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MOTION MODULE PARTS LIST
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298 INPUT SENSOR MODULES
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R3 R4 R5 R6 R7 C1, C4, C7 C2 C3, C5 C6 C8 Q1 LED U1 U2 PIR F1, F2 Miscellaneous
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100-nF 35-V electrolytic capacitor 220-pF 35-V Mylar capacitor 10- F 35-V electrolytic capacitor 0.1- F 35-V disk capacitor 4.7-nF 35-V disk capacitor 2N2222 transistor Indicator LED 78L05 5-V regulator PIR controller chip KC778B PIR sensor RE200B PIR Fresnel lens, wide and narrow beams PC board, header, IC socket
TABLE 22-2 PIN NAME
MOTION MODULE PINOUTS DESCRIPTION
1 2 3 4 5 6 7 8 9
9V GND OUT1 OUT2 OUT3 Not used Not used Not used 5V
9-V power pin (not used) System ground pin Normally open/closed alarm loop Normally open/closed alarm loop PIR motion detector output Not used Not used Not used Motion module system power
ALARM SENSOR MODULE 299
Alarm Sensor Module
NORMALLY OPEN/CLOSED INPUT LOOP SENSOR BOARD
The alarm loop sensor module can be used to connect any number of alarm sensors to the input of the Tele-Alert system. Using the alarm sensor module, you can easily turn your Tele-Alert or Page-Alert into a portable burglar alarm system that can call you and let you know someone has violated a particular space that you have protected. The diagram in Fig. 22-4 depicts a clever method of utilizing both normally open and normally closed input sensors or alarm switches in a simple circuit. Normally open sensors or switch contacts are shown at S1, S2, and S3. Normally closed switches or alarm sensors are shown at S4, S5, S6, and S7. Any number of normally closed or normally open switches can be used in this input circuit. Not only can you use alarm switches such as window or door switches, but actual sensors can be substituted for switches floor mats or driveway sensors, infrared heat detectors, etc. Two 1N914 diodes, an npn transistor, and a few resistors form the heart of this detector. The alarm loop sensor module is powered from a 5-V source and can obtain power directly from either the Tele-Alert or Page-Alert boards. You could elect to build one of these input circuits for each of the Tele-Alert or Page-Alert input pins if desired; this would permit very large alarm systems with many zones. The output of the alarm loop sensor module provides a 5-V signal to the input of the STAMP 2 on receiving an alarm signal. A few of these detectors circuits could be built on a single circuit board to create a multichannel alarm system using your Tele-Alert system.
ALARM SENSOR MODULE PARTS LIST
R1, R3 R2, R4 C1 D1, D2 Q1 Miscellaenous 20-k 10-k
1 1 4-W 4-W
resistor resistor
0.01- F 25-V disk capacitor 1N914 silicon diode 2N2222 npn transistor Sensors or switches
S1 R1 R2 S4 S5 S6 S7 S2
S3 R3
D2 Q1 D1 R4 Output P0-P11 BS2
Figure 22-4 Alarm loop circuit.
300 INPUT SENSOR MODULES
Figure 22-5 Temperature/voltage level module.
Temperature/Voltage Level Module Kit
The temperature/voltage level module board kit is a versatile addition to the Tele-Alert or Page-Alert microprocessor alarm controller, and is shown in Fig. 22-5. The temperature/voltage level module is a single-channel module that will permit you to monitor temperature level changes, either upward or downward, or it can allow you to measure voltage level changes by setting a user threshold control. The temperature/voltage level (TVL) board consists of a single LM393 comparator integrated circuit and a handful of components (Fig. 22-6). The circuit begins with S1 (a resistive sensor, or thermistor) and R6. S1 and R6 form a voltage divider to ground. In this configuration, you are able to monitor upward temperature changes. If the positions of S1 and R6 are reversed, then you are able to monitor decreasing temperature changes. The thermistor output at pin 3 of U1 represents the plus ( ) input to the comparator circuits. The resistor network at R12 acts as the threshold control on the minus ( ) inputs of the comparator. The output of the comparator at pin 1 and pin 4 produces a (high) output when the threshold is sensed. The TVL module can also be used to monitor voltage level changes by eliminating thermistor S1 and resistor R6 and replacing them with scaling resistors instead. Scaling resistors will now represent voltage dividers consisting of two resistors at each input channel. Ratios such as 100 k to 1 k for R1/R2 or 1 k to 100 for R3/R4 would be used as
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