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MAX-HEALTH-BAND and MAX-ECG-MONITOR Wearable Platforms for Health and Fitness Applications

Maxim's MAX-HEALTH-BAND provide vital signs and raw data and MAX-ECG-MONITOR tracks ECG and heart-rate signals

Image of Maxim's MAX-HEALTH-BAND and MAX-ECG-MONITOR Regulator TechnologyDesigners can extract vital signs and raw data for their wearable designs with the Maxim's MAX-HEALTH-BAND, as well as monitor clinical-grade electrocardiograph (ECG) and heart rate with the MAX-ECG-MONITOR. The MAX-HEALTH-BAND evaluation and development platform, a wrist-worn heart-rate and activity monitor, features the MAX86140 optimized optical pulse-oximeter/heart-rate sensor, the MAX20303 wearable power-management solution, and Maxim’s motion-compensated algorithms. The MAX-ECG-MONITOR evaluation and development platform features the MAX30003 ultra-low-power, clinical-grade analog front end (AFE), which monitors ECG and heart-rate signals. It comes in two form factors: a wet electrode patch for clinical applications and a chest strap for fitness applications.

MAX-HEALTH-BAND
Eliminating up to six months of the design time that is typically required for building and prototyping, the MAX-HEALTH-BAND heart-rate and activity tracker demonstrates system-level performance at the IC level and can be used to evaluate AFEs and power-management ICs (PMICs).

MAX-ECG-MONITOR
The MAX-ECG-MONITOR evaluation and development platform, featuring the MAX30003 clinical-grade AFE, analyzes data and accurately tracks ECG and heart rate to provide valuable insight to customers for clinical and fitness applications. It allows developers to run their fitness or medical ECG-based applications and algorithms.

Features
  • MAX-HEALTH-BAND
    • Monitors and streams activity and heart rate to an Android® mobile app
    • Collects beat-to-beat physiological data about the heart
    • Provides access to raw data from sensors and algorithm output
    • Algorithm output data includes heart rate, heart-rate variability, step count, and activity classification
    • Eliminates up to nine months of design time for building and prototyping
    • Requires less than half the power and one-third the space of other solutions
    • Runs for up to seven days on a single charge
  • MAX-ECG-MONITOR
    • Open API for developing unique in-device applications for ECG-based use cases
    • Additional on-board sensors including acceleration, gyroscope, and magnetometer
    • Clinical-grade ECG and heart-rate measurement and analysis, based on the MAX30003 ultra-low power ECG AFE with HR detection algorithm
Applications  
  • MAX-HEALTH-BAND
    • Fitness and wellness trackers
    • Health monitoring trackers
    • Reliable hardware to develop new use cases and customer algorithms
  • MAX-ECG-MONITOR
    • Athletic stress testing
    • Built-in fitness and health monitoring apparel
    • Fitness monitoring chest strap
    • Medical heart-rate signal patches

MAX-HEALTH-BAND Wearable Platforms for Health and Fitness Applications

ImageManufacturer Part NumberDescriptionAvailable QuantityView Details
EVAL HEART/VITALS MAX86140+20303MAX-HEALTH-BANDEVAL HEART/VITALS MAX86140+2030340 - Immediate
353 - Factory Stock
View Details

MAX-ECG-MONITOR Wearable Platforms for Health and Fitness Applications

ImageManufacturer Part NumberDescriptionAvailable QuantityView Details
EVAL HEART RATE/ECG W/MAX30003MAX-ECG-MONITOREVAL HEART RATE/ECG W/MAX3000346 - Immediate
65 - Factory Stock
View Details

MAX-HEALTH-BAND Associated Parts

ImageManufacturer Part NumberDescriptionAvailable QuantityView Details
EVAL HEART RATE/ECG W/MAX30003MAX-ECG-MONITOREVAL HEART RATE/ECG W/MAX3000346 - Immediate
65 - Factory Stock
View Details
IC SENSOR OXIMETER/HEARTRATEMAX86140ENP+TIC SENSOR OXIMETER/HEARTRATE426 - ImmediateView Details
IC ECG FRONT END 28TQFNMAX30003CTI+IC ECG FRONT END 28TQFN376 - ImmediateView Details

MAX-ECG-MONITOR Associated Parts

ImageManufacturer Part NumberDescriptionAvailable QuantityView Details
IC ECG FRONT END 28TQFNMAX30003CTI+IC ECG FRONT END 28TQFN376 - ImmediateView Details
Published: 2018-08-21