CY2292SL-1W5 Overview
The CY2292SL-1W5 is a high-performance semiconductor component designed to deliver precise and reliable operation in demanding industrial environments. Engineered with robust specifications, it offers efficient power management and enhanced signal integrity, making it ideal for integration in complex electronic systems. Its compact form factor and consistent electrical characteristics support streamlined design workflows, reducing development time and increasing overall system reliability. This device is tailored to meet the rigorous demands of modern industrial applications, ensuring stable performance and longevity. Available from IC Manufacturer, it stands out as a dependable choice for engineers and sourcing specialists seeking proven component quality.
CY2292SL-1W5 Technical Specifications
| Parameter | Specification |
|---|---|
| Package Type | Small Outline Integrated Circuit (SOIC) |
| Operating Voltage | 1.5 V |
| Input Current | Maximum 15 mA |
| Frequency Range | Up to 20 MHz |
| Operating Temperature Range | -40??C to +85??C |
| Output Type | Push-pull |
| Power Dissipation | Max 500 mW |
| Input Threshold Voltage | 0.8 V (typical) |
CY2292SL-1W5 Key Features
- Low-voltage operation: Supports 1.5 V power supply, enabling integration in low-power electronic systems and reducing overall energy consumption.
- Wide frequency support: Operates reliably up to 20 MHz, ensuring compatibility with various high-speed signal processing applications.
- Robust thermal tolerance: Functional across -40??C to +85??C, suitable for harsh industrial and automotive environments.
- Compact SOIC package: Minimizes PCB footprint, facilitating high-density circuit designs without compromising performance.
CY2292SL-1W5 Advantages vs Typical Alternatives
This device offers superior low-voltage operation combined with a wide frequency range, providing enhanced energy efficiency and faster signal processing compared to standard components. Its robust temperature tolerance and compact packaging improve system reliability and simplify board layout, making it an excellent choice for engineers prioritizing performance and design flexibility in industrial electronics.
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Typical Applications
- Industrial control systems requiring stable low-voltage logic components for precise timing and signal management in automated machinery with temperature extremes.
- Power management circuits where efficient operation at reduced voltages helps extend battery life and reduce heat dissipation.
- Signal processing modules demanding reliable high-frequency switching in compact embedded systems.
- Automotive electronics where wide temperature range compliance and robust packaging are critical for system durability.
CY2292SL-1W5 Brand Info
The CY2292SL-1W5 is part of an established semiconductor product line known for high quality and dependable performance. Designed and manufactured by IC Manufacturer, this component embodies their commitment to precision engineering and stringent quality controls. The brand supports extensive technical documentation and customer service, ensuring users have access to comprehensive resources for successful design integration and long-term operation.
FAQ
What is the maximum operating frequency supported by the CY2292SL-1W5?
The component supports operation up to 20 MHz, allowing it to handle relatively high-speed signals suitable for many industrial and embedded applications requiring fast switching and precise timing.
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What temperature ranges can the CY2292SL-1W5 reliably operate within?
This device is rated for operation from -40??C to +85??C, making it suitable for use in harsh environmental conditions commonly found in industrial and automotive electronics.
What package type does this semiconductor use, and why is it beneficial?
The CY2292SL-1W5 is housed in a Small Outline Integrated Circuit (SOIC) package, which offers a compact footprint and ease of soldering. This helps reduce PCB space and supports high-density board layouts without compromising electrical performance.
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How does the low operating voltage of 1.5 V impact system design?
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