Examples of using Frequency stability in English and their translations into German
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Colloquial
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Official
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Ecclesiastic
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Medicine
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Financial
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Ecclesiastic
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Political
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Computer
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Programming
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Official/political
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Political
Frequency stability min.±10 ppm, typ.
Higher sensitivity and frequency stability.
Frequency stability min.±10 ppm, typ.
A crystal oven provides highest frequency stability.
NEXUS frequency stability min.±10 ppm, typ.
Digital frequency synthesis, higher frequency stability.
Frequency stability±1 ppm or less ta 25ºC.
LDigital frequency synthesis, with higher frequency stability.
Frequency Stability(15min. warm-up period):+/- 1ppm typ.
Frequency Stability(15min. warm-up period):+/- 1ppm typ.
The exclusive Mosley design of the traps offer high frequency stability in any weather.
Frequency Stability: +/-5 PPM for both the Transmitter/Receiver.
May 2018New development from SMP: EMC filter with high frequency stability- compact, quiet, versatile.
The frequency stability is already excellent with±0.5ppm.
The following oscillator circuit, which uses a ceramic resonator,offers a tuning range of 35 kHz with good frequency stability.
Grid: Net and frequency stability in isolated or combined networks.
The performance of a primaryclock is characterised by the physical quantities frequency stability and systematic frequency uncertainty.
Frequency stability is 1 x 10-8 within 5 minutes at 25 C and 5 x 10-12 over 24 hours with GPS lock.
The critical requirement for the receiver used is absolute frequency stability, which is achieved the easiest with a quartz oscillator.
The frequency stability for these devices is±25 ppm at 25°C with an operating temperature range of -40°C~ +85°C.
Power supply with battery type Transmission consumption Frequency Stability Radiated power Operating temperature Number of code combinations.
The power electronics that are used today between the on-board generators andwiring system make this possible with improved frequency stability and efficiency.
In another study Anton Plietzsch and colleagues analyze frequency stability of power grids to find the optimal combination of short bypasses and as many circuits as possible to avoid blackouts.
The latter contribute by their inherent electromechanical properties to the oltage support(due to rather low sub-transient impedance) and to frequency stability by the rotating mass.
TECHNICAL SPECIFICATION OVERALL SYSTEM Carrier frequency range 200.175 MHz/ 201.400 MHz Frequency stability 100 dB Audio Dynamic Range>100 dB T.H. D< 0.5% Service areas 50 meters(in the best conditions) Temperature Range -10 C- 50 C.
System: Non-diversity, one channel Carrier frequency: VHF 224.250 MHz Frequency stability:± 0.005% S/N-ratio:> 60 dB Input sensitivity: 10 dB Dynamic range:>100 dB Modulation method: FM-frequency modulation Coverage: approx. 50 m(with line-of-sight) Frequency response: 50 Hz- 18 kHz± 3 dB.
Carrier frequency: UHF 863.000- 865.000 MHz(16 channels) Modulation: FM Frequency response: 60-16,000 Hz(± 3 dB) Frequency stability:± 0.005% Tone signal: 32,768 kHz S/N ratio:>90 dB at 48 kHz deviation Dynamic range:>96 dB T.H. D.
Operating Frequency VHF 173.80 MHz to 213.20MHz Number of Channels Fixed channel Frequency Stability±0.005% Modulation Mode FM Maximum Deviation±15 kHz Operating Range 250'(line of sight) Operating Temperature Range 40 F(4 C) to 110 F(43 C) Frequency Response 80 Hz to 15 kHz.
Carrier frequency: UHF 790.000-814.000 MHz Channel 61: 790.100-797.900 MHz Channel 62: 798.100-805.900 MHz Channel 63: 806.100-813.900 MHz Modulation:FM Frequency stability:± 0,005% T.H.D.:< 1% at 1 KHz Tone signal: 32.768 KHz AF response: 50- 18,000 Hz Maximum deviation:± 48,000 Hz RF power output.