DOEPFER A-100 Series User manual

doepfer System A - 100 Voiced/Unvoiced Detector A-129 /5
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1. Introduction
The A-129 /x series of modules, whose essential
component parts are the A-129 /1 (analysis section)
and A-129 /2 (synthesis section), builds into a modu-
lar vocoder.
Module A-129 /5 (Voiced / Unvoiced Detector) enab-
les the vocoder to distinguish between voiced sounds
and unvoiced sounds - i.e consonants like s, sh, v, f
and z - and to switch between two different carrier
signals to send to the instrument input in module
A-129 /2.
Module A-129 /5 has an adjustable gain control for
the speech signal. There’s also an adjustable treble
boost control, to help speech intelligibility where
desired.
A gate output with associated LED indicator (whose
brightness is proportional to the amount of unvoiced
signal detected) offers further help in the sound-
making process.
A-129 /5
Voiced/Unvoiced Detec.
Gain
Treble
Boost
Speech
Output
Speech
Input
Gate
Output
Voiced / Unvoiced Output
Unvoiced
Unvoiced
Input
Voiced
Input

A-129 /5 Voiced/Unvoiced Detector System A - 100 doepfer
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2. Voiced/Unvoiced Detector overview Controls:
1Gain : gain control for the speech input
signal patched into socket !
2Treble Boost : control to increase the treble content
of the speech input signal
3LED : LED indicator to show the presence
and relative strength of the unvoiced
signal
In / Outputs:
!Speech Input : input for speech signal
"Speech Output : output for speech signal after
amplification and treble boost
§Gate Output : gate output, active during un-
voiced sections of the sound
$Unvoiced Input : input for unvoiced carrier signal
%Voiced Input : input for voiced carrier signal
&Voiced / Unvoiced Output: output for the carrier signal:
depending on the status of the
switching, it sends out the car-
rier signal present at sockets $
or %
A-129 /5
VUV
Speech
Output
Gain
Unvoiced
Speech
Input
➀
➁
➂
Voiced / Unvoiced Detec.
010
Unvoiced
Input
010
Treble Boost
Gate
Output
Voiced
Input
Voiced / Unvoiced
Output

doepfer System A - 100 Voiced/Unvoiced Detector A-129 /5
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3. Controls
1 Gain
Use control 1to set the level of input gain for the
speech signal at socket !.
2 Treble Boost
Control 2is used to increase the level of the high
frequencies in the speech signal input. Often, using
this control makes speech more easily intelligible.
H To produce the best results, please also look
at the general instructions (chapter 5) in the
manual for the main vocoder modules, A-129
/1 and A-129 /2.
3 LED
This LED indicator 3shows the status of the swit-
ching in the voiced / unvoiced detector:
• LED on : "Unvoiced"
• LED off : "Voiced"
4. In / Outputs
! Speech Input
The speech signal is patched into Speech-input !.
" Speech Output
Speech output "puts out the amplified and equalised
(treble-boosted) speech input signal. This output is
patched to the speech input socket on the A-129 /1
analysis module.
§ Gate Output
Gate output §puts out a gate signal, depending on
the status of the voiced/unvoiced detector:
• "Unvoiced" (LED 3 on) : "high"
• "Voiced" (LED 3 off) : "low"
You can use this gate signal for more elaborate sound
manipulation (see 5. User examples).

A-129 /5 Voiced/Unvoiced Detector System A - 100 doepfer
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$ Unvoiced Input
This unvoiced carrier signal input $is used to patch
in the sound source you wish to use for the carrier
signal for unvoiced sounds.
As a rule, you’d tend to use the output from a noise
module (A-117, A-118), a high-frequency sawtooth
wave, or the 6 Oscillator output from an A-117 mo-
dule.
% Voiced Input
This voiced carrier signal input %is used to patch in
the sound source you wish to use for the carrier
signal for voiced sounds.
Usually, you’d tend to find a low-mid frequency VCO or
mix of several VCOs doing this job.
& Voiced / Unvoiced Output
Depending on the status of the voiced/unvoiced detec-
tor switching, output &relays the input signal from
socket $or %.
5. User examples
Vocoder block diagram including A-129 /5
The way the A-129/5 should be patched into the whole
vocoder system is shown in fig. 2 (see next page).
Smoothing Voiced / Unvoiced transitions
Whereas the A-129/5’s internal switch produces an
abrupt change from voiced to unvoiced carrier and
vice versa, it’s possible to patch the gate output to a
slew limiter, invert one of the carrier VCAs, and pro-
duce a smooth transition.
fig. 1: smoothing the change of carrier signals
Gate Out
A-175
A-129 /5
A-138
A-117
A-118
to
Speech Input
of A-129 /1
A-170
A-110
A-111
A-130
A-130

doepfer System A - 100 Voiced/Unvoiced Detector A-129 /5
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fig. 2: diagram showing how to patch the A-129 /5
A-119
A-138
LP
BP 1
BP 2
BP 12
BP 13
HP
LP
BP 1
BP 2
BP 12
BP 13
HP
A-129 /1 A-129 /2
Voc.
Out
Speech
In
Instr.
In
Offset
Slew Contr. In
Atten.
CV
In 1
CV
Out 1
Freeze
Contr.
Input
Slew
CV
Follow
Slew
Freeze
Man.
Slew
Rate
Slew Control
Out
A-129 /3
High
Out
A-129 /5
Speech
Input
Speech
Output
Unvoiced In
Voiced In
Unv./Voic. Out
Gain
Treb.
Boost
A-129 /4
A-117
A-118
A-110
A-111

A-129 /5 Voiced/Unvoiced Detector System A - 100 doepfer
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