
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
General Information Before installing detectors, please thoroughly read these installation instructions and Guide for Proper Use of System Smoke Detectors (A05-1003-002), which provides detailed information on detector spacing, placement, zoning, wiring, and special applications. Copies of this manual are available from Honeywell. NOTICE: This manual should be left with the owner/user of this equipment. IMPORTANT: This detector must be tested and maintained regularly following NFPA 72 requirements. General Description The 5808W3 photoelectronic smoke/heat detector with built-in wireless transmitter is intended for use with wireless alarm systems that support 5800 series devices. Refer to control/communicator installation instructions for compatibility. The 5808W3 smoke/ heat detector can be used with any 5800 series wireless receiver/ transceiver for residential installations. For commercial installations, the 5881ENHC or the 5883H receiver is required. The transmitter can send alarm, tamper, maintenance (when control panels are equipped to process maintenance signals), and battery condition messages to the system’s receiver. The maintenance signal fully complies with the sensitivity test requirement specified in NFPA 72, 10.4.4.2.4 and is approved by UL. Refer to the wireless system’s instructions for the maximum number of transmitters that can be supported. The 5808W3 incorporates a state-of-the-art optical sensing chamber and an advanced microprocessor. The microprocessor allows the detector to automatically maintain proper operation at factory calibrated detection levels, even when sensitivity is altered due to the presence of contaminants settling into the unit’s smoke chamber. In order for this feature to work properly, the chamber must never be opened while power is applied to the smoke detector. This includes cleaning, maintenance or screen replacement. All models also feature a restorable, built-in, fixed temperature (135°F) thermal detector and is also capable of sensing a pre-freeze condition if the temperature is below 41°F. The 5808W3 contains a piezoelectric horn which generates the ANSI S3.41 temporal pattern in an alarm condition. In alarm, a message is also sent to the wireless control panel. The alarm message is transmitted every 4 seconds until the smoke or heat condition has cleared and the detector has reset. During an alarm condition, pressing the detector’s test switch will silence the piezoelectric horn for 5 minutes. Once the detector has reset, a RESTORE message is transmitted to the control panel. The built-in Drift Compensation algorithm automatically maintains the sensitivity of the detector. Once the detector reaches its limit of compensation, it transmits a maintenance signal to the panel. The mounting base installation is simplified by the incorporation of features compatible with drywall fasteners or other methods that provide a method for securing the detector in place. 5808W3 Photoelectronic Smoke/Temperature Detector with Built-in Wireless Transmitter INSTALLATION AND SETUP GUIDE I56-2768-005R Two LEDs and a sounder on the detector provide local visual and audible indication of the detector’s status: Table 1: Detector LED Modes Green LEDRed LED Piezoelectric Horn Power Up Blinks every 5 sec Blinks every 5 sec Off Normal (standby) Blinks every 10 sec OffOff Out of SensitivityOff Blinks every 5 sec Off Freeze TroubleOff Blinks every 10 sec Off Smoke AlarmOff Blinks every 1 sec Temporal Pattern Thermal AlarmOff Blinks every 4 sec Temporal Pattern Low BatteryOff Blinks every 45 sec Chip every 45 sec after LED blinks for 7 days During initial power-up, the red and green LEDs will blink synchronously once every 5 seconds. It will take approximately 20 seconds for the detector to finish the power-up cycle (see Table 1). After power-up has completed and the detector is functioning normally within its listed sensitivity range, the green LED blinks once every 10 seconds. If the detector is in need of maintenance because its sensitivity has shifted outside the listed limits, the red LED blinks once every 5 seconds. When alarm has been activated by smoke, the red LED blinks every 1 second. During a thermal alarm condition (>135°F) the red LED blinks once every 4 seconds. The LED indication must not be used in place of the tests specified under Testing. In a freeze trouble condition, the red LED will blink once every 10 seconds (refer to Table 1). If the detector senses a low battery condition, the red LED blinks once every 45 seconds. To measure the detector’s sensitivity, the i3 Series Model SENS-RDR Infrared Sensitivity Reader tool (see Figure 4) should be used. Refer to instruction manual D100-98-00 for proper use of the SENS-RDR. Low Battery Detection The 5808W3 is powered by a single 3-volt CR123A or DL123A Lithium battery (included). The detector checks for a low battery at least every 65 minutes. If a low battery is detected, the transmitter sends a low battery message to the control panel, which beeps and displays the detector’s zone number. In addition, the red LED of the 5808W3 will blink every 45 seconds and the test switch will be disabled. This condition will exist for a minimum of 7 days, and then the detector’s horn will “chirp” about every 45 seconds. Pressing the test switch during this time will silence the chirps for 12 hours. The battery should be replaced BEFORE the chirps begin. Be sure to replace the battery with a fresh one. - 1 - Battery Installation and Replacement To replace the battery: 1. Remove the detector from its mounting base by twisting the detector counterclockwise. Remove the battery, and dispose properly. 2. To ensure proper power-down sequence, wait a minimum of 20 seconds before installing new battery. 3. Install a new 3-volt CR123A Lithium battery in the battery compartment. Follow the polarity diagram inside the compartment. 4. Reinstall the smoke detector onto the mounting base by turning the detector clockwise. 5. Test t…
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EXHIBIT 4-1 EXTERNAL PICTURES CFS8DL5808W3XT / 573F-5808W3 TOP PLASTIC: BOTTOM PLASTIC: MOUNTING RING:
EXHIBIT 8 5808W3XT LABEL INFORMATION CFS8DL5808W3XT / 573F-5808W3XT 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 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 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 ENGINEERS DRAWING: EXACT LOCATION OF THE LABEL ON THE BACK PLASTIC:
EXHIBIT 4-2 INTERNAL PICTURES CFS8DL5808W3XT / 573F-5808W3 PAGE 1of 2 TOP PLASTIC WITH SOUNDER: PCB SITTING IN BOTTOM PLASTIC: ENLARGED VIEW OF TX BOARD ON THE MOTHER BOARD: EXHIBIT 4-2 INTERNAL PICTURES CFS8DL5808W3XT / 573F-5808W3 PAGE 2 of 2 TOP OF PCB: BOTTOM OF PCB:
EXHIBIT 5-1 CFS8DL5808W3XT / 573F-5808W3XT 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 at 80 cm 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". TEST EQUIPMENT ( per C63.4 section 10.1.4) is recorded in "EXHIBIT 6".
HONEYWELL SECURITY & CUSTOM ELECTRONICSREV J JULY 09 2 Corporate Center Drive Melville, NY 11747EXHIBIT 5-3FCC IDCFS8DL580 8W3XT Date : 03/16/2010 Tested by : G.B. Approved by : K. Eskildsen Test Sample (model) : 344.94 MHz 5808W3XT Test method: ANSI C63.4 - 2004 Test specification: FCC Part 15, Sub-part C and RSS 210 , Issue 7 Notes: (1) Fo = 344.94MHz. (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 LAST CAL 16 FEB 09 CABLE C LAST CAL 10 JUL 09 BICONILOG S/N:00045682 729 344.94h75.592.315.3545919.810.0%4592.07292 689.88h43.423.220.022147.810.0%214.8729 1034.82h39.544.424.852751.110.0%275.1500 1379.76h28.624.925.93938.610.0%93.9500 1724.70h26.615.526.96898.510.0%89.8729 2069.64h26.146.431.361566.810.0%156.7729 2414.58h31.046.932.153195.210.0%319.5729 2759.52 h 24.487.4 32.371631.210.0%163.1500 3104.46h24.037.932.731710.010.0%171.0729 3449.40h22.719.233.001759.910.0%176.0729 4000 LAST CAL 16 FEB 09 CABLE C LAST CAL 10 JUL 09 BICONILOG S/N:00045682
EXHIBIT 5-4 OCCUPIED BANDWIDTH CFS8DL5808W3XT / 573F-5808W3XT OBW = 346.7 KHz
EXHIBIT 6 TEST EQUIPMENT USED CFS8DL5808W3XT / 573F-5808W3XT Section 15.231 and ANSI C63.4 This is a list of all test equipment used. Test Equipment list for Honeywell OATS: Equipment Mfg Model Cal Date Cal Due Spectrum Analyzer Rohde & Schwarz FSEA20 10/12/09 10/12/10 Antenna (‘Biconilog’) ETS (EMCO)Lindgren 3149 07/10/09 07/10/10 PLEASE SEE PAGE 2- 4 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]
EXHIBIT 5-2 PHOTOS OF TEST SETUP CFS8DL5808W3XT / 573F-5808W3XT SECTION 2.1093 (c) SECTION 2.1093 (c) Photo of the test setup shall be provided. INTENTIONAL RADIATOR SENSE VERT , UUT HORZ SENSE VERT , UUT VERT SENSE VERT , UUT OBLQ SENSE HORZ , UUT HORZ SENSE HORZ , UUT VERT SENSE HORZ , UUT OBLQ AT HONEYWELL’S OATS MEASUREMENT FACILITY AT: 2 CORPORATE CENTER DRIVE MELVILLE, NY 11747
2 Corporate Center Drive · Melville, New York · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 344.94 MHz - 344.94 MHz | - |

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