位置:首页 > IC中文资料 > MAX16038

型号 功能描述 生产厂家 企业 LOGO 操作
MAX16038

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

MAX16038

低功耗电池备份电路,采用微型µDFN封装

MAX16033–MAX16040监控电路降低了微处理器系统中的电源监控和电池控制功能的复杂度和器件数量。跟其它IC或分立元件相比,该器件能显著的提高系统可靠性和精确度。MAX16033–MAX16040提供µP复位、备用电池切换、掉电警告、看门狗和片选控制功能。\nMAX16033–MAX16040可采用高达5.5V的电源电压工作。工厂设置的复位门限电压范围为2.32V至4.63V。该器件提供手动复位输入(MAX16033/MAX16037)、看门狗定时器输入(MAX16034/MAX16038)、电池接通指示输出(MAX16036/MAX16040)、可调辅助复位输入(MAX16036/M ·低至1.2V工作电压\n·精确监控5.0V、3.3V、3.0V和2.5V电源电压\n·独立的掉电比较器\n·经去抖动的手动复位输入\n·看门狗定时器,1.6秒超时门限\n·电池连接指示输出\n·用户可调辅助RESETIN\n·低至13µA静态工作电流\n·提供2种输出结构:\n·推挽/RESET\n·开漏/RESET\n·低电平有效复位输出可工作至1.2V\n·电源瞬态抑制\n·140ms (最小)复位持续时间\n·小型2mm x 2mm、8引脚和10引脚µDFN封装;

AD

亚德诺

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

Low-Power Battery Backup Circuits in Small μDFN Packages

General Description The MAX16033–MAX16040 supervisory circuits reduce the complexity and number of components required for power-supply monitoring and battery control functions in microprocessor (µP) systems. The devices significantly improve system reliability and accuracy compared to other ICs

MAXIM

美信

封装/外壳:8-WFDFN 包装:卷带(TR) 描述:IC SUPERVISOR 1 CHANNEL 8UDFN 集成电路(IC) 监控器

AD

亚德诺

封装/外壳:8-WFDFN 包装:带带 描述:IC BATTERY BACKUP 2.93V 8-UDFN 集成电路(IC) 监控器

AD

亚德诺

Hook and Loop – Ties

文件:150.81 Kbytes Page:2 Pages

HEYCO

IESNA Type II (medium) beam applicable for European P-class

文件:2.39371 Mbytes Page:5 Pages

LEDIL

160MHz SAW Filter 19MHz Bandwidth

文件:137.85 Kbytes Page:3 Pages

SIPAT

胜普电子

160MHz SAW Filter 19MHz Bandwidth

文件:143.37 Kbytes Page:3 Pages

SIPAT

胜普电子

MAX16038产品属性

  • 类型

    描述

  • Reset Thresh.(V):

    1.8 to 2.5/2.5 to 3.3/3.3 to 5.5/

  • Reset Out:

    Active Low/Open Drain/Push-Pull/

  • ICC(µA):

    50

  • Oper. Temp.(°C):

    -40 to +85

  • Package/Pins:

    µDFN/10/

  • BudgetaryPrice:

    $2.16 @1k

更新时间:2026-8-1 18:34:00
IC供应商 芯片型号 品牌 批号 封装 库存 备注 价格
MAXIM/美信
24+
8DFN
8540
只做原装正品现货或订货假一赔十!
MAXIM
22+
DFN
3000
原装正品,支持实单
MAXIM
22+
DFN-8
5000
原装现货库存.价格优势!!
MAXIM
11+
TDFN8
1407
全新 发货1-2天
MAXIM
17+
TDFN8
6200
100%原装正品现货
Maxim
22+
8uDFN
9000
原厂渠道,现货配单
MAXIM
24+
DFN
380
MAXIM
2023+
DFN
50000
原装现货
MaximIntegrated
24+
8-uDFN(2x2)
66800
原厂授权一级代理,专注汽车、医疗、工业、新能源!
MAXIM
25+
DFN
4500
百分百原装正品 真实公司现货库存 本公司只做原装 可

MAX16038数据表相关新闻

  • MAX1615EUK+T 深圳市励芯恒智能科技有限公司 原装现货 假一赔十!

    深圳市励芯恒智能科技有限公司 原装正品,假一赔十!

    2020-11-3
  • MAX1614-高侧N通道MOSFET开关驱动器

    一般描述 MAX1614驱动器的高侧N通道功率MOSFET提供电池电源开关在便携式功能设备。 N沟道功率MOSFET通常有三分之一的导通电阻的P沟道MOSFET的同类尺寸和成本。内部稳压器和微电荷泵产生的高侧驱动输出电压,而无需外部元件。在MAX1614还具有一个1.5%精确的低电池比较器,可用于指示电池电量不足条件,提供了一个早期电源故障警告系统微处理器或断开电池负载,防止电池深度放电和损坏。一个内部锁存允许开/关控制按钮非常低电流消耗。关机模式电流消耗仅耗电6μA而正常的操作要求小于25μA以下。在MAX1614可在节省空间μMAX封装,占地约60%的空间比一个标准的8引

    2013-2-27
  • MAX1552-低成本PDA的总电源IC

    MAX1552是一个完整的电源管理芯片低成本的个人数字助理(PDA)和便携式装置操作从1节锂离子(Li +),或3节镍氢电池,电池。它包括所有的监管,输出和电压监视小型PDA必要的,而需要一个最低限度的外部元件。此装置具有四个线性稳压器,一个升压型DC - DC转换器用于LCD偏置,微处理器复位输出和采用微型QFN封装的低电压检测。对于锂离子充电器兼容USB和AC适配器输入,参考MAX1551 *.线性稳压器具有四个要素PMOS旁路高效低压差操作。该LDO的主要供应超过3.3V的300mA的。一个SD卡插槽3.3V的输出电源在200mA的。该COR1 200mA的LDO的输出,1.5V和LDO

    2013-2-13
  • MAX1600-双通道的CardBus和PCMCIA的VCC/ VPP的功率开关网络...

    一般描述 该MAX157/MAX159低功耗,10位模拟至数字转换器(ADC),采用8引脚μMAX可用,DIP封装。这两种器件采用单+2.7 V至+5.25 V电源供电,并设有7.4μs逐次逼近型ADC,自动断电,快速唤醒(2.5μs),一个片上时钟和一个高速,3线串行接口。功耗仅3.2mW(电压Vdd =+3.6 v)在108ksps最高采样率。在较慢的吞吐量率,进一步0.2μA自动关机降低功耗。该MAX157提供2个通道,单端工作并接受输入信号从0到VREF。该MAX159接受伪差分输入范围从0到VREF。访问数据的外部时钟通过3线串行接口,它为SPI™,QSP

    2013-2-13
  • MAX1615-高电压,低功耗线性稳压器,用于笔记本电脑

    MAX1615/MAX1616是微功耗,SOT23 - 5封装的线性监管部门始终在供应,保持活动的权力CMOS RAM和微控制器(在系统的微控制器)高电压电池。主要特点包括:宽输入电压范围,低压差,低静态电源电流。尽管一个吝啬的8μA(最大值)的空载电流,MAX1615/MAX1616具有出色的线路瞬态响应和AC电源抑制比。他们提供一个清洁,固定5V或3.3V输出(MAX1615)或一个1.24V至28V的可调输出(MAX1616),甚至快速供电电压变化的,当受到切换过程中发生的,从电池到AC适配器输入功率。节省空间的SOT23 - 5封装有优良的热特性和容忍571mW的功耗。故障保护内部折返

    2013-1-17
  • MAX1595-稳压3.3V/5.0V Step-Up/Step-Down电荷泵

    MAX1595电荷泵调节产生从1.8V至5.5V输入3.3V或5V。独特的控制架构允许稳压器,以加强或一步下来的输入电压保持输出稳压。1MHz的开关频率,与独特的控制方案,允许使用陶瓷电容为1μF的小125毫安的输出电流。完整的稳压器需要三个外部电容无电感器是必要的。 MAX1595是专门设计作为一种高功率,组成离线在应用需求的辅助电源紧凑的设计。 MAX1595是在节省空间8引脚μMAX和高功率的12引脚薄型QFN包。 应用 白光LED电源 快闪记忆体用品 电池供电应用 小型设备 PCMCIA卡

    2012-12-23