MAX6443US29L+T by Analog Devices Inc

Overview of MAX6443US29L+T by Analog Devices Inc.

The MAX6443US29L+T is a μP reset circuit designed to provide reliable and effective supervisory functions in various electronic applications. It features a long manual reset setup period, utilizing a 4-SOT_23-N/A package with four pins. Specifically, the part is engineered to operate within a temperature range of -40°C to 85°C, making it suitable for industrial environments.

This supervisory circuit provides a supply current maximum of 20 µA at a supply voltage of 5.5 V. The circuit effectively monitors voltage levels, with a nominal threshold voltage of approximately +2.93 V. The MAX6443US29L+T is categorized as a voltage supervisor/reset integrated circuit, contributing to the stability and reliability of microcontroller units (MCUs) during power fluctuations.

Notably, the component is compliant with RoHS regulations, ensuring environmentally friendly usage. The part has an active lifecycle status, introduced into the market on November 18, 2002. It comes with a moisture sensitivity level of 1, indicating that it can withstand normal manufacturing processes without special precautions.

Industry Applications for MAX6443US29L+T

The MAX6443US29L+T might find applications in several industries due to its functional properties and adaptability. Here are a few potential industry applications where this part could be useful:

  • Consumer Electronics: This part could be employed in various consumer devices, possibly in digital cameras or portable gaming consoles, facilitating stable operation by ensuring the microcontrollers reset correctly during power fluctuations.
  • Internet of Things (IoT): The MAX6443US29L+T might be integrated into smart home devices, such as monitoring systems and smart thermostats, by providing reliable voltage supervision to keep the system operational during transient conditions.
  • Smart Cities: In applications related to smart infrastructure, such as street lighting or waste management systems, this supervisory circuit could ensure that embedded controllers reset as needed, maintaining functionality in fluctuating power scenarios.
  • Energy and Power Systems: In energy management systems, including solar inverter designs, the circuit could potentially enhance the resilience of control circuits, ensuring they reset properly after power interruptions.

These potential industry applications are only conceptual and illustrative; therefore, engineering and design teams must analyze them further to ensure adherence to industry standards and specific application requirements. Similar parts may also be applicable in these scenarios, underscoring the need for careful selection during the design process.

About Analog Devices Inc.

Analog Devices Inc. is a well-known manufacturer that specializes in a broad range of electronic components, particularly in the field of Power Management Circuits. Their extensive product offerings include voltage supervisors and reset ICs, like the MAX6443US29L+T, which are critical for ensuring the operational integrity of electronic devices under varying power conditions.

The company consistently focuses on innovation within the power management sector, providing solutions that enhance reliability and efficiency across many applications. Other similar parts manufactured by Analog Devices include different voltage supervisors that may offer different features or specifications but serve the same overarching purpose of voltage sensing and reset supervision.

Where to Find MAX6443US29L+T by Analog Devices Inc.

MAX6443US29L+T, it is advisable to conduct research on Power Management Circuits at findchips.com. This platform can help in finding current stock levels and pricing for the part. Historically, the MAX6443US29L+T has been available from distributors such as Analog Devices Inc., Mouser Electronics, and Farnell; however, it is essential to check these distributors to confirm current availability and pricing.

Compare pricing for MAX6443US29L+T and other Power Management Circuits at findchips.com