
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
EXHIBIT 7 USERS MANUAL / OPERATING INSTRUCTIONS CFS8DL5805BDV-1 SECTION 2.1033 (1a) SECTION 2.1033 (1a) Information to User - FCC Part 15. To be included in the user’s manual/operating instructions. Part 15.21 Statement for all intentional and unintentional radiators shall be included. “ 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. “ PLEASE SEE THE II ( Installation Instructions ) ON THE NEXT 4 PAGES. K5756 2/05 Rev. A ADEMCO 5805BDV TWO-WAY WIRELESS KEY WITH VOICE INSTALLATION AND SETUP GUIDE General Information The 5805BDV is a four-button wireless key that permits the user to control the alarm system remotely. It is a two- way device that sends commands (e.g., Arm, Disarm, Panic) to the alarm system, and receives current status from the system. Additionally, the unit contains a Message Mode that allows the user to leave or retrieve voice messages. One bi-color status LED and a speaker indicate status. Each button can be programmed for any zone response type, but is typically used for arming, disarming, panic, and output relay operation. 1. The 5805BDV can be used in conjunction with the following: • 5800TM (Transmitter Module) and a 5881 or 5881EN receiver • 5883 transceiver • 6128RF, 6150RF, or 6160RF keypad/transceivers • Lynx control panel. 2. Place one of the receivers mentioned in 1 above and the Transmitter Module in a high, centrally located area for best reception. The 5800TM module must be located between 1 and 2 feet from the receiver. The unit is powered by a single, replaceable, AAA, Alkaline battery. The battery is supplied with the unit but not installed (see “To Install/Replace Battery” for more information). 5805BDV-001-V0 Speaker LED Microphone ONOFF 1 2 5805BDV Front View Loop Assignments: • ON Button = Loop 3 • OFF Button = Loop 2 • 1 Button = Loop 4 • 2 Button = Loop 1 To Install/Replace Battery 1. On backside of unit, press the battery door down, then push forward and pull up. NOTE: Be careful not to activate any buttons while doing this. 2. Remove the old battery. 3. Either wait 20 seconds, or press and release any button on the unit. 4. Place the AAA battery into battery compartment (see diagram). ! Observe polarity to prevent damage to the unit or to the battery. 5805BDV-002-V0 After the new battery has been installed, you will get a confirmation tone within five seconds. Programming the 5805BDV House ID You must program a House ID number into the unit before you can use it to display the system status. The House ID number, in the range of 01 to 31, must be the same as the one used in the control panel for each device. The default House ID of the 5805BDV is 10. To Program a House ID 1. Enter Programming mode by pressing the ON, OFF, and 1 buttons at the same time. You will get an audio announcement stating “House ID Mode” with the LED flashing red and green alternately. 2. Enter the House ID number by using the ON button to enter the 10’s digit and the OFF button to enter the 1’s digit. Refer to the four examples below. NOTE: If the digits entered are not within the range of 01-31, the unit will not accept the entry. 3. Accept the entry entered by pressing the 2 button. 4. The unit displays the stored number by flashing the red LED for the 10’s digit and flashing the green LED for the 1’s digit (e.g., for House ID 21, the red LED will flash twice, the green LED will flash once). 5. The unit will then automatically exit the House ID programming mode. 6. If you enter an incorrect House ID, you must start again from step 1 above. Example: To enter House ID # 17 into the unit: 5805BDV-003-V0 Enter House ID mode: Press ON + OFF + 1 buttons until LED flashes House ID will be shown by flashing LED. Unit automatically exits House ID mode. To accept entry, press 2 button. Enter House ID #17: Press & release ON button once, press & release OFF button 7 times. 1 2 4 3 - 2 - To View the House ID 1. Enter Programming mode as described in step 1 (previous page). 2. Depress the 2 button to view. The unit displays the stored number as programmed on the previous page (step 4), then automatically exits Programming mode. Programming a House ID in the Control Panel • On VISTA-40 control panels and above, use Device Programming mode to enable the RF receiver and enter the House ID number. • On VIA-30 control panels and below, go to field ✶24 and enter the House ID number. Programming the Buttons Each 5805BDV is assigned a unique serial number during manufacture. Each button on the unit also has a unique “loop” number that must be programmed into the control panel during installation. Assign each button to an individual zone number and program the Input Type as BR (Button Type RF) by entering 5 in the control panel’s Zone Programming mode. Then, input the serial number by one of the following methods: • Transmit twice from the device by pressing one of the buttons when prompted for the serial number. • Enter the serial number manually through the keypad. • Enter the serial number through Compass downloader software as applicable. Be sure to include the loop number of each button during programming (see loop assignments on previous page). NOTE: Do not use the 5805BDV for 24-hour silent alarm, as the unit itself is not silent. Button 1 If you choose not to use Button 1, you must do the following to avoid a “CHECK” condition when the button is accidentally pressed: 1. Assign this button to a zone. 2. After the serial number has been programmed, re- enter Zone Programming for that zone. 3. At the “Zone Type” prompt, enter 00 and press [✶]. a) On VIA-30 control panels and below, the system will ask whether you want to permanently delete that zone. Enter 0 (No). This will cause the system to retain the serial number, but render the button inactive. b) On VISTA-4…
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EXHIBIT 2-2 BLOCK DIAGRAM CFS8DL5805BDV-1 SECTION 2.1033(b) SECTION 2.1033(b) (3) Block Diagram. PLEASE REFER TO THE NEXT PAGE.
COVER LETTER Federal Communications Commission Honeywell International Inc. Equipment Approval Services Radio Engineering PO BOX 358315 160 Eileen Way Pittsburgh, PA 15251 5315 Syosset, NY 11791 February, 26, 2005 Subject: Application for Certification of Honeywell’s Security Device type: 5805BDV-1 FCC ID: CFS8DL5805BDV-1 Dear Sir or Madam: Please find (e-filed) a 731 application form for submittal of this product. The following exhibits were also uploaded to your site: • functional description • circuit description • block diagram • schematic • duty cycle / timing calculation • timing diagram • external and internal photos • product test report • users manual • label A 159 payment form and check were sent today to Melen Bank. This is for the certification of Honeywell’s 5805BDV-1 transceiver under FCC rules and regulations Part 15 subpart C. If you have any questions or require additional information, please contact me at 516-921-6704 Ext. 6640 Regards, Ken Addy Director Radio Engineering
<[email protected]> TO: Ms Linda Elliott, FCC Application Processing Branch Re: FCC ID CFS8DL5805BDV-1 731 Confirmation Number: EA567104 Correspondence Reference Number: 28601 FROM: Honeywell International Inc. Ms Linda Elliott wrote: " The FCC ID entered on the Form 731, does not agree with the FCC ID on the proposed labeling. Submit an email to correct the Form 731, or a revised identification label, as appropriate. " I reply: Ms Elliott, It seems we up loaded a corrupted pdf file. I had our documentation people re-do it. Please find a copy of this cover letter and the reloaded label pdf file uploaded to the 'files' section of your website. Best Regards, Greg Barbato, Honeywell International Inc. (516) 921-6704 Ext. 6920 for Ken Addy
EXHIBIT 4-1 EXTERNAL PHOTOS – TOP OF PLASTIC CFS8DL5805BDV-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (external ) Showing all faces of the device. External photos shall show the overall appearance, and the antenna used with the device (if any).
EXHIBIT 4-2 EXTERNAL PHOTOS - BOTTOM OF PLASTIC CFS8DL5805BDV-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (external ) Showing all faces of the device. External photos shall show the overall appearance, and the antenna used with the device (if any).
EXHIBIT 8 THE FCC PART 15 LABEL CFS8DL5805BDV-1 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. Please note that due to the extremely small size of this unit, only the FCC ID. Is printed on the label. The required FCC Part 15 Statement is found in the ‘II’ / Users Manual. Due to the difficulty of photographing "gray-on-gray" we are submitting this Engineers Drawing:
EXHIBIT 4-3 INTERNAL PHOTOS - PCB IN THE PLASTIC CFS8DL5805BDV-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (internal ) - showing all faces of the device and all circuitry. Internal photos shall show the component placement on the chassis and the chassis assembly. If components are covered by an insulator, provide a photo with the cover on, and one with the cover removed, and the controls available to the user.
EXHIBIT 4-4 INTERNAL PHOTOS - BOTTOM OF PCB CFS8DL5805BDV-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (internal ) - showing all faces of the device and all circuitry. Internal photos shall show the component placement on the chassis and the chassis assembly. If components are covered by an insulator, provide a photo with the cover on, and one with the cover removed, and the controls available to the user.
EXHIBIT 4-5 INTERNAL PHOTOS - TOP OF PCB CFS8DL5805BDV-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photos (internal ) - showing all faces of the device and all circuitry. Internal photos shall show the component placement on the chassis and the chassis assembly. If components are covered by an insulator, provide a photo with the cover on, and one with the cover removed, and the controls available to the user.
EXHIBIT 1 FUNCTIONAL DESCRIPTION CFS8DL5805BDV-1 SECTION 2.1033(b) SECTION 2.1033(b) (2a). For Part 15 a brief description of the circuit functions of the device. The 5805BDV-1 is a Bi-directional communicator giving a remote status of the alarm system, and allows remote arming and disarming of a panel, and the sending of panic messages, it is not supervised. It is functionally identical to the 5805BDV (CFS8DL5805BDV).
5805BDV-1 CIRCUIT DESCRIPTION EXHIBIT 2-1 CFS8DL5805BDV-1 SECTION 2.1033(b) SECTION 2.1033(b) (2a). For Part 15 a statement describing how the device operates. The CFS8DL5805BDV-1 uses a common antenna matched to 50 ohms by C29 / C7 etc., this antenna is switched from the transmitter to the receiver by solid state switch SW5 under control of the microprocessor U10. All receive functions, including L.O. are performed by the single chip receiver U11. the L.O.'s FDE is crystal YL4 (20.89375 Mhz X 16 = 334.3 Mhz low side injection) All transmit functions are performed by the single chip transmitter U17 etc., who's FDE is YL6 (10.78125 Mhz X 32 = 345 Mhz ) Again it is under control of microprocessor U10. All audio functions are handled by U5, etc.
EXHIBIT 3-1 TIMING / DUTY CYCLE CALCULATION CFS8DL5805BDV-1 Section 15.255(b) Section 15.255(b), when the radiated emission limits are expressed in terms of the average value of the emission, and pulsed operation is employed, the measurement field strength shall be determined by averaging over one complete pulse train, including blanking intervals, as long as the pulse train does not exceed 0.1 seconds. The exact method of calculating the average field strength shall be submitted with any application for certification. 5800 Message protocol, timing and duty cycle calculation: The data output is phase-encoded Manchester that has inherent 50% duty cycle and consists of 64 bits per word sent at a nominal data rate of 3.7 kb/s (3.2kb/s min to 4.2kb/s max). Therefore the duty cycle is calculation is as follows: The word format consists of 64 bits, The duration of each bit is 312.5 uSec max. The duty cycle over a 100 mSec measuring period is calculated as follows: Duty cycle = Actual RF transmission ON time / 100 mSec Actual transmission ON time = 64 bits X 50% X 312.5 uSec = 10 mSec Therefore duty cycle = 10 / 100 mSec = .10 = 10%, and peak to average field strength is 20 db. Total on-air time for a supervision transmission is: 64 X 312.5 uSec + (5 X 150 mSec) = 0.77 seconds The group of six transmissions is repeated twice, with the second group delayed from the first by a max time of 2 seconds. The worst case on-air time is 1.54 + 2 = 3.54 seconds Summary: - Duty cycle = 10% On airtime = 3.54 seconds Rolling code encryption message protocol, timing and duty cycle calculation: Rolling code encryption is done by the HCS 300Encoder. Calculation is basis of worst-case data content in order to maximize duty cycle On-time. Message packet is as follows: 2.3mS preamble 1.0ms header 62 bits at data '0' 4 bits at data '1' 3.9mS guard Total Message packet Time ( (23 + 10 + (66X3) )X 0.1 ) + 3.0 = 23.1 + 3.9 = 27.0 mS Total Message packet On Time (23X.1) + ( (66X2) X 0.1 ) = (155 X 0.1) = 15.5 mS Therefore the duty cycle for the peak to average power conversion is: 15.5 Duty Cycle = = 14.3 % (27.0 X 4)
EXHIBIT 3-2 DUTY CYCLE TIMING DIAGRAMS CFS8DL5805BDV-1 Section 15.255(b) Section 15.255(b), The exact method of calculating the average field strength shall be submitted with any application for certification. 5800 ( 10% ) Messages: Rolling code encryption ( 14.3%) Messages, with the HCS 300 Encoder:
EXHIBIT 2-3 SCHEMATIC CFS8DL5805BDV-1 SECTION 2.1033(b) SECTION 2.1033(b) (4) Schematic Diagram. Please see the next three (3) sheets...
EXHIBIT 5-1 Report of Measurements. CFS8DL5805BDV-1 Section 15.231 and ANSI C63.4 Measurements were made at Honeywell's Measurement Facility at 160 Eileen Way, Syosset , NY 11791 , FCC Registration number : 156835. Measurements were made in accordance with the procedures and reporting requirements of ANSI C63.4-1992. The Test Set-Up (C63.4 section 10.1.3) is shown in the attached drawing; EXHIBIT 5-2. 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 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 to further maximize the received reading. Thereafter, the device was again rotated to a peak output position and the antenna height was 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. See EXHIBIT 6 for list of test equipment (C63.4 section 10.1.4). Note, Spectrum Analyzer resolution bandwidths set as follows; (Video Bandwidth set greater than RBW) - For occupied bandwidth measurements, RBW = 100kHz, (This is in accordance with the minimum RBW allowed by C63.4, which requires RBW greater than 5% of the FCC required occupied bandwidth spec of 0.25% of center frequency). - 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. RADIATED EMISSIONS are recorded in EXHIBIT 5-3 (TX) and EXHIBIT 5-5 (RX). OCCUPIED BANDWIDTH is recorder in EXHIBIT 5-4.
EXHIBIT 5-3 CFS8DL5805BDV-1 Section 15.231 (Periodic operation above 70 MHz. ) In addition to the provisions of Section 15.205, the field strength of emissions from intentional radiators operated under this Section shall not exceed the following: Frequency Fundamental Spurious (MHz) (microvolts/meter) (microvolts/meter) 260 - 470 3,750 to 12,500 ** 375 to 1,250 ** NOTE: ** linear interpolations NOTES: (1) The above field strength limits are specified at a distance of 3 meters. The tighter limits apply at the band edges. (2) Intentional radiators operating under the provisions of this Section shall demonstrate compliance with the limits on the field strength of emissions, as shown in the above table, based on the average value of the measured emissions. As an alternative, compliance with the limits in the above table may be based on the use of measurement instrumentation with a CISPR quasi-peak detector. The specific method of measurement employed shall be specified in the application for equipment authorization. If average emission measurements are employed, the provisions in Section 15.35 for averaging pulsed emissions and for limiting peak emissions apply. Further, compliance with the provisions of Section 15.205 shall be demonstrated using the measurement instrumentation specified in that section. (3) The limits on the field strength of the spurious emissions in the above table are based on the fundamental frequency of the intentional radiator. Spurious emissions shall be attenuated to the average (or, alternatively, CISPR quasi-peak) limits shown in this table or to the general limits shown in Section 15.209, whichever limit permits a higher field strength. (4) Fo = 345MHz. (5) Detector = Peak (6) Frequency range scanned to 4 GHz. (Emissions not reported were more than 20dB below the specified limit). [(Meter reading + Cable/Amp factor + Antenna factor) / 20 )] (7) Conv. Reading = 10 (8) Corr. Reading = Conv. Reading X Duty Cycle (9) Date : _02/03/2005_ Tested by : _G.Barbato_ Approved by : _Ken Addy_ 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"BICONOLOG729 345h64.191.314.7810315.710.0%1031.67292 690h25.491.719.10206.310.0%20.6729 1035h27.792.322.70436.010.0%43.6500 1380h17.003.025.10179.910.0%18.0500 1725h10.173.327.55112.510.0%11.2729 2070h7.393.829.42107.310.0%10.7729 2415h11.334.131.85231.210.0%23.1729 2760 h 14.224.1 32.20335.710.0%33.6729 3105h13.695.731.75360.610.0%36.1729 3450h15.176.232.28481.410.0%48.1729 4000 CABLE "A"BICONOLOG
EXHIBIT 5-4 OCCUPIED BANDWIDTH CFS8DL5805BDV-1 Section 15.231(c) Section 15.231(c) states that the bandwidth of the emission shall be no wider than 0.25% of the center frequency for devices operating above 70 MHz and below 900 MHz. For the occupied bandwidth measurements the spectrum analyzer was set as follows: RBW = 100kHz, (This is in accordance with the minimum RBW allowed by C63.4, which requires RBW greater than 5% of the FCC required occupied bandwidth spec of 0.25% of center frequency) PLEASE SEE THE NEXT PAGE:
EXHIBIT 5-5 RECEIVER SPURIOUS EMISSIONS Section 15.109 Radiated emission limits. Section 15.109 Radiated emission limits.(a) Except for Class A digital devices, the field strength of radiated emissions from unintentional radiators at a distance of 3 meters shall not exceed the following values: Frequency of Emission Field Strength (MHz) (microvolts/meter) 30 - 88100 88 -216150 216 - 960200 Above 960500 Freq. (MHz) Antenna Polarity (V/H) Meter Reading (dB uV) Cable/Amp Factor (dB) Antenna Factor (dB/M) Conv. Reading (uV/M) Limit @ 3M (uV/M) CABLE "A"BICONOLOG 334.3h10.001.314.7820.1200 BICONOLOG
EXHIBIT 6 TEST EQUIPMENT USED CFS8DL5805BDV-1 Section 15.231 and ANSI C63.4 Section 15.231, per C63.4 section 10.1.4. This is a list of all test equipment used. Test Equipment list 1. Antenna: BICONOLOG S/N: 00029290 Cal. on: 09/14/04 Cal. due: 09/14/05 2. Spectrum Analyzer H. P. 8563E S/N:3246A00232 Cal. on: 08/23/04 Cal. due: 08/23/05
EXHIBIT 5-2 PICTURE OF THE TEST SETUP CFS8DL5805BDV-1 SECTION 2.1093 (c) SECTION 2.1093 (c) Photo of the test setup shall be provided.
165 Eileen Way · Syosset, New York · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231(e) | 345 MHz - 345 MHz | - |

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