T5750C-6AQJ-66 Overview
The T5750C-6AQJ-66 is a high-frequency oscillator designed for precision timing and signal generation in industrial and communication systems. Featuring a stable frequency output at 66 MHz with low phase noise, it supports applications requiring reliable clock sources and synchronization. Its robust construction ensures consistent performance across a wide temperature range, making it suitable for demanding environments. This device??s compact footprint and standardized package facilitate straightforward PCB integration, helping engineers optimize space without sacrificing signal integrity. For more detailed product information, visit IC Manufacturer.
T5750C-6AQJ-66 Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency | 66 MHz |
| Frequency Stability | ??10 ppm over specified temperature range |
| Operating Temperature Range | -40??C to +85??C |
| Supply Voltage | 3.3 V ??5% |
| Output Type | CMOS |
| Load | 15 pF |
| Phase Noise | -145 dBc/Hz at 10 kHz offset |
| Package | 6-pin SMD, 5 x 3.2 mm |
T5750C-6AQJ-66 Key Features
- Stable 66 MHz Frequency Output: Delivers a consistent clock signal critical for timing-sensitive applications, ensuring minimal drift and reliable synchronization.
- Wide Operating Temperature Range: Maintains frequency accuracy from -40??C to +85??C, supporting use in harsh industrial and outdoor environments.
- Low Phase Noise Performance: Enhances signal integrity by minimizing jitter, which is essential for high-speed data communication and RF systems.
- Low Power Consumption: Operates at 3.3 V supply with efficient power usage, contributing to overall system energy savings and thermal management.
- Compact Surface Mount Package: 6-pin SMD design allows for space-efficient PCB layouts and easy automated assembly processes.
- CMOS Output Type: Provides compatibility with a wide range of digital circuits and systems, ensuring seamless integration.
T5750C-6AQJ-66 Advantages vs Typical Alternatives
This oscillator offers superior frequency stability and low phase noise compared to many typical alternatives, ensuring more accurate timing in critical applications. Its wide temperature tolerance enhances reliability in challenging environments, while the low power requirement supports energy-efficient designs. The compact SMD package further simplifies integration, making it an advantageous choice for engineers seeking a balance of precision, robustness, and ease of implementation.
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Typical Applications
- Clock generation for high-speed digital communication systems, where precise timing and low jitter are essential to maintain data integrity and system synchronization.
- Industrial automation equipment requiring stable oscillator signals under wide temperature variations to ensure consistent machine operation.
- Embedded systems and microcontroller clock sources that demand compact components with low power consumption and reliable frequency output.
- RF transceiver modules and frequency synthesis circuits benefiting from low phase noise oscillators for enhanced signal clarity and performance.
T5750C-6AQJ-66 Brand Info
The T5750C-6AQJ-66 is produced by a leading semiconductor manufacturer specializing in high-performance timing devices. This product line is known for precision oscillators that combine advanced design with strict quality controls to meet demanding industrial and communication standards. The brand emphasizes durability, accuracy, and ease of integration, catering to engineering teams requiring dependable clock sources for critical applications.
FAQ
What is the frequency stability specification for this oscillator?
The device maintains a frequency stability of ??10 parts per million (ppm) across its specified operating temperature range of -40??C to +85??C. This ensures the output frequency remains consistent and reliable for precision timing needs.
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What type of output signal does the oscillator provide?
The unit delivers a CMOS output signal, which is compatible with most modern digital circuits and microcontrollers, facilitating straightforward integration into various electronic systems.
Can this oscillator operate in harsh temperature environments?
Yes, the device is designed to operate reliably from -40??C up to +85??C, making it suitable for industrial and outdoor applications where temperature extremes are common.
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What are the power supply requirements for this component?
It requires a supply voltage of 3.3 volts with a tolerance of ??5%, allowing it to function efficiently in common low-voltage power domains.
How does the phase noise performance impact system design?
Low phase noise, specified as -145 dBc/Hz at 10 kHz offset, reduces signal jitter and enhances overall system stability, which is critical in communication and RF applications where timing precision affects data integrity.





