产品详情

Continuous current (max) (A) 80 Input offset current (±) (max) (mA) 40, 42, 45, 60 Input offset current drift (±) (typ) (µA/°C) 133, 150, 160, 200 Features Alert Function, Digital output alerts MCU when current limit is reached, Externally Driven Zero Current Reference Voltage, Overcurrent protection Supply voltage (max) (V) 5.5 Supply voltage (min) (V) 3 Small-signal bandwidth (Hz) 500000 Sensitivity error (%) 0.75 Sensitivity error drift (±) (max) (ppm/°C) 50 Rating Automotive TI functional safety category Functional Safety-Capable Operating temperature range (°C) -40 to 125 Creepage (min) (mm) 8.1 Clearance (min) (mm) 8.1 Isolation rating Reinforced Surge isolation voltage (VIOSM) (VPK) 10000
Continuous current (max) (A) 80 Input offset current (±) (max) (mA) 40, 42, 45, 60 Input offset current drift (±) (typ) (µA/°C) 133, 150, 160, 200 Features Alert Function, Digital output alerts MCU when current limit is reached, Externally Driven Zero Current Reference Voltage, Overcurrent protection Supply voltage (max) (V) 5.5 Supply voltage (min) (V) 3 Small-signal bandwidth (Hz) 500000 Sensitivity error (%) 0.75 Sensitivity error drift (±) (max) (ppm/°C) 50 Rating Automotive TI functional safety category Functional Safety-Capable Operating temperature range (°C) -40 to 125 Creepage (min) (mm) 8.1 Clearance (min) (mm) 8.1 Isolation rating Reinforced Surge isolation voltage (VIOSM) (VPK) 10000
SOIC (DVG) 10 106.09 mm² 10.3 x 10.3
  • AEC-Q100 qualified for automotive applications
    • Temperature grade 1: –40°C to 125°C, TA
  • Functional Safety-Capable
    • Documentation available to aid functional safety system design
  • High continuous current capability: 80ARMS
  • Robust reinforced isolation
  • High accuracy
    • Sensitivity error: ±0.1%
    • Sensitivity thermal drift: ±20ppm/°C
    • Sensitivity lifetime drift: ±0.2%
    • Offset error: ±0.2mV
    • Offset thermal drift: ±2µV/°C
    • Offset lifetime drift: ±0.2mV
    • Non-linearity: ±0.1%
  • High immunity to external magnetic fields
  • Precision zero-current reference output
  • Fast Response
    • Signal bandwidth: 500kHz
    • Response time: 250ns
    • Propagation delay: 60ns
    • Overcurrent detection response: 100ns
  • Operating supply range: 3V to 5.5V
  • Bidirectional and unidirectional current sensing
  • Multiple sensitivity options:
    • Ranging from 15mV/A to 150mV/A
  • Safety related certifications (planned)
    • UL 1577 Component Recognition Program
    • IEC/CB 62368-1
  • AEC-Q100 qualified for automotive applications
    • Temperature grade 1: –40°C to 125°C, TA
  • Functional Safety-Capable
    • Documentation available to aid functional safety system design
  • High continuous current capability: 80ARMS
  • Robust reinforced isolation
  • High accuracy
    • Sensitivity error: ±0.1%
    • Sensitivity thermal drift: ±20ppm/°C
    • Sensitivity lifetime drift: ±0.2%
    • Offset error: ±0.2mV
    • Offset thermal drift: ±2µV/°C
    • Offset lifetime drift: ±0.2mV
    • Non-linearity: ±0.1%
  • High immunity to external magnetic fields
  • Precision zero-current reference output
  • Fast Response
    • Signal bandwidth: 500kHz
    • Response time: 250ns
    • Propagation delay: 60ns
    • Overcurrent detection response: 100ns
  • Operating supply range: 3V to 5.5V
  • Bidirectional and unidirectional current sensing
  • Multiple sensitivity options:
    • Ranging from 15mV/A to 150mV/A
  • Safety related certifications (planned)
    • UL 1577 Component Recognition Program
    • IEC/CB 62368-1

The TMCS1126-Q1 is a galvanically isolated Hall-effect current sensor with industry leading isolation and accuracy. An output voltage proportional to the input current is provided with excellent linearity and low drift at all sensitivity options. Precision signal conditioning circuitry with built-in drift compensation is capable of less than 1.4% maximum sensitivity error over temperature and lifetime with no system level calibration, or less than 1% maximum sensitivity error including both lifetime and temperature drift with a one-time calibration at room temperature.

AC or DC input current flows through an internal conductor generating a magnetic field measured by integrated, on-chip, Hall-effect sensors. Core-less construction eliminates the need for magnetic concentrators. Differential Hall sensors reject interference from stray external magnetic fields. Low conductor resistance increases measurable current ranges up to ±103A while minimizing power loss and easing thermal dissipation requirements. Insulation capable of withstanding 5kVRMS, coupled with a minimum of 8mm creepage and clearance, provides high levels of reliable lifetime reinforced working voltage. Integrated shielding enables excellent common-mode rejection and transient immunity.

Fixed sensitivity allows the device to operate from a single 3V to 5.5V power supply, eliminating ratiometry errors and improving supply noise rejection. TI provides the TMCS1126xxB-Q1 as a lower-cost option.

The TMCS1126-Q1 is a galvanically isolated Hall-effect current sensor with industry leading isolation and accuracy. An output voltage proportional to the input current is provided with excellent linearity and low drift at all sensitivity options. Precision signal conditioning circuitry with built-in drift compensation is capable of less than 1.4% maximum sensitivity error over temperature and lifetime with no system level calibration, or less than 1% maximum sensitivity error including both lifetime and temperature drift with a one-time calibration at room temperature.

AC or DC input current flows through an internal conductor generating a magnetic field measured by integrated, on-chip, Hall-effect sensors. Core-less construction eliminates the need for magnetic concentrators. Differential Hall sensors reject interference from stray external magnetic fields. Low conductor resistance increases measurable current ranges up to ±103A while minimizing power loss and easing thermal dissipation requirements. Insulation capable of withstanding 5kVRMS, coupled with a minimum of 8mm creepage and clearance, provides high levels of reliable lifetime reinforced working voltage. Integrated shielding enables excellent common-mode rejection and transient immunity.

Fixed sensitivity allows the device to operate from a single 3V to 5.5V power supply, eliminating ratiometry errors and improving supply noise rejection. TI provides the TMCS1126xxB-Q1 as a lower-cost option.

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类型 标题 下载最新的英语版本 日期
* 数据表 TMCS1126-Q1 AEC-Q100, Precision 500kHz Hall-Effect Current Sensor With Reinforced Working Voltage , Overcurrent Detection and Ambient Field Rejection 数据表 PDF | HTML 2024年 4月 26日
功能安全信息 TMCS112x-Q1 Functional Safety FIT Rate, FMD and Pin FMA PDF | HTML 2024年 3月 28日
证书 TMCS1126AEVM EU Declaration of Conformity (DoC) 2023年 8月 21日
证书 TMCS1126BEVM EU Declaration of Conformity (DoC) 2023年 8月 21日
证书 TMCS1126CEVM EU Declaration of Conformity (DoC) 2023年 8月 18日

设计和开发

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评估板

TMCS-A-ADAPTER-EVM — 适用于 DVG、DVF 或 DZP 封装的 TMCS 隔离式霍尔效应电流传感器适配器卡(不包括 IC)

TMCS-A-ADAPTER-EVM 评估模块 (EVM) 旨在促进快速、方便地使用具有 DVG、DVF 或 DZP 封装的 TMCS 隔离式霍尔效应精密电流检测监控器。此 EVM 支持用户通过霍尔输入侧推送高达 90A 的电流,同时通过隔离栅测量隔离式输出。TMCS-A-ADAPTER-EVM 只有一个未组装的 PCB,预留了用于组装测试点的位置和用于器件评估的分线接头引脚。PCB 焊盘采用重叠结构,因此任何 DVG、DVF 或 DZP TMCS 器件都能与 TMCS-A-ADAPTER-EVM 配合使用。

用户指南: PDF | HTML
英语版: PDF | HTML
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评估板

TMCS1126EVM — TMCS1126 隔离式霍尔效应电流检测监视器评估模块

TMCS1126EVM 工具可帮助您快速、便捷地使用 TMCS1126,后者是一种采用内部基准的隔离式霍尔效应精密电流检测监测器。此评估模块支持用户在霍尔输入侧实施最大工作电流,同时通过增强型隔离栅测量隔离式输出。此电路板布局并非是目标电路的模型,也并非专门用于电磁 (EMI) 测试。TMCS1126EVM 由单个印刷电路板构成,可拆分为五个单独部分,支持用户测试单个静态点的所有灵敏度变化(A = 0.5Vs、B = 0.33Vs 或 C = 0.1Vs)。
用户指南: PDF | HTML
英语版: PDF | HTML
封装 引脚 下载
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订购和质量

包含信息:
  • RoHS
  • REACH
  • 器件标识
  • 引脚镀层/焊球材料
  • MSL 等级/回流焊峰值温度
  • MTBF/时基故障估算
  • 材料成分
  • 鉴定摘要
  • 持续可靠性监测
包含信息:
  • 制造厂地点
  • 封装厂地点

支持和培训

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