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337NFBGA
Integrated Circuits (ICs)

RM48L740DZWTT

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Texas Instruments

16/32-BIT RISC FLASH MICROCONTROLLER

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337NFBGA
Integrated Circuits (ICs)

RM48L740DZWTT

Active
Texas Instruments

16/32-BIT RISC FLASH MICROCONTROLLER

Technical Specifications

Parameters and characteristics for this part

SpecificationRM48L740DZWTT
ConnectivityEthernet, SPI, LINbus, UART/USART, I2C, CANbus, SCI, EBI/EMI, MibSPI
Core ProcessorARM® Cortex®-R4F
Core Size [Max]32 Bit
Core Size [Min]16 Bit
Data Converters [custom]12
Data Converters [custom]24
EEPROM Size64 K
Mounting TypeSurface Mount
Number of I/O120
Operating Temperature [Max]105 °C
Operating Temperature [Min]-40 °C
Oscillator TypeExternal
Package / Case337-LFBGA
PeripheralsWDT, DMA, PWM, POR
Program Memory Size2 MB
Program Memory TypeFLASH
RAM Size256 K
Speed200 MHz
Supplier Device Package337-NFBGA (16x16)
Voltage - Supply (Vcc/Vdd) [Max]1.32 V
Voltage - Supply (Vcc/Vdd) [Min]1.14 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTray 90$ 26.96
Texas InstrumentsJEDEC TRAY (5+1) 1$ 26.87
100$ 23.89
250$ 19.64
1000$ 17.56

Description

General part information

RM48L740 Series

The RM48Lx40 device is a high-performance microcontroller family for safety systems. The safety architecture includes dual CPUs in lockstep, CPU and memory BIST logic, ECC on both the flash and the data SRAM, parity on peripheral memories, and loopback capability on peripheral I/Os.

The RM48Lx40 device integrates the ARM Cortex-R4F Floating-Point CPU. The CPU offers an efficient 1.66 DMIPS/MHz, and has configurations that can run up to 200 MHz, providing up to 332 DMIPS. The device supports the little-endian [LE] format.

The RM48L940 device has 3MB of integrated flash and 256KB of data RAM. The RM48L740 device has 2MB of integrated flash and 256KB of data RAM. The RM48L540 device has 2MB of integrated flash and 192KB of data RAM. Both the flash and RAM have single-bit error correction and double-bit error detection. The flash memory on this device is a nonvolatile, electrically erasable, and programmable memory implemented with a 64-bit-wide data bus interface. The flash operates on a 3.3-V supply input (same level as I/O supply) for all read, program, and erase operations. When in pipeline mode, the flash operates with a system clock frequency of up to 200 MHz. The SRAM supports single-cycle read and write accesses in byte, halfword, word, and double-word modes.

Documents

Technical documentation and resources

RM48x Microcontroller Silicon Errata (Silicon Revision D) (Rev. B)

Errata

Using the CRC Module on Hercules™-Based Microcontrollers

Application note

HALCoGen-CSP Installation Guide (Rev. B)

Functional safety information

Generating Operating System Tick Using RTI on a Hercules ARM Safety MCU

Functional safety information

PWM Generation and Input Capture Using HALCoGen N2HET Module

Application note

CAN Bus Bootloader for RM48x MCU

Application note

NHET Getting Started (Rev. B)

Application note

FreeRTOS on Hercules Devices_new

Application note

Nested Interrupts on Hercules ARM Cortex-R4/5-Based Microncontrollers

Application note

TUEV SUED Certification for RM48x (Rev. C)

Certificate

UART Bootloader for Hercules RM48 MCU

Application note

Hercules AJSM Unlock (Rev. A)

Application note

HaLCoGen Release Notes

More literature

ECC Handling in TMSx70-Based Microcontrollers

Application note

Limiting Clamp Currents on TMS470/TMS570 Digital and Analog Inputs (Rev. A)

Application note

Basic PBIST Configuration and Influence on Current Consumption (Rev. C)

Application note

Interfacing the Embedded 12-Bit ADC in a TMS570LS31x/21x and RM4x Series MCUs (Rev. A)

Application note

Usage of MPU Subregions on TI Hercules ARM Safety MCUs

Functional safety information

Hercules PLL Advisory SSWF021#45 Workaround (Rev. B)

Application note

RM48x 16/32-Bit RISC Flash Microcontroller Technical Reference Manual (Rev. C)

User guide

Sharing FEE Blocks Between the Bootloader and the Application

Application note

Interrupt and Exception Handling on Hercules ARM Cortex-R4/5-Based MCUs

Application note

Execution Time Measurement for Hercules ARM Safety MCUs (Rev. A)

Functional safety information

Hercules™ MCU: Features Applicable to Use in High-Speed Rail

White paper

Model-Based Tool Qualification of the TI C/C++ ARM® Compiler

White paper

Migrating From RM48x to RM46x Safety MCUs (Rev. A)

Functional safety information

ADC Source Impedance for Hercules ARM Safety MCUs (Rev. B)

Functional safety information

Accelerating safety-certified motor control designs (Rev. A)

Functional safety information

High Speed Serial Bus Using the MibSPIP Module on Hercules-Based MCUs

Application note

HALCoGen Ethernet Driver With lwIP Integration Demo and Active Webserver Demo

Application note

Migrating from RM48x or RM46x to RM42x Safety MCUs (Rev. A)

Functional safety information

Enabling Functional Safety Using SafeTI Diagnostic Library

Functional safety information

Continuous Monitor of the PLL Frequency With the DCC

Application note

Configuring a CAN Node on Hercules ARM Safety MCUs

Functional safety information

Use of All 1'’s and All 0's Valid in Flash EEPROM Emulation

Application note

Hercules™ Diag Lib Test Automation Unit Without LDRA User's Guide

User guide

RM48x Microcontroller Silicon Errata (Silicon Revision C) (Rev. G)

Errata

3.3 V I/O Considerations for Hercules Safety MCUs (Rev. A)

Application note

Configuring the Hercules ARM Safety MCU SCI/LIN Module for UART Communication (Rev. A)

Functional safety information

HALCoGen-CSP 04.07.01 (Rev. C)

More literature

Interfacing TPS65381 With Hercules Microcontrollers (Rev. A)

Application note

Monitoring PWM Using N2HET

Application note

Verification of Data Integrity Using CRC

Application note

Sharing Exception Vectors on Hercules™ Based Microcontrollers

Application note

HALCoGen-CSP Without LDRA User's Guide

User guide

Hercules™ Microcontrollers: Real-time MCUs for safety-critical products

Functional safety information

Triangle/Trapezoid Wave Generation Using PWM With Hercules N2HET

Application note

Functional Safety Audit: SafeTI Functional Safety Hardware Development (Rev. A)

Functional safety information

Triggering ADC Using Internal Timer Events on Hercules MCUs

Application note

Discriminating between Soft Errors and Hard Errors in RAM White Paper

White paper

Certification for SafeTI Functional Safety Hardware Process (Rev. A)

Functional safety information

Calculating Equivalent Power-on-Hours for Hercules Safety MCUs

Functional safety information

Hercules Family Frequency Slewing to Reduce Voltage and Current Transients

Application note

Diagnostic Library CSP Release Notes

More literature

HALCoGen CSP Without LDRA Release_Notes

Application note

TUV SUD ISO-13849 Safety Architecture Concept Study

Functional safety information

Trace Analyzer User's Guide (Rev. B)

User guide

Hercules™ Diagnostic Library Test Automation Unit User Guide (Rev. B)

More literature

HALCoGen-CSP Without LDRA Installation Guide

User guide

TI Assembly Language Tools Enhanced High-End Timer (NHET) Assembler User's Guide

User guide

RM48Lx40 16- and 32-Bit RISC Flash Microcontroller datasheet (Rev. C)

Data sheet

Latch-Up White Paper

White paper

SafeTI™ Hercules™ Diagnostic Library Release Notes (Rev. A)

Functional safety information

Initialization of Hercules ARM Cortex-R4F Microcontrollers (Rev. D)

Application note

Reduction of Power Consumption for RM48L950 (Rev. A)

Application note

TÜV NORD Certificate for Functional Safety Software Development Process

Certificate

Important ARM Ltd Application Notes for TI Hercules ARM Safety MCUs

Functional safety information

Hercules SCI With DMA

Application note

Safety Manual for RM48x Hercules ARM-Based Safety Critical MCUs (Rev. D)

Functional safety information

HALCoGen-CSP User's Guide (Rev. C)

Functional safety information

Sine Wave Generation Using PWM With Hercules N2HET and HTU

Application note

IEC 60730 and UL 1998 Safety Standard Compliance Made Easier with TI Hercules

Functional safety information

CAN Bus Bootloader for Hercules Microcontrollers

Application note

SPI Bootloader for Hercules RM48 MCU

Application note

Hercules Diagnostic Library -TAU Installation Guide (Rev. B)

Functional safety information

Hercules Diagnostic Library - Without LDRA Installation Guide

User guide

Extending TI’s Hercules MCUs with the integrated flexible HET

White paper

How to Create a HALCoGen Based Project For CCS (Rev. B)

Application note

TI ICEPick Module Type C Reference Guide Public Version

User guide

Leveraging the High-End Timer Transfer Unit on Hercules ARM Safety MCUs (Rev. A)

Functional safety information

Hercules Diagnostic Library CSP Without LDRA

User guide

Foundational Software for Functional Safety

Functional safety information