Ihc Heart Rate Monitor Kit With AD8232 ECG Sensor Module Kit For Arduino Electronic Components Electronic Hobby Kit
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Ihc Heart Rate Monitor Kit With AD8232 ECG Sensor Module Kit For Arduino Electronic Components Electronic Hobby Kit

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Currently Unavailable
Highlights
  • Power Source: DC
  • Material: Plastic
  • Weight: 30
Description
The Heart Rate Monitor Kit with AD8232 ECG sensor module Kit For Arduino is a cost-effective board use to measure the electrical activity of the heart. This electrical activity can be chart as an ECG or Electrocardiogram and output as an analog reading. ECGs can be extremely noisy, the AD8232 Single Lead Heart Rate Monitor acts as an op-amp to help obtain a clear signal from the PR and QT Intervals easily. The ECG module AD8232 heart ECG monitoring sensor module is an integrated signal conditioning block for ECG and other bio-potential measurement applications. The ECG Module AD8232 Heart ECG Monitoring Sensor Module Kit for Arduino is designed to extract, amplify, and filter small bio-potential signals in the presence of noisy conditions; such as those created by motion or remote electrode placement. The AD8232 Heart Rate Monitor breaks out nine connections from the IC that you can solder pins, wires, or other connectors too. SDN, LO+, LO-, OUTPUT, 3.3V, GND provide essential pins for operating this monitor with an Arduino or other development board.
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Specifications
In The Box
  • 1
General
Brand
  • Ihc
Model Number
  • Heart Rate Monitor Kit With AD8232 ECG Sensor Module Kit For Arduino
Skillset
  • Creativity & Imagination
Type
  • Electronic Components
ROHS Complaint
  • No
Material
  • Plastic
Age Group
  • 16+ Years
Dimensions
Width
  • 2 cm
Height
  • 5 cm
Weight
  • 30
Power Features
Battery Type
  • NA
No Of Batteries
  • NA
Battery Size
  • NA
Power Source
  • DC
Other Power Features
  • This electrical activity can be charged as an ECG or Electrocardiogram and output as an analog reading, Designed to extract, amplify, and filter small biopotential signals in the presence of noisy conditions, such as those created by motion or remote electrode placement
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