
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
VXDB-TW-KT-W VX Series Wireless Thermostat with an Occupancy Sensor INSTALLATION MANUAL JUNE 2020 3 Table of Contents Introduction .............................................................................................................5 Network Installation .................................................................................................7 Connecting the Antenna Module ..............................................................................7 Connecting the Ethernet Cable ................................................................................8 Powering the Server .................................................................................................9 Configuring the Online Connection Kit ...................................................................10 HVAC Controller Installation ...................................................................................11 Thermostat Installation ..........................................................................................13 Thermostat Configuration ......................................................................................14 Accessing the Configuration Screen .......................................................................15 Pairing an HVAC Controller to a Wireless Thermostat .............................................16 Setting the MESH ID ...............................................................................................17 Entering the Room Number ....................................................................................18 Configuring the Equipment Settings .......................................................................19 Configuring the Energy Saving Settings .................................................................20 Setting the Thermostat Clock ................................................................................21 Testing the Thermostat ..........................................................................................22 Thermostat Maintenance .......................................................................................23 Accessory Configuration (Optional) ........................................................................24 Accessing the Sensor Setup Menu ..........................................................................24 Activating a Sensor .................................................................................................25 Discovering a Sensor ..............................................................................................26 Configure the Functionality of a Sensor ..................................................................26 Pairing a Sensor with the HVAC Controller ..............................................................27 Completing the Sensor Setup ................................................................................28 Troubleshooting .....................................................................................................29 Error Codes ............................................................................................................29 Restoring Factory Settings .....................................................................................30 BLANK PAGE 45 Table of ContentsIntroduction Verdant VX Series Energy Management Thermostats deliver unprecedented energy savings without compromising the comfort of occupants. An Integrated occupancy sensor uses a combination of motion and thermal sensing technologies for accurate occupancy detection. Reliable occupancy detection allows for energy savings when rooms are unoccupied. Energy saving presets eliminate the guesswork and make it easy to adjust the energy saving settings. Fully configurable energy saving settings allow for customization of the thermostat energy saving settings to fit any situation. Comprehensive configuration options ensure full compatibility with virtually any existing or emerging HVAC system with up to 2 heat and 1 cool stages. Built-in wireless mesh-networking enables online management. APPENDIX 1 - Energy Saving Presets .......................................................................31 APPENDIX 2 - Glossary ............................................................................................32 Warranty Information .............................................................................................33 Technical Specifications ..........................................................................................34 67 NOTICE TO ENABLE NETWORKING CAPABILITIES OF THE VX THERMOSTAT, REFER TO THE “NETWORK INSTALLATION” SECTION OF THIS MANUAL. BEFORE STARTING THE INSTALLATION OF THE NETWORKED THERMOSTATS, ENSURE THAT THE ONLINE CONNECTION KIT IS CONNECTED TO THE INTERNET. THE ONLINE CONNECTION KIT MUST BE PLUGGED INTO AN INTERNET PORT WITH A PRIVATE IP ADDRESS WITH DHCP ACTIVE. THE ONLINE CONNECTION KIT MUST BE WHITELISTED USINGS ITS MAC ADDRESS WITH UNRESTRICTED INTERNET ACCESS. PORTS 80,443, AND 22 MUST BE OPEN TO INBOUND/OUTBOUND COMMUNICATION. PLEASE CONFIRM WITH A VERDANT TECHNICAL SUPPORT AGENT THAT THE ONLINE CONNECTION KIT IS COMMUNICATING PROPERLY WITH THE CLOUD SERVICE BY CALLING OUR TECHNICAL SUPPORT TEAM AT 1 877 318 1823. Network Installation Connecting the Antenna Module ➤Screw the Antenna onto the Wireless Receiver; ➤Connect the Wireless Receiver to the Server using the supplied USB cable; ➤Affix the Wireless Receiver to the wall with double sided adhesive tape; ➤Orient the antenna to be parallel to the closest room in which a Verdant thermostat will be installed. THE WIRELESS RECEIVER AND THE ANTENNA MUST NOT BE INSTALLED NEAR METAL STRUCTURES OR SURFACES. METAL STRUCTURES AND SURFACES SIGNIFICANTLY REDUCE THE RANGE OF THE WIRELESS SIGNAL. 89 Online Connection Kit Installation Connecting the Ethernet Cable ➤Connect the Server to the LAN port with the supplied RJ-45 cable. Online Connection Kit …
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External Photos
Internal Photos 2.4GHZ Antenna Your text here 900MHZ Antenna
© TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. May 22, 2020 FCC-XEYWX-DB_RF_Exposure Exhibit: RF Exposure – FCC FCC ID: XEYWX-DB IC: 8410A-WXDB © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. May 22, 2020 FCC-XEYWX-DB_RF_Exposure_Rev1 1 Product WX DB Thermostat Verdant Environmental Technologies Inc Client Standard(s) FCC Part 15 Subpart 15.247:2016 FCC KDB 447498:2015 SAR Calculations: 902.8 – 927.7 MHz FHSS transmitter The EUT contains a 902 – 928 MHz and a 2400 – 2483.5 MHz FHSS transmitters. The firmware guarantees simultaneous operation will not occur and therefore antenna co-location testing is not applicable. This device is designed to be operated handheld and for the purpose of demonstrating compliance with MPE requirements and SAR exemption; we present for a worst case 5mm distance and 100 % duty cycle. FCC Requirements: SAR test exclusion guidance As per FCC KDB 447498 D01 Section 4.3.1 a), the 1-g extremity SAR Test Exclusion Threshold for 100 MHz to 6 GHz at test separation distances ≤ 50 mm is determined by: [(max. power of channel, including tune-up tolerance, mW)/(min. test separation distance, mm)] [√f(GHz)] ≤ 3.0 Performing the calculation, of the worst case mentioned above, using the maximum power measured of 9.5mW (see page 52 on TR-7169007677-FCC-ISED-WX DB.pdf) yields to: 9.5 5 ∙ √ 0.927525=1.82; 1.82 is below the 3.0 worst case limit, so this device complies with FCC requirements ISED Requirements: SAR test exclusion guidance As per Table 1 in RSS-102, Section 2.5.1, the limit of 16.061mW has been calculated based on the interpolation between the limit of 835MHz is 17mW and 1900MHz is 7mW at 5mm or less. This device has effective isotropic radiated power with a peak value of 103.5 dBμV/m i - 95.2 (factor to convert to EIRP at 3 meters) of 8.3dBm, or 6.8mW. • 6.8 mW is less than 16.061mW limit as per section 2.5.1 on RS-102, thus the device meets the exception rules. © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. May 22, 2020 FCC-XEYWX-DB_RF_Exposure_Rev1 1 Product WX DB Thermostat Verdant Environmental Technologies Inc Client Standard(s) FCC Part 15 Subpart 15.247:2016 FCC KDB 447498:2015 SAR Calculations: 2412 – 2462 MHz DTS transmitter FCC Requirements: SAR test exclusion guidance As per FCC KDB 447498 D01 Section 4.3.1 a), the 1-g extremity SAR Test Exclusion Threshold for 100 MHz to 6 GHz at test separation distances ≤ 50 mm is determined by: [(max. power of channel, including tune-up tolerance, mW)/(min. test separation distance, mm)] [√f(GHz)] ≤ 3.0. Performing the calculation, of the worst-case (at the antenna output) of 4.21mW (see page 51 on TR-7169007677-FCC-ISED-2020-04-17-WX DB.pdf) yields to: 4.21 5 ∙ √ 2.402=1.30, 1.30 is below the 3.0 worst case limit, so this device complies with FCC requirements ISED Requirements: SAR test exclusion guidance As per Table 1 in RSS-102, Section 2.5.1 the power limit at 2450MHz at 5mm or less is 4mWx2.5 = 10mW. As per Table 1 in RSS-102, Section 2.5.1, the limit of 4.24mW has been calculated based on the interpolation between the limit of 1900MHz is 7mW and 2450MHz, which is 4mW; times 2.5 equal to 10mW at 5mm or less. This device has effective isotropic radiated power with a peak value of 97 dBμV/m ii - 95.2 (factor to convert to EIRP at 3 meters) of 1.8dBm, or 1.51mW. • 1.51mW is less than 10mW limit as per section 2.5.1 on RS-102, thus the device meets the SAR exclusion criterion. This device has a maximum conducted peak power of 4.21mW iii • 4.21mW is less than 10mW, thus the device meets the SAR exclusion criterion. i See Table A.3 in page 113 of TR-7169007677-FCC-ISED-WX DB_Rev2.pdf ii See Table A.5 in page 114 of TR-7169007677-FCC-ISED-WX DB_Rev2.pdf iii See Table 19 in page 52 of TR-7169007677-FCC-ISED-WX DB_Rev2.pdf
TÜV SÜD Product Service is a trading name of TUV SUD Ltd 2972 Joseph-A-Bombardier Laval, QC H7P 6E3 Canada TUV SUD Ltd is a TÜV SÜD Group Company Phone: +450-687-4976 www.tuv-sud.ca TÜV SÜD Product Service RESPONSIBLE FOR NAME DATE SIGNATURE Test Specialist Abdoulaye Ndiaye 22-09-2020 Authorised Signatory Scott Drysdale 22-09-2020 Signatures in this approval box have checked this document in line with the requirements of TÜV SÜD Product Service document control rules. EXECUTIVE SUMMARY A sample of this product was tested and found to be in compliance with FCC Part 15 Subpart 15.247/ ICES 003 Issue 6, RSS-247 Issue 2. A2LA Cert. No. 2955.20 DISCLAIMER AND COPYRIGHT This non-binding report has been prepared by TÜV SÜD Canada with all reasonable skill and care. The document is confidential to the potential Client and TÜV SÜD Canada. No part of this document may be reproduced without the prior written approval of TÜV SÜD Canada. © TÜV SÜD. ACCREDITATION Our A2LA Accreditation does not cover opinions and interpretations and any expressed are outside the scope of our A2LA Accreditation. FCC RF Test Report As per RSS-247 Issue 2 FCC Part 15.247 Subpart C & ICES 003 Issue 6 on the WX DB Thermostat IC: 8410A-WXDB; FCC ID: XEYWX – DB Prepared to: Verdant. Environmental Technologies, Inc. 1850 – 55 th Avenue, Lachine, Quebec, H8T 3J5 CANADA Verdant Environmental Technologies, Inc.. Document Number: TR-7169007677 Issue 02 | 2020.09.22 WX DB thermostat COMMERCIAL-IN-CONFIDENCE No part of this document may be reproduced without the prior written approval of TÜV SÜD Canada. © TÜV SÜD. Page 2 of 157 Contents 1 Report Summary .........................................................................................................................8 2 Introduction .............................................................................................................................. 10 3 EUT: WX DB Thermostat ......................................................................................................... 15 3.1 Specifications: ............................................................................................................................ 15 3.2 Modes of Operation .................................................................................................................... 18 3.3 Setup Diagram ........................................................................................................................... 18 4 Deviations from the Standard ................................................................................................. 19 5 Measurement Uncertainty ....................................................................................................... 19 6 99% Bandwidth ......................................................................................................................... 20 6.1 Purpose & Methods .................................................................................................................... 20 6.2 Test Specifications ..................................................................................................................... 21 6.3 Test Setup .................................................................................................................................. 22 6.4 Test Results ............................................................................................................................... 22 6.5 Graphs ........................................................................................................................................ 24 6.6 Test Instruments ......................................................................................................................... 30 7 6dB Bandwidth of Digitally Modulated Systems ................................................................... 31 7.1 Purpose & Methods .................................................................................................................... 31 7.2 Test Specifications ..................................................................................................................... 31 7.3 Test Setup .................................................................................................................................. 32 7.4 Test Results ............................................................................................................................... 32 7.5 Graphs ........................................................................................................................................ 33 7.6 Test Instruments ......................................................................................................................... 36 8 Hopping Channel ...................................................................................................................... 37 8.1 Purpose & Methods .................................................................................................................... 37 8.2 Test Specifications ..................................................................................................................... 37 8.3 Limits .......................................................................................................................................... 38 8.4 Test Setup .................................................................................................................................. 38 8.5 Test Results ............................................................................................................................... 38 8.6 Graphs ........................................................................................................................................ 39 8.7 Test Instruments ......................................................................................................................... 41 9 Channel Separation..............................................…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.46 MHz - 926.4 MHz | 8.50 mW |

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