

Microchip ATSAM3U4EA-AU
Manufacturer No:
ATSAM3U4EA-AU
Manufacturer:
Package:
144-LQFP
Description:
ATSAM3U4E
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ATSAM3U4EA-AU information
Microchip ATSAM3U4EA-AU technical specifications, attributes, parameters and parts with similar specifications to Microchip ATSAM3U4EA-AU.
- Type
- Parameter
- Part Family
- ATSAM3U4E
- CPU Type
- Cortex-M3
- MaxSpeed (MHz)
- 96
- Program Memory Size (KB)
- 256
- SRAM (KB)
- 50
- Temp. Range Min.
- -40
- Temp. Range Max.
- 85
- Operation Voltage Min.(V)
- 1.62
- Operation Voltage Max.(V)
- 3.6
- SPI
- 5
- I2C
- 2
- UART
- 5
- QSPI
- 0
- Crypto Engine
- No
- Internal Oscillator
- 4,8,12Mhz,32Khz
- Pin Count
- 144
Download datasheets and manufacturer documentation for Microchip ATSAM3U4EA-AU.
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Microchip's ARM®-based SAM3U4E is a member of the SAM3U family of flash microcontrollers based on the high-performance 32-bit ARM Cortex®-M3 RISC processor.
It operates at a maximum speed of 96MHz and features two 128KB of dual-bank flash memory and 52KB of SRAM.
The peripheral set includes a High Speed USB device and PHY at 480Mbps, high-speed multimedia card interface for SDIO/SD/MMC, a 16-bit external bus interface supporting NAND flash, three USARTs, two TWIs (I2C), four SPIs, I2S, four PWM timers, three 16-bit timers, RTC, and eight 12-bit and eight 10-bit ADCs.
The architecture sustains high-speed data transfers, with multi-layer bus matrix, multiple SRAM banks, PDC, and DMA support parallel tasks to maximize data throughput.
The SAM3U4C operates from 1.62V to 3.6V and is available in 144-pin LQFP and BGA packages.
- ARM Cortex-M3 revision 2.0 running at up to 96 MHz
- Memory Protection Unit (MPU)
- Thumb®-2 instruction set
- 2 x 128Kbytes Dual Plane embedded Flash, 128-bit wide access, memory accelerator, dual bank
- 52 Kbytes embedded SRAM
- 16 Kbytes ROM with embedded bootloader routines (UART, USB) and IAP routines
- Static Memory Controller (SMC): SRAM, NOR, NAND support. NAND Flash controller with 4 Kbytes RAM buffer and ECC
- External Bus Interface - 8 or 16 bits, 4 chip selects, 24-bit address
- Embedded voltage regulator for single-supply operation
- POR, BOD and Watchdog for safe reset
- Quartz or resonator oscillators: 3 to 20 MHz main and optional low power 32.768 kHz for RTC or device clock
- High precision 8/12 MHz factory trimmed internal RC oscillator with 4 MHz Default Frequency for fast device startup
- Slow Clock Internal RC oscillator as permanent clock for device clock in low power mode
- One PLL for device clock and one dedicated PLL for USB 2.0 High Speed Device
- 17 Peripheral DMA Controller (PDC) channels and 4-channel central DMA
- Sleep, Wait, and Backup modes, down to 1.65 μA in Backup mode with RTC, RTT, and GPBR
- 144-lead LQFP – 20 × 20 mm, pitch 0.5 mm
- 144-ball LFBGA – 10 × 10 mm, pitch 0.8 mm
- Industrial (-40° C to +85° C)
- USB 2.0 Device: 480 Mbps, 4-Kbyte FIFO, up to 7 bidirectional Endpoints, dedicated DMA
- 4 USARTs (ISO7816, IrDA®, Flow Control, SPI, Manchester support) and one UART
- 2 TWI (I2C compatible)
- 1 Serial Perpheral Interface (SPI)
- 1 Synchronous Serial Controller (SSC) (I2S)
- 1 High Speed Multimedia Card Interface (HSMCI) (SDIO/SD/MMC)
- 3-channel 16-bit Timer/Counter (TC) for capture, compare and PWM
- 4-channel 16-bit PWM (PWMC)
- 32-bit Real-time Timer (RTT) and Real-time Clock (RTC) with calendar and alarm features
- 96 I/O lines with external interrupt capability (edge or level sensitivity), debouncing, glitch filtering and on-die Series Resistor Termination
- Three 32-bit Parallel Input/Output Controllers
- 8-channel 12-bit 1 msps ADC with differential input mode and programmable gain stage
- 8-channel 10-bit ADC
- Serial Wire/JTAG Debug Port(SWJ-DP)
- Debug access to all memories and registers in the system, including Cortex-M4 register bank when the core is running, halted, or held in reset.
- Serial Wire Debug Port (SW-DP) and Serial Wire JTAG Debug Port (SWJ-DP) debug access.
- Flash Patch and Breakpoint (FPB) unit for implementing breakpoints and code patches.
- Data Watchpoint and Trace (DWT) unit for implementing watchpoints, data tracing, and system profiling.
- Instrumentation Trace Macrocell (ITM) for support of printf style debugging.
- IEEE1149.1 JTAG Boundary-scan on all digital pins.
- ASF-Atmel software Framework – SAM software development framework
- Integrated in the Atmel Studio IDE with a graphical user interface or available as standalone for GCC, IAR compilers.
- DMA support, Interrupt handlers Driver support
- USB, TCP/IP, Wi-Fi and Bluetooth, Numerous USB classes, DHCP and Wi-Fi encryption Stacks
- RTOS integration, FreeRTOS is a core component
User Guide
Please verify all part numbers, quantities, and packaging preferences before placing your order. If substitutions are acceptable, please indicate this clearly. For time-sensitive projects, confirm estimated delivery dates and stock availability in advance. Once submitted, changes or cancellations may not be possible, especially for items marked as non-cancellable/non-returnable (NCNR). For international shipments, please ensure all import documentation is complete and accurate to avoid delays.
MEANS OF PAYMENTFor your convenience, we accept multiple payment methods in USD, including PayPal, Credit Card, and Wire Transfer. Net terms may be available for qualified customers upon approval.
RFQ (REQUEST FOR QUOTATIONS)Please ensure the part numbers and quantities are accurate and complete when submitting your RFQ.
Provide target prices and acceptable alternatives, if any, to speed up the quotation process.
Quotations are subject to stock availability and may vary with market conditions. Prices and lead times are not guaranteed until a purchase order is confirmed. Ensure your contact details are correct to avoid delays in response.

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Currently, our products are shipped through DHL, FedEx, SF, and UPS.
DELIVERY TIME1. Once the goods are shipped, estimated delivery time depends on the shipping methods you chose: FedEx International, 5-7 business days.
2. For in-stock parts, orders normally could be shipped out within 1-2days.
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