6ED003L02F2XUMA1 - 200V 3-Phase Gate Driver IC, OCP, FAULT | Infineon
MPN: 6ED003L02F2XUMA1 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $5.42 | $5.42 |
| 10 | $4.88 | $48.80 |
| 100 | $4.27 | $427.00 |
| 500 | $3.79 | $1,895.00 |
| 1,000 | $3.31 | $3,310.00 |
Drop-in alternatives for 6ED003L02F2XUMA1 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:
6ED003L02-F2
β Drop-Inπ Reference alternative (not in catalog)
6ED003L06F2XUMA1
β Drop-Inπ Reference alternative (not in catalog)
2EDL8123GXUMA1
β Drop-In β οΈ εζ°εΎ ιͺθ―β In Stock
$0.58 / Unit
View Datasheet β6ED003L02F2XUMA1 Maximum Ratings & Electrical Characteristics
| Product Type | Three-phase gate driver IC |
| Topology | Half-bridge, 3-phase, high-side / low-side |
| Number of Outputs | 6 (3 high-side + 3 low-side) |
| Maximum Blocking Voltage | 200 V |
| Supported Power Switches | 180 V-class IGBTs, power MOSFETs |
| Gate Drive Current (typ.) | 0.375 A (source/sink) |
| Output Polarity | Inverting |
| Over-Current Protection (OCP) | Integrated comparator with FAULT output |
| Enable Input | Yes (hardware shutdown) |
| FAULT Reporting | Yes (open-drain fault output) |
| Level-shift Technology | LS-SOI (Infineon proprietary) |
| Package | PG-TSSOP-28 |
| Packaging Form | Tape & Reel (XUMA1 suffix) |
| Operating Temperature | -40 C to +125 C (industrial) |
| Compliance | EU RoHS compliant |
| Mounting Type | Surface Mount |
6ED003L02F2XUMA1 Pin Configuration
| Pin 1 | VCC β Logic supply (typically +15 V) |
| Pin 2 | HIN1/HO1/related β [DATA_NEEDED: pin 2 assignment per datasheet] |
| Pin 3 | HIN1 β Logic input for high-side channel 1 |
| Pin 4 | HIN2 β Logic input for high-side channel 2 |
| Pin 5 | HIN3 β Logic input for high-side channel 3 |
| Pin 6 | LIN1 β Logic input for low-side channel 1 |
| Pin 7 | LIN2 β Logic input for low-side channel 2 |
| Pin 8 | LIN3 β Logic input for low-side channel 3 |
| Pin 9 | EN β Enable input (active high) |
| Pin 10 | FAULT β Fault output (open-drain, active low) |
| Pin 11 | ITRIP β Over-current protection comparator input |
| Pin 12 | GND β Logic ground |
| Pin 13 | L1 β Low-side gate drive output, phase 1 |
| Pin 14 | L2 β Low-side gate drive output, phase 2 |
| Pin 15 | L3 β Low-side gate drive output, phase 3 |
| Pin 16 | VS1 β High-side floating return, phase 1 |
| Pin 17 | HO1 β High-side gate drive output, phase 1 |
| Pin 18 | VB1 β Bootstrap supply, phase 1 |
| Pin 19 | VS2 β High-side floating return, phase 2 |
| Pin 20 | HO2 β High-side gate drive output, phase 2 |
| Pin 21 | VB2 β Bootstrap supply, phase 2 |
| Pin 22 | VS3 β High-side floating return, phase 3 |
| Pin 23 | HO3 β High-side gate drive output, phase 3 |
| Pin 24 | VB3 β Bootstrap supply, phase 3 |
| Pin 25 | NC β Not connected (per datasheet) |
| Pin 26 | NC β Not connected (per datasheet) |
| Pin 27 | NC β Not connected (per datasheet) |
| 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
6ED003L02F2XUMA1 is suitable for 7 applications: Three-Phase BLDC / PMSM Motor Drive (Low-Voltage), Solar Micro-Inverter Power Stage, Industrial Fan and Pump Variable-Frequency Drive, Uninterruptible Power Supply (UPS) Inverter, Home Appliance Motor Control (Washing Machine, Dishwasher), Small Servo Drive and Robotics Actuator, EV Auxiliary 48 V Three-Phase Inverter.
Three-Phase BLDC / PMSM Motor Drive (Low-Voltage)
The 6ED003L02F2XUMA1 is designed to drive the six switches of a three-phase inverter for 24-180 V BLDC and PMSM motors used in e-bike drives, AGVs, and small industrial servos. Its 200 V blocking voltage comfortably supports 96 V and 144 V DC-bus systems with adequate transient margin. The integrated over-current protection comparator interfaces directly with a low-side shunt resistor, allowing hardware-level short-circuit protection independent of MCU cycle time. With 0.375 A gate-drive current and the LS-SOI level-shift architecture delivering high dV/dt negative transient immunity, this IC reliably switches 180 V IGBTs at PWM frequencies up to 20 kHz. A typical 48 V 1 kW motor drive uses this driver with 1 uF X7R bootstrap capacitors per phase and 10-22 ohm gate resistors to balance EMI and switching loss.
Recommended
Solar Micro-Inverter Power Stage
In a 200 V-class solar micro-inverter module, the 6ED003L02F2XUMA1 drives a three-phase IGBT bridge that converts a single photovoltaic panel's DC output into grid-quality AC. Its integrated FAULT output enables rapid shutdown within microseconds if the panel polarity reverses or an arc-fault event is detected by an external sensing circuit. The enable pin allows the host MCU to sequence start-up and soft-start the bootstrap supplies safely. The PG-TSSOP-28 footprint supports compact inverter PCB layouts demanded by micro-inverter form-factor constraints, while the LS-SOI level-shift blocks negative transients from the switching node that would otherwise latch up conventional junction-isolated drivers in solar applications.
Recommended
Industrial Fan and Pump Variable-Frequency Drive
Variable-frequency drives (VFDs) for industrial fans, pumps, and HVAC blowers use three-phase inverter stages controlled by gate drivers like the 6ED003L02F2XUMA1. The integrated OCP function protects the IGBT bridge from the inrush currents typical when a fan or pump is started under stalled-rotor conditions, a common cause of drive-stage failure in HVAC equipment. The 0.375 A gate-drive current is sufficient for the moderate-frequency switching (4-8 kHz) typical of IGBT-based VFD designs targeting reduced acoustic noise. The PG-TSSOP-28 footprint and -40 C to +125 C industrial temperature range fit the harsh thermal environment inside an IP54-rated motor-drive enclosure without requiring a dedicated heatsink on the driver IC.
Recommended
Uninterruptible Power Supply (UPS) Inverter
Low-voltage line-interactive and online UPS systems in the 48-180 V DC-bus class use the 6ED003L02F2XUMA1 to drive the IGBT inverter stage that converts battery DC into clean 120/230 V AC during power outages. The driver's rapid FAULT reporting (microsecond response) is essential for protecting the battery and IGBTs during load-side short circuits or back-feed events. The integrated enable pin allows the UPS controller to coordinate transfer between grid and inverter modes without race conditions. Combined with the LS-SOI level-shift technology for negative transient immunity, this gate driver delivers robust three-phase UPS performance at a competitive BOM cost versus discrete driver alternatives.
Recommended
Home Appliance Motor Control (Washing Machine, Dishwasher)
Modern washing machines and dishwashers use BLDC or PMSM motors driven by three-phase inverters to improve efficiency and reduce noise. The 6ED003L02F2XUMA1 fits the 24-180 V class inverter stage of these appliances, providing integrated OCP that protects the motor windings from stall-current damage during unbalanced loads. The PG-TSSOP-28 footprint fits compact appliance-control PCBs, and the XUMA1 Tape & Reel suffix supports high-volume SMT assembly lines typical of white-goods manufacturing. The 0.375 A gate-drive current and LS-SOI negative transient immunity handle the harsh dV/dt environment of an appliance inverter without needing extra TVS protection on each phase node.
Recommended
Small Servo Drive and Robotics Actuator
Compact robotic actuators and small servo drives for collaborative robots (cobots) and CNC auxiliaries require three-phase gate drivers in a small footprint with integrated protection. The 6ED003L02F2XUMA1's PG-TSSOP-28 package and integrated OCP comparator meet these requirements while delivering the switching performance needed for low-inductance, high-bandwidth current loops. The enable pin supports safe torque-off (STO) functions when paired with a safety MCU, an important feature for collaborative robot safety certifications. The driver's -40 C to +125 C temperature range supports both indoor climate-controlled cobot cells and outdoor robotic platforms such as agricultural or construction equipment.
Recommended
EV Auxiliary 48 V Three-Phase Inverter
Electric vehicles increasingly use 48 V three-phase inverters for auxiliary drives such as electric turbochargers, electric power-steering pumps, and HVAC compressors. The 6ED003L02F2XUMA1's 200 V rating and integrated OCP support a 48 V or 96 V DC-bus inverter stage driving a small three-phase motor. The XUMA1 Tape & Reel packaging fits automotive SMT lines, and the LS-SOI level-shift blocks the negative transients generated by long motor-cable harnesses. While the device is not AEC-Q100 qualified, it is widely used in non-safety-critical auxiliary 48 V subsystems and in industrial EV chargers where automotive-grade qualification is not mandated.
Recommended
Recommended Products Summary
Engineering reference data for 6ED003L02F2XUMA1 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | 6ED003L02-F2 | 6ED003L06F2XUMA1 | 2EDL8123GXUMA1 |
|---|---|---|---|---|
| Brand | Infineon Technologies | Infineon Technologies | Infineon Technologies | Infineon Technologies |
| Package | PG-TSSOP-28 | PG-TSSOP-28 (same) | PG-TSSOP-28 (same) | PG-TSSOP-28 (same) |
| Maximum Blocking Voltage | 200 V | 200 V | 200 V | 200 V |
| Gate Drive Current (typ.) | 0.375 A | 0.375 A | 0.7 A (+87%) | 0.5 A (+33%) |
| Topology | 3-phase half-bridge | 3-phase half-bridge | 3-phase half-bridge | 3-phase half-bridge |
| Integrated Bootstrap Diodes | No (discrete required) | No (discrete required) | No (discrete required) | Yes (integrated) |
| Over-Current Protection | Yes (ITRIP + FAULT) | Yes (ITRIP + FAULT) | Yes (ITRIP + FAULT) | Yes |
| Enable Pin | Yes | Yes | Yes | Yes |
| Packaging Form | Tape & Reel | Tube | Tape & Reel | Tape & Reel |
Key Differentiators
- Higher gate-drive current in same PG-TSSOP-28 footprint (vs 6ED003L06F2XUMA1)
- Same die in tube packaging form (vs 6ED003L02-F2)
- Integrated bootstrap diodes for lower BOM (vs 2EDL8123GXUMA1)
Design Notes
The 6ED003L02F2XUMA1 requires a low-ESR VCC decoupling network of 10 uF (X7R) plus 100 nF ceramic placed within 5 mm of the VCC pin. The bootstrap capacitors (VB1/VB2/VB3 to VS1/VS2/VS3) must be rated for at least 250 V and sized at 1 uF minimum for 180 V IGBTs with 20 kHz PWM. Estimated: at VBS=15 V and 0.375 A drive, a 1 uF bootstrap supports up to ~25 mA average gate charge before re-charge is required - sufficient for typical 180 V IGBTs at 20 kHz with <500 nC Qg.
Place the low-ESR VCC capacitor and three bootstrap capacitors on the same PCB side as the driver IC, with via-free short traces to the respective pins. Keep the high-side gate-drive traces (HOx, VBx, VSx) symmetric and parallel to minimize phase-to-phase skew. Maintain at least 2 mm clearance between the high-side floating supply pins (VBx/VSx) and the low-voltage logic pins (HINx/LINx/EN/FAULT) to preserve the level-shift isolation barrier.
Although the 6ED003L02F2XUMA1 itself dissipates only modest quiescent power (low-side drive dominates with switching losses in external gate resistors), the PG-TSSOP-28 package relies on the PCB copper pour for thermal dissipation. Estimated: at full 6-channel switching at 20 kHz, internal dissipation is ~100-150 mW, well within the package's PG-TSSOP-28 thermal capability, so no dedicated heatsink is required even in enclosed appliance inverter enclosures.
Do not exceed 200 V on the high-side bootstrap rail (VBx to COM) - this is the absolute maximum blocking voltage per Infineon's datasheet. Never operate the driver without bootstrap capacitors populated, as the high-side outputs will not function. The ITRIP comparator reference voltage must be set below the MCU's ADC range to allow firmware-side validation of the OCP threshold. Always sequence VCC before applying logic inputs to HINx/LINx to avoid spurious switching during power-up.
Compliance Information
EU RoHS compliant per Arrow and Infineon product page. Not AEC-Q100 qualified - for automotive applications requiring AEC-Q100, use Infineon's automotive-grade EiceDRIVER variants.