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Equivalent & Substitute Parts for R5F572MNHDFB#10
Part Overview
The R5F572MNHDFB#10 is a 32-bit RXv3 microcontroller manufactured by Renesas Electronics Corporation, designed for embedded applications requiring high-performance processing and extensive connectivity options. This device features 4MB of FLASH program memory, 1MB of RAM, and 32KB of EEPROM, operating at 240MHz with a supply voltage range of 2.7V to 3.6V. The part is housed in a 144-LFQFP (20x20) surface mount package and maintains Active product status with full RoHS3 compliance. Identifying equivalent substitute parts is necessary to ensure design flexibility, manage supply chain continuity, and maintain component availability across production cycles.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Core Processor | RXv3 |
| Core Size | 32-Bit |
| Operating Frequency | 240MHz |
| Program Memory (FLASH) | 4MB (4M x 8) |
| RAM Size | 1M x 8 |
| EEPROM Size | 32K x 8 |
| Supply Voltage Range | 2.7V ~ 3.6V |
| Package Type | 144-LFQFP (20x20) |
| Number of I/O Pins | 111 |
| Operating Temperature Range | -40°C ~ 85°C |
| Connectivity Interfaces | CANbus, EBI/EMI, Ethernet, I2C, MMC/SD, QSPI, SCI, SPI, SSI, USB OTG |
| Data Converters | A/D 29x12b, D/A 2x12b |
| RoHS Compliance | ROHS3 Compliant |
| Moisture Sensitivity Level | 3 (168 Hours) |
Substitute Part Grouping Explanation
The R5F572MNHDFB#30 qualifies as a parametric equivalent to the R5F572MNHDFB#10 based on strict alignment across all critical electrical and mechanical parameters. Both parts share identical specifications for core processor architecture (RXv3), processing speed (240MHz), memory configuration (4MB FLASH, 1MB RAM, 32KB EEPROM), supply voltage range (2.7V ~ 3.6V), package form factor (144-LFQFP 20x20), I/O pin count (111), connectivity interfaces, peripheral features, and operating temperature range (-40°C ~ 85°C). The substitution is valid because the parts are functionally interchangeable at the electrical and mechanical level, with no deviations in the parameters that determine component selection and circuit integration.
Parameter Comparison
| Parameter | R5F572MNHDFB#10 | R5F572MNHDFB#30 | Match Status |
|---|---|---|---|
| Manufacturer | Renesas Electronics Corporation | Renesas Electronics Corporation | Identical |
| Category | Embedded | Embedded | Identical |
| Core Processor | RXv3 | RXv3 | Identical |
| Core Size | 32-Bit | 32-Bit | Identical |
| Operating Frequency | 240MHz | 240MHz | Identical |
| Program Memory (FLASH) | 4MB (4M x 8) | 4MB (4M x 8) | Identical |
| RAM Size | 1M x 8 | 1M x 8 | Identical |
| EEPROM Size | 32K x 8 | 32K x 8 | Identical |
| Supply Voltage (Vcc/Vdd) | 2.7V ~ 3.6V | 2.7V ~ 3.6V | Identical |
| Number of I/O | 111 | 111 | Identical |
| Connectivity Interfaces | CANbus, EBI/EMI, Ethernet, I2C, MMC/SD, QSPI, SCI, SPI, SSI, USB OTG | CANbus, EBI/EMI, Ethernet, I2C, MMC/SD, QSPI, SCI, SPI, SSI, USB OTG | Identical |
| Peripherals | DMA, LCD, LVD, POR, PWM, WDT | DMA, LCD, LVD, POR, PWM, WDT | Identical |
| Data Converters | A/D 29x12b, D/A 2x12b | A/D 29x12b, D/A 2x12b | Identical |
| Operating Temperature | -40°C ~ 85°C (TA) | -40°C ~ 85°C (TA) | Identical |
| Package / Case | 144-LQFP | 144-LQFP | Identical |
| Supplier Device Package | 144-LFQFP (20x20) | 144-LFQFP (20x20) | Identical |
| Mounting Type | Surface Mount | Surface Mount | Identical |
| RoHS Status | ROHS3 Compliant | ROHS3 Compliant | Identical |
| Moisture Sensitivity Level (MSL) | 3 (168 Hours) | 3 (168 Hours) | Identical |
| REACH Status | REACH Unaffected | REACH Unaffected | Identical |
| ECCN | 3A991A2 | 3A991A2 | Identical |
| HTSUS | 8542.31.0001 | 8542.31.0001 | Identical |
Engineering Selection Recommendations
The R5F572MNHDFB#30 is a direct parametric equivalent to the R5F572MNHDFB#10 and can be selected as a substitute without design modification. Both parts maintain Active product status from Renesas Electronics Corporation and carry identical compliance certifications including RoHS3, REACH Unaffected status, and equivalent export control classifications (ECCN 3A991A2, HTSUS 8542.31.0001). The identical moisture sensitivity level (MSL 3, 168 Hours) ensures equivalent handling and storage requirements. Selection between these parts should be based on supply chain availability and inventory status, as all electrical, mechanical, and regulatory parameters are identical.
Frequently Asked Questions (FAQ)
Q: Can R5F572MNHDFB#30 be used as a direct replacement for R5F572MNHDFB#10 without PCB redesign?
A: Yes. Both parts are identical in all electrical and mechanical parameters, including pin count (111), package form factor (144-LFQFP 20x20), supply voltage range (2.7V ~ 3.6V), operating frequency (240MHz), memory configuration, and connectivity interfaces. No PCB redesign is required.
Q: Are there any differences in the connectivity interfaces between these two parts?
A: No. Both parts provide identical connectivity: CANbus, EBI/EMI, Ethernet, I2C, MMC/SD, QSPI, SCI, SPI, SSI, and USB OTG.
Q: Do both parts have the same operating temperature range?
A: Yes. Both the R5F572MNHDFB#10 and R5F572MNHDFB#30 operate across the identical temperature range of -40°C to 85°C (TA).
Q: What is the difference between the part numbers R5F572MNHDFB#10 and R5F572MNHDFB#30?
A: The suffix designations (#10 and #30) typically indicate different packaging or tape reel configurations from the manufacturer, but the core microcontroller specifications remain identical. Both are supplied in trays as standard packaging.
Q: Are the RoHS and REACH compliance statuses the same for both parts?
A: Yes. Both parts are RoHS3 Compliant and REACH Unaffected, with identical export control classifications (ECCN 3A991A2, HTSUS 8542.31.0001).
Q: What is the moisture sensitivity level for these microcontrollers?
A: Both parts have a Moisture Sensitivity Level (MSL) of 3 with a 168-hour floor life rating, requiring identical handling and storage protocols.
Q: Can these parts be used interchangeably in production?
A: Yes. The R5F572MNHDFB#10 and R5F572MNHDFB#30 are functionally and mechanically interchangeable. Selection should be based on supply availability and inventory status.
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