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HXY MOSFET MAX810R-HXY product image
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HXY MOSFET MAX810R-HXYRoHS

Manufacturer
HXY MOSFETAsian Brands
MPN
MAX810R-HXY
LCSC Part #
C22386571
Packaging
SOT-23
Customer #
Key Attributes
Power Supply Supervisor
Datasheetpdf iconHXY MOSFET MAX810R-HXY
In-Stock: 220
220 In stock, ships now
Minimum: 10Multiple: 10Sales Unit: Piece
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QtyUnit PriceTotal Amount
10+$ 0.0598$ 0.60
100+$ 0.0472$ 4.72
300+$ 0.041$ 12.30
3,000+$ 0.0363$ 108.90
6,000+$ 0.0326$ 195.60
9,000+$ 0.0307$ 276.30
Standard Packaging3000/Full Reel
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Products Specifications

All
TypeDescription
CategoryIntegrated Circuits (ICs)/Power Management (PMIC)/Supervisors
ManufacturerHXY MOSFET
PackagingSOT-23
Operating Temperature-20℃~+60℃
Reset Timeout20us
output typePush-pull
Function-
Reset Active LevelActive High
standby current17uA
Voltage - Supply1.2V~5.5V
ChipTypeVoltage Detector
Threshold Voltage2.63V
Number of Voltages Monitored1

Introduction

AI Translation

The MAX810x series is a microprocessor reset IC with voltage monitoring capability, designed to supervise the supply voltage of microcontrollers or other logic systems. It provides a reset signal to the microcontroller during power-up, power-down, and power-saving conditions. When the supply voltage falls below the preset threshold voltage, the device asserts a reset signal until the supply voltage recovers above the threshold. In this series, the VRESET output goes high when the input voltage drops below the threshold voltage. The device is simple to use and requires no external components.

Features

AI Translation
  • Low power consumption: 2μA (typical)
  • Wide operating voltage range: 1V~6.0V
  • VCC transient immunity
  • No external components required
  • Built-in reset delay time: 500ms (typical)
  • High-accuracy reset voltage: ±2.5%
  • VRESET output low when input voltage exceeds detection threshold
  • Compact package: SOT-23

Applications

AI Translation
  • Battery-powered devices
  • Wireless communication systems
  • Computers and microprocessors
  • PADs and handheld devices
  • Embedded systems