


Microchip AT91SAM7S256D-AU-999
Manufacturer No:
AT91SAM7S256D-AU-999
Manufacturer:
Package:
64-LQFP
Description:
AT91SAM7S256
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AT91SAM7S256D-AU-999 information
Microchip AT91SAM7S256D-AU-999 technical specifications, attributes, parameters and parts with similar specifications to Microchip AT91SAM7S256D-AU-999.
- Type
 - Parameter
 
- Part Family
 - AT91SAM7S256
 
- CPU Type
 - ARM7
 
- MaxSpeed (MHz)
 - 55
 
- Program Memory Size (KB)
 - 256
 
- SRAM (KB)
 - 64
 
- Temp. Range Min.
 - -40
 
- Temp. Range Max.
 - 85
 
- Operation Voltage Min.(V)
 - 3
 
- Operation Voltage Max.(V)
 - 3.6
 
- SPI
 - 1
 
- I2C
 - 1
 
- UART
 - 3
 
- QSPI
 - 0
 
- Crypto Engine
 - No
 
- Internal Oscillator
 - 32Khz
 
- Pin Count
 - 64
 
Download datasheets and manufacturer documentation for Microchip AT91SAM7S256D-AU-999.
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User Guide:
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Microchip's ARM®-based SAM7S256 is a member of the SAM7S series of flash microcontrollers based on the 32-bit ARM7TDMI RISC processor.
It operates at a maximum speed of 55MHz and features 128KB of flash memory and 64KB of SRAM.
The peripheral set includes a Full Speed USB device and Phy at 12Mbps, UART, two USARTs, TWI (I2C), SPI, SSC, two PWM timers, three 16-bit timers, RTT, 8x10-bit ADC and 32 IO lines. It achieves single-cycle instruction access from embedded flash at 27 MIPS.
The multi-layer bus matrix, multiple SRAM banks, PDC, and DMA support parallel tasks and maximize data throughput.
The SAM7S256 operates from 1.65V to 3.6V and is available in 64-pin LQFP and QFN packages.
- ARM7TDMI® ARM® Thumb® Processor 32-bit RISC Architecture
 - High-density 16-bit Instruction Set
 - EmbeddedICE™ In-circuit Emulation, Debug Communication Channel Support
 - 256 Kbytes, Organized in 1024 Pages of 256 Bytes (Single Plane)
 - 64 Kbytes embedded SRAM, Single-cycle Access at Maximum Speed
 - Memory Controller (MC)
 - Memory Protection Unit
 - Embedded 1.8V Regulator, Drawing up to 100 mA for the Core and External Components
 - Based on Power-on Reset Cells and Low-power Factory-calibrated Brownout Detector
 - Low-power RC Oscillator, 3 to 20 MHz On-chip Oscillator and One PLL
 - Power Management Controller (PMC)
 - Advanced Interrupt Controller (AIC)
 - Two-wire UART and Support for Debug Communication Channel interrupt, Programmable ICE Access Prevention
 - 20-bit Programmable Counter plus 12-bit Interval Counter
 - Windowed Watchdog (WDT)
 - Real-time Timer (RTT)
 - 32 Parallel Input/Output Controllers (PIO)
 - Eleven Peripheral DMA Controller (PDC) Channels
 - Four High-current Drive I/O lines, Up to 16 mA Each
 - 64-lead LQFP
 - 64-pad QFN
 - One Synchronous Serial Controller (SSC)
 - Two Universal Synchronous/Asynchronous Receiver Transmitters (USART)
 - One Master/Slave Serial Peripheral Interfaces (SPI)
 - One USB 2.0 Full Speed (12 Mbits per second) Device Port
 - One Three-channel 16-bit Timer/Counter (TC)
 - One Four-channel 16-bit PWM Controller (PWMC)
 - One Two-wire Interface (TWI)
 - One 8-channel 10-bit Analog-to-Digital Converter, Four Channels Multiplexed with Digital I/Os
 - Up to 55 MHz at 1.8V and 85⋅ C Worst Case Conditions
 - Up to 48 MHz at 1.65V and 85⋅ C Worst Case Conditions
 - SAM-BA - Interface with SAM-BA Graphic User Interface
 - IEEE® 1149.1 JTAG Boundary Scan on All Digital Pins
 
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.
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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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