
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
For more information, please email us at: [email protected]. Telkonet Communications, Inc. 20374 Seneca Meadows Parkway Germantown, Maryland 20876 Telephone: 877-282-2519 www.telkonet.com Copyright © 2009 Telkonet Inc. All rights Reserved. Document Number: 6.70.119 r4 Warning: Read all instructions carefully before installing this product. Battery Replacement Procedures for Telkonet SS2200-Series Occupancy Sensors SS2200 Occupancy Sensor for Telkonet Energy Management Systems Specifications: •Maximum Diameter (at face) - 13.0mm •Minimum Diameter (at base) - 11.3mm •Depth – 4cm •Weight (batteries loaded) – 1lb 1oz •Power Source – 4xAA Industrial Alkaline AA Alkaline batteries are the minimum permissible battery standard for SS2200 sensors. Non-alkaline “long-life” batteries will not yield acceptable long-term performance. Where possible, the use of “Industrial” batteries (Energizer EN-91-LR6-AM3 [Zn/MnO 2 ] or equivalent) is recommended. Batteries should be replaced as part of scheduled servicing as follows: • Standard Alkaline Batteries – Approximately every 24 months • Industrial / "Heavy Duty"Batteries – Approximately every 18 months Operational Notes: Following Sensor battery replacement, it is not necessary to perform the re-association process. The SS5000 / SS5200 Thermostat or SS1107 Controller will have already stored the Sensor’s unique ID. •For installation and support information, see Technical Note 6.30.115. •For information regarding associating SS2200- Series sensors see Technical Note 6.70.104 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. The user is cautioned that changes and modifications made to the equipment without the approval of manufacturer could void the user’s authority to operate this equipment. Battery Replacement Procedure Step 1: Remove the retaining screw, and rotate the Sensor faceplate until it disengages from the mounted base. Step 2: Place the sensor faceplate on a stable, flat surface. Proceed with a good grip on the assembly and take care not to disengage the battery wires. With the batteries removed, take a moment to orient yourself with the battery clips and polarity markings on the unit. Note that: •The negative terminal clip for each battery is designed to act as a “spring” to push the battery’s positive terminal into place. •There is a small embossed polarity guide on the inside of the faceplate, just in front of the battery clips. Note the orientation when looking at the batteries from the side: •The bottom battery always has its positive terminal facing right •The top battery always has its positive terminal facing left •Check to ensure there is no oxidation or battery “acid” on the battery terminals. Dispose of used batteries in a safe and approved manner. Step 4: Insert the replacement batteries. Begin by placing the bottom battery, and then the top for each side. Whenever inserting batteries, it is best to place the negative battery end on the negative terminal, and then gently press the battery into the clip until it seats against the terminal. Ensure that there is nothing in between the battery terminals and the battery clips, such as stray insulation, paint chips, etc. The battery terminals must make firm, conducting contact with the battery clips. When placing the top batteries into the clips, take care not to press down on the spring negative clip. Excessive force will cause the metal terminal to slide down on the plastic bracket, and short against the bottom terminal. This will short- circuit the battery, resulting in possible damage the Sensor. Step 5: Visually double-check the assembly with the new batteries in place. Verify that: •Battery orientation is correct •Metal battery clips are not shorted against each other •The black power connector is firmly- attached to the circuit board •Touch the battery sides with your finger. If they are warm or hot to the touch, this is a clear indication of a shorted terminal. Re- examine the unit. Step 6: Verify that the retaining screw hole in the side of the Sensor assembly is oriented near the matching hole on the mounting plate. Insert the Sensor assembly into the mounting plate, and fix in place by rotating the unit slightly clockwise. Replace the retaining screw. Step 3: Remove the batteries. The battery clips are designed to hold the batteries snugly in place despite a wide variety of mounting options, so a small, flat-head screwdriver is often of use in removing the batteries. Figure 1 - Removing the Sensor from the Mounting Plate Figure 2 - Sensor Assembly on secure, flat surface Figure 3 - Battery Orientarion and clips Figure 4 - Inserting Batteries Figure 5 - Shorted clips
Telkonet SmartEnergy 10200 Innovation Drive Milwaukee, WI 53226 Tel: (240) 912 -1800 Fax: (414) 258 - 8307 www.telkonet.com SS5200 Thermostat Installation & Maintenance Guidebook Document - 6.30.115 In This Training Guide 1. What is a SmartSystem? 2. How Does it Work? 3. Answering Common Guest Questions 4. Installing a New Sensor 5. Installing a New Thermostat 6. Linking the Sensor to the Thermostat 7. Troubleshooting 8. Product Returns What is a “SmartSystem”? Guest exits room and leaves thermostat set, for example, to 72 o . 1 2 3 4 5 6 7 8 9 10 11 12 Thermostat turns down while the room is empty to save energy, temperature drifts off of the set point. 1 2 3 4 5 6 7 8 9 10 11 12 Guest returns to room, air conditioner turns on to return the room temperature to guest’s setting. 1 2 3 4 5 6 7 8 9 10 11 12 Thermostat returns the room to the guest’s setting within about 15 minutes. 1 2 3 4 5 6 7 8 9 10 11 12 How Does it Work? Two units working together: People sensor on the ceiling Thermostat on the wall What Happens While a Guest is in the Room? Guest has full control of the thermostat while in the room. SmartSystems save energy in empty rooms. How Does the Sensor Know When the Room is Empty? Sensor detects motion and body heat. The sensor transmits the room status wirelessly. If You Walk Into a Room That Feels Too Warm or Too Cool... Room temperature will automatically return to the thermostat’s last setting within about 15 minutes. 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 5 6 7 8 9 10 11 12 Buttons on the Thermostat F AN H EAT C OOL A UTO O FF Turn continuous fan on/off. (This does not make it warmer or cooler, it just moves the air around.) Turn Heat or Cool on, or turn the system completely off. These are the “Warmer/Cooler” Buttons. Press these to raise or lower the temperature. Press Up Arrow for warmer, Down Arrow for cooler. Pictures on the Thermostat F AN H EAT C OOL A UTO O FF Temperature setting. Continuous fan is on (blank when fan is off). Flame = Heat mode on Snowflake = Cool mode on Blank = System is off Flashing flame or snowflake means the system is blowing warm or cool air at that moment. Batteries on sensor are low or missing, or sensor is gone. Sometimes this also means the sensor is broken. Note to Housekeeping and Front Desk • If products in the room are missing or have been vandalized... • If the thermostat screen is displaying a flashing wrench... • If the thermostat cover is not locked down... Note the room number and description of the problem and report it to maintenance right away. Answering Common Guest Questions When Housekeeping Finds a Problem in a Room • If products in the room are found to be vandalized or they are not functioning properly, note the room number and report it to maintenance right away. Too Hot or Too Cold If a guest returns to their room and complains it is too hot or too cold, “Please give it about fifteen minutes to return to your temperature setting.” Temperature Won’t Go Lower/Higher If the guest complains that the thermostat won’t let them set it as high or as low as they want. Explain to them that the thermostat has heat/cool limits, this prevents energy waste. NOTE: Setting the temperature to extreme temperatures will not make the room get warmer/cooler faster ! Thermostat is Clicking “Thermostat is making loud “clicking” noises. Have maintenance staff replace the thermostat right away. Thermostat Won’t Respond If the guest complains that they are setting the temperature on the thermostat but the system won’t turn on... The system has probably been turned off; ask the guest to press the HEAT/COOL button. Pressing this button will turn the system back on. A snowflake or flame symbol should always be displayed. If no symbol is displayed, the system has been turned off. What Happens While a Guest is in the Room? • When a guest is in the room, they control the room temperature, just like a regular thermostat. • A SmartSystem saves energy in an empty room. Installing a New Sensor Sensor Installation Steps - Overview Remove failed or vandalized sensor. Insert Batteries Connect new sensor to the base. Link the new sensor to the thermostat. 1. 2. 3. 4. Important Note About Installing a New Sensor • Units are linked using a wireless signal. • Never move a sensor to another room. – It will not work in the new room until you establish a new communication link between the new sensor and the thermostat. – Procedures for this are in the LINK THE SENSOR TO THE THERMOSTAT section. Remove the Failed or Vandalized Sensor • Remove the main body of the Sensor from the ceiling mounted base by turning it counter- clockwise. Insert Batteries • Make sure batteries align according to the images in the casing. The “curved” metal pieces of the battery clips should be touching the “flat” end of the batteries as shown below. Connect New Sensor to the Base • Re-attach the main body of the Sensor to the ceiling mounted base by aligning the slots with the tabs. Hold base plate in place and turn clockwise until it snaps into place. If it doesn’t line up, spin the sensor ¼ turn and try again. Be sure the security screw is aligned on both sides. After the Sensor is Installed • After you install the sensor you must link the sensor to the thermostat. Proceed to LINK THE SENSOR TO THE THERMOSTAT section. Installing a New Thermostat Thermostat Installation Steps - Overview Unlock thermostat Remove failed or vandalized thermostat Attach new thermostat to base plate Link sensor to thermostat. Lock buttons Lock down thermostat cover 1. 2. 3. 4. 5. 6. Important Note About Installing a New Thermostat • Units are linked using a wireless signal. • Never move a sensor to another room. – It will not work in the new room until you establish a new communication link between the new sensor and the thermostat. – Procedures for this are in the LINK THE SENSOR TO THE THERMOSTAT section. Unlock the Thermostat • Unlock the thermostat cover by removing the screw with the appropriate tool. Screw…
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6.70.104 SS2000 / SS2200 Association Procedures 5/2010 Confidential – Information contained in this document is considered proprietary and confidential, and is intended for the internal use of Telkonet, Inc. our contracted Partners and VARs, and customers. This content is protected by all applicable copyright restrictions. © 2010 Telkonet, Inc. 1 Technical Note 6.70.104 SS2000 / SS2200 Association Procedures Scope: This document provides the process by which a SS2000 / SS2200 Occupancy Sensor is Associated to an SS1107 PTAC Controller or SS5000 / SS5200 Thermostat NOTE: This document applies only to the SS1107 PTAC Controller variant and SS5000 / SS5200 rev 4.5 and 5.1 Thermostat Models. Authors: Teejay Riedl, Robert Zirpoli Revision History: Revision Number Date Changed By: Summary of Change 1 12/2282008 Teejay Riedl / Robert Zirpoli Initial Draft 2 03/09/09 Teejay Riedl Audit Cycle 3 03/30/09 Teejay Riedl Merged data for SS5K association 4 06/16/09 Teejay Riedl Update 5 10/2009 Teejay Riedl Update; new numbering 6 5/27/2010 Robert Zirpoli Edited to include SS2200 Contents Overview...................................................................................................... 2 Terminology:............................................................................................. 2 Preparation:.................................................................................................. 2 Procedures: SS2000 to SS1107 Controller......................................................... 2 Step One – Power the Controller................................................................... 2 Step Two – Initiate the Association................................................................ 2 Procedures: SS2000 to 5000 Thermostat........................................................... 4 Step One – Power the Thermostat................................................................. 4 Step Two – Initiate the Association................................................................ 5 Step Three – Confirm the Association............................................................ 6 6.70.104 SS2000 / SS2200 Association Procedures 5/2010 Confidential – Information contained in this document is considered proprietary and confidential, and is intended for the internal use of Telkonet, Inc. our contracted Partners and VARs, and customers. This content is protected by all applicable copyright restrictions. © 2010 Telkonet, Inc. 2 Overview This document describes the process to associate (i.e. link) an SS2000 / SS2200 to either an SS1107 or SS5000 / SS5200. The document is separated by base-station type (SS1107 and SS5000 / SS5200). Terminology: • “Controller” – The SS1107 PTAC Controller unit • “Sensor” – The SS2000 / SS2200 Occupancy Sensor • “Poke” – the process of inserting the Smart Tool into the pinhole on a specified unit, and depressing the microswitch within for a period of approximately ¼ second (unless another hold time is specified). • “Smart Tool” – An unfolded paper clip or similar long, rigid wire Preparation: Ensure the components are installed per Telkonet Recommended Best Practices. In particular: • Controller should be solidly-affixed to the wall and/or outlet • Controller antenna should be extended, and not bunched-up inside the unit housing or wall • Sensor should be temporarily located in its desired location via double-sided tape (if radio link to the Controller) • Sensor should be firmly mounted to its desired location with all low-voltage wiring in place (if using hard-wired link and power from the Controller) Procedures: SS2000 to SS1107 Controller Step One – Power the Controller 1. Apply Power to the unit 2. Poke the Controller 3. The LED in the unit will begin a double flash (blink-blink-pause). This indicates that the Controller is in sensor acquisition mode. Observe the rate of the blinking (for comparison in step two) Step Two – Initiate the Association 1. Poke the sensor 2. Observe the LED on the controller. The LED should continue a double-blink, but the speed of the blink will double as well. 6.70.104 SS2000 / SS2200 Association Procedures 5/2010 3. After approximately 30 seconds, the LED will indicate the relative signal strength as red, yellow, or green. Yellow or Green are acceptable levels. If a red signal is shown, relocate the sensor to a better location. 4. Poke the 1107. The sensor LED will now blink to indicate the number of sensors which are associated to it. This blinking is normal, and allows an easy way for maintenance personnel to verify that the sensor(s) are still communicating to the controller. Figure 1: SS1107 ports, indicators, and controls Sensor Dissociation, SS1107 To force the SS1107 to drop sensor associations, follow these steps: 1. Press and hold the SS1107 microswitch for approximately 10 seconds. 2. The LED will double-blink red for 8-10 seconds while the switch is pressed, then go blank. 3. Once the LED is dark, all previously sensor associations will be deleted. Note that you cannot dissociate a single sensor from among multiples – all sensor association is dropped when the above process is invoked. You will need to re-associate any desired sensors. Confidential – Information contained in this document is considered proprietary and confidential, and is intended for the internal use of Telkonet, Inc. our contracted Partners and VARs, and customers. This content is protected by all applicable copyright restrictions. © 2010 Telkonet, Inc. 3 6.70.104 SS2000 / SS2200 Association Procedures 5/2010 Procedures: SS2000 / SS2200 to SS5000 / SS5200 Thermostat Unlocking the Command Mode NOTE: In some cases, depending on the installation and previous deployment, the SS5000 / SS5200 may have its command buttons “locked” to prevent tampering. If the procedures in “Step One” below do not allow control of the thermostat, follow these steps to unlock the Command functions 1 . 1. Press and hold the Fan button for ~7-10 seconds. 2. The display…
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Correspondence by Project Project Number: Correspondence NumberMemo XV6PST-2200-1 1) Please provide another Anti-Drug Abuse letter and Letter of Authority. The letter provided has an incorrect address listed. Response: The New Letter of Authority has Been Uploaded 2) Please provide an alternate location for the FCC ID label. Currently, the FCC ID label is located on a removable part which is not permitted. Response: Please see the label location exhibit revised to show the new location. 3) Please provide the reference notes mentioned in the user manual. Response: Please see the reference notes exhibits that are uploaded. 4) The block diagram submitted shows a door switch connection, however this configuration was not tested. Please explain why it was not tested. Response: This has not been implemented, and is not expected to be needed.
Report Number: B01223D1 FCC Part 15 Subpart B and FCC Section 15.249 Test Report Occupancy Sensor Model: SS2200 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 1 of 17 FCC PART 15, SUBPART B and C TEST REPORT for OCCUPANCY SENSOR MODEL: SS2200 Prepared for TELKONET, INC. 20374 SENECA MEADOWS PARKWAY GERMANTOWN, MARYLAND 20876-7004 Prepared by:_____________________ KYLE FUJIMOTO Approved by:____________________ JAMES ROSS COMPATIBLE ELECTRONICS INC. 114 OLINDA DRIVE BREA, CALIFORNIA 92823 (714) 579-0500 DATE: DECEMBER 30, 2010 REPORT APPENDICES TOTAL BODY A B C D E PAGES 17 2 2 2 10 7 40 This report shall not be reproduced except in full, without the written approval of Compatible Electronics. Report Number: B01223D1 FCC Part 15 Subpart B and FCC Section 15.249 Test Report Occupancy Sensor Model: SS2200 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 2 of 17 TABLE OF CONTENTS Section / Title PAGE GENERAL REPORT SUMMARY 4 SUMMARY OF TEST RESULTS 5 1. PURPOSE 6 2. ADMINISTRATIVE DATA 7 2.1 Location of Testing 7 2.2 Traceability Statement 7 2.3 Cognizant Personnel 7 2.4 Date Test Sample was Received 7 2.5 Disposition of the Test Sample 7 2.6 Abbreviations and Acronyms 7 3. APPLICABLE DOCUMENTS 8 4. DESCIRPTION OF TEST CONFIGURATION 9 4.1 Description of Test Configuration - EMI 9 4.1.1 Cable Construction and Termination 10 5. LISTS OF EUT, ACCESSORIES AND TEST EQUIPMENT 11 5.1 EUT and Accessory List 11 5.2 EMI Test Equipment 12 6. TEST SITE DESCRIPTION 13 6.1 Test Facility Description 13 6.2 EUT Mounting, Bonding and Grounding 13 7. TEST PROCEDURES 14 7.1 RF Emissions 14 7.1.1 Conducted Emissions Test 14 7.1.2 Radiated Emissions (Spurious and Harmonics) Test 15 8. CONCLUSIONS 17 Report Number: B01223D1 FCC Part 15 Subpart B and FCC Section 15.249 Test Report Occupancy Sensor Model: SS2200 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 3 of 17 LIST OF APPENDICES APPENDIX TITLE A Laboratory Accreditations and Recognitions B Modifications to the EUT C Additional Models Covered Under This Report D Diagrams, Charts, and Photos Test Setup Diagrams Radiated Emissions Photos Antenna and Effective Gain Factors E Data Sheets LIST OF FIGURES FIGURE TITLE 1 Plot Map And Layout of Test Site – 3 Meters Report Number: B01223D1 FCC Part 15 Subpart B and FCC Section 15.249 Test Report Occupancy Sensor Model: SS2200 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 4 of 17 GENERAL REPORT SUMMARY This electromagnetic emission test report is generated by Compatible Electronics Inc., which is an independent testing and consulting firm. The test report is based on testing performed by Compatible Electronics personnel according to the measurement procedures described in the test specifications given below and in the "Test Procedures" section of this report. The measurement data and conclusions appearing herein relate only to the sample tested and this report may not be reproduced without the written permission of Compatible Electronics, unless done so in full. This report must not be used to claim product endorsement by NVLAP or any other agency of the U.S. Government. Device Tested: Occupancy Sensor Model: SS2200 S/N: N/A Product Description: See Expository Statement Modifications: The EUT was not modified in order to meet the specifications. Manufacturer: Telkonet, Inc. 20374 Seneca Meadows Parkway Germantown, Maryland 20876-7004 Test Date: December 23, 2010 Test Specifications: EMI requirements CFR Title 47, Part 15, Subpart B; and Subpart C, sections 15.205, 15.209, and 15.249 Test Procedure: ANSI C63.4: 2009 Test Deviations: The test procedure was not deviated from during the testing. Report Number: B01223D1 FCC Part 15 Subpart B and FCC Section 15.249 Test Report Occupancy Sensor Model: SS2200 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 5 of 17 SUMMARY OF TEST RESULTS TEST DESCRIPTION RESULTS 1 Conducted RF Emissions, 150 kHz – 30 MHz This test was not performed because the EUT operates on battery power only and cannot be plugged in to the AC public mains. 2 Radiated RF Emissions 10 kHz – 9300 MHz (Transmitter Portion) Complies with the limits of CFR Title 47, Part 15, Subpart C, sections 15.205, 15.209, and 15.249 Highest reading in relation to spec limit: 52.71 (Avg) dBuV/m @ 5504.88 MHz (*U = 5.19 dB) 3 Radiated RF Emissions 10 kHz – 9300 MHz (Digital Portion) Complies with the Class B limits of CFR Title 47, Part 15, Subpart B. *U = EXPANDED UNCERTAINTY WITH A COVERAGE FACTOR OF K=2 Report Number: B01223D1 FCC Part 15 Subpart B and FCC Section 15.249 Test Report Occupancy Sensor Model: SS2200 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA…
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114 Olinda Drive · Brea, California · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 917.48 MHz - 917.48 MHz | - |

Aida Thermostat and Aida Controller
Equipment Class
DTS - Digital Transmission System
EcoTouch
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified
EcoAir
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified
EcoView/EcoContact
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx VerifiedLoad Control Module - Switch
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified