MAX20335

PRODUCTION

PMIC with Ultra-Low IQ Voltage Regulators and Battery Chargers for Small Lithium Ion Systems

Optimized Power Management for 24/7 Monitoring Systems Such as Wearables and IoT

Part Models
12
1ku List Price
Starting From $1.99

Part Details

  • Extend System Use Time Between Battery Charging
    • Dual Ultra-Low-IQ 200mA Buck Regulators
      • Output Programmable from 0.7V to 2.275V and 0.7V to 3.85V
      • 0.9µA (typ) Quiescent Current (Buck 1)
      • Optional Fixed Peak-Current Mode to Optimize Ripple Frequency in Noise-Sensitive Applications
    • Three Ultra-Low-IQ 100mA LDOs
    • LDO1
      • Output Programmable from 0.8V to 3.6V
      • 0.6µA (typ) Quiescent Current
      • 2.7V to 5.5V Input with Dedicated Pin
    • LDO2/3
      • Output Programmable from 0.9V to 4V
      • 1µA (typ) Quiescent Current
      • 1.71V to 5.5V Input with Dedicated Pin
  • Easy-to-Implement Li+ Battery Charging
    • Smart Power Selector
    • 28V/-5.5V Tolerant Input
    • Thermistor Monitor
  • Minimize Solution Footprint Through High Integration
    • Provides Five Regulated Voltage Rails
    • Switch Mode Option on Each LDO
  • Optimize System Control
    • Monitors Pushbutton for Ultra-Low Power Mode
    • Power-On Reset Delay and Voltage Sequencing
    • On-Chip Voltage Monitor Multiplexer
MAX20335
PMIC with Ultra-Low IQ Voltage Regulators and Battery Chargers for Small Lithium Ion Systems
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Documentation

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Evaluation Kits

eval board
Voyager4

Wireless Asset Health Monitoring with Edge AI

Features and Benefits

The MEMS-based Wireless Vibration Monitoring Platform is a complete evaluation solution that includes:

  • Intelligent, smarter, and secure decisions at the EDGE
  • Decision making at the edge reduces network overhead and improves battery life
  • Mechanical mounting and measurement capability up to 8 kHz bandwidth
  • 3-axis ultra-low power, ultra-low noise MEMS accelerometer technology
  • Ultra-low power microcontroller and robust low power Bluetooth Low Energy (BLE) technology

It enables users to:

  • Develop and deploy artificial intelligence at the EDGE
  • Rapidly deploy a wireless solution to a machine or test setup
  • Evaluate ADI MEMS sensor technology for vibration monitoring
  • Evaluate ADI BLE technology for industrial wireless sensing
  • Accelerate asset monitoring and solution development
  • Evaluate and develop EDGE AI solutions for industrial condition-based monitoring

Product Details

Voyager4 uses triaxial digital out MEMS sensors including the ADXL382 and ADXL367. The design also includes the MAX32666 BLE and MAX78000 AI microcontrollers. Flexible and PCB area efficient PMIC power devices have been added as load switches for enhanced wireless sensor power savings. A BLE 5.3 Adapter with Antenna is included in every Voyager4 kit. Voyager4 uses BLE which makes it compatible with any PC with a Bluetooth Radio, but to ensure optimal performance and range, using the adapter when communicating with Voyager4 is recommended.

The solution operates in two modes:

Data Collection/Streaming mode – In this mode, the data is sent to the Host PC for AI model development.

Normal Operation/AI mode – In this mode, the anomaly alert is sent to the Host PC and user can decide to gather more ADXL382 data.

eval board
EV-CATTLETAG-ARDZ

Smart Livestock Tracking and Health Monitoring Sensor

Features and Benefits

  • Monitors the health and vitality of livestock in real-time, enabling farmers to quickly treat animals and prevent the spread of illness or disease.
  • Tracks grazing animals to prevent loss and to identify grazing patterns.
  • Gathers and analyzes historical data to identify trends in cattle health or to track the spread of illness.
  • Monitors readiness to mate or give birth, preventing the loss of new calves and optimizing breeding practices.

Product Details

The EV-CATTLETAG-ARDZ is an Arduino board with a fully integrated solution for harvesting energy from single-/multi-cell solar sources. The device includes battery chargers for small lithium-ion systems, and a digital temperature sensor for applications such as Wearables and IoT. The board has an on-board MAX20335 BMS device, a MAX30210 temperature sensor, and a buzzer with a vibration motor option.

APPLICATIONS

  • Asset location
  • Asset recovery
  • Asset traceability
  • Inventory management

Voyager4
Wireless Asset Health Monitoring with Edge AI
EV-CATTLETAG-ARDZ
Smart Livestock Tracking and Health Monitoring Sensor

Reference Designs

MAXREFDES282
Health Patch Platform: Chest-Based SpO2, ECG, Heart Rate, Respiration Rate, and Temperature Measurement

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