LVCMOS
CTS enables 5G infrastructure through its high-performance product lines of ultra-low noise precision timing devices and RF ceramic filters that support both sub-6 GHz and mmWave wireless infrastructure. CTS’ 5G product portfolio is designed to comply and support stringent performance and quality standards of networking systems’ wider bandwidth and transmission rates operating at high frequencies, powering applications such as 5G mass MIMO base stations, small cells, and mmWave 5G hybrid beamforming base stations.
5G Coverage & Support for Excel Bandwidth
CTS precision timing devices for 5G networks utilize low noise frequency synthesis techniques to clean system noise and multiply low frequency to high frequency making our technology suitable for high transmission rates. Our embedded ASIC solution and high Q crystal technology offer optimized signal to noise ratio that results in a precise and clean signal that is used for data, voice, and video transmission.
5G Resources
Whitepaper: Precision Timing – 5G mmWave (NR) Systems and Noise Consideration
With the higher bandwidth and faster speeds of next-gen communication systems comes new challenges for system noise and timing. This whitepaper, 5G mmWave (NR) Systems and Noise Consideration, provides the in-depth examinations and solutions you need to address these challenges. Review key considerations in addressing 5G mmWave new radio systems, 5G system noise requirements, how the frequency reference source affects noise level, and more.
Webinar: Two Technologies that will Enable Next-Generation Communication Systems and Instruments
Tune in to this free, on-demand webinar to learn how RF ceramic filters and precision, low noise, timing devices that will enable your design to meet demands for faster transmission rates at high frequencies and modulation bandwidths.
Learn fundamentals of RF ceramic filters and circuit integration, gain a greater understanding of the importance of selecting a proper filter for the right RF front-end lineup, review the options available to reduce system noise via HF timing devices, and more.
5G Products
5G TCXO Family
Model/ |
Package |
Frequency Range |
Output Waveform |
Temperature |
24 hour holdover stability |
Connection Type |
7.0 x 5.0 |
5 – 52MHz |
Clipped-sine/HCMOS |
-40 to 85°C |
±280ppb |
Wireless/Wireline |
|
5.0 x 3.2 |
5 – 52MHz |
Clipped-sine/HCMOS |
-40 to 85°C |
±280ppb |
Wireless/Wireline |
|
14 x 13 | 38.400MHz |
LVCMOS |
-40 to 85°C |
±0.280 ppb |
Wireless |
|
14 x 13 | 38.400MHz |
LVCMOS |
-40 to 85°C |
±0.280 ppb |
Wireless |
|
5.0 x 3.2 |
10 – 54MHz |
Clipped-sine/HCMOS |
-40°C to +105°C |
±4.6ppm |
Wireless |
Synthesizer Family
Model/ Data Sheet |
Package Size [mm] |
Frequency Range |
Output Waveform |
Temperature |
Connection Type |
VFJA9591C | 9.5 x 9.1 | Input x1 10 – 200 MHz Output x2 10 – 160MHz |
HCMOS <90fs Jitter | -40 to 85°C | Wireless/Wireline |
VFFT110 | 19.0 x 17.0 | Input x4 0.01 – 800 MHz Output x4 300 – 150MHz |
HCMOS/LVPECL <65fs Jitter |
-40 to 85°C | Wireline |
VFJA1490P | 14.12 x 2.27 | Input x4 10 – 200 Output x4 200 – 650 |
LVPECL | -40°C -85°C | Wireless |
VFJA1491C | 14.12 x 9.27 | Input x4 10 – 200 Output x4 10 – 200 |
LVCMOS | -40°C -85°C | Wireless |
OCXO Family
Model/ |
Package |
Frequency Range [MHz] |
Output Waveform |
Temperature |
24 hour holdover stability |
Connection Type |
25.4 x 22.0 |
48.000 |
LVCMOS |
-40 to 85°C |
N/A |
Wireless/Wireline |
|
20.0 x 13.0 |
10 – 26MHz |
HCMOS |
-40 to 85°C |
11 ppb, pk-pk |
Wireless/Wireline |
|
149 |
9.0 x 14.0 |
10 – 50MHz |
LVCMOS |
-40 to 85°C |
11 pk-pk over any 40°C |
Wireless/Wireline |
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