
PMIC - Supervisors
PMIC - Supervisors: Precision Power Management for Reliable System Performance
Definition:
PMIC - Supervisors (Power Management Integrated Circuit Supervisors) are specialized ICs designed to monitor and control power supply voltages in electronic systems. These components ensure stable operation by detecting undervoltage, overvoltage, or power sequencing faults, and triggering corrective actions (e.g., reset signals or shutdowns) to protect sensitive circuitry. Critical for system integrity, they are widely used in applications demanding high reliability, such as industrial automation, automotive systems, and embedded computing.
Types of PMIC - Supervisors:
1. Voltage Supervisors: Monitor single or multiple voltage rails, providing reset signals when thresholds are breached.
2. Sequencing Supervisors: Ensure proper power-up/down sequences for multi-rail systems (e.g., FPGAs or processors).
3. Window Voltage Supervisors: Trigger resets if voltages deviate from a defined range (min/max thresholds).
4. Adjustable Threshold Supervisors: Allow customization of voltage monitoring levels via external components.
5. Watchdog Timers: Integrate time-based monitoring to detect system hangs, adding fail-safe redundancy.
Purchasing Recommendations:
- Voltage Range Compatibility: Match the supervisor s operating range (e.g., 1.8V, 3.3V, 5V) to your system s rails.
- Reset Timing: Select devices with configurable or fixed delay periods to align with processor requirements.
- Package & Integration: Opt for space-saving options (e.g., SOT-23, DFN) for compact designs, or multi-channel ICs for complex systems.
- Industry Certifications: For automotive (AEC-Q100) or industrial (wide-temperature) applications, prioritize certified components.
- Supplier Support: Partner with distributors offering technical documentation (datasheets, reference designs) and scalable inventory.
Integrated into broader Integrated Circuits (ICs) solutions, PMIC - Supervisors mitigate risks of power-related failures, ensuring long-term system durability. Evaluate your design s criticality, environmental conditions, and compliance needs to select the optimal variant.
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XC6123C631ER-G
IC SUPERVISOR 1 CHANNEL 6USPC
S-80859CNMC-B9KT2G
IC SUPERVISOR 1 CHANNEL SOT23-5
XC6121C339ER-G
IC SUPERVISOR 1 CHANNEL 6USPC
S-80820CLNB-B6FT2U
IC SUPERVISOR 1 CHANNEL SC82AB
XC61CN2602MR-G
IC SUPERVISOR 1 CHANNEL SOT23
ISL88013IH531Z-T7A
IC SUPERVISOR 1 CHANNEL SOT23-5
ADM6713MAKSZ-REEL7
IC SUPERVISOR 1 CHANNEL SC70-4
XC6124F532ER-G
IC SUPERVISOR 1 CHANNEL 6USPC
R3111D281A-TR-FE
IC SUPERVISOR 1 CHAN SON1612-6
ADM802MAN
IC SUPERVISOR MPU 4.40V WD 8DIP
MAX693ACWE+T
IC SUPERVISOR 1 CHANNEL 16SOIC
XC6122F543ER-G
IC SUPERVISOR 1 CHANNEL 6USPC
XC6123A650MR-G
IC SUPERVISOR 1 CHANNEL SOT25
MAX6353SVUK
IC SUPERVISOR 2 CHANNEL SOT23-5
R3114K301A-TR
IC SUPERVISOR 1 CHANNEL 4DFN
S-80833CLNB-B6ST2G
IC SUPERVISOR 1 CHANNEL SC82AB
LTC2918CMS-B1#PBF
IC SUPERVISOR 1 CHANNEL 10MSOP
MAX6727KATGD3
IC SUPERVISOR 3 CHANNEL SOT23-8
STM1061N16WX6F
IC SUPERVISOR 1 CHANNEL SOT23-3
S-1009N13I-N4T1U
IC SUPERVISOR 1 CHANNEL SC82AB