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CFS8DL5883-2remote security transceiver

Ademco Inc.
remote security transceiver - FCC ID CFS8DL5883-2 - Ademco Inc.
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Application Details

Equipment Class
DSR - Part 15 Remote Control/Security Device Transceiver
Date of Grant
Nov 24, 2005
Application Purpose
Original Equipment
Date of Application
Oct 23, 2005
Equipment Note
remote security transceiver
Frequency Range
345.00000000 - 345.00000000
Company
Ademco Inc.
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Schematics

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

K3791 (bx) 6/6/01 ®  7UDQVFHLYHU0RGXOH ,167$//$7,21$1'6(783*8,'( INTRODUCTION The 5883 series RF Transceiver Module contains an RF receiver and a transmitter. It is intended for use with ADEMCO’s 5800 series RF transmitters, including bi-directional wireless units (e.g. 5827BD, 5804BD), and the 5800RL Wireless Relay Module (see Fig. 1). The 5883 receives alarm, status, and control messages from 5800 transmitters, and passes these messages to the control panel via wired connections. The control then responds accordingly (arm/disarm the system, initiate an alarm, etc.). The 5883 also transmits system status and other conditions to 5804BD or 5827BD bi-directional units (if used). The 5883 can emulate the functions of a 5800TM module, and can control the relays on the 5800RL Wireless Relay Module. The 5883 features a Spatial Diversity system that virtually eliminates the possibility of "Nulls" and "Dead Spots" within the coverage area. It also incorporates ADEMCO’s new high-security encryption technology (UL-864 and RF Jam Detect). If more than the permitted number of wireless zones are programmed, a "SET UP ERROR" message (on alpha keypads) or an "E4 or “E8”" message (on fixed-word keypads) will be displayed on the system's keypad, and none of the zones will be protected. The 5883 models support the number of zones shown below. 5883MUp to 16 zones 5883HDepends on the control with which it is used. See the control panel’s instructions for specific details. 5883 TRANSCEIVER CONTROL PANEL * 5800 SERIES WIRELESS TRANSMITTERS *CONTROL MUST BE CAPABLE OF SUPPORTING A 5800 RF SYSTEM 2-WAY WIRELESS KEYPAD (e.g., 5827BD, 5804BD) OR 5800RL 2-WAY RELAY MODULE KEYPAD TERMINALS ON CONTROL BOARD 2-WAY TRANSMISSION DATA IN TO CONTROL DATA OUT TO 5883 Figure 1. Block Diagram MOUNT THE MODULE OR PC BOARD The 5883 can be mounted remotely, or, with some controls, can be mounted inside the control's cabinet. When mounting, make sure the antennas do not touch any metal surfaces. First, Check for RF Interference: Before mounting permanently, use the red RF Interference LED (see figure 3) to check for strong local radio frequency interference at the intended mounting location. If this LED is continuously lit, the 5883 module should be relocated. Removing the Cover Remove the 5883's cover by inserting and twisting a screwdriver blade in the slot at the center of the cover's lower edge. Replace the cover when installation is complete if unit is not mounted within a cabinet. Mounting inside the control's cabinet (refer to Fig. 2): 1. Remove the 5883’s circuit board from its base by bending back the two flexible plastic tabs that hold the board's lower edge. Discard the 5883's unused plastic cover and base. 2. In the control's cabinet, unfasten and move the control circuit board downward (if already installed). 3. Hang two short (black) mounting clips (provided) on the raised cabinet tabs in the cabinet, as shown in Detail B of Figure 2. 4. Insert the top of the 5883’s board into the supporting slots at the top of the cabinet (Detail A). Swing the bottom of the board into the two short (black) mounting clips installed in step 3, and secure it to the cabinet with the accompanying screws. See Detail B. 5. Insert the top of the control’s board into the slot in the black clips holding the lower edge of the 5883 board (see Detail B); position two long (red) clips at the lower edge of the board (see Detail C). 6. Swing the lower edge of the control board into place, and secure with two additional screws. 7. Insert the grounding lugs (provided) through the top of the cabinet and into the left-hand terminals of the antenna blocks (at the upper edge of the 5883's circuit board). Secure it to the cabinet with the two screws provided. See Detail D. 8. Insert the 5883’s two antennas through the two openings in the top of the cabinet, one into each block’s right-hand terminal, and tighten the screws to secure them. 9. Affix the 5883's Summary of Connections label to the inside of the control's cabinet door. Mounting the 5883 remotely NOTE: If mounting the 5883 in its own enclosure, the supplied PCB mounting clips, grounding lugs, and screws are not needed. 1. For concealed wiring, route wires through the rectangular opening at the rear of the base before mounting. For surface wiring entry, a thin breakaway area is provided along the base's right edge. 2. Mount the module in the selected location. For greatest security, use all four mounting holes (two keyslot holes and two round holes) in the plastic base. 3. Install each antenna in the respective right-hand terminal of the two terminal blocks at the upper edge of the 5883’s circuit board, and tighten the screws to secure them. 4. Affix the 5883's Summary of Connections label to the inside of the housing cover. MOUNTING CLIP CABINET DETAIL D ANTENNA AND GROUNDING LUG INSTALLATION ANTENNA MOUNT (2 PLACES) ANTENNA (2) SCREW (2) MOUNTING CLIP CONTROL CIRCUIT BOARD BOARD SUPPORTING SLOTS HOLES FOR ANTENNAS AND GROUNDING LUGS RECEIVER CIRCUIT BOARD (See Detail D) ++ ++ RCVR BRD DETAIL A SIDE VIEW OF BOARD SUPPORTING SLOTS DETAIL B SIDE VIEW OF MOUNTING CLIP DETAIL C SIDE VIEW OF MOUNTING CLIP GROUNDING LUG (2) pcb_RF_mount-V0 CIRCUIT BOARD CABINET Figure 2. Installing the 5883 Board in the Control’s Cabinet (Check the control’s Installation Instructions for applicability) – 2 – Mounting for Commercial Fire Applications (in separate cabinet) For Commercial Fire applications, the 5883 module must be mounted in a separate cabinet (N4868V4–BE), using the ADEMCO Cam Lock (N6277), and Retainer Clip (N6277–1). Refer to the control’s instructions for installing the Cam Lock and Retainer Clip. The cabinet containing the module must be located no more than 20 feet from the alarm control cabinet (maximum wire run length 20 feet), with no intervening walls or barriers. 1. Remove the PC board by bending back the two flexible plastic tabs that hold the board's lower edge. Discard the 5883’s …

Text truncated - open the document above for the full version.

Cover Letter(s)

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 October, 22, 2005 Subject: Application for Certification of Honeywell’s Security Device type: 5883-2 FCC ID: CFS8DL5883-2 Dear Sir or Madam: Please find (e-filed) a 731 application form and 159 payment form (payment via credit card) 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 This is for the certification of Honeywell’s 5883-2 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. 6920 Regards, Greg Barbato For Ken Addy Director Radio Engineering

ID Label/Location Info

NOTE: WHEN CIRCUIT BOARD IS MOUNTED IN CONTROL'S CABINET, GROUNDING LUGS (2) PROVIDED MUST BE INSERTED IN LEFT- HAND TERMINALS OF ANTENNA BLOCKS AND SECURED TO CABINET (SEE RECEIVER'S AND CONTROL'S INSTRUCTIONS). WHEN BOARD IS MOUNTED IN A SEPARATE CABINET (COMMERCIAL FIRE APPLICATION), DO NOT USE THE GROUNDING LUGS. FOR COMMERCIAL FIRE APPLICATION. MOUNT BOARD IN SEPARATE CABINET AND SECURE WITH TWO SCREWS (NOT SUPPLIED) WITH INSULATING WASHERS BENEATH THE HEADS (SEE RECEIVER'S INSTRUCTIONS). FCC ID CFS8DL5883-2 165 Eileen Way, Syosset, New York 11791 Copyright © 2000 PITTWAY CORPORATION ÊK5501|Š 6 - 1/2" 2 - 1/4" . IC: 573F-58832 USE MAX. OF 220 ft. (67m) OF #22 (0.64mm) WIRE OR 550 ft. (168m) OF #18 (1mm) WIRE FOR EACH 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. 5883 SUMMARY OF CONNECTIONS RF INTERFERENCE RED INDICATOR REDYELGRN TAMPER SWITCH TAMPER SWITCH DIP SWITCH ON OFF 23 456781 ON OFF 23456781 5883 CIRCUIT BOARD MOUNTING HOLES (4 PLACES) ANTENNAS (INSERT IN RIGHT-HAND TERMINALS) YELLOW RED BLACK GREEN WIRING RUN. 20 ft. MAX. IN COMMERCIAL FIRE INSTALLATIONS. OPENING KNOCKOUT AREA FOR SURFACE WIRING TO CONTROL'S REMOTE KEYPAD CONNECTION POINTS TO RELEASE CIRCUIT BOARD, BEND BACK TABS SOCKET PLUG Sw. Function DIP SWITCH FUNCTIONS 3 4 6 - 8 5 2 1 Not used Device Address Settings Transmitter: Commercial / Non-commercial Fire Installation: ON = commercial fire installation OFF = non-commercial fire installation Non- Addr. OFF OFF ON ON OFF OFF ON ON OFF ON OFF ON OFF ON OFF ON OFF OFF OFF OFF ON ON ON ON 28 29 30 27 28 29 30 Not used Receiver: K5501 6/00 DIP SWITCH 1 2 3 4 5 6 7 (ADDRESS 29 SHOWN)

Operational Description

EXHIBIT 2-1 CIRCUIT DESCRIPTION CFS8DL5883-2 SECTION 2.1033(b) SECTION 2.1033(b) (2a). For Part 15 a statement describing how the device operates. The 5883-2 contains a receiver and transmitter on a single board. In receive mode, signals from the antennas ( ANT1 & ANT2 ) are diversity switched by U5 ( MICRO ) via ( SWITCH ) CR7 & CR8. The signal is then amplified by Q3 etc. ( LNA ) and fed into U1 ( RECEIVER IF BLOCK ) the LO: Q5, Y3, etc. ( L0 ) is also fed into U1. The raw base band is then sent to U2 the ( FILTER ) and from there sent to U5 ( MICRO ) for processing. In transmit mode U5 the ( MICRO ) turns on Q15 ( SWITCH ) applying VCC to Q14 etc. the ( OSCILLATOR ) who’s FDE is Y8 ( SAW ). This signal is then amplified by Q10 etc. the ( PA ) and ON/OFF MODULATED by Q16, Q12, & Q11 the ( MODULATOR ) matching circuit L13,C67, C65, C64 feed the transmit signal into CR7 & CR8 the ( SWITCH ) so that it can be sent in diversity via the antennas ( ANT1 & ANT2 ). U5 the ( MICRO ) makes power level adjustments depending upon the message length. This is done by changing the current through the modulator, via Q13 etc.

Operational Description

EXHIBIT 3-1 TIMING / DUTY CYCLE CALCULATION CFS8DL5883-2 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. 'SHORT MESSAGE' The data output is phase encoded Manchester which has inherent 50% duty cycle. The transmitted data rate is 3.676 kBs +/-0.05%, i.e. each bit is 272uS duration typical and 272.13uS max. The worst case data format consists of 120 bits, The duration of each word is 32.655 mSec max. Each word is transmitted 5 times at each transmission event, the words are separated (start to start) by 105mSec max.. Total max transmission time at each transmission = 452.655mSec. The duty cycle over a 100mSec measuring period is as follows: Duty Cycle = Actual RF transmission ON time / 100mSec (interval) Actual transmission ON time = 120 bits X 50% X 272.13uSec = 16.33mSec Therefore Duty cycle = 16.33 / 100 mSec = .1633 =16.33% 'LONG MESSAGE' The data output is phase encoded Manchester which has inherent 50% duty cycle. The transmitted data rate is 10kBs +/-0.05%, i.e. each bit is 100uS duration typical and 100.05uS max. The worst case data format consists of 440 bits, The duration of each word is 44.02 mSec max. Each word is transmitted 5 times at each transmission event, the words are separated (start to start) by 105mSec. Total max transmission time at each transmission = 464.02mSec. The transmitter is inhibited from further transmission of the long message for 15 seconds after each transmission The duty cycle over a 100mSec measuring period is calculated as follows: Duty Cycle = Actual RF transmission ON time / 100mSec (interval) Actual transmission ON time = 440 bits X 50% X 100.05uSec = 22.011mSec Therefore Duty cycle = 22.011 / 100 mSec = .22011 = 22.01%

Test Report

EXHIBIT 5-1 Report of Measurements. CFS8DL5883-2 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.

Test Report

HONEYWELL SECURITY & CUSTOM ELECTRONICS 165 EILEEN WA Y SYOSSET, NY 11791EXHIBIT 5-3 PAGE 1 of 2 FCC ID # CFS8DL5883-2 Date : 06/16/2005 Tested by :G. Blakely Approved by :K.Addy Test Sample (model) : 5883 Test method: ANSI C63.4 - 1992 Test specification: FCC Part 15, Sub-part C 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"BICONILOG729 345H72.001.214.7825061.122.0%5513.47292 690H35.801.819.10683.922.0%150.5729 1035H42.202.222.702264.622.0%498.2500 1380H31.402.524.96877.022.0%192.9500 1725H40.002.827.553292.322.0%724.3729 2070H30.103.029.521352.122.0%297.5729 2415H28.603.331.131417.422.0%311.8729 2760 H 25.003.7 31.501023.322.0%225.1729 HONEYWELL SECURITY & CUSTOM ELECTRONICS 165 EILEEN WA Y SYOSSET, NY 11791EXHIBIT 5-3 PAGE 2 of 2 FCC ID # CFS8DL5883-2 Date : 06/16/2005 Tested by :G. Blakely Approved by :K.Addy Test Sample (model) : 5883 Test method: ANSI C63.4 - 1992 Test specification: FCC Part 15, Sub-part C 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"BICONILOG729 345H75.301.214.7836643.816.3%5972.97292 690H38.101.819.10891.316.3%145.3729 1035H44.802.222.703054.916.3%498.0500 1380H29.802.524.96729.516.3%118.9500 1725H42.602.827.554441.216.3%723.9729 2070H30.203.029.521367.716.3%222.9729 2415H27.903.331.131307.716.3%213.2729 2760 H 24.803.7 31.501000.016.3%163.0729

Test Report

EXHIBIT 6 TEST EQUIPMENT USED CFS8DL5883-2 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

Test Setup Photos

EXHIBIT 5-2 PICTURE OF THE TEST SETUP CFS8DL5883-2 SECTION 2.1093 (c) SECTION 2.1093 (c) Photo of the test setup shall be provided.

Contact Information

Applicant

Christian Fouth(Sr. Wireless Certification Engineer)
[email protected]15406566372Fax: 17639544816

Technical Contact

Honeywell International Inc.Ken L Addy
[email protected]

165 Eileen Way · Syosset, New York · United States

Non-Technical Contact

Honeywell International Inc.Ken L Addy
[email protected]

Test Firm

Honeywell International Inc.Kenneth Addy
[email protected]516-921-6704Fax: 516-921-7182

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231345 MHz - 345 MHz-

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