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Application Processors & System-on-Chip (SoC)

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PIC32CM2532LE00048-I/Y8X
Microchip Technology
MCU, 256KB, 48MHZ, TQFP-48;
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F280037PTRQ1
Texas Instruments
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DS1307Z+TR
Analog Devices
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M37710E8BFP
Renesas Electronics
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NUCLEO-WL55JC2
STMicroelectronics
STMicroelectronics ARM Cortex-M4Microcontroller development board, ARM 32-bit Cortex-M4kernel, STM32 Nucleo-64 development board with STM32WL55JC MCU,
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TM4C123GH6NMRI7
Texas Instruments
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PIC32CX1025MTG128-I/X9B
Microchip Technology
ARM® Cortex®-M4F PIC® 32CX microcontroller IC 32-bit 200MHz 1MB(1M x 8) flash memory 128-TQFP-EP(14x14)
Quantity: 164
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EV73J36A
Microchip Technology
AVR Fixed mounting
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SPC58XCADPT292S
STMicroelectronics
SPC58xCxxC3 Microcontroller Evaluation Board Automotive
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SPC572L-DISP
STMicroelectronics
e200 Fixed mounting
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PIC32CX1025SG41128-E/Z2X
Microchip Technology
; TQFP-128
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EV84M21A
Microchip Technology
ARM® Cortex®-M4F Fixed mounting
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PIC24EP512MC202-H/SO
Microchip Technology
48KB FLASH 3V 3.6V 60MHz I2C,SPI,UART PIC24,PIC24E SOIC-28 SMD mount
Quantity: 1100
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DSPIC33EP64GP502-E/SSVAO
Microchip Technology
8KB FLASH 1 3V 3.6V 60MHz I2C,SPI,UART dsPIC33E SSOP-28 SMD mount
Quantity: 1170
Ship Date: 10-15 working days
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R5F52318BGND#00
Renesas Electronics
MCU 32-bit RX CISC 512KB Flash 2.5V/3.3V/5V 64-Pin HWQFN EP
Quantity: 10000
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R5F52318BDND#00
Renesas Electronics
MCU 32-bit RX CISC 512KB Flash 2.5V/3.3V/5V 64-Pin HWQFN EP
Quantity: 10000
Ship Date: 12-20 weeks
2080+ $6.328
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R5F52318ADND#00
Renesas Electronics
MCU 32-bit RX CISC 512KB Flash 2.5V/3.3V/5V 64-Pin HWQFN EP
Quantity: 10000
Ship Date: 12-20 weeks
2080+ $5.712
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VL-EBXE-41SMK
VersaLogic
1.4GHz 2 Intel Core Celeron 146.05mm(length)
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ABX00053
Arduino
Arduino Development board, Arduino nano RP2040 Connecting pipe holder, ARM v+ M0processor, 1Version
Quantity: 237
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CY8C4127AZI-S445
Infineon Technologies
MCU 32-bit ARM Cortex M0+ RISC 128KB Flash 1.8V/2.5V/3.3V/5V 64-Pin TQFP Tray
Quantity: 5120
Ship Date: 16-20 weeks
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LPC3131FET180,551
Rochester Electronics
LPC3131 - Low-cost, low-power AR
Quantity: 2154
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TMC2340AH5C
Rochester Electronics
MICROPROCESSOR CIRCUIT PPGA120
Quantity: 6
Ship Date: 7-12 working days
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Ext. Price: $303.63
MOQ: 4
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DF2239TF20I
Rochester Electronics
IC MCU 16BIT 384KB FLASH 100TQFP
Quantity: 224
Ship Date: 7-12 working days
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Ext. Price: $311.14
MOQ: 7
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LM3S1150-IQC50-A2
Rochester Electronics
IC MCU 32BIT 64KB FLASH 100LQFP
Quantity: 20
Ship Date: 7-12 working days
10+ $32.4584
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Ext. Price: $324.58
MOQ: 10
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SPQ: 1
AT80C51SND1C-ROTUL
Rochester Electronics
IC MCU 8BIT ROMLESS 80TQFP
Quantity: 6300
Ship Date: 7-12 working days
27+ $11.3464
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Ext. Price: $306.35
MOQ: 27
Mult: 27
SPQ: 1

Application Processors & System-on-Chip (SoC)

Application Processors and System on a Chip (SoC)

Definition:
An application processor is a type of central processing unit (CPU) that is specifically designed to handle the application layer of computing tasks, such as running operating systems and executing user applications. A System on a Chip (SoC) is an integrated circuit that integrates all the necessary components of a computer or other electronic system into a single chip. It typically includes the processor, memory, input/output controllers, and other peripherals.

Function:
- Application Processors: They are optimized for specific tasks, such as media processing, gaming, or general-purpose computing. They manage the execution of software applications, handle user interactions, and process data.
- SoC: SoCs integrate multiple functions onto a single chip, reducing the complexity and power consumption of the system. They are designed to be highly efficient and compact, making them ideal for mobile devices, embedded systems, and IoT devices.

Applications:
- Application Processors: They are used in smartphones, tablets, smart TVs, gaming consoles, and other consumer electronics where high performance and energy efficiency are critical.
- SoC: SoCs are found in a wide range of devices, from smartphones and wearables to home automation systems and automotive infotainment systems. They are also used in industrial and medical equipment where reliability and low power consumption are essential.

Selection Criteria:
1. Performance: The processor's speed, number of cores, and architecture are key factors.
2. Power Efficiency: Important for battery-powered devices to ensure long battery life.
3. Integration: The level of integration in an SoC can reduce the need for additional components, saving space and cost.
4. Connectivity: Support for various communication protocols (Wi-Fi, Bluetooth, NFC, etc.) is crucial for modern devices.
5. Software Support: Compatibility with operating systems and development tools is essential for ease of development and maintenance.
6. Cost: The price of the processor or SoC should align with the target market and product cost constraints.
7. Supply Chain: Availability and reliability of the processor or SoC from the manufacturer are important for long-term product support.

In summary, application processors and SoCs are essential components in modern electronic devices, providing the computational power and integration needed for a wide range of applications. When selecting an application processor or SoC, it's important to consider performance, power efficiency, integration, connectivity, software support, cost, and supply chain reliability.
Please refer to the product rule book for details.