
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
INSTALLATION INSTRUCTIONS General Information The 5804BDV is a four-button wireless key that permits the user to control the alarm system remotely. It is a two-way device that can send a command to the alarm system, such as to arm or disarm, as well as receive status back. Status is indicated by two bi-color status LEDs and a piezoelectric sounder. Each button can be programmed for any zone response type, but is typically used for arming, disarming, panic, and output relay operation. 1. The 5804BDV must be used in conjunction with one of the following: β’ 5800TM (Transmitter Module) and a 5881or 5881EN*receiver. β’ 6128RF receiver. β’ Lynx control panel. 2. Place the 5881 or 5881EN receiver and the 5800TM 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. *Must be used to activate High-Security mode. The unit is powered by 2 replaceable Lithium batteries designed to provide up to 2 years of life. These batteries are supplied with the unit but not installed (see βTo Install/Replace Batteriesβ for more information). 5804BDV Front View Belt Clip Loop Assignments: β’ Button A =>Loop 3 β’ Button B =>Loop 2 β’ Button C =>Loop 4 β’ Button D =>Loop 1 Note : To Remove or Insert the Unit from Belt Clip To Install / Replace Batteries 1. Remove the screw from the case back. 2. Remove case back by using the blade of a small screwdriver to pry open. 3. Place batteries in case back locations (see diagram). Use CR2430 or DL2430 Lithium battery only. 4. Close the case by snapping case front and back together. 5. Replace the screw to secure the case. WARNING! Improperly installing the batteries will cause damage to the batteries . Programming the 5804BDV 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 must be same as the one used in the alarm control. The House ID must be in the range of 01 to 31. The default in the 5804BDV is 10. To Enter a House ID 1. Enter House ID mode by pressing the β A ,β β B ,β and β C β buttons at the same time until the Red and Green LEDs alternate flashing. 2. Enter the House ID number by using the β A β button to enter the 10βs digit and the β B β button to enter the 1βs digit. Note: If the entry is out of range (greater than 31), the unit will discard the entry. 3. Accept the entry by pressing the β D β button. 4. The unit displays the stored number by flashing the left LED for the 10βs digit and flashing the right LED for the 1βs digit (for example, for House ID 21, the left LED will flash twice, the right LED will flash once). 5. The unit will then exit the House ID mode. Example: To enter House ID # 17 into the unit: 5804BDV TWO-WAY WIRELESS KEY WITH VOICE STATUS Enter HID mode: Press A + B + C buttons until LEDs flash . Enter HID # 17: Press & release A button once, press & release B button 7 times . To accept entry, press D button . 123 4 HID will be shown by flashing LEDs. Then exit HID mode. K3635V1 5/00 β 2 β To View the House ID 1. Enter House ID mode as described in step 1 (previous page). 2. Depress the β D β button to view. 3. The unit will display the stored number as described in step 4 (previous page). The unit will then exit House ID mode. Programming a House ID in the Alarm Control β’ On VISTA-40, 50P, 100, and above, use Device Programming mode to enable the RF receiver and enter the House ID number. β’ On VIA-30PSE, VISTA-20SE, and below, go to field V 24 and enter the House ID number. Programming the Buttons Each 5804BDV is assigned a unique serial number during manufacture. Each button on the unit also has a unique βloopβ number that must be programmed into the alarm control during installation. Assign each button to an individual zone number and program the Input Type as βBRβ (Button Type RF) by entering β 5 β in the controlβs Zone Programming mode. Then, input the serial number by one of the following methods: β’ Transmit twice from the device by pressing one of the buttons when prompted for the serial number. β’ Enter the serial number manually through the keypad. β’ Enter the serial number through V-LINK or 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 5804BDV for 24-hour silent alarm, as the unit itself is not silent. Button C If you choose not to use the β C β button, you must do the following to avoid a βCheckβ 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 βZone Typeβ prompt, enter 00 and press [ V ]. a) On VIA-30 controls 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-40 and above, continue to press [ V ] until you see the βEnter Zone No?β prompt again. At this point, Press 00 and [ V ]. Then press V 99 to exit Program mode. On VISTA-40 and Above If a button is assigned to zone type 20 (Arm Stay), 21 (Arm Away), or 22 (Disarm), you must assign a user to the button in order for it to operate. To assign a user number to the Arm/Disarm button: 1. Enter [4-digit User Code] + 8 + [User No.] + [4-digit new User Code]. 2. Answer Yes or No to the βOpen/Close Report?β question. 3. Answer Yes to the βRF Button?β question. 4. Enter the zone number assigned to the Arm/Disarm button. The keypad will show the summary of user information on its display. 5. Test the Arm/Disarm button to make sure it operates correctly. Activating High-Security Mode In order to activate this device in High-Security mode you must use a 5881EN receiver. 1. Program the 5804BDV in Zone Programming mode as usual. 2. After programming the unit, exit Zone Programming mode. 3. Enter Go/No Go mode at the control panel (seβ¦
Text truncated - open the document above for the full version.
EXHIBIT 1-1 CFS8DL5804BDU FUNCTIONAL DESCRIPTION The 5804BDU 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 5804BD-MX (CFS8DL5804BDMX), but can also send an alternative message type for high security applications.
EXHIBIT 2-1 CFS8DL5804BDU CIRCUIT DESCRIPTION The Transmitter is a amplitude keyed oscillator (Q1,. etc.,) who's FDE is a saw YL2, it is keyed on and off by Q2. The messages are generated by MICROPROCESSOR (U4). The receiver is a single chip receiver (U1) whos LO is controled by YL1 The Antenna ckt. (C2, C11,ANT.,) couples though a band-pass filter (FL2) into U1. The baseband signal is applied to U4 for decoding.
EXHIBIT 3-1 PAGE 1 OF 2 CFS8DL5804BDU 5804BDU Duty Cycle Calculation 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 EXIBIT 3-1 PAGE 2 OF 2 CFS8DL5804BDU DUTY CYCLE CALCULATION HCS 300 ENCODER MESSAGE Data T E 3+1+10+11+4 = 29 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)
U2
EXHIBIT 5-1 CFS8DL5804BDU Report of Measurements. Measurements were made at Ademco 's Measurement Facility at 160 Eileen Way , Syosset , NY 11791 , FCC Registration number : 90421. 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 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. OCCUPIED BANDWIDTH is shown on attached plot. RADIATED EMISSIONS are recorded on attached sheet.
Frequency (MHz) Antenna Polarity ( V-H ) Meter Reading (dB uV) Cable/Amp Factor ( dB ) Antenna Factor (dB/M) Converted Reading ( uV/M ) Duty Cycl e ( % ) Corrected Reading ( uV/M ) Limit @ 3 Meter ( uV/M ) 30 H 10 729 345 V 70.61 2.3 16.11 28,248.8 10 2,824.9 7,290 690 V 39.00 3.2 21.46 1,524.0 10 152.4 729 1035 H 40.17 3.9 25.47 2,9991 10 299.9 500 1380 H 33.67 2.6 29.35 2,404.0 10 240.4 500 1725 V 32.33 5.3 31.30 2,795.8 10 279.6 729 2070 H 31.00 6.3 28.26 1,896.7 10 189.7 729 2415 H 31.00 6.8 29.53 2,325.4 10 232.5 729 2760 H 31.00 7.0 30.18 2,564.5 10 256.5 729 3105 H 31.00 7.4 30.76 2,870.8 10 287.1 729 3450 H 29.67 12.0 31.00 4,461.2 10 446.1 729 4000 H 10 729 MAY, 09, 2003 GREG BARBATO KEN ADDY DATE:____________________ TESTED BY:_________________________APPROVED BY:________________________ ADEMCO 5804BDU (TRANSMITTER) TEST SAMPLE (model): _______________________________________________________________________________ TEST METHOD: ANSI C63.4-1992 TEST SPECIFICATION: FCC PART 15, SUBPART C. NOTES: 1) Fo= 345 MHZ 2) DETECTOR = PEAK. 3) FREQUENCY RANGE SCANNED TO 4 GHz. (METER READING +CABLE /AMP FACTOR +ANTENNA FACTOR) 20 4) CONVERTED READING = 10 5) CORRECTED READING = CONVERTED READING X DUTY CYCLE 6) SIX HIGHEST EMISSIONS RECORDED. ALARM DEVICE MANUFACTURING COMPANY 165 EILEEN WAY CFS8DL5804BDU SYOSSET, NY 11791 FCC ID#____________________
Frequency (MHz) Antenna Polarity ( V-H ) Meter Reading (dB uV) Cable/Amp Factor ( dB ) Antenna Factor (dB/M) Converted Reading ( uV/M ) Duty Cycl e ( % ) Corrected Reading ( uV/M ) Limit @ 3 Meter ( uV/M ) 30 H 14.3 729 345 V 70.61 2.3 16.11 28,248.8 14.3 4,039.6 7,290 690 V 39.00 3.2 21.46 1,524.0 14.3 217.9 729 1035 H 40.17 3.9 25.47 2,9991 14.3 428.9 500 1380 H 33.67 2.6 29.35 2,404.0 14.3 343.8 500 1725 V 32.33 5.3 31.30 2,795.8 14.3 399.8 729 2070 H 31.00 6.3 28.26 1,896.7 14.3 271.2 729 2415 H 31.00 6.8 29.53 2,325.4 14.3 332.5 729 2760 H 31.00 7.0 30.18 2,564.5 14.3 366.7 729 3105 H 31.00 7.4 30.76 2,870.8 14.3 410.5 729 3450 H 29.67 12.0 31.00 4,461.2 14.3 638.0 729 4000 H 10 729 MAY, 09, 2003 GREG BARBATO KEN ADDY DATE:____________________ TESTED BY:_________________________APPROVED BY:________________________ ADEMCO 5804BDU (TRANSMITTER SPECIAL MESSAGE) TEST SAMPLE (model): _______________________________________________________________________________ TEST METHOD: ANSI C63.4-1992 TEST SPECIFICATION: FCC PART 15, SUBPART C. NOTES: 1) Fo= 345 MHZ 2) DETECTOR = PEAK. 3) FREQUENCY RANGE SCANNED TO 4 GHz. (METER READING +CABLE /AMP FACTOR +ANTENNA FACTOR) 20 4) CONVERTED READING = 10 5) CORRECTED READING = CONVERTED READING X DUTY CYCLE 6) SIX HIGHEST EMISSIONS RECORDED. ALARM DEVICE MANUFACTURING COMPANY 165 EILEEN WAY CFS8DL5804BDU SYOSSET, NY 11791 FCC ID#____________________
Frequency (MHz) Antenna Polarity ( V-H ) Meter Reading (dB uV) Cable/Amp Factor ( dB ) Antenna Factor (dB/M) Converted Reading ( uV/M ) Duty Cycle ( % ) Corrected Reading ( uV/M ) Limit @ 3 Meter ( uV/M ) 334.288 H 18.17 2.3 16.11 67.45 ---- 67.45 200 MAY, 09, 2003 GREG BARBATO KEN ADDY DATE:____________________ TESTED BY:_________________________APPROVED BY:________________________ ADEMCO 5804BDU (RECEIVER) TEST SAMPLE (model): _______________________________________________________________________________ TEST METHOD: ANSI C63.4-1992 TEST SPECIFICATION: FCC PART 15, SUBPART C. NOTES: 1) LO = 334.288 MHZ 2) DETECTOR = PEAK. 3) FREQUENCY RANGE SCANNED TO 4 GHz. (METER READING +CABLE /AMP FACTOR +ANTENNA FACTOR) 20 4) CONVERTED READING = 10 5) CORRECTED READING = CONVERTED READING X DUTY CYCLE 6) SIX HIGHEST EMISSIONS RECORDED. ALARM DEVICE MANUFACTURING COMPANY 165 EILEEN WAY CFS8DL5804BDU SYOSSET, NY 11791 FCC ID#____________________
EXHIBIT 6 CFS8DL5804BDU Test Equipment list 1. Antenna: RGA-60 S/N: 3127 Cal. on: 04/30/03 Cal. due: 04/30/04 2. Antenna: Log Periodic S/N: 447 Cal. on: 04/30/03 Cal. due: 04/30/04 3. Spectrum Analyzer R3131 S/N: J006152 Cal. on: 04/21/03 Cal. due: 04/21/04
A Division of Pittway Corporation Β· Syosset, New York Β· United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 345 MHz - 345 MHz | - |

Wireless Alarm Transmitter
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Wireless Alarm Transmitter
Equipment Class
DTS - Digital Transmission SystemVX5 HD Indoor Camera
Equipment Class
DTS - Digital Transmission System
VX3 HD Outdoor Camera
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Wireless door/window contact
Equipment Class
DTS - Digital Transmission System