Precision analytical instruments, testing equipment and laboratory precision devices require ultra-high frequency accuracy and long-term operational stability. Conventional crystal oscillators are prone to frequency drift, phase noise jitter and signal deviation during long-term operation, which directly affects instrument measurement accuracy, test data repeatability and equipment calibration accuracy. JTL high-precision series crystal oscillators feature ultra-low phase noise and minimal temperature drift, providing stable and reliable standard time-frequency reference for various high-end precision instrument equipment.
Precision Instrument Equipment
Precision analytical instruments, testing equipment and laboratory precision devices require ultra-high frequency accuracy and long-term operational stability.
Industry Introduction
Customer Pain Points
1. Ordinary crystals have large frequency drift, resulting in inaccurate instrument measurement data. | 2. High phase noise causes signal jitter, affecting equipment calibration and detection accuracy. | 3. Poor long-term stability leads to frequent instrument recalibration and high maintenance cost. | 4. Ordinary oscillators cannot meet the high-precision timing requirements of laboratory-grade equipment. |
Matching Products
Core Parameters
Operating temperature: -40℃ ~ +80℃
Frequency stability: ±0.05ppm ~ ±10ppm
Performance: Ultra low phase noise, extremely low frequency drift
Feature: High measurement consistency, long anti-aging life
Reliability: Strong anti-interference, suitable for laboratory precision environment
Custom Service
1. Custom special non-standard frequency for precision instrument circuit design
2. Ultra-low phase noise customized model for high-end testing instruments
3. Custom package size and high-precision frequency grade
4. Support small-batch sample trial and mass stable production supply
5. Provide complete product parameters and official test reports
6. Professional technical support for instrument matching and debugging
Keywords:
Previous article
Next article
Online inquiry
Note: Please leave your contact information and our professionals will contact you as soon as possible!



