Bosch Security Systems BRL1-WY WLSN RELAY MODULE User Manual USERS MANUAL

Bosch Security Systems, Inc. WLSN RELAY MODULE USERS MANUAL

USERS MANUAL

wireless Local SecurityNetwork
(915 MHz)
EN
Reference Guide
wLSN
wLSN | Reference Guide | Contents
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Contents
1.0 Using this Document..........................................................4
2.0 Installation Considerations ...............................................6
3.0 RFSS Mode (RF Signal Strength) ......................................7
3.1 RFSS Site Evaluation ............................................................... 8
3.2 RFSS Automatic Entry............................................................ 14
3.3 Manual RFSS Testing............................................................. 16
3.4 RFSS Remote Entry ............................................................... 18
4.0 Discovering a wLSN Device .............................................20
5.0 Defaulting a wLSN Device................................................21
6.0 wLSN Devices...................................................................22
6.1 wLSN Installation Tool (ISW-BIT-HCY)......................... 22
6.2 wLSN Hub (ISW-BHB1-WY)..................................... 24
6.3 wLSN PIR and Dual Motion Detectors
(ISW-BPR1-W13PY, ISW-BPR1-W13PGY)............................ 27
6.4 wLSN Door-Window Contact (ISW-BMC1-S135Y)......... 31
6.5 wLSN Recessed Door-Window Contact
(ISW-BMC1-R135Y) ............................................................... 34
6.6 wLSN Mini Door-Window Contact (ISW-BMC1-M82Y)..... 36
6.7 wLSN Inertia Detector (ISW-BIN1-S135Y) ..................... 37
wLSN | Reference Guide | Contents
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6.8 wLSN Key Fob (ISW-BKF1-H5Y) .................................. 41
6.9 wLSN Relay Module (ISW-BRL1-WY) ......................... 43
6.10 wLSN Indoor Siren (ISW-BSR1-WY)............................. 44
6.11 wLSN Smoke and Heat Detector (ISW-BSM1-SY).. 45
6.12 wLSN Glass Break Detector (ISW-BGB1-SAY).......... 52
wLSN | Reference Guide | 1.0 Using this Document
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Trademarks
Pet Friendly® is a registered trademark of Bosch Security Systems,
Inc. in the United States.
1.0 Using this Document
This document contains the basic information that a trained
installer needs to install the wireless Local SecurityNetwork
(wLSN). It supplements the documents listed in Table 1 on page 5.
This reference guide contains:
A description of the wLSN general installation procedure
(Section 2.0 Installation Considerations on page 6).
Device-specific installation procedures (Sections 6.1 through
6.12 starting on page 22).
A description of the icons used in the wLSN documentation
(Appendix on page 61).
Use this document along with the control panel’s documentation
and each device’s installation instructions to complete the
installation process.
When you see the following logo in the wLSN installation
instructions listed in
Table 1
on page 5, refer to the
appropriate section in this document.
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Table 1: wLSN Products and Instructions
Product Document Document
Part Number
ISW-BIT1-HCY wLSN Installation Tool
Installation Instructions
F01U008748
ISW-BHB1-WY wLSN Hub Installation
Instructions
F01U500915
ISW-BPR1-W13PY wLSN PIR Motion Detector
Installation Instructions
F01U500908
ISW-BDL1-W11PGY wLSN Dual Motion Detector
Installation Instructions
F01U500901
ISW-BMC1-S135Y wLSN Door-Window Contact
Installation Instructions
F01U500909
ISW-BMC1-R135Y wLSN Recessed Door-Window
Contact Installation Instructions
F01U011878
ISW-BMC1-M82Y wLSN Mini Door-Window
Contact Installation Instructions
F01U011876
ISW-BIN1-S135Y wLSN Inertia Detector
Installation Instructions
F01U011980
ISW-BKF1-H5Y wLSN Key Fob Installation
Instructions
F01U001565
ISW-BRL1-WY wLSN Relay Module Installation
Instructions
F01U009264
ISW-BSR1-WY wLSN Siren Installation
Instructions
F01U009265
ISW-BSM1-SY wLSN Smoke Detector
Installation Instructions
F01U012075
ISW-BGB1-SAY wLSN Glass Break Installation
Instructions
F01U027173
ICP-EZM2 Easy Series Installer Guide F01U025147
wLSN | Reference Guide | 2.0 Installation Considerations
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2.0 Installation Considerations
This device complies with Part 15 of the FCC rules and
with RSS-210 of Industry Canada. Operation is subject to
the following two conditions:
(1) This device must not cause harmful interference, and
(2) This device must accept any interference received,
including interference that might cause undesired
operation.
Changes or modifications not expressly approved by the
party responsible for compliance could void the user’s
authority to operate the equipment.
Refer to the control panel’s documentation for detailed
instructions on wLSN programming and device setup.
Dispose of used batteries according to manufacturer’s
instructions.
wLSN devices are intended only for indoor, dry applications.
Avoid mounting wLSN devices in areas with large metallic objects,
electrical panels (for example: control panel or fuse box) or electric
motors. They might reduce the radio-frequency (RF) range of a wLSN
device.
Avoid installing the devices where excessive humidity or moisture, or
temperatures outside of the acceptable operating range exist.
When installing a wLSN Network, plan your installation based on the
control panel and wLSN specifications, and the radio-frequency signal
strength (RFSS) between remote devices and the wLSN Hub.
The antennas used in fixed mounted wLSN transceivers must be
installed to provide a separation distance of at least 8 in. (20 cm)
from all persons and must not be co-located or operating in
conjunction with any other antenna or transmitter.
Table 2: General Specifications
Range (open field) 1.6 km (1 mile)
Humidity range 0% to 95%
Frequency band 915 to 928 MHz
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3.0 RFSS Mode (RF Signal Strength)
Before permanently installing any wLSN device, verify that
the radio-frequency signal strength (RFSS) between the
planned device location and the planned wLSN Hub
location is acceptable.
CAUTION: If you have wireless devices that you will not
immediately install, reinsert the battery tabs or remove the
batteries to prevent battery depletion.
The wLSN Smoke Detector cannot show RFSS results.
Use the Installation Tool or another type of wLSN device
to test the desired location for RFSS.
There are four methods for entering RFSS Mode:
RFSS Site Evaluation: Use this option to test RFSS at a desired
location for a new device installation. Refer to page 8 for more
information.
RFSS Automatic Entry: Use this option to control device point
assignment by enrolling one device at a time into the system.
Refer to page 14 for more information.
RFSS Automatic Entry is part of incremental device
enrollment. To use RFSS Automatic Entry, ensure your
control panel supports incremental device enrollment.
Otherwise, refer to
Section
3.1 RFSS Site Evaluation
on
page 8 to enter RFSS and enroll devices.
Manual RFSS Testing: Use this option to manually enter a
device into RFSS Mode for troubleshooting purposes while
maintaining normal network operation in an existing
installation. The wLSN Hub remains in normal operating mode.
Refer to page 16 for more information.
RFSS Remote Entry: Use this option to remotely enter RFSS
Mode from the control panel or a telephone. Refer to page 18
for more information.
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3.1 RFSS Site Evaluation
To test RFSS at a desired location for a new device installation:
1. Prepare the wLSN Hub for site testing.
Refer to Section 3.1.1.
2. Test the site for acceptable RFSS using one of the following
options:
- The wLSN Hub and a device
Refer to Section 3.1.2 on page 9.
- The wLSN Hub and the Installation Tool
Refer to Section 3.1.3 on page 11.
3.1.1 Preparing the wLSN Hub for Site Testing and RFSS Mode
If the hub is already part of a system, note the original
switch settings on the wLSN Hub before setting the
switches for RFSS mode.
1. Rotate the enclosure locking mechanism on the wLSN Hub to
the unlocked position, and remove the wLSN Hub from the
base.
2. Set Switch S1 to 9, Switch S2 to 2, and Switch S3 to 0 to
enable RFSS mode. This disables normal operation.
Refer to Figure 1.
Figure 1: wLSN Hub Switches
0
5
0
5
0
5
S1 S2 S3
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3. Find a suitable location for the hub base and apply power by
either connecting it to the control panel (refer to the control
panel’s installation instructions), or temporarily connecting a
9 VDC to 12 VDC battery.
4. Insert the wLSN Hub back into the base. Rotate the
enclosure locking mechanism to the locked position.
5. Proceed to the appropriate procedure as selected in Step 2
of Section 3.1 RFSS Site Evaluation.
3.1.2 RFSS Testing Between wLSN Hub and Device
1. Take the device being tested to its planned mounting
location.
2. Remove and re-insert the device’s batteries.
The device’s LED turns on for approximately 5 sec.
3. Quickly press and release the tamper switch button (refer to
Figure 2) four times while the LED is on (5 sec) to enter
RFSS mode.
Figure 2: Device Tamper Switches
12
1- Button style tamper switch
2- Lever style tamper switch
The wLSN Hub and device exchange data packets for
approximately 7 to 11 sec. During this time, the device’s
LED flashes ultra-fast.
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When the data exchange is complete, the device’s LED
shows the RFSS evaluation results for approximately 15
sec.
Figure 3: RFSS Evaluation Results
2
3
1
4
1- Ultra fast flash (ON 0.1 sec/OFF 0.1 sec): Data packet exchange
2- Fast flash (ON 0.2 sec/OFF 0.2 sec): Acceptable RFSS
3- Slow flash (ON 1 sec/OFF 1 sec): Unacceptable RFSS
4- Blip (ON 0.1 sec/OFF 10 sec): No signal
If the RFSS is unacceptable, reposition the device and
restart RFSS evaluation until an acceptable location is
found. If necessary, reposition the wLSN Hub.
After the 15-sec display period, the device’s LED turns off.
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4. To start a new RFSS session, press and release the device’s
tamper switch once.
To force a device out of RFSS Mode, press and hold the
device’s tamper switch for 5 sec, or remove and reinsert the
device’s batteries.
5. Repeat this procedure for each device you are testing. When
you finish testing the devices, return the wLSN Hub’s
switches to their original position.
3.1.3 RFSS Testing Between wLSN Hub and Installation Tool
The LCD Display is 2 lines by 16 characters. The LCD display
flashes and beeps the sounder every 4 sec with each information
update.
1. Take the Installation Tool to the device’s planned mounting
location.
2. Press any key on the Installation Tool to awaken it.
w L S N 9 0 0
I N S T A L L T O O L
3. Press and hold the [*] and [#] key together to enter RFSS
mode. The LCD display shows:
R F T E S T M O D E
M O D E 1 O R 2 ?
To select a mode, press its numerical key, for example, press
[2] for Mode 2.
4. Hold the Installation Tool at the device’s planned mounting
location.
Use Mode 1 to determine if the signal strength is acceptable
or not. Mode 2 helps you determine how acceptable the
signal strength is.
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Refer to Mode 1 and Mode 2 (page 12) for more information
on acceptable signal strength levels.
If the RFSS is unacceptable, reposition either the wLSN
Hub or the Installation Tool until an acceptable location is
found.
5. Repeat this procedure for each device’s location you are
testing. When you finish testing locations, return the wLSN
Hub’s switches to their original position.
Mode 1
Select Mode 1 by pressing [1]. If the RFSS is acceptable the LCD
shows:
M O D E 1 : + + + OK + + +
If the RFSS is unacceptable the LCD shows:
M O D E 1 : - N O T O K -
Mode 2
To select Mode 2:
1. Press [2]. The LCD shows:
M O D E 2 : P R E S S 0
T O T RI G G E R
2. Press [0].
The Installation Tool collects data for 5 sec. The LCD shows:
M O D E 2 : P S R - - -
R S S : - - - - -
After 5 sec, the Installation Tool beeps and shows the
RFSS evaluation results for 15 sec:
M O D E 2 : P S R 9 0 %
R S S : J J J F F
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Mode 2 provides two indicators of signal strength: Packet
Success Ratio (PSR) and Received Signal Strength (RSS).
PSR is the ratio of successfully received packets to sent
packets. The Installation Tool shows PSR as a percentage.
For example, if the wLSN Hub sends 10 packets and the
Installation Tool receives 9 packets, the PSR is 90%.
RSS indicates the power level of the received messages.
The Installation Tool shows RSS using power bars. The
maximum number of bars is five.
The best location for placing the device is the one that
shows the highest PSR percentage and the highest number
of power bars. A PSR of 100% and five RSS power bars
indicates the strongest signal, which identifies the best
location.
Table 3: Interpreting Mode 2 Display
Power Bars PSR Evaluation
50% - 59% Unacceptable
50% - 59% Marginal (not recommended)
60% - 69% Acceptable
70% - 79% Good
80% - 89% Very good
90% - 99% Excellent
When the 15-sec display period ends, the LCD shows:
M O D E 2 : P R E S S 0
T O T RI G G E R
Exiting RFSS Mode
The Installation Tool automatically exits RFSS Mode 5 min after
the last key press. You can also press and hold the [*] and [#] keys
together to exit RFSS Mode. The Installation Tool powers down
from the main menu 30 sec after the last key press.
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3.2 RFSS Automatic Entry
RFSS Automatic Entry is part of incremental device
enrollment. To use RFSS Automatic Entry, ensure your
control panel supports incremental device enrollment.
Otherwise, refer to
Section
3.1 RFSS Site Evaluation
on
page 8 to enter RFSS and enroll devices.
To check RFSS and enroll devices one at a time into the system:
1. Start the discovery process from the control panel.
Refer to your control panel’s installation instructions.
2. Install the batteries or remove the battery tab from the
device when the system prompts you to do so. The following
events occur:
a. The device’s LED turns on for approximately 5 sec to
indicate a successful power-up self-test.
b. The device detects the system.
c. The wLSN Hub and device exchange data packets.
During this exchange, the device’s LED turns off for
approximately 7 to 11 sec.
d. When the data exchange is complete, the device’s LED
shows the RFSS evaluation results for approximately 15
sec.
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Figure 4: RFSS Evaluation Results
2
3
1
4
5- Ultra fast flash (ON 0.1 sec/OFF 0.1 sec): Data packet exchange
6- Fast flash (ON 0.2 sec/OFF 0.2 sec): Acceptable RFSS
7- Slow flash (ON 1 sec/OFF 1 sec): Unacceptable RFSS
8- Blip (ON 0.1 sec/OFF 10 sec): No signal
If the RFSS is unacceptable, reposition the device and
restart RFSS evaluation (refer to
Step
3
) until an
acceptable location is found. If necessary, reposition the
wLSN Hub.
e. After the 15-sec display period, the device’s LED turns
off.
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3. To start a new RFSS session, press and release the device’s
tamper switch once. Steps 2 c and 2 d repeat.
4. To force a device out of RFSS Mode, press and hold the
device’s tamper switch for 5 sec. Before the device exits
RFSS Mode, it tests for RFSS again and shows the results on
its LED for approximately 15 sec.
5. When the discovery process is complete, the system exits
RFSS Mode. To test the device, fault and restore the device’s
input (for example, remove the magnet from the door-
window contact) once. At this time, the system announces
the point number it assigned to the device.
3.3 Manual RFSS Testing
To place a specific device into RFSS Mode for troubleshooting
purposes:
1. Remove the device from where it is mounted.
2. Remove and re-insert the batteries.
The device’s LED turns on for approximately 5 sec. During
this time, quickly press and release the device’s tamper
switch four times.
Figure 5: Device Tamper Switches
12
3- Button style tamper switch
4- Lever style tamper switch
The following events occur:
a. The wLSN Hub and device exchange data packets for
approximately 7 to 11 sec. During this time, the
device’s LED flashes ultra-fast.
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b. When the data exchange is complete, the device’s LED
shows the RFSS evaluation results for approximately 15
sec:
Figure 6: RFSS Evaluation Results
2
3
1
4
9- Ultra fast flash (ON 0.1 sec/OFF 0.1 sec): Data packet exchange
10- Fast flash (ON 0.2 sec/OFF 0.2 sec): Acceptable RFSS
11- Slow flash (ON 1 sec/OFF 1 sec): Unacceptable RFSS
12- Blip (ON 0.1 sec/OFF 10 sec): No signal
If the RFSS is unacceptable, reposition the device until an
acceptable location is found. If necessary, reposition
the wLSN Hub.
c. After the 15-sec display period, the device’s LED turns
off.
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3. To start a new RFSS session, press and release the device’s
tamper switch once.
To manually exit RFSS Mode, press and hold the device’s
tamper switch for 5 sec, or remove and reinsert the device’s
batteries.
4. Repeat this procedure for each device you are testing.
3.4 RFSS Remote Entry
Use this option to remotely enter and exit RFSS Mode.
1. Use the control panel or a telephone to enter RFSS Mode.
Refer to your control panel’s installation instructions for
more information.
2. Select the desired wLSN device.
The wLSN Hub and device exchange data packets for
approximately 7 to 11 sec. During this time, the device’s LED
flashes ultra-fast.
3. When the data exchange is complete, the device’s LED
shows the RFSS evaluation results for approximately 15 sec:
wLSN | Reference Guide | 3.0 RFSS Mode (RF Signal Strength)
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Figure 7: RFSS Evaluation Results
2
3
1
4
13- Ultra fast flash (ON 0.1 sec/OFF 0.1 sec): Data packet exchange
14- Fast flash (ON 0.2 sec/OFF 0.2 sec): Acceptable RFSS
15- Slow flash (ON 1 sec/OFF 1 sec): Unacceptable RFSS
16- Blip (ON 0.1 sec/OFF 10 sec): No signal
The system also announces “Pass,” “Low,” or “Missing.”
If the RFSS is unacceptable, reposition the device until an
acceptable location is found. If necessary, reposition
the wLSN Hub.
After the 15-sec display period, the device’s LED turns off.
4. To start a new RFSS session, repeat Step 1 on page 18.
To manually exit RFSS Mode, enter the appropriate
command at the control panel.
wLSN | Reference Guide | 4.0 Discovering a wLSN Device
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4.0 Discovering a wLSN Device
Discovery is the process through which the wLSN Hub identifies
and includes new devices into a system.
In order for the wireless network to operate properly, the
following process must occur as shown below:
Discover Devices
Establish Network
Configure Network
Configure Devices
Test Devices
For specific information on the discovery process, refer to your
control panel documentation.
To default a device that is already enrolled into an existing
wireless network, refer to Section 5.0 on page 21.
wLSN | Reference Guide | 5.0 Defaulting a wLSN Device
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5.0 Defaulting a wLSN Device
Defaulting a wLSN device returns it to an undiscovered state.
Once a device is defaulted, it can be enrolled into a wireless
network.
To ensure a device is defaulted:
1. Remove the batteries.
2. Press and hold the tamper switch button.
Refer to Figure 1 on page 9.
3. Reinsert the batteries while holding the tamper switch
button.
The device’s LED turns on.
4. Release the tamper switch button within five sec after the
device’s LED turns on.
The device’s LED briefly turns off and then on, indicating that
the device was successfully defaulted.
This process does not work for the Smoke Detector. Refer
to
Section
6.11.7 Defaulting the Smoke Detector
on page
50.
If the wall tamper tab is removed on the Glass Break
Detector, refer to
Defaulting the Glass Break
Detector on
page 60 to enter RFSS Mode or return the Glass Break
Detector to an undiscovered state.
When the Inertia Detector is defaulted, its LED briefly
turns off and on, and then it enters Test Mode. Refer to
Section
6.7.2
on page 40 for more information.
To default a Key Fob, delete the user from the control
panel, and then re-enter the user without the key fob.
Refer to the control panel documentation for instructions.
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6.0 wLSN Devices
6.1 wLSN Installation Tool (ISW-BIT-HCY)
Use the wLSN Installation Tool to determine the best locations for
wLSN device installation.
The Installation Tool communicates signal strength and packet
success ratios through an LCD display.
Table 4: Installation Tool Specifications
Docked 12 VDC nominal, 7 VDC to 14 VDC
(12 VDC plug-in power pack supplied)
Power
Batteries 3 AAA NiMH rechargeable batteries that require
an initial charge of at least 7 hours of charging.
Operating Life: Up to 50 hours of continuous use
on a single charge.
The crescent-shaped LED indicates charging status when placed in
a docking station (Table 5).
Table 5: wLSN Installation Tool LED Status
LED (
Figure 8
on page 23) Status
On Batteries fully charged
Off Installation Tool operation on battery only.
Flashing Batteries charging
Flashing power indicator Low battery (
Figure 8
on page 23)
wLSN | Reference Guide | 6.0 wLSN Devices
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Figure 8: wLSN Installation Tool
BOSCH
1
2
1- Power Indicator
2- Charging Status LED
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6.2 wLSN Hub (ISW-BHB1-WY)
The wLSN Hub monitors and coordinates two-way communications
between the control panel and the detectors.
Rotary switches (S1, S2, and S3) configure device operation and
enable special diagnostic modes.
An LED on the front provides device status.
Table 6: wLSN Hub Specifications
Wire Gauge 0.14 (24 AWG) to 1.5 mm (18 AWG).
Power/Voltage 12 VDC nominal, 7 to 14 VDC
Wire Length 300 m (1000 ft)
Current Draw maximum 60 mA
Wall and Cover
Tamper Switch
Transmits a tamper signal when the detector is
removed from its base or pulled away from the wall.
For more information on wire distance and the number of
devices, refer to the control panel’s documentation.
wLSN | Reference Guide | 6.0 wLSN Devices
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6.2.1 wLSN Hub Switches
Use Switches S1, S2, and S3 located on the wLSN Hub’s inner
cover to configure the device’s operation or to enable special
diagnostic or installation modes.
Figure 9: Switches
0
5
0
5
0
5
S1 S2 S3
Assign a different address to each option bus device.
wLSN Hub choices are S1=1 and S1=2.
Switch 1 (S1) configures the wLSN Hub’s address on the option
bus.
To configure the switches for normal operation, set S1 to 1 or 2.
Set Switch 2 (S2) and Switch 3 (S3) to 0 (zero).
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6.2.2 wLSN Hub LED
The green LED shows the device’s status during power up, self
test, network configuration, and normal operation (Table 7).
Figure 10: wLSN Hub LED
1
1 - LED
Table 7: wLSN Hub LED Displays
Operation LED (Device Status)
Self Test and Hardware Failure LED flashes twice per sec. This
indicates failure. The wLSN Hub
does not operate.
Standard Operation LED on
Configuring Network LED flashes once every 2 sec.
RFSS Mode
(Refer to
Section
3.0 RFSS Mode
on
page 7 for more details)
LED flashes once every 4 sec.
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6.3 wLSN PIR and Dual Motion Detectors
(ISW-BPR1-W13PY, ISW-BPR1-W13PGY)
The PIR Motion Detector (ISW-BPR1-W13PY) uses an infrared
sensor. The Dual Motion Detector uses (ISW-BPR1-W13PGY) both
PIR and microwave technology.
A cover-and-wall tamper switch transmits a tamper signal when
the cover is removed from its base, or when the unit is pulled away
from the wall.
An LED provides status for Walk Test, RFSS, and Discovery Modes.
Table 8: wLSN PIR and Dual Motion Detectors Specifications
PIR Motion Detector
Power/Voltage
Four AA 1.5 V alkaline batteries
Dual Motion Detector
Power/Voltage
Six AA 1.5 V alkaline batteries
Mounting Height 2.3 m to 2.7 m (7.5 ft to 9.0 ft)
6.3.1 Sensitivity Settings
Sensitivity settings are set at the control panel. Refer to the
control panel’s documentation for detailed information.
Standard Sensitivity (Default Setting)
Use this setting when pets are present in the area to be
monitored. Standard sensitivity provides excellent detection
performance and is the least sensitive to false alarms.
Intermediate Sensitivity
Only use this setting in non-pet installations where environmental
disturbances are minimal. Intermediate sensitivity provides the
highest level of detection performance.
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Setting the Dual Motion Detector’s Microwave Range Adjustment
The Dual Motion Detector’s microwave motion sensor is
factory adjusted to sense motion to at least 11 m (35 ft).
1. If the microwave coverage needs adjustment (red or yellow
LED does not light), increase or decrease the microwave
range as needed (Figure 11).
2. Repeat the Walk Test (Section 6.3.2 Walk Testing on page
29).
3. Repeat Steps 1 and 2 until the required coverage is met.
Figure 11: Decreasing and Increasing Microwave Range
_+
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6.3.2 Walk Testing
To maximize battery life, the LED elements do not activate
unless the unit is in the Walk Test mode.
Perform a Walk Test to determine the boundaries of the coverage
area. Walk Test mode can be started from the:
Control Panel: Enter the appropriate command sequence at
the control panel to start the Walk Test mode (refer to the
control panel’s documentation).
Detector: Slide open and then close the detector cover to start
a 90-sec Walk Test mode. Walk Test mode is now active.
Motion detected within the detector’s coverage area activates the
red LED, sends a signal to the control panel, and restarts a 90-sec
timer. If there is no motion for 90 sec, the red LED flashes for the
last 10 sec to indicate Walk Test mode is ending. Motion detected
restarts the 90-second timer.
1. Start at the pattern’s expected boundary and walk across the
pattern moving closer to the detector at each pass while
observing the LED (Figure 12). Refer to Table 9 on page 30
for LED indications.
Figure 12: Walk Test
During Walk Test mode for the wLSN Dual Motion
Detector, a motion alarm signal is sent to the control panel
only when the red LED flashes (
Table 9
). It is normal to
see a brief green or yellow flash before a red alarm
indication when walk testing the Dual Motion Detector.
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Table 9: PIR Walk Test LED Indications
Detector LED Color Function
Red – fast flash Power-up (Walk Test disabled) PIR
Red – lights for 4 sec Alarm, motion detected
Table 10: Dual Walk Test LED Indications
Detector LED Color Function
Green to red – fast flash Power-up (Walk Test disabled)
Green – lights for 3 sec Motion detected by PIR
Yellow – lights for 3 sec Motion detected by microwave
Refer to
Setting the Dual Motion
Detector’s Microwave Range
Adjustment
on page 28 for more
information.
Dual
Red – lights for 4 sec Alarm, motion detected by both PIR
and microwave
2. Walk test from the opposite direction to determine the
coverage pattern boundaries from both sides.
3. When walk testing is complete:
- From the control panel, enter the appropriate command
sequence at the control panel to turn off Walk Test mode.
- At the detector, the detector returns to normal operation
after 90 sec of inactivity.
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6.4 wLSN Door-Window Contact
(ISW-BMC1-S135Y)
The wLSN Door-Window Contact is a magnetic reed switch and
wireless transceiver used for monitoring doors, windows, and
other dry contact devices.
A cover-and-wall tamper switch transmits a tamper signal when
the cover is removed from its base, or when the unit is pulled away
from the wall.
An LED provides status for RFSS and Discovery Modes.
Table 11: wLSN Door-Window Contact Specifications
Maximum Distance
Between Sensor and
Magnet
12,7 mm (1/2 in.), the magnet can be placed on
either side. The base is marked to indicate the
magnet position.
Wire Gauge 0.14 mm (22 AWG) to 1.5 mm (16 AWG)
Power/Voltage Two AA batteries, 1.5 V alkaline
Terminal Block For connecting other dry contact devices such as
another magnetic reed switch.
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6.4.1 Supported Wiring Configurations
For all wiring options, refer to your control panel’s
documentation to identify the compatible end-of-line (EOL)
resistor options.
Single 1 kΩ, 2.2 kΩ, or 3.65 kΩ EOL Resistor Option
Refer to Figure 13. Use any number of normally-closed (NC)
contacts in series with the loop. Use any number of normally-open
(NO) contacts across the loop.
Figure 13: Single 1 k, 2.2 k, or 3.65 k EOL Resistor Option
21 33
1 - NO
2 - NC
3- 1 kΩ, 2.2 kW, or 3.65 kΩ EOL resistor
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2.2 kΩ Alarm Resistor and Tamper Option
Refer to Figure 14. Place up to five normally-closed contacts in
series with the 2.2 k resistor. Each contact has either a
1.5 k or 2.2 k resistor across it. No contacts can be used across
the loop. The zone recognizes that one or more of the contacts is
opened, but not which ones or how many.
Figure 14: 2.2 k Alarm Resistor and Tamper Option
21
3
4
1 - 1.5 k, or 2.2 k
2 - 1.5 k or 2.2 k (optional, up to 4)
3 - 2.2 k EOL resistor
4 - NC tamper switch (optional)
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6.5 wLSN Recessed Door-Window Contact
(ISW-BMC1-R135Y)
The wLSN Recessed Door-Window Contact is a wireless
transceiver used for monitoring doors and windows.
A cover tamper switch transmits a tamper signal when the cover is
removed from its base.
An LED provides status for RFSS and Discovery Modes.
Table 12: Recessed DW Contact Specifications and Required Tools
Power/Voltage One CR2 lithium battery, 3 VDC
Maximum Distance Between
Reed Switch and Magnet
12,7 mm (1/2 in.)
Drill Tools Requires the use of a 19 mm (3/4 in.) drill bit
and 22 mm (7/8 in.) spade bit
Circuit Board Removal Needle nose pliers are recommended
Mounting the wLSN Recessed DW Contact in a metal door
or window frame could degrade the RF signal strength.
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Figure 15: Recessed Door-Window Contact
1
2
3
1 - Mounting slots for printed circuit board
2- Tamper switch
3 - LED for RFSS Mode and Discovery Mode
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6.6 wLSN Mini Door-Window Contact
(ISW-BMC1-M82Y)
Similar to the wLSN Door-Window Contact, the wLSN Mini Door-
Window Contact is a wireless transceiver device used for
monitoring doors and windows.
A cover-and-wall tamper switch transmits a tamper signal when
the cover is removed from its base, or when the unit is pulled away
from the wall.
An LED provides status for RFSS, and Discovery Modes.
Table 13: wLSN Mini DW Contact Specifications
Power/Voltage One CR2 lithium battery, 3 VDC
Maximum Distance Between
Reed Switch and Magnet
12,7 mm (1/2 in.)
The magnet can be placed on either side of
the detector.
Figure 16: Mini Door-Window Contact Tamper Switch
(+) (-)
2
1
1 - Battery polarity
2- Tamper switch
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6.7 wLSN Inertia Detector (ISW-BIN1-S135Y)
The wLSN Inertia Detector is a vibration detector combined with a
wireless transceiver used for monitoring doors or windows.
A cover-and-wall tamper switch transmits a tamper signal when
the cover is removed from its base, or when the unit is pulled away
from the wall.
An LED provides status for Test, RFSS, and Discovery Modes.
Table 14: Inertia Detector Specifications
Maximum Distance
Between Detector
and Magnet
12,7 mm (1/2 in.)
The magnet can be placed on either side of the
detector.
Power/Voltage 2 AA batteries, 1.5 V alkaline
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Sensor element orientation is critical to the proper
operation of the device. The arrow, embossed on the body
of this sensor, must always point up. Refer to
Figure 17
.
Figure 17: Sensor Adjustment
12
3
90
1 - Remove sensor element
2 - Turn sensor element as desired
3 - Ensure arrow on sensor element points up
Route the wiring from the sensor element so it does not
make contact with the tamper spring. Refer to
Figure 18
.
Figure 18: Wiring Route
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6.7.1 Sensitivity Settings
All sensitivity settings are programmed at the control panel (refer
to your control panel’s documentation for more information). The
sensor element has two types of detection:
Gross Attack
Minor Attack
Gross Attack is always enabled. The Minor Attack setting is very
sensitive and can be disabled.
Gross Attack Sensitivity
The Gross Attack setting measures vibration activity for a specified
length of time. There are four settings:
Low (default)
Low to Medium
Medium to high
High
The settings determine the length of time vibration activity is
measured.
Minor Attack
Programming at the control panel determines how many repetitive
taps (single vibrations) detected by the sensor indicate a minor
attack.
By default, Minor Attack is disabled. If enabled, there are two
settings:
Four Taps
Eight Taps
When a tap occurs, a 90-sec timer starts. If the tap count exceeds
the four or eight count threshold within 90 sec, an alarm is
transmitted.
A single tap such as a branch in the wind lightly brushing a
window can start the minor attack timer and tap count. To
avoid false alarms, do not use the Minor Attack setting
where there is potential for stray vibrations.
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6.7.2 Test Mode
The unit is automatically in Test mode for the first 10 minutes after
power up.
The green LED flashes:
Once to indicate initialization is complete and the unit is in
Test mode
Twice to indicate a Minor Attack activation
Three times to indicate a Gross Attack activation
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6.8 wLSN Key Fob (ISW-BKF1-H5Y)
The wLSN Key Fob is a two-way personal transceiver carried by the
user. Use it to remotely arm or disarm a security area. Features
include:
Five buttons: Two buttons are for arming and disarming. Two
buttons can be programmed at the control panel to control
lights, garage doors, and so on. To operate the intended
output, press and hold the appropriate button for at least one
sec.
Two LEDs: One LED indicates status and the other is suitable
for use as a flashlight.
Figure 19: Key Fob Buttons and LEDs
2
1
4
3
5
1 - High intensity LED and button
2 - Status LED
3 - Disarm button
4 - Arm button
5 - Programmable buttons
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Table 15: wLSN Key Fob Specifications
Power/Voltage Two CR2032 lithium batteries, 3 VDC
Gaskets Interchangeable; for multiple users, different colors
available
6.8.1 Key Fob Buttons
Refer to your control panel’s documentation to program the
functions of the programmable buttons.
Pressing any button causes the status LED to flash alternately red
and green for about 15 sec. This indicates that commands were
sent to the control panel.
Pressing and holding both the arm and disarm buttons together
for 1 sec transmits a panic signal to the control panel.
6.8.2 LED
A flashing red status LED during key fob inactivity is an indication
to replace the batteries.
For specific information regarding the various LED states, refer to
your control panel’s documentation.
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6.9 wLSN Relay Module (ISW-BRL1-WY)
The wLSN Relay Module allows the control panel to control
external devices through a Form C relay. This module also provides
a supervised point for monitoring external devices (refer to Section
6.4.1 Supported Wiring Configurations on page 32).
Auxiliary power input terminals are also provided to supplement
battery power when relay use is high.
A cover-and-wall tamper switch transmits a tamper signal when
the cover is removed from its base, or when the unit is pulled away
from the wall.
An LED provides status for RFSS and Discovery Modes.
Table 16: Relay Module Specifications
Wire Gauge 0.14 mm (22 AWG) to 1.5 mm (14 AWG)
Power Four AA batteries, 1.5 V alkaline
Auxiliary Power
Input
12 VDC nominal (6 VDC to 14 VDC)
50 mA current draw
Compatible with any 12 VDC nominal power supply
DC+ and DC – External power source, 12 VDC
nominal, 6 VDC to 14 VDC
PT + and PT –
(input)
Input, supervised sensor loop
Terminal Blocks
NO, C, NC (output) Relay output for control of
external devices.
Relay Output 2A at 30 VDC maximum (resistive load)
The external power option is intended to be used as a
supplemental (secondary) source of power only. Do not
operate the Relay Module without the batteries.
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6.10 wLSN Indoor Siren (ISW-BSR1-WY)
The wLSN Indoor Siren provides auxiliary power input terminals
are also provided to supplement battery power when siren use is
high.
A cover-and-wall tamper switch transmits a tamper signal when
the cover is removed from its base, or when the unit is pulled away
from the wall.
An LED provides status for RFSS and Discovery Modes.
Table 17: Siren Specifications
Wire Gauge 0.14 mm (22 AWG) to 1.5 mm (14 AWG).
Power Four AA batteries, 1.5 V alkaline
Auxiliary Power
Input
12 VDC nominal (6 VDC to 14 VDC)
50 mA current draw
Compatible with any 12 VDC nominal power supply
Terminal Blocks DC+ and DC – (input) External power source,
12 VDC nominal, 6 VDC
to 14 VDC
Sounder 85 dB at 3 m (10 ft)
The external power option is intended to be used as a
supplemental (secondary) source of power only. Do not
operate the siren without the batteries.
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6.11 wLSN Smoke and Heat Detector
(ISW-BSM1-SY)
The wLSN Smoke and Heat Detector provides fixed temperature
and rate-of-rise sensors.
Under normal conditions, the red LED flashes once every 8 sec
while the sensor monitors the surrounding environment. When the
sensor detects smoke, the LED changes from flashing to steady
and the sounder produces a loud continuous tone. Refer to Table
19 on page 47, and Table 20 on page 48.
A self-diagnostic feature monitors detector sensitivity and
operational status.
A cover tamper switch transmits a tamper signal when the cover is
removed from its base, or when the unit is pulled away from the
wall.
The optical chamber is removable for easy maintenance.
Table 18: Smoke Detector Specifications
Power/Voltage Two lithium batteries; 3 VDC
Fixed Temperature
Sensor
+57° C ± 3° C (+135° F ±5° F)
Rate-of-Rise Sensor +8.3° C/min>+41° C (+15° F/min>105° F)
Photoelectric Beam
Obscuration Sensitivity
0.14 ± 0.04 dB/m
Drift Compensation
Adjustment
1.64%/m (0.5%/ft) maximum
Average Alarm Current 70 mA
Sounder 85 dBA at 3 m
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Figure 20: wLSN Smoke Detector
1 2
1 - High intensity LED
2 - Test/Silence Button
6.11.1 Battery Replacement
Replace batteries when the LED stops flashing and the sounder
chirps every 45 sec.
The low battery trouble chirps can be silenced for 24 hours by
pushing the Test/Silence Button. Refer to Figure 20 on page 46 for
the location of the Test/Silence Button.
6.11.2 Smoke Test
To avoid a fire department dispatch, contact the central
monitoring station or put the control panel into test mode
before activating the detector using this method.
Test smoke detectors annually using an approved aerosol smoke
tester to simulate an alarm. Follow the instructions on the can.
The LED should remain on while the detector provides a
continuous tone. The detector automatically resets when smoke is
no longer present. A detector that fails to activate with the smoke
test might require cleaning or replacement.
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6.11.3 Sensitivity Test
Test mode is seen by the control panel as a test. It does
not send an alarm.
The detector includes a Sensitivity Level Test mode for
determining the detector’s sensitivity:
1. Press and hold the Test/Silence button for 4 sec. The LED
flashes 1 to 9 times.
Refer to Figure 20 on page 46.
2. Count the number of LED flashes and use Table 19 to
determine the status of the detector’s sensitivity and the
action to take.
Table 19: Smoke Detector Sensitivity Conditions
Flashes Action Recommended
1 Self-diagnostics failure. Return device for service or replacement.
2 to 3 Device is becoming insensitive. Clean the detector and re-test. If
error persists, replace the detector.
4 to 7 Detector is within normal sensitivity range.
8 to 9 Device is becoming too sensitive. Confirm that the smoke
chamber is snapped down securely. Clean the sensor and re-test.
6.11.4 Silencing an Alarm
Press the Test/Silence Button (refer to Figure 20 on page 46) to
silence the sounder during an alarm. If smoke is still present after
a few minutes, the sounder and alarm resume.
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6.11.5 LED
Table 20: LED Status
LED Status
Flashing Flashes every 8 sec under normal operation.
On Detects smoke, sending an alarm
Off Malfunction, replace the batteries, clean the detector, or
replace the optical chamber as required.
6.11.6 Cleaning the Detector and Replacing the Optical Chamber
Clean the detector cover with a dry or damp cloth as needed to
keep it free from dust and dirt. Clean the detector interior at least
once a year, or as needed.
To clean the detector:
1. Rotate the detector counter-clockwise to remove it from the
mounting base.
2. Remove the batteries.
3. Slide a flat head screwdriver in the slot on the detector cap
and gently push down to pry the cap off (Figure 21).
Figure 21: Remove the Detector Cap
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4. Squeeze the optical chamber where indicated and pull it up
and away from the detector (Figure 22).
Figure 22: Remove the Chamber
3
3
1
2
1 - Smoke Chamber Base
2 - Optical Chamber
3 - Alignment Arrows
5. Use compressed air or a soft-bristled brush to remove dust
and dirt from the smoke chamber base.
6. Align the new optical chamber with the base and snap into
place.
7. To attach the detector cap, line the cap up with the detector,
press the cap onto the detector, and turn the cap clockwise
to snap it firmly into place.
8. Observing the proper polarity, install the batteries and the
battery cover. If the batteries are not installed, the detector
does not properly fit onto the mounting base.
9. Mount the detector onto the mounting base.
10. Test the detector’s sensitivity.
Refer to Section 6.11.3 Sensitivity Test on page 47.
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6.11.7 Defaulting the Smoke Detector
To default the Smoke Detector:
1. Rotate the detector counter-clockwise to remove it from the
mounting base.
Figure 23: Remove Smoke Detector from Base
1 2
1 - Rotate detector counter-clockwise
2 - Remove detector from mounting base
2. Remove the batteries.
3. Separate the housing cover and base by inserting a flat head
screwdriver between the cover and base.
Figure 24: Separate Housing Cover and Base
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4. Turn the housing base over and locate the transmitter PCB
(printed circuit board).
5. Remove the jumper from the transmitter PCB and reinsert it
over both pins.
Figure 25: Transmitter PCB and Jumper Pins
3
1
2
4 5
1 - Housing base
2 - Transmitter PCB
3 - Jumper plug in normal operating position
(plug covers a single pin)
4 - Jumper plug removed from pin
5 - Jumper plug covering both pins
6. Reinsert the batteries. Do not close the housing base.
The detector is now defaulted.
7. Remove the jumper and replace it over one pin (normal
operating position).
8. Place the housing cover back on the housing base. Align the
sounder with the notch on the housing cover and push firmly
until the cover and base snap into place.
9. Close the battery case and mount the detector onto its
mounting base.
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6.12 wLSN Glass Break Detector
(ISW-BGB1-SAY)
The wLSN Glass Break Detector is a wireless transmitter used for
detecting breaking glass.
A cover-and-wall tamper switch transmits a tamper signal when
the cover is removed from its base, or when the unit is pulled away
from the wall.
Table 21: Glass Break Detector Specifications
Power/Voltage 2 AA batteries, 1.5 V alkaline
Type Thickness
Plate 0,24 cm to 0,95 cm
(0.1 in. to 0.4 in.)
Tempered 0,32 cm to 0,95 cm
(0.1 in. to 0.4 in.)
Laminated* 0,32 cm to 1,43 cm
(0.1 in. to 0.6 in.)
Wired 0,64 cm (0.25 in.)
Glass types and
thicknesses
* Protected only if both panes of
glass are broken.
Minimum pane
size for all types
of glass
28 cm x 28 cm
(11 in. x 11 in.)
Accoustic
Capabilities
Range Maximum 7.6 m (25 ft)
No minimum range
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Figure 26: Glass Break Front Layout
EVENT 1
2
3
45
6
7
8
9
10
1 - Service door tamper switch
2 - AA batteries
3 - Service door
4 - Test Mode pads
5 - Sensitivity DIP switches
6 - Event LED
7 - Alarm LED
8 - LED enable switch (off position)
9 - Housing screw
10 - RFSS Mode LED (remove housing screw and cover piece)
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6.12.1 Installation Considerations
Glass break detectors are intended only as a component
of a perimeter protection system. You should always use a
motion detector in conjunction with a glass break detector.
For the best detector performance, select a mounting location that
is:
within 7.6 m (25 ft) of the protected glass.
within clear view of the protected glass.
at least 2 m (6.5 ft) from the floor.
at least 1 m (3 ft) from forced-air ducts.
at least 1 m (3 ft) from sirens or bells greater than 5 cm (2 in.)
in diameter.
on a window frame if any heavy window covering is present.
Avoid mounting the detector:
in a corner.
on the same wall as the protected glass.
on free-standing posts or pillars.
in rooms with noisy equipment such as air compressors, bells,
and power tools.
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6.12.2 Sensitivity Settings
1. If the front housing is attached, carefully open the service
door (Item 3, Figure 26).
2. Enable the LEDs for test purposes by sliding the LED
ENABLE switch (Item 8, Figure 26) in the direction the arrow
points (above the switch). An orange flag protrudes from the
side of the detector.
Figure 27: Glass Break Sensitivity Switches
EVENT
1
2
1 - Test pads
2 - Sensitivity switches
3. Determine the sensitivity setting for your application from
Table 22.
Table 22: Glass Break Sensitivity Settings
Sensitivity SENS1 SENS2 Approximate Range
Maximum OFF OFF 7,6 m (25 ft)
Medium ON OFF 4,6 m (15 ft)
Low OFF ON 3 m (10 ft)
Lowest ON ON 1,5 m (5 ft)
4. Use a small screwdriver to move the sensitivity switches. Use
the settings determined in Step 3.
5. Turn on any sources of noise (such as machinery, office, or
audio equipment) in the area.
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6. Observe the green event LED (Item 6, Figure 26 on page 53)
for approximately 1 min. If the green LED flashes, relocate
the unit or reduce the sensitivity by adjusting the sensitivity
switch.
7. Repeat Steps 3 through 6 until you achieve the best
sensitivity level.
8. After setting the sensitivity, slide the LED enable switch
(Item 8, Figure 26 on page 53) to the OFF position.
6.12.3 Testing
Test the detector at least once each year. Test the detector with
the 13-332 Sound Sensor Tester.
Figure 28: 13-332 Sound Sensor Tester
1
ACTIVATE TEST FLEX MAN
2 3
13-332
1 - Activate/Test switch
2 - Start button
3 - Flex/Man switch
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Entering Test Mode
Place the detector in Test Mode. In Test Mode, the detector’s LED
disable switch (Item 8, Figure 26 on page 53) is overridden. You
can enter the Test Mode locally or remotely.
To enter the Test Mode locally:
1. Carefully open the service door of the detector.
2. Insert a screwdriver into the slot next to the sensitivity
switches that contains the test pads (Item 1, Figure 27 on
page 55).
3. Momentarily short both test pads together with the tip of the
screwdriver, or other metallic conductive object.
The Event LED (green) (Item 6, Figure 26 on page 53) flashes
once per sec. If the green LED does not flash, repeat Steps 2
and 3.
The 13-332 Sound Sensor Tester produces extremely
loud sounds and can be hazardous to hearing when used
at close range. Do not point the 13-332 towards
someone’s head.
To enter the Test Mode remotely:
1. Stand within 3 m (10 ft) of the detector.
2. Move the switches on top of the 13-332 Tester to ACTIVATE
and to MAN modes (Items 1 and 3, Figure 28 on page 56).
3. Point the front of the tester towards the detector and press
the red Start button on top (Item 2, Figure 28 on page 56).
The tester buzzes and the green LED on the detector flashes once
per sec. If the green LED does not flash, move closer to the
detector and repeat the procedure.
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Testing the Detector (Flex and Audio Signals)
1. Set the 13-332 Tester switches to the TEST and FLEX
positions (Items 1 and 3, Figure 28 on page 56).
2. Press the red Start button (Item 2, Figure 28 on page 56).
The tester activates and starts an eight-sec armed period.
3. If window coverings are present, close them fully.
4. Hold the 13-332 Tester near the point on the glass farthest
from the detector. If window coverings are present, hold the
tester between the glass and window coverings.
5. Carefully strike the glass with a cushioned tool. The 13-332
Tester responds by producing a burst of glass break audio.
If the detector receives both the flex and audio signals properly,
its red Alarm LED lights for 3 sec.
If the red LED does not light, return to Section 3.0 RFSS Site
Evaluation on page 7 to reposition the detector.
Exiting Test Mode
To exit the Test Mode locally:
1. Carefully open the service door of the detector.
2. Insert a screwdriver into the slot next to the sensitivity
switches that contains the test pads (Item 1, Figure 27 on
page 55).
3. Momentarily short both test pads together with the tip of the
screwdriver, or other metallic conductive object.
When the detector exits Test Mode, the green Event LED
(Item 6, Figure 26 on page 53) stops flashing. If the Event LED
continues to flash, repeat Steps 2 and 3.
To exit the Test Mode remotely:
1. Stand within 3 m (10 ft) of the detector.
2. Move the switches on top of the 13-332 Tester to ACTIVATE
and to MAN modes (Items 1 and 3, Figure 28 on page 56).
3. Point the front of the tester towards the detector and press
the red Start button on top (Item 2, Figure 28 on page 56).
The tester buzzes.
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6.12.4 Low Battery Indication
The detector indicates a low battery condition in two ways:
If the LEDs are enabled, both flash simultaneously every sec.
A low battery status indication is sent to the control panel.
The LED flashing and a low battery indication at the control panel
are independent of each other and do not necessarily occur at the
same time. Receiving either condition indicates a low battery.
6.12.5 Wall Tamper Tab
Entering RFSS Mode
To enter RFSS Mode if the wall tamper tab is removed:
1. Remove and reinsert the batteries.
2. Press and hold the wall tamper switch. Refer to Figure 29.
3. Quickly press and release the cover tamper switch four times
within 10 sec of reinserting the batteries. Refer to Figure 29.
The detector enters RFSS Mode.
Figure 29: Wall and Cover Tamper Switches
1
2
ID:000000000
RF1100E
+-
1 - Wall tamper switch (back of detector)
2 - Cover tamper switch (inside of detector)
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60 Bosch Security Systems, Inc. | 12/07 | F01U066216-03
Defaulting the Glass Break Detector
If the wall tamper tab is removed and you must return the default
the Glass Break Detector:
1. Remove the batteries from the detector.
2. Place the detector on a flat surface to depress the wall
tamper switch. Refer to Figure 29 on page 59.
3. Press and hold the cover tamper switch.
Refer to Figure 29 on page 59.
4. While both tamper switches are depressed, reinsert the
batteries.
The RFSS Mode LED turns on.
Refer to Figure 26 on page 53 for the location of the RFSS
Mode LED.
5. Release the cover tamper switch within five sec after the
RFSS Mode LED turns on.
The detector is now defaulted.
wLSN | Reference Guide | Appendix: Icons and Symbols
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Appendix: Icons and Symbols
Table 23: Icons and Symbols
Icon or Symbol Meaning
Not Pet Friendly®
45 kg ( 10 0 lb)
Pet Friendly (appropriate weights below graphic)
Point away from rotating machines.
Point away from objects that rapidly change temperature.
Do not mount in sunlight.
Do not point toward window.
Do not mount outside.
Device has a wall or cover tamper.
Not pet friendly when lookdown zone is enabled.
© 2007 Bosch Security Systems, Inc.
F01U066216-03
Bosch Security Systems, Inc.
www.boschsecurity.com
© 2007 Bosch Security Systems, Inc.
F01U066216-01

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