Quartz Crystal Resonators
Tuning Fork Crystals
Crystal Oscillators
TCXOs
VCXOs
OCXOs
SAW Resonators
SAW Filters
Crystal Filters
High-Precision Timing Devices
Quartz Crystal
Oscillator(XO Standard)
TCXO/ VCXO/ OCXO
Aerospace & Defense
Telecom & Test Equipment
Network Sync & GNSS
RF & High-Speed Digital
Industrial Control
Consumer Electronics
News
Industrial Timing, Made Practical: XO, RTC and MHz Crystals Across Control & Embedded Systems
How industrial control and embedded products commonly split timing into three clock domains—board-level XO clocks, 32.768 kHz RTC crystals, and MHz crystals.
Microwave Resonant Cylindrical Cavities vs. Traditional Designs: An In-Depth Comparison
Microwave Resonant Cylindrical Cavities vs. Traditional Designs: An In-Depth Comparison Table of Contents 1. Introduction to Microwave Resonant Cylindrical Cavities 2. Understanding Traditional Microwave Designs 3. Key Differences Between Microwave Resonant Cylindrical Cavities and Traditional Designs 3.1. Design and Structure 3.2. Frequency Range and
Understanding DC Currents in Microwave Resonators: A Comprehensive Guide
In the realm of electronics, microwave resonators play a pivotal role in numerous applications, including communications, sensing, and quantum computing. One intriguing aspect of these devices is their interaction with direct currents (DC). Understanding how DC currents influence microwave resonators can unveil new possibilities in design, performance, and application. Microwave resonators are spe
The Science Behind Saw Bandpass Filters and Their Applications: A Comprehensive Guide
The Science Behind SAW Bandpass Filters and Their Applications Table of Contents 1. Introduction to SAW Bandpass Filters 2. What Are SAW Filters? 3. Operating Principle of SAW Bandpass Filters 4. Types of SAW Filters 4.1 Low-Pass SAW Filters 4.2 High-Pass SAW Filters 4.3 Bandpass SAW Filters 5. Design Considerations for SAW Bandpass Filters 6. Applicatio
FCom Timing Stack Update: Industrial, Automotive & Medical Clocking Overview
A consolidated update across four clock domains: MCU/SoC SMD crystals, XOs, TCXO/VCTCXO for industrial wireless and GNSS, and 32.768 kHz RTC crystals.
Understanding Qualcomm SAW Filters: The Backbone of Modern Communication
Qualcomm SAW filters, or Surface Acoustic Wave filters, play a crucial role in the realm of electronic components, particularly in communication systems. These filters utilize the surface acoustic wave phenomenon to selectively filter certain frequencies while allowing others to pass through, making them essential for a variety of applications, especially in mobile devices, wireless communication,
Quartz Tuning Fork Crystals for High-Sensitivity Sensors
Learn how quartz tuning fork crystals boost sensor sensitivity through high-Q resonance, frequency/phase readout, and mass/force coupling—plus practical design tips and use cases.
FSF IF SAW Filters for Professional Wireless Receivers (IF)
New guide for IF SAW filters in professional wireless receivers—review-ready spec fields, VNA measurement checklist, PCB integration notes, and links to the FSF-5050 family.
VCXO for Communication Sync & PLL Timing: Selection + Debug Playbook
News for VCXO in SyncE/IEEE 1588 timing and PLL/DPLL clock cleaners: frequency planning, APR sizing, VCTRL hygiene, loop bring-up checks, and selection mapping.
TCXO & VCTCXO Guide for SyncE/PTP, GNSS Timing & Satcom
FCom Fuji Crystal publishes a practical TCXO/VCTCXO guide for SyncE/PTP, GNSS timing and satcom—plus a clear series mapping for faster part shortlisting.
Innovations in SMD Quartz Crystal Technology You Should Know
Explore key innovations in SMD quartz crystal technology—advanced fabrication, miniaturization, improved stability and reliability—plus real-world applications across telecom, automotive, IoT and medical devices.
MC-146 32.768 kHz NRND: Design Guide, Risk Mitigation & Long-Narrow Replacement Path | FCom Fuji Crystal
MC-146 32.768 kHz crystal NRND guide: load matching, start-up margin, long-narrow layout rules, validation checklist, and a practical migration path using FCom FCT-6M (6.9×1.4mm).