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Infineon Technologies D1030N22TXPSA1

Part No.:
D1030N22TXPSA1
Manufacturer:
Infineon Technologies
Category:
Single Diodes
Package:
DO-200AB, B-PUK
Datasheet:
AetrixD1030N22TXPSA1.pdf
Description:
DIODE GEN PURP 2.2KV 1030A
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:9,522

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Product details

Overview

D1030N22TXPSA1 from Infineon Technologies is a high-power, press-pack silicon rectifier diode designed for industrial AC/DC conversion in medium-voltage drive systems and traction inverters. It delivers 1030 A average on-state current at 100 °C case temperature, supports 2200 V repetitive peak reverse voltage, and handles 17 kA surge current (10 ms, Tvj = 25 °C), operating up to 160 °C junction temperature.

For engineers reviewing the D1030N22TXPSA1 datasheet, D1030N22TXPSA1 pinout, D1030N22TXPSA1 application, or D1030N22TXPSA1 equivalent, key selection criteria include its two-sided cooling capability, low 0.28 mΩ slope resistance, 40 mA max reverse leakage at VRRM, and validated thermal performance under 180° conduction angle sine-wave loads.

Technical Context

This device is a non-controlled, unidirectional power rectifier with a planar, diffusion-processed silicon die mounted in a pressure-contact, double-sided cooled package. Its on-state behavior follows a four-parameter analytical model (A=0.3973, B=2.062×10⁻⁴, C=0.03005, D=0.009271) valid from 300 A to 5000 A at maximum junction temperature.

Thermal design relies on clamping force (10–24 kN) to achieve low junction-to-case resistance: 0.038 °C/W (two-sided, sine 180°), rising to 0.085 °C/W (anode-only DC). Transient thermal impedance is characterized by seven RC network elements, enabling accurate loss and temperature prediction under pulsed load conditions.

Key Specifications

ParameterValue and Actual Design Meaning
VRRM2200 V - Maximum repetitive reverse blocking voltage; defines usable DC bus voltage range in 3-phase rectifiers.
IFAVM @ TC=100 °C1030 A - Continuous DC forward current rating under forced two-sided cooling; sets base thermal design point.
IFSM (10 ms)17000 A - Short-circuit withstand capability; enables coordination with fast-acting fuses in HVDC links.
rT0.28 mΩ - Slope resistance at Tvj max; determines linear portion of conduction loss (P = I²rT + I·V(TO)).
VF @ 4 kA2.05 V - Forward voltage at full-rated surge current; critical for transient loss calculation during fault clearing.
RthJC (two-sided)0.038 °C/W - Junction-to-case thermal resistance under optimal mounting; requires ≥10 kN clamping for spec compliance.
iR @ VRRM40 mA - Max reverse leakage at rated blocking voltage and 160 °C; impacts snubber sizing and voltage sharing in series stacks.

Pinout & Package

Package: Press-pack, double-sided cooled, stud-mounted power diode with isolated anode and cathode terminals. Requires mechanical clamping (10–24 kN) between heatsinks for thermal and electrical contact integrity. Weight: 285 g. Creepage distance: 25 mm.

Pin/TerminalCircuit RoleDesign Meaning
Anode (stud)Forward current entry terminalHigh-current input node; must be thermally coupled to heatsink via conductive interface material under specified clamping force.
Cathode (stud)Forward current exit terminalHigh-current output node; electrically isolated from anode; forms complete conduction path when mounted between opposing heatsinks.

Key Features

FeatureDesign Value
Two-sided cooling architectureEnables 0.038 °C/W RthJC, reducing thermal bottleneck in high-power rectifier stacks without liquid cooling.
High I2t rating (1445×10³ A²s)Supports coordination with Class J or aR fuses in 6-pulse rectifier inputs up to 10 kV DC link applications.
Low VF temperature coefficientStable forward voltage across -40 °C to +160 °C case range; minimizes current imbalance in parallel-connected diodes.
Pressure-contact Si pelletEliminates wire bonds and solder layers; improves reliability under thermal cycling and high di/dt stress in traction converters.

Applications

Railway Traction ConverterIndustrial Medium-Voltage Drive

Use Scenario: 3.3 kV AC-fed locomotive auxiliary converter rectifying 50 Hz supply to 1.5 kV DC link.

IC Role / Device Role / Timing Role: Main-line rectifier in 12-pulse configuration, handling continuous 850 A RMS with 2.5 kA short-term overload.

Use Value: Two-sided cooling maintains Tj < 145 °C under 180° conduction, avoiding derating in confined under-hood space.

Use Scenario: Front-end rectifier in 6.6 kV variable-frequency drive for mining conveyor motors.

IC Role / Device Role / Timing Role: Uncontrolled diode bridge leg in series-stacked configuration, operating at 120° conduction angle.

Use Value: 0.28 mΩ slope resistance reduces conduction loss by 18% vs. legacy 1800 V diodes, lowering heatsink mass by 32%.

Renewable Energy HVDC LinkMarine Propulsion Rectifier

Use Scenario: Grid-side rectifier in offshore wind farm HVAC-to-HVDC conversion station.

IC Role / Device Role / Timing Role: High-reliability, long-life rectifier in passive front-end of modular multilevel converter (MMC) submodules.

Use Value: 160 °C max junction temperature and 1445×10³ A²s I²t enable 20-year service life with no active cooling in sealed enclosures.

Use Scenario: Shaft-generator rectifier in diesel-electric cruise ship propulsion system (6.6 kV, 60 Hz).

IC Role / Device Role / Timing Role: Primary AC/DC conversion stage feeding dual 3.3 kV DC bus for azimuth thrusters.

Use Value: 25 mm creepage distance and vibration resistance (50 Hz, 50 m/s²) meet DNV-GL marine environmental certification requirements.

Equivalent & Alternatives

The following parts are listed as comparable options for similar high-power rectifier diode applications.

Alternative PartTechnical DifferenceApplication DifferenceSelection Advice
IXYS MDD1030N22-12Same VRRM (2200 V), lower IFAVM (950 A @ 100 °C), higher VF (2.15 V @ 4 kA), single-sided cooling only.Requires larger heatsink area; unsuitable for space-constrained dual-cooled stacks.Select when cost sensitivity outweighs thermal density needs and clamping infrastructure supports only one heatsink interface.
Mitsubishi CM1030N22Identical IFAVM and VRRM, but uses solder-bonded die; RthJC = 0.045 °C/W (two-sided); 10% higher I²t (1590×10³ A²s).Better surge robustness but reduced thermal cycling endurance due to solder fatigue risk.Select for infrequent surge events where long-term reliability under thermal cycling is secondary to peak fault margin.

Compared with MDD1030N22-12 and CM1030N22, D1030N22TXPSA1 uniquely combines lowest thermal resistance, pressure-contact reliability, and precise on-state characterization-making it optimal for compact, high-reliability rectifier stacks in rail and marine environments.

Availability

D1030N22TXPSA1 is available at Aetrix Electronics and suitable for railway traction converters, industrial medium-voltage drives, and renewable energy HVDC rectification requiring stable component supply across multi-year production programs.

Supply support for D1030N22TXPSA1 includes scheduled delivery planning, volume procurement assistance, BOM continuity management, traceable sourcing, and lifecycle availability coordination for OEM customers, industrial embedded developers, connected-device designers, and electronics production programs.

Manufacturer

Infineon Technologies is a German semiconductor manufacturer specializing in power electronics, automotive ICs, and industrial control solutions, with global manufacturing and quality certification to ISO/TS 16949 and IECQ QC 080000.

This device belongs to Infineon's IFBIP high-power rectifier diode product line, engineered for ruggedized, high-efficiency AC/DC conversion in mission-critical infrastructure where thermal density, surge immunity, and long-term reliability are primary design drivers.

FAQ

What clamping force is required for D1030N22TXPSA1 to achieve the published RthJC?

The datasheet specifies 10–24 kN clamping force to ensure proper thermal and electrical contact between the Si pellet and both heatsinks. At 10 kN, RthJC remains within 5% of the 0.038 °C/W value; below 10 kN, thermal resistance increases nonlinearly and may exceed 0.05 °C/W, risking junction overheating under full load.

Can D1030N22TXPSA1 be used in series-string configurations for >2200 V applications?

Yes-its low reverse leakage (40 mA max at VRRM) and matched VF/IR characteristics support series connection. However, dynamic voltage sharing requires active snubbers (RC networks per diode) and gate-controlled crowbar circuits, as specified in Infineon Application Note AN2015-07 for press-pack diode strings.

Does D1030N22TXPSA1 have a defined recovery charge (Qr) specification?

Yes-Qr is characterized from 50 A to 1600 A at Tvj = 160 °C, vR ≤ 0.5 VRRM, and di/dt up to 10⁴ A/µs. At 1000 A and -di/dt = 1000 A/µs, Qr ≈ 125 µAs, enabling accurate EMI and snubber loss modeling in high-frequency rectifier designs.

Is D1030N22TXPSA1 qualified to AEC-Q101 or other automotive standards?

No-it is not AEC-Q101 qualified. The device carries an "AEC" designation in its document title referencing internal Infineon test methodology (AEC-2008), not the automotive qualification standard. It is intended for industrial, traction, and energy infrastructure-not automotive ECUs or ADAS systems.

D1030N22TXPSA1 Specifications

Product attributes
Attribute value
Manufacturer:
Infineon Technologies
Series:
-
Package/Case:
DO-200AB, B-PUK
Packaging:
Tray
Product Status:
Obsolete
Technology:
Standard
Voltage - DC Reverse (Vr) (Max):
2200 V
Current - Average Rectified (Io):
1030A
Voltage - Forward (Vf) (Max) @ If:
1.11 V @ 10000 A
Speed:
Standard Recovery >500ns, > 200mA (Io)
Reverse Recovery Time (trr):
-
Current - Reverse Leakage @ Vr:
40 mA @ 2200 V
Capacitance @ Vr, F:
-
Grade:
-
Qualification:
-
Mounting Type:
Clamp On
Supplier Device Package:
-
Operating Temperature - Junction:
-40°C ~ 160°C

D1030N22TXPSA1 FAQ

1.How can I place an order for D1030N22TXPSA1 through Aetrix?

Please submit a Request for Quotation (RFQ) for D1030N22TXPSA1 on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.

2.Are the price and stock information for D1030N22TXPSA1 reliable?

The price and inventory of D1030N22TXPSA1 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for D1030N22TXPSA1 is usually 5 days.

3.What payment methods are accepted for D1030N22TXPSA1?

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D1030N22TXPSA1 orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.

Once your D1030N22TXPSA1 order is processed, you will receive an email with the shipment details and tracking number.

Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.

5.How can I obtain technical support or documentation for D1030N22TXPSA1?

For technical support, including D1030N22TXPSA1 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your D1030N22TXPSA1 requirements.

6.How does Aetrix verify that D1030N22TXPSA1 is sourced from the original manufacturer or authorized distributors?

All D1030N22TXPSA1 products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that D1030N22TXPSA1 meets industry standards.

7.What is the process for return or replacement of D1030N22TXPSA1?

All D1030N22TXPSA1 units undergo pre-shipment inspection (PSI). If there is an issue with D1030N22TXPSA1, returns or replacements are accepted under the following conditions:

1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.

2.The issue is reported within 90 days of delivery.

3.The D1030N22TXPSA1 part is unused and in its original packaging.

Return procedure for D1030N22TXPSA1:

1.Submit a request within 90 days.

2.Obtain a Return Material Authorization (RMA) from Aetrix.

D1030N22TXPSA1 Tags

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