Communication base stations, network transmission equipment, wireless communication modules and timing synchronization systems rely on ultra-high precision and stable frequency reference sources. Unstable frequency and high phase noise of ordinary oscillators will cause signal attenuation, communication delay, data packet loss and network synchronization failure, affecting the stability of global network transmission. JTL OCXO and TCXO series oscillators adopt ppb-level high stability technology with ultra-low phase noise, fully meeting the high-standard timing and signal transmission requirements of communication equipment.
Communication System
Communication base stations, network transmission equipment, wireless communication modules and timing synchronization systems rely on ultra-high precision and stable frequency reference sources.
Industry Introduction
Customer Pain Points
1. High phase noise leads to poor signal purity and network transmission distortion. | 2. Insufficient frequency stability causes communication synchronization offset and timing error. | 3. Ordinary crystals cannot support long-term uninterrupted operation of base station equipment. | 4. Poor anti-interference performance results in unstable signals in complex computer room environments. |
Matching Products
Core Parameters
Operating temperature: -40℃ ~ +85℃
Frequency stability: ±0.5ppb~±0.01ppm (ppb-level ultra-high stability)
Performance: Ultra low phase noise, high spectral purity
Feature: ppb-level high precision frequency output
Anti-interference: Adapt to complex electromagnetic environment of communication computer room
Custom Service
1. Custom ppb-level ultra-high stability oscillators for base station timing benchmark
2. Special non-standard frequency customization for wireless communication modules
3. Enhanced anti-interference models for communication room environments
4. Large-scale stable supply for communication engineering projects
5. Professional network timing and frequency matching technical guidance
6. Custom aging and high-precision screening process for communication equipment
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