Skyworks Solutions AAT3672IWO-4.2-1-T1 especificações técnicas, atributos, parâmetros.
Category:Integrated Circuits (ICs)/Battery Chargers
製品ステータス:Obsolete
動作温度:-25°C ~ 85°C (TA)
取り付けタイプ:Surface Mount
パッケージ/ケース:14-WFDFN Exposed Pad
バッテリー化学:Lithium Ion/Polymer
セルの数:1
充電電流 - 最大:1.6A
インタフェース:USB
サプライヤーデバイスパッケージ:14-TDFN (3x3)
障害保護:Over Current, Over Temperature, Over Voltage
電流 - 充電:Constant - Programmable
プログラム可能な機能:Current, Timer
バッテリーパック電圧:4.2V
電圧 - 供給(最大):6.5V
EU RoHS ステータス:ROHS3 Compliant
モイスチャーレベル:1 (Unlimited, 30°C/85%RH)
輸出規制分類番号:EAR99
HTS 米国:8542.39.0001
REACH規則:Vendor is not defined
中国の RoHS ステータス:Orange Symbol: Safe for use during the environmental protection period
Skyworks Solutions AAT3672IWO-4.2-1-T1 Detalhes
Skyworks Solutions, Inc. AAT3672IWO-4.2-1-T1 is a specific integrated circuit (IC) manufactured by Skyworks Solutions, a leading semiconductor company known for its innovative solutions in wireless communication technologies.
Functions:
The AAT3672IWO-4.2-1-T1 IC is designed to perform various functions related to power management, such as voltage regulation, power switching, and battery charging. It typically integrates multiple components into a single chip to optimize power efficiency and overall system performance.
Applications:
The AAT3672IWO-4.2-1-T1 IC is commonly used in a wide range of electronic devices and systems, including smartphones, tablets, wearable devices, IoT devices, and other portable electronics. It is particularly suitable for applications that require efficient power management and battery charging capabilities.
Alternative Components:
Some alternative components that can perform similar functions to the AAT3672IWO-4.2-1-T1 IC include offerings from other semiconductor manufacturers such as Texas Instruments, Analog Devices, Maxim Integrated, and STMicroelectronics. These alternatives may have slightly different specifications and features, so it's important to select the component that best fits the requirements of the specific application.
Embedded Modules:
The AAT3672IWO-4.2-1-T1 IC may be part of larger embedded modules or systems-on-chip (SoCs) that integrate additional components and functionalities. These embedded modules could include other ICs, microcontrollers, sensors, wireless communication modules, and more, depending on the complexity of the overall system design.
Related Q&A:
1. Q: What are the key advantages of using the Skyworks Solutions AAT3672IWO-4.2-1-T1 IC in portable electronic devices?
A: The AAT3672IWO-4.2-1-T1 offers high levels of power efficiency, compact size, and integrated features that make it ideal for maximizing battery life and overall performance in devices like smartphones and wearables.
2. Q: Can the AAT3672IWO-4.2-1-T1 IC support fast charging technologies?
A: Depending on the specific design and configuration, the AAT3672IWO-4.2-1-T1 IC may support fast charging protocols such as Quick Charge or USB Power Delivery, providing rapid charging capabilities for compatible devices.
3. Q: How does the AAT3672IWO-4.2-1-T1 IC ensure safe and reliable charging of lithium-ion batteries?
A: The AAT3672IWO-4.2-1-T1 IC incorporates various protection features such as overvoltage protection, overcurrent protection, and thermal management to safeguard the battery and device during charging operations.
4. Q: Are there any specific design considerations when integrating the AAT3672IWO-4.2-1-T1 IC into a PCB layout?
A: It's important to follow the manufacturer's guidelines for layout, component placement, and routing to ensure proper functionality and performance of the AAT3672IWO-4.2-1-T1 IC. Pay attention to signal integrity, thermal management, and noise considerations during the design process.
5. Q: Can the AAT3672IWO-4.2-1-T1 IC be used in automotive applications?
A: While the AAT3672IWO-4.2-1-T1 IC is primarily designed for consumer electronics, it may be suitable for certain automotive applications that require power management and battery charging functionality. However, automotive-grade components with specific certifications and robustness may be more suitable for critical automotive systems.