R5F61663RD50FPV The Renesas R5F61663RD50FPV is a 32-bit microcontroller featuring 384KB of FLASH program memory and 40KB of RAM. It operates at speeds up to 50MHz.
Mfr Part #:

R5F61663RD50FPV

Available from 1 distributors
Mfr Name: Renesas
Renesas
The Renesas R5F61663RD50FPV is a 32-bit microcontroller featuring 384KB of FLASH program memory and 40KB of RAM. It operates at speeds up to 50MHz.
✓ Total Stock: 756 pcs
$ Price Range: $6.40

R5F61663RD50FPV Available from 1 distributor

✓ Authorised
✓ Non-Authorised
Distributor Stock Pricing MOQ PKG Lead Time Date Code On Order Quantity On Order Delivery
Non-Authorised Inventory information
756 pcs
756 pcs On Request 1 On Request On Request 1244+ On Request On Request

R5F61663RD50FPV Specifications Quick View

Most important parameters for selection – full specs in datasheet.
Category
Manufacturer Name
Connectivity
Core Processor
Core Size
Data Converters
Failure Rate
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Number of I/O
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Oscillator Type
Peripherals
Program Memory Size
Program Memory Type
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Supplier Device Package
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R5F61663RD50FPV Description

Short technical summary and product information.

This Renesas R5F61663RD50FPV is a 32-bit microcontroller from the H8SX family, designed for embedded applications. It offers 384KB of FLASH program memory and 40KB of RAM, with a core processor speed of 50MHz.

 

The microcontroller supports a supply voltage range of 3V to 3.6V and operates within an ambient temperature range of -40°C to 85°C. It features various peripherals including DMA, LVD, POR, PWM, and WDT, along with connectivity options such as EBI/EMI, I²C, IrDA, SCI, SmartCard, and USB.

 

The device is housed in a 144-LFQFP package and is designed for surface mount installation. It includes 8x10-bit A/D converters and 2x8-bit D/A converters, providing data conversion capabilities. The external oscillator type is utilized for clock generation.

R5F61663RD50FPV Quick Information

Product Type: Microcontroller
Series: H8SX/1600
Canonical Name: R5F61663RD50FPV
Subcategory: Embedded Microcontrollers

R5F61663RD50FPV Compliance

RoHS Status: RoHS Compliant
Moisture Sensitivity Level (MSL): 1 Unlimited
REACH Status: REACH Unaffected

R5F61663RD50FPV Estimated Pricing

Qty Low High
1+ $6.40 $6.40

Estimated market price range - modelled values for guidance only, not live distributor offers.

R5F61663RD50FPV Features

  • 32-bit H8SX core processor.
  • 384KB FLASH program memory.
  • 40KB RAM size.
  • 50MHz operating speed.
  • 144-LFQFP surface mount package.

R5F61663RD50FPV Applications

  • Embedded system control.
  • Data acquisition tasks.
  • Communication interfaces.
  • Power management features.

R5F61663RD50FPV FAQs

7 frequently asked questions generated from this part’s specifications.
What is the operating voltage range for the R5F61663RD50FPV?

The operating voltage range is 3V to 3.6V.

What is the operating temperature range for the R5F61663RD50FPV?

The operating temperature range is -40°C to 85°C (TA).

What package type is the R5F61663RD50FPV available in?

The R5F61663RD50FPV is available in a 144-LQFP package.

What is the RoHS status of the R5F61663RD50FPV?

The RoHS status is RoHS3 Compliant.

What is the Moisture Sensitivity Level (MSL) for the R5F61663RD50FPV?

The Moisture Sensitivity Level (MSL) is 3 (168 Hours).

What are the common causes of R5F61663RD50FPV malfunction?

The most common causes of malfunction for the R5F61663RD50FPV microcontroller include improper power supply, voltage fluctuations, incorrect programming, and improper clock source configuration. These issues may cause the device to operate erratically or fail to boot. Additionally, incorrect wiring or signal interference during communication can also lead to malfunction.

How do I handle overheating issues with the R5F61663RD50FPV?

Overheating issues with the R5F61663RD50FPV can be caused by excessive current draw, inadequate heat dissipation, or improper operating conditions. To resolve this, ensure that the microcontroller is operating within the specified voltage and current limits. Use heat sinks or improve airflow around the device if necessary. Additionally, consider using lower-power modes during periods of low activity to reduce thermal load.

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