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Fig. 24<br />

The impedance ot the <strong>telephone</strong> <strong>set</strong><br />

and the local line<br />

Fig. 25 (right)<br />

Frequency curve for sending<br />

Fig. 26<br />

Frequency curve for receiving<br />

Fig. 27 (right)<br />

Mean opinion score (MOS) as a function of<br />

the system reference equivalent (SyRE)<br />

ERICOFON 700: y = 3.43—0.00133 (x—S) 2<br />

DIALOG: y = 3.31—0.00175 (x—2.14)'<br />

For the version without special transmission<br />

regulation the values shown in<br />

fig. 22 are those for the reference equivalents<br />

of the <strong>set</strong> for sending (SRE),<br />

receiving (MRE) and sidetone (SiRE).<br />

With a 0 ohm line SRE is + 3 dB, MRE<br />

— 4 and SiRE > 10 dB. For the version<br />

with transmission regulation during<br />

sending and receiving the values<br />

shown in fig. 23 are those for sending,<br />

receiving and sidetone as a function<br />

of the line resistance, including attenuation,<br />

with a 0.4 mm subscriber line.<br />

As can be seen from the figure, in the<br />

case with transmission regulation the<br />

efficiency of the <strong>telephone</strong> <strong>set</strong> is not<br />

dependent on type and length of the<br />

local line.<br />

The speech transmission circuit is designed<br />

so that the impedance exhibited<br />

by ERICOFON 700 is, in the main,<br />

identical to the impedance of the balance<br />

circuit. Since the balance circuit<br />

can match the impedance of the local<br />

cable very closely, the balance impedance<br />

has been dimensioned to match<br />

the line lengths to which the majority<br />

of the subscribers are connected,<br />

namely up to about 2 km. This means<br />

that as regards phase angle and absolute<br />

value the impedance of the <strong>set</strong> is<br />

of the same type and has the same<br />

value as the impedance of the local<br />

cable. Seen from the local exchange<br />

the impedance variations for varying<br />

line length, including the 0 ohm line,<br />

are thus very much smaller than in the<br />

case of conventional <strong>set</strong>s, fig. 24.<br />

The frequency curve of the <strong>set</strong> during<br />

sending is shown in fig. 25 and during<br />

receiving in fig. 26. The receiving curve<br />

is straight and independent of frequency,<br />

whereas the sending curve rises<br />

with frequency in order to compensate<br />

for the attenuation distortion on the<br />

local line.<br />

As regards sound reproduction the<br />

transmission quality of ERICOFON 700<br />

is considerably better than the quality<br />

that can be achieved with a carbon<br />

microphone.<br />

It is well known that for high quality<br />

sound reproduction it is necessary to

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