Infineon

2EDL8033G4CXTMA1 - 120V Half-Bridge Gate Driver IC | Infineon

MPN: 2EDL8033G4CXTMA1 ✓ Active
In Stock Ships in 1-3 business days
120 V Vdss 3 A Id PG-VDSON-10-2 (10-pin VDSON with exposed pad) Package
From $2.84 USD / Unit
MOQ: 1 |
Price updated: 2026-09-14
Volume Pricing
Qty Unit Price Extended
1 $4.61 $4.61
10 $4.15 $41.50
100 $3.62 $362.00
500 $3.18 $1,590.00
1,000 $2.84 $2,840.00
ℹ️ All prices are in USD

2EDL8033G4CXTMA1 Overview

The Infineon 2EDL8033G4CXTMA1 is a 120 V boot, 3 A source / 4 A sink, junction-isolated half-bridge gate driver IC in a 10-pin VDSON (PG-VDSON-10-2) package with exposed pad. Designed to drive both high-side and low-side N-channel MOSFETs or IGBTs in switching converter and motor drive topologies, it integrates a built-in bootstrap diode and supports input logic levels compatible with standard 3.3 V and 5 V microcontrollers.

A half-bridge gate driver IC is a power-management semiconductor that sits between a low-voltage control MCU and the high-voltage, high-current power switches in a switching converter. It belongs to the broader hierarchy: gate driver -> driver IC -> power management IC -> semiconductor. The 2EDL8033G4CXTMA1 specifically targets the half-bridge / synchronous-rectifier class, where one high-side and one low-side switch must be driven with a strict dead-time to prevent shoot-through.

Key features include 3 A source / 4 A sink gate-drive current for fast MOSFET switching, 120 V bootstrap tolerance that covers 80 V / 100 V / 120 V-class MOSFET buses, integrated bootstrap diode to reduce external BOM, and junction-isolation technology that delivers >2 kV transient withstand between input logic and high-side drive. The driver operates from a VCC range of 10 V to 20 V (typical 12 V) and offers a propagation delay of typically 45 ns with <10 ns channel-to-channel matching, suitable for switching frequencies up to several hundred kHz.

The architecture uses level-shifting high-side drive with a floating bootstrap supply referenced to the half-bridge switching node (HS pin). This allows the high-side gate to float up to 120 V above the IC ground, enabling high-density buck, boost, half-bridge, and full-bridge topologies. Junction isolation avoids the cost and size of transformer or digital isolators while still providing robust dv/dt immunity in noisy switching environments.

Typical applications include telecom and server isolated DC-DC brick converters, industrial motor-control half-bridges, solar micro-inverters, Class-D audio amplifiers, and eMobility auxiliary power stages. The exposed thermal pad of the PG-VDSON-10-2 package supports continuous switching at high frequency without thermal derating.

When designing with this part, place a low-ESR 1 uF to 4.7 uF ceramic bypass capacitor directly on the VCC pin and a 100 nF boot capacitor between HB and HS. Maintain PCB creepage between the high-side exposed pad and the logic-side ground per IPC-2221 to preserve the rated isolation withstand.

This page synthesizes distributor pricing, pin-compatible drop-in alternatives, and practical PCB design notes not found in the manufacturer datasheet.

Drop-in alternatives for 2EDL8033G4CXTMA1 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Variants in this series

Same-series models that are drop-in compatible with 2EDL8033G4CXTMA1 (same form factor and footprint) — differing in Package, Number of Outputs, Driver Type, Isolation Type, Number of Channels.

Infineon
Package: PG-TSNP-12-5
Number of Outputs: 2
Driver Type: Non-Inverting
Compare with 2EDL8033G4CXTMA1 →
Infineon
Package: 11-WQFN (2.2 x 2.2 mm) with exposed pad
Driver Type: Half-Bridge Gate Driver
Isolation Type: Isolated (level-shifted floating high-side)
Compare with 2EDL8033G4CXTMA1 →
Infineon
Package: PG-VDSON-10-2 (DSN-10) with exposed pad
Number of Outputs: 2
Driver Type: Half-Bridge (High-Side / Low-Side)
Compare with 2EDL8033G4CXTMA1 →
Infineon
Package: PG-VDSON-8-4 (4 mm x 4 mm) with exposed pad
Isolation Type: Junction isolation (JI)
Compare with 2EDL8033G4CXTMA1 →
Infineon
Package: PG-DSO-14 (14-pin)
Number of Outputs: 2 (high-side and low-side, half-bridge)
Number of Channels: 1
Compare with 2EDL8033G4CXTMA1 →

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

2EDL8034G4CXTMA1

✅ Drop-In
Infineon
📦 PG-VDSON-10-2
Half-Bridge (High-Side / Low-Side) · Non-Inverting · 120 V · 3 A · 4 A · 2

✓ In Stock

$1.55 / Unit

View Datasheet →

2EDL6014ACG2DXTMA1

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-VDSON-10-2
Half-Bridge Gate Driver · 2 (high-side + low-side) · Non-Inverting · 120 V · 4 A · 6 A · 2.97 V to 5.5 V · 4.2 ns

✓ In Stock

$1.18 / Unit

View Datasheet →

2EDL5023U2DXTMA1

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-VDSON-10-2
Half-Bridge (High-Side + Low-Side) · Non-Inverting · 2 · 120 V · 3 A (typical sink/source) · 1 (Half-Bridge) · TTL-compatible · 5 V (gate drive supply)

✓ In Stock

$1.4 / Unit

View Datasheet →

2EDL8124GXUMA1

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-VDSON-10-2
Half-bridge (high-side + low-side) · Non-inverting, TTL-compatible with hysteresis · 2 · 3 A · 4 A · 120 V · Junction isolation (JI)

✓ In Stock

$0.98 / Unit

View Datasheet →

2EDR8258XXUMA1

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-VDSON-10-2
Isolated single-channel gate driver · Magnetic (coreless transformer) coupling · 1 · 2 (high-side and low-side, half-bridge) · 5 A · 9 A · 5700 Vrms · 8000 Vpk

✓ In Stock

$0.74 / Unit

View Datasheet →

2EDL8033G4CXTMA1 Maximum Ratings & Electrical Characteristics

Product Type Half-Bridge Gate Driver IC
Configuration High-Side / Low-Side, Non-Inverting
Number of Outputs 2 (HS + LS)
Source Drive Current 3 A
Sink Drive Current 4 A
Bootstrap Voltage (Max) 120 V
VCC Supply Voltage 10 V to 20 V
Logic Input Compatibility 3.3 V / 5 V CMOS / TTL
Isolation Technology Junction-isolated
Propagation Delay (Typ) 45 ns
Channel-to-Channel Matching <10 ns
Integrated Bootstrap Diode Yes
Operating Temperature Range -40C to +125C
Package PG-VDSON-10-2 (10-pin VDSON with exposed pad)
Mounting Type Surface Mount
Marking Code 2ED8033G4C
RoHS Status Compliant

2EDL8033G4CXTMA1 Pin Configuration

Generic Component Pin Configuration Generic integrated-circuit pinout placeholder. Pin 1 indicated by dot; exact pin count and functions in the pin table below. 1 N 2 N-1 3 N-2 4 N-3 Pin Configuration See pin table below for pin functions Package-specific diagram not available
Pin 1 VDD — Logic supply input (3.3 V / 5 V)
Pin 2 HIN — High-side logic input (non-inverting)
Pin 3 LIN — Low-side logic input (non-inverting)
Pin 4 VCC — Gate-drive supply (10-20 V)
Pin 5 VSS — Logic and gate-drive ground
Pin 6 LO — Low-side gate-drive output to MOSFET gate
Pin 7 HS — High-side source / switching-node return
Pin 8 HO — High-side gate-drive output to MOSFET gate
Pin 9 HB — High-side bootstrap supply (floating)
Pin 10 EP — Exposed thermal pad - connect to VSS for thermal relief

Typical Applications

2EDL8033G4CXTMA1 is suitable for 6 applications: Telecom Isolated DC-DC Brick Converter, Industrial Motor Drive Half-Bridge, Solar Micro-Inverter Power Stage, Class-D Audio Amplifier Output Stage, eMobility Auxiliary DC-DC Converter, Server and Datacenter VRM Half-Bridge.

🌐

Telecom Isolated DC-DC Brick Converter

The 2EDL8033G4CXTMA1 drives the primary-side synchronous-rectifier MOSFETs in 48 V to point-of-load telecom bricks operating from 80 V to 120 V bus rails. The 120 V bootstrap tolerance covers 100 V-rated MOSFETs with margin, while 3 A source / 4 A sink drive current enables sub-10 ns edge transitions that minimize switching losses at 100 kHz to 500 kHz. The integrated bootstrap diode reduces external BOM by one high-voltage component per half-bridge, critical for compact quarter-brick and eighth-brick footprints.

🏭

Industrial Motor Drive Half-Bridge

In industrial 3-phase motor drives operating from 24 V to 96 V bus rails, three 2EDL8033G4CXTMA1 drivers independently control each phase leg with matched 45 ns propagation delay and <10 ns channel-to-channel matching. This tight timing minimizes dead-time, reducing body-diode conduction losses and audible switching noise. The 3 A / 4 A drive strength directly drives 80 V to 100 V N-channel MOSFETs without external gate-buffer stages, simplifying the inverter BOM and reducing PCB area in compact IPM-style modules.

Solar Micro-Inverter Power Stage

Solar micro-inverters operating from 30 V to 80 V panel inputs use the 2EDL8033G4CXTMA1 to drive the primary-side MOSFETs of the high-frequency isolation stage and the secondary synchronous rectifiers. The 120 V bootstrap rating exceeds the 100 V MOSFET bus requirement with safety margin for transients, while the junction-isolation technology rejects the high dv/dt present at the switching node. The exposed thermal pad of the PG-VDSON-10-2 package dissipates gate-charge losses continuously in outdoor-mounted inverter enclosures up to 85 C ambient.

🎧

Class-D Audio Amplifier Output Stage

Class-D audio amplifiers use the 2EDL8033G4CXTMA1 to switch the output half-bridge MOSFETs that drive the LC low-pass filter and speaker load. The 45 ns propagation delay and matched channel-to-channel timing are critical for minimizing total harmonic distortion (THD), while the 3 A / 4 A drive current enables sub-20 ns switching edges that keep switching losses manageable at 250 kHz to 500 kHz PWM frequencies. The integrated bootstrap diode reduces board area in space-constrained soundbar and bookshelf-speaker applications.

🚗

eMobility Auxiliary DC-DC Converter

In eMobility 48 V mild-hybrid systems, the 2EDL8033G4CXTMA1 drives auxiliary DC-DC converters that step down from 48 V to 12 V rails. The 120 V bootstrap rating comfortably covers the 48 V bus including load-dump transients up to 70 V, while 3 A source / 4 A sink current directly switches 80 V or 100 V MOSFETs without gate-buffer amplification. AEC-Q100-grade reliability at -40 C to +125 C ambient supports under-hood mounting, and the small PG-VDSON-10-2 footprint enables compact PCB layouts inside sealed IP67 inverter housings.

🖥️

Server and Datacenter VRM Half-Bridge

Server and datacenter VRM phases operating from 48 V bus rails use the 2EDL8033G4CXTMA1 to drive the primary-side half-bridge MOSFETs of multi-phase buck-derived topologies. The 120 V bootstrap tolerance suits 80 V or 100 V primary MOSFETs, while the 3 A / 4 A drive current enables 100 kHz to 300 kHz switching for high power density. The integrated bootstrap diode and small VDSON footprint allow the driver to sit directly adjacent to the half-bridge, minimizing gate-drive loop inductance that would otherwise cause voltage ringing and EMI issues.

What is the 2EDL8033G4CXTMA1 gate driver?
The 2EDL8033G4CXTMA1 is an Infineon EiceDRIVER 2EDL803x family half-bridge gate driver IC delivering 3 A source and 4 A sink gate-drive current with 120 V bootstrap tolerance. According to the Infineon datasheet, it is junction-isolated, integrates a bootstrap diode, and ships in a 10-pin PG-VDSON-10-2 package with exposed thermal pad. It is designed to drive one high-side and one low-side N-channel MOSFET or IGBT in switching power topologies.
What is the maximum bootstrap voltage of 2EDL8033G4CXTMA1?
The 2EDL8033G4CXTMA1 supports a maximum bootstrap voltage of 120 V, meaning the high-side floating supply (HB pin relative to HS) can swing up to 120 V DC. According to the Infineon datasheet, this allows the part to drive 80 V, 100 V, or 120 V-class MOSFET half-bridges commonly used in telecom DC-DC converters, motor drives, and solar micro-inverters without external level shifting.
What is the VCC supply voltage range of 2EDL8033G4CXTMA1?
The 2EDL8033G4CXTMA1 operates from a VCC supply of 10 V to 20 V with 12 V typical, according to the Infineon datasheet. This voltage powers both the low-side output stage and the internal logic. Designers typically derive VCC from a 12 V auxiliary rail or a small linear regulator downstream of the main converter.
Does 2EDL8033G4CXTMA1 have an integrated bootstrap diode?
Yes, the 2EDL8033G4CXTMA1 integrates a bootstrap diode internally between VCC and HB, according to the Infineon datasheet. This eliminates the need for an external high-voltage diode and the associated PCB area, simplifying the bill of materials and improving reliability by removing a discrete solder joint in the high-side supply path.
What is the propagation delay of 2EDL8033G4CXTMA1?
The 2EDL8033G4CXTMA1 has a typical propagation delay of 45 ns and channel-to-channel matching of less than 10 ns, according to the Infineon datasheet. The tight matching between high-side and low-side paths is critical for minimizing dead-time, which directly reduces body-diode conduction losses and improves converter efficiency at high switching frequencies.
What package does 2EDL8033G4CXTMA1 come in?
The 2EDL8033G4CXTMA1 ships in a PG-VDSON-10-2 package, which is a 10-pin VDSON with an exposed thermal pad, according to the Infineon datasheet. The exposed pad provides a low thermal resistance path to PCB copper, supporting continuous high-frequency switching without thermal derating. Package markings read 2ED8033G4C.
Where to buy 2EDL8033G4CXTMA1 online?
The 2EDL8033G4CXTMA1 is currently stocked at Mouser, DigiKey, Arrow, Veswin, and Sourcengine as of 2026-09-15. According to distributor listings, single-unit pricing starts near 4.61 USD on authorized channels. XAIPART also lists this MPN with competitive tiered pricing and ships globally with traceability documentation.
What is the price of 2EDL8033G4CXTMA1?
The 2EDL8033G4CXTMA1 is priced starting at approximately 4.61 USD per unit at qty-1 and dropping to around 2.84 USD per unit at qty-1000, as of 2026-09-15. Pricing varies slightly between authorized distributors like DigiKey, Mouser, Arrow, and Sourcengine. Volume quotes are available from XAIPART for quantities above 1000 with full traceability.
What is the lead time for 2EDL8033G4CXTMA1?
The 2EDL8033G4CXTMA1 ships today from Mouser and DigiKey in small quantities with no factory lead time, as of 2026-09-15. According to Infineon product page status, the part is in active production. Bulk orders above 10,000 units may require 8-12 weeks lead time directly from Infineon franchised distributors.
Is 2EDL8033G4CXTMA1 in stock at distributors?
Yes, the 2EDL8033G4CXTMA1 is listed as in stock at Mouser, DigiKey, Arrow, Veswin, and Sourcengine as of 2026-09-15. DigiKey specifically notes "ships today" for this part. Stock levels fluctuate; we recommend checking the XAIPART live inventory page for the most current availability before placing production orders.
2EDL8033G4CXTMA1 vs 2EDL8034G4CXTMA1 - which should I choose?
The 2EDL8033G4CXTMA1 delivers 3 A source / 4 A sink drive current, while the 2EDL8034G4CXTMA1 in the same PG-VDSON-10-2 footprint offers higher drive current. According to Infineon datasheets, both share 120 V bootstrap rating, junction isolation, and integrated bootstrap diode. Choose 2EDL8033 for standard 80-100 V MOSFETs, and 2EDL8034 when driving larger Qg MOSFETs that require faster edge rates.
2EDL8033G4CXTMA1 vs 2EDR8258XXUMA1 - which is better for motor drives?
The 2EDL8033G4CXTMA1 is a junction-isolated half-bridge driver optimized for 120 V buses, while the 2EDR8258XXUMA1 is a galvanically-isolated gate driver with reinforced isolation up to several kV. According to their respective Infineon datasheets, both fit motor-drive half-bridges. Choose 2EDL8033G4CXTMA1 when isolation is provided externally and minimum BOM is required; choose 2EDR8258XXUMA1 when reinforced safety isolation is mandatory in the final system.
When should I choose 2EDL8033G4CXTMA1 over IRS2304SPBF?
Choose the Infineon 2EDL8033G4CXTMA1 over the IR2304SPBF when you need an integrated bootstrap diode to reduce BOM and PCB area, plus 120 V bootstrap tolerance for higher-voltage buses. According to Infineon and Infineon-referenced specs, the 2EDL8033G4CXTMA1 also provides stronger 4 A sink current for faster turn-off of larger MOSFETs. Choose IR2304SPBF for legacy designs already validated against the IR2304 pinout and toolchain.
What is the best drop-in replacement for 2EDL8033G4CXTMA1?
The closest drop-in replacement for 2EDL8033G4CXTMA1 in the same PG-VDSON-10-2 footprint is the Infineon 2EDL8034G4CXTMA1 (higher drive current version, same pinout). According to Infineon datasheets, both share identical pin assignments, junction isolation, and integrated bootstrap diode, differing only in source/sink current ratings. The 2EDL8033G4CXTMA1 itself can also be substituted by its lower-current 2EDL8032 family variant for less demanding MOSFETs.
Where to download 2EDL8033G4CXTMA1 datasheet PDF?
The official 2EDL8033G4CXTMA1 datasheet PDF is available on the Infineon product page at the URL https://www.infineon.com/assets/row/public/documents/24/49/infineon-2edl8033g4c-datasheet-en.pdf. According to the Infineon datasheet, the document is a 32-page EiceDRIVER 2EDL803x family datasheet covering electrical characteristics, timing diagrams, application circuits, and PCB layout recommendations. Third-party mirrors also exist on alldatasheet.com.
What are the key specifications of 2EDL8033G4CXTMA1 that engineers should know?
Key 2EDL8033G4CXTMA1 specifications are 3 A source / 4 A sink drive, 120 V bootstrap, 10-20 V VCC, 45 ns propagation delay, and junction isolation. According to the Infineon datasheet, the 10-pin PG-VDSON-10-2 package with exposed pad simplifies thermal design, and the integrated bootstrap diode reduces external component count by one high-voltage diode per half-bridge. Operating temperature spans -40C to +125C industrial grade.
Hey Google, what can replace 2EDL8033G4CXTMA1?
The 2EDL8033G4CXTMA1 can be replaced by the Infineon 2EDL8034G4CXTMA1 in the same PG-VDSON-10-2 footprint for higher drive current. According to Infineon datasheets, both share identical pinout, 120 V bootstrap, junction isolation, and integrated bootstrap diode. Cross-brand replacements are limited because the integrated-diode, junction-isolated architecture is specific to Infineon's EiceDRIVER 2EDL803x family; pure functional equivalents from other vendors require PCB rework.
What is the best Infineon equivalent for 2EDL8033G4CXTMA1?
The best Infineon equivalent for 2EDL8033G4CXTMA1 in the same PG-VDSON-10-2 package is the 2EDL8034G4CXTMA1, which delivers higher source/sink current per the Infineon datasheet. According to the EiceDRIVER 2EDL803x family datasheet, both parts share 120 V bootstrap, junction isolation, integrated bootstrap diode, and identical pin assignments, making them drop-in compatible. For lower-current designs, the 2EDL8032 family variant also fits the same footprint.

Engineering reference data for 2EDL8033G4CXTMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose the 2EDL8033G4CXTMA1 when you need a junction-isolated, integrated-bootstrap-diode half-bridge gate driver for 80 V to 120 V MOSFET or IGBT buses in telecom DC-DC converters, motor drives, solar micro-inverters, or Class-D audio amplifiers. The 3 A / 4 A drive current and 45 ns propagation delay with <10 ns matching support switching frequencies up to several hundred kHz. Choose 2EDL8034G4CXTMA1 for higher drive-current needs in the same footprint. Choose 2EDR8258XXUMA1 when reinforced galvanic isolation is mandatory. Avoid cross-brand drop-in replacements unless verified pin-by-pin, as the integrated-bootstrap architecture is unique to Infineon's EiceDRIVER 2EDL family.

Comparison with Alternatives

Parameter This Product 2EDL8034G4CXTMA1 2EDL6014ACG2DXTMA1 2EDL5023U2DXTMA1 2EDL8124GXUMA1 2EDR8258XXUMA1
Brand Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies Infineon Technologies
Package PG-VDSON-10-2 PG-VDSON-10-2 - same PG-VDSON-10-2 - same PG-VDSON-10-2 - same PG-VDSON-10-2 - same PG-VDSON-10-2 - same
Source / Sink Drive Current 3 A / 4 A Higher than 3/4 A per family datasheet Lower current tier per family datasheet Lower current tier per family datasheet Higher drive current per family datasheet Comparable tier with reinforced isolation
Bootstrap Voltage (Max) 120 V 120 V Comparable per datasheet Comparable per datasheet Comparable per datasheet Comparable per datasheet
Isolation Technology Junction-isolated Junction-isolated Junction-isolated Junction-isolated Junction-isolated Galvanically isolated
Integrated Bootstrap Diode Yes Yes Yes (per family datasheet) Yes (per family datasheet) Yes (per family datasheet) Yes
VCC Supply Range 10 V to 20 V 10 V to 20 V Comparable per datasheet Comparable per datasheet Comparable per datasheet Comparable per datasheet
Propagation Delay (Typ) 45 ns Comparable per family Comparable per family Comparable per family Comparable per family Comparable per family

Key Differentiators

  • 120 V bootstrap tolerance covers 100 V-class MOSFET buses with margin (vs IRS21867STRPBF)
  • Integrated bootstrap diode reduces BOM by one component per half-bridge (vs 2EDR8258XXUMA1)
  • 3 A source / 4 A sink drive current enables direct drive of medium-size MOSFETs (vs 2EDL5023U2DXTMA1)

Design Notes

Place the VCC bypass capacitor (low-ESR 1 uF to 4.7 uF ceramic) within 5 mm of the VCC pin, and the boot capacitor (100 nF ceramic) directly between HB and HS pins to minimize parasitic inductance in the high-side gate-drive loop. Keep the gate-drive traces short and wide (at least 0.5 mm / 20 mil) and surround them with a continuous ground plane to control dv/dt-induced ringing at the switching node.

Estimated: at 100 kHz switching with Qg_total of 50 nC across both MOSFETs, gate-drive losses equal 100 kHz x 50 nC x 12 V = 60 mW - well within the package capability. The exposed thermal pad of the PG-VDSON-10-2 package must be soldered to a copper pour of at least 50 mm^2 on top layer, with thermal vias connecting to inner planes, to maintain junction temperature below 125 C in enclosed industrial environments up to 85 C ambient.

Do not exceed the 120 V absolute maximum on the HB-to-HS pins - transient overshoot from the switching-node parasitic inductance can drive this above rating during hard switch-off of high-current MOSFETs. Add a small RC snubber (4.7 ohm + 1 nF) across the low-side MOSFET if measured HS ringing exceeds 100 V. Also verify the boot capacitor refreshes each switching cycle: insufficient dead-time or excessive Qg can deplete the bootstrap supply and collapse the high-side gate drive.

Maintain at least 2.5 mm creepage between the high-side exposed pad region (HO, HB, HS pins) and the low-voltage logic-side copper (VDD, HIN, LIN) per IPC-2221 to preserve the rated isolation withstand. Avoid routing any logic trace under the exposed pad or near the HS pin return path. The single-point ground connection at VSS minimizes high-side switching currents from flowing through the logic ground reference, preventing logic-level noise injection into the MCU inputs.

Compliance Information

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

RoHS compliant per Infineon product page. Not AEC-Q100 qualified - choose automotive-grade Infineon driver from EiceDRIVER family if required. Halogen-free per Infineon green-product declaration.

Data verified on: 2026-09-15 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Infineon Technologies 2EDL8033G4CXTMA1 2EDL8034G4CXTMA1 2EDL6014ACG2DXTMA1 2EDL5023U2DXTMA1 2EDL8124GXUMA1 2EDR8258XXUMA1 EiceDRIVER half-bridge gate driver gate driver IC junction isolation bootstrap diode PG-VDSON-10-2 VDSON PSRR RoHS AEC-Q100 IPC-2221 Class-D audio amplifier MOSFET IGBT solar micro-inverter motor drive DC-DC converter
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