EZPBS™ Series, Battery Chargers

Results:
2
Manufacturer
Series
Operating Temperature
Battery Pack Voltage
Charge Current - Max
Number of Cells
Grade
Mounting Type
Current - Charging
Supplier Device Package
Qualification
Fault Protection
Package / Case
Voltage - Supply (Max)
Battery Chemistry
Programmable Features
Interface
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EZPBS™
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ImageProduct DetailPriceAvailabilityECAD ModelInterfaceMounting TypeOperating TemperaturePackage / CaseSeriesBattery ChemistryNumber of CellsCurrent - ChargingProgrammable FeaturesFault ProtectionCharge Current - MaxBattery Pack VoltageVoltage - Supply (Max)Supplier Device PackageGradeQualification
RT9480GQW-AA03
IC BATT CHG LI-ION 1CELL 24WQFN
5+
$4.2254
10+
$3.9437
15+
$3.8028
Quantity
377 Available
Can ship immediately
Ships from: HK
PCB Symbol, Footprint & 3D Model
USB
Surface Mount
-40°C ~ 85°C (TA)
24-WFQFN Exposed Pad
EZPBS™
Lithium Ion
1
-
-
Over Current, Over Temperature, Over Voltage, Short Circuit
1.2A
4.2V
5.5V
24-WQFN (4x4)
-
-
RT9480GQW
IC BATT CHG LI-ION 1CELL 24WQFN
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
USB
Surface Mount
-40°C ~ 85°C (TA)
24-WFQFN Exposed Pad
EZPBS™
Lithium Ion
1
-
-
Over Current, Over Temperature, Over Voltage, Short Circuit
1.2A
4.2V
5.5V
24-WQFN (4x4)
-
-

About  Battery Chargers

Battery Chargers refer to a specific category of ICs designed for managing and controlling the charging process of batteries in electronic devices. These ICs provide essential functions for regulating the current and voltage during the charging process to ensure safe and efficient recharging of batteries. Battery chargers are widely used in various applications, including mobile devices, laptops, electric vehicles, power tools, and renewable energy systems. The primary purpose of battery charger PMICs is to manage the charging process by delivering the appropriate current or voltage to the battery, preventing overcharging and over-discharging, and monitoring the battery's temperature. Battery charger PMICs are often classified based on the type of battery chemistry they are designed to work with, such as lithium-ion, nickel-cadmium, or lead-acid batteries. They are also categorized based on the number of cells they support, as different batteries can have varying cell configurations. These PMICs offer various features and functionalities to optimize battery charging performance. They may include programmable charging profiles, temperature monitoring, charge termination algorithms, and safety mechanisms to protect the battery from damage or overheating. Additionally, some battery charger PMICs integrate USB charging detection capabilities, enabling efficient charging when connected to a USB power source. By utilizing battery charger PMICs, designers can simplify the charging circuitry, improve charging efficiency, and enhance the overall reliability and safety of the battery charging process. These ICs provide a compact and integrated solution for managing battery charging, contributing to longer battery life, faster charging times, and improved user experience.