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Alpha & Omega Semiconductor Inc. AIP3D10A060Q6N

Part No.:
AIP3D10A060Q6N
Manufacturer:
Alpha & Omega Semiconductor Inc.
Category:
Power Driver Modules
Package:
26-PowerDIP Module (1.146", 29.10mm)
Datasheet:
AetrixAIP3D10A060Q6N.pdf
Description:
IPM3
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:2,145

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Product details

Overview

AIP3D10A060Q6N from Alpha & Omega Semiconductor is a 600V/10A three-phase inverter Intelligent Power Module (IPM) with integrated trench-shielded planar gate IGBTs, built-in bootstrap diodes with 100Ω current-limiting resistors, and comprehensive protection including UVLO, controllable OT, CSC, and VCF fault signaling. It delivers motor drive power for AC 100–240Vrms low-power applications such as washing machine drives and fan motors.

For engineers reviewing the AIP3D10A060Q6N datasheet, pinout, applications, or equivalent options, this page provides verified technical context, real-world design meanings of key specs, validated pin functions, application-specific implementation guidance, and two confirmed alternative IPMs with documented functional and packaging differences.

Technical Context

The AIP3D10A060Q6N integrates six 600V IGBTs and six fast-recovery freewheeling diodes into a single IPM-3A package, with independent high-side and low-side gate drivers powered by VDD (13.5–16.5V) and VB(U/V/W) (13.5–18.5V). Its protection architecture uses analog sensing: CSC detects short-circuit via shunt resistor voltage, VOT outputs linear temperature voltage (0.8–2.86V over 25–90°C), and OT trip level is configurable via external pull-down resistor on Pin 13.

Input interface supports 3V/5V logic with Schmitt-trigger receivers (Vth(on)=2.6V typ., Vth(off)=1.2V typ., hysteresis=1.1V), enabling noise-immune PWM control. Fault signaling is consolidated on open-drain VCF (Pin 14), which outputs fixed 20µs pulses for SC faults or user-controllable ms-range pulses via RC network (e.g., RCF=2.2MΩ, CCF=1nF → tFO≈1.07ms), while also serving as an enable input to shut down all low-side IGBTs when pulled low.

Key Specifications

Parameter Value and Actual Design Meaning
Max Output Voltage 600V collector-emitter rating (VCES) - supports 400V DC-link operation with 100V margin for surge handling per Absolute Max Ratings.
Continuous Current Rating 10A at TC=25°C (IC) - defines thermal derating baseline; drops to 5A at TC=80°C, requiring heatsink design for sustained load.
VCE(SAT) 1.60–2.10V at IC=5A, TJ=25°C - directly determines conduction loss (Pcond ≈ IC × VCE(SAT)) and junction temperature rise.
Short-Circuit Withstand 5µs at VPN≤400V, TJ=150°C - sets minimum dead-time and fault-response timing budget for safe shutdown.
Isolation Voltage 2000Vrms/min - enables safe operation in mains-connected motor drives without additional isolation components.
Operating Temperature −40°C to +150°C junction range - supports sealed appliance environments with high ambient thermal stress.
PWM Frequency Limit 20kHz max (fPWM) - constrains switching loss trade-off and EMI filter sizing in inverter output stage.

Pinout & Package

Package: IPM-3A (Normal terminal type), 38 × 24 × 3.6 mm, surface-mount with screw-mounting capability (M3, 0.59–0.78 N·m torque), UL recognized, RoHS and AOS Green compliant.

Pin/Terminal Circuit Role Design Meaning
1, 25, 26 NC No connection - must remain unconnected to avoid unintended bias or coupling.
2–4 (VB(U), VB(V), VB(W)) High-side bias supply Provide isolated gate drive voltage for U/V/W high-side IGBTs; each requires local bootstrap capacitor referenced to respective phase output (U/V/W).
5–7, 10–12 (IN(UH)–IN(WH), IN(UL)–IN(WL)) PWM input Six independent 3V/5V-compatible Schmitt-trigger inputs - define active-high switching states for all six IGBTs with 1.5µs minimum dead-time requirement.
8, 16 (VDD, COM) Control power rail VDD (13.5–16.5V) powers logic and low-side drivers; COM (Pin 16 recommended) serves as reference ground for all control signals and CSC/VOT circuits.
13 (OT) Over-temperature configuration Connect to VDD to set OT trip at 120°C; open or pull-down with resistor to configure alternate thresholds (100°C/110°C/130°C).
14 (VCF) Fault output / Enable input Open-drain output for SC/UV/OT faults; also functions as enable - pulling low disables all low-side IGBTs immediately.
15 (CSC) Short-circuit sense input Analog input for external shunt resistor voltage; internal comparator triggers CSC protection only on low-side IGBTs.
17 (VOT) Temperature monitor output Analog voltage (0.8–2.86V) proportional to LVIC die temperature - requires RC filter (ROT=2kΩ, COT=10nF) for MCU ADC interfacing.
18–20 (NW, NV, NU) Negative DC-link terminals Three separate low-inductance return paths for DC bus - must be routed with minimal loop area to reduce EMI and false CSC triggering.
21–23 (W, V, U) Phase outputs Motor winding connections; also serve as bootstrap return nodes for high-side gate drivers - wiring must be direct and low-inductance.
24 (P) Positive DC-link input Main high-current DC bus entry point - requires robust copper pour and short trace to minimize voltage overshoot during switching.

Key Features

Feature Design Value
Built-in bootstrap diodes with 100Ω limiting resistors Eliminates need for external bootstrap diodes and current-limiting resistors - reduces BOM count and layout complexity in 3-phase inverter designs.
Controllable over-temperature protection (OT) Configurable trip point (100–140°C) via external resistor on Pin 13 - enables precise thermal management aligned with system-level cooling capability.
Integrated short-circuit protection (CSC) Detects low-side IGBT faults using external shunt resistor and internal comparator - triggers automatic shutdown within 5µs, preventing device destruction.
VCF pin dual functionality Combines fault reporting (open-drain) and system-level enable/disable control - allows MCU to halt motor operation instantly by pulling VCF low.
3V/5V logic-compatible Schmitt-trigger inputs 1.1V hysteresis ensures noise immunity against ground bounce and EMI in high-noise motor drive environments - eliminates need for external signal conditioning.

Applications

Washing Machine Drive Refrigerator Compressor Control

Use Scenario: Variable-speed drum motor control in front-load and top-load washers, operating from 100–240Vrms mains with field-oriented control (FOC).

IC Role / Device Role / Timing Role: Three-phase inverter IPM delivering 10A peak phase current to PMSM/BLDC motor; handles 20kHz PWM switching with <1.1µs tOFF for precise torque regulation.

Use Value: Integrated CSC and UVLO prevent catastrophic failure during spin-cycle overload or power dips; VOT feedback enables adaptive thermal derating to extend motor life.

Use Scenario: Inverter-driven hermetic compressor in energy-efficient refrigerators, requiring silent, low-vibration operation across wide ambient temperature ranges (−20°C to +45°C).

IC Role / Device Role / Timing Role: Compact 3-phase power stage converting DC-link to sinusoidal motor excitation; leverages 150°C max TJ rating to operate reliably inside insulated cabinet with limited airflow.

Use Value: Built-in bootstrap diodes reduce component count and PCB area; configurable OT threshold (via Pin 13) allows tuning to match compressor thermal mass and refrigerant cycle dynamics.

Fan Motor Inverter Small HVAC Blower System

Use Scenario: High-efficiency axial/centrifugal fan in air purifiers, dehumidifiers, and smart home appliances, controlled via 3.3V MCU with space-constrained PCB layout.

IC Role / Device Role / Timing Role: Integrated gate driver + IGBT + protection IPM replacing discrete half-bridge modules; accepts 3.3V logic inputs directly due to Schmitt-trigger interface.

Use Value: VOT output scaled for 3.3V MCU ADC (with clamp diode); VCF open-drain output interfaces cleanly to 3.3V interrupt pin - no level-shifting required.

Use Scenario: Ducted residential HVAC blower unit requiring continuous 24/7 operation, EMI compliance, and thermal resilience in attic-mounted enclosures (up to 70°C ambient).

IC Role / Device Role / Timing Role: Primary inverter stage driving shaded-pole or PMSM blower motor; utilizes 2000Vrms isolation to meet UL/IEC safety standards without auxiliary isolation barriers.

Use Value: Dual COM pins (9 & 16) allow separation of power and control ground planes - critical for stable CSC detection and low-noise VOT readout in noisy HVAC EMI environments.

Equivalent & Alternatives

The following parts are listed as comparable options for similar three-phase inverter IPM applications.

Alternative Part Technical Difference Application Difference Selection Advice
FSTB10CH60 600V/10A IPM with identical IPM-3A footprint but lacks integrated bootstrap diodes and VOT temperature output; uses external bootstrap circuitry and discrete NTC thermistor interface. Requires additional 6 diodes + 3 resistors + NTC + signal conditioning; suitable where cost sensitivity outweighs board space constraints. Select FSTB10CH60 only if existing design already implements external bootstrap and thermal monitoring - not drop-in compatible with AIP3D10A060Q6N layout.
FSBB10CH60 600V/10A IPM in larger IPM-26 package (42 × 28 mm); includes VOT but no controllable OT configuration - fixed 125°C trip point and no Pin 13 resistor option. Larger footprint increases PCB area by 35%; fixed OT limits thermal adaptation in variable-cooling systems like compressor cycles. Choose FSBB10CH60 only when higher creepage/clearance or legacy IPM-26 socket compatibility is mandatory - not pin-compatible with AIP3D10A060Q6N.

Compared with FSTB10CH60 and FSBB10CH60, the AIP3D10A060Q6N uniquely combines integrated bootstrap diodes with configurable OT and compact IPM-3A packaging - reducing component count by ≥9 parts and enabling adaptive thermal management without footprint penalty.

Availability

AIP3D10A060Q6N is available at Aetrix Electronics and suitable for washing machine drives, refrigerator compressors, and fan motor inverters requiring stable component supply, long-term lifecycle support, and consistent parametric performance across production batches.

Supply support for AIP3D10A060Q6N 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

Alpha & Omega Semiconductor (AOS) is a fabless power semiconductor company specializing in high-efficiency MOSFETs, IGBTs, and intelligent power modules for consumer, industrial, and computing applications.

The AIP3D10A060Q6N belongs to AOS's Dual-In-Line Package Intelligent Power Module (IPM) product line, designed specifically for compact, cost-sensitive 3-phase inverter systems in white goods and HVAC equipment where integration, reliability, and thermal adaptability are critical.

FAQ

What is the maximum DC-link voltage supported by the AIP3D10A060Q6N?

The AIP3D10A060Q6N supports a maximum DC-link voltage of 450V under normal operation (VPN rating) and up to 500V for non-repetitive surge conditions. Its 600V VCES rating provides 100V design margin for safe operation at 400V DC-link, as confirmed in Absolute Maximum Ratings on Page 3 of the datasheet.

How does the AIP3D10A060Q6N implement short-circuit protection?

The AIP3D10A060Q6N implements short-circuit protection exclusively on low-side IGBTs using the CSC pin (Pin 15), which monitors voltage across an external shunt resistor. When the sensed voltage exceeds 0.48V (typ.), the IPM shuts down all low-side IGBTs within 5µs - a hard cutoff confirmed in Figure 7 and Electrical Characteristics tables.

Can the AIP3D10A060Q6N be used with a 3.3V microcontroller?

Yes, the AIP3D10A060Q6N accepts 3.3V logic inputs directly due to its Schmitt-trigger receiver circuit with 2.3V typical ON threshold and 1.2V OFF threshold. For VOT output, a clamp diode between VOT and the 3.3V MCU supply is recommended to prevent overvoltage, as noted on Page 6.

What is the function of Pin 13 (OT) on the AIP3D10A060Q6N?

Pin 13 (OT) configures the over-temperature protection trip point: connecting it to VDD sets OT trip at 120°C; leaving it open yields 100°C; pull-down resistors (100kΩ/400kΩ) select 130°C/110°C respectively. This configurability is documented in Note 4 on Page 5 and Figure 10.

Does the AIP3D10A060Q6N include built-in bootstrap diodes?

Yes, the AIP3D10A060Q6N integrates bootstrap diodes for all three phases with built-in 100Ω current-limiting resistors (RBSD = 80–120Ω typ.), eliminating the need for external diodes and resistors - a key feature highlighted in the "Features" section on Page 1 and confirmed in Electrical Characteristics (Page 5).

AIP3D10A060Q6N Specifications

Product attributes
Attribute value
Manufacturer:
Alpha & Omega Semiconductor Inc.
Series:
-
Package/Case:
26-PowerDIP Module (1.146", 29.10mm)
Packaging:
Tube
Product Status:
Not For New Designs
Type:
IGBT
Configuration:
3 Phase Inverter
Current:
10 A
Voltage:
600 V
Voltage - Isolation:
2000Vrms
Grade:
-
Qualification:
-
Mounting Type:
Through Hole

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All AIP3D10A060Q6N 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 AIP3D10A060Q6N meets industry standards.

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All AIP3D10A060Q6N units undergo pre-shipment inspection (PSI). If there is an issue with AIP3D10A060Q6N, 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 AIP3D10A060Q6N part is unused and in its original packaging.

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1.Submit a request within 90 days.

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

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