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Standard Frequency ☑0 to ±50 ppm Differential XOĢ20 to 725 MHz, AEC-Q100 Ultra-low Jitter Differential XOġ to 220 MHz, AEC-Q100 Ultra-low Jitter Differential XOġ to 150 MHz, AEC-Q100 Spread-spectrum Oscillatorġ15 to 137 MHz, Wide Temperature AEC-Q100 Oscillator (-55 to +125☌)ġ to 110 MHz, Wide Temperature AEC-Q100 Oscillator (-55 to +125☌)ġ19 to 137 MHz, Wide Temperature Oscillator (-55 to +125☌)ġ to 110 MHz, Wide Temperature Oscillator (-55 to +125☌)ġ15 to 137 MHz, High Temperature Oscillator (-40 to +125☌)ġ to 110 MHz, High Temperature Oscillator (-40 to +125☌)ġ15 to 137 MHz, Wide Temperature AEC-Q100 SOT23 Oscillatorġ to 110 MHz, Wide Temperature AEC-Q100 SOT23 Oscillatorġ19 to 137 MHz, Wide Temperature (-55 to +125☌) SOT23 Oscillatorġ to 110 MHz, Wide Temperature (-55 to +125☌) SOT23 Oscillatorġ15 to 137 MHz, High Temperature (-40 to +125☌) SOT23 Oscillatorġ to 110 MHz, High Temperature (-40 to +125☌) SOT23 Oscillator Standard Frequency Ultra-low Jitter Differential XOĢ20 to 625 MHz, ☑0 to ±50 ppm Differential XOġ to 220 MHz, ☑0 to ±50 ppm Differential XO Low Jitter Differential XO for Standard Networking FrequenciesĢ20 to 725 MHz, Ultra-low Jitter Differential XOġ to 220 MHz, Ultra-low Jitter Differential XO Ultra-low Jitter Differential XO for Standard Networking Frequencies
#ETHERNET AND TIMING SOLUTIONS GENERATOR#
Low Jitter, 10-output MEMS Clock Generator Low Jitter, 8-output MEMS Network Synchronizer Low Jitter, 11-output MEMS Network Synchronizer Low Jitter, 10-output MEMS Jitter Cleaner 32 kHz & 1 Hz to 2.5 MHz Ruggedized Oscillators/TCXOs.Voltage-Controlled Ruggedized Oscillators.Digitally Controlled Ruggedized Oscillators.LVPECL / LVDS / HCSL Ruggedized Oscillators.GNSS 1PPS pulse accuracy to +/-5 ns (1-sigma).Nanosecond-accurate one-way delay 1/10 GE measurements.Performs 1588v2 (PTP) measurements including nanosecond-accurate PDV and time measurements.Supports multiple 1 PPS and 10 Mhz inputs and disciplined outputs.Supports multiple GNSS constellations including GPS, GLONASS, BeiDou, SBAS, and QZSS.
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Proves out GNSS antenna installations and faults.Confirms frequency, phase, and time synchronization with near-lab grade accuracy in the field.Verifies Ethernet and IP one-way delay network latency.Accuracy long-term nanosecond accuracy even when operating in holdover with exceptional satellite reception.Convenience with its compact design, the TEM V2 is an extension to the T-BERD/MTS 5800 or OneAdvisor 800, which eliminates the need to carry a second test set for synchronization.
![ethernet and timing solutions ethernet and timing solutions](https://img.electronicdesign.com/files/base/ebm/electronicdesign/image/2021/10/Lattice_RegImagev3.616f2e383888b.png)
Excellent Customer Experience tightly synchronized wireless networks result in fewer dropped calls, and improved subscriber speeds.Troubleshoot the accuracy of equipment 1 PPS output signals with 1 PPS wander analysis to +/-5 ns (1-sigma).Qualify GNSS antenna installations by evaluating satellite signal strength and eliminating antenna faults.Precisely measure PTP PDV to pre-qualify or troubleshoot non-PTP-aware networks.Perform one-way delay measurements that help you root out asymmetric network delays.Enjoy best-in-class holdover time and pristine reference signals with highly stable Rubidium oscillators.Conduct field PTP Time Error measurements that allow you to confirm the stability and accuracy of Class C PTP Boundary Clocks.Improve time accuracy measurements with multi-band satellite receiver.With a T-BERD/MTS-5800/OneAdvisor 800 and TEM V2 combination, you can: