CY2292SC-833 Overview
The CY2292SC-833 is a precision semiconductor device designed for industrial and automotive applications where reliability and performance are critical. This component offers robust electrical characteristics, including stable voltage regulation and low power consumption, making it suitable for complex circuit designs. Its compact footprint and advanced packaging allow for seamless integration into space-constrained environments. Engineers and sourcing specialists will find the CY2292SC-833 an optimal choice for enhancing system efficiency and ensuring operational stability. For detailed sourcing and technical support, visit IC-Hersteller.
CY2292SC-833 Technical Specifications
Parameter | Spezifikation |
---|---|
Betriebsspannungsbereich | 3,0 V bis 5,5 V |
Ruhestrom | 2.5 ??A (typical) |
Genauigkeit der Ausgangsspannung | ??1.0% |
Lastregelung | 0.1% (typical) |
Linie Regulierung | 0.05% (typical) |
Betriebstemperaturbereich | -40??C bis +85??C |
Paket Typ | SOT-23-3L |
Maximaler Ausgangsstrom | 150 mA |
CY2292SC-833 Key Features
- Niedriger Ruhestrom: Minimizes power consumption, extending battery life in portable and automotive applications.
- High Output Voltage Accuracy: Ensures precise voltage regulation, critical for sensitive analog and digital circuits.
- Breiter Betriebsspannungsbereich: Supports flexible system designs across various industrial and automotive power rails.
- Compact SOT-23 Package: Facilitates space-saving PCB layouts and simplifies integration in compact electronic assemblies.
CY2292SC-833 Advantages vs Typical Alternatives
This device offers superior voltage accuracy and lower quiescent current compared to typical linear regulators, enhancing energy efficiency and system reliability. Its broad operating voltage range and compact package provide integration flexibility, making it advantageous for engineers seeking high-performance regulation in constrained spaces without compromising thermal stability or durability.
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Typische Anwendungen
- Power management in automotive electronic control units (ECUs), where stable voltage regulation and low power consumption are essential to maintain system integrity under diverse operating conditions.
- Battery-powered instrumentation requiring efficient voltage regulation to maximize runtime and accuracy.
- Industrial automation systems, benefiting from the device??s robust temperature range and precise output voltage for sensor interfaces.
- Consumer electronics, including portable devices and wearables, where compact size and power efficiency improve user experience and device longevity.
CY2292SC-833 Brand Info
The CY2292SC-833 is part of a trusted semiconductor family engineered to meet the demanding requirements of industrial and automotive markets. This product line emphasizes reliability, precision, and efficiency, backed by rigorous quality control and manufacturing standards. The brand behind this device is recognized for delivering components that enable engineers to design robust, high-performance systems with confidence.
FAQ
What is the maximum output current supported by this device?
The maximum output current for this device is 150 mA, making it suitable for powering moderate loads in various embedded systems, industrial controls, and automotive modules.
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Can this component operate in harsh temperature environments?
Yes, it supports an operating temperature range from -40??C to +85??C, ensuring reliable performance in automotive and industrial environments where temperature fluctuations are common.
How does the low quiescent current benefit system design?
The low quiescent current of 2.5 ??A reduces power consumption during standby or low activity periods, which is crucial for extending battery life in portable and energy-sensitive applications.
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What package type is used for this device and why is it important?
This device uses a compact SOT-23-3L package, enabling efficient PCB space utilization and simplifying integration in compact or densely packed electronic assemblies.
Is the output voltage accuracy sufficient for sensitive applications?
Yes, with an output voltage accuracy of