MAX8890ETCBBB

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Mfr.Part #
MAX8890ETCBBB
Manufacturer
Analog Devices, Inc.
Package / Case
Datasheet
Download
Description
CELLULAR RF POWER-MANAGEMENT
Stock
14,240
In Stock :
14,240

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Manufacturer :
Analog Devices, Inc.
Product Category :
Power Management - Specialized
Number of Functions :
1
Regulator Type :
FIXED POSITIVE MULTIPLE OUTPUT LDO REGULATOR
Terminal Finish :
TIN LEAD
Pbfree Code :
No
Dropout Voltage1-Max :
0.1 V
Terminal Position :
QUAD
Terminal Pitch :
0.8 mm
Package Shape :
Square
Technology :
BICMOS
Output Voltage1-Nom :
3.3 V
Output Current1-Max :
0.1 A
Output Current2-Max :
0.1 A
Qualification Status :
COMMERCIAL
Dropout Voltage2-Max :
0.1 V
Length :
4 mm
Reach Compliance Code :
Unknown
Seated Height-Max :
0.8 mm
Pin Count :
12
JESD-609 Code :
e0
Output Voltage2-Max :
2.55 V
Output Voltage1-Min :
3.234 V
Output Voltage1-Max :
3.366 V
Output Voltage2-Min :
2.45 V
Surface Mount :
yes
Number of Terminals :
12
Number of Outputs :
3
Width :
4 mm
JESD-30 Code :
S-PQCC-N12
Peak Reflow Temperature (Cel) :
245
Terminal Form :
NO LEAD
Manufacturer :
Rochester Electronics LLC
Operating Temperature TJ-Max :
150 °C
Datasheets
MAX8890ETCBBB
Introducing Power Management - Specialized Analog Devices, Inc. MAX8890ETCBBB from Chip IC,where excellence meets affordability. This product stands out with its MAX8890ETCBBB pinout, MAX8890ETCBBB datasheet PDF, MAX8890ETCBBB amp .Beyond Power Management - Specialized Analog Devices, Inc. MAX8890ETCBBB ,we also offer LTC3225EDDB-1#TRMPBF, STWLC68JRH, LP3972SQ-I514/NOPB, Our vast inventory has you covered. Contact us now for immediate solutions.

Analog Devices, Inc. MAX8890ETCBBB


Power Management - Specialized Analog Devices, Inc. MAX8890ETCBBB Overview

The MAX8890ETCBBB by Analog Devices, Inc. is a cutting-edge integrated circuit designed for cellular RF power management, offering unparalleled efficiency and reliability in managing power for cellular devices. Engineered with precision and innovation, this component serves as the cornerstone for optimizing power consumption in cellular applications, ensuring seamless performance and prolonged battery life.

With its advanced features and robust design, the MAX8890ETCBBB stands out as a premier solution for businesses seeking superior power management solutions in their cellular devices. Whether it's smartphones, tablets, or IoT devices, this integrated circuit empowers manufacturers to deliver products with enhanced battery efficiency and optimal performance, meeting the demands of modern mobile connectivity.

MAX8890ETCBBB Features

  • Efficient Power Management: The MAX8890ETCBBB optimizes power consumption in cellular devices, extending battery life and enhancing overall performance.
  • Integrated Design: With its compact and integrated circuitry, this component offers seamless integration into cellular device designs, saving valuable space and simplifying manufacturing processes.
  • Reliable Performance: Engineered by Analog Devices, Inc., a trusted leader in semiconductor technology, the MAX8890ETCBBB ensures reliable and consistent power management in diverse operating conditions.
  • Advanced Control Capabilities: Equipped with advanced control features, including voltage regulation and current limiting, this integrated circuit provides precise control over power delivery, optimizing performance and protecting devices from power fluctuations.
  • Low Power Consumption: Designed for efficiency, the MAX8890ETCBBB minimizes power loss and heat dissipation, contributing to extended battery life and enhanced device reliability.

MAX8890ETCBBB Applications

  • Smartphones: The MAX8890ETCBBB is essential for power management in smartphones, ensuring efficient battery usage and reliable performance for seamless user experiences.
  • Tablets: Integrated into tablet devices, this component maximizes battery life and supports prolonged usage, ideal for users requiring extended productivity on-the-go.
  • IoT Devices: From wearables to connected sensors, the MAX8890ETCBBB enables efficient power management in IoT devices, optimizing energy usage for long-term operation in diverse IoT applications.
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