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BQ2000 Datasheet PDF

Part Series:
BQ2000 Series
Category:
Battery Management
Description:
Battery Charge Management Switch-mode Multi-Chemistry Battery Charger with Peak Voltage Detection Termination Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin SOIC T/R
Updated Time: 2023/01/13 02:33:57 (UTC + 8)

BQ2000 Datasheet PDF Battery Management

27 Pages
TI
Battery Charge Management Switch-mode Multi-Chemistry Battery Charger with Peak Voltage Detection Termination Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin SOIC T/R
27 Pages
TI
TEXAS INSTRUMENTS BQ2000TSN-B5 Battery Charger Li-Ion, NiCd, NiMH battery, 6V input, 2V / 2A charge, SOIC-8
27 Pages
TI
Battery Charge Management Switch-mode Multi-Chemistry Battery Charger with dT/dt Termination Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin SOIC T/R
27 Pages
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Battery Charge Management Switch-mode Multi-Chemistry Battery Charger with Peak Voltage Detection Termination Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin TSSOP T/R
27 Pages
TI
Battery Charge Management Switch-mode Multi-Chemistry Battery Charger with dT/dt Termination Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin TSSOP Tube
27 Pages
TI
Battery Charge Management Switch-mode Multi-Chemistry Battery Charger with dT/dt Termination Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin PDIP Tube
27 Pages
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Battery Charge Management Switch-mode Multi-Chemistry Battery Charger with dT/dt Termination Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin TSSOP T/R
27 Pages
TI
Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin TSSOP T/R
27 Pages
TI
IC, BATTERY CHARGER, 2A, SOIC-8
27 Pages
TI
Fast Charge Management Li-Ion/NiCD/NiMH 2000mA 8Pin SOIC T/R
27 Pages
TI
TEXAS INSTRUMENTS BQ2000TPWG4 Battery Charger for Li-Ion, Li-Pol, NiCd, NiMH battery, 6V input, 2A charge, TSSOP-8
27 Pages
TI
Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin TSSOP Tube
27 Pages
TI
Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin SOIC Tube
27 Pages
TI
Fast Charge Management Li-Ion/NiCD/NiMH Packs 2000mA 8Pin TSSOP T/R
27 Pages
TI
Evaluation Module for Battery Charge Management IC
27 Pages
TI
Fast Charge Management Li-Ion/NiCD/NiMH 2000mA 8Pin SOIC Tube

BQ2000SN-B5TR - TI Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Number of Pins
8 Pin
Case/Package
SOIC-8
Input Voltage (DC)
6.00 V
Output Current
2000 mA
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BQ2000SN-B5TR - TI Function Overview

The BQ2000SN-B5TR is a switch mode programmable multi chemistry battery charger in 8 pin SOIC package. This monolithic IC is used for fast charge management of nickel cadmium (NiCd), nickel metal hydride (NiMH) or lithium-ion (Li-ion) batteries in single or multi chemistry applications. The BQ2000 chooses proper battery chemistry (either nickel or lithium) and proceeds with optimal charging and termination algorithms. This process eliminates undesirable, undercharged or overcharged conditions. It allows accurate and safe termination of fast charge. The device inhibits fast charge until battery voltage and temperature are within user defined limits. The integrated high speed comparator allows the BQ2000 to be basis for a complete high efficiency battery charger circuit for both nickel based and lithium based chemistries. Fast charge termination is performed by peak voltage (PVD) (NiCd and NiMH), minimum current (Li-ion), maximum temperature and charge time.
High frequency switching controller for efficient and simple charger design
Pre-charge qualification for detecting short, damage or overheated cells
Selectable top-off mode for achieving maximum capacity in NiMH batteries
Programmable trickle charge mode for reviving discharged batteries and for post-charge maintenance
Built-in battery removal and insertion detection
Sleep mode for low power consumption
Supply voltage range from 4V to 6V
Maximum charge current is greater than 2A
Maximum cell voltage (VMCV) of 2V
Operating temperature range from -20°C to 70°C
This device has limited built-in ESD protection. The leads should be shorted or device should be placed in conductive foam during storage or handling to prevent electrostatic damage to MOS gates.
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