제품 상세 정보

Vs (max) (V) 28 Operating temperature range (°C) -40 to 125 Rating Automotive
Vs (max) (V) 28 Operating temperature range (°C) -40 to 125 Rating Automotive
HVSSOP (DGQ) 28 34.79 mm² 7.1 x 4.9
  • AEC-Q100 qualified for automotive applications
    • Temperature grade 1: –40°C to +125°C, T A
  • Functional Safety-Compliant
    • Developed for functional safety applications
    • Documentation to aid ISO26262 system design up to ASIL C
  • Highly integrated squib driver solution targeted at automotive EV pyro-fuse application
    • Integration of power supplies, current regulation, diagnostics, and safety functions
    • SPI or HW pin-based triggering for flexible interface options and rapid firing reaction
    • Diagnostic functions for system energy reservoir capacitor and squib health monitoring
    • Built-in-self-test and diagnostic functions for power supplies, interfaces, drivers, and monitors
    • Architecture for reliable operation with redundant power supplies, low-side and high-driver drivers, and secondary monitoring logic
  • Up to 28-V (40-V abs. max) operating voltage
  • Compact HVSSOP-28 (DGQ) leaded package
  • Two-wire load interface with protected, current controlled high-side and protected secondary low-side switches
  • Integrated charge pump for minimal MOSFET drop out voltage
  • 4-wire, addressable, 24-bit SPI with CRC protection
    • Allows multiple device to operate on the same SPI
    • Allows for broadcast commands to multiple devices.
  • Configurable deployment currents (1.2 A / 2 ms, 1.75 A / 0.5 ms, up to 3.4 A / 0.5 ms)
  • Configurable deployment interface options
    • 2-pin HW trigger with PWM or level signaling
    • Protected SPI command with CRC
  • Comprehensive off-state diagnostics
    • Device built-in-self-test
    • Driver output and switch test
    • Interface test
    • Energy reservoir capacitor test
    • Squib resistance test
  • Configurable fault indicator (nFAULT)
  • AEC-Q100 qualified for automotive applications
    • Temperature grade 1: –40°C to +125°C, T A
  • Functional Safety-Compliant
    • Developed for functional safety applications
    • Documentation to aid ISO26262 system design up to ASIL C
  • Highly integrated squib driver solution targeted at automotive EV pyro-fuse application
    • Integration of power supplies, current regulation, diagnostics, and safety functions
    • SPI or HW pin-based triggering for flexible interface options and rapid firing reaction
    • Diagnostic functions for system energy reservoir capacitor and squib health monitoring
    • Built-in-self-test and diagnostic functions for power supplies, interfaces, drivers, and monitors
    • Architecture for reliable operation with redundant power supplies, low-side and high-driver drivers, and secondary monitoring logic
  • Up to 28-V (40-V abs. max) operating voltage
  • Compact HVSSOP-28 (DGQ) leaded package
  • Two-wire load interface with protected, current controlled high-side and protected secondary low-side switches
  • Integrated charge pump for minimal MOSFET drop out voltage
  • 4-wire, addressable, 24-bit SPI with CRC protection
    • Allows multiple device to operate on the same SPI
    • Allows for broadcast commands to multiple devices.
  • Configurable deployment currents (1.2 A / 2 ms, 1.75 A / 0.5 ms, up to 3.4 A / 0.5 ms)
  • Configurable deployment interface options
    • 2-pin HW trigger with PWM or level signaling
    • Protected SPI command with CRC
  • Comprehensive off-state diagnostics
    • Device built-in-self-test
    • Driver output and switch test
    • Interface test
    • Energy reservoir capacitor test
    • Squib resistance test
  • Configurable fault indicator (nFAULT)

The DRV3901-Q1 is a highly integrated squib driver intended for automotive EV pyro-fuse applications. It includes the power supplies, current sensing and regulation, and diagnostics and protection functions needed to drive a squib load. It incorporates several key functions unique to the device that are different from traditional squib drivers. These functions include a hardware pin trigger interface, an energy reservoir capacitor diagnostic, an addressable SPI, and optimized driver stage with integrated charge pump and additional deployment current options.

The hardware pin trigger (TRGx) interface allows for a deployment command to be issued directly in hardware to the DRV3901-Q1. This allows the flexiblity to either trigger the deployment with MCU hardware pins, directly with an overcurrent sensor, or through other external hardware circuit monitors. The hardware trigger pins support a 2-pin interface with both threshold or PWM based options to ensure robustness against miss deployment while still providing flexiblity to support a variety of interface options. Additionally, CRC protected deployment commands can be sent through the SPI bus as a secondary method.

To support a diagnostic for the system energy reservoir capacitor, the DRV3901-Q1 integrates a switch and monitor circuit to be able to bias and monitor the discharge voltage of the reservoir capacitor. This enables the device and the external MCU to detect a loss/failure of the reservoir capacitor or its approximate value in normal operation.

An addressable SPI, allow multiple devices to be controlled on a shared SPI bus. In addition to reducing required MCU resources, the addressable SPI incorporates a broadcast command structure that allows multiple drivers to be coordinated to trigger simultaneously or with staggered delays. The SPI incorporate multiple robustness functions including a CRC, address readback capability, and various bus fault detection mechanisms.

The power stage utilizes a protected high-side and low-side switch to ensure robustness against unintended driving due to a variety of fault conditions. An integrated charge pump ensures minimal drop out voltage across the switches during deployment to enable operation down to low supply voltages. A wide variety of deployment options are available to optimize for different types of squib loads or for specific application requirements.

The DRV3901-Q1 is a highly integrated squib driver intended for automotive EV pyro-fuse applications. It includes the power supplies, current sensing and regulation, and diagnostics and protection functions needed to drive a squib load. It incorporates several key functions unique to the device that are different from traditional squib drivers. These functions include a hardware pin trigger interface, an energy reservoir capacitor diagnostic, an addressable SPI, and optimized driver stage with integrated charge pump and additional deployment current options.

The hardware pin trigger (TRGx) interface allows for a deployment command to be issued directly in hardware to the DRV3901-Q1. This allows the flexiblity to either trigger the deployment with MCU hardware pins, directly with an overcurrent sensor, or through other external hardware circuit monitors. The hardware trigger pins support a 2-pin interface with both threshold or PWM based options to ensure robustness against miss deployment while still providing flexiblity to support a variety of interface options. Additionally, CRC protected deployment commands can be sent through the SPI bus as a secondary method.

To support a diagnostic for the system energy reservoir capacitor, the DRV3901-Q1 integrates a switch and monitor circuit to be able to bias and monitor the discharge voltage of the reservoir capacitor. This enables the device and the external MCU to detect a loss/failure of the reservoir capacitor or its approximate value in normal operation.

An addressable SPI, allow multiple devices to be controlled on a shared SPI bus. In addition to reducing required MCU resources, the addressable SPI incorporates a broadcast command structure that allows multiple drivers to be coordinated to trigger simultaneously or with staggered delays. The SPI incorporate multiple robustness functions including a CRC, address readback capability, and various bus fault detection mechanisms.

The power stage utilizes a protected high-side and low-side switch to ensure robustness against unintended driving due to a variety of fault conditions. An integrated charge pump ensures minimal drop out voltage across the switches during deployment to enable operation down to low supply voltages. A wide variety of deployment options are available to optimize for different types of squib loads or for specific application requirements.

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기술 문서

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검색된 결과가 없습니다. 검색어를 지우고 다시 시도하십시오.
모두 보기4
유형 직함 날짜
* Data sheet DRV3901-Q1 Single Channel Squib Driver For Automotive EV Pyro-Fuse datasheet PDF | HTML 2023/10/12
White paper 더욱 안전하고 스마트하며 더욱 연결된 배터리 관리 시스템 설계 PDF | HTML 2024/01/24
Technical article 스퀴브 및 접촉기 드라이버가 HEV/EV 배터리 분리 시스템의 안전과 효율성을 개선하는 방법 PDF | HTML 2024/01/08
Certificate DRV3901Q1EVM EU Declaration of Conformity (DoC) 2023/09/27

설계 및 개발

추가 조건 또는 필수 리소스는 사용 가능한 경우 아래 제목을 클릭하여 세부 정보 페이지를 확인하세요.

평가 보드

DRV3901-Q1EVM — DRV3901-Q1 평가 모듈

DRV3901-Q1은 12V 차량용 시스템에서 파이로퓨즈 이니시에이터를 구동하기 위한 완전 일체형 장치입니다. DRV3901-Q1EVM은 병렬 또는 중복 시스템 테스트의 유연성을 위해 DRV3901-Q1 장치 2개를 선보입니다. 이 장치는 최대 28V의 입력 전압을 지원하고 5V의 로직 공급 전압에서 작동합니다.
펌웨어

DRV3901-Q1EVM-FW DRV3901-Q1EVM firmware

Zipped folder containing manifest and firmware source code for the evaluation modules of the DRV3901-Q1.
지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

제품
솔레노이드 드라이버
DRV3901-Q1 오토모티브, 40V, 싱글 채널 파이로 퓨즈 드라이버
하드웨어 개발
평가 보드
DRV3901-Q1EVM DRV3901-Q1 평가 모듈
다운로드 옵션
평가 모듈(EVM)용 GUI

DRV3901-Q1EVM-GUI DRV3901-Q1EVM GUI

Zipped folder containing the installers for the GUI. Detailed instructions on how to use the GUI can be found in the User's Guide of the DRV3901-Q1EVM GUI.
지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

제품
솔레노이드 드라이버
DRV3901-Q1 오토모티브, 40V, 싱글 채널 파이로 퓨즈 드라이버
하드웨어 개발
평가 보드
DRV3901-Q1EVM DRV3901-Q1 평가 모듈
시작 다운로드 옵션
패키지 다운로드
HVSSOP (DGQ) 28 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

권장 제품에는 본 TI 제품과 관련된 매개 변수, 평가 모듈 또는 레퍼런스 디자인이 있을 수 있습니다.

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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