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Alpha & Omega Semiconductor Inc. AIP5D10K060Q4S

Part No.:
AIP5D10K060Q4S
Manufacturer:
Alpha & Omega Semiconductor Inc.
Category:
Power Driver Modules
Package:
23-PowerDIP Module (0.748", 19.00mm)
Datasheet:
AetrixAIP5D10K060Q4S.pdf
Description:
IPM5
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:3,885

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Product details

Overview

AIP5D10K060Q4S from Alpha & Omega Semiconductor is a 600V/10A three-phase inverter Intelligent Power Module (IPM) integrating trench-shielded planar-gate IGBTs, high- and low-side HVIC gate drivers, bootstrap diodes with 100Ω integrated current-limiting resistors, UVLO, over-temperature monitoring (VOT), short-circuit protection (CSC), and controllable fault output (VCF). It operates across –40°C to 150°C and targets compact AC motor drives in home appliances.

For engineers reviewing the AIP5D10K060Q4S datasheet, pinout, applications, or equivalent options, this IPM delivers integrated protection logic, 2000Vrms isolation, Schmitt-trigger inputs (3–18V), and precise temperature-sensing capability via VOT for closed-loop thermal management in space-constrained inverter designs.

Technical Context

The AIP5D10K060Q4S integrates six IGBTs and six freewheeling diodes in a 3-phase bridge configuration, driven by isolated high-voltage ICs (HVICs) that enable direct MCU interface without optocouplers. Its control logic includes independent UVLO on both VDD (11.4V trip) and VB(U/V/W) (9.5V trip), plus CSC-based short-circuit detection limited to low-side IGBTs only.

Thermal protection relies on an internal LVIC sensor whose analog voltage output (VOT) scales linearly from 0.77V at 25°C to 2.45V at 80°C with ±3.5°C accuracy; external 10kΩ pull-down enables dedicated temperature monitoring while open-circuit operation activates automatic OT shutdown. Fault signaling occurs via open-drain VCF with configurable pulse width (≥20µs fixed or RC-tunable).

Key Specifications

Parameter Value and Actual Design Meaning
VCES 600V collector-emitter blocking voltage - supports 400V DC-link operation with 50V margin under surge conditions.
IC (continuous) 10A at TC = 25°C - rated output current per phase for continuous conduction mode inverter operation.
VCE(SAT) 1.60–2.00V at IC = 5A, TJ = 25°C - defines conduction loss and thermal rise during normal switching.
tON / tOFF 0.60µs / 1.50µs typical - fast switching enables 20kHz PWM operation with minimal dead-time requirements (≥1.0µs).
VOT output range 0.77–2.55V across 25–80°C - provides linear analog temperature feedback for MCU-based thermal derating.
VCF fault pulse Minimum 20µs fixed width - ensures reliable MCU interrupt capture even under transient SC/UV/OT events.
Rth(j-c) 5.4K/W junction-to-case (IGBT) - enables thermal design with heatsink interface resistance ≤1.6K/W for 150°C max TJ.
VISO 2000Vrms isolation - meets UL1557 safety standard for reinforced insulation between power and control domains.

Pinout & Package

Package: IPM-5A - 23-pin dual-in-line intelligent power module with short lead length, 33.4 × 15 × 3.6 mm footprint, and heat sink-mountable baseplate.

Pin/Terminal Circuit Role Design Meaning
1, 2, 3 (VB(U), VB(V), VB(W)) High-side bias supply inputs Provide floating 15V bias for U/V/W high-side gate drivers; require local bootstrap capacitors and diodes.
4, 15 (COM) Common control ground Reference for all logic inputs and protection circuits; single-point connection recommended to minimize noise coupling.
5–7, 9–11 (IN(UH)–IN(WH), IN(UL)–IN(WL)) PWM input terminals Schmitt-trigger inputs (3–18V compatible); active-high with 2.6V typical ON threshold and 1.2V OFF threshold.
12 (VCF) Open-drain fault output Signals SC/UV/OT faults; requires external 5V pull-up; pulse width configurable via RC network per Figure 5.
13 (CSC) Short-circuit sense input Accepts filtered shunt resistor voltage; triggers low-side shutdown only when >0.48V (typical) is detected.
14 (VOT) LVIC temperature monitor output Analog voltage proportional to die temperature; 10kΩ pull-down enables dedicated sensing; open-circuit enables auto-OT shutdown.
16–18 (NW, NV, NU) Negative DC-link terminals Connect to negative bus rail; separate pins reduce current loop inductance and improve EMI performance.
19–21 (W, V, U) Phase output terminals Deliver switched AC output to motor windings; designed for direct PCB trace routing to load.
22 (P) Positive DC-link input High-current input for main DC bus; must be decoupled with low-ESR capacitor placed near pin.
23 (NC) No connection Not internally bonded; must remain unconnected to avoid mechanical or electrical interference.

Key Features

Feature Design Value
Built-in bootstrap diodes + 100Ω limiting resistors Eliminates external discrete bootstrap components and reduces layout sensitivity to parasitic inductance.
Independent UVLO on VDD and VB(U/V/W) Prevents erratic high-side switching during brown-out by disabling drivers before control supply drops below safe thresholds.
VOT analog temperature output with ±3.5°C accuracy Enables real-time thermal profiling and predictive derating without external sensors or ADC calibration.
Controllable VCF fault output with RC-tunable pulse width Allows system-level fault prioritization: fixed 20µs pulses for SC detection vs. sustained signals for UV/OT recovery monitoring.
2000Vrms isolation rating (UL1557) Meets reinforced insulation requirements for Class I appliances without additional barrier design or creepage/clearance analysis.
Direct MCU interface (no optocouplers required) Reduces BOM count and board area by supporting 3.3V/5V logic levels with integrated level-shifting and noise-immune Schmitt inputs.

Applications

Washing Machine Drive Refrigerator Compressor Control

Use Scenario: Variable-speed inverter drive for drum motor with torque boost during spin cycle and soft-start to reduce mechanical stress.

IC Role / Device Role / Timing Role: Three-phase IGBT inverter stage with integrated gate driving, fault protection, and temperature feedback for closed-loop speed/torque control.

Use Value: Enables energy-efficient <600W peak operation with built-in SC/UV/OT protection eliminating need for external fault logic and reducing firmware complexity.

Use Scenario: Hermetic compressor drive requiring high reliability, low acoustic noise, and stable operation across ambient temperatures from –10°C to 45°C.

IC Role / Device Role / Timing Role: Compact inverter module delivering sinusoidal PWM output with precise thermal monitoring via VOT to prevent refrigerant oil breakdown at elevated case temperatures.

Use Value: Supports 150°C junction limit and 125°C case rating, enabling smaller heatsinks while maintaining 10-year field life under continuous duty cycling.

Fan Motor Inverter Air Conditioner Outdoor Unit

Use Scenario: High-efficiency axial/centrifugal fan control in HVAC systems with demand-based airflow modulation and stall detection.

IC Role / Device Role / Timing Role: Low-power 3-phase inverter with fast 20kHz PWM capability and integrated CSC-based overcurrent detection for rotor lock protection.

Use Value: Delivers <100mW quiescent power (IQDD ≤ 2.1mA) and 0.6µs typical tON, enabling ultra-low standby consumption and rapid response to airflow setpoint changes.

Use Scenario: Outdoor condenser fan and compressor drive operating in harsh environments with wide input voltage (AC 100–240Vrms) and high ambient temperature exposure.

IC Role / Device Role / Timing Role: Robust inverter stage with 2000Vrms isolation, surge-rated 500V supply capability, and dual UVLO protection for stable operation during grid transients.

Use Value: Meets UL1557 recognition and supports 400V DC-link with 100V margin, allowing use with PFC stages and reducing risk of field returns due to overvoltage stress.

Equivalent & Alternatives

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

Alternative Part Technical Difference Application Difference Selection Advice
FSB50550 600V/5A rating, SO-16 package, no integrated bootstrap diodes or VOT output Limited to lower-power fans (<300W); requires external bootstrap circuitry and external temperature sensing Select when cost sensitivity outweighs integration benefits and thermal monitoring is not required.
IRAMS10UP60B 600V/10A, 26-pin DIP, includes VOT but lacks CSC input and has fixed 500ns dead time Supports same motor power class but offers less flexible fault response and no RC-tunable VCF pulse width Choose when legacy IRAM platform compatibility is mandatory and SC detection timing is managed externally.

Compared with FSB50550 and IRAMS10UP60B, the AIP5D10K060Q4S uniquely combines 10A current rating, integrated bootstrap diodes with current-limiting resistors, programmable VCF pulse width, and calibrated VOT output - enabling higher integration density, faster thermal response, and simplified protection firmware in next-generation appliance inverters.

Availability

AIP5D10K060Q4S is available at Aetrix Electronics and suitable for washing machine drives, refrigerator compressors, and HVAC fan motor controls requiring stable component supply, long-term lifecycle support, and RoHS-compliant green manufacturing.

Supply support for AIP5D10K060Q4S 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 AIP5D series targets cost-sensitive, high-volume white goods inverters, emphasizing integration of gate drivers, protection logic, and thermal monitoring in compact DIP packages to reduce system size and bill-of-materials complexity.

FAQ

What is the maximum DC-link voltage supported by the AIP5D10K060Q4S?

The AIP5D10K060Q4S supports a maximum continuous DC-link voltage of 450V (VPN) and a non-repetitive surge rating of 500V (VPN(surge)). Its self-protection supply voltage limit under short-circuit conditions is 400V at TJ = 150°C, making it suitable for 400V nominal DC-bus applications derived from AC 100–240Vrms inputs. Operation beyond these ratings risks permanent damage to the IGBTs or internal protection circuitry.

How does the VOT pin function in temperature monitoring versus over-temperature protection modes?

The AIP5D10K060Q4S VOT pin operates in two distinct modes: when left open, it enables automatic over-temperature shutdown at 130°C (typical OTT) and outputs a fault signal via VCF; when pulled down with a 10kΩ resistor, it disables auto-shutdown and provides a linear analog voltage (0.77–2.55V) corresponding to LVIC temperature from 25°C to 80°C for MCU-based thermal management. Both modes share the same physical pin but differ in external biasing and functional outcome.

Can the AIP5D10K060Q4S be used without external bootstrap components?

Yes - the AIP5D10K060Q4S integrates bootstrap diodes with 100Ω built-in current-limiting resistors on each high-side driver channel (VB(U), VB(V), VB(W)). This eliminates the need for external bootstrap diodes and series resistors, reducing component count and PCB area. However, external bootstrap capacitors (C1 ≥ 10µF electrolytic + C2 = 100nF ceramic) must still be placed close to each VB pin per the recommended layout in Page 10 of the datasheet.

What protection functions are triggered by the CSC pin, and which IGBTs are affected?

The CSC pin on the AIP5D10K060Q4S enables short-circuit protection exclusively for the low-side IGBTs (U, V, W). When the voltage across the external shunt resistor exceeds 0.48V (typical), the protection circuit hard-interrupts all low-side gate drives within 5µs, turning them OFF regardless of input state. High-side IGBTs remain unaffected by CSC-triggered events, and no fault signal is generated unless combined with UV or OT conditions.

Is optical isolation required when interfacing the AIP5D10K060Q4S with a 3.3V microcontroller?

No - the AIP5D10K060Q4S features Schmitt-trigger input receivers compatible with 3–18V logic levels and includes internal 3.5kΩ pull-down resistors. Direct connection to a 3.3V MCU is supported without optocouplers, provided layout guidelines (short traces, single-point COM grounding, and noise filtering per Page 10) are followed. The 2000Vrms isolation barrier resides between power and control domains, not between MCU and IPM logic pins.

AIP5D10K060Q4S Specifications

Product attributes
Attribute value
Manufacturer:
Alpha & Omega Semiconductor Inc.
Series:
-
Package/Case:
23-PowerDIP Module (0.748", 19.00mm)
Packaging:
Tube
Product Status:
Active
Type:
IGBT
Configuration:
3 Phase Inverter
Current:
10 A
Voltage:
600 V
Voltage - Isolation:
2000Vrms
Grade:
-
Qualification:
-
Mounting Type:
Through Hole

AIP5D10K060Q4S FAQ

1.How can I place an order for AIP5D10K060Q4S through Aetrix?

Please submit a Request for Quotation (RFQ) for AIP5D10K060Q4S 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 AIP5D10K060Q4S reliable?

The price and inventory of AIP5D10K060Q4S are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for AIP5D10K060Q4S is usually 5 days.

3.What payment methods are accepted for AIP5D10K060Q4S?

We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for AIP5D10K060Q4S transactions.

Note: Certain payment methods may incur a processing fee.

4.How is shipping managed for AIP5D10K060Q4S?

AIP5D10K060Q4S orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.

Once your AIP5D10K060Q4S 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 AIP5D10K060Q4S?

For technical support, including AIP5D10K060Q4S datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your AIP5D10K060Q4S requirements.

6.How does Aetrix verify that AIP5D10K060Q4S is sourced from the original manufacturer or authorized distributors?

All AIP5D10K060Q4S 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 AIP5D10K060Q4S meets industry standards.

7.What is the process for return or replacement of AIP5D10K060Q4S?

All AIP5D10K060Q4S units undergo pre-shipment inspection (PSI). If there is an issue with AIP5D10K060Q4S, 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 AIP5D10K060Q4S part is unused and in its original packaging.

Return procedure for AIP5D10K060Q4S:

1.Submit a request within 90 days.

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

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