
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Before You Get Started Important Note: Properly Connect Your Panels. Read these instructions completely and carefully. Your Hexagon Panels include two type of ports: Input Ports and Output Ports. Your linking cables must be properly installed to ensure that each Hexagon Panel has power. Here’s what to know: Input Ports are identified with an arrow. Power comes INTO this port. Connect the control box (first panel) or the linking cable from the previous Hexagon Panel into the port marked with an arrow. Output Ports are identified with numbers. Power LEAVES through this port to provide power to the next Hexagon Panel in your design. Connect the linking cable to any one of the 5 ports to power the next Hexagon Panel in the sequence. Select the Output Port closest to the Input Port on the next Panel. CYNC Hexagon Panel Installation Guide Let’s Do It (7) Light Panels (5) Light Panels (10) Light Panels (9) Linking Cables (10) Layout Templates Control Box Power Adapter Panel Remover Tool Orientation Tool Cleaning Wipe Orientation Tool Cleaning Wipe Panel Remover Tool Level Control Box Power Adapter Level (7) Layout Templates (5) Layout Templates (30) Traceless Nails (21) Traceless Nails (15) Traceless Nails (6) Linking Cables (5) Linking Cables (12) Adhesive Strips (9) Adhesive Strips (6) Adhesive Strips (2) Control box mounting screws (2) Control box mounting screws 10 Pack 7 Pack What’s Included: 5 Pack Expansion GE is a trademark of General Electric Company. Used under trademark license. Note: One power adapter can power up to 20 Hexagon Panels. For any pattern needing more than 20 tiles of Hexagon Panels, you will need to purchase an additional set with an additional power adapter. Panels are connected in sequence. Do not use more than one Output Port on each Hexagon Panel. 4. Remove the 1st Layout Template from the wall. Leave the other templates in place for now. 5. Adhere to wall in your first position by using the removable adhesive pads. Stick one side to the back of the Hexagon Panel and the other side to the wall. PRESS AND GENTLY HOLD FOR 30 SECONDS. Installing the First Hexagon Panel 1. Ensure the control box has been connected to the first Hexagon Panel. 2. Determine the Output Port to connect to the 2nd Hexagon Panel. Select the Output Port that’s touching the side of the 2nd Hexagon Panel you’re connecting to. 3. Insert the Linking Cable into the desired Output Port BEFORE MOUNTING TO WALL. Download the CYNC App & Power the First Hexagon Panel 1. Download the Cync App. 2. Connect the control box and power adapter to the first Hexagon Panel. 3. Connect the control box cable by aligning the tab with the indentation on the cable and press the connector downwards to snap into the mounting bracket. 4. Power on the Hexagon Panel. • Keep lights on during installation to ensure linking cables are properly connected. 5. Connect to the Cync App and complete setup. The CYNC App walks through Hexagon Panel layout and installation step by step. Start with the CYNC App for the best experience. Use these instructions for reference. Preparing the Wall 1. Clean the wall with the provided cleaning wipe and let dry before moving forward with the installation. 2. Select a pattern in the CYNC App or create your own layout. 3. Use the Layout Template to create your design by peeling the backing off the removable adhesive and sticking the Layout Template to your wall. 4. Each Layout Template must be touching at least one flat side of another Layout Template to complete installation. 5. Adjust and reposition templates until you are satisfied with your design. 6. Determine the Hexagon Panel that will connect to the Control Box and Power Adapter (likely the one closest to your wall socket). This will be the first panel installed in the next step. Note: Double check your design before proceeding to the next step. Once the Hexagon Panels are installed, they may be difficult to readjust. Installing Middle Panels Repeat steps to install all middle panels 1. Rotate the next Hexagon Panel so that the Input Port side aligns with the Output Port of the previous Hexagon Panel. 2. Determine the Output Port to connect to the next Hexagon Panel. Select the Output Port that’s touching the side of the next Hexagon Panel you’re connecting to. 3. Insert the Linking Cable into the desired Output Port BEFORE MOUNTING TO WALL. 4. Remove the Layout Template of the Hexagon Panel you are installing. Leave the other templates in place for now. 5. Insert the Linking Cable from the previous Hexagon Panel into the Input Port. After inserting the linking cable from the previous Tile, note that the panel should light up if the cable is connected correctly. If it does not light up, ensure that the control box is plugged in and turned on, and re-check your connection. 6. Adhere to wall by using the removable adhesive pads. Stick one side to the back of the Hexagon Panel and the other side to the wall. PRESS AND GENTLY HOLD FOR 30 SECONDS. Input Port Input Port Output Port 4. As with the middle Tiles, after inserting the linking cable from the previous Tile, note that the panel should light up if the cable is connected correctly. If it does not light up, ensure that the control box is plugged in and turned on, and re-check your connection. 5. Adhere to wall by using the removable adhesive pads. Stick one side to the back of the Hexagon Panel and the other side to the wall. PRESS AND GENTLY HOLD FOR 30 SECONDS. 6. Set up light shows and scenes all through the CYNC app. 7. Enjoy! Installing Final Panel 1. Rotate the final Hexagon Panel so that the Input Port side aligns with the Output Port of the previous Hexagon Panel. 2. There’s no Output Port connection required for this Hexagon Panel. 3. Remove the last Layout Template from the wall. Fasten Hexagon Panels with Nails (Optional) Adhesive pads may not adhere to some surfaces, including wallpaper, brick, textured or porous surfaces. Nails may be required to complete installation. 1. Dis…
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Savant Technologies LLC, dba GE Lighting, a Savant company 1975 Noble Road, East Cleveland, OH 44112 USA * the applicant must designate a contact located in the United States for purposes of acting as the applicant’s agent for service of process, regardless of whether the applicant is a domestic or foreign entity. An applicant located in the United States may designate itself as the agent for service of process. U.S. Agent Designation for Service of Process - Certification Attestation Letter 2/7/2023 Nemko North America, Inc. 303 River Road Ottawa K1V 1H2 Canada ATTN.: Reviewing Engineer FCC ID: PUU-TILE-CDEN Per section 2.911(d)(7) of the FCC rules, Savant Technologies LLC, dba GE Lighting, a Savant company (“the applicant”) certifies that the equipment for which authorization is sought is designated to the following U.S. agent* for service of process: Company Name: Savant Technologies LLC dba GE Lighting, a Savant company Physical U.S. Company Address: 1975 Noble Road, Cleveland, Ohio USA 44112 Agent name: Paul Smith Agent Email Address: [email protected] The above contact person accepts the obligation for service of process. The applicant accepts to maintain an agent for no less than one year after the grantee has terminated all marketing and importation or the conclusion of any Commission-related proceeding involving the equipment. Applicant Signed: Agent Signed (if different to Applicant): Signed: Signed: Printed name: Paul Smith Printed name: Click here to enter text. Title: Lead Systems Engineer – Safety & Regulatory Title: Click here to enter text. Company Name: Company Name: Click here to enter text. Savant Technologies LLC dba GE Lighting, a Savant company Date: 2/8/2023 Date: Click here to enter a date.
Savant Technologies LLC, dba GE Lighting, a Savant company 1975 Noble Road, East Cleveland, OH 44112 USA Covered Equipment Certification Attestation Letter 2/7/2023 Nemko North America, Inc. 303 River Road Ottawa K1V 1H2 Canada ATTN.: Reviewing Engineer FCC ID: PUU-TILE-CDEN Savant Technologies LLC, dba GE Lighting, a Savant company (“the applicant”) certifies that the equipment for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Note: If the equipment for which the applicant seeks authorization is produced by any of the entities identified on the current Covered List, the applicant should include an explanation on why the equipment is not “covered” equipment. Savant Technologies LLC, dba GE Lighting, a Savant company (“the applicant”) certifies that, as of the date of the filing of the application, the applicant is not identified on the Covered List as an entity producing “covered” equipment. Signed: Printed name: Paul Smith Title: Lead Systems Engineer – Safety & Regulatory Company Name: Savant Technologies LLC dba GE Lighting, a Savant company Date: 2/8/2023
Savant Technologies LLC, dba GE Lighting, a Savant company 1975 Noble Road, East Cleveland, OH 44112 USA 1/11/2023 Nemko North America, Inc. 303 River Road Ottawa, Ontario, Canada K1V 1H2 AUTHORITY TO ACT AS AGENT - FCC On our behalf, I appoint Kamp Chen, Audix Technology (Shanghai) Co., Ltd., to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in FCC regulations will have affixed to it a label identical to that submitted for approval with this application. In signing this letter, Applicant certifies that neither the applicant nor any party to the application is not subject to a denial of Federal benefits, that include FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. § 862 because of a conviction for possession or distribution of a controlled substance. See 47 CFR 1.2002(b) for the definition of a "party" for these purposes. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for certification, as specified by Nemko North America Inc., still resides still resides with us. Sincerely, Printed name: Paul Smith
Savant Technologies LLC, dba GE Lighting, a Savant company 1975 Noble Road, East Cleveland, OH 44112 USA 1/11/2023 Nemko North America, Inc. 303 River Road Ottawa, Ontario, Canada K1V 1H2 REQUEST FOR CONFIDENTIALITY - FCC FCC ID: PUU-TILE-CDEN Pursuant to Sections 0.457(d)(1)(ii) and 0.459 of the Commission’s Rules and FCC Guidance document 726920, we hereby request confidential treatment of information accompanying this application as outlined below: PERMANENT LONG-TERM CONFIDENTIALITY: Schematics Bill of Materials/Parts List Block Diagrams Theory of Operation SHORT TERM CONFIDENTIALITY FOR A PERIOD OF 0 DAYS (Note: for the X number of days, you can list up to 180 days, but should not go past the date you start product marketing/sale): When the device is marketed before the requested number of days listed above, the grantee will inform the TCB to release the Short-Term Confidentiality information withheld on the FCC equipment authorization website. The above information contains trade secrets and proprietary information not customarily released to the public. The public disclosure of this information might be harmful to the applicant and provide unjustified benefits to its competitors. The Applicant understands that pursuant to Rule 0.457(d)(1)(ii), disclosure of this Application and all accompanying materials will not be made before the date of the Grant for this Application. Sincerely, Signed: Printed name: Paul Smith Title: Lead Systems Engineer – Safety & Regulatory
Appendix II Page 2 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 1 C YNC TILE (M/N: CFIXTIHCDEN) GENERAL VIEW FIGURE 2 CYNC TILE (M/N: CFIXTIHCDEN) CONTROLLER TOP Appendix II Page 3 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 3 C YNC TILE (M/N: CFIXTIHCDEN) CONTROLLER BOTTOM FIGURE 4 CYNC TILE (M/N: CFIXTIHCDEN) CONTROLLER FRONT Appendix II Page 4 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 5 C YNC TILE (M/N: CFIXTIHCDEN) CONTROLLER BACK FIGURE 6 CYNC TILE (M/N: CFIXTIHCDEN) CONTROLLER LEFT Appendix II Page 5 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 7 C YNC TILE (M/N: CFIXTIHCDEN) CONTROLLER RIGHT FIGURE 8 CYNC TILE (M/N: CFIXTIHCDEN) ADAPTER FRONT Appendix II Page 6 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 9 C YNC TILE (M/N: CFIXTIHCDEN) ADAPTER BACK FIGURE 10 CYNC TILE (M/N: CFIXTIHCDEN) LAMP PANNEL FRONT Appendix II Page 7 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 11 C YNC TILE (M/N: CFIXTIHCDEN) LAMP PANNEL BACK
ID zxs 2022.08.25 V1 0. 3.5mm ID zxs 2022.08.24 V1 0. Model No.: CFIXTIHCDEN IC: 10798A-CDENTILE FCC ID: PUU-TILE-CDEN 120Vac,60Hz,36W CONFORMS TO ANSI/UL STD.153 CERTIFIED TO CAN/CSA STD. C22.2 No.250.4 Made in Thailand YYDDDLS 5025147 Model No.: CFIXTIHCDEN IC: 10798A-CDENTILE FCC ID: PUU-TILE-CDEN 120Vac,60Hz,36W CONFORMS TO ANSI/UL STD.153 CERTIFIED TO CAN/CSA STD. C22.2 No.250.4 Made in Thailand YYDDDLS 5025147 ID zxs 2022.08.24 V1 0. Model No.: CFIXTIHCDEN IC: 10798A-CDENTILE FCC ID: PUU-TILE-CDEN 120Vac,60Hz,36W CONFORMS TO ANSI/UL STD.153 CERTIFIED TO CAN/CSA STD. C22.2 No.250.4 Made in China YYDDDLS 5025146 Model No.: CFIXTIHCDEN IC: 10798A-CDENTILE FCC ID: PUU-TILE-CDEN 120Vac,60Hz,36W CONFORMS TO ANSI/UL STD.153 CERTIFIED TO CAN/CSA STD. C22.2 No.250.4 Made in China YYDDDLS 5025146 5 4 3 2 1 ID zxs 2022.11.09 V1 0. : , !"#$%&'()"# *+。 - ./ , !"#$%&0()"# *+。 31,2,3,4,5 31,2,3,4,5 5 4 3 2 1 4 1 2 3 5 4 1 2 3 5 ID zxs 2022.08.24 V1 0.
Appendix II Page 8 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 12 C YNC TILE (M/N: CFIXTIHCDEN) COVER REMOVE FIGURE 13 CYNC TILE (M/N: CFIXTIHCDEN) POWER BAORD FRONT Appendix II Page 9 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 14 C YNC TILE (M/N: CFIXTIHCDEN) POWER BAORD BACK FIGURE 15 CYNC TILE (M/N: CFIXTIHCDEN) CONTROL BOARD FRONT Appendix II Page 10 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 16 C YNC TILE (M/N: CFIXTIHCDEN) CONTROL BOARD BACK FIGURE 17 CYNC TILE (M/N: CFIXTIHCDEN) CHIP&CRYSTAL ON CONTROL BOARD Appendix II Page 11 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 18 C YNC TILE (M/N: CFIXTIHCDEN) ANTENNA FIGURE 19 CYNC TILE (M/N: CFIXTIHCDEN) LAMP BOARD FRONT Antenna Appendix II Page 12 of 12 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 FIGURE 20 C YNC TILE (M/N: CFIXTIHCDEN) LAMP BOARD BACK FIGURE 21 CYNC TILE (M/N: CFIXTIHCDEN) LEDS
Applicant: Savant Technologies LLC, dba GE Lighting, a Savant company Product Name: Cync Tile Model Number: CFIXTIHCDEN FCC ID: PUU-TILE-CDEN RADIO FRREQUENCY EXPOSURE COMPLIANCE RESULT: Te s t Standard: FCC CFR 47 §1.1310 : Radiofrequency radiation exposure limits. Note: (1) Occupational/controlled exposure limits apply in situations in which persons are exposed as a consequence of their employment provided those persons are fully aware of the potential for exposure and can exercise control over their exposure. Limits for occupational/controlled exposure also apply in situations when a person is transient through a location where occupational/controlled limits apply provided he or she is made aware of the potential for exposure. (2) General population/uncontrolled exposure limits apply in situations in which the general public may be exposed, or in which persons who are exposed as a consequence of their employment may not be fully aware of the potential for exposure or cannot exercise control over their exposure. MPE Calculation Standard: MPE(S) = PG/(4휋푅 2 ) where: S = power density (in appropriate units, e.g. mW/ cm 2 ) P = power input to the antenna (in appropriate units, e.g., mW) G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna (appropriate units, e.g., cm) Calculation Result: For this EUT, General population/uncontrolled exposure limits applied. The limit value 1.0mW/cm 2 is available for this EUT. Modulation Peak Output Power Antenna Gain MPE Limit Verdict (dBm) (mW) (dBi) (Numeric) (mW/cm 2 ) (mW/cm 2 ) BLE 8.894 7.75175 2.31 1.70216 0.00263 1.0 Compliant 802.11b 15.61 36.3915 2.31 1.70216 0.01232 1.0 Compliant 802.11g 13.52 22.4905 2.31 1.70216 0.00762 1.0 Compliant 802.11n20 13.75 23.7137 2.31 1.70216 0.00803 1.0 Compliant For R = 20cm The Bluetooth and Wi-Fi will not simultaneous transmission at the same time.
Savant Technologies LLC, dba GE Lighting, a Savant company FCC ID: PUU-TILE-CDEN Page 1 of 45 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 Prepared For: Savant Technologies LLC, dba GE Lighting, a Savant company 1975 Noble Road, Cleveland, OH 44112 Prepared By: Audix Technology (Shanghai) Co., Ltd. 3F and 4F, 34Bldg, 680 Guiping Rd., Caohejing Hi-Tech Park, Shanghai 200233, China Tel: +86-21-64955500 File No. : C1D2211024 Report No. : ACI- F23011 Date of Test : 2022.11.24-2023.01.16 Date of Report : 2023.01.31 TEST REPORT On behalf of Savant Technologies LLC, dba GE Lighting, a Savant company Product Name: Cync Tile Model No.: CFIXTIHCDEN FCC ID: PUU-TILE-CDEN The statement is based on a single evaluation of one sample of the above-mentioned products. It does not imply an assessment of the whole production and does not permit the use of the test lab logo. The report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NI S T, or any agency of the Federal Government. TESTING NVLAP LAB CODE 200371-0 Savant Technologies LLC, dba GE Lighting, a Savant company FCC ID: PUU-TILE-CDEN Page 2 of 45 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23011 TABLE OF CONTENTS Page 1 SUMMARY OF STANDARDS AND RESULTS .......................................................................... 5 1.1 Description of Standards and Results ......................................................................................... 5 2 GENERAL INFORMATION .......................................................................................................... 6 2.1 Description of Equipment Under Test ........................................................................................ 6 2.2 EUT Specifications Assessed in Current Report ........................................................................ 7 2.3 Test Information ......................................................................................................................... 7 2.4 Sample Description .................................................................................................................... 7 2.5 Supported equipment .................................................................................................................. 8 2.6 Description of Test Facility ........................................................................................................ 8 3 CONDUCTED EMISSION TEST .................................................................................................. 9 3.1 Test Equipment........................................................................................................................... 9 3.2 Block Diagram of Test Setup ..................................................................................................... 9 3.3 Conducted Emission Limits (§15.207) ..................................................................................... 10 3.4 Test Configuration .................................................................................................................... 10 3.5 Operating Condition of EUT .................................................................................................... 10 3.6 Test Procedures ........................................................................................................................ 10 3.7 Test Results .............................................................................................................................. 11 4 RADIATED EMISSION TEST ..................................................................................................... 13 4.1 Test Equipment......................................................................................................................... 13 4.2 Block Diagram of Test Setup ................................................................................................... 13 4.3 Radiated Emission Limit (§15.209) ......................................................................................... 14 4.4 Test Configuration .................................................................................................................... 14 4.5 Operating Condition of EUT .................................................................................................... 15 4.6 Test Procedures ........................................................................................................................ 15 4.7 Test Results .............................................................................................................................. 16 5 6 DB BANDWIDTH MEASUREMENT ...................................................................................... 22 5.1 Test Equipment......................................................................................................................... 22 5.2 Block Diagram of Test Setup ................................................................................................... 22 5.3 Specification Limits (§15.247(a)(2)) ........................................................................................ 22 5.4 Operating Condition of EUT .................................................................................................... 22 5.5 Test Procedure .......................................................................................................................... 22 5.6 Test Results .............................................................................................................................. 23 6 MAXIMUM PEAK OUTPUT POWER MEASUREMENT ...................................................... 26 6.1 Test Equipment......................................................................................................................... 26 6.2 Block Diagram of Test Setup ................................................................................................... 26 6.…
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Savant Technologies LLC, dba GE Lighting, a Savant company FCC ID: PUU-TILE-CDEN Page 1 of 80 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23012 Prepared For: Savant Technologies LLC, dba GE Lighting, a Savant company 1975 Noble Road, Cleveland, OH 44112 Prepared By: Audix Technology (Shanghai) Co., Ltd. 3F and 4F, 34Bldg, 680 Guiping Rd., Caohejing Hi-Tech Park, Shanghai 200233, China Tel: +86-21-64955500 File No. : C1D2211024 Report No. : ACI- F23012 Date of Test : 2022.11.24-2023.01.06 Date of Report : 2023.01.31 TEST REPORT On behalf of Savant Technologies LLC, dba GE Lighting, a Savant company Product Name: Cync Tile Model No.: CFIXTIHCDEN FCC ID: PUU-TILE-CDEN The statement is based on a single evaluation of one sample of the above-mentioned products. It does not imply an assessment of the whole production and does not permit the use of the test lab logo. The report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NI S T, or any agency of the Federal Government. TESTING NVLAP LAB CODE 200371-0 Savant Technologies LLC, dba GE Lighting, a Savant company FCC ID: PUU-TILE-CDEN Page 2 of 80 Audix Technology (Shanghai) Co., Ltd. Report No.: ACI-F23012 TABLE OF CONTENTS Page 1 SUMMARY OF STANDARDS AND RESULTS .......................................................................... 5 1.1 Description of Standards and Results ......................................................................................... 5 2 GENERAL INFORMATION .......................................................................................................... 6 2.1 Description of Equipment Under Test ........................................................................................ 6 2.2 EUT Specifications Assessed in Current Report ........................................................................ 7 2.3 Test Information ......................................................................................................................... 7 2.4 Sample Description .................................................................................................................... 7 2.5 Supported equipment .................................................................................................................. 8 2.6 Description of Test Facility ........................................................................................................ 8 3 CONDUCTED EMISSION TEST .................................................................................................. 9 3.1 Test Equipment........................................................................................................................... 9 3.2 Block Diagram of Test Setup ..................................................................................................... 9 3.3 Conducted Emission Limits (§15.207) ..................................................................................... 10 3.4 Test Configuration .................................................................................................................... 10 3.5 Operating Condition of EUT .................................................................................................... 10 3.6 Test Procedures ........................................................................................................................ 10 3.7 Test Results .............................................................................................................................. 11 4 RADIATED EMISSION TEST ..................................................................................................... 13 4.1 Test Equipment......................................................................................................................... 13 4.2 Block Diagram of Test Setup ................................................................................................... 13 4.3 Radiated Emission Limit (§15.209) ......................................................................................... 14 4.4 Test Configuration .................................................................................................................... 14 4.5 Operating Condition of EUT .................................................................................................... 15 4.6 Test Procedures ........................................................................................................................ 15 4.7 Test Results .............................................................................................................................. 16 5 99% OCCUPIED BANDWIDTH MEASUREMENT ................................................................ 29 5.1 Test Equipment......................................................................................................................... 29 5.2 Block Diagram of Test Setup ................................................................................................... 29 5.3 Operating Condition of EUT .................................................................................................... 29 5.4 Test Procedure .......................................................................................................................... 29 5.5 Test Results .............................................................................................................................. 30 6 6 DB BANDWIDTH MEASUREMENT ...................................................................................... 36 6.1 Test Equipment......................................................................................................................... 36 6.2 Block Diagram of Test Setup ................................................................................................... 36 6.3 Specification Limits (§15.247(a)(2)) .......................................................................................…
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ManufacturerSavant Technologies LLC, dba GE Lighting, a Savant company Address1975 Noble Road, East Cleveland, OH 44112 USA ModelLDS8720Tile_A SY-16M Test System Antenna picture(unit: mm) 1. Operating band: 2400 MHz ~ 2483.5 MHz 2. Antenna Type:inverted F PCB antenna ANT Test Result frequency 频率(MHz) gain 增益(dBi) mingain 最小增益(dBi) efficiency 效率(dB) efficiency 效率(%) 24001.71-26.5-2.7852.67 24101.85-25.81-2.6654.20 24202.16-24.71-2.3857.81 24302.01-27.08-2.5256.04 24402.03-29.44-2.6254.69 24502.29-25.39-2.4756.67 24602.31-22.47-2.4357.14 24702.08-23.9-2.654.92 24802.02-31.84-2.5655.51 24901.94-31.43-2.5156.16 25002.2-24.3-2.3258.67 Max 2.31-22.47-2.3258.67 Min 1.71-31.84-2.7852.67 Chamber Data Gain&Efficiency Gain&Efficiency 3. Max Antenna gain:2.31 dBi VNA Data VSWR & Return loss & Smith Chart 3Dθ=90°(XY Plane) φ=0°(XZ Plane) φ=90°(YZ Plane) Conclusio CategoryItemIdexTest ResultConclusion VSWR ≤ 2.5 1.8Pass ≥25% Lev…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.41 GHz - 2.46 GHz | 36.39 mW |

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