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Tag: tcxo
04.01.15 -- Low G-Sensitivity TCXO; Front End Solutions For LTE Platforms; Rotary DIP Switches
2015-03-31 02:41:36| rfglobalnet Home Page
04/01/15 RF Globalnet Newsletter
Excellent Phase Noise, Low G-Sensitivity: T1241 TCXO
2015-03-11 17:06:09| rfglobalnet Home Page
The T1241 TCXO by Greenray Industries stands out from other temperature compensated crystal oscillators due to its excellent phase noise and low-g sensitivity (down to <7 x 10-11/g). Its vibration compensated package makes it ideal for mobile applications in which the TXCO will need to perform under conditions of vibration or shock.
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Excellent Phase Noise, Low G-Sensitivity: T1241 TCXO Datasheet
2015-03-11 17:04:25| rfglobalnet Home Page
This TCXO covers the 50 to 100 MHz frequency range and has been designed for mobile applications that will require the oscillator to perform under conditions of vibration and shock. For information on the T1241’s features and specifications, download the datasheet.
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excellent
phase
noise
TCXO is available from 50-100 MHz.
2015-01-22 14:31:53| Industrial Newsroom - All News for Today
With very low g-sensitivity down to ≤ 7x10-11/g, Model T1241 provides optimized phase noise performance under shock and vibration. Unit features 3.3 Vdc supply, CMOS Squarewave output, and temperature stability to ±0.3 ppm in temperatures from -40 to +85°C. Housed in rugged SMT package measuring 0.680 x 0.6800 x 0.200 in., temperature compensated crystal oscillator is suitable for mobile RF applications.
Vibration-Resistant TCXO offers optimal acceleration sensitivity.
2015-01-05 14:31:50| Industrial Newsroom - All News for Today
Available from 10–50 MHz in 9 x 7 mm SMT package, T1307 utilizes vibration compensation technology to maximize performance under vibration (≤7 x 10-11/g) and offers phase noise performance of 30–40 dB under shock and vibration. Temperature stability is 1 ppm over -40 to 85°C, available output types include CMOS or clipped sinewave, operating voltage is 2.7–5.0 Vdc, and min current draw of 6 mA. Uses include mobile or airborne environments as well as commercial and military applications.
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