MAX6502UKP065+T Voltage Supervisor Detector IC, SOT-23 Package

  • This device provides accurate voltage monitoring to ensure system stability and prevent unexpected shutdowns.
  • Featuring a precise voltage threshold, it helps maintain optimal performance by detecting undervoltage conditions effectively.
  • The compact package design allows for efficient board space usage, facilitating integration into small electronic devices.
  • Ideal for battery-powered systems, it helps extend device life by managing power supply conditions reliably.
  • Manufactured with strict quality control measures, it offers dependable operation under various environmental conditions.
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MAX6502UKP065+T Overview

The MAX6502UKP065+T is a precision microprocessor supervisory circuit designed to monitor power supply voltages and ensure system reliability in embedded applications. Featuring a fixed reset threshold at 6.5V, it provides accurate voltage monitoring with a low supply current, making it ideal for battery-powered and industrial systems. The device integrates a manual reset input and an open-drain reset output, enabling flexible system control and improved fault tolerance. Housed in an ultra-compact SOT23 package, this supervisor offers ease of integration in space-constrained designs. For detailed technical resources and purchasing options, visit IC Manufacturer.

MAX6502UKP065+T Technical Specifications

ParameterSpecification
Reset Threshold Voltage6.5V ??1.5%
Supply Voltage Range1.0V to 10.5V
Reset Output TypeOpen-Drain
Reset Pulse Width140ms (typical)
Manual Reset InputActive-Low
Operating Temperature Range-40??C to +85??C
Supply Current3.5??A (typical)
Package TypeSOT23-3

MAX6502UKP065+T Key Features

  • Accurate Voltage Monitoring: Fixed 6.5V reset threshold with ??1.5% tolerance ensures reliable detection of undervoltage conditions, protecting sensitive components.
  • Low Supply Current: Consumes only 3.5??A typical, extending battery life in portable and remote systems.
  • Open-Drain Reset Output: Allows wired-AND connection for multiple supervisors, enabling system scalability and simplified reset logic.
  • Manual Reset Input: Provides external control to generate a reset pulse, enhancing system debugging and user-triggered resets.

MAX6502UKP065+T Advantages vs Typical Alternatives

This supervisory device offers superior accuracy and low power consumption compared to typical voltage supervisors. The fixed 6.5V threshold with tight tolerance improves system reliability by minimizing false resets. Its ultra-low quiescent current is advantageous for battery-operated devices, while the open-drain output simplifies integration in multi-reset environments. These features combine to deliver robust power monitoring and control in compact industrial and embedded applications.

Typical Applications

  • Embedded microprocessor power monitoring systems requiring precise reset threshold detection to prevent erratic operation during voltage dips and brownouts.
  • Battery-powered portable devices where low supply current is critical to maximizing operational lifetime.
  • Industrial control systems needing reliable manual reset capability and accurate voltage supervision for fail-safe operation.
  • Consumer electronics with space constraints benefiting from the compact SOT23 package for easy PCB layout.

MAX6502UKP065+T Brand Info

The MAX6502UKP065+T is part of the MAX6500 series of microprocessor supervisory circuits, known for precision, reliability, and low power consumption. Designed and manufactured by a leading semiconductor company, it addresses critical needs in voltage monitoring for embedded systems. This product line is widely adopted across industrial, automotive, and consumer markets, providing trusted reset and power-fail detection solutions backed by rigorous quality standards and global support.

FAQ

What is the function of the manual reset input on the MAX6502UKP065+T?

The manual reset input is an active-low signal that allows an external source, such as a push-button or microcontroller, to initiate a reset pulse. This feature is useful for debugging or forcing a controlled reset of the system without cycling power, improving system maintainability and user control.

How does the open-drain reset output benefit system design?

An open-drain output can be wired-ANDed with other supervisors?? outputs, enabling multiple monitoring devices to share a common reset line. This simplifies the reset logic in complex systems and ensures that any detected fault triggers a system reset, enhancing reliability.

What is the typical reset pulse duration generated by this product?

The reset pulse width is typically 140 milliseconds. This duration ensures the microprocessor or system has sufficient time to properly initialize after a reset event, reducing the risk of erratic behavior

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