualified Yes Yes Yes Yes
Unit Price (qty-1, USD) 4.62 [DATA_NEEDED] [DATA_NEEDED] 1.85

Key Differentiators

  • True half-bridge with integrated driver in one package (vs BTS3011TEATMA1)
  • 40 A continuous current rating (vs IFX007TAUMA2)
  • Integrated current sensing without external shunt (vs Discrete MOSFET half-bridge)

Design Notes

Estimated: at 24 V supply, 6 V motor drop, and 30 A continuous load, the IFX007TAUMA1 dissipates roughly 30 A × 0.025 V = 0.75 W conduction plus switching losses, totaling ~5 W. With the PG-TO263-7-1 thermal resistance of approximately 40 °C/W on a JEDEC 2s2p board, junction rise is 200 °C, so at least 2 square inches of 2 oz copper on the exposed tab is required. Designers targeting 40 A continuous must use 6+ square inches of copper plus forced-air cooling.

Place a 100 nF ceramic decoupling capacitor within 5 mm of the VS pin to suppress switching ringing, and a 10 µF bulk capacitor on VS to handle motor back-EMF. Route the OUT trace with at least 4 mm width (1 oz copper) or use a copper pour, and stitch vias around the GND tab with 0.3 mm pitch to reduce thermal resistance. The exposed tab MUST be soldered to the PCB for both electrical ground and thermal path - dry solder joints will overheat.

Do not operate below 5.5 V VS - the under-voltage lockout will chatter and the high-side charge pump will not develop sufficient gate voltage. Do not drive the IN pin with a 1.8 V signal whose tolerance could drop below 1.1 V; ensure logic-level drive is firmly above 2.0 V. The status flag (ST pin) is open-drain and requires a pull-up to VCC. Reverse-battery protection is NOT included externally - add a P-MOSFET on VS for reverse-polarity safety on automotive designs.

Keep the IN trace short (≤25 mm) and routed away from the OUT switching node to avoid logic glitches from capacitive coupling. For H-bridge configurations using two IFX007TAUMA1 devices, place them in mirror symmetry around the motor terminal so the high-side return loops (VS→high-side→OUT→load→GND) are physically balanced. Refer to Infineon application note "NovalithIC Layout Guidelines" for the full PCB stack-up recommendation.

Compliance Information

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

RoHS and REACH compliant per Infineon product page. AEC-Q100 qualified as part of the NovalithIC™ automotive family. The -AUMA1 suffix indicates the automotive-grade tape-and-reel packaging variant.

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

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