
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Lynx Plus Series Security Systems Installation and Setup Guide Installation and Setup GuideInstallation and Setup Guide Installation and Setup Guide BYPASS NO DELAY RECORD TEST FUNCTION STATUS VOLUME PLAY CODE LIGHTS ON LIGHTS OFF CHIME ESCAPE ADD DELETE SELECT OFF STAY 132 AWAY AUX 465 ARMED READY 7 9 8 0 800-03857 9/09 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 BEDROOM BEDROOM LIVING ROOM BEDROOM BDRM DINING LIVING ROOM TV ROOM KITCHEN BEDROOM BEDROOM TO BR LVNG RM BASEMENT KTCHN . CLOSED DOOR GARAGE Smoke Detectors for Minimum Protection Smoke Detectors for Additional Protection Heat-Activated Detectors BDRM floor_plan-001-V1 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/CONFIGURING COMMUNICATIONS DEVICES ........................................................9 AC POWER AND BACKUP BATTERY....................................................................................................11 INSTALLING WIRELESS ZONES...........................................................................................................13 MECHANICS OF PROGRAMMING ........................................................................................................16 ZONE RESPONSE TYPE DEFINITIONS ...............................................................................................18 DATA FIELD DESCRIPTIONS ................................................................................................................20 ✻56 ENHANCED ZONE PROGRAMMING MODE ................................................................................38 ✻80 DEVICE PROGRAMMING MENU MODE ......................................................................................43 ✻81 ZONE LIST MENU MODE................................................................................................................47 ✻83 ENHANCED SEQUENTIAL MODE ................................................................................................49 ✻84 ASSIGN ZONE VOICE DESCRIPTORS ..........................................................................................52 ✻85 RECORD CUSTOM VOICE DESCRIPTORS...................................................................................54 REMOTE PROGRAMMING/CONTROL (DOWNLOADING) ................................................................55 SYSTEM OPERATION..............................................................................................................................56 TESTING THE SYSTEM ..........................................................................................................................62 SYSTEM COMMUNICATION ..................................................................................................................63 TROUBLESHOOTING GUIDE ................................................................................................................65 PROGRAMMING DEFAULT TABLES .......…
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Important Information The LYNX Plus Series control is equipped with a redesigned circuit board featuring relocated battery and communication port connections and redesigned antennas. Please refer to the figure below and to the Summary of Connections when making wiring connections and routing cables. 1000-300-006-V5 LOCAL SOUNDER DISABLE SWITCH MOUNTING HOOKS TIE-WRAP POINT TELEPHONE CONNECTION TERMINAL STRIP BATTERY CABLE WIRE ROUTING TUNNELS POWERLINE CARRIER DEVICE CONNECTOR GSMVLP4G AUDIO CABLE CONNECTOR TIE WRAP NOTE ENSURE ALL WIRING IS ROUTED THROUGH WIRE STRAIN RELIEF CLIP WIRE STRAIN RELIEF CLIP TIE WRAP MOUNT LYNX Plus Wiring and Connection Overview 85dB SIREN DISABLE SWITCH UL INSTALLATIONS THE MINIMUM WIRE SIZE USED FOR TELEPHONE INSTALLATIONS MUST BE #26 GAGE WARNING TO PREVENT RISK OF SHOCK, DISCONNECT TELEPHONE LINE AT TELECOM JACK BEFORE SERVICING THIS UNIT THIS DEVICE COMPLIES WITH PART 15 OF FCC RULES. 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. THIS EQUIPMENT SHOULD BE INSTALLED IN ACCORDANCE WITH THE NATIONAL FIRE PROTECTION ASSOCIATION STANDARDS ANSI/NFPA 70 NATONAL ELECTRIC CODE AND NFPA 72 NATIONAL FIRE ALARM CODE, CHAPTER 2 (NATIONAL FIRE PROTECTION ASSOC., BATTERY MARCH PARK, QUINCY, MA 02169). PRINTED INFORMATION DESCRIBING PROPER INSTALLATION, EVACUATION PLANNING AND REPAIR SERVICE IS TO BE PROVIDED WITH THIS EQUIPMENT. LYNX PLUS SERIES ALSO COMPLIES WITH THE FOLLOWING: CANADIAN STANDARDS ASSOCIATION (CSA) C22.1, CANADIAN ELECTRICAL CODE, PART 1, SAFETY STANDARD FOR ELECTRICAL INSTALLATIONS AND CAN/ULC-S540 INSTALLATION OF RESIDENTIAL FIRE WARNING SYSTEMS. LYNX PLUS SERIES SUMMARY OF CONNECTIONS THE LYNX PLUS SERIES CONTROLS ARE COMPATIBLE WITH THE FOLLOWING INTEGRAL RECHARGEABLE BATTERY PACKS: REPLACE EVERY FOUR YEARS P/N LYNXRCHKIT-SC P/N LYNXRCHKIT-HC P/N LYNXRCHKIT-SHA CIRCUIT (ZONE) CONTROL UNIT DELAY-SEC SMOKE DETECTOR MODEL DELAY-SEC THIS UNIT MAY BE PROGRAMMED TO INCLUDE AN ALARM VERIFICATION FEATURE THAT WILL RESULT IN A DELAY OF THE SYSTEM ALARM SIGNAL FROM THE INDICATED FIRE CIRCUITS. THE TOTAL DELAY (CONTROL UNIT PLUS SMOKE DETECTORS) SHALL NOT EXCEED 60 SECONDS. NO OTHER INITIATING DEVICES SHALL BE CONNECTED TO THESE CIRCUITS UNLESS APPROVED BY THE LOCAL AUTHORITY HAVING JURISDICTION. WARNING 580610 seconds30 seconds 02 - 25 ZT16 1000-300-SOC-V 5 FCC ID: CFS8DLLYNXPLUS2 (LYNX PLUS SERIES) COMPLIES WITH FCC RULES, PART 68 FCC REGISTRATION No. 5GBUSA-25623-AL-E RINGER EQUIVALENCE: 0.0043B NOTE USE ONLY THE K10145WH/K10145X10 OR K10145CN CLASS 2 TRANSFORMERS PROVIDED EXTERNAL SOUNDERS AND POWERLINE CARRIER DEVICES HAVE NOT BEEN EVALUATED BY UL. WEEKLY TESTING IS REQUIRED TO ENSURE PROPER OPERATION OF THIS SYSTEM POWER SHUTDOWN NOTE: AT 6.0VDC THE SYSTEM WILL NOT OPERATE. PREMISES TELEPHONE INCOMING TELEPHONE LINE 6-14VDC 120mA max. BELL HARD WIRED ZONE ALL OUTPUT CIRCUITS ARE POWER LIMITED. 1 2 3 4 86 5 11 7 10 PHONE ZONE SOUNDERS AC EARTH GROUND EARTH GROUND 9 SUPER HIGH-CAPACITY BATTERY CONNECTOR STANDARD/HIGH-CAPACIT Y BATTERY CONNECTOR TO 24HR 110VAC UNSWITCHED OUTLET K10145WH/K10145X10 OR K10145CN PLUG-IN TRANSFORMER 9VAC, 25VA RING TIP RING TIP INCOMING PHONE LINE 8 POS JACK POWERLINE CARRIER DEVICE CONNECTOR GSMVLP4G AUDIO CABLE CONNECTOR ON AC AC SOUND OUT HWZ T R T R 2k OHMS EOLR GSMVLP4G COMMUNICATIONS PORT HAND SET 2 Corporate Center Drive, Suite 100 P.O. Box 9040, Melville, NY 11747 Copyright © 2012 Honeywell International In c. www.honeywell.com/security Ê800-13012MŠ 800-13012 9/12 Rev. A
IMPORTANT INFORMATION IMPORTANT! PROPER INTRUSION PROTECTION For proper intrusion coverage, sensors should be located at every possible point of entry to a home or commercial 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 so that alarm signals can still be sent to the Central Monitoring Station in the event that the telephone lines are out of order (alarm signals are normally sent over the phone lines). EARLY WARNING FIRE DETECTION Early warning fire detection is important in a home. Smoke and heat detectors have played a key role in reducing fire deaths in the United States. With regard to the number and placement of smoke/heat detectors, we subscribe to the recommendations contained in the National Fire Protection Association's National Fire Alarm Code (NFPA 72). These recommendations can be found later in this document. National Fire Protection Association Recommendations on Smoke 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 National Fire Alarm Code (NFPA 72). Early warning fire detection is best achieved by the installation of fire detection equipment in all rooms and areas of the household as follows: A smoke detector installed outside of each separate sleeping area, in the immediate vicinity of the bedrooms and on each additional story of the family living unit, including basements and excluding crawl spaces and unfinished attics. In addition, 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. DINING KITCHEN BEDROOM BEDROOM BEDROOM BEDROOM LIVING ROOM BEDROOM BDRM DINING LIVING ROOM TV ROOM KITCHEN BEDROOM BEDROOM TO BR LVNG RM BASEMENT KTCHN . CLOSED DOOR GARAGE Smoke Detectors for Minimum Protection Smoke Detectors for Additional Protection Heat-Activated Detectors BDRM floor_plan-001-V1 Emergency Evacuation • FRONT • BACK • BATH BEDROOM KITCHEN BACK DOOR 1 FLOOR ST BEDROOM 2 FLOOR ND BATH BEDROOM PORCH CLOSET BEDROOM BEDROOM Establish and regularly practice a plan of escape in the event of fire. The following steps are recommended by the National Fire Protection Association: 1. Position your detector or your interior and/or exterior sounders so that they can be heard by all occupants. 2. Determine two means of escape from each room. One path of escape should lead to the door that permits normal exit from the building. The other may be a window, should your path be impassable. Station an escape ladder at such windows if there is a long drop to the ground. 3. Sketch a floor plan of the building. Show windows, doors, stairs and rooftops that can be used to escape. Indicate escape routes for each room. Keep these routes free from obstruction and post copies of the escape routes in every room. 4. Assure that all bedroom doors are shut while you are asleep. This will prevent deadly smoke from entering while you escape. 5. Try the door. If the door is hot, check your alternate escape route. If the door is cool, open it cautiously. Be prepared to slam the door if smoke or heat rushes in. 6. When smoke is present, crawl on the ground. Do not walk upright, since smoke rises and may overcome you. Clearer air is near the floor. 7. Escape quickly; don't panic. 8. Establish a common meeting place outdoors, away from your house, where everyone can meet and then take steps to contact the authorities and account for those missing. Choose someone to assure that nobody returns to the house — many die going back – 2 – SYSTEM COMPATIBILITY NOTICE Your Honeywell security system is designed for use with devices manufactured or approved by Honeywell for use with your security system. Your Honeywell security system is not designed for use with any device that may be attached to your security system's keypad or other communicating bus if Honeywell has not approved such device for use with your security system. Use of any such unauthorized device may cause damage or compromise the performance of your security system and affect the validity of your Honeywell limited warranty. When you purchase devices that have been manufactured or approved by Honeywell, you acquire the assurance that these devices have been thoroughly tested to ensure optimum performance when used with your Honeywell security system. WARNING! THE LIMITATIONS OF THIS ALARM SYSTEM While this system is an advanced design security system, it does not offer guaranteed protection against burglary or other emergency. Any alarm system, whether commercial or residential, is subject to compromise or failure to warn for a variety of reasons. For example: • Intruders may gain access through unprotected openings or have the technical sophistication to bypass an alarm sensor or disconnect an alarm warning device. • Intrusion detectors (e.g. passive infrared detectors), smoke detectors, and many other sensing devices will not work without power. Battery operated devices will not work without batteries, with dead batteries, or if the batteries are not put in properly. Devices powered solely by AC will not work if their AC power supply is cut off for any reason, however briefly. • Signals sent by wireless transmitters may be blocked or reflected by metal before they reach the alarm receiver. Even if the signal path has been recently checked during a weekly test, blockage can occur if a metal object is moved into the path. • A user may not be able to reach a panic or emergency button quickly enough. • While smoke detectors have played a key role in reducing residential fire deaths in the United States, they may not activate or provide early warning for a variety of reasons in as many as 35% of all fires, according to data published by the Federal …
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EXHIBIT 4-1 CFS8DLLYNXPLUS2 / 573F-LYNXPLUS EXTERNAL PICTURES FRONT OF UNIT: BACK OF UNIT:
EXHIBIT 8 CFS8DLLYNXPLUS2 / 573F-LYNXPLUS2 LABEL INFORMATION EXACT LOCATION OF THE LABEL ON THE BACK OF UNIT: BASIC UNIT MAIN LABEL: UNIT WITH 4G MODULE: EXHIBIT 8 (CONT.) CFS8DLLYNXPLUS2 / 573F-LYNXPLUS2 LABEL INFORMATION (CONT.) L3000 VE3 MAIN LABEL: 4G MODULE AUXILIARY LABEL:
EXHIBIT 4-2 CFS8DLLYNXPLUS2 / 573F-LYNXPLUS2 INTERNAL PICTURES THE BASIC LYNXPLUS2: LYNXPLUS2 WITH 4G MODULE TOP OF PCB: BOTTOM OF PCB: EXHIBIT 4-2 CONT. CFS8DLLYNXPLUS2 / 573F-LYNXPLUS2 INTERNAL PICTURES CONT. THE 4G MODULE AND RADIO:
EXHIBIT 4-2 ADDITIONAL CFS8DLLYNXPLUS2 / 573F-LYNXPLUS2 INTERNAL PICTURES - ADDITIONAL WITH SHIELDS OFF
1.0 APPLICANT: DATE: 03,08,2013 NAME OF APPLICANT: HONEYWELL INTERNATIONAL INC. FCC ID: CFS8DLLYNXPLUS2 2.0 FCC RULES CONCERNING MAXIMUM PERMISSIBLE RF EXPOSURE: EQUATIONS: P=20 X LOG E -95.2289 THE FRIIS TRANSMISSION EQUATION ='S ( ( EIRP X DUTY CYCLE / ( 4 X PI X 2O CM2 ) ) NOTE: THE CELLULAR DUTY CYCLE USED VARIED FROM 12.5% to 100% THIS IS THE WORST CASE DATA FROM THE PTCRB REPORT. BAND:CHANNEL:FREQ: uV/M @ 3M: MAXIMUM EIRP (dbm): MAXIMUM EIRP (mW): DUTY CYCLE: FRISS mW/CM 2 :EXP LIMIT mW/CM 2 : % OF LIMIT: N/AN/A344.9442,756.30-2.610.54815.0%0.00001640.2299600.0071 BAND: CHANNEL No: FREQ (MHz): Maximum RMS Conducted Power From QIPPH8 Antenna Gain dbi: MAXIMUM EIRP (mW): DUTY CYCLE: FRISS mW/CM 2 :EXP LIMIT mW/CM 2 :% OF LIMIT: GSM 850190836.633.11.42818.3812.5%0.0700870.55773312.566512.5736 GSM 19005121850.230.071.11309.1812.5%0.0325571.0000003.25573.2628 GPRS 850190836.633.11.42818.3850.0%0.2803500.55773350.266050.2731 GPRS 19005121850.230.071.11309.1850.0%0.1302271.00000013.022713.0298 EGPRS 850251848.826.721.4648.6350.0%0.0645210.56586711.402111.4093 EPGRS 19005121850.225.981.1510.5050.0%0.0507811.0000005.07815.0852 UMTS 8504233846.623.691.4322.85100.0%0.0642290.56440011.380011.3871 UMTS 190095381907.624.521.1364.75100.0%0.0725661.0000007.25667.2637 UMTS 17001450174023.861.8368.13100.0%0.0732371.0000007.32377.3308 THE 344.94 MHz SRR (0.007116717) + ( GPRS 85050.2731) ='S50.2802% 4 G MODULE MAXIMUM CO-LOCATION MPE % OF LIMIT IS : § CFR 47 1.1310 Radiofrequency radiation exposure limits. The criteria listed in table 1 shall be used to evaluate the environmental impact of human exposure to radiofrequency (RF) radiation as specified in § 1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of § 2.1093 of this chapter. Further information on evaluating compliance with these limits can be found in the FCC’s OST/OET Bulletin Number 65, ‘‘Evaluating Compliance with FCC-Specified Guidelines for Human Exposure to Radiofrequency Radiation.’’ NOTE TO INTRODUCTORY PARAGRAPH: These limits are generally based on recommended exposure guidelines published by the National Council on Radiation Protection and Measurements (NCRP) in ‘‘Biological Effects and Exposure Criteria for Radiofrequency Electromagnetic Fields,’’ NCRP Report No. 86, Sections 17.4.1, 17.4.1.1, 17.4.2 and 17.4.3. Copyright NCRP, 1986, Bethesda, Maryland 20814. In the frequency range from 100 MHz to 1500 MHz, exposure limits for field strength and power density are also generally based on guidelines recommended by the American National Standards Institute (ANSI) in Section 4.1 of ‘‘IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz,’’ ANSI/IEEE C95.1–1992, Copyright 1992 by the Institute of Electrical and Electronics Engineers. X _____________________________________ Kenneth Eskildsen, Engineering Manager DATE: March, 8 th , 2012 . 3.0 MPE CALCULATIONS: 4.0 RESULTS: TEST RESULT: PASS In the configuration tested the EUT complied with the standards specified above. CO-MPE % : FCC GENERAL POPULATION / UNCONTROLED EXPOSURE LIMITS: for 300 MHz to 1,500 MHz = F / 1500 mW/cm 2 ; for 1,500 to 100,000 MHz use 1 mW/cm 2
EXHIBIT 5-1 CFS8DLLYNXPLUS2 / 573F-LYNXPLUS2 Report of Measurements . Measurements for the Intentional Radiator,and OBW were made in accordance with the procedures and 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 were made in accordance with the procedure and reporting requirements of ANSI C63.4-2003. The Test Set-Up (C63.4 section 10.1.3) is shown in EXHIBIT 5-2; "Test Setup Photos". The sequence of testing (C63.4 section 10.1.7) for radiated emissions is as follows: A preliminary scan was conducted with the receiver antenna close to the EUT in order to identify the emission characteristics of the EUT (C63.4 section 8.3.1.1). The antenna and EUT were then placed at the proper separation ( 3 Meters) with the EUT positioned on a non-conducting turntable. The EUT was rotated on the turntable to maximize the received signal strength, then the receiver antenna height was varied between one (1) and four (4) Meters to further maximize the received reading. Thereafter, the device was again rotated to a peak output position and the antenna height wa s re-adjusted for maximum received signal. This procedure was re-iterated until there was no further increase in signal level. This procedure was performed with the EUT rotating in three orthogonal planes (C63.4 section 13.1.4.1) to generate a final maximum reading which is recorded on the radiated emissions result sheet. Similar measurements were made on the receiver to ensure compliance as an unintentional radiator. Note, The Spectrum Analyzer resolution bandwidths set as follows; (Video Bandwidth is always set 3X greater than RBW) For occupied bandwidth measurements, RBW = 30KHz and VBW = 100KHz. For radiated emissions below 1 GHz, the RBW = 100kHz. Detector function set to peak. For radiated emissions above 1 GHz, the RBW = 1MHz. Detector function set to peak. TRANSMITTER RADIATED EMISSIONS are recorded in "EXHIBIT 5-3". OCCUPIED BANDWIDTH is recorded in "EXHIBIT 5-4". RECEIVER RADIATED EMISSIONS are recorded in "EXHIBIT 5-5". LINE CONDUCTED EMISSIONS are recorded in "EXHIBIT 5-6". TEST EQUIPMENT ( per C63.4 section 10.1.4) is recorded in "EXHIBIT 6".
HONEYWELL SECURITY & CUSTOM ELECTRONICSREV 04-24-2012-J 2 Corporate Center Drive Melville, NY 11747 EXHIBIT 5-3FCC ID: CFS8DL Date :10-Aug 2012Tested by: Notes:(1) Fo:344.94 (2) Detector = Peak SENSE / UUT: EL (cm): AZ (deg): Meter Reading (dB uV): (3) Frequency range scanned to 4 GHz. V/V ( Emissions not reported were more than 20dB below the specified unit ). H/V [(Meter reading + Cable/Amp factor + Antenna factor) / 20 )] V/H (4) Conv. Reading = 10 H/H100.00/36074.65(5) Corr. Reading = Conv. Reading X Duty Cycle V/O (6) Six Highest Emissions Recorded H/O Freq. (MHz): Sense Antenna Polarity (V/H): THE ORENTATION OF THE UUT 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): HV 344.94HH74.652.515.47 42,756.3 15.0% 6413.4 7,289 689.88HH36.353.719.36936.515.0%140.5729 1034.82HH19.704.722.72227.015.0%34.0500 1379.76HH13.455.625.47168.515.0%25.3500 1724.70HH11.626.327.64188.815.0%28.3729 2069.64HH14.627.329.85385.515.0%57.8729 2414.58HH13.258.131.89457.115.0%68.6729 2759.52 HH 14.448.6 32.83622.315.0%93.3500 3104.46HH13.789.132.63597.015.0%89.6729 3449.40HH15.5810.033.14860.015.0%129.0729 4000 LAST CAL 17 OCT 11 CABLE D LAST CAL 21-AUG-11 BICONILOG S/N:00045682 LYNXPLUS2 PRESCAN: Approved by: K. EskildsenG. BARBATO Test Sample (model): Test specification: FCC Part 15, Sub-part C and RSS 210 , Issue 8 Test method: ANSI C63.4 - 2004 LYNXPLUS2
EXHIBIT 6 TEST EQUIPMENT USED Part 15.231, ANSI C63.4 , RSS 210 This is a list of all test equipment used. Test Equipment list for Honeywell OATS & Conducted Line: Equipment Mfg Model Cal Date Cal Due Spectrum Analyzer Rohde & Schwarz FSEA20 10/15/12 10/15/13 Antenna ‘B iconilog’ ETS Lindgren 3149 08/ 25/12 08/25/13 NOTE: THIS ANTENNA WAS CALIBRATED DOWN TO 26 MHz. PER OUR REQUEST. Surge Suppressor Agilent (HP) HP11947A 05/09/12 05/09/13 LISN Com -Power LI-115 10/19/12 10/19/13 PLEASE SEE PAGE 2-5 FOR TEST EQUIPMENT TRACEABILITY If you need any additional information from Honeywell please contact: Greg Barbato RF Engineer (Acting for Ken Eskildsen) Phone (Direct): (516) 577-5863 Email: [email protected] :!',,,,,,,.,rt,,,,,,t,,,,,,t,tt,,t,';t,,tt'.'.,,,.,.t;.1 .,,:,,,,tt,,,, Issue Date: 10/15!2A12 P.erfarmed,fui GENERAL CALIRRANON. INC. 2 MARS COURT BOONTON,NJ O7OO5 EquipmurttrU&datian;,. ..;,':, 1,,1,,,.,,..r1r,,1r,1'r Job No.: 018674 Manufacturer: R&S Description: Department: Temp./RH: Cal. Interval: Cal Date: General Calibration, Inc. 2 Mars Court, Boonton, New Jersey 07005 Phone (973) 299-2950 Fax (973) 299-0595 MR-22292 MR59O 00t464 SPECTRUM ANALYZER ALARMNET 22.0 C I 51.0o/o 12 MONTHS 10t15t2012 L*n':"AfgaHbil.'h 0f1:1i'',,,'1,,,,,:,,,,,, HONEYWELL SECURTry (001464) 2 CORPORATE CENTER DRIVE MELVILLE,NY I1747 hd.4i.',,,-O ti"..,.,t'.t,tt' Asset Tag No.: Model Number: Serial Number: Inspected By: Job Title: Calibration Result: Cal. Due Date: . .. :.tL::-::..:.. ..., s294448 10503 FSEA20 oB:riss MRI METROLOGIST PASSED t0t15t2013 Procedure#GCP;,, RSFSEA20 Calibration Notes: Condition: Found In Tolerance and Left In Tolerance Standards Used To Cailbrste nquipmentt, ,,.i . . , , Company LD. Description GENERAL CALIBRATION 1031 SYNTHESIZED SWEEPER, 26GHZ GENERAL CALIBRATION 1124 FUNCTION GENERATOR GENERAL CALIBRATION 2OO MEASURING RECEIVER GENERAL CALIBRATION 332 FREQUENCY COUNTER GENERAL CALIBRATION 403 ATTENUATOR GENERAL CALIBRATION 432 CALIBRATION KIT TYPE N 5O-OHMS GENERAL CALIBRATION 434 POWER SPLITTER GENERAL CALIBT{ATION 51I DIGITAL MULTIMETER GHNERAL CALIBRATION 518 POWER SENSOR GENERAL CALIBRATION 588 ATTENUAI-OR Seiial N,umber 30504021 8l 2847 1.11791 3+38A05277 ccN200l 001 26 219-05771 254t400233 11124 2201 404803 us37292728 2522440468 Qal; Due Date 04/12t2013 0513112013 08/08/20 l 3 05/21/2013 08/15/2013 t0/29/2012 t0/11/20t3 0410412013 06t2212013 07 t1812013 fhis is to certify that General Calibration, lnc. is A2LA accreoited and that its calibration system is in compliance with ISO/IECl7025-2O05,ANSI NCSL2540-1, ANSI NCSL Z540-3.andISo9001:2008.TheteSt|imitSstatedintherepurtcorrespondtotheManufacturercalibrationandpublishedspecications Ca|ibrationofstandards;re1.erencestandardsandintermediatcstandardsinthiscalibratronhavebeencheckedandcalibrated traceabletotheNationalinstituteofStandardsandTechnolo1..y,AnyaccreditedcalibrationunderourA2LAscopeofaccredit the calibration certificate. tfthe certitlcate includes any unacoredited items cahbrated, they are clearly marked as unaccredited calibration. Rcst Uncertainties represent expanded uncertainties expressed at approximately the 95% confidence level using a coverage factor ofk:2. The results documented in this certificate relate only to the item(s) calibrated or tested. Approved By ,ril'.;..v;'.-...,.,y'; .,* .. /y'1.:/,-a..- ..r- /. . - General Calibration, Inc. - Q. A. Manager Pagelofl l ilil rilli itltlil # gt lFcnE6flf6l '"J:TilT"',ii8;:;l SNffS.LINDCREIU- Operating Range: 80 MHz - 6 GHz Instrument Type: Biconilog (Type 5) Date Code: Alternate lD: 11242 Customer: HONEYWELL (NY) 26 - 1000 MHz, +/-0.9 dB; 1000 - 2000 MHz, +f 0.8 dB: 2000 - 6000 MHz. +t-1 .2 dB 26 - 1000 MHz, +/-0.9 dB; 1000 - 2000 MHz, +/-0.8 dB; 2000 - 6000 MHz. +/-1 .3 dB 26 - '1 000 MHz, +f 1 .0 dB; 1 000 - 2000 MHz, +l-1 .4 dB:2000 - 6000 MHz, +/-2.3 dB Condition of Instrument Upon Receipt: In Tolerance to Internal Qualitv Standards On Release: In Tolerance to Internal Qualitv Standards Cert l.D.: 93421 An ESGO Technologies Company 1301 Arrow Point Drive Cedar Park, Texas 78613 (512) 531-6498 Certificate of Calibration Conformance Page I of S The instrument identified below has been individually calibrated in compliance with the following standard(s): SAE, ARP-958 - 2003, Electromagnetic Interference Measurement Antennas; Standard Calibration Method, Society of Automotive Engineers, Aerospace Recommended Practice. Fixed height, three antenna rotation, 1 meter separation. 3 meter: seoaration performed per Annex C. Vertical calibration performed per above listed methodology. Environment: Laboratory MTE is maintained in a temperature controlled environmentwith ambientconditions from 18 to 28 C, relative humidity less than 90%. The instrument under test has been calibrated on an open air test site (OATS) with environment temperature conditions rangtng from 0 to 40 C which has no known influences on measurement quality. Manufacturer: Model Number: Serial Number/ lD: Tracking Number: Date Completed: Test Type: Calibration Uncertainty: k=2, (95o/o Confidence Level) ETS-Lindgren 3149. 00045682 s 000026017 25-Sep-1 2 3 meter, Horizontal and Vertical 01m 03m 10m Test Remarks: Calibration Traceability: All Measuring and Test Equipment (M/TE) identified below are traceable to the Sl units through the National Institute for Standards and Technology (NIST) or other recognized National Metrology Institute. Calibration Laboratory and Quality System controls are compliant with ISO/lEC 17025-2005 and ANSI/NCSL 2540-1-1994. Standards and Equipment Used: Make / Model / Name / S/N / Recall Date Agilent N5230C PNA-L NeVWrk Anatyzer MY49002145 13-Jut-13 This document provides traceability of measurements to recognized national standards using conirolled processes at the ETS-Lindgren Calibratron Laboratory. Uncertainties listed are derived from the methods described by NIST Tech Note '1297. This certificate and report may not be reproduced, except in full, without the wri…
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EXHIBIT 5-2 PICTURES OF THE TEST SETUP CFS8DLLYNXPLUS2 / 573F-LYNXPLUS2 SECTION 2.1 093 (c) Photo of the test setup shall be provided. HONEYWELL’S OATS MEASUREMENT FACILITY AT: 2 CORPORATE CENTER DRIVE MELVILLE, NY 11747 SENSE ANT: HORZ, UUT VERT SENSE ANT: HORZ, UUT HORZ SENSE ANT: HORZ, UUT OBLQ SENSE ANT: VERT, UUT VERT SENSE ANT: VERT, UUT HORZ SENSE ANT: VERT, UUT OBLQ
2 Corporate Center Drive · Melville, New York · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 344.94 MHz - 344.94 MHz | - |

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