WMSIC Electronic Components

MPS MP1614GTL-Z

ModelMP1614GTL-Z
PackageSOT583
BrandMPS
Price Price on request Electronic component prices change quickly with market supply and demand. Please refer to the latest WMSIC quotation for current pricing.
Configuration
1 options
Configuration 25+

Available for RFQ

Technical data

Product details

14 specifications

Core information

Product name
MPS MP1614GTL-Z
Type
MPS
Minimum package
5000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
MPS
Electronic Component
MP1614GTL-Z
Electronic Component
1
Package
SOT583
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.132g
Electronic Component
1
Electronic Component
BM69418354
Electronic Component
Electronic Component
Electronic Component
5000

For datasheets, package documents, compatible-part guidance, or other technical resources, contact WMSIC customer service. Availability is confirmed case by case.

MP1614GTL-Z 产品概述

一、产品背景

MP1614GTL-Z 是来自 MPS(Monolithic Power Systems)的高性能 DC-DC 转换器,这款器件以其优越的性能和小巧的封装设计而广受欢迎。DC-DC 转换器广泛应用于便携式设备、汽车电子、工业控制以及通信设备中,以实现高效的电源管理。MP1614GTL-Z 采用了 SOT583 封装,这种封装形式不仅体积小巧,而且有助于降低整体设计的空间占用,满足现代电子设备对小型化和高效率的要求。

二、主要特点

  1. 工作电压范围:MP1614GTL-Z 可以接受宽范围的输入电压,通常为2.5V到5.5V,能够满足大多数低电压应用的电源需求。

  2. 高效能:该设备具备高效率转换能力,可以达到90%以上的效率水平,特别是在负载波动较大的情况下,其效率表现依然出色,能够有效降低系统的功耗和发热。

  3. 高频率开关:MP1614GTL-Z 具有较高的开关频率,通常在1MHz左右,这使得其输出电感和电容组件可以做得更小,从而进一步降低整个电路的体积。

  4. 输出电流能力:它支持高达1A的输出电流,非常适合需要较大电流驱动的应用场景,例如手机、平板电脑和其他便携设备。

  5. 轻松配置与调节:MP1614GTL-Z 提供了简单的外部元件选型,设计人员可以通过外部电阻来调节输出电压,从而灵活应对不同的应用需求。

  6. 多重保护措施:该产品内置多种保护功能,包括过流保护(OCP)、过温保护(OTP)和欠压锁定(UVLO),确保了设备在各种异常情况下的安全性和可靠性。

三、应用领域

MP1614GTL-Z 的广泛应用涵盖了以下几个领域:

  1. 便携式设备:在智能手机、平板电脑和手持设备中,用于其供电模块,可以有效延长电池寿命。

  2. 物联网设备(IoT):随着物联网技术的发展,MP1614GTL-Z 适用于各种智能传感器和远程监控设备,为其提供稳定的电源。

  3. 汽车电子:在汽车应用中,MP1614GTL-Z 可以用于供电给仪表盘、车载娱乐系统和传感器等模块。

  4. 工业控制:在自动化设备和工业监测系统中,MP1614GTL-Z 也能提供可靠、稳定的电源支持,有效提高系统的整体效率。

  5. 通信设备:在无线基站、路由器等设备中,该DC-DC转换器能够满足高频率、高效能的电压转换需求。

四、设计建议

在使用 MP1614GTL-Z 进行电源设计时,用户应注意以下几点:

  1. 输入输出电容的选择:合适的输入和输出电容能够减少 ripple 并提高系统的稳定性,通常选择高频低ESR电容是比较理想的做法。

  2. 布局设计:正确的PCB布局可以有效降低电磁干扰(EMI),并提高电源转换效率,建议尽量缩短功率路径,并避免高频信号线与敏感线路平行走线。

  3. 散热管理:尽管 MP1614GTL-Z 具备较好的热稳定性,但在高负载条件下仍需关注散热问题,以免温度过高影响运行稳定。

五、总结

MP1614GTL-Z DC-DC 转换器以其高效、稳定、灵活的特点,满足了多个终端应用的需求。作为 MPS 的创新产品,它在性能和小型化特性方面表现优异,是设计人员实现高效电源管理的重要工具。无论是在消费电子、汽车电子还是工业领域,MP1614GTL-Z都显示了良好的适用性和广阔的市场前景。

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