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Irig timing solutions
Irig timing solutions









  1. #Irig timing solutions serial#
  2. #Irig timing solutions full#
  3. #Irig timing solutions code#

Standard frequency output is 10 MHZ, but other frequencies are possible. Optional capabilities include automatic interface to an external military GPS receiver such as the Defense Advanced GPS Receiver (DAGR), Ethernet Interface for NTP time service and SNMP status monitoring. It is used to multiply 1 x IRIG-B to provide 16 x IRIG-B outputs. Deterministic latency and flatline response, enabling temporal alignment of streams with different native rates. IRIG-B Distribution Unit takes one IRIG-B Input to provide up to 16 IRIG-B outputs. Simultaneous transport of ancillary streams including IRIG timing and video sources. The GPSDO module also has dual power supply inputs and can operate off either supply input. The VCL-2486-I, IRIG-B Distribution Unit is a compact and cost-effective solution to provide up to 16 IRIG-B outputs.

#Irig timing solutions serial#

A serial data port is provided to report time, date, position, and GPS satellite health and signal strength. Time and frequency information maintains its high accuracy with the internal oscillator even when no satellites can be tracked. The frequency standard is also able to slave to an external 1PPS signal to steer and hold the internal oscillator and clock system precisely in time. modulated versus unmodulated, which require different ways of signal transmission, by the data rate, and by the kind of information included in the transmitted data.

#Irig timing solutions code#

Individual IRIG code formats are distinguished by names consisting of a letter followed by a 3-digit number. The individual time code formats can be distinguished by the signal characteristics, e.g. The frequently used term IRIG signals refers to a whole group of serial time codes which use a continuous stream of binary data to transmit information on date and time. These outputs are accurate to 1×10 -12 when slaved to a timing supply from an internal GPS tracking receiver. is frequently used to refer to a whole group of serial timecodes, which use a continuous stream of binary data to transmit information on date and time. The GPSDO supplies three isolated, low noise precision 10 MHz frequency reference signal outputs. The whole encoding, conversion, algorithms and calculations are implemented in the core, no CPU is required.

#Irig timing solutions full#

  • Small footprint designed for easy integration NetTimeLogic’s IRIG Slave Clock is a full hardware (FPGA) only implementation of a synchronization core able to synchronize to an IRIG-B004/B124, B005/B125, B006/B126 and B007/B127 Master.
  • 3 isolated low phase noise 10MHz outputs.
  • *NEW : Our time synchronisation systems will soon be equipped with the SCPTime ® synchronisation input: the first time signal which is totally Secure, Certified, Precise and Traceable. IRIG-B, NTP, multi-protocol ASCII, PPS, 10MHz, SMPTE-EBU,Ĭonfigurable Tops, minute pulse, DCF 24v pulse With Precision Time Protocol enabled RuggedCom products, it is possible to construct green-field PTP networks based on IEEE 1588 v2 or a migration path to get there using existing legacy IRIG-B IEDs. GNSS, GPS, NTP, IRIGB, ASCII+TOP, SCPTime ®* Precision timing solutions serve to increase efficiency and uptime by improving monitoring and troubleshooting capability while also reducing capital expenses by converging timing and data networks. IRIG-B, NTP, multi-protocol ASCII, PPS, SMPTE-EBU, Configurable Tops, minute pulse, DCF 24v pulse IRIG-B, PTP, NTP, multi-protocol ASCII, PPS, 10MHz, SMPTE-EBU, Configurable Tops, DCF 24v pulse GNSS, GPS, NTP, IRIGB, ASCII+TOP, Fréquence, SCPTime ®* PPS, 10MHz, SMPTE-EBU, Configurable Tops, DCF, E1/T1, PTPv2 GNSS, GPS, NTP, PTPv2, IRIGB, ASCII+TOP, Fréquence, SCPTime ®*











    Irig timing solutions