
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Shearwater Digital Innovations – Installation Guide 1 Exterior Window / Door Security Sensor Installation Instructions The Exterior Window / Door Sensor/Transmitter detects when a window is closed or opened, and transmits a wireless security message to the System Control Panel. This is accomplished through the use of a sensor unit (which contains the wireless transmitter and battery), and magnet unit. When the two are separated, by opening the window, the sensor transmits an open (TRIP) signal to the System Control Panel. When the window is shut, the magnet is again within the sensor's range, and a close (RESTORE) signal is sent. Fig 1: Sensor and Magnet SensorMagnet The sensor sends supervisory signals to the panel every 64 minutes (approximately). The sensor is powered by a 3.0V, lithium battery, model CR2032. Required Tools for Installation ! Installation Sheet for documenting sensor locations ! Screwdriver (if mounting using screws instead of adhesive) Guidelines The following guidelines will help ensure that installations are safe and efficient. ! A sensor can be mounted on any side of the window frame (top, side or bottom), such that the opening of the window moves the magnet away from the sensor. ! Always try to mount the hardware such that the magnet, not the sensor, is on the moving window panel. The sensor can be installed on the moving window panel, but should be avoided. ! The device can be mounted on a metal frame, however range can decrease slightly. Do not install the sensor on the frame until after the panel has “learned” the sensor’s unique code (see LEARN SENSORS). ! Sensor’s should be kept as close to the panel or repeater as possible. Try to chose locations where the separation is within 100 ft. ! Avoid mounting the sensor in a location where it will be exposed to moisture. ! Avoid mounting a sensor where temperatures are excessively hot or cold. ! WARNING: Some installations may have electrical wiring running through the door or window frames. Use caution to avoid electrical shocks . Shearwater Digital Innovations – Installation Guide 2 Preparation 1. Determine a suitable location for the sensor and the magnet. These units are meant to be mounted on the exterior of the frame of the window. The sensor and magnet can be mounted with either the double-sided adhesive tape, or using screws (included with the sensor). 2. Measure and mark where the sensor and magnet will be installed in the window frame. Use the guide provided in Fig 2 for verifying the correct separation of the sensor and magnet. 3. Measure the distance between the window panel and frame. Ensure the separation is no more than 0.500” in height. Note: In cases where the separation may be greater, a larger magnet may be required. Contact the manufacturer for alternate magnets. 4. Verify the sensor will operate properly with the control panel, prior to drilling any holes. Go to the next section, LEARN SENSORS. Fig 2. Positioning the Magnet and the Sensor relative to each other Sensor on Frame Magnet on Panel 0.250”+/-.250” Direction of Window Opening, Left, Up, or Out of Page Alignment Marks must Line Up Shearwater Digital Innovations – Installation Guide 3 Fig 3: Incorrect Orientations of Magnet and Sensor Learn Sensors The sensors need to be added to the control panel memory (learned). This is done by triggering the sensor in it’s “Learn Mode” while the panel is setup to record it. Refer to your panel installation instructions or reference manual for complete details. 1. Set the panel to Program Mode. 2. Proceed to the LEARN SENSORS menu. 3. Select the appropriate sensor group and sensor number. 4. Trip the sensor. This is done simply by inserting the battery in it’s battery clip. When the device powers on, it will send out a “Learn” signal to the panel. 5. After verifying that the panel recognized the sensor, place it back in it’s plastic. 6. Repeat this with all the sensor’s being installed. 7. Exit Program Mode. Shearwater Digital Innovations – Installation Guide 4 Fig 4. Flat Package, Base, Lid, & Sensor Electronics (including battery) The Sensor Base mounts onto the Frame by double sided adhesive tape or screws (two holes provided). The Sensor Lid attaches to the base through a pressure fit on two posts. This lid should be closed after the LEARN is complete. Removing the lid will cause a “TAMPER” signal to be sent to the Controller. Sensor Base Sensor Lid Circuit Board (Top Side)Circuit Board (Battery Side) The circuit board fits into the Lid with the battery side facing the Base of the package. Shearwater Digital Innovations – Installation Guide 5 Installation on the Window or Door Frame 1. Line up the base of each housing against the other, and attach them to the frame and window. 2. Once the Sensor has been “Learned” by the Control Panel, insert the sensor circuit into the lid, and push the lid onto the base until it is completely closed. The lid will overlap the base to provide a clean appearance. Testing the Sensor 1. Set the panel to the Dealer Sensor Test Mode. 2. Trip the sensor by opening the window or door. Typically 1” to 2” separation will be required. 3. Listen for interior siren beeps to indicate how many rounds the panel receives from the sensor. You should hear 6 to 8 beeps. 4. All Done !!! Replacing the Battery The Sensor Cover needs to be removed to replace the battery. On each side of the housing there is a small opening, where a small screwdriver can be used to carefully pry open the Cover. The sensor requires a Lithium coin cell battery to operate. The type required for this sensor is a CR2032 battery. The battery holder is marked with positive “+” notation on the side of the clip, and the battery is also marked accordingly. Ensure the battery is replaced in the correct orientation. The battery is expected to last 10+ years for windows, and 5+ years for doors (more frequent openings). For a replacement battery contact SDI or purchase directly from various battery suppliers. Specific…
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July 22, 2002 Federal Communications Commission Dear Sir or Madam: As per the FCC submissions for the following transmitters : FCC ID: P7YSDIWD101, FCC ID: P7YSDIFP101, FCC ID: P7YSDIDD101, we request the submission be confidential. Our request is to protect circuit, package, and powering techniques that are currently being submitted for patents. Sincerely, Dean Schebel Partner - Engineering SHEARWATER DIGITAL INNOVATIONS 9054 SHEARWATER ROAD • BLAINE, WA • 98230-5700 PHONE: 1-800-407-4389 • FAX: 1-800-407-4465
July 30, 2002 Federal Communications Commission Dear Sir or Madam: We request that for the transmitter submission, FCC ID: P7YSDIFP101, the following infor mation be held confidential: Schematic Block Diagram Bill of Materials Sincerely, Dean Schebel Partner - Engineering SHEARWATER DIGITAL INNOVATIONS 9054 SHEARWATER ROAD • BLAINE, WA • 98230-5700 PHONE: 1-800-407-4389 • FAX: 1-800-407-4465
EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 1 of 2Emission Test Record SDIFP-101Appendix H External Photos Appendix H: External Photos: Front view of the Test Setup EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 2 of 2Emission Test Record SDIFP-101Appendix H External Photos Back view of the Test Setup
The following FCC identifier drawings are based on drawings rather than completed packages, which are in the process of being molded at this time. Window Dowel - Text is 8 point, engravedFlat Package – Text is 8 Point, engraved inside lid on cap. Door Dowel Package – Text is 8 point, engraved on bottom of package.
The following FCC identifier drawings are based on drawings rather than completed packages, which are in the process of being molded at this time. Window Dowel - Text is 8 point, engravedFlat Package – Text is 8 Point, engraved inside lid on cap. Door Dowel Package – Text is 8 point, engraved on bottom of package.
The following FCC identifier drawing are based on drawings rather than completed packages, which are in the process of being molded at this time. Flat Package – Text is 8 Point, engraved inside lid
EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 1 of 2Emission Test Record SDIFP-101Appendix G Internal Photos Appendix G: Internal Photos: Component Side of the SDIFP-101 EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 2 of 2Emission Test Record SDIFP-101Appendix G Internal Photos Solder Side of the SDIFP-101
EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 1 of 2 Emission Test Record SDIFP-101 Appendix D Data Appendix D: EUT PC Board Layout: TI Window Flat Pack Transmitter – Component Side EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 2 of 2 Emission Test Record SDIFP-101 Appendix D Data TI Window Flat Pack Transmitter – Solder Side
EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 1 of 2 Emission Test Record SDIFP-101 Appendix F Waveforms Appendix F: Waveforms On a change of state, 8 identical packets are transmitted at random intervals. The time interval between each packet varies between 100 – 450 ms. Each packet is PWM-ASK with a duration no longer than 20 ms. Since the modulation is PWM-ASK, the duty cycle is approximately 50%. On average for every 100 ms, the unit is transmitting for less than 10 ms of that time period. The average measurement is therefore 10 dB below the peak pulse measurement. Figure 1 Transmitted Data Packets, 25ms/div EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 2 of 2 Emission Test Record SDIFP-101 Appendix F Waveforms Figure 2 Transmitted Data Packet, 2.5 ms/div Figure 3 Transmitted Data Packet, 500 us/div
Duty Cycle Correction factor On a change of state, 8 identical packets are transmitted at random intervals. The time interval between each packet varies between 100 – 450 ms. Each packet has 60 bits transmitted and is PWM-ASK with a duration no longer than 20 ms. So in the worst case 100uS, we are only ever transmitting for <20 mSecs. Since the modulation is PWM-ASK (0=122uS on 122uS off, 1=122uS on 244uS off), the duty cycle is always less than 50%. However, since use a “porch” signal at the beginning of the packet of 976uS, we have used 50% in our calculations. Thus, for every 100 ms, we are transmitting for less than 20 ms of that time period, at a duty cycle of <50%. So we used a correction factor of 10 dB. Timing plots are given below. Figure 1 Transmitted Data Packets, 25ms/div Figure 2 Transmitted Data Packet, 2.5 ms/div Figure 3 Transmitted Data Packet, 500 us/div
EMC Compatibility Report Rev 1. 0 02/15/02 Shearwater Digital Innovations Page 1 of 6 Emission Test Record SDIFP-101 Test Report Shearwater Digital Innovations SDIFP-101 FCC CFR47 Part 15 Report of Measurements Revision 1.0 February 15, 2002 Approvals Written By ___________________________________________________ Craig LongDate Checked by ___________________________________________________ Robert Stirling, P. Eng.Date Protocol Labs, Abbottsford B.C., Canada FCC Registration Number 96437 Industry Canada Registration Number IC3384 EMC Compatibility Report Rev 1. 0 02/15/02 Shearwater Digital Innovations Page 2 of 6 Emission Test Record SDIFP-101 Test Report Index of Submitted Measured Data Index2 Testing Details3 Equipment Under Test 3 Graphs and and Data Appendix A Table 1, Figure 1 319.50 MHz Harmonics5 Figure 2 Occupied Bandwidth6 Photographs Appendix B: Test Setup Photos Schematics Appendix C: EUT Schematics PC Board Layout Appendix D: EUT PCB Layout Bill of Materials Appendix E: Bill of Materials Waveforms Appendix F: Waveforms Internal Photos Appendix G: Internal Photos External Photos Appendix H: External Photos EMC Compatibility Report Rev 1. 0 02/15/02 Shearwater Digital Innovations Page 3 of 6 Emission Test Record SDIFP-101 Test Report CE Mark EMC Directive Compliance Test Report FCC CFR47 PART 15 Report of Measurements Testing Details TEST DATE:December 19, 2001 TESTED BY: Rob Stirling/ Craig Long TEST CONDITIONS:Temperature and Humidity: 18 C, 35% TEST VOLTAGE: 3 Vdc Test Facilities Protocol Labs 28945 McTavish Rd. Abbotsford B.C., Canada, V4X 2E7 FCC Registration Number 96437 Industry Canada Registration Number IC3384 Test Equipment List: DeviceModel NumberSerial No.Last Cal.Next Cal AntennaEMCO 3141 Bilog Antenna112709/13/0109/13/02 HornEMCO 31405 Horn Antenna202409/10/0109/10/02 AmpHewlett Packard 8349A2512A0082409/13/0109/13/02 LISNSolar 8012-50-R-24-BNC86309202/20/0102/20/02 Spectrum Analyzer Hewlett Packard 8566B2241A0210212/28/0012/28/01 RF-PreselectorHewlett Packard 85685A3107A0122212/28/0012/28/01 Quasi-Peak Adapter Hewlett Packard 85650A2043A0024012/28/0012/28/01 TowerRhientech LabsCustom TurntableProtocolCustom Equipment Under Test: EUTFlat Pack Window Transmitter RF Security Monitor Manufacturer Shearwater Digital Innovations Model NumberSDIFP-101 Serial NumberENG001 SETUP:The equipment was set up in an open field test site. All harmonic measurements were made at a 3-meter open field test site. Peak spurious Emissions in both horizontal and vertical polarizations were measured based on continuous modulated signal while rotating the EUT on a turntable to maximize the emissions signal strength and the results recorded on the attached tables and plots. Average emissions are based on actual duty cycles pulsed and modulated signal as in Appendix F. Refer to Photographs in Appendix A. EMC Compatibility Report Rev 1. 0 02/15/02 Shearwater Digital Innovations Page 4 of 6 Emission Test Record SDIFP-101 Test Report CABLING: CableConnectorLoad/Termination? N/AN/AN/A TEST FIRMWARE:Continuous Modulated output. TEST DATA: Refer to Appendix B for Graphs and Test Results. CONCLUSION: The EUT complies with the requirements of FCC Part 15. EMC Compatibility Report Rev 1. 0 02/15/02 Shearwater Digital Innovations Page 5 of 6 Emission Test Record SDIFP-101 Test Report Appendix A: Measurement Data: Spurious Emissions Harmonics of 319.500 MHz Figure 1 319.5 MHz Harmonics Harmonic Frequency (MHz) +/- 0.005 Polarity Uncor Pk (dBuV) +/- 0.05 Tot Corr (dB) +/- 0.05 Peak (dBuV/m) +/- 0.05 Average (dBuV/m) +/- 0.05 Limit (dBuV/m) +/- 0.05 Delta Lim (dB) +/- 0.05 1st319.50V62.13.265.355.375.9-20.6 2nd639.00V25.614.740.330.361.9-31.6 3rd958.50V9.619.128.718.761.9-43.2 4th127.80V1.722.324.014.061.9-47.9 5th1597.50V-224.922.912.961.9-49.0 6th1917.00V0.228.128.318.361.9-43.6 7th2236.50V41-6.134.924.961.9-37.0 8th2556.00V32-3.528.518.561.9-43.4 9th2875.50V20.5-0.719.89.861.9-52.1 10th3195.00H11.81.913.73.761.9-58.2 Average Radiated Spurious Emissions 30.32 18.74 13.95 12.87 18.33 24.87 18.47 9.79 3.71 55.31 0.000 10.000 20.000 30.000 40.000 50.000 60.000 70.000 80.000 90.000 100.000 110.000 120.000 130.000 140.000 1st2nd3rd4th5th6th7th8th9th10th Fundamental and Harmonics Field Strength (dBuV/m) EMC Compatibility Report Rev 1. 0 02/15/02 Shearwater Digital Innovations Page 6 of 6 Emission Test Record SDIFP-101 Test Report Figure 2 Occupied Bandwidth
EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 1 of 2Emission Test Record SDIFP-101Appendix B Test Setup Photos Appendix B: Test Setup Photos: Front view of the Test Setup EMC Compatibility Report Rev.1.0 02/15/02 Shearwater Digital Innovations Page 2 of 2Emission Test Record SDIFP-101Appendix B Test Setup Photos Back view of the Test Setup
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 319.5 MHz - 319.5 MHz | - |

Door dowel security sensor RF transmitter
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
DSC - Part 15 Security/Remote Control Transmitter
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter