Orolia EC20S Epsilon GPS Clock

Orolia EC20S Epsilon GPS Clock

Model: EC20S

  • High-performance GPS clock
  • EpsilTime™ smart predictive slaving algorithm
  • High time & frequency accuracy, even if GNSS is lost
  • Network management based on Web User Interface and SNMP
  • NTP stratum 1 support
  • RoHS Compliant
  • GNSS-disciplined OCXO internal timebase
  • GNSS Constellations:
  • Optional Rubidium clock for extended holdover performance
  • up to 10 x 1PPS TTL outputs
  • up to 10 x 10 MHz sine wave

Description

High-performance GPS Clocks are designed to exceed digital TV, digital Radio, 4G base stations, satcom time and frequency synchronization requirements

Epsilon Clocks provide accurate and stable time and frequency signals for your high-performance synchronization application. The unit’s optimized architecture is well-suited to transmitter synchronization of digital broadcast signals (DVB-T/T2, T-DMB, DAB or DRM) in Single Frequency Networks (SFN) modes: the high port density allows to synchronize many emitters simultaneously on the same site.

GPS Clock Overview

Epsilon Clocks provide accurate and stable time and frequency signals for your high-performance synchronization application. The unit’s optimized architecture is well-suited to transmitter synchronization of digital broadcast signals (DVB-T/T2, T-DMB, DAB or DRM) in Single Frequency Networks (SFN) modes: the high port density allows to synchronize many emitters simultaneously on the same site.

Epsilon Clock Details

Epsilon Clocks provide high reliability synchronization with very accurate and stable time and frequency signals.

The high performance suits a comprehensive range of applications where excellent accuracy is required, especially synchronization of mobile wireless base stations, emitters for digital audio or video broadcast.

A high performance ovenized oscillator (OCXO) slaved to the GPS/GNSS input source offers outstanding accuracy and phase noise.

The oscillator in conjunction with the EpsilTime™ smart predictive slaving algorithm mitigates the effects of inherent GPS noise and complies to the most stringent holdover mode requirements if GPS is lost.

Furthermore, the 10 MHz frequency reference is cycle-locked to the 1 PPS, meaning that there are always exactly ten million cycles between 1 PPS occurrences. This unique feature is essential to avoid phase jumps and wander between time and frequency references.

The EC20S is available with an optional Rubidium atomic clock reference for extended holder performance in the case of loss of satellite signals and when there is no redundancy.

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