FX631D5 CMLMICRO [CML Microcircuits], FX631D5 Datasheet - Page 5

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FX631D5

Manufacturer Part Number
FX631D5
Description
Low-Voltage SPM Detector
Manufacturer
CMLMICRO [CML Microcircuits]
Datasheet

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Application Inf
Application Inf
Application Information ......
Input Gain Calculation
Input Gain Calculation
Input Gain Calculation
provided on-chip to set the sensitivity of the FX631 to
conform to the user's national level specification with
regard to ‘Must’ and ‘Must-Not’ decode signal levels.
following steps will assist in the determination of the
required gain/attenuation.
Implementation Notes
Implementation Notes
Implementation Notes
Aliasing
Aliasing
Aliasing
FX631, care should be taken, with the chosen external
components, to avoid the effects of alias distortion.
If these alias frequencies are liable to cause problems and/or
interference, it is recommended that anti-alias capacitors are
employed across input resistors R
provide a highpass cutoff frequency, in conjunction with R
(R
25kHz to 30kHz (16kHz system).
When anti-alias capacitors are used, allowance must be
made for reduced gain at the SPM frequency (12kHz or
16kHz).
Application Inf
Application Inf
Input Gain Calculation
Input Gain Calculation
Implementation Notes
Implementation Notes
Aliasing
Aliasing
Step 1
Step 1
Step 1
Step 1
Step 1
Step 2
Step 2
Step 2
Step 2
Step 2
Step 3
Step 3
Step 3
Step 3
Step 3
4
) of approximately 20kHz to 25kHz (12kHz system) or
The input amplifier, with its external circuitry, is
With reference to the graphs in Figures 4 and 5, the
Due to the switched-capacitor filters employed in the
Possible Alias Frequencies:
Values of anti-alias capacitors should be chosen so as to
Draw two horizontal lines from the Y-axis (Signal
Levels (dB)).
The upper line will represent the required ‘Must’
decode level.
The lower line will represent the required ‘Must-
Not’ decode level.
Mark the intersection of the upper horizontal line
and the upper sloping line; drop a vertical line from
this point to the X-axis (Amplifier Gain (dB)).
The point where the vertical line meets the X-axis
will indicate the MINIMUM Input Amp gain
required for reliable decoding of valid signals.
Mark the intersection of the lower horizontal line
and the lower sloping line; drop a vertical line from
this point to the X-axis.
The point where the vertical line meets the X-axis
will indicate the MAXIMUM allowable Input Amp
gain.
Input signals at or below the ‘Must-Not’ decode
level will not be detected as long as the amplifier
gain is no higher than this level.
Select the gain components as described
opposite.
12kHz Mode =
16kHz Mode =
i.e. C =
2
x
ormation ......
ormation ......
ormation ......
ormation ......
52kHz
69kHz
1
x
f
0
x
1
R
and R
1
4
.
1
5
Input Gain Components
Input Gain Components
Input Gain Components
2 and 3.
components (R
gain within the limits obtained in Steps 2 and 3.
outside these limits.
centre of the calculated range. The graphs in Figures 4 and 5
are for the calculation of input gain components for an FX631
using a V
Microcircuit Protection
Microcircuit Protection
Microcircuit Protection
present on the line. If the FX631 is part of a host equipment
that has its own signal input protection circuitry, there will be
no need for further protection as long as the voltage on any
pin is limited to within V
V
are signals present outside the device's specified limits, the
FX631 will require protection diodes at its signal inputs (+ and
-). The breakdown voltage of capacitors and the peak
inverse voltage of the diodes must be sufficient to withstand
the sum of the d.c. voltages plus all expected signal peaks.
Clock Out
Clock Out
Clock Out
pin only. It is not recommended that it be used to clock other
devices within the host equipment.
Input Gain Components
Input Gain Components
Microcircuit Protection
Microcircuit Protection
Clock Out
Clock Out
SS
With reference to the gain components shown in Figures
The user should calculate and select external
Component tolerances should not move the gain-figure
It is recommended that the designed gain is near the
Telephone systems may have high d.c. and a.c. voltages
If the host system does not have input protection, or there
The Clock Out pin is intended to drive the FX631 Clock In
-0.3V.
DD
Use this area to keep a permanent record
of your calculated gains and components
of 3.3 (±0.1) or 5.0 (±0.5) volts respectively.
1
, R
2
/C
3
, R
DD
+ 0.3V and
3
/C
4
, R
4
) to provide an amplifier

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