TMS470MF03107

활성

16/32비트 RISC 플래시 마이크로컨트롤러

이 제품의 최신 버전이 있습니다

open-in-new 대안 비교
다른 핀 출력을 지원하지만 비교 대상 장치와 동일한 기능
TMS570LS0432 활성 16/32비트 RISC 플래시 MCU, Arm Cortex-R4, Auto Q-100 This same functionality upgrade offers higher performance and functional safety compliance.

제품 상세 정보

Frequency (MHz) 80 Flash memory (kByte) 320 RAM (kByte) 16 ADC type 10-bit Number of GPIOs 49 Number of I2Cs 0 Operating temperature range (°C) -40 to 125 PWM (Ch) 0 SPI 0 CAN (#) 2 Rating Automotive TI functional safety category Functional Safety-Compliant
Frequency (MHz) 80 Flash memory (kByte) 320 RAM (kByte) 16 ADC type 10-bit Number of GPIOs 49 Number of I2Cs 0 Operating temperature range (°C) -40 to 125 PWM (Ch) 0 SPI 0 CAN (#) 2 Rating Automotive TI functional safety category Functional Safety-Compliant
LQFP (PZ) 100 256 mm² 16 x 16
  • High-Performance Automotive Grade Microcontroller with Safety Features
    • Full Automotive Temperature Range
    • ECC on Flash and SRAM
    • CPU and Memory BIST (Built-In Self Test)
  • ARM Cortex™-M3 32-Bit RISC CPU
    • Efficient 1.2 DMIPS/MHz
    • Optimized Thumb2 Instruction Set
    • Memory Protection Unit (MPU)
    • Open Architecture With Third-Party Support
    • Built-In Debug Module
  • Operating Features
    • Up to 80MHz System Clock
    • Single 3.3V Supply Voltage
  • Integrated Memory
    • 448KB Total Program Flash with ECC
    • Support for Flash EEPROM Emulation
    • 24K-Byte Static RAM (SRAM) with ECC
  • Key Peripherals
    • High-End Timer, MibADC, CAN, MibSPI
  • Common TMS470M/570 Platform Architecture
    • Consistent Memory Map across the family
    • Real-Time Interrupt Timer (RTI)
    • Digital Watchdog
    • Vectored Interrupt Module (VIM)
    • Cyclic Redundancy Checker (CRC)
  • High-Performance Automotive Grade Microcontroller with Safety Features
    • Full Automotive Temperature Range
    • ECC on Flash and SRAM
    • CPU and Memory BIST (Built-In Self Test)
  • ARM Cortex™-M3 32-Bit RISC CPU
    • Efficient 1.2 DMIPS/MHz
    • Optimized Thumb2 Instruction Set
    • Memory Protection Unit (MPU)
    • Open Architecture With Third-Party Support
    • Built-In Debug Module
  • Operating Features
    • Up to 80MHz System Clock
    • Single 3.3V Supply Voltage
  • Integrated Memory
    • 448KB Total Program Flash with ECC
    • Support for Flash EEPROM Emulation
    • 24K-Byte Static RAM (SRAM) with ECC
  • Key Peripherals
    • High-End Timer, MibADC, CAN, MibSPI
  • Common TMS470M/570 Platform Architecture
    • Consistent Memory Map across the family
    • Real-Time Interrupt Timer (RTI)
    • Digital Watchdog
    • Vectored Interrupt Module (VIM)
    • Cyclic Redundancy Checker (CRC)

The TMS470MF04207/03107 devices are members of the Texas Instruments TMS470M family of Automotive Grade 16/32-bit reduced instruction set computer (RISC) microcontrollers. The TMS470M microcontrollers offer high performance utilizing the high efficiency Cortex™-M3 16/32-bit RISC central processing unit (CPU), resulting in a high instruction throughput while maintaining greater code efficiency. The TMS470M devices utilize the big-endian format where the most-significant byte of a word is stored at the lowest numbered byte and the least-significant byte is stored at the highest numbered byte.

High-end embedded control applications demand more performance from their controllers while maintaining low costs. The TMS470M microcontroller architecture offers solutions to these performance and cost demands while maintaining low power consumption.

The TMS470MF04207/03107 device contains the following:

  • 16/32-Bit RISC CPU Core
  • TMS470MF04207 Up to 448K-Byte Program Flash with SECDED ECC
  • TMS470MF03107 Up to 320K-Byte Program Flash with SECDED ECC
  • 64K-Byte Flash with SECDED ECC for additional program space or EEPROM Emulation
  • Up to 24K-Byte Static RAM (SRAM) with SECDED ECC
  • Real-Time Interrupt Timer (RTI)
  • Vectored Interrupt Module
  • (VIM)Hardware built-in self-test (BIST) checkers for SRAM (MBIST) and CPU (LBIST)
  • 64-bit Cyclic Redundancy Checker (CRC)
  • Frequency-Modulated Zero-Pin Phase-Locked Loop (FMzPLL)-Based Clock Module With Prescaler
  • Two Multi-buffered Serial Peripheral Interfaces (MibSPI)
  • Two UARTs (SCI) with Local Interconnect Network Interfaces (LIN)
  • Two CAN Controller (DCAN)
  • High-End Timer (HET)
  • External Clock Prescale (ECP) Module
  • One 16-Channel 10-Bit Multi-Buffered ADC (MibADC)
  • Error Signaling Module (ESM)
  • Four Dedicated General-Purpose I/O (GIO) Pins and 45 Additional Peripheral I/Os (100-Pin Package)

The TMS470M memory includes general-purpose SRAM supporting single-cycle read/write accesses in byte, half-word, and word modes. The SRAM on the TMS470M devices can be protected by means of ECC. This feature utilizes a single error correction and double error detection circuit (SECDED circuit) to detect and optionally correct single bit errors as well as detect all dual bit and some multi-bit errors. This is achieved by maintaining an 8-bit ECC checksum/code for each 64-bit double-word of memory space in a separate ECC RAM memory space.

The flash memory on this device is a nonvolatile, electrically erasable and programmable memory. It is implemented with a 144-bit wide data word (128-bit without ECC) and a 64-bit wide flash module interface. The flash operates with a system clock frequency of up to 28 MHz. Pipeline mode, which allows linear prefetching of flash data, enables a system clock of up to 80 MHz.

The enhanced real-time interrupt (RTI) module on the TMS470M devices has the option to be driven by the oscillator clock. The digital watchdog (DWD) is a 25-bit resetable decrementing counter that provides a system reset when the watchdog counter expires.

The TMS470M devices have six communication interfaces: two LIN/SCIs, two DCANs, and two MibSPIs. The LIN is the Local Interconnect Network standard and also supports an SCI mode. SCI can be used in a full-duplex, serial I/O interface intended for asynchronous communication between the CPU and other peripherals using the standard non-return-to-zero (NRZ) format. The DCAN uses a serial, multimaster communication protocol that efficiently supports distributed real-time control with robust communication rates of up to 1 megabit per second (Mbps). The DCAN is ideal for applications operating in noisy and harsh environments (e.g., automotive and industrial fields) that require reliable serial communication or multiplexed wiring. The MibSPI provides a convenient method of serial interaction for high-speed communications between similar shift-register type devices. The MibSPI provides the standard SOMI, SIMO, and SPI clock interface as well as up to eight chip select lines.

The HET is an advanced intelligent timer that provides sophisticated timing functions for real-time applications. The timer is software-controlled, using a reduced instruction set, with a specialized timer micromachine and an attached I/O port. The HET can be used for compare, capture, or general-purpose I/O. It is especially well suited for applications requiring multiple sensor information and drive actuators with complex and accurate time pulses. The TMS470M HET peripheral contains the XOR-share feature. This feature allows two adjacent HET high- resolution channels to be XORed together, making it possible to output smaller pulses than a standard HET.

The TMS470M devices have one 10-bit-resolution, sample-and-hold MibADC. Each of the MibADC channels can be grouped by software for sequential conversion sequences. There are three separate groupings, all three of which can be triggered by an external event. Each sequence can be converted once when triggered or configured for continuous conversion mode.

The frequency-modulated zero-pin phase-locked loop (FMzPLL) clock module contains a phase-locked loop, a clock-monitor circuit, a clock-enable circuit, and a prescaler. The function of the FMzPLL is to multiply the external frequency reference to a higher frequency for internal use. The FMzPLL provides the input to the global clock module (GCM). The GCM module subsequently provides system clock (HCLK), real-time interrupt clock (RTICLK), CPU clock (GCLK), HET clock (VCLK2), DCAN clock (AVCLK1), and peripheral interface clock (VCLK) to all other TMS470M device modules.

The TMS470MF04207/TMS470MF03107 devices also have two external clock prescaler (ECP) modules that when enabled, output a continuous external clock (ECLK). The ECLK1 frequency is a user-programmable ratio of the peripheral interface clock (VCLK) frequency. The second ECLK output can be selected in place of HET15 output. It shares the same source clock as ECLK1 but can be independently programmed for a separate output frequency from ECLK1.

An error signaling module (ESM) provides a common location within the device for error reporting allowing efficient error checking and identification.

The TMS470MF04207/03107 devices are members of the Texas Instruments TMS470M family of Automotive Grade 16/32-bit reduced instruction set computer (RISC) microcontrollers. The TMS470M microcontrollers offer high performance utilizing the high efficiency Cortex™-M3 16/32-bit RISC central processing unit (CPU), resulting in a high instruction throughput while maintaining greater code efficiency. The TMS470M devices utilize the big-endian format where the most-significant byte of a word is stored at the lowest numbered byte and the least-significant byte is stored at the highest numbered byte.

High-end embedded control applications demand more performance from their controllers while maintaining low costs. The TMS470M microcontroller architecture offers solutions to these performance and cost demands while maintaining low power consumption.

The TMS470MF04207/03107 device contains the following:

  • 16/32-Bit RISC CPU Core
  • TMS470MF04207 Up to 448K-Byte Program Flash with SECDED ECC
  • TMS470MF03107 Up to 320K-Byte Program Flash with SECDED ECC
  • 64K-Byte Flash with SECDED ECC for additional program space or EEPROM Emulation
  • Up to 24K-Byte Static RAM (SRAM) with SECDED ECC
  • Real-Time Interrupt Timer (RTI)
  • Vectored Interrupt Module
  • (VIM)Hardware built-in self-test (BIST) checkers for SRAM (MBIST) and CPU (LBIST)
  • 64-bit Cyclic Redundancy Checker (CRC)
  • Frequency-Modulated Zero-Pin Phase-Locked Loop (FMzPLL)-Based Clock Module With Prescaler
  • Two Multi-buffered Serial Peripheral Interfaces (MibSPI)
  • Two UARTs (SCI) with Local Interconnect Network Interfaces (LIN)
  • Two CAN Controller (DCAN)
  • High-End Timer (HET)
  • External Clock Prescale (ECP) Module
  • One 16-Channel 10-Bit Multi-Buffered ADC (MibADC)
  • Error Signaling Module (ESM)
  • Four Dedicated General-Purpose I/O (GIO) Pins and 45 Additional Peripheral I/Os (100-Pin Package)

The TMS470M memory includes general-purpose SRAM supporting single-cycle read/write accesses in byte, half-word, and word modes. The SRAM on the TMS470M devices can be protected by means of ECC. This feature utilizes a single error correction and double error detection circuit (SECDED circuit) to detect and optionally correct single bit errors as well as detect all dual bit and some multi-bit errors. This is achieved by maintaining an 8-bit ECC checksum/code for each 64-bit double-word of memory space in a separate ECC RAM memory space.

The flash memory on this device is a nonvolatile, electrically erasable and programmable memory. It is implemented with a 144-bit wide data word (128-bit without ECC) and a 64-bit wide flash module interface. The flash operates with a system clock frequency of up to 28 MHz. Pipeline mode, which allows linear prefetching of flash data, enables a system clock of up to 80 MHz.

The enhanced real-time interrupt (RTI) module on the TMS470M devices has the option to be driven by the oscillator clock. The digital watchdog (DWD) is a 25-bit resetable decrementing counter that provides a system reset when the watchdog counter expires.

The TMS470M devices have six communication interfaces: two LIN/SCIs, two DCANs, and two MibSPIs. The LIN is the Local Interconnect Network standard and also supports an SCI mode. SCI can be used in a full-duplex, serial I/O interface intended for asynchronous communication between the CPU and other peripherals using the standard non-return-to-zero (NRZ) format. The DCAN uses a serial, multimaster communication protocol that efficiently supports distributed real-time control with robust communication rates of up to 1 megabit per second (Mbps). The DCAN is ideal for applications operating in noisy and harsh environments (e.g., automotive and industrial fields) that require reliable serial communication or multiplexed wiring. The MibSPI provides a convenient method of serial interaction for high-speed communications between similar shift-register type devices. The MibSPI provides the standard SOMI, SIMO, and SPI clock interface as well as up to eight chip select lines.

The HET is an advanced intelligent timer that provides sophisticated timing functions for real-time applications. The timer is software-controlled, using a reduced instruction set, with a specialized timer micromachine and an attached I/O port. The HET can be used for compare, capture, or general-purpose I/O. It is especially well suited for applications requiring multiple sensor information and drive actuators with complex and accurate time pulses. The TMS470M HET peripheral contains the XOR-share feature. This feature allows two adjacent HET high- resolution channels to be XORed together, making it possible to output smaller pulses than a standard HET.

The TMS470M devices have one 10-bit-resolution, sample-and-hold MibADC. Each of the MibADC channels can be grouped by software for sequential conversion sequences. There are three separate groupings, all three of which can be triggered by an external event. Each sequence can be converted once when triggered or configured for continuous conversion mode.

The frequency-modulated zero-pin phase-locked loop (FMzPLL) clock module contains a phase-locked loop, a clock-monitor circuit, a clock-enable circuit, and a prescaler. The function of the FMzPLL is to multiply the external frequency reference to a higher frequency for internal use. The FMzPLL provides the input to the global clock module (GCM). The GCM module subsequently provides system clock (HCLK), real-time interrupt clock (RTICLK), CPU clock (GCLK), HET clock (VCLK2), DCAN clock (AVCLK1), and peripheral interface clock (VCLK) to all other TMS470M device modules.

The TMS470MF04207/TMS470MF03107 devices also have two external clock prescaler (ECP) modules that when enabled, output a continuous external clock (ECLK). The ECLK1 frequency is a user-programmable ratio of the peripheral interface clock (VCLK) frequency. The second ECLK output can be selected in place of HET15 output. It shares the same source clock as ECLK1 but can be independently programmed for a separate output frequency from ECLK1.

An error signaling module (ESM) provides a common location within the device for error reporting allowing efficient error checking and identification.

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기술 문서

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모두 보기19
유형 직함 날짜
* Data sheet TMS470MF04207/TMS470MF03107 16/32-Bit RISC Flash Microcontroller datasheet (Rev. C) 2012/01/31
* User guide TMS470M Series Technical Reference Manual (Rev. C) 2013/03/11
Application note Using the SPI as an Extra UART Transmitter 2016/07/26
White paper Extending TI’s Hercules MCUs with the integrated flexible HET 2015/09/29
Application note Limiting Clamp Currents on TMS470/TMS570 Digital and Analog Inputs (Rev. A) 2014/12/08
Application note Interfacing TPS65381 With Hercules Microcontrollers (Rev. A) 2014/02/14
Application note CAN Bus Bootloader for TMS470M MCU 2013/09/16
User guide Automotive Adaptive Front-lighting System Reference Design 2013/07/15
Functional safety information Safety Manual for Hercules TMS470M ARM Safety Critical MCUs 2012/04/25
User guide HET Integrated Development Environment User's Guide (Rev. A) 2011/11/17
Functional safety information Important ARM Ltd Application Notes for TI Hercules ARM Safety MCUs 2011/11/17
Application note 3.3 V I/O Considerations for Hercules Safety MCUs (Rev. A) 2011/09/06
Functional safety information ADC Source Impedance for Hercules ARM Safety MCUs (Rev. B) 2011/09/06
Functional safety information Configuring a CAN Node on Hercules ARM Safety MCUs 2011/09/06
Functional safety information Configuring the Hercules ARM Safety MCU SCI/LIN Module for UART Communication (Rev. A) 2011/09/06
User guide TI ICEPick Module Type C Reference Guide Public Version 2011/02/17
Product overview TMS470M Transportation Microcontroller Family 2011/01/07
Functional safety information Generating Operating System Tick Using RTI on a Hercules ARM Safety MCU 2010/07/13
Functional safety information Usage of MPU Subregions on TI Hercules ARM Safety MCUs 2010/03/10

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XDS560v2는 디버그 프로브의 XDS560™ 제품군 중 최고의 성능을 가진 제품으로, 기존의 JTAG 표준(IEEE1149.1)과 cJTAG(IEEE1149.7)를 모두 지원합니다. SWD(직렬 와이어 디버그)는 지원하지 않습니다.

모든 XDS 디버그 프로브는 ETB(Embedded Trace Buffer)를 특징으로 하는 모든 ARM 및 DSP 프로세서에서 코어 및 시스템 추적을 지원합니다. 핀을 통한 추적의 경우 XDS560v2 PRO TRACE가 필요합니다.

XDS560v2는 MIPI HSPT 60핀 커넥터(TI 14핀, (...)

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드라이버 또는 라이브러리

TMS470MFEE TMS470M Flash EEPROM Emulation Driver

지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

제품
Arm Cortex-M4 MCU
TMS470MF03107 16/32비트 RISC 플래시 마이크로컨트롤러 TMS470MF04207 16/32비트 RISC 플래시 마이크로컨트롤러 TMS470MF06607 16/32비트 RISC 플래시 마이크로컨트롤러
소프트웨어
IDE, 구성, 컴파일러 또는 디버거
HALCOGEN Hercules MCU용 하드웨어 추상화 계층 코드 생성기
IDE, 구성, 컴파일러 또는 디버거

CCSTUDIO Code Composer Studio integrated development environment (IDE)

Code Composer Studio is an integrated development environment (IDE) for TI's microcontrollers and processors. It comprises a suite of tools used to develop and debug embedded applications.  Code Composer Studio is available for download across Windows®, Linux® and macOS® (...)

지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

이 설계 리소스는 이러한 범주의 제품 대부분을 지원합니다.

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시작 다운로드 옵션
소프트웨어 프로그래밍 도구

F035FLASHAPI TMS470/570 Platform F035 Flash API (v1.09)

The TMS470/570 F035 Flash Application Programming Interface (API) provides a software library of functions to program, erase, and verify the TMS470/570 on-chip Flash memory.

These functions must be used when creating Flash bootloaders or other programming utilities for the TMS470/570 (...)
지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

제품
Arm Cortex-M4 MCU
TMS470MF03107 16/32비트 RISC 플래시 마이크로컨트롤러 TMS470MF04207 16/32비트 RISC 플래시 마이크로컨트롤러 TMS470MF06607 16/32비트 RISC 플래시 마이크로컨트롤러
지원 소프트웨어

NHET-ASSEMBLER TMS570 NHET Assembler Software (v2.0.1)

TI's Enhanced High-End Timer (NHET) module provides sophisticated timing functions for real-time control applications.

The NHET Assembler translates programs written in the NHET assembly language into multiple output formats for use in code-generation tools such as TI's Code Composer Studio.

지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

제품
Arm Cortex-M4 MCU
TMS470MF03107 16/32비트 RISC 플래시 마이크로컨트롤러 TMS470MF04207 16/32비트 RISC 플래시 마이크로컨트롤러 TMS470MF06607 16/32비트 RISC 플래시 마이크로컨트롤러
Arm Cortex-R MCU
RM41L232 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F RM42L432 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F RM44L520 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F RM44L920 16/32비트 Arm Cortex-R4F 플래시 MCU, RISC RM46L430 16/32비트 RISC 플래시 MCU, Cortex R4F, USB RM46L440 16/32비트 RISC 플래시 MCU, Cortex R4F, EMAC RM46L450 16/32비트 RISC 플래시 MCU, Cortex R4F, EMAC, USB RM46L830 16/32비트 RISC 플래시 MCU, Cortex R4F, USB RM46L840 16/32비트 RISC 플래시 MCU, Cortex R4F, EMAC RM46L850 16/32비트 RISC 플래시 MCU, Cortex R4F, EMAC, USB RM46L852 16/32비트 RISC 플래시 MCU, Cortex R4F, EMAC, USB RM48L530 16/32비트 RISC 플래시 마이크로컨트롤러 RM48L540 16/32비트 RISC 플래시 마이크로컨트롤러 RM48L730 16/32비트 RISC 플래시 마이크로컨트롤러 RM48L740 16/32비트 RISC 플래시 마이크로컨트롤러 RM48L940 16/32비트 RISC 플래시 마이크로컨트롤러 RM48L950 16/32비트 RISC 플래시 마이크로컨트롤러 RM48L952 16/32비트 RISC 플래시 마이크로컨트롤러 RM57L843 16/32비트 Arm Cortex-R5F 플래시 MCU, RISC, EMAC TMS570LC4357 16/32비트 RISC 플래시 MCU, Arm Cortex-R5F, EMAC, FlexRay, 자동 Q-100 TMS570LS0232 16/32비트 RISC 플래시 MCU, Arm Cortex-R4, Auto Q-100 TMS570LS0332 16/32비트 RISC 플래시 MCU, Arm Cortex-R4, Auto Q-100 TMS570LS0432 16/32비트 RISC 플래시 MCU, Arm Cortex-R4, Auto Q-100 TMS570LS0714 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F, Auto Q-100 TMS570LS0714-S 고성능 32비트 ARM Cortex-R5 기반 마이크로컨트롤러 TMS570LS0914 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F, Auto Q-100 TMS570LS1114 16/32비트 RISC 플래시 MCU, Cortex R4F, Auto Q100 TMS570LS1115 16/32비트 RISC 플래시 MCU, Cortex R4F, Auto Q100, Flexray TMS570LS1224 16/32비트 RISC 플래시 MCU, Cortex R4F, Auto Q100 TMS570LS1225 16/32비트 RISC 플래시 MCU, Cortex R4F, Auto Q100, Flexray TMS570LS1227 16/32비트 RISC 플래시 MCU, Cortex R4F, Auto Q100, Flexray, EMAC TMS570LS2124 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F TMS570LS2125 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F, FlexRay TMS570LS2134 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F TMS570LS2135 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F, FlexRay TMS570LS3134 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F TMS570LS3135 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F, FlexRay TMS570LS3137 16/32비트 RISC 플래시 MCU, Arm Cortex-R4F, EMAC, FlexRay
소프트웨어
IDE, 구성, 컴파일러 또는 디버거
HALCOGEN Hercules MCU용 하드웨어 추상화 계층 코드 생성기 HET_IDE HET(고급 타이머)
시뮬레이션 모델

TMS470MF04207 and TMS470MF03107 PZ BSDL Model

SPNM046.ZIP (5 KB) - BSDL Model
계산 툴

FMZPLL_CALCULATOR — FMzPLL 구성 툴

The FMzPLL Calculator assists a user with the configuration of the FMzPLL on TMS570 microcontrollers. It allows the user to input:
  • OSCIN speed
  • multiplier setting
  • divider settings
  • frequency modulation settings
  • PLL/OSC fail options
Once the user has configured the desired options, the calculator displays (...)
패키지 다운로드
LQFP (PZ) 100 옵션 보기

주문 및 품질

포함된 정보:
  • RoHS
  • REACH
  • 디바이스 마킹
  • 납 마감/볼 재질
  • MSL 등급/피크 리플로우
  • MTBF/FIT 예측
  • 물질 성분
  • 인증 요약
  • 지속적인 신뢰성 모니터링
포함된 정보:
  • 팹 위치
  • 조립 위치

지원 및 교육

TI 엔지니어의 기술 지원을 받을 수 있는 TI E2E™ 포럼

콘텐츠는 TI 및 커뮤니티 기고자에 의해 "있는 그대로" 제공되며 TI의 사양으로 간주되지 않습니다. 사용 약관을 참조하십시오.

품질, 패키징, TI에서 주문하는 데 대한 질문이 있다면 TI 지원을 방문하세요. ​​​​​​​​​​​​​​

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