0
  • 聊天消息
  • 系统消息
  • 评论与回复
登录后你可以
  • 下载海量资料
  • 学习在线课程
  • 观看技术视频
  • 写文章/发帖/加入社区
会员中心
创作中心

完善资料让更多小伙伴认识你,还能领取20积分哦,立即完善>

3天内不再提示

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

电子工程师 作者:工程师陈翠 2018-06-18 03:08 次阅读

Maxim公司的MAX30001是超低功耗单路生物电势(ECG,R-R,节奏检测)和生物阻抗(BioZ)模拟前端(AFE)。生物电势通路提供心电图(ECG)波形,心率和起搏器边沿检测,而生物阻抗通路则能够测量呼吸。两个通路具有ESD保护,EMI滤波,内部电极偏压,DC导联脱落检测,超低功耗,待机模式导联连接检测和内置自测校准电压以及高输入阻抗,低噪音,高CMRR,可编增益,各种低通和高通滤波器选择和高分辨率模数转换器。主要用在心律不齐检测的单导联事件监测器,住院/门诊监测的单引线无线贴片,健身胸带心率监视器,呼吸和水化监视器,基于阻抗的心率检测,生物认证和按需ECG应用。本文介绍了MAX30001主要优势和特性,功能框图,应用电路,以及评估板MAX30001 EVS主要特性,电路图,材料清单和PCB设计图。

The MAX30001 is a complete, biopotential and bioimpedance (BioZ), analog front-end (AFE) solution for wearable applications. It offers high performance for clinical and fitness applications, with ultra-low power for long battery life. The MAX30001 is a single biopotential channel providing electrocardiogram (ECG) waveforms, heart rate and pacemaker edge detection, and a single bioimpedance channel capable of measuring respiration.

The biopotential and bioimpedance channels have ESD protection, EMI filtering, internal lead biasing, DC leads-off detection, ultra-low-power, leads-on detection during standby mode, and extensive calibration voltages for built-in self-test. Soft power-up sequencing ensures no large transients are injected into the electrodes. Both channels also have high input impedance, low noise, high CMRR, programmable gain, various low-pass and high-pass filter options, and a high resolution analog-to-digital converter. The biopotential channel is DC coupled, can handle large electrode voltage offsets, and has a fast recovery mode to quickly recover from overdrive conditions, such as defibrillation and electro-surgery. The bioimpedance channel includes integrated programmable current drive, works with common electrodes, and has the flexibility for 2 or 4 electrode measurements. It also has AC lead off detection.The MAX30001 is available in a 28-pin TQFN and 30-bump wafer-level package (WLP), operating over the0℃ to +70℃ commercial temperature range.

MAX30001主要优势和特性:

Clinical-Grade ECG and BioZ AFE with High Resolution Data Converter15.9 Bits ENOB with 3.1μVPP (typ) Noise for ECG

17 Bits ENOB with 1.1μVPP Noise for BioZ

Better Dry Starts Due to Much Improved Real World CMRR and High Input ImpedanceFully Differential Input Structure with CMRR 》 100dB

Offers Better Common-Mode to Differential Mode Conversion Due to High Input Impedance

High Input Impedance 》 1GΩ for Extremely Low Common-to-Differential Mode

Minimum Signal Attenuation at the Input During Dry Start Due to High Electrode Impedance

High DC Offset Range of ±650mV (1.8V, typ) Allows to Be Used with Wide Variety of Electrodes

High AC Dynamic Range of 65mVPP for ECG and 100mVPP for BioZ Will Help Prevent Saturation in the Presence of Motion/Direct Electrode Hits

Longer Battery Life Compared to Competing Solutions85μW at 1.1V Supply Voltage for ECG

158μW at 1.1V Supply Voltage for BioZ

Leads-On Interrupt Feature Allows to KeepμC in Deep Sleep Mode Until Valid Lead Condition is DetectedLead-On Detect Current: 0.7μA (typ)

Built-In Heart Rate Detection with Interrupt Feature Eliminates the Need to Run HR Algorithm on the μControllerRobust R-R Detection in High Motion Environment at Extremely Low Power

Configurable Interrupts Allows the μC Wake-Up Only on Every Heart Beat Reducing the Overall System Power

High Accuracy Allows for More Physiological Data Extractions

32-Word ECG and 8-Word BioZ FIFOs Allows the MCU to Stay Powered Down for 256ms with Full Data Acquisition

High-Speed SPI Interface

Shutdown Current of 0.5μA (typ)

MAX30001应用:

Single-Lead Event Monitors for Arrhythmia Detection

Single-Lead Wireless Patches for In-Patient/Out-Patient Monitoring

Chest Band Heart Rate Monitors for Fitness Applications

Bio Authentication and ECG-On-Demand Applications

Respiration and Hydration Monitors

Impedance Based Heart Rate Detection

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图1.MAX30001功能框图

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图2.MAX30001应用电路图:两电极ECG和呼吸监视器

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图3.MAX30001应用电路图:四电极ECG和呼吸监视器

评估板MAX30001 EVS

The MAX30001 evaluation system (EV system) provides a single platform to evaluate the functionality and features of the MAX30001 with Biopotential (ECG, R-to-R, and Pace Detection) and Bioimpedance (BioZ) measurement capabilities. The EV system includes a MAX30001 evaluation kit (EV kit) and a MAX32630FTHR Cortex-M4F microcontroller for wearables. The MAX32630FTHR provides power to the MAX30001 EV kit and contains the firmware necessary to use the EV kit GUI program. The EV kit ships with jumpers installed and supply voltages set to typical operating values. Optional connections exist which can be shunted to make use of different functionalities.

评估板MAX30001 EVS主要特性:

Convenient Platform to Evaluate the MAX30001

Many Easy-to-Reach Test Points

Measure Individual Supply Currents

Touchproof Cable Connectors

Windows® 7/8/10 Compatible GUI software

Fully Assembled and Tested

Facilitates IEC 60601-2-47 Compliance Testing

Ultra-Low-Power Design

评估板MAX30001 EVS包括:

MAX30001 EV kit

MAX32630FTHR

USB A to micro-USB cable

Three (3) ECG cables

图4.评估板MAX30001 EVS外形图

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图5.评估板MAX30001 EVS简化电路图

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图6.评估板MAX30001 EVS电路图(1)

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图7.评估板MAX30001 EVS电路图(2)

评估板MAX30001 EVS材料清单:

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图8.评估板MAX30001 EVS PCB设计路图(1):顶层丝印

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图9.评估板MAX30001 EVS PCB设计路图(2):顶层

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图10.评估板MAX30001 EVS PCB设计路图(3):层2

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图11.评估板MAX30001 EVS PCB设计路图(4):层3

Maxim MAX30001超低功耗生物电势和阻抗AFE的解决方案详解

图12.评估板MAX30001 EVS PCB设计路图(5):底层

图13.评估板MAX30001 EVS PCB设计路图(6):底层丝印

声明:本文内容及配图由入驻作者撰写或者入驻合作网站授权转载。文章观点仅代表作者本人,不代表电子发烧友网立场。文章及其配图仅供工程师学习之用,如有内容侵权或者其他违规问题,请联系本站处理。 举报投诉
  • Maxim
    +关注

    关注

    8

    文章

    859

    浏览量

    87085
  • AFE
    AFE
    +关注

    关注

    7

    文章

    218

    浏览量

    121582
收藏 人收藏

    评论

    相关推荐

    TI推出最新模拟前端ADS1293,面向生物电势测量应用

    德州仪器 (TI) 宣布推出业界最省电24位3通道模拟前端 (AFE)ADS1293,主要面向生物电势测量应用,包括便携式电池供电型心电图 (ECG) 解决方案、霍尔特监护仪以及无线患者监护设备
    发表于 12-13 14:19 2800次阅读

    小尺寸、超低功耗的智能穿戴定位解决方案

    解决方案也是必不可少的。本篇SKYLAB君将以小尺寸、超低功耗GPS模块SKG08A/SKG09A为切入点,详细介绍体积小、功耗低的智能穿戴定位解决方案。智能穿戴定位
    发表于 09-28 16:13

    一周推荐:可穿戴式应用模拟前端 (AFE) 解决方案 集成式生物电势 AFE生物阻抗 (BioZ) + HR 检测算法

    MAX30001 生物电势阻抗模拟前端 (AFE)Maxim 的单通道集成式生物电势
    发表于 08-21 10:05

    老师要我们用max30001仿真一个电路,但是proteus没有怎么办

    如题老师要我们用max30001仿真一个电路,但是proteus元件库里没有max30001这个。我该怎么办?大佬们指点一下。
    发表于 03-10 23:29

    基于 MAX30001 的 ECG 远程患者生命体征监护仪的电源子系统

    设备。本文档重点介绍使用MAX30001 ECG AFE的生命体征监护仪。在本应用笔记中,读者可以找到参考原理图和布局(流行的EDA和PDF格式)、验证检查列表和故障排除指南。下图显示了一个框图,其中
    发表于 09-20 15:32

    Maxim积极把握可穿戴设备发展良机,有力支持预防性健康和健身应用

    Maxim 宣布推出MAX86140及MAX86141光学脉搏血氧仪/心率传感器和MAX30001心电图(ECG)及生物电阻抗(BioZ)测
    的头像 发表于 11-24 10:48 1.2w次阅读

    生物电势测量的实践挑战相关解决方案探讨

    心电图仪、肌电图仪和脑电图仪分别通过测量活体组织表面的电势来测量心脏、肌肉与大脑的行为。在进行生物电势测量时,临床医生需要面对实践挑战。本文将探讨相关解决方案。 心电图仪(ECG)、肌电图仪(EMG
    发表于 02-06 05:09 1765次阅读
    <b class='flag-5'>生物电势</b>测量的实践挑战相关<b class='flag-5'>解决方案</b>探讨

    分享Maxim最新可穿戴健康技术

    目前,针对可穿戴及预防保健应用,Maxim为客户提供4大核心技术平台,分别包括完备的生物电势生物电阻抗(BioZ)模拟前端(AFE)方案
    的头像 发表于 09-07 09:08 3919次阅读

    如何使用MAX30001评估系统测量生物电阻抗

    本视频中,Travis介绍MAX30001评估系统(MAX30001EVSYS)的设置,并演示如何利用GUI检查生物电阻抗通道的数据,这些数据能够表征呼吸和心率。
    的头像 发表于 10-11 10:14 5935次阅读

    利用MAX30001执行ECG、呼吸、心率和PACE检测

    观看MAX30001生物电势生物电阻抗模拟前端的演示,期间将其与我们的应用工程师相连,并执行ECG、呼吸、心率和PACE检测。简单易用的GUI显示该低功耗、高灵敏度平台捕获的所有波形
    的头像 发表于 10-09 04:14 9060次阅读

    MAX86140及MAX86141光学脉搏血氧仪/心率传感器和MAX30001

    MAX86140及MAX86141光学脉搏血氧仪/心率传感器和MAX30001心电图(ECG)及生物电阻抗(BioZ)测量模拟前端(AFE)
    发表于 03-26 14:49 3980次阅读

    生物电势模拟前端MAX30004

    应用的单通道生物电势心率监测AFE解决方案,可用于心率胸带和单导联无线心率贴片等产品,在剧烈运动时,无需在微控制器中提取和处理心电图 (ECG) 数据。 Maxim
    发表于 03-26 15:01 672次阅读

    ADI推出低功耗生物阻抗(BioZ)模拟前端(AFE)MAX30009

    日前,ADI推出低功耗、高性能生物阻抗(BioZ)模拟前端(AFE) MAX30009,旨在帮助缩小BioZ远程患者监测(RPM)设备的尺寸
    的头像 发表于 03-10 08:48 2472次阅读

    基于手腕的可穿戴设备用于准确监测心电

      MAX30001超低功耗、单通道集成生物电势生物阻抗模拟前端 (AFE
    的头像 发表于 05-25 14:35 2141次阅读

    研发生物电势模拟前端芯片优化医疗设备能效

    上海类比半导体技术有限公司(简称“类比半导体”或“类比”)近日宣布推出全新AFE90x系列生物电势模拟前端芯片,专为医疗设备中的动态心电监测和Holter应用而精心研发。
    的头像 发表于 04-24 10:17 368次阅读