Product Overview: 78M6613-IMR/F from Maxim Integrated
The 78M6613-IMR/F is a highly integrated, single-phase, power measurement and monitoring IC developed by Maxim Integrated, a renowned leader in the development of innovative analog and mixed-signal products. This precision energy-measurement SoC (System on Chip) is designed to provide real-time monitoring of AC power parameters for various applications, including home appliances, smart plugs, and other energy-conscious devices.
With its embedded compute engine, referred to as the Single Converter Technology® with a 22-bit delta-sigma ADC, the 78M6613-IMR/F delivers high accuracy in energy measurement and power quality monitoring. It is capable of measuring voltage, current, power, power factor, and energy usage with less than 0.1% error over a wide dynamic range, making it an excellent choice for high-precision applications.
The device comes with a full suite of on-chip features that simplify system design, including a built-in real-time clock (RTC), temperature sensor, and up to 16KB of non-volatile memory (NVM). The 78M6613-IMR/F is programmable through its integrated MPU core, which is supported by an extensive library of firmware for easy customization and rapid development.
For communication, the 78M6613-IMR/F offers a variety of interfaces, including UART, SPI, and I²C, allowing it to easily integrate with microcontrollers and other digital systems. Its versatile interface options ensure that it can adapt to a wide range of product designs and communication protocols.
The IC is packaged in a compact 24-pin SSOP (Shrink Small Outline Package), which is ideal for space-constrained applications. The 78M6613-IMR/F operates over an extended industrial temperature range, ensuring reliable performance in a variety of operating conditions.
Overall, the 78M6613-IMR/F from Maxim Integrated is a sophisticated and versatile solution for energy measurement and monitoring, delivering high accuracy, integration, and ease of use for designers looking to enhance the energy efficiency of their products.