
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
APX32EN Security Systems Installation and Setup Guide PREK14114-8 11/07 Rev. A - 2 - RECOMMENDATIONS FOR PROPER PROTECTION The Following Recommendations for the Location of Fire and Burglary Detection Devices Help Provide Proper Coverage for the Protected Premises. Recommendations for Smoke and Heat Detectors With regard to the number and placement of smoke/heat detectors, we subscribe to the recommendations contained in the National Fire Protection Association's (NFPA) Standard #72 noted below. • Early warning fire detection is best achieved by the installation of fire detection equipment in all rooms and areas of the household as follows: For minimum protection a smoke detector should be installed outside of each separate sleeping area, and on each additional floor of a multi-floor family living unit, including basements. The installation of smoke detectors in kitchens, attics (finished or unfinished), or in garages is not normally recommended. • For additional protection the NFPA recommends that you install heat or smoke detectors in the living room, dining room, bedroom(s), kitchen, hallway(s), attic, furnace room, utility and storage rooms, basements and attached garages. In addition, we recommend the following: • Install a smoke detector inside every bedroom where a smoker sleeps. • Install a smoke detector inside every bedroom where someone sleeps with the door partly or completely closed. Smoke could be blocked by the closed door. Also, an alarm in the hallway outside may not wake up the sleeper if the door is closed. • Install a smoke detector inside bedrooms where electrical appliances (such as portable heaters, air conditioners or humidifiers) are used. • Install a smoke detector at both ends of a hallway if the hallway is more than 40 feet (12 meters) long. • Install smoke detectors in any room where an alarm control is located, or in any room where alarm control connections to an AC source or phone lines are made. If detectors are not so located, a fire within the room could prevent the control from reporting a fire or an intrusion. THIS CONTROL COMPLIES WITH NFPA REQUIREMENTS FOR TEMPORAL PULSE SOUNDING OF FIRE NOTIFICATION APPLIANCES. DINING KITCHEN BEDROOM BEDROOM . Smoke Detectors for Minimum Protection Smoke Detectors for Additional Protection Heat-Activated Detectors BEDROOMBEDROOM BEDROOM BEDROOM LIVING ROOM TV ROOM DINING LIVING ROOM LIVING ROOM BASEMENT BEDROOMBEDROOM BEDROOM CLOSED DOOR GARAGE KTCHN KITCHEN TO BEDROOM 01000-002-V0 Recommendations For Proper Intrusion Protection • For proper intrusion coverage, sensors should be located at every possible point of entry to a home or premises. This would include any skylights that may be present, and the upper windows in a multi-level building. • In addition, we recommend that radio backup be used in a security system. This will ensure that alarm signals can be sent to the alarm monitoring station in the event that the telephone lines are out of order (alarm signals are normally sent over the phone lines, if connected to an alarm monitoring station). - 3 - Table of Contents SYSTEM FEATURES ..................................................................................................................................5 MOUNTING THE CONTROL.....................................................................................................................6 WIRING CONNECTIONS...........................................................................................................................7 CONNECTING/CONFIGURINGCOMMUNICATIONS DEVICES .........................................................9 AC POWER AND BACKUP BATTERY....................................................................................................12 INSTALLING WIRELESS ZONES...........................................................................................................14 MECHANICS OF PROGRAMMING ........................................................................................................17 ZONE RESPONSE TYPE DEFINITIONS ...............................................................................................19 DATA FIELD DESCRIPTIONS ................................................................................................................21 ✻56 ENHANCED ZONE PROGRAMMING MODE ................................................................................31 ✻80 DEVICE PROGRAMMING MENU MODE ......................................................................................36 ✻81 ZONE LIST MENU MODE................................................................................................................39 ✻83 ENHANCED SEQUENTIAL MODE ................................................................................................41 ✻84 ASSIGN ZONE VOICE DESCRIPTORS ..........................................................................................44 ✻85 RECORD CUSTOM VOICE DESCRIPTORS...................................................................................45 VOICE PROMPT PROGRAMMING .........................................................................................................48 REMOTE PROGRAMMING/CONTROL (DOWNLOADING) ................................................................52 SYSTEM OPERATION..............................................................................................................................54 TESTING THE SYSTEM ..........................................................................................................................60 SYSTEM COMMUNICATION ..................................................................................................................61 TROUBLESHOOTING GUIDE ................................................................................................................63 PROGRAMMING DEFAULT TABLES ....................................................................................................67 REGULATORY A…
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Label appears to show an optional RF module. FCC interpretations over the years have made it clear that FCC Information/labeling for the module should only be present if the module is installed. This information may be on a separate label, or a small label that is overlaid on a certain area of the label. However if the additional module is not installed, information should not be present on the device. Please explain. Tim, We are going to have two (2) labels the one on the RIGHT is the normal label that the LYNX will come with. If the PROFESSIONAL INSTALLER purchases a GSM RADIO MODULE it will come with the label On the LEFT, that he will apply over the original label. All labels meet the FCC & IC criteria for permanently attached labels. Please also see EXHIBIT 8A. LABEL WITH THE TRANSMITTER MODULE LABEL: LABEL WITHOUT THE TRANSMITTER MODULE: Kindly comment on the RBW and VBW used during emissions testing. Tim, As per ANSI C63.4 we always use a RBW of 100 kHz from 30 MHz to 1000 MHz, and a RBW of 1 MHz above 1GHz. The VBW is always set to 3X the RBW. As always our test setup is a ETS Lindgren: 'Biconolog' Antenna; calibrated 26 MHz to 6 GHz, Lindgren Mast, Turntable, and Controller being driven by TILE Software. FYI: We have just learned that ETS Lindgren has bought TILE and will continue providing support, and upgrades. Test data correction factors suggest that an amplifier may also be used, but this is not listed in the test equipment. Please review. Tim, 'may' was the key word . We call that column on the emissions sheet "Cable/Amp Factor (db)" but no Amplifier was used I will modify the emissions sheet in the future to show "Amplifier" in its own column - and add a 'if used' indication. Kindly provide plot showing duty cycle of transmitter is a max. 30 msec per 100 msec. Additionally, kindly show data showing device discontinues TX in < 5 sec. Tim, please see the two scope-trace plots of TX duty cycle per 100 mS and 5 sec plot. directly following this page; Additionally with regard to the '5-second rule' the Transmitter is under Microprocessor ( U18, page 3 of EXHIBIT 2-3 ) control and cannot exceed the maximum transmit time. Here is the period of a single message: Here is a group of messages being sent; note that they are followed by 8 Seconds of silence, despite repeated pressing of the keys: Page 11 of the users manual suggests the module may be installed by the end user. Generally these types of installations are only professionally installed. Please comment on if this is intended to be installed by the end user? Tim, A Professional Installer is the only person who can purchase (and install) a 'GSM RADIO MODULE' The users manual has been written to be used by both the installer and the end user but there is no way for a 'end user' to purchase or activate a GSM RADIO MODULE. Distribution is tightly controlled and limited to Professional Trained Installers. An RF exposure exhibit should be provided to show that the combined RF exposure meets FCC requirements. Tim, our 345 MHz radio does not affect the emissions of the GSM RADIO MODULE. Conversely, the output level of our 345 MHz transmitter is Part 15.231 with an emission level of 1975 uV/M @ 3 Meters and not a factor. Additionally we have a very low duty cycle when averaged over six (6) minutes. PLEASE GO TO THE NEXT PAGE..... Tim, With regards to your comments on the FCC ID: CFS8DLLYNXREN-6; This is the INSIDE OF THE BACK PLASTIC COVER OF THE LYNX with the GSM Module installed: This is the INSIDE OF THE BACK PLASTIC COVER OF THE LYNX without the GSM Module: Tim, I believe that the two antennas you refer to are the board mounted diversity antennas: Both of these antennas are used during both transmit and receive and are switched by the microprocessor. The emissions data was taken with both antennas operating. These antennas are shown on Page 3, of EXHIBIT 2-3; a photograph of there location on the board is on the next page... PLEASE GO TO THE NEXT PAGE..... Tim, This is the location of the two (2) board mounted diversity antennas. This photo also shows the BOTTOM of both PC Boards:
Inquiry: ---Reply from Customer on 12/21/2007--- The manufacture is anxious to proceed. We therefore have started a Permit-But-Ask inquiry within this KDB as referenced in the last reply. We have uploaded the 731 and associated exhibits to the 15.231 application. While we understand that each combination of colocated TX requires separate RF exposure evalutation - the question posed here is will the main TX being certified here (345 MHz 15.231 TX) truely be considered as co- located when an optional GSM module is also integrated into the unit. Given the infrequency nature of transmission, and the 5 second limitation (which this is actually well beneath this as well) allow this to not be coined as "co-located" given the FCC's policy of allowing some overlap of other transmitters during handoff periods of up to 30 seconds. While this situation is not considered a handoff of transmission - the idea of the 15.231 TX having a 5 second TX limitation, and also that the power level and duty cycles under 15.231 are much lower than involved with other TX's following the policy regarding hand off of transmissions (i.e. WLAN to GSM), it would seem that we would not necessarily need to consider these co-located for purposes of RF exposure. Please let us know if the same policy above for handoff between networks can be applied here despite the fact this devices use is not handover transmissions. Kindly note that the outcome of this KDB will affect the grant notes of the current application as well as would necessitate the need for a PC application to the optional GSM transmitter which is modularly approved. Please let us know. FCC ID: CFS8DLLYNXREN-6 TC 276413 Note that a PC to the integrated module has not been filed as this is the subject of the KDB itself. Thank you, Tim Johnson Response: Q: Please let us know if the same policy above for handoff between networks can be applied here despite the fact this devices use is not handover transmissions. A: same policy does not apply FCC Lab staff review and update of multi-transmitter device policies and procedures is continuing. Meanwhile, for this specific case of 15.231 and pt22/24 device (i.e. QIPMC56) installed in one enclosure for use in mobile or fixed RF exposure conditions, FCC Lab is not requesting a permissive change filing to amend certification contents and grant remarks for the associated device when used in this final product configuration. TC276413 approved to grant contingent upon: a) device not otherwise excluded from TCB processing b) filing is in accordance with applicable FCC rules and policies c) please revise FCCID label placement exhibit to address: 1) 2.1033(b)(7) sufficient detail to permit name and FCCID to be read, and 2) revise to replace wording "TRANSMITTER MODULE (OPTIONAL)", i.e. use wording as in other label exhibit From: [email protected] To: [email protected] Subject: Response to Inquiry to FCC (Tracking Number 521576) (TCB) FCC Home | Search | Updates | E-Filing | Initiatives | For Consumers | Find People Office of Engineering and Technology Do not reply to this message. Please select the Reply to an Inquiry Response link from the OET Inquiry System to add any additional information pertaining to this inquiry.
EXHIBIT 8D LABEL INFORMATION CFS8DLLYNXREN-6 / 573F-LYNXREN6 SECTION 2.1033 (c) and Part 15.21 SECTION 2.1033 (c) Label and label location - A photo showing the identification label clearly (you must be able to see the name and FCC ID number), and the location on the device. In lieu of a photo for this, you may submit a engineer’s drawing. Part 15.21 & RSS 210 Statement - for all intentional and unintentional radiators is also printed on the label. All devices shall bear the following statement in a conspicuous location on the device: “ This device complies with Part 15 of the FCC Rules and RSS 210 of Industry Canada . Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. “ The Label shall also display the IC ID and a IC Model Number. ENGINEERS DRAWING OF LABELS: LABEL WITH THE TRANSMITTER MODULE LABEL: LABEL WITHOUT THE TRANSMITTER MODULE:
EXHIBIT 8 LABEL INFORMATION CFS8DLLYNXREN-6 / 573F-LYNXREN6 SECTION 2.1033 (c) and Part 15.21 SECTION 2.1033 (c) Label and label location. LOCATION OF LABEL ON BACK PLASTIC:
EXHIBIT 1 CFS8DLLYNXREN-6 / 573F-LYNXREN6 Functional Description. The LYNXREN-6 fixed transceiver is part of Honeywell / Ademco's wireless 5800 alarm system. Electrically identical to the CFS8DLLYNXREN-5, the CFS8DLLYNXREN-6 has a newly laid out PC Board. This LYNX will also be sold both with and without the addition of a Installer installed GSM Radio Module that communicates with the Alarm Central Station, the LYNX is used in conjunction with portable transmitters (e.g. 58XX TYPE). to provide remote indication that a alarm event or control instruction has been enacted. In addition control events and alarm events initiated at the Lynx keypad are also transmitted to wireless relay and wireless siren type devices. These messages are transmitted at 345Mhz +/-82kHz using on-off keyed AM modulation. The LYNX does not send a regular supervision or check-in message, it sends no other messages except alarm messages, control messages initiated at the Lynx keypad, and messages which are a confirmation of reception of manually initiated control messages which have been received from portable remote control transmitters.
EXHIBIT 2-1 CFS8DLLYNXREN-6 / 573F-LYNXREN6 Circuit Description. The LYNXREN-6 is the latest version of the LYNXREN. Like the CFS8DLLYNXREN-5, the LYNXREN-6 is constructed on a pair of PCBs interconnected via a ribbon cable. The LYNXREN-6 will also be sold with and without the addition of a Installer installed GSM Radio Module ( FCC ID: QIPMC56 / IC: 267W-MC56 ) Existing PCBs, interfacing circuits, RF copper and RF circuits are identical. As in the CFS8DLLYNXREN-5, The main PCB contains the RF transmitter and receiver circuitry as wel l as all control, display, keypad and annunciation circuitry. The transmitter is a SAW resonator Colpitts oscillator , Q26, YL5, etc. The transmitter is on-off keyed (AM) modulated by a control signal from the micro controlle r U18 which turns PA Q30 on or off via Q28/Q29, thus modulating the output signal. The RF output signal is connected to two PCB mounted antennas via FL1 & diodes CR32/CR33. The receiver is a ‘superhet’ with a single intermediate frequency at 10.7MHz. Q31 etc. is the low noise amplifier which is connected to the PCB mounted antennas. Diodes CR32/CR33 under the control of a micro controller are periodically switched to provide system antenna diversity. The IC U22 includes a balanced mixer, & phase locked L.O. (YL1 @ 10.446875 Mhz X 34 = 355.7 Mhz) which converts the incoming signal down from 345MHz to 10.7MHz. This IC also includes the required IF gain and detected output. FL3 is a ceramic IF filter. IC U19 performs baseband filtering and processing and provides a data signal.
EXHIBIT 3-1 CFS8DLLYNXREN-6 / 573F-LYNXREN6 Message Protocol, Timing, and Duty Cycle Calculation The data output is phase encoded Manchester which has an inherent 50% duty cycle. The transmitted data rate is 3.7345 KBS +/- 0.5% i.e. each bit is typically 267 uS. in duration. Thus, 267 uS X 8 bits = 2.14 mS per byte and there are 2bytes of Preamble, 4bytes (L0-L3), 2Bytes of CRC, 1Byte for Message Type, 3Bytes for Tokens, and 2Bytes of Crc for a total of 14 bytes This equals 2.14 mS X 14 = 29.9999mS, since Duty Cycle = Actual RF Transmission ON time / 100 mS. 29.9999mS / 2 (inherent Manchester duty cycle) = 15% duty cycle Per 100 mS period.
K10338LF
EXHIBIT 5-1 CFS8DLLYNXREN-6 / 573F-LYNXREN6 Report of Measurements. Measurements for the Intentional Radiator, Unintentional Radiator, and OBW were made in accordance with the procedures an d reporting requirements at: Honeywell's OATS ( FCC No: 152762 & IC No:573F-1 ) which is located at: 2 Corporate Center Drive, Melville, NY 11747. Measurements for Conducted Emissions were made in accordance with the procedures and reporting requirements at: Honeywell’s QA Measurement Facility which is also located at: 2 Corporate Center Drive, Melville, NY 11747. This is a list of EXHIBITS submitted: REPORT OF MEASUREMENTS ( This EXHIBIT ) EXHIBIT 5-1 PICTURES OF THE TEST SET UP are found in EXHIBIT 5-2 RADIATED EMISSIONS are recorded in EXHIBIT 5-3 BANDWIDTH MASK is recorded in EXHIBIT 5-4 UNINTENTIONAL RADIATOR is recorded in EXHIBIT 5-5 CONDUCTED EMISSIONS are recorded in EXHIBIT 5-6 TEST EQUIPMENT USED is recorded in EXHIBIT 6
HONEYWELL SECURITY & CUSTOM ELECTRONICSREV B SEPT 07 2 Corporate Center Drive Melville, NY 11747EXHIBIT 5-3 FCC ID # CFS8DLLYNXREN-6 Date : 10/04/2007 Tested by :G. BARBATO Approved by :K.Addy Test Sample (model) : LYNX-GSM Test method: ANSI C63.4 - 2004 Test specification: FCC Part 15, Sub-part C and RSS 210 , Issue 7 Notes: (1) Fo = 345MHz. (2) Detector = Peak (3) Frequency range scanned to 4 GHz. Emissions not reported were more than 20dB below the specified unit. [(Meter reading + Cable/Amp factor + Antenna factor) / 20 )] (4) Conv. Reading = 10 (5) Corr. Reading = Conv. Reading X Duty Cycle (6) Six Highest Emissions Recorded Freq. (MHz) Antenna Polarity (V/H) Meter Reading (dB uV) Cable/Amp Factor (dB) Antenna Factor (dB/m) Conv. Reading (uV/M) Duty Cycle (%) Corr. Reading (uV/M) Limit @ 3M (uV/M) 30 CABLE "A" + "B" 03/12/2007 BICONILOG S/N:00029390 729 345h64.892.614.9013167.415.0%1975.17292 690h28.593.719.30379.815.0%57.0729 1035h26.994.722.70524.215.0%78.6500 1380h29.395.525.801082.715.0%162.4500 1725h34.696.328.002815.115.0%422.3729 2070h30.697.030.302509.015.0%376.3729 2415h21.597.632.001146.815.0%172.0729 2760 h 21.598.5 32.801394.815.0%209.2500 3105h21.599.032.501427.215.0%214.1729 3450h22.7910.733.002111.115.0%316.7729 4000 CABLE "A" + "B" 03/12/2007 BICONILOG S/N:00029390
EXHIBIT 5-4 OCCUPIED BANDWIDTH CFS8DLLYNXREN-6 / 573F-LYNXREN6 LYNX-GSM OCCUPIED BANDWIDTH: 597.2 KHz
DATE: 10/10/2007 TESTED BY: G. Barbato PCB/ASSY REVISION: LYNX with GSM PRODUCT: LYNXREN-6 Page 9 of 23 TITLE: RF Checklist LYNX-GSM TRANSCEIVER (RECEIVER) Honeywell 2 Corporate Center Drive Melville, NY 11747 DRAWING NUMBER ES765R DATEREV.REVISION RECORD ENGRAPP SEE SHEET 1 TEST NAME : RADIATED EMISSIONS The LYNX-GSM contains a receiver (unintentional radiator). A check for radiated emissions is done to verify the level of radiation is insignificant. With the receiver ON, emissions is checked at the Local Oscillator frequency and its harmonics. (Local Oscillator Leakage) this is the report that was supplied to the FCC. Test Data -Radiated Emissions Honeywell RADIATED EMISSIONS PRESCAN Vertical & horizontal 10.00M100.00M1.00G Frequency MHz 0 5.0 10.0 15.0 20.0 25.0 30.0 35.0 40.0 45.0 50.0 55.0 60.0 65.0 70.0 Amplitude dBuV Job #: 10:47:16 AM, Wednesday, October 10, 2007 C:\tile\Honeywell\Lynx_gsm.TIL Operator: GREG Job # - Company - Honeywell Model # - LYNX GSM Additional Equipment - FCC-B limit QP vertical QP horizontal Horizontal Vertical
DATE: 10/10/2007 TESTED BY: G. Barbato PCB/ASSY REVISION: LYNX with GSM PRODUCT: LYNXREN-6 Page 11 of 23 TITLE: RF Checklist LYNX-GSM TRANSCEIVER . Honeywell 2 Corporate Center Drive Melville, NY 11747 DRAWING NUMBER ES765R DATEREV.REVISION RECORD ENGRAPP SEE SHEET 1 LINE CONDUCTED EMISSIONS Honeywell 150 KHz to 30 MHz Line 1 100.0K1.0M10.0M100.0M Frequency KHz 0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 Amplitude dBuV Company: Contact: Equipment ID: xyz 10:09:03 AM, Tuesday, October 09, 2007 C:\tile\Honeywell\Lynx GSM.TIL Operator: Done Class B QP Class B Avg c_l1a c_l1b Quasi-peak Average Honeywell 150 kHz to 30 MHz Line 2 100.0K1.0M10.0M100.0M Frequency KHz 0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 Amplitude dBuV Equipment ID: xyz10:21:19 AM, Tuesday, October 09, 2007 C:\tile\Honeywell\Lynx GSM.TIL CISPRB_QP CISPRB_AV c_l2a c_l2b Quasi-peak Average
EXHIBIT 6 TEST EQUIPMENT USED CFS8DLLYNXREN-6 / 573F-LYNXREN6 Section 15.231 and ANSI C63.4 Section 15.231 This is a list of all test equipment used. Test Equipment list for Honeywell OATS: Equipment Mfg Model Cal Date Cal Due Spectrum Analyzer TEKTRONIX 2784 10/16/06 10/16/07 Antenna ‘Biconilog’ ETS Lindgren 3149 03/12/2007 03/12/2008 If you need any additional information from Honeywell please contact: Greg Barbato RF Engineer (Acting for Ken Addy) Phone (Direct): (516) 577-5863 Email: [email protected] Test Equipment list for Honeywell Conducted Emissions: Equipment Mfg Model Cal Date Cal Due Spectrum Analyzer Agilent HP8593E 2/16/07 2/16/08 Surge Suppressor Agilent HP11947A 5/02/07 5/02/08 LISN Com-Power LI-115 2/13/07 2/13/08 If you need any additional information from Honeywell please contact: Greg Barbato RF Engineer (Acting for Ken Addy) Phone (Direct): (516) 577-5863 Email: [email protected]
EXHIBIT 5-2 PICTURES OF THE UNIT UNDER TEST & THE TEST SETUP CFS8DLLYNXREN-6 / 573F-LYNXREN6 SENSE: VERT, UUT: HORZ SENSE: HORZ, UUT: HORZ SENSE: VERT, UUT: OBLQ SENSE: HORZ, UUT: OBLQ SENSE: VERT, UUT: VERT SENSE: HORZ, UUT:VERT HONEYWELL’S 3 METER OATS ( FCC No: 152762 & IC No:573F-1 ) 2 Corporate Center Drive, Melville, NY 11747.
2 Corporate Center Drive · Melville · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 345 MHz - 345 MHz | - |

Wireless Alarm Transmitter
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