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Operation 58 VTK - TR -BA- 171e - 1 - User Man u al MDS 3080 -V 7 Operati on 7.1 Triggering a Dis pense Sequence There a re thr ee dif ferent op tions to t rigg er a di spense sequenc e: • v ia ke ypad on the contr ol u …

Initial Operation
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6.8 Parameter Input and Start
– Step 1: Enter the dispensing parameters (either recommended by the manufacturer or
determined in your own experiments) into the submenu “Pulse Parameters” of the control
unit (see paragraph 4.5.2, page 29).
– Step 2: Press [enter] to acknowledge the selection.
– Step 3: Return to the first level of the menu by pressing [esc] repeatedly.
– Step 4: Start the dispensing process by pressing [trig].
INFORMATION
Starting the dispensing process
A dispensing process can only be initiated in the first menu level by all the usual methods.
Starting it in the other menu levels is only possible with the key [trig].

Operation
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VTK-TR-BA-171e-1 - User Manual MDS 3080-V
7 Operation
7.1 Triggering a Dispense Sequence
There are three different options to trigger a dispense sequence:
• via keypad on the control unit MDC
Press the [trig] button, a dispensing sequence with pre-set parameters will be triggered.
• via RS-232C command
Use the command “VALVE:OPEN” (further commands in paragraph 8.1.2, page 84).
• via PLC-signal
Real time triggering by direct I/O (recommended length of signal: between 0.0001 ms and
35 ms; not relevant for Infinite Mode and External Mode)
7.2 Dispensing and Positioning of Dots (Modes)
To combine a multitude of dots to a predefined structure (e.g. a line or a circle), use one of the
following modes:
• Burst Mode
A single trigger impulse by PLC signal causes a predefined number of dispense cycles.
Number of Pulses: predefined value (e.g. 1–32000)
• Single-Shot Mode
Each dispense point is triggered by an individual PLC signal. When dispensing a continuous
feature (such as a straight line or a circle), the frequency of the dispense trigger signal should
be proportional to the trajectory speed of the axis system. This is necessary to achieve a
continuous line width.
Number of Pulses: “1”
• Infinite Mode
– Continuous dispensing as long as the PLC trigger input is “logic 1”. Dispensing will stop when
the signal is changed to “logic 0”
– Number of Pulses:
– “infinite” (when programmed through keypad)
– “0” (when programmed through RS-232C)
The parameters Rising, Falling, Delay, Needle Lift and Open Time use the values preset in the
menu. Is the PLC trigger signal “logic 1”, the MDC sends dispensing impulses, until the signal
changes to “logic 0”.
IMPORTANT NOTE
No dispending at high frequencies for too long
If the valve is used at high frequencies (hundreds of Hertz) for too long, there is a danger of
overheating. For this reason, the system is switched OFF automatically after some time. Do not
dispense for longer than 12 s without a break, when using these high frequencies.
• Scenario Mode
A complex set of shots is defined via a scenario. This allows the dispensing even of very
complex structures, since up to ten different segments, each with their own set of
parameters, can be combined. Four different scenarios can be saved.
The above mentioned methods for triggering are available.

Operation
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• External Mode
The “External Mode” will shift the responsibility of time control of the parameter “Open Time”
to the higher-level machine control. (This may require a very precise time control of the
higher level PLC.) As a result, the valve would function like a “Time-Pressure-Valve”.
Activation of the control unit via RS-232C command by changing the pulse parameters. For
the External Mode set the Open Time to “external”.
Number of Pulses: Should be set to “1” (min delay still applies).
Open Time calculates according to: Length trigger impulse – length Rising = length Open
Time
The parameters Rising, Falling and Needle Lift use the values preset in the menu. When the
trigger signal is set to “logic 1”, the valve will open. It will remain open as long as the trigger
signal remains on “logic 1”. It will start to close when the trigger signal is switched to “logic 0”.
After the valve has completely closed, the controller is ready to receive the next trigger signal
to start the process again.
7.3 Parameters for the Dispensing Process
The profile of the system behavior is illustrated below (Y axis = amplitude of the tappet).
Fig. 23: System behavior
This diagram includes the following parameters.
Parameter Description
Rising (RI)
This interval describes the time required until the valve is completely
opened. It is adjustable in steps of 0.01 ms.
Open Time (OT)
During this phase, the valve remains in opened state. It is adjustable in steps
of 0.1 ms.
Max. open time = 3000 ms
CAUTION!
When working in External mode, the cycle is initiated with following
properties:
For rising, falling and needle lift, the values determined beforehand are used.
Open time however remains active until the signal returns to the state
“logic 0”.
Falling (FA)
The falling ramp of the curve illustrated above represents the time required
for closing the valve. Residual fluid meanwhile is expulsed from the nozzle
compression chamber (the cavity at the rear end of the nozzle insert). The
interval is adjustable in steps of 0.01 ms.