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AUIPS6011R Equivalent & Substitute Parts
Part Overview
The AUIPS6011R is an N-Channel power switch/driver IC manufactured by Infineon Technologies, designed for high-side switching applications with a 1:1 input-to-output ratio. This component operates at a maximum load voltage of 36V with an output current capability of 5.6A and an on-resistance (Rds On) of 11mOhm typical. The device is packaged in TO-252-3 DPAK format and includes integrated fault protection features including current limiting, open load detection, and over-temperature protection.
The AUIPS6011R carries an Obsolete product status, making equivalent substitute components necessary for new designs and ongoing production requirements. The part maintains Automotive grade qualification under AEC-Q100 standards and is REACH compliant.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Manufacturer | Infineon Technologies |
| Category | Power Management (PMIC) |
| Switch Type | General Purpose N-Channel |
| Output Configuration | High Side, 1:1 Ratio |
| Maximum Load Voltage | 36V |
| Maximum Output Current | 5.6A |
| Rds On (Typical) | 11mOhm |
| Fault Protection | Current Limiting, Open Load Detect, Over Temperature |
| Operating Temperature Range | -40°C to 150°C (TJ) |
| Package Type | TO-252-3 DPAK |
| Grade | Automotive (AEC-Q100) |
| Product Status | Obsolete |
Substitute Part Grouping Explanation
Substitution of the AUIPS6011R is determined by the following critical parameters:
- Output Configuration: High-side switching with 1:1 input-to-output ratio
- Output Type: N-Channel general purpose switch
- Maximum Load Voltage: 36V maximum rating
- Output Current Capability: Minimum 5.6A
- Fault Protection Features: Current limiting, open load detection, and over-temperature protection
- Operating Temperature Range: -40°C to 150°C
- Mounting Type: Surface mount in compatible package footprint
- Interface Type: On/Off control with non-inverting input
The VN750PTTR-E from STMicroelectronics meets these substitution criteria through equivalent electrical specifications and compatible fault protection architecture.
Parameter Comparison
| Parameter | AUIPS6011R (Main Part) | VN750PTTR-E (Substitute) |
|---|---|---|
| Manufacturer | Infineon Technologies | STMicroelectronics |
| Category | Power Management (PMIC) | Power Management (PMIC) |
| Switch Type | General Purpose N-Channel | General Purpose N-Channel |
| Output Configuration | High Side, 1:1 Ratio | High Side, 1:1 Ratio |
| Maximum Load Voltage | 36V | 5.5V to 36V |
| Maximum Output Current | 5.6A | 6A |
| Rds On (Typical) | 11mOhm | 60mOhm (Max) |
| Input Type | Non-Inverting | Non-Inverting |
| Fault Protection | Current Limiting (Fixed), Open Load Detect, Over Temperature | Current Limiting (Fixed), Open Load Detect, Over Temperature, Over Voltage |
| Operating Temperature Range | -40°C to 150°C (TJ) | -40°C to 150°C (TJ) |
| Mounting Type | Surface Mount | Surface Mount |
| Package Type | TO-252-3 DPAK | TO-252-5 DPAK |
| Product Status | Obsolete | Active |
| Compliance | AEC-Q100 Automotive, REACH Compliant | RoHS3 Compliant, REACH Compliant |
Engineering Selection Recommendations
The VN750PTTR-E is a qualified substitute for the obsolete AUIPS6011R based on the following engineering criteria:
Electrical Compatibility: Both devices operate as high-side N-Channel power switches with 1:1 input-to-output ratios and identical operating temperature ranges (-40°C to 150°C). The VN750PTTR-E provides 6A output current capability, exceeding the AUIPS6011R requirement of 5.6A. Both devices implement equivalent fault protection architectures including current limiting, open load detection, and over-temperature protection.
Voltage Rating: The VN750PTTR-E supports the full 36V maximum load voltage specification of the AUIPS6011R, with an additional lower voltage bound of 5.5V.
Product Status and Availability: The AUIPS6011R is classified as Obsolete, necessitating substitution for new designs and production continuity. The VN750PTTR-E maintains Active product status with confirmed inventory availability.
Compliance and Qualification: The AUIPS6011R carries AEC-Q100 Automotive qualification. The VN750PTTR-E is RoHS3 compliant and REACH compliant. Both devices are classified under identical ECCN (EAR99) and HTSUS (8542.39.0001) codes.
Package Consideration: The VN750PTTR-E uses TO-252-5 DPAK packaging (4 leads + tab) compared to the TO-252-3 DPAK (2 leads + tab) of the AUIPS6011R. PCB layout modifications are required to accommodate the different pin configuration.
Frequently Asked Questions (FAQ)
Q: Can the VN750PTTR-E directly replace the AUIPS6011R without PCB modifications?
A: No. While both devices use DPAK packaging, the AUIPS6011R uses TO-252-3 (2 leads + tab) and the VN750PTTR-E uses TO-252-5 (4 leads + tab). The pin configurations differ, requiring PCB layout changes and verification of pin assignments before implementation.
Q: What is the impact of the higher Rds On specification in the VN750PTTR-E?
A: The VN750PTTR-E specifies 60mOhm maximum Rds On compared to 11mOhm typical for the AUIPS6011R. This difference affects power dissipation and thermal performance. Thermal analysis is required to confirm suitability for the target application's current and duty cycle specifications.
Q: Are both devices suitable for automotive applications?
A: The AUIPS6011R carries explicit AEC-Q100 Automotive qualification. The VN750PTTR-E is RoHS3 and REACH compliant but does not list AEC-Q100 qualification in the provided specifications. Automotive application requirements must be evaluated against available certifications.
Q: What additional fault protection does the VN750PTTR-E provide?
A: The VN750PTTR-E includes over-voltage protection in addition to the current limiting, open load detection, and over-temperature protection present in both devices. This provides enhanced system-level protection in the substitute component.
Q: How do the output current ratings compare?
A: The VN750PTTR-E provides 6A maximum output current, which exceeds the AUIPS6011R specification of 5.6A. This provides design margin for applications operating at or near the original component's current limits.
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