Sentence examples for attainable frequency from inspiring English sources

The phrase "attainable frequency" is correct and usable in written English.
It can be used in contexts where you are discussing a frequency that can be achieved or reached, such as in scientific, technical, or performance-related discussions.
Example: "In our experiments, we found that the attainable frequency of the signal was significantly higher than initially expected."
Alternatives: "achievable frequency" or "reachable frequency".

Exact(4)

A comparison of power consumption and maximum attainable frequency between both technologies is performed.

Comparison with other DCOs and VCO shows that the new DCO outperforms conventional DCOs in all aspects; maximum attainable frequency, power efficiency and required number of control bits to achieve a certain resolution.

To illustrate the attainable frequency and spatial diversity, we consider 10 scenarios shown in Table 2 where the maximum diversity order is computed from (24), (30), and (37).

Therefore, the maximum attainable frequency diversity order can be directly related to Ʀ h g min and is given by the number of independent paths in the channel delay profile.

Similar(56)

Continued scaling of devices that are then densely packed and operated at attainable frequencies will result in the generation of thermal loads that cannot be managed by any known heat removal technology.

The FFF at I25 has been used as a very general proxy for ambient photopic light intensity (Horodysky et al., 2008; Horodysky et al., 2010) for use in comparing across species, and the FFF at Imax is the maximum flicker fusion frequency attainable by the visual system of a given species (Horodysky et al., 2008).

We conclude that the design and synthesis of microbubbles with a prescribed resonance frequency is attainable by tuning PEG composition and molecular weight.

Different carrier frequencies are attainable by varying the length of the piezoelectric element.

With such methods employed, gigahertz frequencies are easily attainable.

Finite-difference time-domain methods are used to study the optical properties of the nanocavities and the attainable Q exceeds 106 in a wide frequency range of 0.0152 a/λ.

Consequently, the behavior of TED versus the key design parameters, namely thin-plate radius and resonant frequency, is predicted, and the attainable quality factors of such type of resonators are defined.

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