Hobart 100D20 Operation And Maintenance Manual With Illustrated Parts List page 29

Engine driven generator sets
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OM-2032 / Operation and Maintenance Manual
100D20 / Generator Sets
b. Memory and time delay module
The memory and time delay module (4, Fig. 9) or the protective monitor module, is a
solid-state device with a hermeticallysealed, reed-type relay. The printed circuit board or
"card" includes five memory circuits and a time delay circuit. Each circuit is connected to a
corresponding sensing module (5 and 6) . All memory circuits are connected to the module
relay coil, and any one of the circuits can energize the coil to open the relay contacts. When
a sensing device energizes any one of the module circuits, the module relay is also
energized to break the load contactor holding circuit and allow the load contactor to open.
All circuits, except the undervoltage circuit, function immediately to open the load contactor.
A time delay system of the contactor under conditions the momentary undervoltage in the
generator output. An undervoltage condition which continues uninterrupted for a period of 4
to 12 seconds (adjustable) will cause the time delay circuit to open the load contactor. Each
of the five circuits is connected to a corresponding indicating light (10, 11, 13, 14, and 15)
which is turned on when a fault occurs. The module relay will remain energized (OPEN) until
the reset switch (7) is pushed to allow the relay to return to normal, (CLOSED) .
c. Indicating lights
The function of lights (10, 11, 13, 14, and 15) is to indicate to the operator the abnormal
condition of overvoltage, underfrequency, etc., which caused the protective monitor system
to function. Each of the five lights is connected to an actuating circuit within the memory and
time delay module. When one of the circuits is activated, it turns on the applicable indicating
light. The light will remain on until the reset switch (7) is pushed. All lamps in indicating
lights may be tested by pressing switch (8) .
d. Plug interlock relay
The function of the plug interlock relay (1) is to open the output load contactor in the event
the cable plug connector becomes disconnected during power delivery. The output load
contactor will also be opened if an attempt is made to deliver power when the output cable is
not connected. The relay receives 28-V DC for operation supplied through the on-board
transformer-rectifier, or from the 28-Volt electrical system.
Connection to the interlock relay is through terminals E and F on the output plug connector.
e. Test bank switch
A test bank toggle switch (18, Fig. 9) provides a means of bypassing the interlock relay (1)
when supplying power to a load bank, or to an aircraft not equipped with a plug-interlock
system.
f. Resistor
A 100-ohm, 25-watt resistor (21) is connected in series with the plug interlock relay to
protect it in the event that phase "C" contacts in the load contactor should fail to close when
the generator control ON switch is operated.
g. Fuse-interlock relay
The function of the fuse-interlock relay (2) is to interrupt the load contactor holding coil circuit
and remove the load in case of a "blown" fuse (17) in the protective relay coil circuit.
h. Connector
A 26-contact connector (19) provides a quick-disconnect facility for all wiring to the tray
electrical components so that the complete tray assembly may be removed quickly and
easily.
i. Auxiliary underfrequency relay
The auxiliary underfrequency relay (3) automatically opens the excitation-deenergization
relay disconnecting the voltage regulator whenever the frequency drops to 380 Hz or below.
This protects the voltage regulator (Fig. 12) and ballast resistors (2, Fig. 8) against
overloading.
March 31/94 Revised
Chapter 1-1
Page 13

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