IR2130SPBF - 3-Phase Bridge Driver, 600V, 28-SOIC | Infineon
MPN: IR2130SPBF β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $6.45 | $6.45 |
| 10 | $5.95 | $59.50 |
| 100 | $5.32 | $532.00 |
| 500 | $4.78 | $2,390.00 |
| 1,000 | $4.25 | $4,250.00 |
Drop-in alternatives for IR2130SPBF 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:
IR2130STRPBF
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IR2132S
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IR2233SPBF
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IR2235SPBF
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IRS2453DSTRPBF
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$0.86 / Unit
View Datasheet βIR2130SPBF Maximum Ratings & Electrical Characteristics
| Driver Type | Half-Bridge / 3-Phase Bridge |
| Number of Channels | 3 high-side + 3 low-side |
| Configuration | Inverting |
| Maximum Offset Voltage (High Side) | 600 V |
| Supply Voltage (VCC) | 10 V to 20 V |
| Output Source/Sink Current | 200 mA / 420 mA typical; 500 mA peak |
| Logic Input Compatibility | CMOS/LSTTL down to 2.5 V |
| Propagation Delay (Typ.) | 425 ns |
| Integrated Op-Amp | Yes (ground-referenced current sense) |
| Fault Output | Yes (active-low FAULT pin) |
| Under-Voltage Lockout | Yes (VCC and VBS) |
| Operating Temperature | -40 C to +125 C |
| Package | 28-SOIC (300 mil) |
| Mounting Type | Surface Mount |
| RoHS Status | Compliant (PbF suffix) |
| Lead-Free | Yes |
| MSL Level | 3 (168 hours) |
IR2130SPBF Pin Configuration
| Pin 1 | VCC β Logic and low-side gate drive supply voltage (10-20 V) |
| Pin 2 | HIN1 β Logic input for high-side output 1 (CMOS/LSTTL compatible) |
| Pin 3 | HIN2 β Logic input for high-side output 2 |
| Pin 4 | HIN3 β Logic input for high-side output 3 |
| Pin 5 | LIN1 β Logic input for low-side output 1 |
| Pin 6 | LIN2 β Logic input for low-side output 2 |
| Pin 7 | LIN3 β Logic input for low-side output 3 |
| Pin 8 | FAULT β Active-low fault indicator output (open-drain) |
| Pin 9 | RCIN β Fault timing programming resistor-capacitor input |
| Pin 10 | CAO β Current-sense op-amp output |
| Pin 11 | CA- β Current-sense op-amp inverting input |
| Pin 12 | CA+ β Current-sense op-amp non-inverting input |
| Pin 13 | VSS β Logic ground reference |
| Pin 14 | LO3 β Low-side gate drive output 3 |
| Pin 15 | LO2 β Low-side gate drive output 2 |
| Pin 16 | LO1 β Low-side gate drive output 1 |
| Pin 17 | VS3 β High-side floating supply return 3 (phase node) |
| Pin 18 | HO3 β High-side gate drive output 3 |
| Pin 19 | VB3 β High-side floating supply 3 (bootstrap) |
| Pin 20 | VS2 β High-side floating supply return 2 (phase node) |
| Pin 21 | HO2 β High-side gate drive output 2 |
| Pin 22 | VB2 β High-side floating supply 2 (bootstrap) |
| Pin 23 | VS1 β High-side floating supply return 1 (phase node) |
| Pin 24 | HO1 β High-side gate drive output 1 |
| Pin 25 | VB1 β High-side floating supply 1 (bootstrap) |
| Pin 26 | ITRIP β Current-trip comparator input for overcurrent protection |
| Pin 27 | SD β Shutdown logic input (active-low) |
| Pin 28 | NC β Not connected (per datasheet) |
Safe Operating Area (SOA) & Thermal Characteristics
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
IR2130SPBF is suitable for 6 applications: 3-Phase BLDC / PMSM Motor Drive, AC Induction Motor Variable-Frequency Drive (VFD), Uninterruptible Power Supply (UPS) Inverter, Solar Micro-Inverter, Industrial Servo Amplifier, Appliance Motor Control (HVAC Compressor, Washing Machine).
3-Phase BLDC / PMSM Motor Drive
The IR2130SPBF is purpose-built for 3-phase brushless DC (BLDC) and permanent-magnet synchronous motor (PMSM) drives, where it sits between a 3.3 V or 5 V MCU/DSP and a 600 V-class three-phase MOSFET/IGBT inverter bridge. Its three high-side and three low-side gate-drive channels, matched propagation delays (~425 ns), and integrated deadtime control minimize torque ripple and switching losses in field-oriented control (FOC) loops. The built-in ground-referenced op-amp directly senses shunt-resistor current for closed-loop current control, eliminating an external amplifier stage. Compared to discrete gate-drive optocoupler solutions, the IR2130SPBF reduces BOM count by 8-10 components while improving dV/dt immunity.
Recommended
AC Induction Motor Variable-Frequency Drive (VFD)
The IR2130SPBF drives the 3-phase IGBT bridge in industrial variable-frequency drives (VFDs) for AC induction motors from 0.5 kW to several kW. Its 600 V high-side offset rating handles 230 V and 480 V AC line voltages directly, while the 10-20 V VCC range accepts common 15 V auxiliary rails in industrial control cabinets. The fault output (active-low FAULT pin) and RCIN-programmable fault timing allow direct interface to industrial PLC safety inputs, supporting IEC 61800-5-1 drive functional-safety requirements. Compared to discrete bootstrap driver solutions, the integrated HVIC approach cuts PCB area by 40-50%.
Recommended
Uninterruptible Power Supply (UPS) Inverter
In online UPS systems, the IR2130SPBF drives the 3-phase inverter stage that converts battery DC into 3-phase AC output. Its high-side bootstrap design simplifies isolated-gate-drive circuitry for the upper switches in each half-bridge leg, while the low-side drivers provide direct gate return paths. The integrated current-sense op-amp enables inverter output current limiting and overload protection, critical for UPS load-step response. With 500 mA peak drive current, the IR2130SPBF handles IGBT modules up to ~50 A without external buffers, making it suitable for 5-10 kVA 3-phase UPS designs.
Recommended
Solar Micro-Inverter
Solar micro-inverters that convert a single 30-60 V PV panel output into grid-tie AC benefit from the IR2130SPBF's high-voltage 3-phase capability combined with 2.5 V logic-input compatibility, allowing direct interface to low-voltage microcontrollers without level shifters. The high-side dV/dt immunity (50 V/ns typical) handles the fast-switching transitions required for high-frequency transformer-isolated topologies. The integrated op-amp monitors inverter output current for grid-synchronization and anti-islanding protection per IEEE 1547. Compared to opto-isolated driver solutions, the IR2130SPBF improves long-term reliability in outdoor PV environments.
Recommended
Industrial Servo Amplifier
The IR2130SPBF drives the 3-phase power stage in industrial servo amplifiers controlling precision brushless servo motors for CNC machines, robotics, and automation. Its tightly-matched propagation delays across the six channels (typically within 25 ns of each other) preserve the PWM timing accuracy required for low-cogging, low-ripple servo performance. The FAULT pin and RCIN-programmable fault blanking time allow direct connection to industrial safety-rated stop circuits (STO) per IEC 61800-5-2. The 28-SOIC package with exposed thermal pad handles 1-2 W continuous dissipation without external heatsinking.
Recommended
Appliance Motor Control (HVAC Compressor, Washing Machine)
White-goods and HVAC appliance manufacturers use the IR2130SPBF in 3-phase variable-speed compressor and direct-drive washing-machine motor controllers. The wide operating temperature range (-40 C to +125 C) and integrated fault protection suit the harsh thermal environment inside sealed appliance housings. The 2.5 V logic-input threshold allows direct connection to low-cost appliance microcontrollers without external level shifters. Compared to relay-based motor-reversing circuits, the IR2130SPBF enables silent, efficient variable-speed operation that improves appliance ENERGY STAR ratings by 15-25%.
Recommended
Recommended Products Summary
Engineering reference data for IR2130SPBF β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | IR2130STRPBF | IR2136S | IR2132S | IR2233SPBF | IR2235SPBF | IRS2453DSTRPBF |
|---|---|---|---|---|---|---|---|
| Brand | Infineon | Infineon | Infineon | Infineon | Infineon | Infineon | Infineon |
| Package | 28-SOIC | 28-SOIC - same | 28-SOIC - same | 28-SOIC - same | 28-SOIC - same | 28-SOIC - same | 28-SOIC - same |
| Number of Channels | 3 high-side + 3 low-side | 3 high-side + 3 low-side | 3 high-side + 3 low-side | 3 high-side + 3 low-side | 3 high-side + 3 low-side | 3 high-side + 3 low-side | 3-channel Class D audio driver |
| High-Side Offset Voltage | 600 V | 600 V | 600 V | 600 V | 1200 V | 600 V | 200 V |
| VCC Supply Range | 10 V to 20 V | 10 V to 20 V | 10 V to 20 V | 10 V to 20 V | 12 V to 20 V | 10 V to 20 V | 10 V to 18 V |
| Output Source/Sink Current | 200 mA / 420 mA | 200 mA / 420 mA | 200 mA / 420 mA | 200 mA / 420 mA | 250 mA / 500 mA | 200 mA / 420 mA | 200 mA / 350 mA |
| Logic Input Threshold | 2.5 V (CMOS/LSTTL) | 2.5 V (CMOS/LSTTL) | 2.5 V (CMOS/LSTTL) | 2.5 V (CMOS/LSTTL) | 2.5 V (CMOS/LSTTL) | 2.5 V (CMOS/LSTTL) | 2.5 V |
| Integrated Op-Amp | Yes (current sense) | Yes | Yes | Yes | Yes | Yes | No (audio driver) |
| Propagation Delay (Typ.) | 425 ns | 425 ns | 425 ns | 425 ns | 550 ns | 500 ns | [DATA_NEEDED] |
Key Differentiators
- Integrated current-sense op-amp eliminates external amplifier (vs IRS2184STRPBF)
- Higher current capability in same 28-SOIC footprint (vs IR2136S)
- Pin-compatible 3-phase driver family for design scalability (vs IR2233SPBF)
- Mature, multi-source part with broad industry adoption (vs Newer 6EDL04I06NT)
Design Notes
Bootstrap capacitor sizing is critical for reliable high-side switching. Calculate C_boot using C_boot >= Q_gate / ΞV_boot, where Q_gate is the total gate charge of the high-side MOSFET/IGBT and ΞV_boot is the allowable bootstrap voltage droop (typically 0.1-0.5 V). For a Q_gate = 50 nC IGBT and ΞV_boot = 0.2 V, use at least 250 nF ceramic (X7R) with low ESR; in practice 1-2.2 uF provides margin. Add a small bootstrap resistor (3-10 ohm) to limit inrush current and reduce dV/dt-induced ringing on the VB node.
Keep the high-side floating supply traces (VBx, VSx) as short as possible and route the bootstrap capacitor directly between VBx and VSx with minimal loop area. The VSx traces carry the full phase-node dV/dt (up to 50 V/ns) and must not cross sensitive analog traces such as the CAO/CA+/CA- op-amp signals. Place a 0.1 uF ceramic bypass capacitor within 5 mm of the VCC pin, plus an electrolytic bulk capacitor (10-47 uF) at the supply entry point to absorb the gate-charge current spikes.
Do not exceed the 600 V absolute maximum rating on the high-side offset voltage (VBx to VSS); transients above this rating - common with inductive loads - will permanently damage the IC. Always include a TVS or snubber across the DC bus to clamp bus-voltage transients. Also ensure that the RCIN capacitor and resistor values match the desired fault-clear time (typically 1-10 ms); too short and the system will nuisance-trip on switching noise, too long and overcurrent protection becomes sluggish. Estimated: for a fault-clear time of 1 ms with RCIN = 50 kohm, C_RCIN β 22 nF.
The 28-SOIC package has a thermal resistance (theta_JA) of approximately 75 C/W on a standard JEDEC 4-layer PCB. At continuous 1 W dissipation (typical for 20 kHz switching with 50 nC gate charge), the junction rises 75 C above ambient - derate accordingly or add copper pours under the exposed pad. For continuous operation at full VCC = 20 V with 6 channels switching simultaneously, add a small clip-on heatsink to keep Tj below 125 C in high-ambient-temperature environments.
Compliance Information
PbF suffix in MPN indicates lead-free / RoHS compliant. Not AEC-Q100 qualified - not intended for automotive safety applications.