MAX637价格

参考价格:¥41.0395

型号:MAX6370KA+ 品牌:Maxim 备注:这里有MAX637多少钱,2025年最近7天走势,今日出价,今日竞价,MAX637批发/采购报价,MAX637行情走势销售排行榜,MAX637报价。
型号 功能描述 生产厂家 企业 LOGO 操作
MAX637

Preset/Adjustable Output CMOS Inverting Switching Regulators

General Description The MAX635/MAX636/MAX637 inverting switching regulators are designed for minimum component DC-DC conversion in the 5mW to 500mW range. Applications    Minimum Component, High-Efficiency DC-DC Converters    Portable Instruments    Battery Power Conversion    Board Level DC

Maxim

美信

MAX637

预置/可调输出、CMOS、反相开关型稳压器

AD

亚德诺

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

Pin-Selectable Watchdog Timers

General Description The MAX6369–MAX6374 are pin-selectable watchdog timers that supervise microprocessor (µP) activity and signal when a system is operating improperly. During normal operation, the microprocessor should repeatedly toggle the watchdog input (WDI) before the selected watchdog tim

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

3-Pin, Ultra-Low-Power SC70/SOT23 Voltage Detectors

General Description The MAX6375–MAX6380 are ultra-low-power circuits used for monitoring battery, power-supply, and regulat ed system voltages. Each detector contains a precision bandgap reference, comparator, and internally trimmed resistors that set specified trip threshold voltages.  These dev

Maxim

美信

MAX637产品属性

  • 类型

    描述

  • 型号

    MAX637

  • 制造商

    Maxim from Components Direct

  • 功能描述

    MAXIM MAX6370KA PROCESSOR SUPERVISORS - Boxed Product(Development Kits)

  • 制造商

    Maxim

  • 功能描述

    Maxim MAX6370KA Processor Supervisors

更新时间:2025-11-18 20:00:00
IC供应商 芯片型号 品牌 批号 封装 库存 备注 价格
MAXIM/美信
22+
1000000
MAXIM/美信
25+
SOT-23
32000
MAXIM/美信全新特价MAX6370KA+T即刻询购立享优惠#长期有货
MAXIM
24+
SOT23
8500
只做原装正品假一赔十为客户做到零风险!!
MAXIM
21+
SOT23-8
2705
十年信誉,只做原装,有挂就有现货!
MAX6370KA
25+
346
346
MAXIMINTEGRATEDPRODUCTS
24+
SOT23-8
6800
100%原装进口现货,欢迎来电咨询
MAXIM/美信
24+
DIP
33500
全新进口原装现货,假一罚十
MAXIM/美信
22+
SOT23-8
3000
支持任何机构检测 只做原装正品
MAXIM
24+
SOT23-8
9863
一级代理//放心购买
MAXIM/美信
22+
SOT23-8
15000
原装优质现货订货渠道商

MAX637数据表相关新闻