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2770EAR Ver la hoja de datos (PDF) - Dallas Semiconductor -> Maxim Integrated

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2770EAR
Dallas
Dallas Semiconductor -> Maxim Integrated Dallas
2770EAR Datasheet PDF : 27 Pages
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DS2770
DESCRIPTION
The DS2770 battery monitor and charge controller performs several functions needed for thorough
battery maintenance. When used in conjunction with the host system’s processor, a battery-pack resident
DS2770 may be utilized for applications that include charging, remaining capacity estimation, safety
monitoring, and nonvolatile (NV) parametric storage.
The DS2770 provides a unique ID, a digital temperature sensor, an analog-to-digital converter (ADC) that
measures battery voltage and current, an integrated current accumulator that keeps a running total of all
current entering and leaving the battery, an elapsed time meter, NV memory for storage of important
parameters, and an integrated charge controller supporting rechargeable lithium (including lithium-ion
and lithium-ion polymer) and nickel metal hydride (NiMH) batteries. Current measurement can be
accomplished through the use of an integrated 25mW sense resistor or through an external sense resistor.
The resolution of the current, voltage, and temperature measurements is sufficient for process monitoring
applications such as battery-charge control and safety. The charge-control technique is user-selectable to
support either pulse charge for rechargeable lithium or dT/dt termination for NiMH. Additionally,
programmable charge timers and low-battery recovery are provided for safety and convenience.
Information is sent to/from the DS2770 over a 1-Wire interface so that only one wire (and ground) needs
to be connected from a processor to a DS2770. This means that DS2770-equipped battery packs need
only four output connectors: battery power, charge source, ground, and the 1-Wire interface. Each device
has a factory-programmed 64-bit net address that allows it to be individually addressed by the host
system.
Two types of memory are provided on the DS2770 for battery information storage: lockable EEPROM
and SRAM. EEPROM memory saves important battery data in true NV memory that is unaffected by
severe battery depletion, accidental shorts, or ESD events and becomes ROM when locked to provide
additional security for unchanging battery data. SRAM provides inexpensive storage for temporary data.
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