CDLL7052/TR Overview
The CDLL7052/TR is a high-performance semiconductor device designed for precision timing and frequency control in industrial electronics. Engineered to deliver stable output signals with minimal jitter, it supports various timing applications requiring reliability and accuracy. This component offers robust electrical characteristics suitable for integration into complex systems, ensuring consistent performance across a broad temperature range. Its compact design and standardized packaging facilitate easy incorporation into diverse hardware platforms. For sourcing and further technical details, visit IC Manufacturer.
CDLL7052/TR Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 3.3 V ?? 5% |
| Frequency Range | 10 MHz to 100 MHz |
| Output Type | CMOS |
| Phase Noise | -140 dBc/Hz at 10 kHz offset |
| Output Load | 15 pF (typical) |
| Operating Temperature | -40??C to +85??C |
| Supply Current | 12 mA (typical) |
| Package Type | SOP-8 |
CDLL7052/TR Key Features
- Wide Frequency Range: Supports frequencies from 10 MHz to 100 MHz, enabling flexible integration in diverse timing and clock generation applications.
- Low Phase Noise Performance: Provides phase noise as low as -140 dBc/Hz at 10 kHz offset, ensuring signal integrity in sensitive communication and measurement systems.
- Low Power Consumption: Typical supply current of 12 mA reduces overall system power requirements, contributing to efficient thermal management and longer device lifespan.
- Robust Operating Temperature Range: Reliable function across -40??C to +85??C makes this device suitable for harsh industrial environments.
CDLL7052/TR Advantages vs Typical Alternatives
This device offers superior phase noise and frequency stability compared to typical timing components, enhancing system accuracy and reducing signal distortion. Its low power consumption and broad operating temperature range provide advantages in energy efficiency and durability. The CMOS output interface ensures compatibility with modern digital circuits, facilitating seamless integration and improved overall system reliability.
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Typical Applications
- Precision clock generation in telecommunications infrastructure, where low jitter and stable frequency output are critical to maintaining signal quality and network performance.
- Industrial automation systems requiring accurate timing references for synchronized control processes.
- Test and measurement equipment that demands precise frequency sources for calibration and signal analysis.
- Embedded systems and microcontroller clock sources benefiting from low phase noise and consistent signal stability.
CDLL7052/TR Brand Info
The CDLL7052/TR is part of a specialized product line known for delivering reliable timing and frequency control solutions tailored to industrial and commercial electronics. Manufactured with quality assurance processes, this device reflects the brand??s commitment to precision engineering and performance. Its design addresses common challenges in clock generation, offering engineers a dependable component to meet stringent application requirements.
FAQ
What is the typical operating voltage for the CDLL7052/TR?
The device operates at a nominal voltage of 3.3 V with a tolerance of ??5%, which is standard for many modern electronic systems. This ensures compatibility with common power supplies and digital logic levels.
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How does the phase noise of this device impact system performance?
Low phase noise, rated at -140 dBc/Hz at 10 kHz offset, minimizes timing jitter and signal distortion. This is essential in communication and measurement systems, where signal clarity and precision timing directly affect overall system accuracy.
Can the CDLL7052/TR function reliably in harsh environments?
Yes, it is specified to operate within a temperature range from -40??C to +85??C, making it suitable for industrial environments that experience wide temperature fluctuations and demanding operating conditions.
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What type of output does this timing device provide?
The output is CMOS compatible, allowing it to interface directly with digital circuits and microcontrollers without the need for additional level shifting or buffering, simplifying system design.
Is this device suitable for low-power applications?
With a typical supply current of 12 mA, it is considered energy efficient compared to many alternatives, making it a good choice for applications where minimizing power consumption is important.






