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Part Number: ATSAM4CMS4
Manufacturer:
Microchip
Category:
Interface and Connectivity
Availability:
9494
Description:
ARM Cortex-M4 running at up to 120MHzMemory Protection Unit (MPU)DSP InstructionThumb®-2 instruction setInstruction and Data Cache Controller with 2 Kbytes Cache Memory512Kbytes of flash, 128Kbytes of SRAM, 8Kbytes of ROMARM Cortex-M4FIEEE 754 Compliant, Single precision Floating-Point Unit (FPU)DSP InstructionThumb-2 instruction setInstruction and Data Cache Controller with 2 Kbytes Cache Memory16K+8K bytes of SRAM Interrupt-based Inter-processor CommunicationAsynchronous ClockingOne Interrupt Controller (NVIC) for each coreEach Peripheral IRQs routed to each NVIC InputsHigh performance AES 128 to 256 with various modes (GCM, CBC, ECB, CFB, CBC-MAC, CTR)TRNG (up to 38 Mbit/s stream, with tested Diehard and FIPS)Public Key Crypto accelerator and associated ROM library for RSA, ECC, DSA, ECDSAIntegrity Check Module (ICM) based on Secure Hash Algorithm (SHA1, SHA224, SHA256), DMA assistedTwo physical Anti-tamper Detection I/Os with Time Stamping and Immediate Clear of General Backup RegistersSecurity Bit for Device Protection from JTAG AccessesEmbedded Core and LCD Voltage Regulator for single supply operationPower-on-Reset (POR), Brownout Detector (BOD) and Dual Watchdog for safe operationUltra-low-power Backup mode (< 0.5 µA Typical @ 25ºC)Optional 3 to 20 MHz quartz or ceramic resonator oscillators with clock failure detectionUltra-low-power 32.768 kHz crystal oscillator for RTC with frequency monitoringHigh-precision 4/8/12 MHz factory-trimmed internal RC oscillator with on-the-fly trimming capabilityOne high-frequency PLL up to 240 MHz, one 8 MHz PLL with internal 32 kHz inputLow-power slow clock internal RC oscillator as permanent clockUltra-low-power RTC with Gregorian and Persian Calendar, Waveform Generation and Clock CalibrationUp to 23 Peripheral DMA (PDC) ChannelsDisplay capacity of 38 segments and 6 common terminalsSoftware-selectable LCD output voltage (Contrast)Can be used in Backup modeFour USARTs with ISO7816, IrDA®, RS-485, SPI and Manchester ModeTwo 2-wire UARTsUp to two 400 kHz Master/Slave and Multi-Master Two-wire Interfaces (I2C compatible)Up to five Serial Peripheral Interfaces (SPI)Two 3-channel 16-bit Timer/Counters with Capture, Waveform, Compare and PWM modesQuadrature Decoder Logic and 2-bit Gray Up/Down Counter for Stepper Motor3-channel 16-bit Pulse Width Modulator32-bit Real-time TimerWorks with Microchip s s MCU Metrology libraryCompliant with Class 0.2 standards (ANSI C12.20-2002 and IEC 62053-22)Four Sigma-Delta ADC measurement channels, 20-bit resolution, 102 dB dynamic range6-channel, 500 kS/s, Low-power, 10-bit SAR ADC with Digital averager providing 12-bit resolution at 30 kS/sSoftware Controlled On-chip Reference ranging from 1.6V to 3.4VTemperature Sensor and Backup Battery Voltage Measurement ChannelUp to 57 I/O lines with External Interrupt Capability (edge or level sensitivity), Schmitt Trigger, Internal Pull-up/pull-down, Debouncing, Glitch Filtering and On-die Series Resistor TerminationPull-up/pull-down, Debouncing, Glitch Filtering and On-die Series Resistor Termination100-lead LQFP, 14 x 14 mm, pitch 0.5 mm
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ATSAM4CMS4 Datasheet PDF Specification
The Microchip s SAM4CMS4 is a system-on-chip solution for residential and single-phase metering applications up to class 0.2 metrology accuracy over a dynamic range of 3000:1 and industrial temperature range. A seamless extension of Atmel s SAM4 family and SAM4C family of microcontrollers and solutions for smart grid security and communications applications, this metrology enabled device offer an unprecedented level of integration and flexibility with dual 32-bit ARM®Cortex®-M4 RISC processors providing maximum speed of 120 MHz each, 256Kbytes of embedded Flash, 152Kbytes of SRAM and on-chip cache. The unique dual ARM Cortex-M4 architecture supports implementation of signal processing, application and communications firmware in independent partitions and offers an ability to extend program and data memory via parallel external bus interface (EBI) to ensure scalability of the design to meet future requirements.
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