PCN-105D3MHZ,000 Overview
The PCN-105D3MHZ,000 is a high-precision crystal oscillator designed for demanding industrial and commercial applications requiring stable frequency generation at 105.3 MHz. This device delivers reliable performance with low phase noise and excellent frequency stability across a wide temperature range. Its robust design ensures consistent operation in harsh environments, making it suitable for communication systems, instrumentation, and timing applications. Engineers and sourcing specialists will appreciate the combination of precision, durability, and integration ease offered by this oscillator, supported by comprehensive technical data from IC Üreticisi.
PCN-105D3MHZ,000 Technical Specifications
Parametre | Şartname |
---|---|
Frequency | 105.3 MHz |
Frequency Stability | ??50 ppm (over operating temperature range) |
Çalışma Sıcaklık Aralığı | -40?? C ila +85?? C |
Besleme Gerilimi | 3.3 V ??5% |
Çıkış Tipi | CMOS |
Load Capacitance | 15 pF |
Phase Jitter | ??1.0 ps RMS (12 kHz to 20 MHz) |
Startup Time | 10 ms max |
Paket Tipi | 5 x 7 mm SMD |
Shock Resistance | 1000 g |
PCN-105D3MHZ,000 Key Features
- Stable Frequency Output: Provides a precise 105.3 MHz signal with ??50 ppm stability, ensuring accurate timing for synchronized system operation.
- Wide Operating Temperature: Functional from -40??C to +85??C, enabling dependable performance in diverse industrial environments.
- Low Phase Jitter: Minimizes signal distortion and interference, which is critical for high-speed data communications and sensitive instrumentation.
- Kompakt Yüzey Montajlı Paket: The 5 x 7 mm footprint allows for easy integration into space-constrained PCB layouts without compromising performance.
PCN-105D3MHZ,000 Advantages vs Typical Alternatives
This oscillator offers significant advantages in frequency stability and phase noise performance compared to typical crystal oscillators. Its low power consumption combined with robust shock resistance enhances reliability in industrial and commercial applications. The CMOS output compatibility simplifies interfacing with modern digital circuits, making it an effective choice for engineers seeking a balance between precision and integration ease.
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Tipik Uygulamalar
- Telecommunications equipment requiring precise clock generation for signal timing and synchronization, ensuring data integrity and network reliability.
- Industrial automation systems that demand consistent frequency sources for control and monitoring functions.
- Test and measurement instrumentation where low phase noise and frequency accuracy improve measurement precision.
- Embedded systems and microcontroller clock sources needing stable oscillators for timing accuracy and system stability.
PCN-105D3MHZ,000 Brand Info
Manufactured by a leading provider of frequency control devices, this oscillator represents the brand??s commitment to precision engineering and quality. The product line emphasizes rigorous testing and adherence to industry standards, ensuring long-term reliability and performance. This model embodies the brand??s focus on meeting the stringent demands of industrial and commercial users through robust design and innovative technology integration.
SSS
What is the typical frequency stability of this oscillator over temperature?
The oscillator maintains a frequency stability of ??50 parts per million across its specified operating temperature range of -40??C to +85??C. This ensures the output frequency remains consistent despite temperature variations in industrial settings.
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Can the oscillator be used in harsh environmental conditions?
Yes, it is designed with high shock resistance (up to 1000 g) and a wide temperature range, making it suitable for harsh environments where mechanical stress and temperature fluctuations are common.
What type of output signal does this oscillator provide?
The device outputs a CMOS-compatible signal, allowing for easy integration with modern digital circuits and microcontrollers without requiring additional signal conditioning components.
📩 Bize Ulaşın
How long does the oscillator take to stabilize after power-up?
The startup time is specified at a maximum of 10 milliseconds, meaning the oscillator achieves stable operation very quickly after power is applied, beneficial for systems requiring fast