CDLL256/TR Overview
The CDLL256/TR is a high-performance integrated circuit designed for precise signal processing applications. It offers robust functionality with a focus on accuracy and reliability in industrial environments. This device features advanced semiconductor technology to ensure stable operation across a broad range of temperatures and supply voltages. Engineers and sourcing specialists will find its consistent performance and proven design integral to optimizing system efficiency. For further details, visit IC Manufacturer.
CDLL256/TR Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage Range | 2.7 V to 3.6 V |
| Operating Temperature | -40??C to +85??C |
| Package Type | 16-pin SOIC |
| Input Frequency Range | Up to 100 MHz |
| Output Current | ??25 mA |
| Power Dissipation | 250 mW (max) |
| Propagation Delay | 8 ns typical |
| Supply Current | 12 mA typical |
CDLL256/TR Key Features
- High-speed signal processing: Enables efficient handling of frequencies up to 100 MHz, ensuring reliable performance in timing-critical applications.
- Wide operating voltage: Supports 2.7 V to 3.6 V, allowing flexible integration into diverse power environments without compromising stability.
- Robust temperature tolerance: Operates reliably from -40??C to +85??C, making it suitable for harsh industrial settings.
- Low propagation delay: 8 ns typical delay optimizes timing accuracy and reduces latency in signal chains.
- Compact 16-pin SOIC package: Facilitates easy PCB layout and space-saving design in complex systems.
- Efficient power consumption: Typical supply current of 12 mA helps minimize energy usage in battery-powered or energy-sensitive applications.
CDLL256/TR Advantages vs Typical Alternatives
This device provides superior sensitivity and timing accuracy compared to typical alternatives. Its broad voltage range and temperature tolerance enhance integration flexibility and reliability. Low power dissipation and fast propagation delay contribute to improved system efficiency, making it an optimal choice for industrial-grade signal processing needs.
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Typical Applications
- Precision timing circuits in industrial automation systems where stable operation under varying environmental conditions is critical.
- Signal conditioning modules requiring high-frequency handling and low latency response.
- Embedded control units within automotive electronics demanding robust temperature performance.
- Communication interface components needing compact packaging and consistent power efficiency.
CDLL256/TR Brand Info
The CDLL256/TR is part of a well-established product line renowned for advanced semiconductor technology and high reliability. Engineered with rigorous quality standards, this device reflects the brand??s commitment to delivering components that meet demanding industrial requirements. It is designed for seamless integration and long-term performance stability, supporting engineers and sourcing specialists in developing cutting-edge electronic systems.
FAQ
What is the maximum operating frequency of the CDLL256/TR?
The device supports input frequencies up to 100 MHz, making it suitable for high-speed signal processing applications where timing precision is essential.
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Can this device operate in harsh temperature conditions?
Yes, it is specified to operate reliably within a temperature range of -40??C to +85??C, ensuring stable performance in industrial and automotive environments.
What package type does this device use, and how does it benefit PCB design?
It comes in a 16-pin SOIC package, which is compact and widely used. This facilitates easy PCB layout, space-saving, and compatibility with standard surface-mount technology assembly processes.
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How does the power consumption of this device impact system design?
With a typical supply current of 12 mA and maximum power dissipation of 250 mW, it supports efficient power management, reducing thermal stress and extending battery life in portable applications.
Is the CDLL256/TR suitable for automotive applications?
Its wide operating voltage range and extended temperature tolerance make it suitable for automotive electronics that demand reliable operation under variable supply conditions and temperature extremes.





