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AM2634COLFHAZCZR

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Texas Instruments

QUAD-CORE ARM® CORTEX®-R5F MCU UP TO 400 MHZ WITH REAL-TIME CONTROL AND SECURITY

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324-pin (ZCZ) package image

AM2634COLFHAZCZR

Active
Texas Instruments

QUAD-CORE ARM® CORTEX®-R5F MCU UP TO 400 MHZ WITH REAL-TIME CONTROL AND SECURITY

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Description

General part information

AM2634 Series

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.

Technical Specifications

Parameters and characteristics for this part

SpecificationAM2634COLFHAZCZR
A/D Channels6 count
A/D Resolution (bits)12 bit
ConnectivityMMC, SPI, I2C, USART, QSPI, UART, CANbus, Ethernet, SDIO
Converter ArchitectureSAR
Core ConfigurationQuad-Core
Core ProcessorARM® Cortex®-R5F
Core Size (Bit Width)32 Bit
D/A Channels1 count
D/A Resolution (bits)12 bit
Mounting TypeSurface Mount
Number of I/O140
Operating Temperature (Max)105 °C
Operating Temperature (Min)-40 °C
Oscillator TypeInternal
Package / Case324-LFBGA
Package Length15 mm
Package Name324-NFBGA
Package Width15 mm
PeripheralsDMA, WDT, POR, SHA, AES, PWM, TRNG
Program Memory Depth256 K
Program Memory Size256 KB
Program Memory TypeTightly Coupled Memory (TCM)
Program Memory Width8 bit
RAM Size Depth2 M
RAM Size Width8 bit
Speed400 MHz
Voltage - Supply (Vcc/Vdd) Maximum1.26 V
Voltage - Supply (Vcc/Vdd) Minimum1.14 V

Pricing

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CAD

3D models and CAD resources for this part

Documents

Technical documentation and resources

Datasheet
牽引逆變器 – 車輛電氣化背後的驅動力量
AM263x Sitara Control Card Hardware User's Guide (Rev. D)
AM263x AUTOSAR MCAL Drivers Functional Safety Certificate
AM263x QSPI Flash Selection Guide (Rev. A)
Design Priorities in EV Traction Inverter With Optimum Performance (Rev. A)
AM263x Sitara Processors Technical Reference Manual Register Addendum (Rev. E)
Sitara MCU Thermal Design
DCC Computation Tool
트랙션 인버터 – 차량 전기화를 이끄는 동력
Accelerated Real-Time Control Processing: From Tried-and-True to Next-Gen. MCUs
MCU로의 절연 모듈레이터 디지털 인터페이스를 사용한 클록 에지 지 연 보상 (Rev. A)
AM26x Custom PCB System Getting Started Guide
How MCUs can unlock the full potential of electrification designs
AM263x IEC61508 TUV SUD Safety Certificate
AM263x for Traction Inverters
BP-AM2BLDCSERVO EU Declaration of Conformity (DoC)
Interfacing 5V Sensors and Signals to 3.3V Input SAR ADCs
具備最佳性能的 EV 牽引逆變器設計優先順序
Clock Edge Delay Compensation With Isolated Modulators Digital Interface to MCUs (Rev. A)
AM263x Power Estimation Tool
최적의성능을 갖춘 EV 트랙션 인버터에서 설계 우선 순위
Monitoring Bus Voltage and Power Measurement on AM263x MCU Using INA226
PRU-ICSS Feature Comparison (Rev. G)
AM263x Benchmarks
AM263x Sitara™ Microcontrollers datasheet (Rev. D)
AM263x IEC 61508 Certificate Report
AM263x ISO26262 Certificate Report
AM263x and AM263Px Software Diagnostics Library TUV SUD Functional Safety Certificate (Rev. A)
AM26x Family Migration Overview (Rev. A)
What is "real-time control" and why do you need it?
AM26x Hardware Design Guidelines (Rev. C)
Traction Inverters – A Driving Force Behind Vehicle Electrification
Industrial Communications on AM26x Family
Optimized Trigonometric Functions on TI Arm Cores (Rev. A)
AM263x Sitara™ Microcontroller Technical Reference Manual (Rev. H)
AM263x Sitara™ Microcontroller Silicon Revision 1.0A, 1.1A (Rev. E)
Microcontroller Abstraction Layer on Jacinto™ and Sitara™ Embedded Processors
실시간 제어 처리 가속화: 검증된MCU부터 차세대 MCU까지
The state of functional safety in Industry 4.0
Enabling Trace on AM26x Devices with Lauterbach®
How to Synchronize the Timing Between Chips With Programmable Real-Time Unit
Functional Safety for AM2x and Hercules™ Microcontrollers
AM263x Control Card Quick Start Guide
AM263x Device Nomenclature and Subset Devices
Debugging Sitara AM2x Microcontrollers
Achieving Faster Secure Boot Time on AM26x Devices
Using the Sitara MCU AM263x in an Automotive SiC Traction Inverter
10-kW, Three-Phase, Three-Level (T-Type) Inverter Using AM263
Time Sensitive Networking for Industrial Automation (Rev. C)
Integration of MbedTLS on SITARA MCU Devices
Intra Drive Communication Using 8b-10b Line Code With Programmable Real Time Uni
Taktflankenverzögerungskompensation mit isolierten Modulatoren Digitale Schnittstelle zu MCUs (Rev. A)
AM2634COLFHAZCZR | Datasheet