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CY9BF566RPMC-GNE2

Part No CY9BF566RPMC-GNE2
Manufacturer Cypress Semiconductor Corp
Catalog OEM Souring
Description MCU Arm Cortex M4F
Sample
Rohs State rohs
ECAD Module
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Category OEM Souring
Win Source Part Number 1462436-CY9BF566RPMC-GNE2
Manufacturer Cypress Semiconductor Corp
Package Tray
Product Status Active
Core Processor ARM® Cortex®-M4F
Core Size 32-Bit Single-Core
Speed 160MHz
Connectivity CANbus, CSIO, EBI/EMI, I²C, LINbus, SD, SPI, UART/USART, USB
Peripherals DMA, LVD, POR, PWM, WDT
Number of I/O 100
Program Memory Size 544KB (544K x 8)
Program Memory Type FLASH
RAM Size 64K x 8
Voltage - Supply (Vcc/Vdd) 2.7V ~ 5.5V
Data Converters A/D 24x12b SAR; D/A 2x12b
Oscillator Type External, Internal
Operating Temperature -40°C ~ 125°C (TJ)
Grade -
Mounting Type Surface Mount
Supplier Device Package 120-LQFP (16x16)
Package / Case 120-LQFP
Ultra Librarian 3D Model Ultra Librarian CY9BF566RPMC-GNE2 CAD Model

Description

The CY9BF566RPMC-GNE2 is a cutting-edge microcontroller unit (MCU) developed by Cypress, featuring the powerful Arm Cortex M4F core. This 32-bit MCU combines high-performance processing capabilities with the energy efficiency of the Arm Cortex architecture, making it suitable for a wide variety of complex and power-sensitive applications. Its processing core supports floating-point operations and DSP instructions, enabling it to handle complex mathematical computations and control algorithms efficiently. The MCU is equipped with a comprehensive set of peripherals, including multiple timers, ADCs (Analog to Digital Converters), and communication interfaces like UART, SPI, and I2C, providing versatile connectivity options for various external devices and sensors. The CY9BF566RPMC-GNE2 is designed for applications demanding high computational power and precise control, such as industrial automation, advanced consumer electronics, and IoT devices. Its focus on power efficiency and high performance makes it an ideal choice for developers seeking to build sophisticated systems with stringent power and space constraints.

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