
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
© Inovonics, 2011 - www.inovonics.com EN1262 EchoStream® Passive Infrared Motion Detector Installation and Operation Manual - 05469C 1 Overview The EN1262 is a low-current motion detector highly sensitive to moving heat (infrared radiation) sources. 1.1 Inovonics Contact Information If you have any problems with this procedure, contact Inovonics technical services: • E-mail: [email protected] • Phone: (800) 782-2709; (303) 939-9336 2 Installation and Startup 2.1 Mount the Housing 1.Insert a small flat-blade screwdriver at the tab on the bottom of the unit. The screwdriver will enter the slot at about a 45° angle. Press downward on the handle of the screwdriver until the latch holding the cover to the housing base releases. Figure 1 Open the housing 2.Pull the circuit board attachment latch and lift the circuit board out of the housing. Figure 2 Circuit board attachment latch 3.Wall tamper installation is required for BSI Class VI. a. Use a 3/16” (4.8mm) bit to drill out the tamper rivet hole index. b. Install the tamper wall anchor. Figure 3 Mounting hole indices 4.Mount the housing, using either the three wall-mount holes, or the four corner-mount holes. a. Use a 5/32” (4 mm) bit to drill out the appropriate housing hole indexes. b. Use the included screws to mount the housing. 5.If using the wall tamper, ensure the wall tamper rivet depresses the wall tamper switch arm. Figure 4 Wall tamper switch 2.1 Set Parameters 1.If using the wall tamper, remove the shunt from the wall tamper selection pins. Figure 5 EN1262 Components Circuit board attachment latch ATaper rivet indexBCorner mount indexCWall mount index AWall tamper selection pins BHousing tamper switch CFrequency band selection pin DReset button A BB B B C B B C C Wall tamper rivet Wall tamper switch arm C A B D © Inovonics, 2011 - www.inovonics.com 2 2.Pull the tab from the battery’s + lead. 3.Place a selection jumper on the appropriate frequency band selection pins. • Leave the jumper off the pins to select 902-928 MHz for North America. • Place the jumper on the top two pins to select 921-928 MHz for New Zealand. • Place the jumper on the bottom two pins to select 915-928 MHz for Australia. 4.Press the Reset button. Caution: When pressing the Reset button, make sure you don’t also touch the frequency band selection pins. Touching the frequency band selection pins while pressing the Reset button can inadvertently set the EN1262 to the wrong frequency band. 2.2 Set Zones 1.If masking is required, use the PIR zone diagram and the lens inside view diagram to choose the appropriate zones to be masked. Use opaque masking material, such as electrical tape. Figure 6 Mask zones 2.To enable the look down zones, peel the mask from the look down lens. Figure 7 Enable look down zones 2.3 Register the Transmitter The EN1262 must be registered with the system receiver in order to be monitored and supervised. Each EN1262 has a unique factory- programmed identification number. Refer to the receiver, network coordinator or control panel installation instructions for details on registering a transmitter. 1.When prompted reset the EN1262, press the EN1262 Reset button. 2.If using the optional housing screws for added security, use a 7/64” (2.78 mm) bit to drill out the housing hole indexes on the top and bottom of the housing. 3.Replace the housing cover. 4.If using the optional housing screws, use the included screws to secure the housing. Caution: The EN1262 should be tested after registration to ensure operation. To test the EN1262, activate each of the conditions and ensure an appropriate response. 3 Testing Once the battery is installed, the unit enters a three-minute non-alarming stabilization period indicated by the LED flashing once per second. After the stabilization period, the unit requires two seconds of quiet. After that two seconds, the unit will remain in walk test mode until it is left untripped for 120 seconds. 1.During the three minute stabilization period, press and release the housing tamper switch to cause a tamper transmission. 2.When the stabilization period is complete, replace the housing and walk in front of the lens to create an alarm. 4 Specifications Dimensions: 11.4 cm x 6.4 cm x 4.1 cm (4.5”H x 2.5”W x 1.6”D) Operating temperature: -4° to 140°F (-20° to 60°C) Humidity: 0 - 90% (non-condensing) Battery (BAT604): CR123A or equivalent Typical battery life: Two years Tamper: Housing and/or Wall (optional) PIR: Detection Systems RF940U PIR RF interference immunity: Greater than 30 v/m 26 MHz - 1 GHz Detection zone: 12.2m x 12.2 m (40’ x 40’) with lookdown zone Alarm Lockout Time: Three minutes Mounting height: 2.1 to 2.7 m (7 to 9 feet) 5 Television and Radio Interference This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: • Reorient or relocate the receiving antenna. • Increase the separation between the equipment and receiver. • Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. • Consult the dealer or an experienced radio/TV technician for help. 6 FCC Part 15 Compliance 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…
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Request for Confidentiality Date: March 9, 2011 Subject: Confidentiality Request for: FCC ID: HCQ3B6OT9U1X; IC ID 2309A-OT9U1X Pursuant to FCC 47 CRF 0.457(d) and 0.459 and IC RSP-100, Section 10, the applicant requests that a part of the subject FCC application be held confidential. Type of Confidentiality Requested Exhibit Short Term Permanent Block Diagrams Short Term External Photos Short Term Permanent* 1 Internal Photos Short Term Permanent Operation Description/Theory of Operation Short Term Permanent Parts List & Placement/BOM Short Term Permanent Tune-Up Procedure Short Term Permanent Schematics Short Term Test Setup Photos Short Term Permanent* User’s Manual *Note: ______(Insert Explanation as Necessary)______ Inovonics Wireless Corporation has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. Short-Term Confidentiality: The applicant requests the exhibits selected above as short term confidential be withheld from public view for a period of 180 2 days from the date of the Grant of Equipment Authorization and prior to marketing. This is to avoid premature release of sensitive information prior to marketing or release of the product to the public. Applicant is also aware that they are responsible to notify ACB in the event information regarding the product or the product is made available to the public. ACB will then release the documents listed above for public disclosure pursuant to FCC Public Notice DA 04-1705. 1 - The asterisked items (*) require further justification before permanent confidentiality will be allowed. These also currently require review by the FCC under their Pe r m i t-But-Ask policy before the grant is issued and can delay completion of an application. Further justification should be added to the note above. One such example for a potted device would be: “The EUT is FULLY potted using a non-removable epoxy based material. Removal of potting material causes irreparable damage to internal circuitry. See photographs exhibits that outline the device before and after potting.” 2 - Please refer to http://acbcert.com/documents/misc-docs/Memo-Short-Term-Vs-Standard-Confidentiality.pdf for complete details. NOTE for Industry Canada Applications: The applicant understands that until such time that IC distinguishes between Short Term and Permanent Confidentiality, either type of marked exhibit above will simply be marked Confidential when submitted to IC. Sincerely, Keal Vigil Production Control Specialist II
A u t h o r i t y t o A c t a s A g e n t Date: March 9, 2011 American Certification Body, Inc. 6731 Whittier Avenue Suite C110 McLean, VA 22101 To Whom It May Concern: ______Keal Vigil______ is authorized to act on our behalf, until otherwise notified, for applications to American Certification Body, Inc. (ACB). We certify that we are not subject to denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002 (b), to the application is subject to denial of federal benefits, that includes FCC benefits. Thank you, Agency Agreement Expiration Date: December 31, 2011 Keal Vigil Production Control Specialist II
FCC ID: HCQ3B6OT9U1X EN1262 Industry Canada ID: 2309A‐OT9U1X External photos: External Topside Bottom FCC Label
LBL-FCC-EN1262 05470B MATERIAL: : .002" THICK CLEAR MYLAR WITH .001" GLOSSY LAMINATION (FOR PROTEC- TION FROM INK SMEARING) AND PERMANENT ADHESIVE APPLIED TO THE BACKSIDE. RoHS COMPLIANT MATERIALS REQUIRED. ARTWORK: SUPPLIED BY INOVONICS. TEXT: BLACK. LABEL SIZE: 1.25" X .75" (SHOWN TO 3 TIMES SCALE) WITH .100 RADIUS ON EACH COR- NER AND NO BORDER. PACKAGING AND LABEL ORIENTATION: LABELS TO BE SUPPLIED ON TOP SIDE OF ROLL STOCK WITH TEXT READABLE AS VIEWED FROM BOTTOM (SHORT) EDGE OF ROLL. Rev. LevelDescriptionDate AInitial Release02/05/09 BAdded colon per FCC03/17/11 © Inovonics 2011 EN1262 www.inovonics.com FCC ID: HCQ3B6OT9U1X / IC: 2309A - OT9U1X
Bottom of PCB FCC ID: HCQ3B6OT9U1X EN1262 Industry Canada ID: 2309A‐OT9U1X Internal photos: Top of PCB
FCC ID: HCQ3B6OT9U1X EN1262 IC ID: 2309A-OT9U1X RF Exposure Information: Calculation for compliance with MPE requirements (47CFR2.1091) is done using a worst-case transmitter power of 250 mW, assumption of a unity gain antenna, and an exposure limit of 0.6 mW/cm 2 (f/1500 mW/cm 2 at 20 cm per 47 CFR1.1310) for general applications. This device is not carried or worn by the end user. It has an extremely low duty cycle and a low rate of transmission that dramatically reduces the average power level that could pose an exposure hazard. The transmitter is typically activated by the opening or closing of a door or window. In addition to these change-of-state transmissions, the transmitter is configured to transmit a supervisory message once every 3 minutes. The averaging interval specified in Table 1(B) of 47CFR1.1310 is 30 minutes. For the purposes of this calculation, it is assumed that ten supervisory and five change-of- state messages will be sent in the 30-minute interval. Each supervisory message consists of 3 redundant packets, and each change of state message contains 21 packets, for a total of 135 packets in the 30-minute interval. A packet is typically 20 ms in length. The worst-case power density at a distance of 20 cm is then, 223 6.74 )2 0(4 1 1060 min120 min30 135 250 cm nW cmms packet mspackets mW=¥ ¥ ¥¥¥ p This is well below the 0.6 mW/cm 2 limit.
This report is for the exclusive use of Intertek's Client and is provided pursuant to the agreement between Intertek and its Client. Intertek's responsibility and liability are limited to the terms and conditions of the agreement. Intertek assumes no liability to any party, other than to the Client in accordance with the agreement, for any loss, expense or damage occasioned by the use of this report. Only the Client is authorized to permit copying or distribution of this report and then only in its entirety. Any use of the Intertek name or one of its marks for the sale or advertisement of the tested material, product or service must first be approved in writing by Intertek. The observations and test results in this report are relevant only to the sample tested. This report by itself does not imply that the material, product, or service is or has ever been under an Intertek certification program. EMC Report for Inovonics on the EN1262 Page 1 of 29 TEST REPORT Report Number: 100356542DEN-002D Project Number: G100356542 Report Issue Date: 03/25/2011 Product Designation: EN1262 Standards: FCC title 47 CFR part 15 subpart C RSS-210:2010 Issue 8 AS/NZS 4268:2008 Tested by: Client: Intertek Testing Services NA, Inc. 1795 Dogwood St. Suite 200 Louisville, CO 80027 Inovonics Wireless Corp. 315 CTC Blvd. Louisville, CO 80027 Report prepared by Report reviewed by Randall Thompson Senior EMC Project Engineer Michael Spataro Engineering Team Leader Intertek Report Number: 100356542DEN-002D Issued: 03/25/2011 EMC Report for Inovonics on the EN1262 Page 2 of 29 TABLE OF CONTENTS 1 Introduction and Conclusion .............................................................................................................. 3 2 Test Summary ...................................................................................................................................... 3 3 Description of Equipment Under Test................................................................................................ 4 4 System setup including cable interconnection details, support equipment and simplified block diagram ........................................................................................................................................................ 5 5 Radiated Emissions – Intentional Radiators: Output Power - Fundamental & Harmonics of the Fundamental for 15.247 .............................................................................................................................. 7 6 Radiated Emissions Unintentional & Spurious............................................................................... 14 7 Measurement Uncertainty ................................................................................................................. 28 8 Revision History................................................................................................................................. 29 Intertek Report Number: 100356542DEN-002D Issued: 03/25/2011 EMC Report for Inovonics on the EN1262 Page 3 of 29 1 Introduction and Conclusion The tests indicated in section 2.0 were performed on the product constructed as described in section 3.0. The remaining test sections are the verbatim text from the actual data sheets used during the investigation. These test sections include the test name, the specified test Method, a list of the actual Test Equipment Used, documentation Photos, Results and raw Data. No additions, deviations, or exclusions have been made from the standard(s) unless specifically noted. Based on the results of our investigation, we have concluded the product tested Passed the requirements of the standard(s) indicated. The results obtained in this test report pertain only to the item(s) tested. 2 Test Summary Section Test full name Test date Result 5 Radiated Emissions – Output power of the Fundamental & Harmonics of the Fundamental - FCC 247(b)(2) (d)/15.205 Covers RSS-210 A8.4(1) 8/28/2009 Pass 6 Radiated Emissions – Unintentional & Spurious - FCC 15.247(d) / FCC 15.209/109 Covers RSS-210 A8.5 3/30/2009 Pass 20dB Bandwidth – FCC 15.247 (a)(1)(i) [Covers RSS-210, A8.1(c)] ----- N/A Number of Hopping Channels – FCC 15.247(a)(1)(i) [Covers RSS-210, A8.1(c)] ----- N/A Hopping Channel Carrier Separation – FCC 15.247(a)(1) [Covers RSS-210, A8.1(b)] ----- N/A Band Edge Measurements – FCC 15.247(d) / 15.209 [Covers RSS-210, A8.5] ----- N/A Duty Cycle & Duty Cycle Correction Factor ----- N/A AC Conducted Emissions – FCC 15.207 (not applicable – product battery-powered) ----- N/A Notes: 1) Only the fundamental, harmonics of the fundamental and Spurious emissions are covered in this test report as requested by the customer. 2) Only the high channel of the transmitter at 927.58 MHz falls within the frequency band specified in AS/NZS 4268:2008 3) FCC CFR47 Part 15.31: Measurement Standards: In any case where the device is powered off a battery, a fresh battery was used during test. In cases where the device is powered off an AC supply, voltage was varied per Part 15.31 to find worst case emissions. Intertek Report Number: 100356542DEN-002D Issued: 03/25/2011 EMC Report for Inovonics on the EN1262 Page 4 of 29 3 Description of Equipment Under Test Equipment Under Test Description Manufacturer Model Number Serial Number 902-928MHz wireless transmitter. Inovonics EN1262 03983850/3983819 Receive Date: 3/30/2009 Received Condition: Good Type: Production Description of Equipment Under Test (provided by client) The Inovonics motion detector with pet immunity is designed for residential and low-traffic commercial applications, with less than 100 activations a day. This PIR uses advanced signal processing to provide outstanding catch performance with unsurpassed false alarm immunity. With Pet Friendly pet immunity, alarms triggered by animals are greatly reduced. The motion detector is available in two configurations. Use part number EE1262 for 868-870 Mhz Europe; use part number EN1262 for 902-92…
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1 Test Report: Additional Information Model EN1262 Revision Description Author Issue Date A Initial Release HB 31-Mar-11 General Remarks: In addition to the intentional and unintentional emissions lab test reports submitted with this application, this test report includes additional test data demonstrating compliance with CFR47, 15.247 and RSS-210, A8.1. For the measurements in this report, the antenna was replaced by a coaxial connection to a MXA signal analyzer, model N9020A. Calculations for Conducted Output Power and Duty Cycle Correction Factor are also included. 2 Report Summary Result Page Section 1 Minimum Channel Separation Pass 3 Section 2 20 dB Occupied BW Pass 4 Section 3 Number of Hopping Channels Pass 5 Section 4 Dwell Time Pass 6 Section 5 Test Instrument Declarations Pass 7 Section 6 Conducted Output Power & Duty Cycle N/A 8 Correction Factor General Declarations Continuous receiver operation N/A Continuous transmitter operation No Band of operation (USA and Canada) 902-928 MHz Band of operation (Australia mode) 915-928 MHz Band of operation (New Zealand mode) 921-928 MHz Lower transmit frequency (Australia) 915.6 MHz Lower transmit frequency (New Zealand) 921.6 MHz Upper transmit frequency (AUS and NZ) 927.6 MHz Minimum Transmit Channel Spacing 400KHz Receiver frequencies N/A Frequency hopping transmitter Yes Integral antenna equipment Yes Normal battery input voltage 3V DC Maximum TX on-time (single message) 22ms 3 Minimum Channel Separation Test Method 15.247 Section 1 UUT Model No. EN1262 Test Date 31-Mar-11 UUT Serial Number(s) Normal Temp 25.93 C UUT Description Security transmitter Normal Humidity 31.63% UUT MFGR: Inovonics Wireless Tested By: HB Test Result Pass 4 20 dB Occupied Bandwidth Test Method 15.247 Section 2 UUT Model No. EN1262 Test Date 31-Mar-11 UUT Serial Number(s) Normal Temp 25.93 C UUT Description Security transmitter Normal Humidity 31.63% UUT MFGR: Inovonics Wireless Tested By: HB Test Result Pass Plot shows the 20 dB occupied bandwidth of a single channel to demonstrate compliance with 15.247(a)(1)(i) and RSS-210, A8.1(c). 5 Number of Transmitter Channels Test Method 15.247 Section 3 UUT Model No. EN1262 Test Date 31-Mar-11 UUT Serial Number(s) Normal Temp 25.93 C UUT Description Security transmitter Normal Humidity 31.63% UUT MFGR: Inovonics Wireless Tested By: HB Test Result Pass Plot demonstrates compliance with 15.247(a)(1)(i), and RSS-210, A8.1(c). This is a stored display of many sequential transmissions to show the overall band occupied by the transmitter. 6 Dwell Time Test Method 15.247 Section 4 UUT Model No. EN1262 Test Date 31-Mar-11 UUT Serial Number(s) Normal Temp 25.93 C UUT Description Security transmitter Normal Humidity 31.63% UUT MFGR: Inovonics Wireless Tested By: HB Test Result Pass Plot demonstrates compliance with 15.247(a)(1)(i), and RSS-210, A8.1(c), which states “the average time of occupancy on any channel shall not be greater than 0.4 seconds within a 10 second period.” Measured Dwell Time in ms Maximum limit in seconds Complies 21.74 0.4 Yes 7 Test Instrument Declarations Test Method 15.247 Section 1 through 4 UUT Model No. EN1262 UUT Serial Number(s) UUT Description Security transmitter UUT MFGR: Inovonics Wireless Testing Instrument Description Signal Analyzer Make Agilent Calibration date 27-Sep-10 Model # N9020A Calibration due date 27-Sep-11 Serial # MY46471353 8 Alternative to Conducted Output Power Measurements: Required conducted power output measurements at low, medium, and high channels (per 15.247(b) and (c)) could not be performed directly since the transmit antenna is integrated onto the printed circuit board. However, compliance with these requirements has been achieved by way of performing and passing the radiated tests described in the ALTERNATIVE TEST PROCEDURES in Public Notice DA 00-705, March 30, 2000. Specifically, all radiated emissions shown in the test report are less than 119.2 dBuV/m at 3 meters. This is the field strength limit corresponding to the maximum fundamental power output of 0.25 watts from an isotropic antenna per 15.247 (b) (2) for systems employing between 25 and 49 hopping channels. The calculation as detailed in the above Public Notice is as follows: E = Square Root of (30PG) all divided by d E = 912,871 uV/m = 119.21 dB uV/m where E is the maximum allowable fundamental field strength in uV/m P is the maximum allowable fundamental radiated power = 0.25 watts G is the antenna gain = 1 (Assume 1 for the worst case (lowest allowable) final field strength.) d is the measured distance = 3 meters Duty Cycle Correction Factor (DCCF) DCCF formula obtained from Public Notice DA 00-705 dBDCCF ms ms DCCF ms timeDwell DCCF 6.13 100 8.20 log20 100 log20
Project File: 3188063 Page 5 of 29 Intertek Testing Services NA, Inc. 5541 Central Avenue, Suite 110 Boulder, Colorado 80301 Voice: 303 786 7999Fax: 303 449 6160 Rev.No 1 Test-setup photo(s): Radiated Intentional Emissions: Axis 1 Project File: 3188063 Page 6 of 29 Intertek Testing Services NA, Inc. 5541 Central Avenue, Suite 110 Boulder, Colorado 80301 Voice: 303 786 7999Fax: 303 449 6160 Rev.No 1 Test-setup photo(s): Radiated Intentional Emissions: Axis 2 Project File: 3188063 Page 7 of 29 Intertek Testing Services NA, Inc. 5541 Central Avenue, Suite 110 Boulder, Colorado 80301 Voice: 303 786 7999Fax: 303 449 6160 Rev.No 1 Test-setup photo(s): Radiated Intentional Emissions: Worst-Case Axis 3 Project File: 3188063 Page 8 of 29 Intertek Testing Services NA, Inc. 5541 Central Avenue, Suite 110 Boulder, Colorado 80301 Voice: 303 786 7999Fax: 303 449 6160 Rev.No 1 Test-setup photo(s): Radiated Intentional Emissions: Worst-Case Axis 3 Project File: 3188063 Page 9 of 29 Intertek Testing Services NA, Inc. 5541 Central Avenue, Suite 110 Boulder, Colorado 80301 Voice: 303 786 7999Fax: 303 449 6160 Rev.No 1 Test-setup photo(s): Radiated Intentional Emissions: Worst-Case Axis 3
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.39 MHz - 927.59 MHz | 16.00 mW |

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