Device Information
 
 
X3102 Printer Friendly Version
 
3 Cell Li-Ion Battery Protection and Monitor IC
 
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DescriptionKey
Features
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Ordering Information
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Part No. Design-In
Status
Temp. Package MSL Price
US $
PB Free
X3102P28 InActive Comm 28 Ld PDIP N/A N/A      
X3102V28 InActive Comm 28 Ld TSSOP 1 N/A      
X3102V28T2 InActive Comm 28 Ld PDIP T+R 3 N/A      
The price listed is the manufacturer's suggested retail price for quantities of 1K units. However, prices in today's market are fluid and may change without notice.
MSL = Moisture Sensitivity Level - per IPC/JEDEC J-STD-020
SMD = Standard Microcircuit Drawing
 
  Description

The X3102 is a protection and monitor IC for use in battery packs consisting of 3 series Lithium-Ion battery cells. The device provides internal over-charge, over-discharge, and overcurrent protection circuitry, internal EEPROM memory, an internal voltage regulator, and internal drive circuitry for external FET devices that control cell charge, discharge, and cell voltage balancing.

Over-charge, over-discharge, and overcurrent thresholds reside in an internal EEPROM memory register and are selected independently via software using a 3MHz SPI serial interface. Detection and time-out delays can also be individually varied using external capacitors.

Using an internal analog multiplexer, the X3102 allows battery parameters such as cell voltage and current (using a sense resistor) to be monitored externally by a separate microcontroller with A/D converter. Software on this microcontroller implements gas gauge and cell balancing functionality in software.

The X3102 contains a current sense amplifier. Selectable gains of 10, 25, 80 and 160 allow an external 10 bit A/D converter to achieve better resolution than a more expensive 14 bit converter.

An internal 4kbit EEPROM memory featuring IDLock™, allows the designer to partition and "lock in" written battery cell/pack data.

The X3102 is housed in a 28 Pin TSSOP package.

 
  Key Features
 
  • Software Selectable Protection Levels and Variable Protect Detection/Release Times
  • Integrated FET Drive Circuitry
  • Cell Voltage and Current Monitoring
  • 0.5% Accurate Voltage Regulator
  • Integrated 4kbit EEPROM
  • Flexible Power Management with 1µA Sleep Mode
  • Cell Balancing Control Benefit
  • Optimize protection for chosen cells to allow maximum use of pack capacity.
  • Reduce component count and cost
  • Simplify implementation of gas gauge
  • Accurate voltage and current measurements
  • Record battery history to optimize gas gauge, track pack failures and monitor system use
  • Reduce power to extend battery life
  • Increase battery capacity and improve cycle life battery life
Related Documentation
 
Datasheet(s)   Datasheet(s):
 
 
  Application Block Diagrams
 

 

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