
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
RV Halo ™ Bluetooth Smart Sensors Quick Start Guide BD-0001 Bluetooth Dongle Follow the instructions to create an account in the RV Halo app. Next, tap Add Device followed by Search for Device. Select either IoT or Sensor as the device type and find the correct sensor. To complete the setup process, continue to follow the in-app instructions. Scan QR code to download our free app. HS-PIR1 Motion Detector HS-TMP1 Temperature Sensor HS-CC01 Contact Closure HS-H2O1 Water Detection HS-K001 – HALO SMART SENSOR BUNDLE HS-CC01 Contact Closure RV Halo ™ Bluetooth Smart Sensors Quick Start Guide
Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 1 Winegard Sensor Internal and External Pictures Original Authors: Dean Kostan Status: Working Draft Version: 1.0 Internal Review Date: 27 July 2023 Released Revision to Released Document © 2023 Winegard Company Confidential Abstract This document describes the Winegard WiFi Extender Theory of Operation and provides block diagrams for illustration. This is a controlled document. Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 2 Revision History Date Revision Description Author June/27/2023 1.0 First Draft Dean Kostan Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 3 Table Of Contents 1 INTRODUCTION .................................................................................................................................................................... 6 1.1 I NTRODUCTION ....................................................................................................................................................................... 6 Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 4 Table Of Figures Figure 1. Internal/External Pictures .................................................................................................................................................. 7 Table Of Tables Table 1. Table of References ............................................................................................................................................................... 5 Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 5 References Document Location None Table 1. Table of References Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 6 1 I NTRODUCTION 1.1 Introduction This document provides the theory of operation along with supporting materials for the Winegard Sensor Family. The Sensors are based off of a reference design form Nordic Semiconductor and used the nRF52840 chip. The family members are: a. HSSSET Family parent device with all features populated/included b. HSTMP1 Product version with only Buzzer, Temperature, humidity, and accelerometer functions populated c. HSPIR1 Product version with only Buzzer, accel, PIR, and ambient light functions populated d. HSCC01 Product version with only Buzzer, and Contact closure functions populated e. HSH2O1 Product version with only Buzzer, accel, temp/humidity and Water/Leak detector functions populated They all shares the same PCB. Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 7 Figure 1. Internal/External Pictures
Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 1 Winegard Sensor Internal and External Pictures Original Authors: Dean Kostan Status: Working Draft Version: 1.0 Internal Review Date: 27 July 2023 Released Revision to Released Document © 2023 Winegard Company Confidential Abstract This document describes the Winegard WiFi Extender Theory of Operation and provides block diagrams for illustration. This is a controlled document. Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 2 Revision History Date Revision Description Author June/27/2023 1.0 First Draft Dean Kostan Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 3 Table Of Contents 1 INTRODUCTION .................................................................................................................................................................... 6 1.1 I NTRODUCTION ....................................................................................................................................................................... 6 Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 4 Table Of Figures Figure 1. Internal/External Pictures .................................................................................................................................................. 7 Table Of Tables Table 1. Table of References ............................................................................................................................................................... 5 Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 5 References Document Location None Table 1. Table of References Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 6 1 I NTRODUCTION 1.1 Introduction This document provides the theory of operation along with supporting materials for the Winegard Sensor Family. The Sensors are based off of a reference design form Nordic Semiconductor and used the nRF52840 chip. The family members are: a. HSSSET Family parent device with all features populated/included b. HSTMP1 Product version with only Buzzer, Temperature, humidity, and accelerometer functions populated c. HSPIR1 Product version with only Buzzer, accel, PIR, and ambient light functions populated d. HSCC01 Product version with only Buzzer, and Contact closure functions populated e. HSH2O1 Product version with only Buzzer, accel, temp/humidity and Water/Leak detector functions populated They all shares the same PCB. Winegard Company 3111 Kirkwood St. Burlington, IA 52601 319/754-0600 Fax 319/754-0662 www.winegard.com 7 Figure 1. Internal/External Pictures
1516 Centre Circle, Downers Grove IL 60515 RF EXPOSURE EXHIBIT Manufacturer Name Winegard Company Manufacturer Address 2736 Mt Pleasant St. Burlington, IA 52601 Model No. HS-SSET, HS-PIR1, HS-H2O1, HS-CC01, HS-TMP1 HVIN HVIN #1, HVIN #2, HVIN #3, HVIN #4, HVIN #5 Specifications FCC “Code of Federal Regulations” Title 47 Part 1.1307(b) FCC “Code of Federal Regulations” Title 47 Part 2.1093 Industry Canada RSS-102 Test Facility Elite Electronic Engineering, Inc. 1516 Centre Circle, Downers Grove, IL 60515 FCC Reg. Number: 269750 IC Reg. Number: 2987A CAB Identifier: US0107 Test Procedure FCC KDB 447498 D01 General RF Exposure Guidance v06 RSS-102, Issue 5 Radio Frequency (RF) Exposure Compliance of Radiocommunication Apparatus (All Frequency Bands ANSI/IEEE C95.1-1992, "Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz," Evaluation Distance 20 cm Maximum EIRP measured for HS-SSET Freq (MHz) Ant Pol Wide BW Meter Reading (dBμV) Matched Sig Gen Reading (dBm) Equivalent Antenna Gain (dB) Cable Loss (dB) EIRP (dBm) Limit (dBm) Margin (dB) 2440.00 H 67.2 5.7 5.2 3.5 7.4 36.0 -28.6 V 61.9 0.8 5.2 3.5 2.6 36.0 -33.4 Maximum EIRP measured for HS-PIR1 Freq (MHz) Ant Pol Wide BW Meter Reading (dBμV) Matched Sig Gen Reading (dBm) Equivalent Antenna Gain (dB) Cable Loss (dB) EIRP (dBm) Limit (dBm) Margin (dB) 2402.00 H 66.2 4.0 5.3 3.4 5.8 36.0 -30.2 V 62.2 1.2 5.3 3.4 3.0 36.0 -33.0 1516 Centre Circle, Downers Grove IL 60515 Maximum EIRP measured for HS-H2O1 Freq (MHz) Ant Pol Wide BW Meter Reading (dBμV) Matched Sig Gen Reading (dBm) Equivalent Antenna Gain (dB) Cable Loss (dB) EIRP (dBm) Limit (dBm) Margin (dB) 2440.00 H 65.5 4.0 5.2 3.5 5.8 36.0 -30.2 V 61.2 0.1 5.2 3.5 1.8 36.0 -34.2 Maximum EIRP measured for HS-CC01 Freq (MHz) Ant Pol Wide BW Meter Reading (dBμV) Matched Sig Gen Reading (dBm) Equivalent Antenna Gain (dB) Cable Loss (dB) EIRP (dBm) Limit (dBm) Margin (dB) 2402.00 H 67.1 4.9 5.3 3.4 6.7 36.0 -29.3 V 63.9 2.9 5.3 3.4 4.7 36.0 -31.3 Maximum EIRP measured for HS-TMP1 Freq (MHz) Ant Pol Wide BW Meter Reading (dBμV) Matched Sig Gen Reading (dBm) Equivalent Antenna Gain (dB) Cable Loss (dB) EIRP (dBm) Limit (dBm) Margin (dB) 2402.00 H 66.1 3.9 5.3 3.4 5.7 36.0 -30.3 V 62.3 1.3 5.3 3.4 3.1 36.0 -32.9 ERP(dB) = EIRP(dB) -2.15dB Model No. Radio Access Technology ƒ Transmit Frequency (MHz) ERP (dBm) EIRP (dBm) HS-SSET BLE 2440 5.25 7.40 HS-PIR1 BLE 2402 3.65 5.80 HS-H2O1 BLE 2440 3.65 5.80 HS-CC01 BLE 2402 4.55 6.70 HS-TMP1 BLE 2402 3.55 5.70 1516 Centre Circle, Downers Grove IL 60515 Model No. ƒ Transmit Frequency (MHz) ERP (W) ERP th (W) Exempt Yes/No Exemption Rule HS-SSET 2440 0.003 0.768 Yes 1.1307(b)(3)(i)(C) HS-PIR1 2402 0.002 0.768 Yes 1.1307(b)(3)(i)(C) HS-H2O1 2440 0.002 0.768 Yes 1.1307(b)(3)(i)(C) HS-CC01 2402 0.003 0.768 Yes 1.1307(b)(3)(i)(C) HS-TMP1 2402 0.002 0.768 Yes 1.1307(b)(3)(i)(C)
Engineering Test Report No. 2300550-01 Report Date June 16, 2023 Manufacturer Name Winegard Company Manufacturer Address 2736 Mt Pleasant St Burlington, IA 52601 Product Name Model No. BLE sensor HS-SSET Date Received June 12, 2023 Test Dates June 12, 2023 through June 16, 2023 Specifications FCC “Code of Federal Regulations” Title 47, Part 15, Subpart B Innovation, Science, and Economic Development Canada, ICES-003 FCC "Code of Federal Regulations" Title 47 Part 15, Subpart C, Section 15.247 Innovation, Science, and Economic Development Canada, RSS-GEN Innovation, Science, and Economic Development Canada, RSS-247 Test Facility Elite Electronic Engineering, Inc. 1516 Centre Circle, Downers Grove, IL 60515 FCC Reg. Number: 269750 IC Reg. Number: 2987A CAB Identifier: US0107 Signature Tested by Javier Cardenas Signature Approved by Raymond J. Klouda, Registered Professional Engineer of Illinois – 44894 PO Number P539046-00 This report is for your exclusive use. Any copying or replication of this report to or for any other person or entity, or use of our name or trademark, is permitted only with our prior written permission. This report sets forth our findings solely with respect to the test samples identified herein. The results set forth in this report are not indicative or representative of the quality or characteristics of the lot from which a test sample was taken or any similar or identical product unless specifically and expressly noted. Our report includes all of the tests requested by you and the results thereof based upon the information that you provided to us. You have 60 days from date of issuance of this report to notify us of any material error or omission caused by our negligence, provided, however, that such notice shall be in writing and shall specifically address the issue you wish to raise. A failure to raise such issue within the prescribed time shall constitute your unqualified acceptance of the completeness of this report, the tests conducted and the correctness of the report contents. This report shall not be reproduced, except in full, without the written approval of Elite Electronic Engineering Inc. Elite Electronic Engineering Incorporated certifies that the information contained in this report was obtained under conditions which meet or exceed those specified in the FCC "Code of Federal Regulations" Title 47 Part 15, Subpart C, Section 15.247 and Innovation, Science, and Economic Development Canada, RSS-247 test specifications. The data presented in this test report pertains to the EUT on the test dates specified. Any electrical or mechanical modifications made to the EUT subsequent to the specified test date will serve to invalidate the data and void this certification. This report must not be used to claim product certification, approval, or endorsement by A2LA, NIST, or any agency of the Federal Government. Engineering Test Report No. 2300550-01 This report shall not be reproduced, except in full, without the written approval of Elite Electronic Engineering Inc. Page 2 of 70 Table of Contents 1. Report Revision History ............................................................................................................................ 3 2. Introduction ............................................................................................................................................... 4 2.1. Scope of Tests .......................................................................................................................................... 4 2.2. Purpose ..................................................................................................................................................... 4 2.3. Identification of the EUT ............................................................................................................................ 4 3. Power Input ............................................................................................................................................... 4 4. Grounding ................................................................................................................................................. 4 5. Support Equipment ................................................................................................................................... 4 6. Interconnect Leads .................................................................................................................................... 5 7. Modifications Made to the EUT ................................................................................................................. 5 8. Modes of Operation ................................................................................................................................... 5 9. Test Specifications .................................................................................................................................... 5 10. Test Plan ................................................................................................................................................... 5 11. Deviation, Additions to, or Exclusions from Test Specifications ............................................................... 6 12. Laboratory Conditions ............................................................................................................................... 6 13. Summary ................................................................................................................................................... 6 14. Sample Calculations ................................................................................................................................. 6 15. Statement of Conformity ........................................................................................................................... 7 16. Certification ...................................................................................…
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Engineering Test Report No. 2300550-02 Report Date June 16, 2023 Manufacturer Name Winegard Company Manufacturer Address 2736 Mt Pleasant St Burlington, IA 52601 Product Name Model Nos. BLE Sensor HS-PIR1, HS-H2O1, HS-CC01, and HS-TMP1 Date Received June 12, 2023 Test Dates June 12, 2023 through June 16, 2023 Specifications FCC “Code of Federal Regulations” Title 47, Part 15, Subpart B Innovation, Science, and Economic Development Canada, ICES-003 FCC "Code of Federal Regulations" Title 47 Part 15, Subpart C, Section 15.247 Innovation, Science, and Economic Development Canada, RSS-GEN Innovation, Science, and Economic Development Canada, RSS-247 Test Facility Elite Electronic Engineering, Inc. 1516 Centre Circle, Downers Grove, IL 60515 FCC Reg. Number: 269750 IC Reg. Number: 2987A CAB Identifier: US0107 Signature Tested by Javier Cardenas Signature Approved by Raymond J. Klouda, Registered Professional Engineer of Illinois – 44894 PO Number P539046-00 This report is for your exclusive use. Any copying or replication of this report to or for any other person or entity, or use of our name or trademark, is permitted only with our prior written permission. This report sets forth our findings solely with respect to the test samples identified herein. The results set forth in this report are not indicative or representative of the quality or characteristics of the lot from which a test sample was taken or any similar or identical product unless specifically and expressly noted. Our report includes all of the tests requested by you and the results thereof based upon the information that you provided to us. You have 60 days from date of issuance of this report to notify us of any material error or omission caused by our negligence, provided, however, that such notice shall be in writing and shall specifically address the issue you wish to raise. A failure to raise such issue within the prescribed time shall constitute your unqualified acceptance of the completeness of this report, the tests conducted and the correctness of the report contents. This report shall not be reproduced, except in full, without the written approval of Elite Electronic Engineering Inc. Elite Electronic Engineering Incorporated certifies that the information contained in this report was obtained under conditions which meet or exceed those specified in the FCC "Code of Federal Regulations" Title 47 Part 15, Subpart C, Section 15.247 and Innovation, Science, and Economic Development Canada, RSS-247 test specifications. The data presented in this test report pertains to the EUT on the test dates specified. Any electrical or mechanical modifications made to the EUT subsequent to the specified test date will serve to invalidate the data and void this certification. This report must not be used to claim product certification, approval, or endorsement by A2LA, NIST, or any agency of the Federal Government. Engineering Test Report No. 2300550-02 This report shall not be reproduced, except in full, without the written approval of Elite Electronic Engineering Inc. Page 2 of 162 Table of Contents 1. Report Revision History ............................................................................................................................ 3 2. Introduction ............................................................................................................................................... 4 2.1. Scope of Tests .......................................................................................................................................... 4 2.2. Purpose ..................................................................................................................................................... 4 2.3. Identification of the EUT ............................................................................................................................ 4 3. Power Input ............................................................................................................................................... 4 4. Grounding ................................................................................................................................................. 4 5. Support Equipment ................................................................................................................................... 4 6. Interconnect Leads .................................................................................................................................... 5 7. Modifications Made to the EUT ................................................................................................................. 5 8. Modes of Operation ................................................................................................................................... 5 9. Test Specifications .................................................................................................................................... 5 10. Test Plan ................................................................................................................................................... 5 11. Deviation, Additions to, or Exclusions from Test Specifications ............................................................... 6 12. Laboratory Conditions ............................................................................................................................... 6 13. Summary ................................................................................................................................................... 6 14. Sample Calculations ................................................................................................................................. 6 15. Statement of Conformity ........................................................................................................................... 6 16. Certification ..................................................…
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Engineering Test Report No. 2300550-02 Page 82 of 162 Engineering Test Report No. 2300550-02 Page 83 of 162 Engineering Test Report No. 2300550-02 Page 84 of 162 Engineering Test Report No. 2300550-02 Page 85 of 162 Engineering Test Report No. 2300550-02 Page 86 of 162 Engineering Test Report No. 2300550-02 Page 87 of 162 Engineering Test Report No. 2300550-02 Page 88 of 162 Engineering Test Report No. 2300550-02 Page 89 of 162 Engineering Test Report No. 2300550-02 Page 90 of 162 Engineering Test Report No. 2300550-02 Page 91 of 162 Test Details Manufacturer Winegard Company EUT BLE Sensor Model No. HS-H2O1 Serial No. Var2 Mode Tx Frequency Tested 2402MHz Notes Peak Measurements in the Restricted Bands Freq (MHz) Ant Pol Meter Reading (dBμV) Ambient Cable Factor (dB) Antenna Factor (dB/m) Pre Amp (dB) Peak Total at 3m (dBμV/m) Peak Total at 3m (μV/m) Peak Limit at 3m (μV/m) Margin (dBm) 4804.00 H 47.4 * 3.7 34.3 -39.7 45.7 192.5 5000.0 -28.3 V 47.5 * 3.7 34.3 -39.7 45.8 194.5 5000.0 -28.2 12010.00 H 47.1 * 6.1 38.8 -39.0 53.0 449.1 5000.0 -20.9 V 48.0 * 6.1 38.8 -39.0 53.9 496.4 5000.0 -20.1 Engineering Test Report No. 2300550-02 Page 92 of 162 Test Details Manufacturer Winegard Company EUT BLE Sensor Model No. HS-H2O1 Serial No. Var2 Mode Tx Frequency Tested 2402MHz Notes Average Measurements in the Restricted Bands Freq (MHz) Ant Pol Meter Reading (dBμV) Ambient CBL Fac (dB) Ant Fac (dB/m) Pre Amp (dB) Duty Cycle Factor (dB) Average Total at 3m (dBμV/m) Average Total at 3m (μV/m) Average Limit at 3m (μV/m) Margin (dB) 4804.00 H 34.41 * 3.7 34.3 -39.7 0.0 32.7 43.1 500.0 -21.3 V 34.32 * 3.7 34.3 -39.7 0.0 32.6 42.7 500.0 -21.4 12010.00 H 34.62 * 6.1 38.8 -39.0 0.0 40.5 106.2 500.0 -13.5 V 34.66 * 6.1 38.8 -39.0 0.0 40.6 106.7 500.0 -13.4 Engineering Test Report No. 2300550-02 Page 93 of 162 Test Details Manufacturer Winegard Company EUT BLE Sensor Model No. HS-H2O1 Serial No. Var2 Mode Tx Frequency Tested 2402MHz Notes Peak Measurements in Non-Restricted Bands Freq (MHz) Ant Pol Meter Reading (dBμV) Ambient Cable Factor (dB) Antenna Factor (dB/m) Pre Amp (dB) Peak Total at 3m (dBμV/m) Peak Total at 3m (μV/m) Peak Limit at 3m (μV/m) Margin (dBm) 2402.00 H 64.69 2.6 32.6 0.0 99.9 98583.4 NA NA V 59.97 2.6 32.6 0.0 95.2 57253.7 NA NA 7206.00 H 38.75 4.6 36.3 -39.7 40.0 100.2 9858.3 -39.9 V 38.61 4.6 36.3 -39.7 39.9 98.6 9858.3 -40.0 9608.00 H 37.96 5.2 37.1 -39.3 41.0 111.8 9858.3 -38.9 V 37.50 5.2 37.1 -39.3 40.5 106.0 9858.3 -39.4 Engineering Test Report No. 2300550-02 Page 94 of 162 Test Details Manufacturer Winegard Company EUT BLE Sensor Model No. HS-H2O1 Serial No. Var2 Mode Tx Frequency Tested 2440MHz Notes Peak Measurements in the Restricted Bands Freq (MHz) Ant Pol Meter Reading (dBμV) Ambient Cable Factor (dB) Antenna Factor (dB/m) Pre Amp (dB) Peak Total at 3m (dBμV/m) Peak Total at 3m (μV/m) Peak Limit at 3m (μV/m) Margin (dBm) 4880.00 H 48.4 * 3.7 34.2 -39.6 46.7 216.8 5000.0 -27.3 V 49.0 * 3.7 34.2 -39.6 47.2 230.2 5000.0 -26.7 7320.00 H 48.0 * 4.7 36.3 -39.6 49.3 291.8 5000.0 -24.7 V 48.6 * 4.7 36.3 -39.6 50.0 315.2 5000.0 -24.0 12200.00 H 48.4 * 6.1 38.9 -38.9 54.4 527.0 5000.0 -19.5 V 48.6 * 6.1 38.9 -38.9 54.6 539.9 5000.0 -19.3 Engineering Test Report No. 2300550-02 Page 95 of 162 Test Details Manufacturer Winegard Company EUT BLE Sensor Model No. HS-H2O1 Serial No. Var2 Mode Tx Frequency Tested 2440MHz Notes Average Measurements in the Restricted Bands Freq (MHz) Ant Pol Meter Reading (dBμV) Ambient CBL Fac (dB) Ant Fac (dB/m) Pre Amp (dB) Duty Cycle Factor (dB) Average Total at 3m (dBμV/m) Average Total at 3m (μV/m) Average Limit at 3m (μV/m) Margin (dB) 4880.00 H 34.64 * 3.7 34.2 -39.6 0.0 32.9 44.3 500.0 -21.1 V 34.53 * 3.7 34.2 -39.6 0.0 32.8 43.7 500.0 -21.2 7320.00 H 34.74 * 4.7 36.3 -39.6 0.0 36.1 63.6 500.0 -17.9 V 34.52 * 4.7 36.3 -39.6 0.0 35.9 62.0 500.0 -18.1 12200.00 H 34.03 * 6.1 38.9 -38.9 0.0 40.1 100.9 500.0 -13.9 V 34.10 * 6.1 38.9 -38.9 0.0 40.1 101.7 500.0 -13.8 Engineering Test Report No. 2300550-02 Page 96 of 162 Test Details Manufacturer Winegard Company EUT BLE Sensor Model No. HS-H2O1 Serial No. Var2 Mode Tx Frequency Tested 2440MHz Notes Peak Measurements in Non-Restricted Bands Freq (MHz) Ant Pol Meter Reading (dBμV) Ambient Cable Factor (dB) Antenna Factor (dB/m) Pre Amp (dB) Peak Total at 3m (dBμV/m) Peak Total at 3m (μV/m) Peak Limit at 3m (μV/m) Margin (dBm) 2440.00 H 64.66 2.6 32.6 0.0 99.9 99140.4 NA NA V 60.50 2.6 32.6 0.0 95.8 61411.6 NA NA 9760.00 H 37.43 5.2 37.2 -39.3 40.6 107.4 9914.0 -39.3 V 37.54 5.2 37.2 -39.3 40.7 108.7 9914.0 -39.2 Engineering Test Report No. 2300550-02 Page 97 of 162 Test Details Manufacturer Winegard Company EUT BLE Sensor Model No. HS-H2O1 Serial No. Var2 Mode Tx Frequency Tested 2480MHz Notes Peak Measurements in the Restricted Bands Freq (MHz) Ant Pol Meter Reading (dBμV) Ambient Cable Factor (dB) Antenna Factor (dB/m) Pre Amp (dB) Peak Total at 3m (dBμV/m) Peak Total at 3m (μV/m) Peak Limit at 3m (μV/m) Margin (dBm) 4960.00 H 47.9 * 3.7 34.1 -39.6 46.1 201.8 5000.0 -27.9 V 48.0 * 3.7 34.1 -39.6 46.2 205.0 5000.0 -27.7 7440.00 H 47.5 * 4.7 36.3 -39.6 49.0 282.0 5000.0 -25.0 V 47.3 * 4.7 36.3 -39.6 48.8 275.0 5000.0 -25.2 12400.00 H 47.5 * 6.1 38.9 -38.8 53.7 486.1 5000.0 -20.2 V 46.9 * 6.1 38.9 -38.8 53.1 451.6 5000.0 -20.9 Engineering Test Report No. 2300550-02 Page 98 of 162 Test Details Manufacturer Winegard Company EUT BLE Sensor Model No. HS-H2O1 Serial No. Var2 Mode Tx Frequency Tested 2480MHz Notes Average Measurements in the Restricted Bands Freq (MHz) Ant Pol Meter Reading (dBμV) Ambient CBL Fac (dB) Ant Fac (dB/m) Pre Amp (dB) Duty Cycle Factor (dB) Average Total at 3m (dBμV/m) Average Total at 3m (μV/m) Average Limit at 3m (μV/m) Margin (dB) 4960.00 H 34.54 * 3.7 34.1 -39.6 0.0 32.8 43.5 500.0 -21.2 V 34.41 * 3.7 34.1 -39.6 0.0 32.6 42.8 500.0 -21.3 7440.00 H 34.32 * 4.7 36.3 -39.6 0.0 35.8 61.7 500.0 -18.2 V 35.05 * 4.7 36.3 -39.6 0.0 36.5 67.1 500.0 -17.4 12400.00 H 33.71 * 6.1 38.9 -38.8 0.…
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Engineering Test Report No. 2300550-02 Page 160 of 162 Engineering Test Report No. 2300550-02 Page 161 of 162 Engineering Test Report No. 2300550-02 Page 162 of 162
1516 Centre Circle, Downers Grove IL 60515 ANTENNA EXHIBIT Manufacturer Name Winegard Company Manufacturer Address 3000 Kirkwood St, Burlington, IL Model No. Model numbers: a. HS-SSET (superset, all features) b. HS-TMP1 (Buzzer, Temperature, humidity, accel) c. HS-PIR1 (Buzzer, accel, Motion, ambient light) d. HS-CC01 (Buzzer, Contact closure) e. HS-H2O1 (Buzzer, accel, temp/humidity,Water/Leak detector) Specifications FCC “Code of Federal Regulations” Title 47 Part 2.1033(b)(4), 15.203, 15.212, 15.217, 15.219, 15.255 and 15.256 KDB 353028 D01 v01 f01 Industry Canada RSS-GEN Test Facility Elite Electronic Engineering, Inc. 1516 Centre Circle, Downers Grove, IL 60515 FCC Reg. Number: 269750 IC Reg. Number: 2987A CAB Identifier: US0107 Requirement All part 15 applications will need to show how the antenna gain was derived either from a manufacturer data sheet or a measurement. Where the gain of the antenna is inherently accounted for as a result of the measurement, such as field strength measurements on a part 15.249 or 15.231 device, so the gain does not necessarily need to be verified. However, enough information regarding the construction of the antenna shall be provided. Such information maybe photographs, length of wire antenna etc. The antenna gain information shall be made public (not confidential). Any proprietary information such as construction maybe stripped from the gain information report and held confidential. The main antenna information we require is the maximum gain of the antenna for the band of operation. This information must be provided as a data sheet or a measurement report. 1516 Centre Circle, Downers Grove IL 60515 The antenna is constructed of a copper trace on an FR4 substrate with 1 dBi Gain. See layout below. It is approximately 10mm by 3mm and it matched to the 50 Ohm transceiver through a matching network. Figure 1. Antenna Layout and dimensions
Engineering Test Report No. 2300550-01 Page 36 of 70 Test Setup for Spurious Radiated Emissions, 30MHz – 1GHz – Antenna Polarization Horizontal Test Setup for Spurious Radiated Emissions, 30MHz – 1GHz – Antenna Polarization Vertical Engineering Test Report No. 2300550-01 Page 37 of 70 Test Setup for Spurious Radiated Emissions, 1 – 18GHz – Antenna Polarization Horizontal Test Setup for Spurious Radiated Emissions, 1 – 18GHz – Antenna Polarization Vertical Engineering Test Report No. 2300550-01 Page 38 of 70 Test Setup for Spurious Radiated Emissions, Above 18…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 5.50 mW |

Gateway PRO 2x2
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Gateway PRO 2x2
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Basic Gateway 2x2
Equipment Class
DTS - Digital Transmission SystemSatellite Positional/TV interface device A ferrite loaded control cable and a ferrite loaded power cord must be supplied with each unit.
Equipment Class
HID - Part 15 TV Interface DeviceHID - Part 15 TV Interface Device
Equipment Class
HID - Part 15 TV Interface Device