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Lucent Technologies Lineage
®
2000 ECS-12 Controller J85501D-2
Issue 3 August 1998
Product Description 2 - 7
the failed rectifier will be supplying more current than any other
rectifier. When the high voltage shutdown signal is sent by the
controller, the rectifier supplying the most current, i.e., the failed
rectifier, will shut down, causing the plant voltage to drop to
normal and the HV alarm to retire. All other rectifiers will
remain on. If a high voltage condition exists without an
individual rectifier failure, e.g., because of incorrect setting of
the HV-threshold DIP switches or lightning-induced high
voltage, the rectifier with the highest output current will shut
down, but the HV condition will remain. The rectifier with the
highest output current of those remaining on will shut down
next, but again the HV condition will remain. This will continue
until all rectifiers have shut down. Note that although it is a
sequential shutdown of rectifiers, the timing is very fast, and it
will appear as if all rectifiers have shut down simultaneously.
The detection of the high voltage condition and sending of the
shutdown signal are functions of the controller, while the
selection of the rectifier with the highest output current for
shutdown is a function of the rectifiers.
The high voltage shutdown threshold voltage should be set by
the user to a prescribed margin above the plant float voltage.
(See Section 4, “High Voltage Shutdown Thresholds.”) This
margin is typically 1.5 volts for nominal 48V battery plants and
0.75 volts for nominal 24V battery plants. Since voltage
fluctuations are greater in batteryless plants, the shutdown
margin is typically set at 3 volts above float in 48V batteryless
plants or 1.5 volts for 24V batteryless plants. The actual
threshold voltage is set with a group of DIP switches on the
113B. DIP switches provide a visual verification of the
shutdown set point at all times.
For plants configured with the float/equalize feature, a separate
high voltage shutdown threshold is used when the plant is in
equalize mode. A separate group of DIP switches are used to
select the HV shutdown threshold for equalize mode. When the
plant is switched from float to equalize, the equalize high voltage
shutdown threshold becomes effective immediately. When the
plant is switched from equalize to float, the equalize high voltage
shutdown threshold remains effective for 2-4 minutes, after
which the float high voltage shutdown threshold becomes
effective. This delay is necessary to avoid nuisance HV alarms
and shutdowns that would occur if the float threshold became
effective while the battery voltage was slowly dropping from the
equalize voltage to the float voltage. This feature is basically
transparent in normal plant operation, but could be