The power-supply sequencing tutorial utilizes the MAX16046 system-management integrated circuit (IC). The configuration software facilitates the setup of tolerances and the sequence order.
The MAX16046 is a versatile system-management IC designed to manage power-supply sequencing in complex electronic systems. It is particularly useful in applications requiring precise voltage regulation and timing to ensure that various power rails are activated and deactivated in a predetermined sequence, thereby preventing damage to sensitive components.
The configuration software associated with the MAX16046 allows users to easily set specific tolerances for voltage levels and define the order in which power supplies are engaged. This capability is essential for systems where multiple voltage rails are present, as it ensures that each rail reaches its target voltage before the next rail is enabled. This prevents issues such as voltage overshoot or undershoot, which can lead to malfunction or damage of electronic components.
In practical applications, the MAX16046 can be interfaced with microcontrollers or other system management devices to provide real-time monitoring and control of power supply voltages. The IC supports various sequencing configurations, allowing for flexibility in design and implementation. Furthermore, the integrated fault detection features enhance system reliability by providing alerts for out-of-tolerance conditions.
The schematic design typically includes the MAX16046 connected to multiple power regulators, each responsible for generating a specific voltage level. Feedback loops from the output of these regulators to the MAX16046 allow for precise monitoring of voltage levels, ensuring that the IC can effectively manage the sequencing process. The configuration software can also generate a graphical representation of the power-up sequence, enabling engineers to visualize the timing and relationships between different power supplies.
Overall, the MAX16046 provides a robust solution for power-supply sequencing, with user-friendly configuration tools that streamline the design process and enhance system reliability.Power-supply sequencing tutorial uses the MAX16046 system-management IC. Configuration software simplifies the configuration of the tolerances and the sequence order.. 🔗 External reference
The power-supply controller features staggered voltage-output sequencing. Four voltage outputs are activated simultaneously for voltage tracking; two outputs are designated for core and I/O supplies during power-up, while the other two outputs cater to line driver supplies where tracking...
The ADM1066 from ADI Company is a monitoring device designed to manage various configurable sequencing applications. It features 12 ADCs and 6 8-bit DACs with a voltage output precision exceeding 0.5% at 25 degrees Celsius. This device is primarily...
The PS10 saves board space, improves accuracy, eliminates optocouplers or level shifts, and reduces overall component count by combining four programmable timers, input under-voltage (UV) and over-voltage (OV) supervisors, a programmable power-on reset (POR), and four 90V open drain...
The Ultra Low Voltage Detectors PT7M6101 and PT7M6102 series are designed for overcurrent detection. They offer excellent circuit reliability and cost-effectiveness by eliminating the need for external components. These devices assert an OVRI signal when the voltage at the...
PTB78560BAS is a subpackage of PTB78560B. For a detailed description, please refer to PTB78560B. The datasheet for PTB78560BAS can be downloaded below. Provided by Texas Instruments.
The PTB78560BAS is a specific variant within the PTB78560B family of components, designed for...
We use cookies to enhance your experience, analyze traffic, and serve personalized ads.
By clicking "Accept", you agree to our use of cookies.
Learn more