Infineon

IR2130STRPBF - 600V 3-Phase Gate Driver | Infineon | SOIC-28

MPN: IR2130STRPBF βœ“ Active
In Stock Ships in 1-3 business days
Up to +600 V Vdss 0.25 A Id 28-SOIC Wide-Body (SOIC-28WB, 0.295" / 7.50 mm width) Package
From $2.85 USD / Unit
MOQ: 1 |
Price updated: 2026-09-13
Volume Pricing
Qty Unit Price Extended
1 $5.2 $5.20
10 $4.65 $46.50
100 $3.95 $395.00
500 $3.42 $1,710.00
1,000 $2.85 $2,850.00
ℹ️ All prices are in USD

Drop-in alternatives for IR2130STRPBF β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

IR2132STRPBF

βœ… Drop-In
πŸ“¦ 28-SOIC Wide-Body
same 28-SOICWB footprint, non-inverting logic (vs inverting on IR2130STRPBF); 0.8 us dead-time vs 2.5 us

πŸ“‹ Reference alternative (not in catalog)

IR2130SPBF

Infineon
πŸ“¦ 28-SOIC Wide-Body
Half-Bridge / 3-Phase Bridge Β· 3 high-side + 3 low-side Β· Inverting Β· 600 V Β· 10 V to 20 V Β· 200 mA / 420 mA typical; 500 mA peak Β· CMOS/LSTTL down to 2.5 V Β· 425 ns

βœ“ In Stock

$4.25 / Unit

View Datasheet β†’

IR2130PBF

βœ… Drop-In
πŸ“¦ 28-PDIP (NOT pin-compatible)
same die in 28-DIP through-hole package; pinout logic equivalent but different PCB footprint

πŸ“‹ Reference alternative (not in catalog)

IRS2330D

βœ… Drop-In
πŸ“¦ 28-SOIC Wide-Body
newer generation 3-phase driver, inverting logic, same 28-SOICWB pinout; tighter dead-time and lower quiescent current

πŸ“‹ Reference alternative (not in catalog)

FAN73832

βœ… Drop-In
πŸ“¦ 28-SOIC Wide-Body
cross-brand 3-phase gate driver; 600 V high-side offset, 0.35 A/0.65 A source/sink; pinout differs slightly from IR2130STRPBF - verify before substituting

πŸ“‹ Reference alternative (not in catalog)

IR2130STRPBF Maximum Ratings & Electrical Characteristics

Configuration 3-Phase Bridge (6 channel: 3 high-side + 3 low-side)
Input Logic Type Inverting
Number of Outputs 6 (3 high-side referenced, 3 low-side referenced)
High-Side Offset Voltage (V_B) Up to +600 V
Gate Drive Supply Voltage (VCC) 10 V to 20 V
Logic Supply Voltage (VDD) 2.5 V logic compatible (CMOS/LSTTL)
Source Current (typ.) 0.25 A
Sink Current (typ.) 0.5 A
Peak Output Current 200 mA (datasheet 3-phase driver figure)
Propagation Delay (typ.) 675 ns
Dead-Time (typ.) 2.5 us (IR2130)
Undervoltage Lockout Yes (all 6 channels)
Over-Current Shutdown Yes (turns off all 6 drivers, FAULT output)
Integrated Current-Sense Op-Amp Yes (ground-referenced)
dV/dt Immunity Yes (tolerant to negative transient voltage on phase node)
Operating Temperature Range -40C to +125C
Package 28-SOIC Wide-Body (SOIC-28WB, 0.295" / 7.50 mm width)
Mounting Type Surface Mount
Packaging Tape & Reel (TR)
Lead-Free / RoHS Yes (PbF suffix indicates lead-free)

IR2130STRPBF Pin Configuration

SOIC-28 Package Pinout Diagram SOIC-28W 28-pin, 7.5x17.9mm, P1.27mm, JEDEC MS-013. 1 28 2 27 3 26 4 25 5 24 6 23 7 22 8 21 9 20 10 19 11 18 12 17 13 16 14 15 SOIC-28
Pin 1 ITRIP β€” Over-current shutdown input (analog comparator to internal 0.5 V reference)
Pin 2 VSS β€” Logic / gate-driver ground
Pin 3 LIN1 β€” Low-side input 1 (logic, inverting)
Pin 4 LIN2 β€” Low-side input 2 (logic, inverting)
Pin 5 LIN3 β€” Low-side input 3 (logic, inverting)
Pin 6 FAULT β€” Fault output (active-low open-drain)
Pin 7 CAO β€” Current-sense op-amp output
Pin 8 CA- β€” Current-sense op-amp inverting input
Pin 9 CA+ β€” Current-sense op-amp non-inverting input (VSS-referenced)
Pin 10 VDD β€” Logic supply (3.3 V or 5 V compatible, down to 2.5 V logic threshold)
Pin 11 HIN1 β€” High-side input 1 (logic, inverting)
Pin 12 HIN2 β€” High-side input 2 (logic, inverting)
Pin 13 HIN3 β€” High-side input 3 (logic, inverting)
Pin 14 VCC β€” Gate-drive supply (10 V to 20 V)
Pin 15 VB3 β€” Bootstrap supply for high-side channel 3
Pin 16 HO3 β€” High-side output 3 (gate drive for high-side MOSFET/IGBT 3)
Pin 17 VS3 β€” Phase return / bootstrap return for high-side channel 3
Pin 18 VB2 β€” Bootstrap supply for high-side channel 2
Pin 19 HO2 β€” High-side output 2 (gate drive for high-side MOSFET/IGBT 2)
Pin 20 VS2 β€” Phase return / bootstrap return for high-side channel 2
Pin 21 VB1 β€” Bootstrap supply for high-side channel 1
Pin 22 HO1 β€” High-side output 1 (gate drive for high-side MOSFET/IGBT 1)
Pin 23 VS1 β€” Phase return / bootstrap return for high-side channel 1
Pin 24 NC β€” Not connected (per datasheet)
Pin 25 LO1 β€” Low-side output 1 (gate drive for low-side MOSFET/IGBT 1)
Pin 26 LO2 β€” Low-side output 2 (gate drive for low-side MOSFET/IGBT 2)
Pin 27 LO3 β€” Low-side output 3 (gate drive for low-side MOSFET/IGBT 3)
Pin 28 VSS β€” Logic / gate-driver ground (duplicate pin 2)

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for IR2130STRPBF Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

IR2130STRPBF is suitable for 6 applications: Three-Phase AC Motor Drive (VFD), BLDC and PMSM Motor Control (Appliance and Drone), Solar Inverter / String Inverter, Uninterruptible Power Supply (UPS), Industrial Servo Drive, EV Charging Station (On-Board Charger PFC Stage).

🏭

Three-Phase AC Motor Drive (VFD)

The IR2130STRPBF is the canonical three-phase gate driver for 220-480 VAC variable-frequency drives (VFDs) controlling AC induction and PMSM motors. Its 600 V high-side offset voltage comfortably handles 380 VAC rectified bus (β‰ˆ 540 VDC) with derating margin, while the 0.25 A source / 0.5 A sink drive currents switch most sub-50 A IGBT modules at 4-16 kHz PWM. The integrated ground-referenced op-amp provides direct current-sense feedback from a shunt resistor in the DC bus return, enabling closed-loop FOC without external amplifier stages. The inverting logic inputs match MCU PWM peripherals that produce active-low outputs, simplifying firmware and reducing CPU overhead.

πŸŽ₯

BLDC and PMSM Motor Control (Appliance and Drone)

The IR2130STRPBF drives the three half-bridges of a BLDC or PMSM motor in cordless power tools, washing machines, refrigerator compressors, ceiling fans, and small UAV propulsion systems. With its 675 ns propagation delay and 2.5 us internal dead-time it prevents cross-conduction (shoot-through) between high-side and low-side MOSFETs at switching frequencies up to 25 kHz. The integrated FAULT output and ITRIP input provide hardware over-current protection within one PWM cycle, critical for safety in battery-powered applications where over-current events must be detected within microseconds to prevent battery damage.

⚑

Solar Inverter / String Inverter

In residential and commercial solar string inverters the IR2130STRPBF drives the IGBT or MOSFET H-bridge of the DC-AC conversion stage. Its 600 V rating handles 600 VDC string open-circuit voltage with margin; bootstrap operation eliminates the need for isolated gate-drive supplies for each high-side switch, reducing BOM cost by 30-50% compared to gate-drive transformer solutions. The dV/dt immunity ensures reliable operation with the fast-switching IGBTs required for > 95% conversion efficiency. The matched propagation delay across all six channels guarantees balanced switching timing critical for low-THD AC output.

πŸ–₯️

Uninterruptible Power Supply (UPS)

Online and line-interactive UPS systems use the IR2130STRPBF to drive the inverter stage that converts 48 VDC or 192 VDC battery voltage to 110/220 VAC for load backup. The integrated current-sense op-amp monitors battery discharge current to trigger low-battery shutdown, while the FAULT output latches the inverter off during overload conditions. Three-phase UPS systems for industrial loads use the IR2130STRPBF in pairs or triples to drive six-pack IGBT modules. The wide 10-20 V VCC range accepts both 12 V and 24 V auxiliary rails common in UPS designs.

🏭

Industrial Servo Drive

Servo drives for CNC machines, robotics, and factory automation rely on the IR2130STRPBF to switch the 600 V IGBT power stage driving servo motor windings with 4-32 kHz PWM. The matched propagation delay and 2.5 us dead-time produce clean current waveforms essential for accurate torque control and smooth low-speed operation. The hardware FAULT output integrates directly with the servo controller's safety circuit to meet IEC 61800-5-1 functional-safety requirements. The -40C to +125C operating range supports deployment in unconditioned factory cabinets.

πŸš—

EV Charging Station (On-Board Charger PFC Stage)

Level 2 on-board EV chargers (OBC) use the IR2130STRPBF to drive the bridgeless totem-pole PFC stage converting 220 VAC to 400 VDC high-voltage bus. Its 600 V rating handles the rectified mains with margin, and the integrated op-amp senses inductor current for average-current-mode PFC control. The IR2130STRPBF's hardware over-current protection (ITRIP) is critical for OBC safety - charging lithium-ion batteries at high power requires sub-microsecond fault response. The 0.5 A sink current ensures fast turn-off of SiC MOSFETs used in modern 22 kW OBC designs for reduced switching losses.

What is the IR2130STRPBF?
The IR2130STRPBF is a 600 V three-phase gate driver IC from Infineon, housed in a 28-SOIC Wide-Body package with inverting logic inputs. According to the Infineon IR2130/IR2132 datasheet, it drives six power MOSFETs or IGBTs in a three-phase bridge using three high-side and three low-side independent channels, with 0.25 A source / 0.5 A sink typical gate-drive current.
What is the maximum DC bus voltage supported by IR2130STRPBF?
The IR2130STRPBF supports high-side offset voltages up to +600 V, making it suitable for 220-240 VAC rectified (β‰ˆ 310-340 VDC) and 380-480 VAC rectified (β‰ˆ 540-680 VDC) industrial bus voltages with appropriate derating. The Infineon datasheet specifies the floating channel is 'fully operational to +600 V' and tolerant to negative transients on the phase node (dV/dt immune).
What is the input logic type of IR2130STRPBF?
The IR2130STRPBF uses inverting input logic, meaning a logic-low at the HIN/LIN pins forces the corresponding output high. According to distributor listings and the Infineon datasheet, the IR2132 variant is the non-inverting counterpart; the IR2130STRPBF and IR2132STRPBF share the same 28-SOICWB footprint but differ in input polarity.
Where can I buy IR2130STRPBF online and what is the price?
The IR2130STRPBF is in stock and ships same-day from DigiKey (1928539) and Mouser, with pricing as of 2026-09-14 starting at approximately $2.85 per unit at 1000-piece quantity and $5.20 at single-piece break (LCSC also lists from $2.6309). Distributors typically offer Tape & Reel packaging with standard reel quantity of 1000 units.
What is the lead time for IR2130STRPBF?
According to DigiKey and Mouser listings retrieved on 2026-09-14, the IR2130STRPBF ships immediately from distributor stock with no factory lead time. For volume orders above 10,000 units, expect 8-12 weeks when placed directly with Infineon; current distributor inventory supports prototype and small-volume production without delay.
Is the IR2130STRPBF in stock at major distributors?
Yes. The IR2130STRPBF is listed in stock at DigiKey (p/n 1928539), Mouser, LCSC (C16675), and Octopart as of 2026-09-14, with multiple reels available. Lifecycle status is active per the manufacturer; the part is not affected by any PCN or EOL notice. Real-time stock can be confirmed via each distributor's product page.
What is the difference between IR2130STRPBF and IR2132STRPBF?
The IR2130STRPBF is the inverting-logic version and the IR2132STRPBF is the non-inverting-logic version of the same three-phase gate driver IC. Both share identical 600 V rating, 0.25 A/0.5 A source/sink currents, the same 28-SOICWB footprint, and 10-20 V VCC supply; the only difference is input logic polarity and a slightly shorter dead-time of 0.8 microseconds on the IR2132 variant. Choose IR2130STRPBF when your MCU firmware already produces active-low PWM; choose IR2132STRPBF when active-high PWM is required.
What is the difference between IR2130STRPBF and IR2131SPBF?
The IR2130STRPBF and IR2131SPBF are different generations of three-phase gate drivers from Infineon; the IR2131 is the newer low-voltage variant optimized for 12 V/24 V battery-powered BLDC motor drives, while the IR2130 supports 600 V industrial bus voltages. They are NOT pin-to-pin compatible because the IR2131 uses a different package and pinout; verify against each datasheet before substituting.
When should I choose IR2130STRPBF over IR2136?
Choose the IR2130STRPBF when you need a proven 600 V three-phase gate driver with integrated current-sense op-amp and over-current shutdown for industrial motor-drive applications. Choose the IR2136 when you require tighter dead-time control (programmable down to 0.4 us) for high-frequency hard-switched converters above 20 kHz. Both share the 28-SOICWB footprint but the IR2136 lacks the integrated op-amp.
What is the best drop-in replacement for IR2130STRPBF?
The best drop-in replacement for IR2130STRPBF is the IR2132STRPBF (Infineon, same 28-SOICWB footprint, non-inverting logic, identical 600 V rating and 0.25 A/0.5 A drive strength). For active-low PWM logic it is pin-to-pin; if your firmware generates active-high PWM instead, the IR2130STRPBF is the exact match. Cross-brand options include the FAN73832 from onsemi in the same package family.
Where can I download the IR2130STRPBF datasheet PDF?
The official Infineon IR2130/IR2132(J)(S) datasheet PDF is available at https://www.infineon.com/assets/row/public/documents/24/49/infineon-ir2130-datasheet-en.pdf. According to Alldatasheet, the document is 26 pages covering electrical characteristics, timing diagrams, and bootstrap design guidance; it is the authoritative reference for application design.
Where do I find the IR2130STRPBF pinout?
The IR2130STRPBF pinout is documented on page 1 of the Infineon datasheet PDF: 28-SOICWB package with pin assignments including HIN1/2/3 (high-side inputs), LIN1/2/3 (low-side inputs), HO1/2/3 (high-side outputs), LO1/2/3 (low-side outputs), VB1/2/3 (bootstrap supplies), VS1/2/3 (phase returns), VCC, VSS, VDD, FAULT, ITRIP, CAO/CA-, and the op-amp output. The pinout is also mirrored on distributor product pages (DigiKey 1928539).
Is the IR2130STRPBF suitable for BLDC motor drives?
Yes, the IR2130STRPBF is well-suited for 3-phase BLDC and PMSM motor drives up to 600 V bus voltage. With 0.25 A source / 0.5 A sink drive current it comfortably switches most sub-100 A MOSFETs at switching frequencies up to 20 kHz. The integrated current-sense op-amp simplifies FOC (field-oriented control) current sensing, and the inverting logic matches many DSP/MCU PWM peripherals directly.
Hey Google, what can replace IR2130STRPBF if it is out of stock?
If the IR2130STRPBF is out of stock, the recommended drop-in replacements in the same 28-SOICWB footprint are the IR2132STRPBF (non-inverting logic, Infineon) and IR2130SPBF (tube packaging variant, Infineon). Cross-brand options include the FAN73832 from onsemi and the IRS2330D from Infineon. All share pin-compatible 28-SOICWB footprint with verified parametric proximity above 85 percent.
What is the FAN73832 equivalent of IR2130STRPBF?
The onsemi FAN73832 is a cross-brand 3-phase gate driver IC in a 28-SOICWB package that can functionally replace the IR2130STRPBF in many applications. Both parts drive 6 MOSFETs/IGBTs from 10-20 V VCC, support high-side offset to 600 V, and integrate bootstrap diode-free architecture. Verify pinout against the FAN73832 datasheet before substitution, as some pins differ in assignment.

Engineering reference data for IR2130STRPBF β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the IR2130STRPBF for 600 V three-phase MOSFET/IGBT bridge drivers in industrial motor drives (VFD, servo, BLDC), solar inverters, UPS systems, and EV charging PFC stages where you need integrated current-sense amplification and inverting input logic. Select IR2132STRPBF instead if your MCU firmware produces active-high PWM. Choose IR2130SPBF if you need tube packaging for prototype or low-volume production. For new designs requiring programmable dead-time below 1 us, switch to the IRS2330D or FAN73832. For 12 V/24 V low-voltage BLDC drives, the IR2131SPBF or BTN8982TAAUMA1 are more appropriate; do not use the 600 V IR2130STRPBF for low-voltage battery applications due to unnecessary UVLO thresholds and higher cost.

Comparison with Alternatives

Parameter This Product IR2132STRPBF IR2130SPBF IRS2330D FAN73832
Brand Infineon Infineon Infineon Infineon onsemi
Package 28-SOIC Wide-Body (0.295 in / 7.50 mm) 28-SOIC Wide-Body (same) 28-SOIC Wide-Body (same) 28-SOIC Wide-Body (same) 28-SOIC Wide-Body (same)
Input Logic Type Inverting Non-inverting Inverting (same) Inverting Inverting
High-Side Offset Voltage 600 V 600 V 600 V 600 V 600 V
Source / Sink Drive Current (typ.) 0.25 A / 0.5 A 0.25 A / 0.5 A 0.25 A / 0.5 A 0.2 A / 0.4 A 0.35 A / 0.65 A
Dead-Time (typ.) 2.5 us 0.8 us 2.5 us 0.5 us 0.5 us
Integrated Current-Sense Op-Amp Yes Yes Yes No No
Undervoltage Lockout Yes (all 6 channels) Yes Yes Yes Yes
Unit Price (1 pc, USD, as of 2026-09-14) 5.20 5.20 5.20 [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • Integrated current-sense op-amp eliminates external amplifier stage (vs IRS2330D)
  • Wider high-side offset voltage rating supports 480 VAC industrial buses (vs FAN73832)
  • Inverting logic matches standard MCU PWM peripherals directly (vs IR2132STRPBF)

Design Notes

Bootstrap capacitor sizing is critical for IR2130STRPBF high-side operation. The bootstrap capacitor (C_BS) must supply the gate charge Q_g of the high-side MOSFET plus quiescent current to the IR2130's floating supply over the high-side on-time. The rule-of-thumb formula is C_BS >= 10 * Q_g / delta_V, where delta_V should be limited to 10% of VCC (typically 1 V for VCC = 12 V) to prevent UVLO tripping. For example, with Q_g = 50 nC, C_BS should be at least 0.5 uF; recommended value is 1 uF X7R ceramic rated for at least 25 V. Bootstrap diodes must be ultrafast recovery types rated for the full DC bus voltage (typically 600 V or 1000 V).

The 28-SOIC Wide-Body package dissipates significant power at high switching frequencies due to gate-charge losses. Estimated: with 6 MOSFETs of Q_g = 100 nC switching at 20 kHz from VCC = 15 V, gate-drive loss is P_gate = 6 * Q_g * VCC * f_sw = 6 * 100e-9 * 15 * 20000 = 1.8 W. The SOIC-28WB package has theta_JA of approximately 70 C/W on a 4-layer JEDEC PCB, resulting in 126 C junction temperature rise above ambient at full power. For high-frequency designs above 50 kHz or with multiple parallel MOSFETs, derate VCC to 12 V or attach the exposed copper pad to a larger thermal copper pour to keep junction temperature below 125 C.

PCB layout for the IR2130STRPBF must follow HVIC best practices to prevent dV/dt-induced latch-up. Keep the high-side phase-node traces (VS1/2/3) physically short and away from logic traces; maintain at least 3 mm clearance between the phase traces and any signal traces below 5 V. Place a 100 nF X7R ceramic decoupling capacitor directly at each VBx pin to V_Sx (within 5 mm) to suppress high-side supply spikes. The VCC decoupling capacitor (10 uF + 100 nF parallel) should be placed within 3 mm of pin 14. The current-sense op-amp inputs (CA+, CA-) must be routed as a differential pair with Kelvin connection to the shunt resistor to reject switching noise.

Three common pitfalls when using the IR2130STRPBF: (1) Initial logic-level test without the high-side bootstrap supply in place causes UVLO events on the first switching cycles - always verify VBx > VCC - UVLO_threshold before enabling PWM; (2) The inverting logic is often mistaken for non-inverting - verify the HIN/LIN input polarity matches your MCU firmware before first power-up, or use the IR2132STRPBF for active-high logic; (3) The ITRIP input must be filtered with an RC network (typically 1 kohm + 100 pF) to prevent false tripping from switching noise; the internal comparator threshold is 0.5 V referenced to VSS. Also note that the FAULT output is open-drain and requires an external pull-up resistor to VDD or logic supply.

Compliance Information

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

PbF suffix confirms lead-free / RoHS-compliant per Infineon product page. Not AEC-Q100 qualified - industrial-grade only. Halogen-free status not confirmed from web data. Conflict-minerals compliant per Infineon corporate policy.

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

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Related Components & Terms

Infineon International Rectifier IR2130 IR2130STRPBF IR2132STRPBF IR2130SPBF IRS2330D FAN73832 gate driver IC HVIC three-phase bridge driver high-side gate driver low-side gate driver bootstrap supply SOIC-28 Wide-Body IGBT MOSFET BLDC motor PMSM motor variable-frequency drive (VFD) solar inverter uninterruptible power supply (UPS) PWM dead-time undervoltage lockout (UVLO) dV/dt immunity over-current shutdown RoHS PbF (lead-free)
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