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MX643 Datasheet(PDF) 6 Page - CML Microcircuits |
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MX643 Datasheet(HTML) 6 Page - CML Microcircuits |
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6 / 12 page ![]() Call Progress Tone Detector MX643 - Preliminary Information © 1996 MX•COM, INC. Tele: 800 638 5577, 910 744 5050, Fax: 910 744 5054 Doc. #20480148.001 6 Nominal: Subject to dynamic tolerances within the signal analysis process. Absolute values are not material or adverse to performance. 4.2 Overall Function Description The MX643 Call Progress Tone Detector uses different tone detection methods from those commonly found with other Call Progress Tone Detectors. Many traditional devices use a bandpass filter followed by an energy detector. The filter is usually designed to pass input signals with a frequency between about 300Hz and 700Hz. Each signal amplitude in this range is then checked against a level threshold. Any signal of acceptable level in this frequency band is classed as a Call Progress tone, including speech and noise. False outputs caused by speech are commonly indicated by such products and background noise may lead to a stuck detect output. In contrast, the MX643 uses a stochastic signal processing technique. This technique is based on analysis of both the frequency and time domains, with signal amplitude forming a minor part in the decision process. This analysis includes, checks on whether the signal has a profile which matches international standards for Call Progress Tones, Special Information Tones, or a profile more likely to match that of speech, noise or other Non-Call Progress signals. Checks are also performed to see if the signal is a single tone, and whether the tones which include frequencies corresponding with the ‘U.S. Busy’ signals have been detected. 5. Block Diagram Description (Reference Figure 1) Slicer The input signal to the slicer is amplified by a self-biased inverting amplifier. The dc bias of this input is internally set at VDD/2. Signal Analyzer The frequency range, quality, and consistency of the input signal is analyzed by this function block. To be classified as a Call Progress signal the input signal frequencies should lie between 340Hz and 650Hz. To be classified as a Special Information Tone, the input signal frequency should lie between 900Hz and 1000Hz or 1350Hz and 1450Hz or 1750Hz and 1850Hz. The signal to noise ratio must be 16dB or greater. The signal must be consistent over a period of about 145 ms. These decode criteria are continuously monitored and the assessment is updated every 7 ms, reference Figure 3. The Signal Analyzer samples the call progress signal at 9.3kHz. Care should be taken to avoid high frequency signals ( ≥8.4kHz) aliasing into the call progress band. Control Logic This block categorizes the nature of the signal into various decoded output states and controls the three output pins. See the Decode Output Truth Table in section 5.1 Clock An external clock source is to be connected to the CLOCK input pin when using the 8-pin device. If using the on- chip oscillator (16-pin device only) you will need to use the external components shown in Figure 2. If using an external clock source then XTAL should be left unconnected. |
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