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首页设计与方案AM2634COKFHMZCZRQ1_TI(德州仪器)中文资料_英文资料_价格_PDF手册
AM2634COKFHMZCZRQ1_TI(德州仪器)中文资料_英文资料_价格_PDF手册
2025-03-17 18:29:04
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AM2634COKFHMZCZRQ1

具有实时控制和安全功能且频率高达 400MHz 的汽车级四核 Arm® Cortex®-R5F MCU

 

1 Features Processor Cores:

• Single, dual, and quad-core Arm® Cortex®-R5F MCU with each core running up to 400 MHz

– 16KB I-cache with 64-bit ECC per CPU core

– 16KB D-cache with 32-bit ECC per CPU core

– 64KB Tightly-Coupled Memory (TCM) with 32- bit ECC per CPU core

– Lockstep or Dual-core capable clusters

 

Memory Subsystem:

• 2MB of On-Chip RAM (OCSRAM)

– 4 Banks x 512KB

– ECC error protection

– Internal DMA engine support

 

System on Chip (SoC) Services and Architecture:

• 1x EDMA to support data movement functions

• Device Boot supported from the following interfaces:

– UART (Primary/Backup)

– QSPI NOR Flash (4S/1S) (Primary)

• Interprocessor communication modules

– SPINLOCK module for synchronizing processes running on multiple cores

– MAILBOX functionality implemented through CTRLMMR registers

• Central Platform Time Sync (CPTS) support with time-sync and compare-event interrupt routers

 

Media and Data Storage:

• 1x 4-bit Multi-Media Card/Secure Digital (MMC/SD) interface

• General-Purpose Memory Controller (GPMC)

– 16-bit parallel data bus with 22-bit address bus

– Up to 4MB addressable memory space

– Integrated Error Location Module (ELM) support for error checking

 

General Connectivity:

• 6x Universal Asynchronous RX-TX (UART)

• 5x Serial Peripheral Interface (SPI) controllers

• 5x Local Interconnect Network (LIN) ports

• 4x Inter-Integrated Circuit (I2C) ports

• 4x Modular Controller Area Network (MCAN) modules with CAN-FD support

• 1x Quad Serial Peripheral Interface (QSPI)

• 4x Fast Serial Interface Transmitters (FSITX)

• 4x Fast Serial Interface Receivers (FSIRX)

• Up to 139 General-Purpose I/O (GPIO) pins

 

Sensing & Actuation:

• Real-time Control Subsystem (CONTROLSS)

• Flexible Input/Output Crossbars (XBAR)

• 5x 12-bit Analog-to-Digital Converters (ADC)

– 6-input SAR ADC up to 4 MSPS

• 6x Single-ended channels OR

• 3x Differential channels

– Highly Configurable ADC Digital Logic

• XBAR Start of Conversion Triggers (SOC)

• User-defined Sample and Hold (S+H)

• Flexible Post-Processing Blocks (PPB)

• 10x Analog Comparators with Type-A programmable DAC reference (CMPSSA)

• 10x Analog Comparators with Type-B programmable DAC reference (CMPSSB)

• 1x 12-bit Digital-to-Analog Converter (DAC)

• 32x Pulse Width Modulation (EPWM) modules

– Single or Dual PWM channels

– Advanced PWM Configurations

– Extended HRPWM time resolution

• 10x Enhanced Capture (ECAP) modules

• 3x Enhanced Quadrature Encoder Pulse (EQEP) modules

• 2x 4-Ch Sigma-Delta Filter Modules (SDFM)

• Additional Signal-multiplex Crossbars (XBAR)

 

Industrial Connectivity:

• Programmable Real-Time Unit (PRU-SS) and PRU-Industrial Communication Subsystem (PRUICSS)

– Dual core Programmable Realtime Unit Subsystem (PRU0 / PRU1)

• Deterministic Hardware

• Dynamic Firmware

– 20-channel enhanced input (eGPI) per PRU

– 20-channel enhanced output (eGPO) per PRU

– Embedded Peripherals and Memory

• 1x UART, 1x ECAP

• 1x MDIO, 1x IEP,

• 1x 32KB Shared General Purpose RAM

• 2x 8KB Shared Data RAM

• 1x 16KB IRAM per PRU

• ScratchPad (SPAD), MAC/CRC

– Digital encoder and sigma-delta control loops

– The PRU-ICSS enables advanced industrial protocols including: • EtherCAT®, Ethernet/IP™,

• PROFINET®, IO-Link® for order

– Dedicated Interrupt Controller (INTC)

– Dynamic CONTROLSS XBAR Integration

• Integrated Ethernet switch supporting two external ports

– RMII (10/100) or RGMII (10/100/1000)

– IEEE 1588 (2008 Annex D, Annex E, Annex F) with 802.1AS PTP

– Clause 45 MDIO PHY management

– 512x ALE engine-based Packet Classifiers

– Priority flow control with up to 2KB packet size

– Four CPU hardware interrupt pacing

– IP/UDP/TCP checksum offload in hardware

 

Security:

• Hardware Security Module (HSM) with support for Auto SHE 1.1/EVITA

• Secure boot support

– Device Take Over Protection

– Hardware-enforced root-of-trust

– Authenticated boot

– SW Anti-rollback protection

• Debug security

– Secure device debug only after proper authentication

– Ability to disable device debug functionality

• Device ID and Key Management

– Support for OTP Memory (FUSEROM)

• Store root keys & other security fields

– Separate EFUSE controllers and FUSE ROMs

– Unique Public Device Identifiers (UIDs)

• Memory Protection Units (MPU)

– Dedicated Arm® MPU per Cortex®-R5F core

– System MPU - present at various interfaces in the SoC (MPU or Firewall)

– 8-16 Programmable Regions

• Enable/Privilege ID

• Start/End Address

• Read/Write/Cachable

• Secure/Non-Secure

• Cryptographic Acceleration

– Cryptographic cores with DMA Support

– AES- 128/192/256-bit key sizes

– SHA2 - 256/384/512-bit support

– DRBG with pseudo and true random number generator

– PKA (publickey accelerator) to assist in RSA/ECC processing

 

Functional Safety:

• Enables design of systems with functional safety requirements

– Error Signaling Module (ESM) with designated SAFETY_ERRORn pin  – ECC or parity on calculation-critical memories

– Built-In Self-Test (BIST) and fault-injection for CPU and on-chip RAM

– Runtime internal diagnostic modules including voltage, temperature, and clock monitoring, windowed watchdog timers, CRC engines for memory integrity checks

• Functional Safety-Compliant [Industrial]

– Developed for functional safety applications

– Documentation to be made available to aid IEC 61508 functional safety system design

– Systematic capability up to SIL-3

– Hardware integrity up to SIL-3

– Safety-related certification

• IEC 61508 certified up to SIL-3 by TUV SUD

• Functional Safety-Compliant [Automotive]

– Developed for functional safety applications

– Documentation to be made available to aid ISO 26262 functional safety system design

– Systematic capability up to ASIL-D

– Hardware integrity up to ASIL-D

– Safety-related certification

• ISO 26262 certified up to ASIL-D by TUV SUD

 

Technology / Package:

• AEC-Q100 qualified for automotive applications

• 45-nm technology

• ZCZ Package

– 324-pin NFBGA

– 15.0 mm x 15.0 mm

– 0.8 mm pitch

 

2 Applications

 

• Single & Multi Axis Servo Drives

• AC Inverter & VF Drives

• Solar Energy

• EV Charging

• Renewable Energy Storage

• Traction Inverters

• Onboard Chargers

• DC-DC Converters

• Battery Management Systems

• Combo Box Architectures

• IO Aggregators

• Domain Controllers

 

 

3 Description

 

The AM263x Sitara™ Arm® Microcontrollers are built to meet the complex real-time processing needs of next generation industrial and automotive embedded products. The AM263x MCU family consists of multiple pin-to-pin compatible devices with up to four 400 MHz Arm® Cortex®-R5F cores. As an option, the Arm® R5F subsystem can be programmed to run in lockstep or dual-core mode for a multiple functional safety configurations. The industrial communications subsystem (PRU-ICSS) enables integrated industrial Ethernet communication protocols such as PROFINET®, TSN, Ethernet/IP®, EtherCAT® (among many others), standard Ethernet connectivity, and even custom I/O interfaces. The family is designed for the future of motor control and digital power applications with advanced analog sensing and digital actuation modules.

 

The multiple R5F cores are arranged in cluster subsystems with 256KB of shared tightly coupled memory (TCM) along with 2MB of shared SRAM, greatly reducing the need for external memory. Extensive ECC is included for on-chip memories, peripherals, and interconnects for enhanced reliability. Granular firewalls managed by the Hardware Security Manager (HSM) enable developers to implement stringent security-minded system design requirements. Cryptographic acceleration and secure boot are also available on AM263x devices.

 

TI provides a complete set of microcontroller software and development tools for the AM263x family of microcontrollers.


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AM2634COKFHMZCZRQ1 具有实时控制和安全功能且频率高达 400MHz 的汽车级四核 Arm® Cortex®-R5F MCU