
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
N7635-1V2 12/07 Rev. A ADEMCO 5882AP RF RECEIVER INSTALLATION AND SETUP GUIDE GENERAL INFORMATION The 5882AP RF receiver is designed for use with control panels that support an RF receiver connection via the remote keypad connection points. The receiver recognizes alarm, status and keypad control messages from wireless transmitters operating at 315 MHz. One or two individually identified receivers can be employed, depending on the control used. Connection of multiple receivers to a control can provide redundant coverage or extend coverage in large areas. Multiple receivers do not increase the number of transmitters that the system can support. See the control's instructions for specific information regarding the number and type of receivers that can be supported. These receivers feature a Spatial Diversity System which virtually eliminates the possibility of "Nulls" and "Dead Spots" within the coverage area. The 5882AP RF receiver is used in conjunction with 5800AP series transmitters. The number of zones that the 5882AP receiver can support depends on the control with which it is used. See the control panel’s instructions for specific details. If a receiver is connected to a system in which more than the permitted number of wireless zones have been programmed, a "SET UP ERROR" message (alpha keypads) or an "E4" or “E8" message (fixed-word keypads) will be displayed on the system's keypad, and none of the zones will be protected. The instruction manual that accompanies the control includes recommendations regarding receiver and transmitter locations, the types of wireless zones that can be programmed (e.g., ENTRY/EXIT, PERIMETER, INTERIOR, etc.), and the procedure for programming the receivers. These receivers should not be installed in an area subject to environmental extremes of below freezing (such as in a refrigerated area) or extremely high temperatures (such as an attic). INSTALLATION With some controls, a receiver may be mounted directly inside the control's cabinet (receiver circuit board only, without its plastic housing) instead of remotely (in its own housing). In both cases, avoid mounting the receiver antennas against a metal surface. 1. Remove the receiver's cover by inserting and twisting a screwdriver blade in the slot at the center of the cover's lower edge. 2. If the receiver is to be mounted within the control's cabinet (refer to Figure 1): a. Remove the receiver's circuit board from its base by bending back the two flexible plastic tabs that hold the board's lower edge. b. In the control's cabinet, unfasten and move the control circuit board downward (if already installed). c. Hang two mounting clips (provided with the receiver) on the raised cabinet tabs, as shown in Detail B of Figure 1. d. Insert the top of the receiver board between the rows of slots at the top of the cabinet, as shown in Detail A. e. Position the base of the receiver board onto the mounting clips, and secure it to the cabinet with the supplied screws. See Detail B. f. Hang two mounting clips (supplied with the control board), on the raised cabinet tabs as shown in Detail C in Figure 1. g. Insert the top of the control board into the slots of the mounting clips secured in step e above. h. Position the lower end of the control board into place on the mounting clips and secure both to the cabinet with the two supplied screws. i. Insert both grounding lugs (supplied with the receiver) through the top of the cabinet into the left hand terminals of the antenna blocks (located on the upper edge of the receiver board), and secure them to the cabinet with the screws provided, as shown in Detail D. j. Insert the receiver’s antennas through the top of the cabinet, into the block’s right-hand terminals, and tighten the screws. k. Affix the receiver's Summary of Connections label to the inside of the control's cabinet door. l. Discard the receiver's unused plastic cover and base. 3. If the receiver is to be located remotely from the control in its own plastic enclosure (not in a cabinet): You will not need the circuit board mounting clips, grounding lugs, and screws included with the receiver. a. If concealed wiring is to be used, route it 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. b. Mount the receiver in the selected location. For greatest security, use all four mounting holes (two key slot holes and two round holes) provided in the plastic base. c. Affix the receiver's Summary of Connections label to the inside of the housing cover. 4. Setting the DIP switches Set the receiver's DIP switch to identify the receiver's address (refer to the DIP switch chart in Figure 2). 5. Insert the wiring plug (with 4 flying leads) into the mating socket on the receiver (see Figure 2 for socket location). Connect the 4 wires to the control's corresponding remote keypad connection points (see “Interface Wiring” in the SPECIFICATIONS section). 2 6. Install the antennas in the right-hand terminals of the two terminal blocks at the upper edge of the circuit board, one into each block’s right-hand terminal, and tighten the screws to secure them. If the receiver is mounted in a cabinet, insert the antennas through the holes in the cabinet's top first, and then into the terminal blocks. 7. Replace the receiver's cover if the receiver is not mounted within a cabinet. 8. Proceed with any programming of the control that may be necessary for RF operation, and the installation of the system's wireless transmitters, as described in the control's installation instructions. 9. The LED located on the receiver's circuit board should be used as an indicator of strong local radio frequency interference. If this LED is continuously illuminated, the receiver should be relocated. SPECIFICATIONS Operating Frequency: 315 MHz Dimensions: 188mm W x 112mm H (277mm w/antennas) x 37mm D. Input Voltage: 12VDC (from control’s remote key…
Text truncated - open the document above for the full version.
REPLY TO TIM 01-16-08 January 16, 2008 RE: Honeywell International Inc. FCC ID: CFS8DL5882AP-1 After a review of the submitted information, I have a few comments on the above referenced Application. Depending on your responses, kindly understand there may be additional comments. 1) The IC CN Number does not match IC form. Which is correct? PLEASE SEE EXHIBIT 8B 2) Conducted setup photo is misleading and still appears to be much higher than 40 cm. Can a photo be supplied to show height (i.e. include a tape measure)? Note does not necessarily need to include the test setup as this is previously provided. ACCORDING TO C63.4 WE ARE ALLOWED TO USE AN ALTERNITIVE 80 cm TABLE. 3) If power is supplied from the right side, test photos do not appear to support this for radiated emissions. Please explain/review. THERE IS A CUTOUT IN THE BACK THAT WE RUN THE POWER LEAD OUT OF. THE ORIGINAL PICTURE SHOWS THE LEAD SO THAT YOU CAN SEE WHERE POWER ENTERS THE BOARD. PLEASE SEE EXPLANITORY AUX. PHOTO. 4) Please adjust the equipment type on the 731 for CYY. PLEASE SEE 5882AP-1 TCB 731A 5) Test configuration for conducted emissions appears different. Please explain. If powered through another device, a block diagram of the setup or other reasonable information should be provided to adequately support how the device was tested. THE EUT WAS ON THE 80 cm TABLE, THE LISN IS IN THE LOWER LEFT OF THE PICTURE, THE SPECTRUM ANALYZER IS OUTSIDE OF THE SCREEN ROOM. 6) Regarding conducted emissions, MHz is still misleading. 5.0 MHz = 5 e+6 Hz. Note that the first 2 readings would appear to be 150000 MHz given the nature of the table, but this is actually Hz or 150 kHz. PLEASE SEE RELABLED 5882AP-1 EXHIBIT 5-6A 7) RX tests require a nearby signal generator radiating at the fundamental. See ANSI C63.4 12.1.1.2. Please Review. THERE IS NO DIFFERENCE IN OPERATION OR EMISSIONS WITH OR WITHOUT THE SIGNAL GENERATOR. 8) Radiated Data and AC conducted data shows 15.207, 15.231 and limits that are not applicable. This is an incorrect reference for a RX. RX’s fall under 15.109 and 15.107 requirements. Please adjust. Note that appropriate procedures must be shown. PLEASE SEE 5882AP-1 EXHIBIT 5-3A & 5-6A 9) AC powerline plots show high emissions around 6 MHz (only a few dB margin). However all data is showing 40+ dB margin. Please explain. PLEASE SEE CLARIFICATION ON 5882AP-1 EXHIBIT 5-6 Page 1
Greg, Much closer, but have the following concerns: 1) should be 40 cm from back wall to rear of table. 2) should be 80 cm high from table top to floor. I'm going to guess looking at the photo that the distance to floor is 40 cm and the distance between back of table and wall is < 40 cm. It would also be ideal that both units are positioned along the back edge of the table with 10 cm spacing’s between the units. The RX can be upright or flipped with antennas facing away from the wall so that the main part of the case is along the back edge. Also, the reply should be adjusted to show a brief block diagram of setup for conducted emissions (comment 5) Tim TIM: PLEASE SEE THE PICTURE BELOW; IT HAS THE DISTANCES WRITTEN ON IT. PLEASE GO TO THE NEXT PAGE:.................. TIM: PLEASE REFER TO THE BLOCK DIAGRAM BELOW. PLEASE SEE NEXT PAGE: TIM: PLEASE NOTE THAT THE DATA DID NOT CHANGE: Honeywell Conducted Emissions - 150 kHz - 30 MHz Neutral 100.0K1.0M10.0M100.0M Frequency 0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 Amplitude (dBμV) Equipment ID: 03:18:03 PM, Thursday, January 17, 2008 C:\tile\Greg\FCC_cond.TIL Operator: GREG Top 10 Points Class B AVG Class B QP quasi-peak average peak Honeywell Conducted Emissions - 150 kHz - 30 MHz Line 1 100.0K1.0M10.0M100.0M Frequency 0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 Amplitude (dBμV) Equipment ID: 03:19:53 PM, Thursday, January 17, 2008 C:\tile\Greg\FCC_cond.TIL Operator: GREG Top 10 Points Class B AVG Class B QP quasi-peak average peak
EXHIBIT 8 THE FCC / IC LABEL CFS8DL5882AP-1 / 573F-5882AP1 SECTION 2.1033 (c) and Part 15.21 & 15.19 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. “ Our Statement also refers to Industry Canada; which has equivalent labeling requirements: “ 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 also displays the IC ID and a IC Model Number. LOCATION OF LABEL: Engineers drawing of the label is on the next page... GREEN LED: NORMALLY OFF ONE SHORT FLASH - RF MESSAGE DECODED ONE LONGER FLASH - COMMAND RECEIVED FROM CONTROL NOTES: WHEN AN ENCRYPTED TRANSMITTER IS SUCCESSFULLY ENROLLED, LED FLASHES A NUMBER OF TIMES THAT IS EQUAL TO THE SPACE AVAILABLE FOR ADDITIONAL ENCRYPTED KEYS. THE GREEN LED IS ALSO USED WHEN CHECKING ENCRYPTED KEY SPACE AVAILABLE AND PERFORMING DELETIONS. SEE ENCRYPTED KEYS DESCRIPTION FOR DETAILS. 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). YELLOW RED BLACK GREEN USE MAX. OF 220 ft. (67m) OF #22 (0.64mm) WIRE OR 550 ft. (168m) OF #18 (1mm) WIRE FOR EACH RUN. 20 ft. MAX. IN COMMERCIAL FIRE INSTALLATIONS. (SEE RECEIVER'S INSTRUCTIONS). TO CONTROL'S KEYPAD TERMINALS. EACH RECEIVER MUST BE ON INDIVIDUAL HOME RUN. SWITCH RECEIVER ADDRESS SETTINGS POSITION (“—” means “OFF”) 01234567 5 (MUST BE IN OFF POSITION) 4—ON—ON—ON—ON 3——ON ON——ON ON 2————ON ON ON ON 1 5 4 3 2 1 ON OFF MUST BE IN OFF POSITION DIP SWITCH: WHITE AREAS = SWITCH HANDLES POSITION 2-4: DETERMINE RECEIVER'S ADDRESS ANTENNAS INSERT IN RIGHT-HAND TERMINALS DIP SWITCH MOUNTING HOLES CIRCUIT BOARD INTERFERENCE INDICATOR LED WIRING OPENING PLUG AND SOCKET N7636-2V1 1/08 Rev. A SUMMARY OF CONNECTIONS 5882AP RF RECEIVER DIP SWITCH BELOW SHOWN SET FOR ADDRESS "0". CONSULT CONTROL'S INSTRUCTIONS FOR ADDRESS TO USE. TO RELEASE CIRCUIT BOARD, BEND BACK BOTTOM TABS (2). 6-3/4" 2-1/4" FCC ID: CFS8DL5882AP-1 IC: 573F-5882AP1 IC MODEL: 5882AP-1 This device complies with Part 15 of FCC and RSS210 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. 2 Corporate Center Drive, Suite 100 P.O. Box 9040, Melville, NY 11747 Copyright © 2007 Honeywell International Inc. www.honeywell.com/security ÊN7636-2V1!
EXHIBIT 4-3 PCB IN PLASTIC CFS8DL5882AP-1 / 573F-5882AP1
EXHIBIT 1-1 CFS8DL5882AP-1 / 573F-5882AP1 FUNCTIONAL DESCRIPTION The 5882AP-1 is a new board layout of our 5882AP receiver; ( FCC ID: CFS8DL5882AP) it is identical in function and operation. This revision also relaces a microprocessor that went obsolete. The 5882AP-1 like the 5882AP, is used for reception of our 315 MH z transmitters such as the CFS8DL5816AP, and CFS8DL5804AP, etc.
EXHIBIT 5-1 CFS8DL5882AP-1 / 573F-5882AP1 Report of Measurements . Measurements for the Intentional Radiator, Unintentional 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 for Conducted Emissions were made in accordancewith the procedures and reporting requirements at: Honeywell’s QA Measurement Facility which is also 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 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, The Spectrum Analyzer resolution bandwidths set as follows; (Video Bandwidth is always set 3X 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".
EXHIBIT 5-5 CFS8DL5882AP 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: FREQUENCYFIELD STRENGTH IN MHZ:IN uV / M: 30-88................................... 100 88-216................................. 150 216-960............................... 200 Above 960........................... 500 (4) Fo = 315MHz.LO = 304.3MHz(315-10.7 ) Crystal frequency = 50.71666 (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 : 11/05/2007 Tested by :Y. Mohammed 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"+"B"BICONOLOG604 50.716h24.000.3015.6098.9100.0%98.9100 101.433h24.001.4010.2160.3100.0%60.3150 152.150h24.001.6013.4189.2100.0%89.2150 202.867h24.002.0011.6376.1100.0%76.1150 253.583h24.002.2012.0381.6100.0%81.6200 304.300h24.002.5013.3297.9100.0%97.9200 355.017h24.002.6015.06121.1100.0%121.1200 405.733 h24.00 2.80 16.43145.0100.0%145.0200 456.450h24.003.0016.40147.9100.0%147.9200 507.167h24.003.1016.73155.4100.0%155.4200 557.883h24.003.2017.97181.3100.0%181.3200 608.600h24.003.5018.1190.5100.0%190.5200 4000 CABLE "A"+"B"BICONOLOG Note: Limit = 500 uV/m above 960 MHz
EXHIBIT 5-6 CONDUCTED EMISSIONS CFS8DL5882AP-1 / 573F-5882AP1 15.107 Conducted Limits. (a) Except for Class A digital devices, for equipment that is designed to be connected to The public utility (AC) power line, the radio frequency voltage that is conducted back onto the AC power line on any frequency or frequencies within the band 150 kHz to 30 MHz shall not exceed the limits in the following table, as measured using a 50 μH/50 ohms line impedance stabilization network (LISN). Compliance with the provisions of this paragraph shall be based on the measurement of the radio frequency voltage between each power line and ground at the power terminal. The lower limit applies at the band edges. --------------------------------- --------------------------------------- Conducted limit (dBμV) Frequency of emission (MHz) Quasi-peak Average --------------------------------- --------------------------------------- 0.15-0.5................ 66 to 56*........ 56 to 46* 0.5-5.......................... 56................. 46 5-30........................... 60................. 50 -------------------------------- ---------------------------------------- * Decreases with the logarithm of the frequency. Honeywell Conducted Emissions - 150 kHz - 30 MHz Line 1 100.0K1.0M10.0M100.0M Frequency 0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 Amplitude (dBμV) Equipment ID: 03:19:53 PM, Thursday, January 17, 2008 C:\tile\Greg\FCC_cond.TIL Operator: GREG Top 10 Points Class B AVG Class B QP quasi-peak average peak Honeywell Conducted Emissions - 150 kHz - 30 MHz Neutral 100.0K1.0M10.0M100.0M Frequency 0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 Amplitude (dBμV) Equipment ID: 03:18:03 PM, Thursday, January 17, 2008 C:\tile\Greg\FCC_cond.TIL Operator: GREG Top 10 Points Class B AVG Class B QP quasi-peak average peak NOTE: THERE IS NO TABULATED DATA BECAUSE ALL OF THE PEAKS WERE LESS THAN THE QP LIMIT!
EXHIBIT 6 TEST EQUIPMENT USED CFS8DL5882AP-1 / 573F-5882AP1 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 10/16/07 10/16/08 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 CFS8DL5882AP-1 / 573F-5882AP1 PICTURES OF THE TEST SETUP HONEYWELL OATS SITE: SENSE HORZ, UUT HORZ: SENSE HORZ, UUT VERT: SENSE HORZ, UUT OBLQ.: SENSE HORZ, UUT HORZ: SENSE HORZ, UUT VERT: SENSE HORZ, UUT OBLQ.: TECH RUNNING TEST: HONEYWELL CONDUCTED EMISSIONS TEST SETUP:
2 Corporate Center Drive · Melville, New York · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15B | 315 MHz - 315 MHz | - |

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