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Elkron IM915LX Manual Del Usuario página 18

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SW1 DIP 2 on OFF :
Storage enabled
SW1 DIP 2 on ON :
Storage disabled
9.6 DELAY ADJUSTMENT (microwave zone)
By programming the SW1 DIP 3 (MICROWAVE DELAY), it is possible to
vary the delay in the microwave zone detection capability.
SW1 DIP 3 on OFF:
Minimum delay
SW1 DIP 3 on ON:
Maximum delay
9.7 DUAL EDGE SIGNAL DETECTION(infrared zone)
Digital processing which checks the number of pulses and the shape
(polarity) of the signal detected: this check enables the sensor to
distinguish an actual alarm signal from a simple noise. The detection
mode may be selected with SW1 DIP 4:
SW1 DIP 4 on OFF :
SINGLE EDGE
A single detection (with positive or negative
polarity) is sufficient to generate an alarm
SW1 DIP 4 on ON :
DUAL EDGE
Two detections (of opposite polarity) are
necessary to generate an alarm
NOTE: See Paragraph 9.16 "ENVIRONMENTAL TEST" for additional
information about using this function.
9.8 PULSE COUNT
By operating SW1 DIP 5, it is possible to select the number of pulses
necessary for the infrared zone to generate an alarm condition.
SW1 DIP 5 on OFF :
COUNT X 1
SW1 DIP 5 on ON :
COUNT X 2
SW1 DIP 2 on OFF :
Storage enabled
SW1 DIP 2 on ON :
Storage disabled
9.6 DELAY ADJUSTMENT (microwave zone)
By programming the SW1 DIP 3 (MICROWAVE DELAY), it is possible to
vary the delay in the microwave zone detection capability.
SW1 DIP 3 on OFF:
Minimum delay
SW1 DIP 3 on ON:
Maximum delay
9.7 DUAL EDGE SIGNAL DETECTION(infrared zone)
Digital processing which checks the number of pulses and the shape
(polarity) of the signal detected: this check enables the sensor to
distinguish an actual alarm signal from a simple noise. The detection
mode may be selected with SW1 DIP 4:
SW1 DIP 4 on OFF :
SINGLE EDGE
A single detection (with positive or negative
polarity) is sufficient to generate an alarm
SW1 DIP 4 on ON :
DUAL EDGE
Two detections (of opposite polarity) are
necessary to generate an alarm
NOTE: See Paragraph 9.16 "ENVIRONMENTAL TEST" for additional
information about using this function.
9.8 PULSE COUNT
By operating SW1 DIP 5, it is possible to select the number of pulses
necessary for the infrared zone to generate an alarm condition.
SW1 DIP 5 on OFF :
COUNT X 1
SW1 DIP 5 on ON :
COUNT X 2
9.9 LED ENABLING
Zone LED operation can be enabled/disabled by operating SW2 DIP 5,
namely:
SW2 DIP 5 on OFF:
Zone LED's (MW/PIR) enabled for operation
SW2 DIP 5 on ON:
Zone LED's (MW/PIR) disabled
It is also possible to enable/disable general led operation by operating
SW2 DIP 6, namely:
SW2 DIP 6 on OFF:
General (ALARM) Led enabled for operation
SW2 DIP 6 on ON:
General (ALARM) Led disabled
9.10 AUTOEQUALIZER FUNCTION
Signals coming from the two sensor zones are converted into a digital
signal which, after being processed by the microprocessor, makes it
possible to recognize an actual burglary condition within the protected
environment. Even in the presence of especially intense background noise,
the AUTOEQUALIZER function allows dynamic adapting of the alarm
threshold and optimization of the conditions of detection, even in hampered
environments.
9.11 AUTOMATIC TEMPERATURE COMPENSATION
All detectors are equipped with automatic temperature compensation
allowing detection sensitivity to be adapted to the different environmental
heat conditions
9.12 MICROWAVE SYNCHRONIZATION FUNCTION
If it is necessary to considerably increase the degree of protection in a
given area, for example, by making use of several sensors (with OR
configuration), within the same envrionment (in any case, close to each
other), the electromagnetic energy emissions ofthe microwave zone must
be synchronized to prevent the various modules that operate at the same
frequency from interfering with each other, thus causing false alarms.
18
9.9 LED ENABLING
Zone LED operation can be enabled/disabled by operating SW2 DIP 5,
namely:
SW2 DIP 5 on OFF:
Zone LED's (MW/PIR) enabled for operation
SW2 DIP 5 on ON:
Zone LED's (MW/PIR) disabled
It is also possible to enable/disable general led operation by operating
SW2 DIP 6, namely:
SW2 DIP 6 on OFF:
General (ALARM) Led enabled for operation
SW2 DIP 6 on ON:
General (ALARM) Led disabled
9.10 AUTOEQUALIZER FUNCTION
Signals coming from the two sensor zones are converted into a digital
signal which, after being processed by the microprocessor, makes it
possible to recognize an actual burglary condition within the protected
environment. Even in the presence of especially intense background noise,
the AUTOEQUALIZER function allows dynamic adapting of the alarm
threshold and optimization of the conditions of detection, even in hampered
environments.
9.11 AUTOMATIC TEMPERATURE COMPENSATION
All detectors are equipped with automatic temperature compensation
allowing detection sensitivity to be adapted to the different environmental
heat conditions
9.12 MICROWAVE SYNCHRONIZATION FUNCTION
If it is necessary to considerably increase the degree of protection in a
given area, for example, by making use of several sensors (with OR
configuration), within the same envrionment (in any case, close to each
other), the electromagnetic energy emissions ofthe microwave zone must
be synchronized to prevent the various modules that operate at the same
frequency from interfering with each other, thus causing false alarms.
18

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